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	handlers "return void", according to ANSI C. Removed the new Py_RETURN_FROM_SIGNAL_HANDLER macro. Left RETSIGTYPE in the config stuff, because it's not clear to me that others aren't relying on it (e.g., extension modules).
		
			
				
	
	
		
			242 lines
		
	
	
	
		
			9.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			242 lines
		
	
	
	
		
			9.2 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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     ---------------------------------------------------------------------  
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    /                       Copyright (c) 1996.                           \ 
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   |          The Regents of the University of California.                 |
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   |                        All rights reserved.                           |
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   |                                                                       |
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   |   Permission to use, copy, modify, and distribute this software for   |
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   |   any purpose without fee is hereby granted, provided that this en-   |
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   |   tire notice is included in all copies of any software which is or   |
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   |   includes  a  copy  or  modification  of  this software and in all   |
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   |   copies of the supporting documentation for such software.           |
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   |                                                                       |
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   |   This  work was produced at the University of California, Lawrence   |
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   |   Livermore National Laboratory under  contract  no.  W-7405-ENG-48   |
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   |   between  the  U.S.  Department  of  Energy and The Regents of the   |
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   |   University of California for the operation of UC LLNL.              |
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   |                                                                       |
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   |                              DISCLAIMER                               |
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   |                                                                       |
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   |   This  software was prepared as an account of work sponsored by an   |
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   |   agency of the United States Government. Neither the United States   |
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   |   Government  nor the University of California nor any of their em-   |
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   |   ployees, makes any warranty, express or implied, or  assumes  any   |
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   |   liability  or  responsibility  for the accuracy, completeness, or   |
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   |   usefulness of any information,  apparatus,  product,  or  process   |
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   |   disclosed,   or  represents  that  its  use  would  not  infringe   |
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   |   privately-owned rights. Reference herein to any specific  commer-   |
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   |   cial  products,  process,  or  service  by trade name, trademark,   |
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   |   manufacturer, or otherwise, does not  necessarily  constitute  or   |
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   |   imply  its endorsement, recommendation, or favoring by the United   |
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   |   States Government or the University of California. The views  and   |
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   |   opinions  of authors expressed herein do not necessarily state or   |
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   |   reflect those of the United States Government or  the  University   |
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   |   of  California,  and shall not be used for advertising or product   |
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    \  endorsement purposes.                                              / 
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     ---------------------------------------------------------------------  
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*/
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/*
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		  Floating point exception control module.
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   This Python module provides bare-bones control over floating point
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   units from several hardware manufacturers.  Specifically, it allows
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   the user to turn on the generation of SIGFPE whenever any of the
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   three serious IEEE 754 exceptions (Division by Zero, Overflow,
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   Invalid Operation) occurs.  We currently ignore Underflow and
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   Inexact Result exceptions, although those could certainly be added
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   if desired.
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   The module also establishes a signal handler for SIGFPE during
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   initialization.  This builds on code found in the Python
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   distribution at Include/pyfpe.h and Python/pyfpe.c.  If those files
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   are not in your Python distribution, find them in a patch at
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   ftp://icf.llnl.gov/pub/python/busby/patches.961108.tgz.
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   This module is only useful to you if it happens to include code
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   specific for your hardware and software environment.  If you can
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   contribute OS-specific code for new platforms, or corrections for
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   the code provided, it will be greatly appreciated.
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   ** Version 1.0: September 20, 1996.  Lee Busby, LLNL.
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 */
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include "Python.h"
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#include <signal.h>
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#ifndef WANT_SIGFPE_HANDLER
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/* Define locally if they are not defined in Python.  This gives only
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 * the limited control to induce a core dump in case of an exception.
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 */
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#include <setjmp.h>
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static jmp_buf PyFPE_jbuf;
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static int PyFPE_counter = 0;
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#endif
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typedef void Sigfunc(int);
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static Sigfunc sigfpe_handler;
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static void fpe_reset(Sigfunc *);
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static PyObject *fpe_error;
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DL_EXPORT(void) initfpectl(void);
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static PyObject *turnon_sigfpe            (PyObject *self,PyObject *args);
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static PyObject *turnoff_sigfpe           (PyObject *self,PyObject *args);
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static PyMethodDef fpectl_methods[] = {
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    {"turnon_sigfpe",		 (PyCFunction) turnon_sigfpe,		 1},
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    {"turnoff_sigfpe",		 (PyCFunction) turnoff_sigfpe, 	         1},
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    {0,0}
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};
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static PyObject *turnon_sigfpe(PyObject *self,PyObject *args)
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{
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    /* Do any architecture-specific one-time only initialization here. */
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    fpe_reset(sigfpe_handler);
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    Py_INCREF (Py_None);
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    return Py_None;
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}
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static void fpe_reset(Sigfunc *handler)
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{
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    /* Reset the exception handling machinery, and reset the signal
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     * handler for SIGFPE to the given handler.
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     */
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/*-- IRIX -----------------------------------------------------------------*/
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#if defined(sgi)
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    /* See man page on handle_sigfpes -- must link with -lfpe
