mirror of
https://git.savannah.gnu.org/git/gnulib.git
synced 2025-08-20 11:01:20 +03:00
276 lines
12 KiB
C
276 lines
12 KiB
C
/* Test intprops.h.
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Copyright (C) 2011-2012 Free Software Foundation, Inc.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program 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 this program. If not, see <http://www.gnu.org/licenses/>. */
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/* Written by Paul Eggert. */
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/* Tell gcc not to warn about the many (X < 0) expressions that
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the overflow macros expand to. */
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#if (__GNUC__ == 4 && 3 <= __GNUC_MINOR__) || 4 < __GNUC__
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# pragma GCC diagnostic ignored "-Wtype-limits"
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#endif
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#include <config.h>
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#include "intprops.h"
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#include "verify.h"
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#include <stdbool.h>
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#include <inttypes.h>
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#include "macros.h"
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/* VERIFY (X) uses a static assertion for compilers that are known to work,
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and falls back on a dynamic assertion for other compilers.
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These tests should be checkable via 'verify' rather than 'ASSERT', but
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using 'verify' would run into a bug with HP-UX 11.23 cc; see
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<http://lists.gnu.org/archive/html/bug-gnulib/2011-05/msg00401.html>. */
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#if __GNUC__ || __SUNPRO_C
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# define VERIFY(x) do { verify (x); } while (0)
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#else
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# define VERIFY(x) ASSERT (x)
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#endif
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int
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main (void)
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{
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/* Use VERIFY for tests that must be integer constant expressions,
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ASSERT otherwise. */
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/* TYPE_IS_INTEGER. */
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ASSERT (TYPE_IS_INTEGER (bool));
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ASSERT (TYPE_IS_INTEGER (char));
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ASSERT (TYPE_IS_INTEGER (signed char));
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ASSERT (TYPE_IS_INTEGER (unsigned char));
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ASSERT (TYPE_IS_INTEGER (short int));
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ASSERT (TYPE_IS_INTEGER (unsigned short int));
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ASSERT (TYPE_IS_INTEGER (int));
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ASSERT (TYPE_IS_INTEGER (unsigned int));
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ASSERT (TYPE_IS_INTEGER (long int));
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ASSERT (TYPE_IS_INTEGER (unsigned long int));
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ASSERT (TYPE_IS_INTEGER (intmax_t));
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ASSERT (TYPE_IS_INTEGER (uintmax_t));
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ASSERT (! TYPE_IS_INTEGER (float));
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ASSERT (! TYPE_IS_INTEGER (double));
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ASSERT (! TYPE_IS_INTEGER (long double));
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/* TYPE_SIGNED. */
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/* VERIFY (! TYPE_SIGNED (bool)); // not guaranteed by gnulib substitute */
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VERIFY (TYPE_SIGNED (signed char));
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VERIFY (! TYPE_SIGNED (unsigned char));
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VERIFY (TYPE_SIGNED (short int));
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VERIFY (! TYPE_SIGNED (unsigned short int));
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VERIFY (TYPE_SIGNED (int));
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VERIFY (! TYPE_SIGNED (unsigned int));
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VERIFY (TYPE_SIGNED (long int));
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VERIFY (! TYPE_SIGNED (unsigned long int));
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VERIFY (TYPE_SIGNED (intmax_t));
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VERIFY (! TYPE_SIGNED (uintmax_t));
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ASSERT (TYPE_SIGNED (float));
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ASSERT (TYPE_SIGNED (double));
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ASSERT (TYPE_SIGNED (long double));
