+++ /dev/null
-/* A dummy file, to prevent empty libraries from breaking builds.
- Copyright (C) 2004, 2007 Free Software Foundation, Inc.
-
- This program is free software: you can redistribute it and/or modify
- it under the terms of the GNU Lesser General Public License as published by
- the Free Software Foundation; either version 2.1 of the License, or
- (at your option) any later version.
-
- This program is distributed in the hope that it will be useful,
- but WITHOUT ANY WARRANTY; without even the implied warranty of
- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- GNU Lesser General Public License for more details.
-
- You should have received a copy of the GNU Lesser General Public License
- along with this program. If not, see <http://www.gnu.org/licenses/>. */
-
-/* Some systems, reportedly OpenBSD and Mac OS X, refuse to create
- libraries without any object files. You might get an error like:
-
- > ar cru .libs/libgl.a
- > ar: no archive members specified
-
- Compiling this file, and adding its object file to the library, will
- prevent the library from being empty. */
-
-/* Some systems, such as Solaris with cc 5.0, refuse to work with libraries
- that don't export any symbol. You might get an error like:
-
- > cc ... libgnu.a
- > ild: (bad file) garbled symbol table in archive ../gllib/libgnu.a
-
- Compiling this file, and adding its object file to the library, will
- prevent the library from exporting no symbols. */
-
-#ifdef __sun
-/* This declaration ensures that the library will export at least 1 symbol. */
-int gl_dummy_symbol;
-#else
-/* This declaration is solely to ensure that after preprocessing
- this file is never empty. */
-typedef int dummy;
-#endif
--- /dev/null
+# eealloc.m4 serial 1
+dnl Copyright (C) 2003 Free Software Foundation, Inc.
+dnl This file is free software; the Free Software Foundation
+dnl gives unlimited permission to copy and/or distribute it,
+dnl with or without modifications, as long as this notice is preserved.
+
+AC_DEFUN([gl_EEALLOC],
+[
+ AC_REQUIRE([gl_EEMALLOC])
+ AC_REQUIRE([gl_EEREALLOC])
+ AC_REQUIRE([AC_C_INLINE])
+])
+
+AC_DEFUN([gl_EEMALLOC],
+[
+ _AC_FUNC_MALLOC_IF(
+ [gl_cv_func_malloc_0_nonnull=1],
+ [gl_cv_func_malloc_0_nonnull=0])
+ AC_DEFINE_UNQUOTED([MALLOC_0_IS_NONNULL], $gl_cv_func_malloc_0_nonnull,
+ [If malloc(0) is != NULL, define this to 1. Otherwise define this
+ to 0.])
+])
+
+AC_DEFUN([gl_EEREALLOC],
+[
+ _AC_FUNC_REALLOC_IF(
+ [gl_cv_func_realloc_0_nonnull=1],
+ [gl_cv_func_realloc_0_nonnull=0])
+ AC_DEFINE_UNQUOTED([REALLOC_0_IS_NONNULL], $gl_cv_func_realloc_0_nonnull,
+ [If realloc(NULL,0) is != NULL, define this to 1. Otherwise define this
+ to 0.])
+])
--- /dev/null
+# malloca.m4 serial 1
+dnl Copyright (C) 2003-2004, 2006-2007 Free Software Foundation, Inc.
+dnl This file is free software; the Free Software Foundation
+dnl gives unlimited permission to copy and/or distribute it,
+dnl with or without modifications, as long as this notice is preserved.
+
+AC_DEFUN([gl_MALLOCA],
+[
+ dnl Use the autoconf tests for alloca(), but not the AC_SUBSTed variables
+ dnl @ALLOCA@ and @LTALLOCA@.
+ dnl gl_FUNC_ALLOCA dnl Already brought in by the module dependencies.
+ AC_REQUIRE([gl_EEMALLOC])
+ AC_REQUIRE([AC_TYPE_LONG_LONG_INT])
+])
--- /dev/null
+# memchr.m4 serial 4
+dnl Copyright (C) 2002, 2003, 2004 Free Software Foundation, Inc.
+dnl This file is free software; the Free Software Foundation
+dnl gives unlimited permission to copy and/or distribute it,
+dnl with or without modifications, as long as this notice is preserved.
+
+AC_DEFUN([gl_FUNC_MEMCHR],
+[
+ AC_REPLACE_FUNCS(memchr)
+ if test $ac_cv_func_memchr = no; then
+ gl_PREREQ_MEMCHR
+ fi
+])
+
+# Prerequisites of lib/memchr.c.
