570 lines
12 KiB
C
570 lines
12 KiB
C
/* Functions for controlling the floating-point rounding direction.
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Copyright (C) 1997-2024 Free Software Foundation, Inc.
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This file is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as
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published by the Free Software Foundation; either version 2.1 of the
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License, or (at your option) any later version.
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This file 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 Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>. */
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/* Based on glibc/sysdeps/<cpu>/{fegetround.c,fesetround.c}
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together with glibc/sysdeps/<cpu>/{fpu_control.h,fenv_private.h,fenv_libc.h}. */
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#include <config.h>
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/* Specification. */
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#include <fenv.h>
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#include "fenv-private.h"
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#if defined __GNUC__ || defined __clang__ || defined _MSC_VER
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# if (defined __x86_64__ || defined _M_X64) || (defined __i386 || defined _M_IX86)
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int
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fegetround (void)
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{
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# ifdef _MSC_VER
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/* Use the rounding direction from the SSE unit. */
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unsigned int mxcsr;
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_FPU_GETSSECW (mxcsr);
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unsigned int fctrl = (mxcsr >> 3) & 0x0C00;
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# else
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/* Use the rounding direction from the control word of the 387 unit, the
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so-called fctrl register.
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The rounding direction of the SSE unit, in the mxcsr register, is expected
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to be in sync with that. */
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unsigned short fctrl;
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_FPU_GETCW (fctrl);
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# endif
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# ifdef _MSC_VER
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/* The MSVC header files have different values for the rounding directions
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than all the other platforms, and the even changed between MSVC 14 and
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MSVC 14.30 (!). Map
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0x0000 -> FE_TONEAREST = 0
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0x0400 -> FE_DOWNWARD
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0x0800 -> FE_UPWARD
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0x0C00 -> FE_TOWARDZERO = FE_DOWNWARD | FE_UPWARD */
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return (fctrl & 0x0800 ? FE_UPWARD : 0) | (fctrl & 0x0400 ? FE_DOWNWARD : 0);
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# else
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return fctrl & 0x0C00;
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# endif
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}
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int
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fesetround (int rounding_direction)
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{
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# ifdef _MSC_VER
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/* The MSVC header files have different values for the rounding directions
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than all the other platforms. */
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if ((rounding_direction & ~0x0300) != 0)
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return -1;
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/* The MSVC header files have different values for the rounding directions
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than all the other platforms, and the even changed between MSVC 14 and
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MSVC 14.30 (!). Map
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FE_TONEAREST = 0 -> 0x0000
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FE_DOWNWARD -> 0x0400
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FE_UPWARD -> 0x0800
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FE_TOWARDZERO = FE_DOWNWARD | FE_UPWARD -> 0x0C00 */
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rounding_direction =
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(rounding_direction & FE_UPWARD ? 0x0800 : 0)
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| (rounding_direction & FE_DOWNWARD ? 0x0400 : 0);
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# else
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if ((rounding_direction & ~0x0C00) != 0)
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return -1;
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# endif
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# ifdef _MSC_VER
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/* Set it in the SSE unit. */
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unsigned int mxcsr, orig_mxcsr;
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_FPU_GETSSECW (orig_mxcsr);
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mxcsr = (orig_mxcsr & ~(0x0C00 << 3)) | (rounding_direction << 3);
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if (mxcsr != orig_mxcsr)
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_FPU_SETSSECW (mxcsr);
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# else
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/* Set it in the 387 unit. */
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unsigned short fctrl, orig_fctrl;
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_FPU_GETCW (orig_fctrl);
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fctrl = (orig_fctrl & ~0x0C00) | rounding_direction;
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if (fctrl != orig_fctrl)
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_FPU_SETCW (fctrl);
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if (CPU_HAS_SSE ())
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{
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/* Set it in the SSE unit as well. */
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unsigned int mxcsr, orig_mxcsr;
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_FPU_GETSSECW (orig_mxcsr);
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mxcsr = (orig_mxcsr & ~(0x0C00 << 3)) | (rounding_direction << 3);
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if (mxcsr != orig_mxcsr)
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_FPU_SETSSECW (mxcsr);
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}
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# endif
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return 0;
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}
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# elif defined __aarch64__ /* arm64 */
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int
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fegetround (void)
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{
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unsigned long fpcr;
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_FPU_GETCW (fpcr);
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return (fpcr & 0x00C00000UL)
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# if FE_TOWARDZERO == 3 /* FreeBSD compatible FE_* values */
