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525 lines
11 KiB
C
525 lines
11 KiB
C
/* Test and measure memcmp functions.
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Copyright (C) 1999-2013 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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Written by Jakub Jelinek <jakub@redhat.com>, 1999.
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Added wmemcmp support by Liubov Dmitrieva <liubov.dmitrieva@gmail.com>, 2011.
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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The GNU C 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 GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with the GNU C Library; if not, see
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<http://www.gnu.org/licenses/>. */
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#define TEST_MAIN
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#ifdef WIDE
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# define TEST_NAME "wmemcmp"
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#else
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# define TEST_NAME "memcmp"
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#endif
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#include "test-string.h"
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#ifdef WIDE
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# include <inttypes.h>
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# include <wchar.h>
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# define MEMCMP wmemcmp
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# define MEMCPY wmemcpy
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# define SIMPLE_MEMCMP simple_wmemcmp
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# define CHAR wchar_t
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# define UCHAR wchar_t
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# define CHARBYTES 4
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# define CHAR__MIN WCHAR_MIN
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# define CHAR__MAX WCHAR_MAX
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int
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simple_wmemcmp (const wchar_t *s1, const wchar_t *s2, size_t n)
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{
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int ret = 0;
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/* Warning!
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wmemcmp has to use SIGNED comparison for elements.
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memcmp has to use UNSIGNED comparison for elemnts.
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*/
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while (n-- && (ret = *s1 < *s2 ? -1 : *s1 == *s2 ? 0 : 1) == 0) {s1++; s2++;}
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return ret;
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}
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#else
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# include <limits.h>
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# define MEMCMP memcmp
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# define MEMCPY memcpy
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# define SIMPLE_MEMCMP simple_memcmp
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# define CHAR char
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# define MAX_CHAR 255
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# define UCHAR unsigned char
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# define CHARBYTES 1
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# define CHAR__MIN CHAR_MIN
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# define CHAR__MAX CHAR_MAX
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int
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simple_memcmp (const char *s1, const char *s2, size_t n)
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{
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int ret = 0;
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while (n-- && (ret = *(unsigned char *) s1++ - *(unsigned char *) s2++) == 0);
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return ret;
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}
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#endif
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typedef int (*proto_t) (const CHAR *, const CHAR *, size_t);
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IMPL (SIMPLE_MEMCMP, 0)
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IMPL (MEMCMP, 1)
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static int
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check_result (impl_t *impl, const CHAR *s1, const CHAR *s2, size_t len,
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int exp_result)
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{
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int result = CALL (impl, s1, s2, len);
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if ((exp_result == 0 && result != 0)
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|| (exp_result < 0 && result >= 0)
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|| (exp_result > 0 && result <= 0))
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{
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error (0, 0, "Wrong result in function %s %d %d", impl->name,
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result, exp_result);
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ret = 1;
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return -1;
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}
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return 0;
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}
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static void
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do_one_test (impl_t *impl, const CHAR *s1, const CHAR *s2, size_t len,
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int exp_result)
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{
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if (check_result (impl, s1, s2, len, exp_result) < 0)
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return;
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}
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static void
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do_test (size_t align1, size_t align2, size_t len, int exp_result)
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{
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size_t i;
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CHAR *s1, *s2;
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if (len == 0)
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return;
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align1 &= 63;
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if (align1 + (len + 1) * CHARBYTES >= page_size)
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return;
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align2 &= 63;
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if (align2 + (len + 1) * CHARBYTES >= page_size)
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return;
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s1 = (CHAR *) (buf1 + align1);
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s2 = (CHAR *) (buf2 + align2);
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for (i = 0; i < len; i++)
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s1[i] = s2[i] = 1 + (23 << ((CHARBYTES - 1) * 8)) * i % CHAR__MAX;
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s1[len] = align1;
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s2[len] = align2;
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s2[len - 1] -= exp_result;
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FOR_EACH_IMPL (impl, 0)
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do_one_test (impl, s1, s2, len, exp_result);
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}
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static void
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do_random_tests (void)