+AC_DEFUN([gl_PREREQ_MEMCHR], [
+ AC_CHECK_HEADERS(bp-sym.h)
+])
--- /dev/null
+# memcmp.m4 serial 12
+dnl Copyright (C) 2002, 2003, 2004, 2007 Free Software Foundation, Inc.
+dnl This file is free software; the Free Software Foundation
+dnl gives unlimited permission to copy and/or distribute it,
+dnl with or without modifications, as long as this notice is preserved.
+
+AC_DEFUN([gl_FUNC_MEMCMP],
+[
+ AC_FUNC_MEMCMP
+ dnl Note: AC_FUNC_MEMCMP does AC_LIBOBJ(memcmp).
+ if test $ac_cv_func_memcmp_working = no; then
+ AC_DEFINE(memcmp, rpl_memcmp,
+ [Define to rpl_memcmp if the replacement function should be used.])
+ gl_PREREQ_MEMCMP
+ fi
+])
+
+# Prerequisites of lib/memcmp.c.
+AC_DEFUN([gl_PREREQ_MEMCMP], [:])
--- /dev/null
+/* Safe automatic memory allocation.
+ Copyright (C) 2003, 2006-2007 Free Software Foundation, Inc.
+ Written by Bruno Haible <bruno@clisp.org>, 2003.
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU Lesser General Public License as published by
+ the Free Software Foundation; either version 2.1, or (at your option)
+ any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU Lesser General Public License for more details.
+
+ You should have received a copy of the GNU Lesser General Public License
+ along with this program; if not, write to the Free Software Foundation,
+ Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. */
+
+#include <config.h>
+
+/* Specification. */
+#include "malloca.h"
+
+/* The speed critical point in this file is freea() applied to an alloca()
+ result: it must be fast, to match the speed of alloca(). The speed of
+ mmalloca() and freea() in the other case are not critical, because they
+ are only invoked for big memory sizes. */
+
+#if HAVE_ALLOCA
+
+/* Store the mmalloca() results in a hash table. This is needed to reliably
+ distinguish a mmalloca() result and an alloca() result.
+
+ Although it is possible that the same pointer is returned by alloca() and
+ by mmalloca() at different times in the same application, it does not lead
+ to a bug in freea(), because:
+ - Before a pointer returned by alloca() can point into malloc()ed memory,
+ the function must return, and once this has happened the programmer must
+ not call freea() on it anyway.
+ - Before a pointer returned by mmalloca() can point into the stack, it
+ must be freed. The only function that can free it is freea(), and
+ when freea() frees it, it also removes it from the hash table. */
+
+#define MAGIC_NUMBER 0x1415fb4a
+#define MAGIC_SIZE sizeof (int)
+/* This is how the header info would look like without any alignment
+ considerations. */
+struct preliminary_header { void *next; char room[MAGIC_SIZE]; };
+/* But the header's size must be a multiple of sa_alignment_max. */
+#define HEADER_SIZE \
+ (((sizeof (struct preliminary_header) + sa_alignment_max - 1) / sa_alignment_max) * sa_alignment_max)
+struct header { void *next; char room[HEADER_SIZE - sizeof (struct preliminary_header) + MAGIC_SIZE]; };
+/* Verify that HEADER_SIZE == sizeof (struct header). */
+typedef int verify1[2 * (HEADER_SIZE == sizeof (struct header)) - 1];
+/* We make the hash table quite big, so that during lookups the probability
+ of empty hash buckets is quite high. There is no need to make the hash
+ table resizable, because when the hash table gets filled so much that the
+ lookup becomes slow, it means that the application has memory leaks. */
+#define HASH_TABLE_SIZE 257
+static void * mmalloca_results[HASH_TABLE_SIZE];
+
+#endif
+
+void *
+mmalloca (size_t n)
+{
+#if HAVE_ALLOCA
+ /* Allocate one more word, that serves as an indicator for malloc()ed
+ memory, so that freea() of an alloca() result is fast. */
+ size_t nplus = n + HEADER_SIZE;
+
+ if (nplus >= n)
+ {
+ char *p = (char *) malloc (nplus);
+
+ if (p != NULL)
+ {
+ size_t slot;
+
+ p += HEADER_SIZE;
+
+ /* Put a magic number into the indicator word. */
+ ((int *) p)[-1] = MAGIC_NUMBER;