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>> 22
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# endif
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;
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}
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int
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fesetround (int rounding_direction)
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{
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# if FE_TOWARDZERO == 3 /* FreeBSD compatible FE_* values */
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if ((rounding_direction & ~3) != 0)
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return -1;
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rounding_direction = rounding_direction << 22;
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# else /* glibc compatible FE_* values */
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if ((rounding_direction & ~0x00C00000UL) != 0)
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return -1;
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# endif
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unsigned long fpcr, orig_fpcr;
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_FPU_GETCW (orig_fpcr);
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fpcr = (orig_fpcr & ~0x00C00000UL) | rounding_direction;
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if (fpcr != orig_fpcr)
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_FPU_SETCW (fpcr);
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return 0;
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}
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# elif defined __arm__
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int
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fegetround (void)
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{
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# ifdef __SOFTFP__
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return FE_TONEAREST;
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# else
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unsigned int fpscr;
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_FPU_GETCW (fpscr);
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return fpscr & 0x00C00000U;
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# endif
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}
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int
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fesetround (int rounding_direction)
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{
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# ifdef __SOFTFP__
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if (rounding_direction != FE_TONEAREST)
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return -1;
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# else
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if ((rounding_direction & ~0x00C00000U) != 0)
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return -1;
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unsigned int fpscr, orig_fpscr;
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_FPU_GETCW (orig_fpscr);
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fpscr = (orig_fpscr & ~0x00C00000U) | rounding_direction;
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if (fpscr != orig_fpscr)
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_FPU_SETCW (fpscr);
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# endif
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return 0;
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}
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# elif defined __alpha
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int
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fegetround (void)
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{
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unsigned long fpcr;
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_FPU_GETCW (fpcr);
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return (fpcr >> 58) & 0x3UL;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x3UL) != 0)
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return -1;
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unsigned long fpcr, orig_fpcr;
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_FPU_GETCW (orig_fpcr);
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fpcr = (orig_fpcr & ~(0x3UL << 58))
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| ((unsigned long) rounding_direction << 58);
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if (fpcr != orig_fpcr)
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_FPU_SETCW (fpcr);
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return 0;
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}
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# elif defined __hppa
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int
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fegetround (void)
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{
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unsigned int fpstatus;
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_FPU_GETCW (fpstatus);
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return fpstatus & 0x00000600U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x00000600U) != 0)
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return -1;
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unsigned int fpstatus, orig_fpstatus;
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_FPU_GETCW (orig_fpstatus);
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fpstatus = (orig_fpstatus & ~0x00000600U) | rounding_direction;
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if (fpstatus != orig_fpstatus)
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_FPU_SETCW (fpstatus);
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return 0;
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}
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# elif defined __ia64__
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int
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fegetround (void)
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{
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unsigned long fpsr;
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_FPU_GETCW (fpsr);
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return (fpsr >> 10) & 0x3UL;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x3UL) != 0)
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return -1;
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unsigned long fpsr, orig_fpsr;
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_FPU_GETCW (orig_fpsr);
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fpsr = (orig_fpsr & ~(0x3UL << 10))
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| ((unsigned long) rounding_direction << 10);
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if (fpsr != orig_fpsr)
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_FPU_SETCW (fpsr);
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return 0;
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}
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# elif defined __m68k__
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int
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fegetround (void)
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{
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unsigned int fpcr;
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_FPU_GETCW (fpcr);
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return fpcr & 0x30U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x30U) != 0)
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return -1;
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unsigned int fpcr, orig_fpcr;
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_FPU_GETCW (orig_fpcr);
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fpcr = (orig_fpcr & ~0x30U) | rounding_direction;
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if (fpcr != orig_fpcr)
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_FPU_SETCW (fpcr);
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return 0;
