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Echoing what was added in #5608, updating existing uses. Unfortunately there's divergent behavior for operators versus constructors, so keeping the nolint on those.
267 lines
9.2 KiB
C++
267 lines
9.2 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#ifndef CARBON_COMMON_ERROR_H_
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#define CARBON_COMMON_ERROR_H_
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#include <concepts>
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#include <functional>
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#include <string>
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#include <type_traits>
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#include <utility>
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#include <variant>
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#include "common/check.h"
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#include "common/ostream.h"
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#include "common/raw_string_ostream.h"
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#include "llvm/ADT/Twine.h"
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namespace Carbon {
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// Success values should be represented as the presence of a value in ErrorOr,
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// using `ErrorOr<Success>` and `return Success();` if no value needs to be
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// returned.
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struct Success : public Printable<Success> {
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auto Print(llvm::raw_ostream& out) const -> void { out << "Success"; }
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};
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// Tracks an error message.
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//
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// This is nodiscard to enforce error handling prior to destruction.
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class [[nodiscard]] Error : public Printable<Error> {
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public:
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// Represents an error state.
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explicit Error(llvm::Twine message) : message_(message.str()) {
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CARBON_CHECK(!message_.empty(), "Errors must have a message.");
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}
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// Move-only.
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Error(Error&& other) noexcept = default;
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auto operator=(Error&& other) noexcept -> Error& = default;
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// Prints the error string.
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auto Print(llvm::raw_ostream& out) const -> void { out << message(); }
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// Returns the error message.
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auto message() const -> const std::string& { return message_; }
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private:
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// The error message.
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std::string message_;
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};
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// A common base class that custom error types should derive from.
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//
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// This combines the ability to be printed with the ability to convert the error
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// to a string and in turn to a non-customized `Error` type by rendering into a
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// string.
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//
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// The goal is that custom error types can be used for errors that are common
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// and/or would have cost to fully render the error message to a string. A
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// custom type can then be used to allow custom, light-weight handling of errors
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// when appropriate. But to avoid these custom types being excessively viral, we
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// ensure they can be converted to normal `Error` types when needed by rendering
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// fully to a string.
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template <typename ErrorT>
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class [[nodiscard]] ErrorBase : public Printable<ErrorT> {
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public:
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ErrorBase(const ErrorBase&) = delete;
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auto operator=(const ErrorBase&) -> ErrorBase& = delete;
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auto ToString() const -> std::string {
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RawStringOstream os;
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static_cast<const ErrorT*>(this)->Print(os);
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return os.TakeStr();
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}
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auto ToError() const -> Error { return Error(this->ToString()); }
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protected:
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ErrorBase() = default;
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ErrorBase(ErrorBase&&) noexcept = default;
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auto operator=(ErrorBase&&) noexcept -> ErrorBase& = default;
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};
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// Holds a value of type `T`, or an `ErrorT` type explaining why the value is
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// unavailable.
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//
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// The `ErrorT` type defaults to `Error` but can be customized where desired
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// with a type that derives from `ErrorBase` above. See the documentation for
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// `ErrorBase` to understand the expected contract of custom error types.
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//
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// This is nodiscard to enforce error handling prior to destruction.
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template <typename T, typename ErrorT = Error>
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class [[nodiscard]] ErrorOr {
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public:
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using ValueT = std::remove_reference_t<T>;
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// Check that the custom error type is structured the way we expect. These
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// need to be `static_assert`s to enable forward declared error types to be
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// used with `ErrorOr` in function signatures.
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static_assert(!std::is_reference_v<ErrorT>);
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static_assert(std::same_as<ErrorT, Error> ||
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std::derived_from<ErrorT, ErrorBase<ErrorT>>);
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// Constructs with an error; the error must not be Error::Success().
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// Implicit for easy construction on returns.
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explicit(false) ErrorOr(ErrorT err) : val_(std::move(err)) {}
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// Constructs from a custom error type derived from `ErrorBase` into an
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// `ErrorOr` for `Error` to facilitate returning errors transparently.
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template <typename OtherErrorT>
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requires(std::same_as<ErrorT, Error> &&
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std::derived_from<OtherErrorT, ErrorBase<OtherErrorT>>)
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// Implicit for easy construction on returns.
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explicit(false) ErrorOr(OtherErrorT other_err) : val_(other_err.ToError()) {}
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// Constructs with any convertible error type, necessary for return statements
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// that are already converting to the `ErrorOr` wrapper.
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//
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// This supports *explicitly* conversions, not just implicit, which is
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// important to make common patterns of returning and adjusting the error
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// type without each error type conversion needing to be implicit.
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template <typename OtherErrorT>
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requires(std::constructible_from<ErrorT, OtherErrorT> &&
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std::derived_from<OtherErrorT, ErrorBase<OtherErrorT>>)
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// Implicit for easy construction on returns.
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explicit(false) ErrorOr(OtherErrorT other_err)
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: val_(std::in_place_type<ErrorT>, std::move(other_err)) {}
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// Constructs with a reference.
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// Implicit for easy construction on returns.