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/* Integer representation. */
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VERIFY (INT_MIN + INT_MAX < 0
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? (TYPE_TWOS_COMPLEMENT (int)
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&& ! TYPE_ONES_COMPLEMENT (int) && ! TYPE_SIGNED_MAGNITUDE (int))
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: (! TYPE_TWOS_COMPLEMENT (int)
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&& (TYPE_ONES_COMPLEMENT (int) || TYPE_SIGNED_MAGNITUDE (int))));
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/* TYPE_MINIMUM, TYPE_MAXIMUM. */
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VERIFY (TYPE_MINIMUM (char) == CHAR_MIN);
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VERIFY (TYPE_MAXIMUM (char) == CHAR_MAX);
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VERIFY (TYPE_MINIMUM (unsigned char) == 0);
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VERIFY (TYPE_MAXIMUM (unsigned char) == UCHAR_MAX);
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VERIFY (TYPE_MINIMUM (signed char) == SCHAR_MIN);
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VERIFY (TYPE_MAXIMUM (signed char) == SCHAR_MAX);
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VERIFY (TYPE_MINIMUM (short int) == SHRT_MIN);
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VERIFY (TYPE_MAXIMUM (short int) == SHRT_MAX);
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VERIFY (TYPE_MINIMUM (unsigned short int) == 0);
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VERIFY (TYPE_MAXIMUM (unsigned short int) == USHRT_MAX);
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VERIFY (TYPE_MINIMUM (int) == INT_MIN);
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VERIFY (TYPE_MAXIMUM (int) == INT_MAX);
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VERIFY (TYPE_MINIMUM (unsigned int) == 0);
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VERIFY (TYPE_MAXIMUM (unsigned int) == UINT_MAX);
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VERIFY (TYPE_MINIMUM (long int) == LONG_MIN);
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VERIFY (TYPE_MAXIMUM (long int) == LONG_MAX);
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VERIFY (TYPE_MINIMUM (unsigned long int) == 0);
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VERIFY (TYPE_MAXIMUM (unsigned long int) == ULONG_MAX);
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VERIFY (TYPE_MINIMUM (intmax_t) == INTMAX_MIN);
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VERIFY (TYPE_MAXIMUM (intmax_t) == INTMAX_MAX);
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VERIFY (TYPE_MINIMUM (uintmax_t) == 0);
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VERIFY (TYPE_MAXIMUM (uintmax_t) == UINTMAX_MAX);
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/* INT_BITS_STRLEN_BOUND. */
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VERIFY (INT_BITS_STRLEN_BOUND (1) == 1);
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VERIFY (INT_BITS_STRLEN_BOUND (2620) == 789);
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/* INT_STRLEN_BOUND, INT_BUFSIZE_BOUND. */
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#ifdef INT32_MAX /* POSIX guarantees int32_t; this ports to non-POSIX. */
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VERIFY (INT_STRLEN_BOUND (int32_t) == sizeof ("-2147483648") - 1);
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VERIFY (INT_BUFSIZE_BOUND (int32_t) == sizeof ("-2147483648"));
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#endif
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#ifdef INT64_MAX
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VERIFY (INT_STRLEN_BOUND (int64_t) == sizeof ("-9223372036854775808") - 1);
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VERIFY (INT_BUFSIZE_BOUND (int64_t) == sizeof ("-9223372036854775808"));
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#endif
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/* All the INT_<op>_RANGE_OVERFLOW tests are equally valid as
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INT_<op>_OVERFLOW tests, so define a single macro to do both. */
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#define CHECK_BINOP(op, a, b, min, max, overflow) \
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(INT_##op##_RANGE_OVERFLOW (a, b, min, max) == (overflow) \
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&& INT_##op##_OVERFLOW (a, b) == (overflow))
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#define CHECK_UNOP(op, a, min, max, overflow) \
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(INT_##op##_RANGE_OVERFLOW (a, min, max) == (overflow) \
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&& INT_##op##_OVERFLOW (a) == (overflow))
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/* INT_<op>_RANGE_OVERFLOW, INT_<op>_OVERFLOW. */
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VERIFY (INT_ADD_RANGE_OVERFLOW (INT_MAX, 1, INT_MIN, INT_MAX));
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VERIFY (INT_ADD_OVERFLOW (INT_MAX, 1));
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VERIFY (CHECK_BINOP (ADD, INT_MAX, 1, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (ADD, INT_MAX, -1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (ADD, INT_MIN, 1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (ADD, INT_MIN, -1, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (ADD, UINT_MAX, 1u, 0u, UINT_MAX, true));
