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/*
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* Copyright (c) Facebook, Inc. and its affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*/
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#include <vector>
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#include <string>
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#include <optional>
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namespace folly {
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template <class Value>
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class Optional;
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struct None {
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enum class _secret { _token };
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explicit constexpr None(_secret) {}
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};
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constexpr None none{None::_secret::_token};
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template <class Value>
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class Optional {
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public:
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typedef Value value_type;
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constexpr Optional();
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Optional(const Optional& src);
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constexpr Optional(const None&) noexcept;
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constexpr Optional(const Value& newValue);
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void assign(const None&);
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void assign(const Optional& src);
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Optional& operator=(None) noexcept {
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reset();
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return *this;
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}
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Optional& operator=(const Optional& other) {
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assign(other);
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return *this;
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}
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template <class... Args>
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Value& emplace(Args&&... args);
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void reset() noexcept;
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constexpr Value& value() &;
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constexpr const Value& value() const&;
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constexpr bool has_value() const noexcept;
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constexpr explicit operator bool() const noexcept { return has_value(); }
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constexpr const Value* operator->() const { return &value(); }
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constexpr Value* operator->() { return &value(); }
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template <class U>
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constexpr Value value_or(U&& dflt) const&;
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};
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} // namespace folly
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int not_none_ok() {
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folly::Optional<int> foo{5};
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return foo.value();
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}
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// missing a more precise model for
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// constructing an optional from a value
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int not_none_check_value_ok_FP() {
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folly::Optional<int> foo{5};
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int x = foo.value();
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if (x != 5) {
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folly::Optional<int> foo{folly::none};
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return foo.value();
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}
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return x;
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}
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int none_check_ok() {
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folly::Optional<int> foo{folly::none};
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if (foo) {
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return foo.value();
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}
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return -1;
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}
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int none_no_check_bad() {
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folly::Optional<int> foo{folly::none};
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return foo.value();
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}
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int none_copy_ok() {
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folly::Optional<int> foo{5};
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folly::Optional<int> bar{foo};
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return bar.value();
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}
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int none_copy_bad() {
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folly::Optional<int> foo{folly::none};
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folly::Optional<int> bar{foo};
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return bar.value();
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}
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int assign_ok() {
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folly::Optional<int> foo{5};
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folly::Optional<int> bar{foo};
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foo = folly::none;
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return bar.value();
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}
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int assign_bad() {
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folly::Optional<int> foo{folly::none};
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folly::Optional<int> bar{5};
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int sum = bar.value();
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bar = foo;
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sum += bar.value();
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return sum;
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}
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int assign2_bad() {
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folly::Optional<int> foo{5};
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int sum = foo.value();
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foo = folly::none;
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sum += foo.value();
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return sum;
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}
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struct State {
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std::vector<int> vec;
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};
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void emplace(folly::Optional<State> state) {
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if (state) {
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state.emplace();
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}
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auto pos = state->vec.begin();
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}
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void operator_arrow_bad() { emplace(folly::none); }
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int value_or_check_empty_ok() {
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folly::Optional<int> foo{folly::none};
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if (foo.value_or(0) > 0) {
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return foo.value();
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}
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return -1;
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}
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// missing a more precise model for
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// constructing an optional from a value
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int value_or_check_value_ok_FP() {
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folly::Optional<int> foo{5};
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int x = foo.value_or(0);
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if (x != 5) {
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folly::Optional<int> foo{folly::none};
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return foo.value();
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}
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return -1;
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}
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int test_trace_ref() {
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folly::Optional<int> foo{5};
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int sum = foo.value();
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foo = folly::none;
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int& x = foo.value();
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sum += x;
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return sum;
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}
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struct StringWrapper {
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static folly::Optional<StringWrapper> get_optional() {
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return StringWrapper();
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};
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std::string x;
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};
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std::string get_optional_string_wrapper_ok() {
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return StringWrapper::get_optional().value().x.data();
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}
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int std_not_none_ok() {
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std::optional<int> foo{5};
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return foo.value();
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}
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int std_not_none_check_value_ok_FP() {
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std::optional<int> foo{5};
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int x = foo.value();
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if (x != 5) {
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std::optional<int> foo{std::nullopt};
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return foo.value();
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}
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return x;
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}
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int std_none_check_ok() {
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std::optional<int> foo{std::nullopt};
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if (foo) {
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return foo.value();
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}
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return -1;
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}
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int std_none_no_check_bad() {
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std::optional<int> foo{std::nullopt};
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return foo.value();
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}
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int std_none_copy_ok() {
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std::optional<int> foo{5};
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std::optional<int> bar{foo};
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return bar.value();
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}
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int std_none_copy_bad() {
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std::optional<int> foo{std::nullopt};
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std::optional<int> bar{foo};
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return bar.value();
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}
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int std_assign_ok() {
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std::optional<int> foo{5};
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std::optional<int> bar{foo};
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foo = std::nullopt;
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return bar.value();
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}
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int std_assign_bad() {
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std::optional<int> foo{std::nullopt};
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std::optional<int> bar{5};
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int sum = bar.value();
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bar = foo;
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sum += bar.value();
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return sum;
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}
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int std_assign2_bad() {
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std::optional<int> foo{5};
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int sum = foo.value();
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foo = std::nullopt;
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sum += foo.value();
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return sum;
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}
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void std_emplace(std::optional<State> state) {
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if (state) {
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state.emplace();
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}
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auto pos = state->vec.begin();
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}
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void std_operator_arrow_bad() { std_emplace(std::nullopt); }
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int std_value_or_check_empty_ok() {
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std::optional<int> foo{std::nullopt};
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if (foo.value_or(0) > 0) {
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return foo.value();
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}
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return -1;
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}
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int std_value_or_check_value_ok_FP() {
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std::optional<int> foo{5};
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int x = foo.value_or(0);
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if (x != 5) {
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std::optional<int> foo{std::nullopt};
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return foo.value();
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}
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return -1;
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}
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