7c21a96e9a
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@8087 a1c6a512-1295-4272-9138-f99709370657
500 lines
15 KiB
C
500 lines
15 KiB
C
/* ucl_init.c -- initialization of the UCL library
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This file is part of the UCL data compression library.
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Copyright (C) 1996-2002 Markus Franz Xaver Johannes Oberhumer
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All Rights Reserved.
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The UCL library is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of
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the License, or (at your option) any later version.
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The UCL library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with the UCL library; see the file COPYING.
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If not, write to the Free Software Foundation, Inc.,
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59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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Markus F.X.J. Oberhumer
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<markus@oberhumer.com>
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http://www.oberhumer.com/opensource/ucl/
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*/
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#include "ucl_conf.h"
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#include "ucl_util.h"
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#include <stdio.h>
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#if 0
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# define IS_SIGNED(type) (((type) (1ul << (8 * sizeof(type) - 1))) < 0)
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# define IS_UNSIGNED(type) (((type) (1ul << (8 * sizeof(type) - 1))) > 0)
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#else
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# define IS_SIGNED(type) (((type) (-1)) < ((type) 0))
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# define IS_UNSIGNED(type) (((type) (-1)) > ((type) 0))
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#endif
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/***********************************************************************
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// Runtime check of the assumptions about the size of builtin types,
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// memory model, byte order and other low-level constructs.
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//
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// We are really paranoid here - UCL should either fail (or crash)
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// at startup or not at all.
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//
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// Because of inlining much of these functions evaluates to nothing.
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************************************************************************/
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static ucl_bool schedule_insns_bug(void); /* avoid inlining */
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static ucl_bool strength_reduce_bug(int *); /* avoid inlining */
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#if 0 || defined(UCL_DEBUG)
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static ucl_bool __ucl_assert_fail(const char *s, unsigned line)
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{
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#if defined(__palmos__)
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printf("UCL assertion failed in line %u: '%s'\n",line,s);
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#else
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fprintf(stderr,"UCL assertion failed in line %u: '%s'\n",line,s);
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#endif
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return 0;
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}
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# define __ucl_assert(x) ((x) ? 1 : __ucl_assert_fail(#x,__LINE__))
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#else
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# define __ucl_assert(x) ((x) ? 1 : 0)
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#endif
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/***********************************************************************
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// The next two functions should get completely optimized out of existance.
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// Some assertions are redundant - but included for clarity.
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************************************************************************/
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static ucl_bool basic_integral_check(void)
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{
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ucl_bool r = 1;
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ucl_bool sanity;
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/* paranoia */
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r &= __ucl_assert(CHAR_BIT == 8);
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r &= __ucl_assert(sizeof(char) == 1);
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r &= __ucl_assert(sizeof(short) >= 2);
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r &= __ucl_assert(sizeof(long) >= 4);
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r &= __ucl_assert(sizeof(int) >= sizeof(short));
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r &= __ucl_assert(sizeof(long) >= sizeof(int));
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r &= __ucl_assert(sizeof(ucl_uint32) >= 4);
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r &= __ucl_assert(sizeof(ucl_uint32) >= sizeof(unsigned));
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#if defined(__UCL_STRICT_16BIT)
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r &= __ucl_assert(sizeof(ucl_uint) == 2);
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#else
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r &= __ucl_assert(sizeof(ucl_uint) >= 4);
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r &= __ucl_assert(sizeof(ucl_uint) >= sizeof(unsigned));
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#endif
