1 //===--- ExpectedTypes.h - Simplified C++ types -----------------*- C++-*--===//
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
7 //===----------------------------------------------------------------------===//
8 // A simplified model of C++ types that can be used to check whether they are
9 // convertible between each other for the purposes of code completion ranking
10 // without looking at the ASTs. Note that we don't aim to fully mimic the C++
11 // conversion rules, merely try to have a model that gives useful improvements
12 // to the code completion ranking.
14 // We define an encoding of AST types as opaque strings, which can be stored in
15 // the index. Similar types (such as `int` and `long`) are folded together,
16 // forming equivalence classes with the same encoding.
17 //===----------------------------------------------------------------------===//
18 #ifndef LLVM_CLANG_TOOLS_EXTRA_CLANGD_EXPECTEDTYPES_H
19 #define LLVM_CLANG_TOOLS_EXTRA_CLANGD_EXPECTEDTYPES_H
21 #include "clang/AST/Type.h"
22 #include "llvm/ADT/StringRef.h"
26 class CodeCompletionResult
;
29 /// A representation of a type that can be computed based on clang AST and
30 /// compared for equality. The encoding is stable between different ASTs, this
31 /// allows the representation to be stored in the index and compared with types
32 /// coming from a different AST later.
33 /// OpaqueType is a strongly-typedefed std::string, you can get the underlying
34 /// string with raw().
37 /// Create a type from a code completion result.
38 static std::optional
<OpaqueType
>
39 fromCompletionResult(ASTContext
&Ctx
, const CodeCompletionResult
&R
);
40 /// Construct an instance from a clang::QualType. This is usually a
41 /// PreferredType from a clang's completion context.
42 static std::optional
<OpaqueType
> fromType(ASTContext
&Ctx
, QualType Type
);
44 /// Get the raw byte representation of the type. You can only rely on the
45 /// types being equal iff their raw representation is the same. The particular
46 /// details of the used encoding might change over time and one should not
48 llvm::StringRef
raw() const { return Data
; }
50 friend bool operator==(const OpaqueType
&L
, const OpaqueType
&R
) {
51 return L
.Data
== R
.Data
;
53 friend bool operator!=(const OpaqueType
&L
, const OpaqueType
&R
) {
58 static std::optional
<OpaqueType
> encode(ASTContext
&Ctx
, QualType Type
);
59 explicit OpaqueType(std::string Data
);