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@@ -0,0 +1,445 @@
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+#ifdef __GNUC__
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+
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+#ifdef __USE_ISOC99
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+
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+/* ISO C99 defines some macros to perform unordered comparisons. The
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+ csky FPU supports this with special opcodes and we should use them.
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+ These must not be inline functions since we have to be able to handle
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+ all floating-point types. */
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+# define isgreater(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsogt %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+
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+# define isgreaterequal(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsoge %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+
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+# define isless(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsolt %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+
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+# define islessequal(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsole %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+
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+# define islessgreater(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsogl %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+
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+# define isunordered(x, y) \
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+ __extension__ \
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+ ({ char __result; \
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+ __asm__ ("fcmp%.x %2,%1; fsun %0" \
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+ : "=dm" (__result) : "f" (x), "f" (y)); \
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+ __result != 0; })
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+#endif
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+
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+
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+#if (!defined __NO_MATH_INLINES && defined __OPTIMIZE__) \
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+ || defined __LIBC_INTERNAL_MATH_INLINES
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+
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+#ifdef __LIBC_INTERNAL_MATH_INLINES
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+/* This is used when defining the functions themselves. Define them with
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+ __ names, and with `static inline' instead of `extern inline' so the
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+ bodies will always be used, never an external function call. */
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+# define __m81_u(x) __CONCAT(__,x)
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+# define __m81_inline static __inline
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+#else
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+# define __m81_u(x) x
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+# ifdef __cplusplus
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+# define __m81_inline __inline
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+# else
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+# define __m81_inline extern __inline
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+# endif
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+# define __M81_MATH_INLINES 1
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+#endif
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+
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+/* Define a const math function. */
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+#define __m81_defun(rettype, func, args) \
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+ __m81_inline rettype __attribute__((__const__)) \
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+ __m81_u(func) args
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+
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+/* Define the three variants of a math function that has a direct
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+ implementation in the csky fpu. FUNC is the name for C (which will be
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+ suffixed with f and l for the float and long double version, resp). OP
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+ is the name of the fpu operation (without leading f). */
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+
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+#if defined __USE_MISC || defined __USE_ISOC99
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+# define __inline_mathop(func, op) \
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+ __inline_mathop1(double, func, op) \
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+ __inline_mathop1(float, __CONCAT(func,f), op) \
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+ __inline_mathop1(long double, __CONCAT(func,l), op)
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+#else
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+# define __inline_mathop(func, op) \
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+ __inline_mathop1(double, func, op)
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+#endif
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+
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+#define __inline_mathop1(float_type,func, op) \
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+ __m81_defun (float_type, func, (float_type __mathop_x)) __THROW \
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+ { \
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+ float_type __result; \
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+ __asm("f" __STRING(op) "%.x %1, %0" : "=f" (__result) : "f" (__mathop_x));\
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+ return __result; \
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+ }
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+
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+__inline_mathop(__atan, atan)
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+__inline_mathop(__cos, cos)
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+__inline_mathop(__sin, sin)
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+__inline_mathop(__tan, tan)
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+__inline_mathop(__tanh, tanh)
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+__inline_mathop(__fabs, abs)
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+
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+#if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
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+__inline_mathop(__rint, int)
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+__inline_mathop(__expm1, etoxm1)
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+__inline_mathop(__log1p, lognp1)
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+#endif
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+
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+#ifdef __USE_MISC
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+__inline_mathop(__significand, getman)
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+#endif
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+
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+#ifdef __USE_ISOC99