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VERIFY (CHECK_BINOP (ADD, 0u, 1u, 0u, UINT_MAX, false));
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VERIFY (CHECK_BINOP (SUBTRACT, INT_MAX, 1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (SUBTRACT, INT_MAX, -1, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (SUBTRACT, INT_MIN, 1, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (SUBTRACT, INT_MIN, -1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (SUBTRACT, UINT_MAX, 1u, 0u, UINT_MAX, false));
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VERIFY (CHECK_BINOP (SUBTRACT, 0u, 1u, 0u, UINT_MAX, true));
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VERIFY (CHECK_UNOP (NEGATE, INT_MIN, INT_MIN, INT_MAX,
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TYPE_TWOS_COMPLEMENT (int)));
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VERIFY (CHECK_UNOP (NEGATE, 0, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_UNOP (NEGATE, INT_MAX, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_UNOP (NEGATE, 0u, 0u, UINT_MAX, false));
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VERIFY (CHECK_UNOP (NEGATE, 1u, 0u, UINT_MAX, true));
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VERIFY (CHECK_UNOP (NEGATE, UINT_MAX, 0u, UINT_MAX, true));
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VERIFY (CHECK_BINOP (MULTIPLY, INT_MAX, INT_MAX, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (MULTIPLY, INT_MAX, INT_MIN, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (MULTIPLY, INT_MIN, INT_MAX, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (MULTIPLY, INT_MIN, INT_MIN, INT_MIN, INT_MAX, true));
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VERIFY (CHECK_BINOP (MULTIPLY, -1, INT_MIN, INT_MIN, INT_MAX,
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INT_NEGATE_OVERFLOW (INT_MIN)));
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VERIFY (CHECK_BINOP (MULTIPLY, LONG_MIN / INT_MAX, (long int) INT_MAX,
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LONG_MIN, LONG_MIN, false));
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VERIFY (CHECK_BINOP (DIVIDE, INT_MIN, -1, INT_MIN, INT_MAX,
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INT_NEGATE_OVERFLOW (INT_MIN)));
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VERIFY (CHECK_BINOP (DIVIDE, INT_MAX, 1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (DIVIDE, (unsigned int) INT_MIN,
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-1u, 0u, UINT_MAX, false));
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VERIFY (CHECK_BINOP (REMAINDER, INT_MIN, -1, INT_MIN, INT_MAX,
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INT_NEGATE_OVERFLOW (INT_MIN)));
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VERIFY (CHECK_BINOP (REMAINDER, INT_MAX, 1, INT_MIN, INT_MAX, false));
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VERIFY (CHECK_BINOP (REMAINDER, (unsigned int) INT_MIN,
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-1u, 0u, UINT_MAX, false));
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VERIFY (CHECK_BINOP (LEFT_SHIFT, UINT_MAX, 1, 0u, UINT_MAX, true));
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VERIFY (CHECK_BINOP (LEFT_SHIFT, UINT_MAX / 2 + 1, 1, 0u, UINT_MAX, true));
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VERIFY (CHECK_BINOP (LEFT_SHIFT, UINT_MAX / 2, 1, 0u, UINT_MAX, false));
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/* INT_<op>_OVERFLOW with mixed types. */
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#define CHECK_SUM(a, b, overflow) \
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VERIFY (INT_ADD_OVERFLOW (a, b) == (overflow)); \
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VERIFY (INT_ADD_OVERFLOW (b, a) == (overflow))
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CHECK_SUM (-1, LONG_MIN, true);
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CHECK_SUM (-1, UINT_MAX, false);
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CHECK_SUM (-1L, INT_MIN, INT_MIN == LONG_MIN);
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CHECK_SUM (0u, -1, true);
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CHECK_SUM (0u, 0, false);
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CHECK_SUM (0u, 1, false);
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CHECK_SUM (1, LONG_MAX, true);
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CHECK_SUM (1, UINT_MAX, true);
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CHECK_SUM (1L, INT_MAX, INT_MAX == LONG_MAX);
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CHECK_SUM (1u, INT_MAX, INT_MAX == UINT_MAX);
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CHECK_SUM (1u, INT_MIN, true);
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VERIFY (! INT_SUBTRACT_OVERFLOW (INT_MAX, 1u));
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VERIFY (! INT_SUBTRACT_OVERFLOW (UINT_MAX, 1));
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VERIFY (! INT_SUBTRACT_OVERFLOW (0u, -1));
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VERIFY (INT_SUBTRACT_OVERFLOW (UINT_MAX, -1));
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VERIFY (INT_SUBTRACT_OVERFLOW (INT_MIN, 1u));
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VERIFY (INT_SUBTRACT_OVERFLOW (-1, 0u));
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#define CHECK_PRODUCT(a, b, overflow) \
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VERIFY (INT_MULTIPLY_OVERFLOW (a, b) == (overflow)); \