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#if defined(SIZEOF_UNSIGNED)
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r &= __ucl_assert(SIZEOF_UNSIGNED == sizeof(unsigned));
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#endif
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#if defined(SIZEOF_UNSIGNED_LONG)
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r &= __ucl_assert(SIZEOF_UNSIGNED_LONG == sizeof(unsigned long));
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#endif
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#if defined(SIZEOF_UNSIGNED_SHORT)
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r &= __ucl_assert(SIZEOF_UNSIGNED_SHORT == sizeof(unsigned short));
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#endif
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#if !defined(__UCL_IN_MINIUCL)
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#if defined(SIZEOF_SIZE_T)
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r &= __ucl_assert(SIZEOF_SIZE_T == sizeof(size_t));
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#endif
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#endif
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/* assert the signedness of our integral types */
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sanity = IS_UNSIGNED(unsigned short) && IS_UNSIGNED(unsigned) &&
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IS_UNSIGNED(unsigned long) &&
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IS_SIGNED(short) && IS_SIGNED(int) && IS_SIGNED(long);
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if (sanity)
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{
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r &= __ucl_assert(IS_UNSIGNED(ucl_uint32));
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r &= __ucl_assert(IS_UNSIGNED(ucl_uint));
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r &= __ucl_assert(IS_SIGNED(ucl_int32));
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r &= __ucl_assert(IS_SIGNED(ucl_int));
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r &= __ucl_assert(INT_MAX == UCL_STYPE_MAX(sizeof(int)));
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r &= __ucl_assert(UINT_MAX == UCL_UTYPE_MAX(sizeof(unsigned)));
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r &= __ucl_assert(LONG_MAX == UCL_STYPE_MAX(sizeof(long)));
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r &= __ucl_assert(ULONG_MAX == UCL_UTYPE_MAX(sizeof(unsigned long)));
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r &= __ucl_assert(SHRT_MAX == UCL_STYPE_MAX(sizeof(short)));
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r &= __ucl_assert(USHRT_MAX == UCL_UTYPE_MAX(sizeof(unsigned short)));
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r &= __ucl_assert(UCL_UINT32_MAX == UCL_UTYPE_MAX(sizeof(ucl_uint32)));
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r &= __ucl_assert(UCL_UINT_MAX == UCL_UTYPE_MAX(sizeof(ucl_uint)));
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#if !defined(__UCL_IN_MINIUCL)
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r &= __ucl_assert(SIZE_T_MAX == UCL_UTYPE_MAX(sizeof(size_t)));
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#endif
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}
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return r;
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}
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static ucl_bool basic_ptr_check(void)
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{
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ucl_bool r = 1;
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ucl_bool sanity;
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r &= __ucl_assert(sizeof(char *) >= sizeof(int));
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r &= __ucl_assert(sizeof(ucl_byte *) >= sizeof(char *));
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r &= __ucl_assert(sizeof(ucl_voidp) == sizeof(ucl_byte *));
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r &= __ucl_assert(sizeof(ucl_voidp) == sizeof(ucl_voidpp));
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r &= __ucl_assert(sizeof(ucl_voidp) == sizeof(ucl_bytepp));
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r &= __ucl_assert(sizeof(ucl_voidp) >= sizeof(ucl_uint));
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r &= __ucl_assert(sizeof(ucl_ptr_t) == sizeof(ucl_voidp));
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r &= __ucl_assert(sizeof(ucl_ptr_t) >= sizeof(ucl_uint));
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r &= __ucl_assert(sizeof(ucl_ptrdiff_t) >= 4);
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r &= __ucl_assert(sizeof(ucl_ptrdiff_t) >= sizeof(ptrdiff_t));
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#if defined(SIZEOF_CHAR_P)
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r &= __ucl_assert(SIZEOF_CHAR_P == sizeof(char *));
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#endif
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#if defined(SIZEOF_PTRDIFF_T)
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r &= __ucl_assert(SIZEOF_PTRDIFF_T == sizeof(ptrdiff_t));
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#endif
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/* assert the signedness of our integral types */
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sanity = IS_UNSIGNED(unsigned short) && IS_UNSIGNED(unsigned) &&
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IS_UNSIGNED(unsigned long) &&
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IS_SIGNED(short) && IS_SIGNED(int) && IS_SIGNED(long);
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if (sanity)
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{
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r &= __ucl_assert(IS_UNSIGNED(ucl_ptr_t));
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r &= __ucl_assert(IS_SIGNED(ucl_ptrdiff_t));
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r &= __ucl_assert(IS_SIGNED(ucl_sptr_t));
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}
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return r;
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}
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/***********************************************************************
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//
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************************************************************************/
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static ucl_bool ptr_check(void)