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+__inline_mathop(__trunc, intrz)
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+#endif
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+
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+#if !defined __NO_MATH_INLINES && defined __OPTIMIZE__
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+
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+__inline_mathop(atan, atan)
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+__inline_mathop(cos, cos)
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+__inline_mathop(sin, sin)
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+__inline_mathop(tan, tan)
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+__inline_mathop(tanh, tanh)
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+
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+# if defined __USE_MISC || defined __USE_XOPEN_EXTENDED || defined __USE_ISOC99
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+__inline_mathop(rint, int)
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+__inline_mathop(expm1, etoxm1)
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+__inline_mathop(log1p, lognp1)
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+# endif
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+
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+# ifdef __USE_MISC
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+__inline_mathop(significand, getman)
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+# endif
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+
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+# ifdef __USE_ISOC99
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+__inline_mathop(trunc, intrz)
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+# endif
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+
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+#endif /* !__NO_MATH_INLINES && __OPTIMIZE__ */
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+
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+/* This macro contains the definition for the rest of the inline
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+ functions, using FLOAT_TYPE as the domain type and S as the suffix
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+ for the function names. */
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+
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+#define __inline_functions(float_type, s) \
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+__m81_inline float_type \
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+__m81_u(__CONCAT(__frexp,s))(float_type __value, int *__expptr) __THROW \
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+{ \
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+ float_type __mantissa, __exponent; \
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+ int __iexponent; \
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+ unsigned long __fpsr; \
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+ __asm("ftst%.x %1\n" \
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+ "fmove%.l %/fpsr, %0" : "=dm" (__fpsr) : "f" (__value)); \
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+ if (__fpsr & (7 << 24)) \
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+ { \
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+ /* Not finite or zero. */ \
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+ *__expptr = 0; \
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+ return __value; \
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+ } \
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+ __asm("fgetexp%.x %1, %0" : "=f" (__exponent) : "f" (__value)); \
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+ __iexponent = (int) __exponent + 1; \
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+ *__expptr = __iexponent; \
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+ __asm("fscale%.l %2, %0" : "=f" (__mantissa) \
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+ : "0" (__value), "dmi" (-__iexponent)); \
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+ return __mantissa; \
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+} \
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+ \
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+__m81_defun (float_type, __CONCAT(__floor,s), (float_type __x)) __THROW \
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+{ \
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+ float_type __result; \
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+ unsigned long int __ctrl_reg; \
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+ __asm __volatile__ ("fmove%.l %!, %0" : "=dm" (__ctrl_reg)); \
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+ /* Set rounding towards negative infinity. */ \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" ((__ctrl_reg & ~0x10) | 0x20)); \
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+ /* Convert X to an integer, using -Inf rounding. */ \
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+ __asm __volatile__ ("fint%.x %1, %0" : "=f" (__result) : "f" (__x)); \
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+ /* Restore the previous rounding mode. */ \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" (__ctrl_reg)); \
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+ return __result; \
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+} \
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+ \
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+__m81_defun (float_type, __CONCAT(__ceil,s), (float_type __x)) __THROW \
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+{ \
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+ float_type __result; \
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+ unsigned long int __ctrl_reg; \
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+ __asm __volatile__ ("fmove%.l %!, %0" : "=dm" (__ctrl_reg)); \
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+ /* Set rounding towards positive infinity. */ \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" (__ctrl_reg | 0x30)); \
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+ /* Convert X to an integer, using +Inf rounding. */ \
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+ __asm __volatile__ ("fint%.x %1, %0" : "=f" (__result) : "f" (__x)); \
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+ /* Restore the previous rounding mode. */ \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" (__ctrl_reg)); \
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+ return __result; \
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+}
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+
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+__inline_functions(double,)
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+#if defined __USE_MISC || defined __USE_ISOC99
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+__inline_functions(float,f)
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+__inline_functions(long double,l)
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+#endif
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+#undef __inline_functions
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+
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+#ifdef __USE_MISC
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+
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+# define __inline_functions(float_type, s) \
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+__m81_defun (int, __CONCAT(__isinf,s), (float_type __value)) __THROW \
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+{ \
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+ /* There is no branch-condition for infinity, \