+
+ /* Enter p into the hash table. */
+ slot = (unsigned long) p % HASH_TABLE_SIZE;
+ ((struct header *) (p - HEADER_SIZE))->next = mmalloca_results[slot];
+ mmalloca_results[slot] = p;
+
+ return p;
+ }
+ }
+ /* Out of memory. */
+ return NULL;
+#else
+# if !MALLOC_0_IS_NONNULL
+ if (n == 0)
+ n = 1;
+# endif
+ return malloc (n);
+#endif
+}
+
+#if HAVE_ALLOCA
+void
+freea (void *p)
+{
+ /* mmalloca() may have returned NULL. */
+ if (p != NULL)
+ {
+ /* Attempt to quickly distinguish the mmalloca() result - which has
+ a magic indicator word - and the alloca() result - which has an
+ uninitialized indicator word. It is for this test that sa_increment
+ additional bytes are allocated in the alloca() case. */
+ if (((int *) p)[-1] == MAGIC_NUMBER)
+ {
+ /* Looks like a mmalloca() result. To see whether it really is one,
+ perform a lookup in the hash table. */
+ size_t slot = (unsigned long) p % HASH_TABLE_SIZE;
+ void **chain = &mmalloca_results[slot];
+ for (; *chain != NULL;)
+ {
+ if (*chain == p)
+ {
+ /* Found it. Remove it from the hash table and free it. */
+ char *p_begin = (char *) p - HEADER_SIZE;
+ *chain = ((struct header *) p_begin)->next;
+ free (p_begin);
+ return;
+ }
+ chain = &((struct header *) ((char *) *chain - HEADER_SIZE))->next;
+ }
+ }
+ /* At this point, we know it was not a mmalloca() result. */
+ }
+}
+#endif
--- /dev/null
+/* Safe automatic memory allocation.
+ Copyright (C) 2003-2007 Free Software Foundation, Inc.
+ Written by Bruno Haible <bruno@clisp.org>, 2003.
+
+ This program is free software; you can redistribute it and/or modify
+ it under the terms of the GNU Lesser General Public License as published by
+ the Free Software Foundation; either version 2.1, or (at your option)
+ any later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU Lesser General Public License for more details.
+
+ You should have received a copy of the GNU Lesser General Public License
+ along with this program; if not, write to the Free Software Foundation,
+ Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. */
+
+#ifndef _MALLOCA_H
+#define _MALLOCA_H
+
+#include <alloca.h>
+#include <stddef.h>
+#include <stdlib.h>
+
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+
+/* safe_alloca(N) is equivalent to alloca(N) when it is safe to call
+ alloca(N); otherwise it returns NULL. It either returns N bytes of
+ memory allocated on the stack, that lasts until the function returns,
+ or NULL.
+ Use of safe_alloca should be avoided:
+ - inside arguments of function calls - undefined behaviour,
+ - in inline functions - the allocation may actually last until the
+ calling function returns.
+*/
+#if HAVE_ALLOCA
+/* The OS usually guarantees only one guard page at the bottom of the stack,
+ and a page size can be as small as 4096 bytes. So we cannot safely
+ allocate anything larger than 4096 bytes. Also care for the possibility
+ of a few compiler-allocated temporary stack slots.
+ This must be a macro, not an inline function. */
+# define safe_alloca(N) ((N) < 4032 ? alloca (N) : NULL)
+#else
+# define safe_alloca(N) ((void) (N), NULL)
+#endif
+
+/* malloca(N) is a safe variant of alloca(N). It allocates N bytes of
+ memory allocated on the stack, that must be freed using freea() before
+ the function returns. Upon failure, it returns NULL. */
+#if HAVE_ALLOCA
+# define malloca(N) \
+ ((N) < 4032 - sa_increment \
+ ? (void *) ((char *) alloca ((N) + sa_increment) + sa_increment) \
+ : mmalloca (N))
+#else
+# define malloca(N) \
+ mmalloca (N)
+#endif
+extern void * mmalloca (size_t n);
+
+/* Free a block of memory allocated through malloca(). */
+#if HAVE_ALLOCA
+extern void freea (void *p);
+#else
+# define freea free
+#endif
+
+/* nmalloca(N,S) is an overflow-safe variant of malloca (N * S).
+ It allocates an array of N objects, each with S bytes of memory,
+ on the stack. S must be positive and N must be nonnegative.