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{
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ucl_bool r = 1;
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int i;
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char _wrkmem[10 * sizeof(ucl_byte *) + sizeof(ucl_align_t)];
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ucl_bytep wrkmem;
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ucl_bytepp dict;
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unsigned char x[4 * sizeof(ucl_align_t)];
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long d;
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ucl_align_t a;
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ucl_align_t u;
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for (i = 0; i < (int) sizeof(x); i++)
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x[i] = UCL_BYTE(i);
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wrkmem = UCL_PTR_ALIGN_UP((ucl_byte *)_wrkmem,sizeof(ucl_align_t));
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#if 0
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dict = (ucl_bytepp) wrkmem;
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#else
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/* Avoid a compiler warning on architectures that
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* do not allow unaligned access. */
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u.a_ucl_bytep = wrkmem; dict = u.a_ucl_bytepp;
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#endif
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d = (long) ((const ucl_bytep) dict - (const ucl_bytep) _wrkmem);
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r &= __ucl_assert(d >= 0);
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r &= __ucl_assert(d < (long) sizeof(ucl_align_t));
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memset(&a,0xff,sizeof(a));
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r &= __ucl_assert(a.a_ushort == USHRT_MAX);
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r &= __ucl_assert(a.a_uint == UINT_MAX);
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r &= __ucl_assert(a.a_ulong == ULONG_MAX);
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r &= __ucl_assert(a.a_ucl_uint == UCL_UINT_MAX);
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/* sanity check of the memory model */
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if (r == 1)
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{
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for (i = 0; i < 8; i++)
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r &= __ucl_assert((const ucl_voidp) (&dict[i]) == (const ucl_voidp) (&wrkmem[i * sizeof(ucl_byte *)]));
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}
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/* check BZERO8_PTR and that NULL == 0 */
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memset(&a,0,sizeof(a));
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r &= __ucl_assert(a.a_char_p == NULL);
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r &= __ucl_assert(a.a_ucl_bytep == NULL);
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r &= __ucl_assert(NULL == (void*)0);
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if (r == 1)
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{
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for (i = 0; i < 10; i++)
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dict[i] = wrkmem;
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BZERO8_PTR(dict+1,sizeof(dict[0]),8);
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r &= __ucl_assert(dict[0] == wrkmem);
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for (i = 1; i < 9; i++)
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r &= __ucl_assert(dict[i] == NULL);
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r &= __ucl_assert(dict[9] == wrkmem);
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}
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/* check that the pointer constructs work as expected */
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if (r == 1)
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{
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unsigned k = 1;
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const unsigned n = (unsigned) sizeof(ucl_uint32);
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ucl_byte *p0;
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ucl_byte *p1;
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k += __ucl_align_gap(&x[k],n);
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p0 = (ucl_bytep) &x[k];
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#if defined(PTR_LINEAR)
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r &= __ucl_assert((PTR_LINEAR(p0) & (n-1)) == 0);
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#else
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r &= __ucl_assert(n == 4);
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r &= __ucl_assert(PTR_ALIGNED_4(p0));
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#endif
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r &= __ucl_assert(k >= 1);
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p1 = (ucl_bytep) &x[1];
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r &= __ucl_assert(PTR_GE(p0,p1));
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r &= __ucl_assert(k < 1+n);
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p1 = (ucl_bytep) &x[1+n];
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r &= __ucl_assert(PTR_LT(p0,p1));
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/* now check that aligned memory access doesn't core dump */
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if (r == 1)
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{
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ucl_uint32 v0, v1;
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#if 0
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v0 = * (ucl_uint32 *) &x[k];
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v1 = * (ucl_uint32 *) &x[k+n];
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#else
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/* Avoid compiler warnings on architectures that
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* do not allow unaligned access. */
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u.a_uchar_p = &x[k];
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v0 = *u.a_ucl_uint32_p;
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u.a_uchar_p = &x[k+n];