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+ so we must extract and examine the condition codes manually. */ \
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+ unsigned long int __fpsr; \
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+ __asm("ftst%.x %1\n" \
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+ "fmove%.l %/fpsr, %0" : "=dm" (__fpsr) : "f" (__value)); \
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+ return (__fpsr & (2 << 24)) ? (__fpsr & (8 << 24) ? -1 : 1) : 0; \
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+} \
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+ \
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+__m81_defun (int, __CONCAT(__finite,s), (float_type __value)) __THROW \
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+{ \
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+ /* There is no branch-condition for infinity, so we must extract and \
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+ examine the condition codes manually. */ \
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+ unsigned long int __fpsr; \
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+ __asm ("ftst%.x %1\n" \
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+ "fmove%.l %/fpsr, %0" : "=dm" (__fpsr) : "f" (__value)); \
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+ return (__fpsr & (3 << 24)) == 0; \
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+} \
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+ \
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+__m81_defun (float_type, __CONCAT(__scalbn,s), \
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+ (float_type __x, int __n)) __THROW \
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+{ \
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+ float_type __result; \
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+ __asm ("fscale%.l %1, %0" : "=f" (__result) : "dmi" (__n), "0" (__x)); \
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+ return __result; \
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+}
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+
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+__inline_functions(double,)
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+__inline_functions(float,f)
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+__inline_functions(long double,l)
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+# undef __inline_functions
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+
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+#endif /* Use misc. */
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+
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+#if defined __USE_MISC || defined __USE_XOPEN
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+
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+# define __inline_functions(float_type, s) \
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+__m81_defun (int, __CONCAT(__isnan,s), (float_type __value)) __THROW \
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+{ \
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+ char __result; \
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+ __asm("ftst%.x %1\n" \
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+ "fsun %0" : "=dm" (__result) : "f" (__value)); \
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+ return __result; \
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+}
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+
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+__inline_functions(double,)
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+# ifdef __USE_MISC
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+__inline_functions(float,f)
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+__inline_functions(long double,l)
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+# endif
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+# undef __inline_functions
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+
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+#endif
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+
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+#ifdef __USE_ISOC99
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+
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+# define __inline_functions(float_type, s) \
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+__m81_defun (int, __CONCAT(__signbit,s), (float_type __value)) __THROW \
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+{ \
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+ /* There is no branch-condition for the sign bit, so we must extract \
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+ and examine the condition codes manually. */ \
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+ unsigned long int __fpsr; \
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+ __asm ("ftst%.x %1\n" \
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+ "fmove%.l %/fpsr, %0" : "=dm" (__fpsr) : "f" (__value)); \
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+ return (__fpsr >> 27) & 1; \
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+} \
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+ \
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+__m81_defun (float_type, __CONCAT(__scalbln,s), \
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+ (float_type __x, long int __n)) __THROW \
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+{ \
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+ return __CONCAT(__scalbn,s) (__x, __n); \
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+} \
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+ \
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+__m81_defun (float_type, __CONCAT(__nearbyint,s), (float_type __x)) __THROW \
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+{ \
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+ float_type __result; \
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+ unsigned long int __ctrl_reg; \
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+ __asm __volatile__ ("fmove%.l %!, %0" : "=dm" (__ctrl_reg)); \
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+ /* Temporarily disable the inexact exception. */ \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" (__ctrl_reg & ~0x200)); \
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+ __asm __volatile__ ("fint%.x %1, %0" : "=f" (__result) : "f" (__x)); \
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+ __asm __volatile__ ("fmove%.l %0, %!" : /* No outputs. */ \
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+ : "dmi" (__ctrl_reg)); \
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+ return __result; \
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+} \
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+ \
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+__m81_defun (long int, __CONCAT(__lrint,s), (float_type __x)) __THROW \
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+{ \
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+ long int __result; \
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+ __asm ("fmove%.l %1, %0" : "=dm" (__result) : "f" (__x)); \
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+ return __result; \
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+} \
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+ \
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+__m81_inline float_type \
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+__m81_u(__CONCAT(__fma,s))(float_type __x, float_type __y, \
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+ float_type __z) __THROW \
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+{ \
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+ return (__x * __y) + __z; \