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{
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size_t i, j, n, align1, align2, pos, len;
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int result;
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long r;
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UCHAR *p1 = (UCHAR *) (buf1 + page_size - 512 * CHARBYTES);
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UCHAR *p2 = (UCHAR *) (buf2 + page_size - 512 * CHARBYTES);
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for (n = 0; n < ITERATIONS; n++)
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{
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align1 = random () & 31;
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if (random () & 1)
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align2 = random () & 31;
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else
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align2 = align1 + (random () & 24);
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pos = random () & 511;
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j = align1;
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if (align2 > j)
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j = align2;
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if (pos + j >= 512)
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pos = 511 - j - (random () & 7);
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len = random () & 511;
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if (len + j >= 512)
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len = 511 - j - (random () & 7);
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j = len + align1 + 64;
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if (j > 512) j = 512;
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for (i = 0; i < j; ++i)
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p1[i] = random () & 255;
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for (i = 0; i < j; ++i)
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p2[i] = random () & 255;
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result = 0;
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if (pos >= len)
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MEMCPY ((CHAR *) p2 + align2, (const CHAR *) p1 + align1, len);
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else
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{
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MEMCPY ((CHAR *) p2 + align2, (const CHAR *) p1 + align1, pos);
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if (p2[align2 + pos] == p1[align1 + pos])
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{
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p2[align2 + pos] = random () & 255;
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if (p2[align2 + pos] == p1[align1 + pos])
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p2[align2 + pos] = p1[align1 + pos] + 3 + (random () & 127);
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}
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if (p1[align1 + pos] < p2[align2 + pos])
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result = -1;
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else
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result = 1;
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}
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FOR_EACH_IMPL (impl, 1)
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{
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r = CALL (impl, (CHAR *) p1 + align1, (const CHAR *) p2 + align2,
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len);
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if ((r == 0 && result)
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|| (r < 0 && result >= 0)
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|| (r > 0 && result <= 0))
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{
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error (0, 0, "Iteration %zd - wrong result in function %s (%zd, %zd, %zd, %zd) %ld != %d, p1 %p p2 %p",
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n, impl->name, align1 * CHARBYTES & 63, align2 * CHARBYTES & 63, len, pos, r, result, p1, p2);
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ret = 1;
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}
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}
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}
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}
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static void
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check1 (void)
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{
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CHAR s1[116], s2[116];
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int n, exp_result;
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s1[0] = -108;
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s2[0] = -108;
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s1[1] = 99;
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s2[1] = 99;
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s1[2] = -113;
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s2[2] = -113;
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s1[3] = 1;
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s2[3] = 1;
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s1[4] = 116;
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s2[4] = 116;
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s1[5] = 99;
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s2[5] = 99;
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s1[6] = -113;
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s2[6] = -113;
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s1[7] = 1;
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s2[7] = 1;
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s1[8] = 84;
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s2[8] = 84;
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s1[9] = 99;
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s2[9] = 99;
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s1[10] = -113;
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s2[10] = -113;
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s1[11] = 1;
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s2[11] = 1;
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s1[12] = 52;
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s2[12] = 52;
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s1[13] = 99;
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s2[13] = 99;
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s1[14] = -113;
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s2[14] = -113;
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s1[15] = 1;
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s2[15] = 1;
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s1[16] = -76;
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s2[16] = -76;
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s1[17] = -14;
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s2[17] = -14;
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s1[18] = -109;
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s2[18] = -109;
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s1[19] = 1;
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s2[19] = 1;
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s1[20] = -108;
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s2[20] = -108;
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s1[21] = -14;
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s2[21] = -14;
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s1[22] = -109;
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s2[22] = -109;
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s1[23] = 1;
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s2[23] = 1;
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s1[24] = 84;
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s2[24] = 84;
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s1[25] = -15;
