return reinterpret_cast<const T *>(storage.buffer);
}
};
-template <typename T> struct OptionalStorage<T, true> {
- AlignedCharArrayUnion<T> storage;
- bool hasVal = false;
-
- OptionalStorage() = default;
-
- OptionalStorage(const T &y) : hasVal(true) { new (storage.buffer) T(y); }
- OptionalStorage(const OptionalStorage &O) = default;
- OptionalStorage(T &&y) : hasVal(true) {
- new (storage.buffer) T(std::forward<T>(y));
- }
- OptionalStorage(OptionalStorage &&O) = default;
-
- OptionalStorage &operator=(T &&y) {
- if (hasVal)
- *getPointer() = std::move(y);
- else {
- new (storage.buffer) T(std::move(y));
- hasVal = true;
- }
- return *this;
- }
- OptionalStorage &operator=(OptionalStorage &&O) = default;
-
- OptionalStorage &operator=(const T &y) {
- if (hasVal)
- *getPointer() = y;
- else {
- new (storage.buffer) T(y);
- hasVal = true;
- }
- return *this;
- }
- OptionalStorage &operator=(const OptionalStorage &O) = default;
-
- ~OptionalStorage() = default;
-
- void reset() {
- if (hasVal) {
- (*getPointer()).~T();
- hasVal = false;
- }
- }
-
- T *getPointer() {
- assert(hasVal);
- return reinterpret_cast<T *>(storage.buffer);
- }
- const T *getPointer() const {
- assert(hasVal);
- return reinterpret_cast<const T *>(storage.buffer);
- }
-};
} // namespace optional_detail
#include <array>
-
using namespace llvm;
-static_assert(llvm::is_trivially_copyable<Optional<int>>::value,
- "trivially copyable");
-
-static_assert(llvm::is_trivially_copyable<Optional<std::array<int, 3>>>::value,
- "trivially copyable");
-
namespace {
struct NonDefaultConstructible {