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v1 = *u.a_ucl_uint32_p;
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#endif
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r &= __ucl_assert(v0 > 0);
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r &= __ucl_assert(v1 > 0);
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}
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}
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return r;
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}
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/***********************************************************************
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//
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************************************************************************/
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UCL_PUBLIC(int)
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_ucl_config_check(void)
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{
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ucl_bool r = 1;
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int i;
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union {
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ucl_uint32 a;
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unsigned short b;
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ucl_uint32 aa[4];
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unsigned char x[4*sizeof(ucl_align_t)];
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} u;
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#if 0
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/* paranoia - the following is guaranteed by definition anyway */
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r &= __ucl_assert((const void *)&u == (const void *)&u.a);
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r &= __ucl_assert((const void *)&u == (const void *)&u.b);
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r &= __ucl_assert((const void *)&u == (const void *)&u.x[0]);
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r &= __ucl_assert((const void *)&u == (const void *)&u.aa[0]);
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#endif
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r &= basic_integral_check();
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r &= basic_ptr_check();
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if (r != 1)
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return UCL_E_ERROR;
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u.a = 0; u.b = 0;
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for (i = 0; i < (int) sizeof(u.x); i++)
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u.x[i] = UCL_BYTE(i);
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#if 0
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/* check if the compiler correctly casts signed to unsigned */
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r &= __ucl_assert( (int) (unsigned char) ((char) -1) == 255);
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#endif
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/* check UCL_BYTE_ORDER */
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#if defined(UCL_BYTE_ORDER)
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if (r == 1)
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{
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# if (UCL_BYTE_ORDER == UCL_LITTLE_ENDIAN)
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ucl_uint32 a = (ucl_uint32) (u.a & UCL_UINT32_C(0xffffffff));
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unsigned short b = (unsigned short) (u.b & 0xffff);
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r &= __ucl_assert(a == UCL_UINT32_C(0x03020100));
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r &= __ucl_assert(b == 0x0100);
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# elif (UCL_BYTE_ORDER == UCL_BIG_ENDIAN)
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ucl_uint32 a = u.a >> (8 * sizeof(u.a) - 32);
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unsigned short b = u.b >> (8 * sizeof(u.b) - 16);
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r &= __ucl_assert(a == UCL_UINT32_C(0x00010203));
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r &= __ucl_assert(b == 0x0001);
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# else
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# error "invalid UCL_BYTE_ORDER"
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# endif
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}
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#endif
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/* check that unaligned memory access works as expected */
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#if defined(UCL_UNALIGNED_OK_2)
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r &= __ucl_assert(sizeof(short) == 2);
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if (r == 1)
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{
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unsigned short b[4];
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for (i = 0; i < 4; i++)
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b[i] = * (const unsigned short *) &u.x[i];
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# if (UCL_BYTE_ORDER == UCL_LITTLE_ENDIAN)
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r &= __ucl_assert(b[0] == 0x0100);
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r &= __ucl_assert(b[1] == 0x0201);
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r &= __ucl_assert(b[2] == 0x0302);
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r &= __ucl_assert(b[3] == 0x0403);
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# elif (UCL_BYTE_ORDER == UCL_BIG_ENDIAN)
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r &= __ucl_assert(b[0] == 0x0001);
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r &= __ucl_assert(b[1] == 0x0102);
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r &= __ucl_assert(b[2] == 0x0203);
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r &= __ucl_assert(b[3] == 0x0304);
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# endif
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}
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#endif
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#if defined(UCL_UNALIGNED_OK_4)
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r &= __ucl_assert(sizeof(ucl_uint32) == 4);
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if (r == 1)