+ The array must be freed using freea() before the function returns. */
+#if 1
+/* Cf. the definition of xalloc_oversized. */
+# define nmalloca(n, s) \
+ ((n) > (size_t) (sizeof (ptrdiff_t) <= sizeof (size_t) ? -1 : -2) / (s) \
+ ? NULL \
+ : malloca ((n) * (s)))
+#else
+extern void * nmalloca (size_t n, size_t s);
+#endif
+
+
+#ifdef __cplusplus
+}
+#endif
+
+
+/* ------------------- Auxiliary, non-public definitions ------------------- */
+
+/* Determine the alignment of a type at compile time. */
+#if defined __GNUC__
+# define sa_alignof __alignof__
+#elif defined __cplusplus
+ template <class type> struct sa_alignof_helper { char __slot1; type __slot2; };
+# define sa_alignof(type) offsetof (sa_alignof_helper<type>, __slot2)
+#elif defined __hpux
+ /* Work around a HP-UX 10.20 cc bug with enums constants defined as offsetof
+ values. */
+# define sa_alignof(type) (sizeof (type) <= 4 ? 4 : 8)
+#elif defined _AIX
+ /* Work around an AIX 3.2.5 xlc bug with enums constants defined as offsetof
+ values. */
+# define sa_alignof(type) (sizeof (type) <= 4 ? 4 : 8)
+#else
+# define sa_alignof(type) offsetof (struct { char __slot1; type __slot2; }, __slot2)
+#endif
+
+enum
+{
+/* The desired alignment of memory allocations is the maximum alignment
+ among all elementary types. */
+ sa_alignment_long = sa_alignof (long),
+ sa_alignment_double = sa_alignof (double),
+#if HAVE_LONG_LONG_INT
+ sa_alignment_longlong = sa_alignof (long long),
+#endif
+ sa_alignment_longdouble = sa_alignof (long double),
+ sa_alignment_max = ((sa_alignment_long - 1) | (sa_alignment_double - 1)
+#if HAVE_LONG_LONG_INT
+ | (sa_alignment_longlong - 1)
+#endif
+ | (sa_alignment_longdouble - 1)
+ ) + 1,
+/* The increment that guarantees room for a magic word must be >= sizeof (int)
+ and a multiple of sa_alignment_max. */
+ sa_increment = ((sizeof (int) + sa_alignment_max - 1) / sa_alignment_max) * sa_alignment_max
+};
+
+#endif /* _MALLOCA_H */
--- /dev/null
+# Suppress a valgrind message about use of uninitialized memory in freea().
+# This use is OK because it provides only a speedup.
+{
+ freea
+ Memcheck:Cond
+ fun:freea
+}
--- /dev/null
+/* Copyright (C) 1991, 1993, 1996, 1997, 1999, 2000, 2003, 2004, 2006 Free
+ Software Foundation, Inc.
+
+ Based on strlen implementation by Torbjorn Granlund (tege@sics.se),
+ with help from Dan Sahlin (dan@sics.se) and
+ commentary by Jim Blandy (jimb@ai.mit.edu);
+ adaptation to memchr suggested by Dick Karpinski (dick@cca.ucsf.edu),
+ and implemented by Roland McGrath (roland@ai.mit.edu).
+
+NOTE: The canonical source of this file is maintained with the GNU C Library.
+Bugs can be reported to bug-glibc@prep.ai.mit.edu.
+
+This program is free software: you can redistribute it and/or modify it
+under the terms of the GNU Lesser General Public License as published by the
+Free Software Foundation; either version 2.1 of the License, or any
+later version.
+
+This program is distributed in the hope that it will be useful,
+but WITHOUT ANY WARRANTY; without even the implied warranty of
+MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+GNU Lesser General Public License for more details.
+
+You should have received a copy of the GNU Lesser General Public License
+along with this program. If not, see <http://www.gnu.org/licenses/>. */
+
+#ifndef _LIBC
+# include <config.h>
+#endif
+
+#include <string.h>
+
+#include <stddef.h>
+
+#if defined _LIBC
+# include <memcopy.h>
+#else
+# define reg_char char
+#endif
+
+#include <limits.h>
+
+#if HAVE_BP_SYM_H || defined _LIBC
+# include <bp-sym.h>
+#else
+# define BP_SYM(sym) sym
+#endif
+
+#undef memchr
+#undef __memchr
+
+/* Search no more than N bytes of S for C. */
+void *
+__memchr (void const *s, int c_in, size_t n)
+{
+ const unsigned char *char_ptr;
+ const unsigned long int *longword_ptr;
+ unsigned long int longword, magic_bits, charmask;
+ unsigned reg_char c;
+ int i;
+
+ c = (unsigned char) c_in;
+
+ /* Handle the first few characters by reading one character at a time.
