aboutsummaryrefslogtreecommitdiff
path: root/sysdeps/i386/fpu/bits/mathinline.h
diff options
context:
space:
mode:
Diffstat (limited to 'sysdeps/i386/fpu/bits/mathinline.h')
-rw-r--r--sysdeps/i386/fpu/bits/mathinline.h71
1 files changed, 51 insertions, 20 deletions
diff --git a/sysdeps/i386/fpu/bits/mathinline.h b/sysdeps/i386/fpu/bits/mathinline.h
index 2fc5baf81e..b3736f8417 100644
--- a/sysdeps/i386/fpu/bits/mathinline.h
+++ b/sysdeps/i386/fpu/bits/mathinline.h
@@ -29,7 +29,7 @@
all floating-point types. */
# define isgreater(x, y) \
({ int __result; \
- __asm__ ("fucompp; fnstsw; andb $0x45, %%ah; setz %%al;" \
+ __asm__ ("fucompp; fnstsw; testb $0x45, %%ah; setz %%al;" \
"andl $0x01, %0" \
: "=a" (__result) : "u" (y), "t" (x) : "cc", "st", "st(1)"); \
__result; })
@@ -118,11 +118,11 @@
#endif
#define __inline_mathop_decl_(float_type, func, op, params...) \
- __MATHINLINE float_type func (float_type); \
- __MATHINLINE float_type func (float_type __x) \
+ __MATH_INLINE float_type func (float_type); \
+ __MATH_INLINE float_type func (float_type __x) \
{ \
register float_type __result; \
- __asm __volatile__ (op : "=t" (__results) : params); \
+ __asm __volatile__ (op : "=t" (__result) : params); \
return __result; \
}
@@ -163,8 +163,9 @@
}
-/* Optimized inline implementation, sometimes woth reduced precision
+/* Optimized inline implementation, sometimes with reduced precision
and/or argument range. */
+
#define __expm1_code \
register long double __value; \
register long double __exponent; \
@@ -266,7 +267,7 @@ __inline_mathcode2 (pow, __x, __y, \
/* NOTREACHED */ \
} \
__asm __volatile__ \
- ("fyl2x" : "=t" (__value) : "0" (__x), "u" (1.0) : "st1"); \
+ ("fyl2x" : "=t" (__value) : "0" (__x), "u" (1.0) : "st(1)"); \
__asm __volatile__ \
("fmul %%st(1) # y * log2(x)\n\t" \
"fst %%st(1)\n\t" \
@@ -285,26 +286,34 @@ __inline_mathcode2 (pow, __x, __y, \
__inline_mathop (sqrt, "fsqrt")
__inline_mathop_ (long double, __sqrtl, "fsqrt")
+#if defined __GNUC__ && (__GNUC__ > 2 || __GNUC__ == 2 && __GNUC_MINOR__ >= 8)
+__inline_mathcode_ (fabs, __x, return __builtin_fabs (__x))
+__inline_mathcode_ (fabsf, __x, return __builtin_fabsf (__x))
+__inline_mathcode_ (fabsl, __x, return __builtin_fabsl (__x))
+__inline_mathcode_ (__fabsl, __x, return __builtin_fabsl (__x))
+#else
__inline_mathop (fabs, "fabs")
+__inline_mathop_ (long double, __fabsl, "fabs")
+#endif
/* The argument range of this inline version is reduced. */
__inline_mathop (sin, "fsin")
/* The argument range of this inline version is reduced. */
__inline_mathop (cos, "fcos")
-__inline_mathop (atan, "fld1; fpatan")
+__inline_mathop_decl (atan, "fpatan", "u" (__x), "0" (1.0) : "st(1)")
__inline_mathop (log, "fldln2; fxch; fyl2x")
__inline_mathop (log10, "fldlg2; fxch; fyl2x")
__inline_mathcode (asin, __x, return __atan2l (__x, __sqrtl (1.0 - __x * __x)))
__inline_mathcode (acos, __x, return __atan2l (__sqrtl (1.0 - __x * __x), __x))
-__inline_mathcode (__sgn1, __x, return __x >= 0.0 ? 1.0 : -1.0)
+__inline_mathcode_ (long double, __sgn1l, __x, return __x >= 0.0 ? 1.0 : -1.0)
/* The argument range of the inline version of sinhl is slightly reduced. */