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s2[25] = -15;
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s1[26] = -109;
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s2[26] = -109;
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s1[27] = 1;
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s2[27] = 1;
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s1[28] = 52;
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s2[28] = 52;
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s1[29] = -15;
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s2[29] = -15;
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s1[30] = -109;
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s2[30] = -109;
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s1[31] = 1;
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s2[31] = 1;
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s1[32] = 20;
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s2[32] = 20;
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s1[33] = -15;
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s2[33] = -15;
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s1[34] = -109;
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s2[34] = -109;
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s1[35] = 1;
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s2[35] = 1;
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s1[36] = 20;
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s2[36] = 20;
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s1[37] = -14;
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s2[37] = -14;
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s1[38] = -109;
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s2[38] = -109;
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s1[39] = 1;
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s2[39] = 1;
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s1[40] = 52;
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s2[40] = 52;
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s1[41] = -14;
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s2[41] = -14;
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s1[42] = -109;
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s2[42] = -109;
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s1[43] = 1;
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s2[43] = 1;
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s1[44] = 84;
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s2[44] = 84;
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s1[45] = -14;
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s2[45] = -14;
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s1[46] = -109;
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s2[46] = -109;
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s1[47] = 1;
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s2[47] = 1;
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s1[48] = 116;
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s2[48] = 116;
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s1[49] = -14;
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s2[49] = -14;
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s1[50] = -109;
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s2[50] = -109;
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s1[51] = 1;
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s2[51] = 1;
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s1[52] = 116;
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s2[52] = 116;
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s1[53] = -15;
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s2[53] = -15;
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s1[54] = -109;
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s2[54] = -109;
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s1[55] = 1;
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s2[55] = 1;
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s1[56] = -44;
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s2[56] = -44;
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s1[57] = -14;
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s2[57] = -14;
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s1[58] = -109;
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s2[58] = -109;
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s1[59] = 1;
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s2[59] = 1;
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s1[60] = -108;
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s2[60] = -108;
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s1[61] = -15;
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s2[61] = -15;
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s1[62] = -109;
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s2[62] = -109;
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s1[63] = 1;
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s2[63] = 1;
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s1[64] = -76;
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s2[64] = -76;
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s1[65] = -15;
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s2[65] = -15;
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s1[66] = -109;
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s2[66] = -109;
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s1[67] = 1;
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s2[67] = 1;
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s1[68] = -44;
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s2[68] = -44;
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s1[69] = -15;
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s2[69] = -15;
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s1[70] = -109;
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s2[70] = -109;
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s1[71] = 1;
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s2[71] = 1;
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s1[72] = -12;
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s2[72] = -12;
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s1[73] = -15;
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s2[73] = -15;
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s1[74] = -109;
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s2[74] = -109;
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s1[75] = 1;
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s2[75] = 1;
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s1[76] = -12;
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s2[76] = -12;
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s1[77] = -14;
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s2[77] = -14;
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s1[78] = -109;
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s2[78] = -109;
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s1[79] = 1;
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s2[79] = 1;
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s1[80] = 20;
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s2[80] = -68;
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s1[81] = -12;
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s2[81] = 64;
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s1[82] = -109;
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s2[82] = -106;
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s1[83] = 1;
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s2[83] = 1;
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s1[84] = -12;
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s2[84] = -12;
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s1[85] = -13;
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s2[85] = -13;
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s1[86] = -109;
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s2[86] = -109;
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s1[87] = 1;
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s2[87] = 1;
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s1[88] = -44;