+ Do this until CHAR_PTR is aligned on a longword boundary. */
+ for (char_ptr = (const unsigned char *) s;
+ n > 0 && (size_t) char_ptr % sizeof longword != 0;
+ --n, ++char_ptr)
+ if (*char_ptr == c)
+ return (void *) char_ptr;
+
+ /* All these elucidatory comments refer to 4-byte longwords,
+ but the theory applies equally well to any size longwords. */
+
+ longword_ptr = (const unsigned long int *) char_ptr;
+
+ /* Bits 31, 24, 16, and 8 of this number are zero. Call these bits
+ the "holes." Note that there is a hole just to the left of
+ each byte, with an extra at the end:
+
+ bits: 01111110 11111110 11111110 11111111
+ bytes: AAAAAAAA BBBBBBBB CCCCCCCC DDDDDDDD
+
+ The 1-bits make sure that carries propagate to the next 0-bit.
+ The 0-bits provide holes for carries to fall into. */
+
+ /* Set MAGIC_BITS to be this pattern of 1 and 0 bits.
+ Set CHARMASK to be a longword, each of whose bytes is C. */
+
+ magic_bits = 0xfefefefe;
+ charmask = c | (c << 8);
+ charmask |= charmask << 16;
+#if 0xffffffffU < ULONG_MAX
+ magic_bits |= magic_bits << 32;
+ charmask |= charmask << 32;
+ if (8 < sizeof longword)
+ for (i = 64; i < sizeof longword * 8; i *= 2)
+ {
+ magic_bits |= magic_bits << i;
+ charmask |= charmask << i;
+ }
+#endif
+ magic_bits = (ULONG_MAX >> 1) & (magic_bits | 1);
+
+ /* Instead of the traditional loop which tests each character,
+ we will test a longword at a time. The tricky part is testing
+ if *any of the four* bytes in the longword in question are zero. */
+ while (n >= sizeof longword)
+ {
+ /* We tentatively exit the loop if adding MAGIC_BITS to
+ LONGWORD fails to change any of the hole bits of LONGWORD.
+
+ 1) Is this safe? Will it catch all the zero bytes?
+ Suppose there is a byte with all zeros. Any carry bits
+ propagating from its left will fall into the hole at its
+ least significant bit and stop. Since there will be no
+ carry from its most significant bit, the LSB of the
+ byte to the left will be unchanged, and the zero will be
+ detected.
+
+ 2) Is this worthwhile? Will it ignore everything except
+ zero bytes? Suppose every byte of LONGWORD has a bit set
+ somewhere. There will be a carry into bit 8. If bit 8
+ is set, this will carry into bit 16. If bit 8 is clear,
+ one of bits 9-15 must be set, so there will be a carry
+ into bit 16. Similarly, there will be a carry into bit
+ 24. If one of bits 24-30 is set, there will be a carry
+ into bit 31, so all of the hole bits will be changed.
+
+ The one misfire occurs when bits 24-30 are clear and bit
+ 31 is set; in this case, the hole at bit 31 is not
+ changed. If we had access to the processor carry flag,
+ we could close this loophole by putting the fourth hole
+ at bit 32!
+
+ So it ignores everything except 128's, when they're aligned
+ properly.
+
+ 3) But wait! Aren't we looking for C, not zero?
