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-rw-r--r--math/math-narrow.h58
1 files changed, 58 insertions, 0 deletions
diff --git a/math/math-narrow.h b/math/math-narrow.h
index 1a3a5c57d7..03397a6d28 100644
--- a/math/math-narrow.h
+++ b/math/math-narrow.h
@@ -49,6 +49,64 @@
u.d; \
})
+/* Check for error conditions from a narrowing add function returning
+ RET with arguments X and Y and set errno as needed. Overflow and
+ underflow can occur for finite arguments and a domain error for
+ infinite ones. */
+#define CHECK_NARROW_ADD(RET, X, Y) \
+ do \
+ { \
+ if (!isfinite (RET)) \
+ { \
+ if (isnan (RET)) \
+ { \
+ if (!isnan (X) && !isnan (Y)) \
+ __set_errno (EDOM); \
+ } \
+ else if (isfinite (X) && isfinite (Y)) \
+ __set_errno (ERANGE); \
+ } \
+ else if ((RET) == 0 && (X) != -(Y)) \
+ __set_errno (ERANGE); \
+ } \
+ while (0)
+
+/* Implement narrowing add using round-to-odd. The arguments are X
+ and Y, the return type is TYPE and UNION, MANTISSA and SUFFIX are
+ as for ROUND_TO_ODD. */
+#define NARROW_ADD_ROUND_TO_ODD(X, Y, TYPE, UNION, SUFFIX, MANTISSA) \
+ do \
+ { \
+ TYPE ret; \
+ \
+ /* Ensure a zero result is computed in the original rounding \
+ mode. */ \
+ if ((X) == -(Y)) \
+ ret = (TYPE) ((X) + (Y)); \
+ else \
+ ret = (TYPE) ROUND_TO_ODD (math_opt_barrier (X) + (Y), \
+ UNION, SUFFIX, MANTISSA); \
+ \
+ CHECK_NARROW_ADD (ret, (X), (Y)); \
+ return ret; \
+ } \
+ while (0)
+
+/* Implement a narrowing add function that is not actually narrowing
+ or where no attempt is made to be correctly rounding (the latter
+ only applies to IBM long double). The arguments are X and Y and
+ the return type is TYPE. */
+#define NARROW_ADD_TRIVIAL(X, Y, TYPE) \
+ do \
+ { \
+ TYPE ret; \
+ \
+ ret = (TYPE) ((X) + (Y)); \
+ CHECK_NARROW_ADD (ret, (X), (Y)); \
+ return ret; \
+ } \
+ while (0)
+
/* The following macros declare aliases for a narrowing function. The
sole argument is the base name of a family of functions, such as
"add". If any platform changes long double format after the