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authorJoseph Myers <joseph@codesourcery.com>2021-09-28 23:31:35 +0000
committerJoseph Myers <joseph@codesourcery.com>2021-09-28 23:31:35 +0000
commit90f0ac10a74b2d43b5a65aab4be40565e359be43 (patch)
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parent5bf07e1b3a74232bfb8332275110be1a5da50f83 (diff)
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Add fmaximum, fminimum functions
C2X adds new <math.h> functions for floating-point maximum and minimum, corresponding to the new operations that were added in IEEE 754-2019 because of concerns about the old operations not being associative in the presence of signaling NaNs. fmaximum and fminimum handle NaNs like most <math.h> functions (any NaN argument means the result is a quiet NaN). fmaximum_num and fminimum_num handle both quiet and signaling NaNs the way fmax and fmin handle quiet NaNs (if one argument is a number and the other is a NaN, return the number), but still raise "invalid" for a signaling NaN argument, making them exceptions to the normal rule that a function with a floating-point result raising "invalid" also returns a quiet NaN. fmaximum_mag, fminimum_mag, fmaximum_mag_num and fminimum_mag_num are corresponding functions returning the argument with greatest or least absolute value. All these functions also treat +0 as greater than -0. There are also corresponding <tgmath.h> type-generic macros. Add these functions to glibc. The implementations use type-generic templates based on those for fmax, fmin, fmaxmag and fminmag, and test inputs are based on those for those functions with appropriate adjustments to the expected results. The RISC-V maintainers might wish to add optimized versions of fmaximum_num and fminimum_num (for float and double), since RISC-V (F extension version 2.2 and later) provides instructions corresponding to those functions - though it might be at least as useful to add architecture-independent built-in functions to GCC and teach the RISC-V back end to expand those functions inline, which is what you generally want for functions that can be implemented with a single instruction. Tested for x86_64 and x86, and with build-many-glibcs.py.
Diffstat (limited to 'math/tgmath.h')
-rw-r--r--math/tgmath.h32
1 files changed, 32 insertions, 0 deletions
diff --git a/math/tgmath.h b/math/tgmath.h
index 5fdc798..9868353 100644
--- a/math/tgmath.h
+++ b/math/tgmath.h
@@ -929,6 +929,38 @@
# define fminmag(Val1, Val2) __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fminmag)
#endif
+#if __GLIBC_USE (ISOC2X)
+/* Return maximum value from X and Y. */
+# define fmaximum(Val1, Val2) __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fmaximum)
+
+/* Return minimum value from X and Y. */
+# define fminimum(Val1, Val2) __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fminimum)
+
+/* Return maximum numeric value from X and Y. */
+# define fmaximum_num(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fmaximum_num)
+
+/* Return minimum numeric value from X and Y. */
+# define fminimum_num(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fminimum_num)
+
+/* Return value with maximum magnitude. */
+# define fmaximum_mag(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fmaximum_mag)
+
+/* Return value with minimum magnitude. */
+# define fminimum_mag(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fminimum_mag)
+
+/* Return numeric value with maximum magnitude. */
+# define fmaximum_mag_num(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fmaximum_mag_num)
+
+/* Return numeric value with minimum magnitude. */
+# define fminimum_mag_num(Val1, Val2) \
+ __TGMATH_BINARY_REAL_ONLY (Val1, Val2, fminimum_mag_num)
+#endif
+
/* Absolute value, conjugates, and projection. */