+ Good point. So what we do is XOR LONGWORD with a longword,
+ each of whose bytes is C. This turns each byte that is C
+ into a zero. */
+
+ longword = *longword_ptr++ ^ charmask;
+
+ /* Add MAGIC_BITS to LONGWORD. */
+ if ((((longword + magic_bits)
+
+ /* Set those bits that were unchanged by the addition. */
+ ^ ~longword)
+
+ /* Look at only the hole bits. If any of the hole bits
+ are unchanged, most likely one of the bytes was a
+ zero. */
+ & ~magic_bits) != 0)
+ {
+ /* Which of the bytes was C? If none of them were, it was
+ a misfire; continue the search. */
+
+ const unsigned char *cp = (const unsigned char *) (longword_ptr - 1);
+
+ if (cp[0] == c)
+ return (void *) cp;
+ if (cp[1] == c)
+ return (void *) &cp[1];
+ if (cp[2] == c)
+ return (void *) &cp[2];
+ if (cp[3] == c)
+ return (void *) &cp[3];
+ if (4 < sizeof longword && cp[4] == c)
+ return (void *) &cp[4];
+ if (5 < sizeof longword && cp[5] == c)
+ return (void *) &cp[5];
+ if (6 < sizeof longword && cp[6] == c)
+ return (void *) &cp[6];
+ if (7 < sizeof longword && cp[7] == c)
+ return (void *) &cp[7];
+ if (8 < sizeof longword)
+ for (i = 8; i < sizeof longword; i++)
+ if (cp[i] == c)
+ return (void *) &cp[i];
+ }
+
+ n -= sizeof longword;
+ }
+
+ char_ptr = (const unsigned char *) longword_ptr;
+
+ while (n-- > 0)
+ {
+ if (*char_ptr == c)
+ return (void *) char_ptr;
+ else
+ ++char_ptr;
+ }
+
+ return 0;
+}
+#ifdef weak_alias
+weak_alias (__memchr, BP_SYM (memchr))
+#endif
--- /dev/null
+/* Copyright (C) 1991, 1993, 1995, 1997, 1998, 2003, 2006 Free Software
+ Foundation, Inc.
+
+ Contributed by Torbjorn Granlund (tege@sics.se).
+
+ NOTE: The canonical source of this file is maintained with the GNU C Library.
+ Bugs can be reported to bug-glibc@prep.ai.mit.edu.
+
+ This program is free software: you can redistribute it and/or modify it
+ under the terms of the GNU Lesser General Public License as published by the
+ Free Software Foundation; either version 2.1 of the License, or any
+ later version.
+
+ This program is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU Lesser General Public License for more details.
+
+ You should have received a copy of the GNU Lesser General Public License
+ along with this program. If not, see <http://www.gnu.org/licenses/>. */
+
+#ifndef _LIBC
+# include <config.h>
+#endif
+
+#include <string.h>
+
+#undef memcmp
+
+#ifdef _LIBC
+
+# include <memcopy.h>
+# include <endian.h>
+
+# if __BYTE_ORDER == __BIG_ENDIAN
+# define WORDS_BIGENDIAN
+# endif
+
+#else /* Not in the GNU C library. */
+
+# include <sys/types.h>
+
+/* Type to use for aligned memory operations.
+ This should normally be the biggest type supported by a single load
+ and store. Must be an unsigned type. */
+# define op_t unsigned long int
+# define OPSIZ (sizeof(op_t))
+
+/* Threshold value for when to enter the unrolled loops. */
+# define OP_T_THRES 16
+
+/* Type to use for unaligned operations. */
+typedef unsigned char byte;
+
+# ifndef WORDS_BIGENDIAN
+# define MERGE(w0, sh_1, w1, sh_2) (((w0) >> (sh_1)) | ((w1) << (sh_2)))
+# else
+# define MERGE(w0, sh_1, w1, sh_2) (((w0) << (sh_1)) | ((w1) >> (sh_2)))
+# endif
+
+#endif /* In the GNU C library. */
+
+#ifdef WORDS_BIGENDIAN
+# define CMP_LT_OR_GT(a, b) ((a) > (b) ? 1 : -1)
+#else
+# define CMP_LT_OR_GT(a, b) memcmp_bytes ((a), (b))
+#endif
+
+/* BE VERY CAREFUL IF YOU CHANGE THIS CODE! */
+
+/* The strategy of this memcmp is:
+
+ 1. Compare bytes until one of the block pointers is aligned.
+
+ 2. Compare using memcmp_common_alignment or
+ memcmp_not_common_alignment, regarding the alignment of the other
+ block after the initial byte operations. The maximum number of
+ full words (of type op_t) are compared in this way.
+
+ 3. Compare the few remaining bytes. */
+
+#ifndef WORDS_BIGENDIAN
+/* memcmp_bytes -- Compare A and B bytewise in the byte order of the machine.
+ A and B are known to be different.