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explicit(false) ErrorOr(T ref)
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requires std::is_reference_v<T>
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: val_(std::ref(ref)) {}
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// Constructs with a value.
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// Implicit for easy construction on returns.
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explicit(false) ErrorOr(T val)
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requires(!std::is_reference_v<T>)
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: val_(std::move(val)) {}
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// Returns true for success.
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auto ok() const -> bool { return std::holds_alternative<StoredT>(val_); }
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// Returns the contained error.
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// REQUIRES: `ok()` is false.
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auto error() const& -> const ErrorT& {
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CARBON_CHECK(!ok());
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return std::get<ErrorT>(val_);
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}
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auto error() && -> ErrorT {
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CARBON_CHECK(!ok());
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return std::get<ErrorT>(std::move(val_));
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}
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// Checks that `ok()` is true.
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// REQUIRES: `ok()` is true.
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auto Check() const -> void { CARBON_CHECK(ok(), "{0}", error()); }
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// Returns the contained value.
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// REQUIRES: `ok()` is true.
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[[nodiscard]] auto operator*() & -> ValueT& {
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Check();
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return std::get<StoredT>(val_);
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}
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// Returns the contained value.
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// REQUIRES: `ok()` is true.
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[[nodiscard]] auto operator*() const& -> const ValueT& {
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Check();
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return std::get<StoredT>(val_);
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}
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// Returns the contained value.
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// REQUIRES: `ok()` is true.
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[[nodiscard]] auto operator*() && -> ValueT&& {
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Check();
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return std::get<StoredT>(std::move(val_));
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}
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// Returns the contained value.
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// REQUIRES: `ok()` is true.
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auto operator->() -> ValueT* { return &**this; }
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// Returns the contained value.
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// REQUIRES: `ok()` is true.
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auto operator->() const -> const ValueT* { return &**this; }
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private:
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using StoredT = std::conditional_t<std::is_reference_v<T>,
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std::reference_wrapper<ValueT>, T>;
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// Either an error message or a value.
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std::variant<ErrorT, StoredT> val_;
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};
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// A helper class for accumulating error message and converting to
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// `Error` and `ErrorOr<T>`.
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class ErrorBuilder {
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public:
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explicit ErrorBuilder() : out_(std::make_unique<RawStringOstream>()) {}
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ErrorBuilder(ErrorBuilder&&) = default;
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auto operator=(ErrorBuilder&&) -> ErrorBuilder& = default;
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// Accumulates string message to a temporary `ErrorBuilder`. After streaming,
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// the builder must be converted to an `Error` or `ErrorOr`.
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template <typename T>
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auto operator<<(T&& message) && -> ErrorBuilder&& {
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*out_ << message;
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return std::move(*this);
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}
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// Accumulates string message for an lvalue error builder.
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template <typename T>
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auto operator<<(T&& message) & -> ErrorBuilder& {
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*out_ << message;
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return *this;
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}
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// NOLINTNEXTLINE(google-explicit-constructor): Implicit cast for returns.
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explicit(false) operator Error() { return Error(out_->TakeStr()); }
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template <typename T>
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// NOLINTNEXTLINE(google-explicit-constructor): Implicit cast for returns.
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explicit(false) operator ErrorOr<T>() {
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return Error(out_->TakeStr());
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}
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private:
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std::unique_ptr<RawStringOstream> out_;
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};
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} // namespace Carbon
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// Macro hackery to get a unique variable name.
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#define CARBON_MAKE_UNIQUE_NAME_IMPL(a, b, c) a##b##c
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#define CARBON_MAKE_UNIQUE_NAME(a, b, c) CARBON_MAKE_UNIQUE_NAME_IMPL(a, b, c)
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// Macro to prevent a top-level comma from being interpreted as a macro
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// argument separator.
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#define CARBON_PROTECT_COMMAS(...) __VA_ARGS__
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#define CARBON_RETURN_IF_ERROR_IMPL(unique_name, expr) \
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if (auto unique_name = (expr); !(unique_name).ok()) { \
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return std::move(unique_name).error(); \
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}
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#define CARBON_RETURN_IF_ERROR(expr) \
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CARBON_RETURN_IF_ERROR_IMPL( \
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CARBON_MAKE_UNIQUE_NAME(_llvm_error_line, __LINE__, __COUNTER__), \
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CARBON_PROTECT_COMMAS(expr))
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#define CARBON_ASSIGN_OR_RETURN_IMPL(unique_name, var, expr) \
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auto unique_name = (expr); \
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if (!(unique_name).ok()) { \
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return std::move(unique_name).error(); \
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} \
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var = std::move(*(unique_name));
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#define CARBON_ASSIGN_OR_RETURN(var, expr) \
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CARBON_ASSIGN_OR_RETURN_IMPL( \
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CARBON_MAKE_UNIQUE_NAME(_llvm_expected_line, __LINE__, __COUNTER__), \
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CARBON_PROTECT_COMMAS(var), CARBON_PROTECT_COMMAS(expr))
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#endif // CARBON_COMMON_ERROR_H_
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