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Also add --conditional-dependencies to the flags. See: https://lists.gnu.org/archive/html/guile-devel/2016-07/msg00012.html
142 lines
4.4 KiB
Text
142 lines
4.4 KiB
Text
# round.m4 serial 16
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dnl Copyright (C) 2007, 2009-2016 Free Software Foundation, Inc.
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dnl This file is free software; the Free Software Foundation
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dnl gives unlimited permission to copy and/or distribute it,
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dnl with or without modifications, as long as this notice is preserved.
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AC_DEFUN([gl_FUNC_ROUND],
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[
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m4_divert_text([DEFAULTS], [gl_round_required=plain])
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AC_REQUIRE([gl_MATH_H_DEFAULTS])
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dnl Persuade glibc <math.h> to declare round().
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AC_REQUIRE([gl_USE_SYSTEM_EXTENSIONS])
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gl_CHECK_MATH_LIB([ROUND_LIBM], [x = round (x);],
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[extern
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#ifdef __cplusplus
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"C"
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#endif
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double round (double);
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])
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if test "$ROUND_LIBM" != missing; then
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HAVE_ROUND=1
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dnl Also check whether it's declared.
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dnl IRIX 6.5 has round() in libm but doesn't declare it in <math.h>.
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AC_CHECK_DECLS([round], , [HAVE_DECL_ROUND=0], [[#include <math.h>]])
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dnl Test whether round() produces correct results. On NetBSD 3.0, for
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dnl x = 1/2 - 2^-54, the system's round() returns a wrong result.
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AC_REQUIRE([AC_PROG_CC])
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AC_REQUIRE([AC_CANONICAL_HOST]) dnl for cross-compiles
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AC_CACHE_CHECK([whether round works], [gl_cv_func_round_works],
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[
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save_LIBS="$LIBS"
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LIBS="$LIBS $ROUND_LIBM"
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AC_RUN_IFELSE([AC_LANG_SOURCE([[
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#include <float.h>
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#include <math.h>
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extern
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#ifdef __cplusplus
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"C"
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#endif
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double round (double);
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#ifdef _MSC_VER
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# pragma fenv_access (off)
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#endif
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int main()
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{
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/* 2^DBL_MANT_DIG. */
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static const double TWO_MANT_DIG =
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/* Assume DBL_MANT_DIG <= 5 * 31.
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Use the identity
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n = floor(n/5) + floor((n+1)/5) + ... + floor((n+4)/5). */
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(double) (1U << (DBL_MANT_DIG / 5))
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* (double) (1U << ((DBL_MANT_DIG + 1) / 5))
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* (double) (1U << ((DBL_MANT_DIG + 2) / 5))
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* (double) (1U << ((DBL_MANT_DIG + 3) / 5))
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* (double) (1U << ((DBL_MANT_DIG + 4) / 5));
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volatile double x = 0.5 - 0.5 / TWO_MANT_DIG;
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exit (x < 0.5 && round (x) != 0.0);
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}]])], [gl_cv_func_round_works=yes], [gl_cv_func_round_works=no],
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[case "$host_os" in
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netbsd* | aix*) gl_cv_func_round_works="guessing no";;
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*) gl_cv_func_round_works="guessing yes";;
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esac
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])
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LIBS="$save_LIBS"
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])
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case "$gl_cv_func_round_works" in
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*no) REPLACE_ROUND=1 ;;
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esac
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m4_ifdef([gl_FUNC_ROUND_IEEE], [
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if test $gl_round_required = ieee && test $REPLACE_ROUND = 0; then
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AC_REQUIRE([AC_CANONICAL_HOST]) dnl for cross-compiles
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AC_CACHE_CHECK([whether round works according to ISO C 99 with IEC 60559],
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[gl_cv_func_round_ieee],
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[
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save_LIBS="$LIBS"
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LIBS="$LIBS $ROUND_LIBM"
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AC_RUN_IFELSE(
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[AC_LANG_SOURCE([[
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#ifndef __NO_MATH_INLINES
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# define __NO_MATH_INLINES 1 /* for glibc */
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#endif
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#include <math.h>
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extern
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#ifdef __cplusplus
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"C"
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#endif
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double round (double);
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]gl_DOUBLE_MINUS_ZERO_CODE[
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]gl_DOUBLE_SIGNBIT_CODE[
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static double dummy (double f) { return 0; }
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int main (int argc, char *argv[])
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{
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double (*my_round) (double) = argc ? round : dummy;
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/* Test whether round (-0.0) is -0.0. */
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if (signbitd (minus_zerod) && !signbitd (my_round (minus_zerod)))
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return 1;
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return 0;
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}
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]])],
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[gl_cv_func_round_ieee=yes],
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[gl_cv_func_round_ieee=no],
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[case "$host_os" in
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# Guess yes on glibc systems.
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*-gnu*) gl_cv_func_round_ieee="guessing yes" ;;
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# If we don't know, assume the worst.
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*) gl_cv_func_round_ieee="guessing no" ;;
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esac
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])
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LIBS="$save_LIBS"
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])
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case "$gl_cv_func_round_ieee" in
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*yes) ;;
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*) REPLACE_ROUND=1 ;;
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esac
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fi
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])
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else
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HAVE_ROUND=0
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HAVE_DECL_ROUND=0
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fi
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if test $HAVE_ROUND = 0 || test $REPLACE_ROUND = 1; then
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dnl Find libraries needed to link lib/round.c.
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gl_FUNC_FLOOR_LIBS
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gl_FUNC_CEIL_LIBS
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ROUND_LIBM=
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dnl Append $FLOOR_LIBM to ROUND_LIBM, avoiding gratuitous duplicates.
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case " $ROUND_LIBM " in
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*" $FLOOR_LIBM "*) ;;
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*) ROUND_LIBM="$ROUND_LIBM $FLOOR_LIBM" ;;
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esac
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dnl Append $CEIL_LIBM to ROUND_LIBM, avoiding gratuitous duplicates.
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case " $ROUND_LIBM " in
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*" $CEIL_LIBM "*) ;;
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*) ROUND_LIBM="$ROUND_LIBM $CEIL_LIBM" ;;
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esac
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fi
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AC_SUBST([ROUND_LIBM])
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])
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