+ This is needed only on little-endian machines. */
+
+# ifdef __GNUC__
+__inline
+# endif
+static int
+memcmp_bytes (long unsigned int a, long unsigned int b)
+{
+ long int srcp1 = (long int) &a;
+ long int srcp2 = (long int) &b;
+ op_t a0, b0;
+
+ do
+ {
+ a0 = ((byte *) srcp1)[0];
+ b0 = ((byte *) srcp2)[0];
+ srcp1 += 1;
+ srcp2 += 1;
+ }
+ while (a0 == b0);
+ return a0 - b0;
+}
+#endif
+
+/* memcmp_common_alignment -- Compare blocks at SRCP1 and SRCP2 with LEN `op_t'
+ objects (not LEN bytes!). Both SRCP1 and SRCP2 should be aligned for
+ memory operations on `op_t's. */
+#ifdef __GNUC__
+__inline
+#endif
+static int
+memcmp_common_alignment (long int srcp1, long int srcp2, size_t len)
+{
+ op_t a0, a1;
+ op_t b0, b1;
+
+ switch (len % 4)
+ {
+ default: /* Avoid warning about uninitialized local variables. */
+ case 2:
+ a0 = ((op_t *) srcp1)[0];
+ b0 = ((op_t *) srcp2)[0];
+ srcp1 -= 2 * OPSIZ;
+ srcp2 -= 2 * OPSIZ;
+ len += 2;
+ goto do1;
+ case 3:
+ a1 = ((op_t *) srcp1)[0];
+ b1 = ((op_t *) srcp2)[0];
+ srcp1 -= OPSIZ;
+ srcp2 -= OPSIZ;
+ len += 1;
+ goto do2;
+ case 0:
+ if (OP_T_THRES <= 3 * OPSIZ && len == 0)
+ return 0;
+ a0 = ((op_t *) srcp1)[0];
+ b0 = ((op_t *) srcp2)[0];
+ goto do3;
+ case 1:
+ a1 = ((op_t *) srcp1)[0];
+ b1 = ((op_t *) srcp2)[0];
+ srcp1 += OPSIZ;
+ srcp2 += OPSIZ;
+ len -= 1;
+ if (OP_T_THRES <= 3 * OPSIZ && len == 0)
+ goto do0;
+ /* Fall through. */
+ }
+
+ do
+ {
+ a0 = ((op_t *) srcp1)[0];
+ b0 = ((op_t *) srcp2)[0];
+ if (a1 != b1)
+ return CMP_LT_OR_GT (a1, b1);
+
+ do3:
+ a1 = ((op_t *) srcp1)[1];
+ b1 = ((op_t *) srcp2)[1];
+ if (a0 != b0)
+ return CMP_LT_OR_GT (a0, b0);
+
+ do2:
+ a0 = ((op_t *) srcp1)[2];
+ b0 = ((op_t *) srcp2)[2];
+ if (a1 != b1)
+ return CMP_LT_OR_GT (a1, b1);
+
+ do1:
+ a1 = ((op_t *) srcp1)[3];
+ b1 = ((op_t *) srcp2)[3];
+ if (a0 != b0)
+ return CMP_LT_OR_GT (a0, b0);
+
+ srcp1 += 4 * OPSIZ;
+ srcp2 += 4 * OPSIZ;
+ len -= 4;
+ }
+ while (len != 0);
+
+ /* This is the right position for do0. Please don't move
+ it into the loop. */
+ do0:
+ if (a1 != b1)
+ return CMP_LT_OR_GT (a1, b1);
+ return 0;
+}
+
+/* memcmp_not_common_alignment -- Compare blocks at SRCP1 and SRCP2 with LEN
+ `op_t' objects (not LEN bytes!). SRCP2 should be aligned for memory
+ operations on `op_t', but SRCP1 *should be unaligned*. */
+#ifdef __GNUC__
+__inline
+#endif
+static int
+memcmp_not_common_alignment (long int srcp1, long int srcp2, size_t len)
+{
+ op_t a0, a1, a2, a3;
+ op_t b0, b1, b2, b3;
+ op_t x;
+ int shl, shr;
+
+ /* Calculate how to shift a word read at the memory operation
+ aligned srcp1 to make it aligned for comparison. */
+
+ shl = 8 * (srcp1 % OPSIZ);
+ shr = 8 * OPSIZ - shl;
+
+ /* Make SRCP1 aligned by rounding it down to the beginning of the `op_t'
+ it points in the middle of. */
+ srcp1 &= -OPSIZ;
+
+ switch (len % 4)
+ {
+ default: /* Avoid warning about uninitialized local variables. */