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+}
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+
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+__inline_functions (double,)
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+__inline_functions (float,f)
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+__inline_functions (long double,l)
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+# undef __inline_functions
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+
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+#endif /* Use ISO C9x */
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+
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+#ifdef __USE_GNU
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+
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+# define __inline_functions(float_type, s) \
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+__m81_inline void \
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+__m81_u(__CONCAT(__sincos,s))(float_type __x, float_type *__sinx, \
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+ float_type *__cosx) __THROW \
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+{ \
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+ __asm ("fsincos%.x %2,%1:%0" \
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+ : "=f" (*__sinx), "=f" (*__cosx) : "f" (__x)); \
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+}
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+
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+__inline_functions (double,)
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+__inline_functions (float,f)
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+__inline_functions (long double,l)
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+# undef __inline_functions
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+
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+#endif
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+
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+#if !defined __NO_MATH_INLINES && defined __OPTIMIZE__
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+
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+/* Define inline versions of the user visible functions. */
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+
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+/* Note that there must be no whitespace before the argument passed for
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+ NAME, to make token pasting work correctly with -traditional. */
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+# define __inline_forward_c(rettype, name, args1, args2) \
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+extern __inline rettype __attribute__((__const__)) \
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+name args1 __THROW \
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+{ \
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+ return __CONCAT(__,name) args2; \
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+}
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+
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+# define __inline_forward(rettype, name, args1, args2) \
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+extern __inline rettype name args1 __THROW \
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+{ \
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+ return __CONCAT(__,name) args2; \
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+}
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+
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+__inline_forward(double,frexp, (double __value, int *__expptr),
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+ (__value, __expptr))
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+__inline_forward_c(double,floor, (double __x), (__x))
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+__inline_forward_c(double,ceil, (double __x), (__x))
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+# ifdef __USE_MISC
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+# ifndef __USE_ISOC99 /* Conflict with macro of same name. */
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+__inline_forward_c(int,isinf, (double __value), (__value))
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+# endif
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+__inline_forward_c(int,finite, (double __value), (__value))
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+__inline_forward_c(double,scalbn, (double __x, int __n), (__x, __n))
|
|
|
+# endif
|
|
|
+# if defined __USE_MISC || defined __USE_XOPEN
|
|
|
+# ifndef __USE_ISOC99 /* Conflict with macro of same name. */
|
|
|
+__inline_forward_c(int,isnan, (double __value), (__value))
|
|
|
+# endif
|
|
|
+# endif
|
|
|
+# ifdef __USE_ISOC99
|
|
|
+__inline_forward_c(double,scalbln, (double __x, long int __n), (__x, __n))
|
|
|
+__inline_forward_c(double,nearbyint, (double __value), (__value))
|
|
|
+__inline_forward_c(long int,lrint, (double __value), (__value))
|
|
|
+__inline_forward_c(double,fma, (double __x, double __y, double __z),
|
|
|
+ (__x, __y, __z))
|
|
|
+# endif
|
|
|
+# ifdef __USE_GNU
|
|
|
+__inline_forward(void,sincos, (double __x, double *__sinx, double *__cosx),
|
|
|
+ (__x, __sinx, __cosx))
|
|
|
+# endif
|
|
|
+
|
|
|
+# if defined __USE_MISC || defined __USE_ISOC99
|
|
|
+
|
|
|
+__inline_forward(float,frexpf, (float __value, int *__expptr),
|
|
|
+ (__value, __expptr))
|
|
|
+__inline_forward_c(float,floorf, (float __x), (__x))
|
|
|
+__inline_forward_c(float,ceilf, (float __x), (__x))
|
|
|
+# ifdef __USE_MISC
|
|
|
+__inline_forward_c(int,isinff, (float __value), (__value))
|
|
|
+__inline_forward_c(int,finitef, (float __value), (__value))
|
|
|
+__inline_forward_c(float,scalbnf, (float __x, int __n), (__x, __n))
|
|
|
+__inline_forward_c(int,isnanf, (float __value), (__value))
|
|
|
+# endif
|
|
|
+# ifdef __USE_ISOC99
|
|
|
+__inline_forward_c(float,scalblnf, (float __x, long int __n), (__x, __n))
|
|
|
+__inline_forward_c(float,nearbyintf, (float __value), (__value))
|
|
|
+__inline_forward_c(long int,lrintf, (float __value), (__value))
|
|
|
+__inline_forward_c(float,fmaf, (float __x, float __y, float __z),
|
|
|
+ (__x, __y, __z))
|
|
|
+# endif
|
|
|
+# ifdef __USE_GNU
|
|
|
+__inline_forward(void,sincosf, (float __x, float *__sinx, float *__cosx),
|
|
|
+ (__x, __sinx, __cosx))
|
|
|
+# endif
|
|
|
+
|
|
|
+__inline_forward(long double,frexpl, (long double __value, int *__expptr),
|
|
|
+ (__value, __expptr))
|
|
|
+__inline_forward_c(long double,floorl, (long double __x), (__x))
|
|
|
+__inline_forward_c(long double,ceill, (long double __x), (__x))
|
|
|
+# ifdef __USE_MISC
|
|
|
+__inline_forward_c(int,isinfl, (long double __value), (__value))
|
|
|
+__inline_forward_c(int,finitel, (long double __value), (__value))
|
|
|
+__inline_forward_c(long double,scalbnl, (long double __x, int __n), (__x, __n))
|
|
|
+__inline_forward_c(int,isnanl, (long double __value), (__value))
|
|
|
+# endif
|
|
|
+# ifdef __USE_ISOC99
|
|
|
+__inline_forward_c(long double,scalblnl, (long double __x, long int __n),
|
|
|
+ (__x, __n))
|
|
|
+__inline_forward_c(long double,nearbyintl, (long double __value), (__value))
|
|
|
+__inline_forward_c(long int,lrintl, (long double __value), (__value))
|
|
|
+__inline_forward_c(long double,fmal,
|
|
|
+ (long double __x, long double __y, long double __z),
|
|
|
+ (__x, __y, __z))
|
|
|
+# endif
|
|
|
+# ifdef __USE_GNU
|
|
|
+__inline_forward(void,sincosl,
|
|
|
+ (long double __x, long double *__sinx, long double *__cosx),
|
|
|
+ (__x, __sinx, __cosx))
|
|
|
+# endif
|
|
|
+
|
|
|
+#endif /* Use misc or ISO C99 */
|
|
|
+
|
|
|
+#undef __inline_forward
|
|
|
+#undef __inline_forward_c
|
|
|
+
|
|
|
+#endif /* !__NO_MATH_INLINES && __OPTIMIZE__ */
|
|
|
+
|
|
|
+#endif
|
|
|
+#endif
|