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@@ -135,7 +135,7 @@ __BEGIN_DECLS
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# if (defined __STDC__ || defined __GNUC__) \
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- && (defined __UCLIBC_HAS_LONG_DOUBLE_MATH__ || defined __LDBL_COMPAT)
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+ && (defined __NO_LONG_DOUBLE_MATH || defined __LDBL_COMPAT)
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# ifdef __LDBL_COMPAT
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# ifdef __USE_ISOC99
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@@ -249,7 +249,7 @@ enum
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};
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/* Return number of classification appropriate for X. */
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-# ifndef __UCLIBC_HAS_LONG_DOUBLE_MATH__
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+# ifdef __NO_LONG_DOUBLE_MATH
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# define fpclassify(x) \
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(sizeof (x) == sizeof (float) ? __fpclassifyf (x) : __fpclassify (x))
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# else
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@@ -261,7 +261,7 @@ enum
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# endif
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/* Return nonzero value if sign of X is negative. */
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-# ifndef __UCLIBC_HAS_LONG_DOUBLE_MATH__
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+# ifdef __NO_LONG_DOUBLE_MATH
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# define signbit(x) \
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(sizeof (x) == sizeof (float) ? __signbitf (x) : __signbit (x))
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# else
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@@ -273,7 +273,7 @@ enum
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# endif
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/* Return nonzero value if X is not +-Inf or NaN. */
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-# ifndef __UCLIBC_HAS_LONG_DOUBLE_MATH__
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+# ifdef __NO_LONG_DOUBLE_MATH
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# define isfinite(x) \
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(sizeof (x) == sizeof (float) ? __finitef (x) : __finite (x))
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# else
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@@ -289,7 +289,7 @@ enum
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/* Return nonzero value if X is a NaN. We could use `fpclassify' but
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we already have this functions `__isnan' and it is faster. */
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-# ifndef __UCLIBC_HAS_LONG_DOUBLE_MATH__
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+# ifdef __NO_LONG_DOUBLE_MATH
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# define isnan(x) \
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(sizeof (x) == sizeof (float) ? __isnanf (x) : __isnan (x))
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# else
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@@ -301,7 +301,7 @@ enum
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# endif
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/* Return nonzero value is X is positive or negative infinity. */
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-# ifndef __UCLIBC_HAS_LONG_DOUBLE_MATH__
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+# ifdef __NO_LONG_DOUBLE_MATH
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# define isinf(x) \
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(sizeof (x) == sizeof (float) ? __isinff (x) : __isinf (x))
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# else
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