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fpgetround(3C)


fpgetround, fpsetround, fpgetmask, fpsetmask, fpgetsticky, fpsetsticky -- IEEE floating-point environment control

Synopsis

   

include <ieeefp.h>

fp_rnd fpgetround(void);

fp_rnd fpsetround(fp_rnd rnd_dir);

fp_except fpgetmask(void);

fp_except fpsetmask(fp_except mask);

fp_except fpgetsticky(void);

fp_except fpsetsticky(fp_except sticky);

Description

There are five floating-point exceptions: divide-by-zero, overflow, underflow, imprecise (inexact) result, and invalid operation. When a floating-point exception occurs, the corresponding sticky bit is set, and if the mask bit is enabled, the trap takes place. These routines let the user change the behavior on occurrence of any of these exceptions, as well as change the rounding mode for floating-point operations.
   FP_X_INV     /* invalid operation exception */
   FP_X_OFL     /* overflow exception */
   FP_X_UFL     /* underflow exception */
   FP_X_DZ      /* divide-by-zero exception */
   FP_X_IMP     /* imprecise (loss of precision) */
   FP_RN        /* round to nearest representative number */
   FP_RP        /* round to plus infinity */
   FP_RM        /* round to minus infinity */
   FP_RZ        /* round to zero (truncate) */

fpgetround returns the current rounding mode.

fpsetround sets the rounding mode and returns the previous rounding mode.

fpgetmask returns the current exception masks.

fpsetmask sets the exception masks and returns the previous setting.

fpgetsticky returns the current exception sticky flags.

fpsetsticky sets (clears) the exception sticky flags and returns the previous setting.

The default environment is rounding mode set to nearest (FP_RN) and all traps disabled.

Individual bits may be examined using the constants defined in ieeefp.h.

References

isnan(3C)

Notices

fpsetsticky modifies all sticky flags. fpsetmask changes all mask bits. fpsetmask clears the sticky bit corresponding to any exception being enabled.

C requires truncation (round to zero) for floating point to integral conversions. The current rounding mode has no effect on these conversions.

One must clear the sticky bit to recover from the trap and to proceed. If the sticky bit is not cleared before the next trap occurs, a wrong exception type may be signaled.


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