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revng-revng/include/revng/Pipeline/PathTargetBimap.h
2024-10-30 17:54:48 +01:00

109 lines
3.0 KiB
C++

#pragma once
//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include <string>
#include <tuple>
#include "llvm/ADT/STLExtras.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/Support/YAMLTraits.h"
#include "revng/Pipeline/Target.h"
#include "revng/TupleTree/TupleTreePath.h"
namespace pipeline {
class Context;
class TargetInContainer {
private:
Target Content;
std::string ContainerName;
public:
TargetInContainer(const Target &Target, const std::string &ContainerName) :
Content(Target), ContainerName(ContainerName) {}
const Target &getTarget() const { return Content; }
llvm::StringRef getContainerName() const {
return llvm::StringRef(ContainerName);
}
Target &getTarget() { return Content; }
std::string &getContainerName() { return ContainerName; }
bool operator==(const TargetInContainer &) const = default;
bool operator!=(const TargetInContainer &) const = default;
bool operator<(const TargetInContainer &Other) const {
const auto &LHS = std::tie(Content, ContainerName);
return LHS < std::tie(Other.Content, Other.ContainerName);
}
template<typename OStream>
void dump(OStream &OS, size_t Indentation = 0) const debug_function {
indent(OS, Indentation);
OS << Content.toString() << " in " << ContainerName << "\n";
}
};
/// A PathTargetBimap is a many to many relationship between a TupleTreePaths
/// and TargetInContainer. It can be queried both ways, so from a target and a
/// container you can get the list of tuple tree paths that contribuited to that
/// target in that container, and from a tuple tree path you can know all the
/// targets that have been created reading the field pointed by that path.
class PathTargetBimap {
private:
using MapType = std::map<TupleTreePath, std::set<TargetInContainer>>;
MapType Map;
public:
explicit PathTargetBimap() : Map() {}
public:
auto begin() { return Map.begin(); }
auto end() { return Map.end(); }
auto begin() const { return Map.begin(); }
auto end() const { return Map.end(); }
public:
auto find(const TupleTreePath &Path) const { return Map.find(Path); }
public:
void merge(PathTargetBimap &&Other) {
for (auto &Entry : Other.Map)
for (auto &Target : Entry.second)
insert(std::move(Target), std::move(Entry.first));
}
public:
void clear() { Map = MapType(); }
void insert(const TargetInContainer &TargetInContainer,
const TupleTreePath &Path) {
Map[Path].insert(TargetInContainer);
}
void insert(const Target &Target,
const std::string &ContainerName,
const TupleTreePath &Path) {
TargetInContainer Located(Target, ContainerName);
insert(Located, Path);
}
void remove(const TargetsList &List, llvm::StringRef ContainerName) {
for (auto &[Path, Targets] : Map) {
std::erase_if(Targets, [&List](const TargetInContainer &TIC) -> bool {
return List.contains(TIC.getTarget());
});
}
}
};
} // namespace pipeline