__inline_mathcode (sinh, __x, \
- register long double __exm1 = __expm1l (__builtin_fabsl (__x)); \
+ register long double __exm1 = __expm1l (__fabsl (__x)); \
return 0.5 * (__exm1 / (__exm1 + 1.0) + __exm1) * __sgn1l (__x))
__inline_mathcode (cosh, __x, \
@@ -312,7 +321,7 @@ __inline_mathcode (cosh, __x, \
return 0.5 * (__ex + 1.0 / __ex))
__inline_mathcode (tanh, __x, \
- register long double __exm1 = __expm1l (-__builtin_fabsl (__x + __x)); \
+ register long double __exm1 = __expm1l (-__fabsl (__x + __x)); \
return __exm1 / (__exm1 + 2.0) * __sgn1l (-__x))
@@ -338,6 +347,20 @@ __inline_mathcode (ceil, __x, \
__asm __volatile ("fldcw %0" : : "m" (__cw)); \
return __value)
+#define __ldexp_code \
+ register long double __value; \
+ __asm __volatile__ \
+ ("fscale" \
+ : "=t" (__value) : "0" (__x), "u" ((long double) __y)); \
+ return __value
+
+__MATH_INLINE double ldexp (double __x, int __y);
+__MATH_INLINE double
+ldexp (double __x, int __y)
+{
+ __ldexp_code;
+}
+
/* Optimized versions for some non-standardized functions. */
#if defined __USE_ISOC9X || defined __USE_MISC
@@ -352,7 +375,7 @@ __inline_mathcode (expm1, __x, __expm1_code)
__inline_mathcode (log1p, __x, \
register long double __value; \
- if (__builtin_fabsl (__x) >= 1.0 - 0.5 * __M_SQRT2) \
+ if (__fabsl (__x) >= 1.0 - 0.5 * __M_SQRT2) \
__value = logl (1.0 + __x); \
else \
__asm __volatile__ \
@@ -365,7 +388,7 @@ __inline_mathcode (log1p, __x, \
/* The argument range of the inline version of asinhl is slightly reduced. */
__inline_mathcode (asinh, __x, \
- register long double __y = __builtin_fabsl (__x); \
+ register long double __y = __fabsl (__x); \
return (log1pl (__y * __y / (__sqrtl (__y * __y + 1.0) + 1.0) + __y) \
* __sgn1l (__x))
@@ -373,7 +396,7 @@ __inline_mathcode (acosh, __x, \
return logl (__x + __sqrtl (__x - 1.0) * __sqrtl (__x + 1.0)))
__inline_mathcode (atanh, __x, \
- register long double __y = __builtin_fabsl (__x); \
+ register long double __y = __fabsl (__x); \
return (-0.5 * log1pl (-(__y + __y) / (1.0 + __y)) * \
__sgn1l (__x)))
@@ -389,17 +412,25 @@ __inline_mathcode(logb, __x, \
: "=t" (__junk), "=u" (__value) : "0" (__x)); \
return __value)
+__MATH_INLINE float ldexpf (float __x, int __y);
+__MATH_INLINE float
+ldexpf (float __x, int __y)
+{
+ __ldexp_code;
+}
+
+__MATH_INLINE long double ldexpl (long double __x, int __y);
+__MATH_INLINE long double
+ldexpl (long double __x, int __y)
+{
+ __ldexp_code;
+}
-__inline_mathcode2 (ldexp, __x, __y, \
- register long double __value; \
- __asm __volatile__ \
- ("fscale" \
- : "=t" (__value) : "0" (__x), "u" ((long double) __y)); \
- return __value)
#endif
#ifdef __USE_MISC
+
__inline_mathcode2 (drem, __x, __y, \
register double __value; \
__asm __volatile__ \
@@ -431,7 +462,7 @@ __inline_mathcode (__sgn, __x, \
return __x == 0.0 ? 0.0 : (__x > 0.0 ? 1.0 : -1.0))
__inline_mathcode (__coshm1, __x, \
- register long double __exm1 = __expm1l (__builtin_fabsl (__x)); \
+ register long double __exm1 = __expm1l (__fabsl (__x)); \
return 0.5 * (__exm1 / (__exm1 + 1.0)) * __exm1)
__inline_mathcode (__acosh1p, __x, \