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}
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# elif defined __mips__
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int
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fegetround (void)
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{
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unsigned int fcsr;
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_FPU_GETCW (fcsr);
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return fcsr & 0x3U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x3U) != 0)
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return -1;
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unsigned int fcsr, orig_fcsr;
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_FPU_GETCW (orig_fcsr);
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fcsr = (orig_fcsr & ~0x3U) | rounding_direction;
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if (fcsr != orig_fcsr)
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_FPU_SETCW (fcsr);
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return 0;
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}
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# elif defined __loongarch__
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int
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fegetround (void)
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{
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unsigned int fcsr;
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_FPU_GETCW (fcsr);
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return fcsr & 0x300U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x300U) != 0)
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return -1;
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unsigned int fcsr, orig_fcsr;
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_FPU_GETCW (orig_fcsr);
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fcsr = (orig_fcsr & ~0x300U) | rounding_direction;
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if (fcsr != orig_fcsr)
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_FPU_SETCW (fcsr);
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return 0;
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}
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# elif defined __powerpc__
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/* The AIX header files have different values for the rounding directions
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than all the other platforms: The values 0 and 1 are swapped.
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(They probably did this in order to have a trivial FLT_ROUNDS macro, cf.
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<https://pubs.opengroup.org/onlinepubs/9699919799/basedefs/float.h.html>.)
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Define some handy macros for conversion. */
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# ifdef _AIX
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# define fe_to_hardware(x) ((x) ^ ((x) < 2))
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# define hardware_to_fe(x) ((x) ^ ((x) < 2))
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# else
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# define fe_to_hardware(x) (x)
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# define hardware_to_fe(x) (x)
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# endif
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int
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fegetround (void)
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{
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# if 1
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unsigned int result;
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__asm__ __volatile__ ("mcrfs 7,7 ; mfcr %0" : "=r" (result) : : "cr7");
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return hardware_to_fe (result & 3);
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# else
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union { unsigned long long u; double f; } memenv;
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_FPU_GETCW_AS_DOUBLE (memenv.f);
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return hardware_to_fe (memenv.u & 3);
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# endif
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x3U) != 0)
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return -1;
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# ifdef _AIX
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rounding_direction = fe_to_hardware (rounding_direction);
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# endif
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if (rounding_direction & 2)
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__asm__ __volatile__ ("mtfsb1 30");
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else
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__asm__ __volatile__ ("mtfsb0 30");
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if (rounding_direction & 1)
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__asm__ __volatile__ ("mtfsb1 31");
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else
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__asm__ __volatile__ ("mtfsb0 31");
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return 0;
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}
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# elif defined __riscv
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int
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fegetround (void)
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{
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int rounding_direction;
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__asm__ __volatile__ ("frrm %0" : "=r" (rounding_direction));
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# if FE_UPWARD == 0x60 /* FreeBSD compatible FE_* values */
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return rounding_direction << 5;
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# else
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return rounding_direction;
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# endif
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}
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int
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fesetround (int rounding_direction)
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{
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# if FE_UPWARD == 0x60 /* FreeBSD compatible FE_* values */
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if ((rounding_direction & ~0x60) != 0)
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return -1;
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rounding_direction = rounding_direction >> 5;
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# else
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if ((rounding_direction & ~3) != 0)
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return -1;
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# endif
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__asm__ __volatile__ ("fsrm %z0" : : "rJ" (rounding_direction));
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return 0;
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}
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# elif defined __s390__ || defined __s390x__
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int
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fegetround (void)
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{
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unsigned int fpc;
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_FPU_GETCW (fpc);
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return fpc & 0x3U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x3U) != 0)
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return -1;
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# if 1
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__asm__ __volatile__ ("srnm 0(%0)" : : "a" (rounding_direction));
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# else
