};
SHAPE (unary_int32)
+/* [u]int32_t vfoo[_<t0>]([u]int32_t, <T0>_t)
+
+ i.e. a version of "unary" which accumulates into scalar of type
+ int32_t or uint32_t depending on the signedness of the elements of
+ of input vector.
+
+ Example: vaddvaq.
+ int32_t [__arm_]vaddvaq[_s16](int32_t a, int16x8_t b)
+ int32_t [__arm_]vaddvaq_p[_s16](int32_t a, int16x8_t b, mve_pred16_t p) */
+struct unary_int32_acc_def : public overloaded_base<0>
+{
+ void
+ build (function_builder &b, const function_group_info &group,
+ bool preserve_user_namespace) const override
+ {
+ b.add_overloaded_functions (group, MODE_none, preserve_user_namespace);
+ build_all (b, "sx32,sx32,v0", group, MODE_none, preserve_user_namespace);
+ }
+
+ tree
+ resolve (function_resolver &r) const override
+ {
+ unsigned int i, nargs;
+ type_suffix_index type;
+ if (!r.check_gp_argument (2, i, nargs)
+ || !r.require_integer_immediate (0)
+ || (type = r.infer_vector_type (1)) == NUM_TYPE_SUFFIXES)
+ return error_mark_node;
+
+ return r.resolve_to (r.mode_suffix_id, type);
+ }
+};
+SHAPE (unary_int32_acc)
+
/* <T0>_t vfoo[_n]_t0(<S0>_t)
Example: vdupq.
extern const function_shape *const unary;
extern const function_shape *const unary_convert;
extern const function_shape *const unary_int32;
+ extern const function_shape *const unary_int32_acc;
extern const function_shape *const unary_n;
} /* end namespace arm_mve::shapes */