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s2[88] = -44;
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s1[89] = -13;
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s2[89] = -13;
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s1[90] = -109;
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s2[90] = -109;
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s1[91] = 1;
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s2[91] = 1;
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s1[92] = -76;
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s2[92] = -76;
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s1[93] = -13;
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s2[93] = -13;
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s1[94] = -109;
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s2[94] = -109;
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s1[95] = 1;
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s2[95] = 1;
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s1[96] = -108;
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s2[96] = -108;
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s1[97] = -13;
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s2[97] = -13;
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s1[98] = -109;
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s2[98] = -109;
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s1[99] = 1;
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s2[99] = 1;
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s1[100] = 116;
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s2[100] = 116;
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s1[101] = CHAR__MIN;
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s2[101] = CHAR__MAX;
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s1[102] = -109;
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s2[102] = -109;
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s1[103] = 1;
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s2[103] = 1;
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s1[104] = 84;
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s2[104] = 84;
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s1[105] = -13;
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s2[105] = -13;
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s1[106] = -109;
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s2[106] = -109;
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s1[107] = 1;
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s2[107] = 1;
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s1[108] = 52;
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s2[108] = 52;
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s1[109] = -13;
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s2[109] = -13;
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s1[110] = -109;
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s2[110] = -109;
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s1[111] = 1;
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s2[111] = 1;
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s1[112] = CHAR__MAX;
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s2[112] = CHAR__MIN;
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s1[113] = -13;
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s2[113] = -13;
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s1[114] = -109;
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s2[114] = -109;
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s1[115] = 1;
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s2[115] = 1;
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n = 116;
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for (size_t i = 0; i < n; i++)
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{
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exp_result = SIMPLE_MEMCMP (s1 + i, s2 + i, n - i);
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FOR_EACH_IMPL (impl, 0)
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check_result (impl, s1 + i, s2 + i, n - i, exp_result);
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}
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}
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/* This test checks that memcmp doesn't overrun buffers. */
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static void
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check2 (void)
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{
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size_t max_length = page_size / sizeof (CHAR);
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/* Initialize buf2 to the same values as buf1. The bug requires the
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last compared byte to be different. */
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memcpy (buf2, buf1, page_size);
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((char *) buf2)[page_size - 1] ^= 0x11;
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for (size_t length = 1; length < max_length; length++)
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{
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CHAR *s1 = (CHAR *) buf1 + max_length - length;
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CHAR *s2 = (CHAR *) buf2 + max_length - length;
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const int exp_result = SIMPLE_MEMCMP (s1, s2, length);
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FOR_EACH_IMPL (impl, 0)
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check_result (impl, s1, s2, length, exp_result);
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}
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}
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int
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test_main (void)
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{
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size_t i;
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test_init ();
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check1 ();
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check2 ();
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printf ("%23s", "");
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FOR_EACH_IMPL (impl, 0)
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printf ("\t%s", impl->name);
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putchar ('\n');
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for (i = 1; i < 16; ++i)
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{
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do_test (i * CHARBYTES, i * CHARBYTES, i, 0);
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do_test (i * CHARBYTES, i * CHARBYTES, i, 1);
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do_test (i * CHARBYTES, i * CHARBYTES, i, -1);
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}
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for (i = 0; i < 16; ++i)
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{
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do_test (0, 0, i, 0);
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do_test (0, 0, i, 1);
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do_test (0, 0, i, -1);
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}
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for (i = 1; i < 10; ++i)
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{
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do_test (0, 0, 2 << i, 0);
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do_test (0, 0, 2 << i, 1);
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do_test (0, 0, 2 << i, -1);
|
|
do_test (0, 0, 16 << i, 0);
|
|
do_test ((8 - i) * CHARBYTES, (2 * i) * CHARBYTES, 16 << i, 0);
|
|
do_test (0, 0, 16 << i, 1);
|
|
do_test (0, 0, 16 << i, -1);
|
|
}
|
|
|
|
for (i = 1; i < 8; ++i)
|
|
{
|
|
do_test (i * CHARBYTES, 2 * (i * CHARBYTES), 8 << i, 0);
|
|
do_test (i * CHARBYTES, 2 * (i * CHARBYTES), 8 << i, 1);
|
|
do_test (i * CHARBYTES, 2 * (i * CHARBYTES), 8 << i, -1);
|
|
}
|
|
|
|
do_random_tests ();
|
|
return ret;
|
|
}
|
|
#include "../test-skeleton.c"
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