+ case 2:
+ a1 = ((op_t *) srcp1)[0];
+ a2 = ((op_t *) srcp1)[1];
+ b2 = ((op_t *) srcp2)[0];
+ srcp1 -= 1 * OPSIZ;
+ srcp2 -= 2 * OPSIZ;
+ len += 2;
+ goto do1;
+ case 3:
+ a0 = ((op_t *) srcp1)[0];
+ a1 = ((op_t *) srcp1)[1];
+ b1 = ((op_t *) srcp2)[0];
+ srcp2 -= 1 * OPSIZ;
+ len += 1;
+ goto do2;
+ case 0:
+ if (OP_T_THRES <= 3 * OPSIZ && len == 0)
+ return 0;
+ a3 = ((op_t *) srcp1)[0];
+ a0 = ((op_t *) srcp1)[1];
+ b0 = ((op_t *) srcp2)[0];
+ srcp1 += 1 * OPSIZ;
+ goto do3;
+ case 1:
+ a2 = ((op_t *) srcp1)[0];
+ a3 = ((op_t *) srcp1)[1];
+ b3 = ((op_t *) srcp2)[0];
+ srcp1 += 2 * OPSIZ;
+ srcp2 += 1 * OPSIZ;
+ len -= 1;
+ if (OP_T_THRES <= 3 * OPSIZ && len == 0)
+ goto do0;
+ /* Fall through. */
+ }
+
+ do
+ {
+ a0 = ((op_t *) srcp1)[0];
+ b0 = ((op_t *) srcp2)[0];
+ x = MERGE(a2, shl, a3, shr);
+ if (x != b3)
+ return CMP_LT_OR_GT (x, b3);
+
+ do3:
+ a1 = ((op_t *) srcp1)[1];
+ b1 = ((op_t *) srcp2)[1];
+ x = MERGE(a3, shl, a0, shr);
+ if (x != b0)
+ return CMP_LT_OR_GT (x, b0);
+
+ do2:
+ a2 = ((op_t *) srcp1)[2];
+ b2 = ((op_t *) srcp2)[2];
+ x = MERGE(a0, shl, a1, shr);
+ if (x != b1)
+ return CMP_LT_OR_GT (x, b1);
+
+ do1:
+ a3 = ((op_t *) srcp1)[3];
+ b3 = ((op_t *) srcp2)[3];
+ x = MERGE(a1, shl, a2, shr);
+ if (x != b2)
+ return CMP_LT_OR_GT (x, b2);
+
+ srcp1 += 4 * OPSIZ;
+ srcp2 += 4 * OPSIZ;
+ len -= 4;
+ }
+ while (len != 0);
+
+ /* This is the right position for do0. Please don't move
+ it into the loop. */
+ do0:
+ x = MERGE(a2, shl, a3, shr);
+ if (x != b3)
+ return CMP_LT_OR_GT (x, b3);
+ return 0;
+}
+
+int
+rpl_memcmp (const void *s1, const void *s2, size_t len)
+{
+ op_t a0;
+ op_t b0;
+ long int srcp1 = (long int) s1;
+ long int srcp2 = (long int) s2;
+ op_t res;
+
+ if (len >= OP_T_THRES)
+ {
+ /* There are at least some bytes to compare. No need to test
+ for LEN == 0 in this alignment loop. */
+ while (srcp2 % OPSIZ != 0)
+ {
+ a0 = ((byte *) srcp1)[0];
+ b0 = ((byte *) srcp2)[0];
+ srcp1 += 1;
+ srcp2 += 1;
+ res = a0 - b0;
+ if (res != 0)
+ return res;
+ len -= 1;
+ }
+
+ /* SRCP2 is now aligned for memory operations on `op_t'.
+ SRCP1 alignment determines if we can do a simple,
+ aligned compare or need to shuffle bits. */
+
+ if (srcp1 % OPSIZ == 0)
+ res = memcmp_common_alignment (srcp1, srcp2, len / OPSIZ);
+ else
+ res = memcmp_not_common_alignment (srcp1, srcp2, len / OPSIZ);
+ if (res != 0)
+ return res;
+
+ /* Number of bytes remaining in the interval [0..OPSIZ-1]. */
+ srcp1 += len & -OPSIZ;
+ srcp2 += len & -OPSIZ;
+ len %= OPSIZ;
+ }
+
+ /* There are just a few bytes to compare. Use byte memory operations. */
+ while (len != 0)
+ {
+ a0 = ((byte *) srcp1)[0];
+ b0 = ((byte *) srcp2)[0];
+ srcp1 += 1;
+ srcp2 += 1;
+ res = a0 - b0;
+ if (res != 0)
+ return res;
+ len -= 1;
+ }
+
+ return 0;
+}
+
+#ifdef weak_alias
+# undef bcmp
+weak_alias (memcmp, bcmp)
+#endif