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     * My usage doesn't follow the man page exactly.  Maybe somebody
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     * else can explain handle_sigfpes to me....
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     * cc -c -I/usr/local/python/include fpectlmodule.c
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     * ld -shared -o fpectlmodule.so fpectlmodule.o -lfpe 
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     */
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#include <sigfpe.h>
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    typedef void user_routine (unsigned[5], int[2]);
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    typedef void abort_routine (unsigned long);
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    handle_sigfpes(_OFF, 0,
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		 (user_routine *)0,
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		 _TURN_OFF_HANDLER_ON_ERROR,
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		 NULL);
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    handle_sigfpes(_ON, _EN_OVERFL | _EN_DIVZERO | _EN_INVALID,
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		 (user_routine *)0,
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		 _ABORT_ON_ERROR,
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		 NULL);
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    signal(SIGFPE, handler);
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/*-- SunOS and Solaris ----------------------------------------------------*/
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#elif defined(sun)
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    /* References: ieee_handler, ieee_sun, ieee_functions, and ieee_flags
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       man pages (SunOS or Solaris)
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       cc -c -I/usr/local/python/include fpectlmodule.c
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       ld -G -o fpectlmodule.so -L/opt/SUNWspro/lib fpectlmodule.o -lsunmath -lm
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     */
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#include <math.h>
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    char *mode="exception", *in="all", *out;
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    (void) nonstandard_arithmetic();
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    (void) ieee_flags("clearall",mode,in,&out);
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    (void) ieee_handler("set","common",(sigfpe_handler_type)handler);
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    signal(SIGFPE, handler);
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/*-- HPUX -----------------------------------------------------------------*/
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#elif defined(__hppa) || defined(hppa)
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    /* References:   fpsetmask man page */
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    /* cc -Aa +z -c -I/usr/local/python/include fpectlmodule.c */
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    /* ld -b -o fpectlmodule.sl fpectlmodule.o -lm */
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#include <math.h>
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    fpsetdefaults();
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    signal(SIGFPE, handler);
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/*-- IBM AIX --------------------------------------------------------------*/
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#elif defined(__AIX) || defined(_AIX)
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    /* References:   fp_trap, fp_enable man pages */
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#include <fptrap.h>
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    fp_trap(FP_TRAP_SYNC);
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    fp_enable(TRP_INVALID | TRP_DIV_BY_ZERO | TRP_OVERFLOW);
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    signal(SIGFPE, handler);
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/*-- DEC ALPHA OSF --------------------------------------------------------*/
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#elif defined(__alpha) && defined(__osf__)
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    /* References:   exception_intro, ieee man pages */
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    /* cc -c -I/usr/local/python/include fpectlmodule.c */
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    /* ld -shared -o fpectlmodule.so fpectlmodule.o */
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#include <machine/fpu.h>
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    unsigned long fp_control =
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    IEEE_TRAP_ENABLE_INV | IEEE_TRAP_ENABLE_DZE | IEEE_TRAP_ENABLE_OVF;
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    ieee_set_fp_control(fp_control);
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    signal(SIGFPE, handler);
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/*-- Cray Unicos ----------------------------------------------------------*/
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#elif defined(cray)
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    /* UNICOS delivers SIGFPE by default, but no matherr */
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#ifdef HAS_LIBMSET
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    libmset(-1);
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#endif
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    signal(SIGFPE, handler);
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/*-- Linux ----------------------------------------------------------------*/
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#elif defined(linux)
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#ifdef __GLIBC__
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#include <fpu_control.h>
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#else
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#include <i386/fpu_control.h>
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#endif
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    __setfpucw(0x1372);
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    signal(SIGFPE, handler);
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/*-- NeXT -----------------------------------------------------------------*/
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#elif defined(NeXT) && defined(m68k) && defined(__GNUC__)
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    /* NeXT needs explicit csr set to generate SIGFPE */
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    asm("fmovel     #0x1400,fpcr");   /* set OVFL and ZD bits */
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    signal(SIGFPE, handler);
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/*-- Microsoft Windows, NT ------------------------------------------------*/
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#elif defined(_MSC_VER)
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    /* Reference: Visual C++ Books Online 4.2,
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       Run-Time Library Reference, _control87, _controlfp */
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#include <float.h>
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    unsigned int cw = _EM_INVALID | _EM_ZERODIVIDE | _EM_OVERFLOW;
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    (void)_controlfp(0, cw);
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    signal(SIGFPE, handler);
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/*-- Give Up --------------------------------------------------------------*/
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#else
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    fputs("Operation not implemented\n", stderr);
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#endif
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}
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static PyObject *turnoff_sigfpe(PyObject *self,PyObject *args)
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{
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    fputs("Operation not implemented\n", stderr);
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    Py_INCREF (Py_None);
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    return Py_None;
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}
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static void sigfpe_handler(int signo)
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{
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    fpe_reset(sigfpe_handler);
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    if(PyFPE_counter) {
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        longjmp(PyFPE_jbuf, 1);
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    } else {
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        Py_FatalError("Unprotected floating point exception");
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    }
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}
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DL_EXPORT(void) initfpectl(void)
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{
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    PyObject *m, *d;
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    m = Py_InitModule("fpectl", fpectl_methods);
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    d = PyModule_GetDict(m);
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    fpe_error = PyErr_NewException("fpectl.error", NULL, NULL);
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    if (fpe_error != NULL)
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	PyDict_SetItemString(d, "error", fpe_error);
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}
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#ifdef __cplusplus
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}
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#endif
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