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unsigned int fpc, orig_fpc;
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_FPU_GETCW (orig_fpc);
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fpc = (orig_fpc & ~0x3U) | rounding_direction;
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if (fpc != orig_fpc)
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_FPU_SETCW (fpc);
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# endif
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return 0;
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}
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# elif defined __sh__
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int
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fegetround (void)
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{
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unsigned int fpscr;
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_FPU_GETCW (fpscr);
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return fpscr & 0x1U;
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}
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int
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fesetround (int rounding_direction)
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{
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if ((rounding_direction & ~0x1U) != 0)
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return -1;
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unsigned int fpscr, orig_fpscr;
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_FPU_GETCW (orig_fpscr);
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fpscr = (orig_fpscr & ~0x1U) | rounding_direction;
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if (fpscr != orig_fpscr)
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_FPU_SETCW (fpscr);
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return 0;
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}
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# elif defined __sparc
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int
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fegetround (void)
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{
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unsigned long fsr;
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_FPU_GETCW (fsr);
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return (fsr & 0xC0000000UL)
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# if FE_DOWNWARD == 3 /* FreeBSD compatible FE_* values */
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>> 30
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# endif
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;
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}
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int
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fesetround (int rounding_direction)
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{
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# if FE_DOWNWARD == 3 /* FreeBSD compatible FE_* values */
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if ((rounding_direction & ~3) != 0)
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return -1;
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rounding_direction = (unsigned int) rounding_direction << 30;
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# else /* glibc compatible FE_* values */
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if (((unsigned int) rounding_direction & ~0xC0000000UL) != 0)
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return -1;
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# endif
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unsigned long fsr, orig_fsr;
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_FPU_GETCW (orig_fsr);
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fsr = (orig_fsr & ~0xC0000000UL) | (unsigned int) rounding_direction;
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if (fsr != orig_fsr)
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_FPU_SETCW (fsr);
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return 0;
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}
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# else
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# if defined __GNUC__ || defined __clang__
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# warning "Unknown CPU / architecture. Please report your platform and compiler to <bug-gnulib@gnu.org>."
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# endif
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# define NEED_FALLBACK 1
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# endif
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#else
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/* The compiler does not support __asm__ statements or equivalent
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intrinsics. */
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# if HAVE_FPSETROUND
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/* FreeBSD ≥ 3.1, NetBSD ≥ 1.1, OpenBSD, IRIX, Solaris, Minix ≥ 3.2. */
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/* Get fpgetround, fpsetround. */
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# include <ieeefp.h>
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int
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fegetround (void)
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{
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return fpgetround ();
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}
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int
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fesetround (int rounding_direction)
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{
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fpsetround (rounding_direction);
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return 0;
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}
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# elif defined _AIX /* AIX */
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/* Get fp_read_rnd, fp_swap_rnd. */
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# include <float.h>
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/* Documentation:
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<https://www.ibm.com/docs/en/aix/7.3?topic=f-fp-read-rnd-fp-swap-rnd-subroutine> */
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int
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fegetround (void)
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{
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return fp_read_rnd ();
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}
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int
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fesetround (int rounding_direction)
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{
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fp_swap_rnd (rounding_direction);
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return 0;
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}
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# else
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# define NEED_FALLBACK 1
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# endif
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#endif
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#if NEED_FALLBACK
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/* A dummy fallback. */
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# include <float.h>
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# include <stdlib.h>
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int
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|
fegetround (void)
|
|
{
|
|
/* Cf. <https://pubs.opengroup.org/onlinepubs/9699919799/basedefs/float.h.html> */
|
|
switch (FLT_ROUNDS)
|
|
{
|
|
case 0: return FE_TOWARDZERO;
|
|
case 1: return FE_TONEAREST;
|
|
case 2: return FE_UPWARD;
|
|
case 3: return FE_DOWNWARD;
|
|
default: abort ();
|
|
}
|
|
}
|
|
|
|
int
|
|
fesetround (int rounding_direction)
|
|
{
|
|
if (rounding_direction != fegetround ())
|
|
return -1;
|
|
return 0;
|
|
}
|
|
|
|
#endif
|