1 //===-- TestIndex.cpp -------------------------------------------*- C++ -*-===//
2 //
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
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "TestIndex.h"
10 #include "clang/Index/IndexSymbol.h"
11 #include "llvm/Support/Regex.h"
12 
13 namespace clang {
14 namespace clangd {
15 
symbol(llvm::StringRef QName)16 Symbol symbol(llvm::StringRef QName) {
17   Symbol Sym;
18   Sym.ID = SymbolID(QName.str());
19   size_t Pos = QName.rfind("::");
20   if (Pos == llvm::StringRef::npos) {
21     Sym.Name = QName;
22     Sym.Scope = "";
23   } else {
24     Sym.Name = QName.substr(Pos + 2);
25     Sym.Scope = QName.substr(0, Pos + 2);
26   }
27   return Sym;
28 }
29 
replace(llvm::StringRef Haystack,llvm::StringRef Needle,llvm::StringRef Repl)30 static std::string replace(llvm::StringRef Haystack, llvm::StringRef Needle,
31                            llvm::StringRef Repl) {
32   llvm::SmallVector<llvm::StringRef> Parts;
33   Haystack.split(Parts, Needle);
34   return llvm::join(Parts, Repl);
35 }
36 
37 // Helpers to produce fake index symbols for memIndex() or completions().
38 // USRFormat is a regex replacement string for the unqualified part of the USR.
sym(llvm::StringRef QName,index::SymbolKind Kind,llvm::StringRef USRFormat)39 Symbol sym(llvm::StringRef QName, index::SymbolKind Kind,
40            llvm::StringRef USRFormat) {
41   Symbol Sym;
42   std::string USR = "c:"; // We synthesize a few simple cases of USRs by hand!
43   size_t Pos = QName.rfind("::");
44   if (Pos == llvm::StringRef::npos) {
45     Sym.Name = QName;
46     Sym.Scope = "";
47   } else {
48     Sym.Name = QName.substr(Pos + 2);
49     Sym.Scope = QName.substr(0, Pos + 2);
50     USR += "@N@" + replace(QName.substr(0, Pos), "::", "@N@"); // ns:: -> @N@ns
51   }
52   USR += llvm::Regex("^.*$").sub(USRFormat, Sym.Name); // e.g. func -> @F@func#
53   Sym.ID = SymbolID(USR);
54   Sym.SymInfo.Kind = Kind;
55   Sym.Flags |= Symbol::IndexedForCodeCompletion;
56   Sym.Origin = SymbolOrigin::Static;
57   return Sym;
58 }
59 
func(llvm::StringRef Name)60 Symbol func(llvm::StringRef Name) { // Assumes the function has no args.
61   return sym(Name, index::SymbolKind::Function, "@F@\\0#"); // no args
62 }
63 
cls(llvm::StringRef Name)64 Symbol cls(llvm::StringRef Name) {
65   return sym(Name, index::SymbolKind::Class, "@S@\\0");
66 }
67 
enm(llvm::StringRef Name)68 Symbol enm(llvm::StringRef Name) {
69   return sym(Name, index::SymbolKind::Enum, "@E@\\0");
70 }
71 
var(llvm::StringRef Name)72 Symbol var(llvm::StringRef Name) {
73   return sym(Name, index::SymbolKind::Variable, "@\\0");
74 }
75 
ns(llvm::StringRef Name)76 Symbol ns(llvm::StringRef Name) {
77   return sym(Name, index::SymbolKind::Namespace, "@N@\\0");
78 }
79 
conceptSym(llvm::StringRef Name)80 Symbol conceptSym(llvm::StringRef Name) {
81   return sym(Name, index::SymbolKind::Concept, "@CT@\\0");
82 }
83 
objcSym(llvm::StringRef Name,index::SymbolKind Kind,llvm::StringRef USRPrefix)84 Symbol objcSym(llvm::StringRef Name, index::SymbolKind Kind,
85                llvm::StringRef USRPrefix) {
86   Symbol Sym;
87   std::string USR = USRPrefix.str() + Name.str();
88   Sym.Name = Name;
89   Sym.Scope = "";
90   Sym.ID = SymbolID(USR);
91   Sym.SymInfo.Kind = Kind;
92   Sym.SymInfo.Lang = index::SymbolLanguage::ObjC;
93   Sym.Flags |= Symbol::IndexedForCodeCompletion;
94   Sym.Origin = SymbolOrigin::Static;
95   return Sym;
96 }
97 
objcClass(llvm::StringRef Name)98 Symbol objcClass(llvm::StringRef Name) {
99   return objcSym(Name, index::SymbolKind::Class, "objc(cs)");
100 }
101 
objcProtocol(llvm::StringRef Name)102 Symbol objcProtocol(llvm::StringRef Name) {
103   return objcSym(Name, index::SymbolKind::Protocol, "objc(pl)");
104 }
105 
generateSymbols(std::vector<std::string> QualifiedNames)106 SymbolSlab generateSymbols(std::vector<std::string> QualifiedNames) {
107   SymbolSlab::Builder Slab;
108   for (llvm::StringRef QName : QualifiedNames)
109     Slab.insert(symbol(QName));
110   return std::move(Slab).build();
111 }
112 
generateNumSymbols(int Begin,int End)113 SymbolSlab generateNumSymbols(int Begin, int End) {
114   std::vector<std::string> Names;
115   for (int I = Begin; I <= End; I++)
116     Names.push_back(std::to_string(I));
117   return generateSymbols(Names);
118 }
119 
getQualifiedName(const Symbol & Sym)120 std::string getQualifiedName(const Symbol &Sym) {
121   return (Sym.Scope + Sym.Name + Sym.TemplateSpecializationArgs).str();
122 }
123 
match(const SymbolIndex & I,const FuzzyFindRequest & Req,bool * Incomplete)124 std::vector<std::string> match(const SymbolIndex &I,
125                                const FuzzyFindRequest &Req, bool *Incomplete) {
126   std::vector<std::string> Matches;
127   bool IsIncomplete = I.fuzzyFind(Req, [&](const Symbol &Sym) {
128     Matches.push_back(clang::clangd::getQualifiedName(Sym));
129   });
130   if (Incomplete)
131     *Incomplete = IsIncomplete;
132   return Matches;
133 }
134 
135 // Returns qualified names of symbols with any of IDs in the index.
lookup(const SymbolIndex & I,llvm::ArrayRef<SymbolID> IDs)136 std::vector<std::string> lookup(const SymbolIndex &I,
137                                 llvm::ArrayRef<SymbolID> IDs) {
138   LookupRequest Req;
139   Req.IDs.insert(IDs.begin(), IDs.end());
140   std::vector<std::string> Results;
141   I.lookup(Req, [&](const Symbol &Sym) {
142     Results.push_back(getQualifiedName(Sym));
143   });
144   return Results;
145 }
146 
147 } // namespace clangd
148 } // namespace clang
149