#ifndef LLVM_SUPPORT_CASTING_H
#define LLVM_SUPPORT_CASTING_H
+#include "llvm/Support/Compiler.h"
#include "llvm/Support/type_traits.h"
#include <cassert>
// if (isa<Type>(myVal)) { ... }
//
template <class X, class Y>
-inline bool isa(const Y &Val) {
+LLVM_ATTRIBUTE_UNUSED_RESULT inline bool isa(const Y &Val) {
return isa_impl_wrap<X, const Y,
typename simplify_type<const Y>::SimpleType>::doit(Val);
}
// accepted.
//
template <class X, class Y>
-inline typename cast_retty<X, Y*>::ret_type cast_or_null(Y *Val) {
+LLVM_ATTRIBUTE_UNUSED_RESULT inline typename cast_retty<X, Y *>::ret_type
+cast_or_null(Y *Val) {
if (Val == 0) return 0;
assert(isa<X>(Val) && "cast_or_null<Ty>() argument of incompatible type!");
return cast<X>(Val);
//
template <class X, class Y>
-inline typename enable_if_c<!is_simple_type<Y>::value,
- typename cast_retty<X, const Y>::ret_type>::type
+LLVM_ATTRIBUTE_UNUSED_RESULT inline typename enable_if_c<
+ !is_simple_type<Y>::value, typename cast_retty<X, const Y>::ret_type>::type
dyn_cast(const Y &Val) {
return isa<X>(Val) ? cast<X>(Val) : 0;
}
template <class X, class Y>
-inline typename cast_retty<X, Y>::ret_type dyn_cast(Y &Val) {
+LLVM_ATTRIBUTE_UNUSED_RESULT inline typename cast_retty<X, Y>::ret_type
+dyn_cast(Y &Val) {
return isa<X>(Val) ? cast<X>(Val) : 0;
}
template <class X, class Y>
-inline typename cast_retty<X, Y *>::ret_type dyn_cast(Y *Val) {
+LLVM_ATTRIBUTE_UNUSED_RESULT inline typename cast_retty<X, Y *>::ret_type
+dyn_cast(Y *Val) {
return isa<X>(Val) ? cast<X>(Val) : 0;
}
// value is accepted.
//
template <class X, class Y>
-inline typename cast_retty<X, Y*>::ret_type dyn_cast_or_null(Y *Val) {
+LLVM_ATTRIBUTE_UNUSED_RESULT inline typename cast_retty<X, Y *>::ret_type
+dyn_cast_or_null(Y *Val) {
return (Val && isa<X>(Val)) ? cast<X>(Val) : 0;
}