llvm/flang/lib/parser/message.h

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#ifndef FORTRAN_PARSER_MESSAGE_H_
#define FORTRAN_PARSER_MESSAGE_H_
// Defines a representation for sequences of compiler messages.
// Supports nested contextualization.
#include "idioms.h"
#include "provenance.h"
#include <forward_list>
#include <memory>
#include <optional>
#include <ostream>
#include <string>
namespace Fortran {
namespace parser {
// Use "..."_en_US literals to define the static text of a message.
class MessageFixedText {
public:
MessageFixedText() {}
constexpr MessageFixedText(const char str[], size_t n)
: str_{str}, bytes_{n} {}
constexpr MessageFixedText(const MessageFixedText &) = default;
MessageFixedText(MessageFixedText &&) = default;
constexpr MessageFixedText &operator=(const MessageFixedText &) = default;
MessageFixedText &operator=(MessageFixedText &&) = default;
const char *str() const { return str_; }
size_t size() const { return bytes_; }
bool empty() const { return bytes_ == 0; }
std::string ToString() const { return std::string(str_, bytes_); }
private:
const char *str_{nullptr};
size_t bytes_{0};
};
constexpr MessageFixedText operator""_en_US(const char str[], size_t n) {
return MessageFixedText{str, n};
}
std::ostream &operator<<(std::ostream &, const MessageFixedText &);
class Message;
using MessageContext = std::shared_ptr<Message>;
class Message {
public:
Message() {}
Message(const Message &) = default;
Message(Provenance p, MessageFixedText t, MessageContext c = nullptr)
: provenance_{p}, text_{t}, context_{c} {}
Message(Message &&) = default;
Message &operator=(const Message &that) = default;
Message &operator=(Message &&that) = default;
bool operator<(const Message &that) const {
return provenance_ < that.provenance_;
}
Provenance provenance() const { return provenance_; }
MessageFixedText text() const { return text_; }
std::string extra() const { return extra_; }
MessageContext context() const { return context_; }
Message &operator+=(std::string s) {
extra_ += s;
return *this;
}
Message &operator+=(char ch) {
extra_ += ch;
return *this;
}
Provenance Emit(
std::ostream &, const AllSources &, bool echoSourceLine = true) const;
private:
Provenance provenance_;
MessageFixedText text_;
std::string extra_;
MessageContext context_;
};
class Messages {
using list_type = std::forward_list<Message>;
public:
using iterator = list_type::iterator;
using const_iterator = list_type::const_iterator;
explicit Messages(const AllSources &sources) : allSources_{sources} {}
Messages(Messages &&that)
: allSources_{that.allSources_}, messages_{std::move(that.messages_)},
last_{that.last_} {}
Messages &operator=(Messages &&that) {
swap(that);
return *this;
}
void swap(Messages &that) {
messages_.swap(that.messages_);
std::swap(last_, that.last_);
}
iterator begin() { return messages_.begin(); }
iterator end() { return messages_.end(); }
const_iterator begin() const { return messages_.cbegin(); }
const_iterator end() const { return messages_.cend(); }
const_iterator cbegin() const { return messages_.cbegin(); }
const_iterator cend() const { return messages_.cend(); }
const AllSources &allSources() const { return allSources_; }
Message &Put(Message &&m) {
CHECK(m.provenance() < allSources_.size());
if (messages_.empty()) {
messages_.emplace_front(std::move(m));
last_ = messages_.begin();
} else {
last_ = messages_.emplace_after(last_, std::move(m));
}
return *last_;
}
void Annex(Messages *that) {
if (!that->messages_.empty()) {
if (messages_.empty()) {
messages_ = std::move(that->messages_);
} else {
messages_.splice_after(last_, that->messages_);
}
last_ = that->last_;
}
}
void Emit(std::ostream &) const;
private:
const AllSources &allSources_;
list_type messages_;
iterator last_; // valid iff messages_ nonempty
};
} // namespace parser
} // namespace Fortran
#endif // FORTRAN_PARSER_MESSAGE_H_