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VERIFY (INT_MULTIPLY_OVERFLOW (b, a) == (overflow))
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CHECK_PRODUCT (-1, 1u, true);
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CHECK_PRODUCT (-1, INT_MIN, INT_NEGATE_OVERFLOW (INT_MIN));
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CHECK_PRODUCT (-1, UINT_MAX, true);
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CHECK_PRODUCT (-12345, LONG_MAX / -12345 - 1, true);
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CHECK_PRODUCT (-12345, LONG_MAX / -12345, false);
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CHECK_PRODUCT (0, -1, false);
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CHECK_PRODUCT (0, 0, false);
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CHECK_PRODUCT (0, 0u, false);
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CHECK_PRODUCT (0, 1, false);
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CHECK_PRODUCT (0, INT_MAX, false);
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CHECK_PRODUCT (0, INT_MIN, false);
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CHECK_PRODUCT (0, UINT_MAX, false);
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CHECK_PRODUCT (0u, -1, false);
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CHECK_PRODUCT (0u, 0, false);
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CHECK_PRODUCT (0u, 0u, false);
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CHECK_PRODUCT (0u, 1, false);
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CHECK_PRODUCT (0u, INT_MAX, false);
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CHECK_PRODUCT (0u, INT_MIN, false);
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CHECK_PRODUCT (0u, UINT_MAX, false);
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CHECK_PRODUCT (1, INT_MAX, false);
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CHECK_PRODUCT (1, INT_MIN, false);
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CHECK_PRODUCT (1, UINT_MAX, false);
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CHECK_PRODUCT (1u, INT_MIN, true);
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CHECK_PRODUCT (1u, INT_MAX, UINT_MAX < INT_MAX);
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CHECK_PRODUCT (INT_MAX, UINT_MAX, true);
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CHECK_PRODUCT (INT_MAX, ULONG_MAX, true);
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CHECK_PRODUCT (INT_MIN, LONG_MAX / INT_MIN - 1, true);
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CHECK_PRODUCT (INT_MIN, LONG_MAX / INT_MIN, false);
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CHECK_PRODUCT (INT_MIN, UINT_MAX, true);
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CHECK_PRODUCT (INT_MIN, ULONG_MAX, true);
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VERIFY (INT_DIVIDE_OVERFLOW (INT_MIN, -1L)
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== (TYPE_TWOS_COMPLEMENT (long int) && INT_MIN == LONG_MIN));
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VERIFY (! INT_DIVIDE_OVERFLOW (INT_MIN, UINT_MAX));
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VERIFY (! INT_DIVIDE_OVERFLOW (INTMAX_MIN, UINTMAX_MAX));
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VERIFY (! INT_DIVIDE_OVERFLOW (INTMAX_MIN, UINT_MAX));
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VERIFY (INT_DIVIDE_OVERFLOW (-11, 10u));
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VERIFY (INT_DIVIDE_OVERFLOW (-10, 10u));
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VERIFY (! INT_DIVIDE_OVERFLOW (-9, 10u));
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VERIFY (INT_DIVIDE_OVERFLOW (11u, -10));
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VERIFY (INT_DIVIDE_OVERFLOW (10u, -10));
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VERIFY (! INT_DIVIDE_OVERFLOW (9u, -10));
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VERIFY (INT_REMAINDER_OVERFLOW (INT_MIN, -1L)
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== (TYPE_TWOS_COMPLEMENT (long int) && INT_MIN == LONG_MIN));
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VERIFY (INT_REMAINDER_OVERFLOW (-1, UINT_MAX));
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VERIFY (INT_REMAINDER_OVERFLOW ((intmax_t) -1, UINTMAX_MAX));
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VERIFY (INT_REMAINDER_OVERFLOW (INTMAX_MIN, UINT_MAX)
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== (INTMAX_MAX < UINT_MAX
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&& - (unsigned int) INTMAX_MIN % UINT_MAX != 0));
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VERIFY (INT_REMAINDER_OVERFLOW (INT_MIN, ULONG_MAX)
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== (INT_MIN % ULONG_MAX != 1));
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VERIFY (! INT_REMAINDER_OVERFLOW (1u, -1));
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VERIFY (! INT_REMAINDER_OVERFLOW (37*39u, -39));
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VERIFY (INT_REMAINDER_OVERFLOW (37*39u + 1, -39));
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VERIFY (INT_REMAINDER_OVERFLOW (37*39u - 1, -39));
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VERIFY (! INT_REMAINDER_OVERFLOW (LONG_MAX, -INT_MAX));
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return 0;
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}
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