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{
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ucl_uint32 a[4];
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for (i = 0; i < 4; i++)
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a[i] = * (const ucl_uint32 *) &u.x[i];
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# if (UCL_BYTE_ORDER == UCL_LITTLE_ENDIAN)
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r &= __ucl_assert(a[0] == UCL_UINT32_C(0x03020100));
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r &= __ucl_assert(a[1] == UCL_UINT32_C(0x04030201));
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r &= __ucl_assert(a[2] == UCL_UINT32_C(0x05040302));
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r &= __ucl_assert(a[3] == UCL_UINT32_C(0x06050403));
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# elif (UCL_BYTE_ORDER == UCL_BIG_ENDIAN)
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r &= __ucl_assert(a[0] == UCL_UINT32_C(0x00010203));
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r &= __ucl_assert(a[1] == UCL_UINT32_C(0x01020304));
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r &= __ucl_assert(a[2] == UCL_UINT32_C(0x02030405));
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r &= __ucl_assert(a[3] == UCL_UINT32_C(0x03040506));
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# endif
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}
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#endif
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#if defined(UCL_ALIGNED_OK_4)
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r &= __ucl_assert(sizeof(ucl_uint32) == 4);
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#endif
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/* check the ucl_adler32() function */
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if (r == 1)
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{
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ucl_uint32 adler;
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adler = ucl_adler32(0, NULL, 0);
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adler = ucl_adler32(adler, ucl_copyright(), 186);
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r &= __ucl_assert(adler == UCL_UINT32_C(0x47fb39fc));
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}
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/* check for the gcc schedule-insns optimization bug */
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if (r == 1)
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{
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r &= __ucl_assert(!schedule_insns_bug());
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}
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/* check for the gcc strength-reduce optimization bug */
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if (r == 1)
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{
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static int x[3];
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static unsigned xn = 3;
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register unsigned j;
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for (j = 0; j < xn; j++)
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x[j] = (int)j - 3;
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r &= __ucl_assert(!strength_reduce_bug(x));
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}
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/* now for the low-level pointer checks */
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if (r == 1)
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{
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r &= ptr_check();
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}
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return r == 1 ? UCL_E_OK : UCL_E_ERROR;
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}
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static ucl_bool schedule_insns_bug(void)
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{
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#if defined(__UCL_CHECKER)
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/* for some reason checker complains about uninitialized memory access */
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return 0;
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#else
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const int clone[] = {1, 2, 0};
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const int *q;
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q = clone;
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return (*q) ? 0 : 1;
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#endif
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}
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static ucl_bool strength_reduce_bug(int *x)
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{
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return x[0] != -3 || x[1] != -2 || x[2] != -1;
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}
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/***********************************************************************
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//
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************************************************************************/
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int __ucl_init_done = 0;
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UCL_PUBLIC(int)
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__ucl_init2(ucl_uint32 v, int s1, int s2, int s3, int s4, int s5,
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int s6, int s7, int s8, int s9)
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{
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int r;
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__ucl_init_done = 1;
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|
|
if (v == 0)
|
|
return UCL_E_ERROR;
|
|
|
|
r = (s1 == -1 || s1 == (int) sizeof(short)) &&
|
|
(s2 == -1 || s2 == (int) sizeof(int)) &&
|
|
(s3 == -1 || s3 == (int) sizeof(long)) &&
|
|
(s4 == -1 || s4 == (int) sizeof(ucl_uint32)) &&
|
|
(s5 == -1 || s5 == (int) sizeof(ucl_uint)) &&
|
|
(s6 == -1 || s6 > 0) &&
|
|
(s7 == -1 || s7 == (int) sizeof(char *)) &&
|
|
(s8 == -1 || s8 == (int) sizeof(ucl_voidp)) &&
|
|
(s9 == -1 || s9 == (int) sizeof(ucl_compress_t));
|
|
if (!r)
|
|
return UCL_E_ERROR;
|
|
|
|
r = _ucl_config_check();
|
|
if (r != UCL_E_OK)
|
|
return r;
|
|
|
|
return r;
|
|
}
|
|
|
|
|
|
/*
|
|
vi:ts=4:et
|
|
*/
|