1 //===--- Hover.cpp - Information about code at the cursor location --------===//
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 "Hover.h"
10
11 #include "AST.h"
12 #include "CodeCompletionStrings.h"
13 #include "Config.h"
14 #include "FindTarget.h"
15 #include "ParsedAST.h"
16 #include "Selection.h"
17 #include "SourceCode.h"
18 #include "index/SymbolCollector.h"
19 #include "support/Markup.h"
20 #include "clang/AST/ASTContext.h"
21 #include "clang/AST/ASTDiagnostic.h"
22 #include "clang/AST/ASTTypeTraits.h"
23 #include "clang/AST/Attr.h"
24 #include "clang/AST/Decl.h"
25 #include "clang/AST/DeclBase.h"
26 #include "clang/AST/DeclCXX.h"
27 #include "clang/AST/DeclObjC.h"
28 #include "clang/AST/DeclTemplate.h"
29 #include "clang/AST/Expr.h"
30 #include "clang/AST/ExprCXX.h"
31 #include "clang/AST/OperationKinds.h"
32 #include "clang/AST/PrettyPrinter.h"
33 #include "clang/AST/RecordLayout.h"
34 #include "clang/AST/Type.h"
35 #include "clang/Basic/SourceLocation.h"
36 #include "clang/Basic/Specifiers.h"
37 #include "clang/Basic/TokenKinds.h"
38 #include "clang/Index/IndexSymbol.h"
39 #include "clang/Tooling/Syntax/Tokens.h"
40 #include "llvm/ADT/None.h"
41 #include "llvm/ADT/Optional.h"
42 #include "llvm/ADT/STLExtras.h"
43 #include "llvm/ADT/SmallVector.h"
44 #include "llvm/ADT/StringExtras.h"
45 #include "llvm/ADT/StringRef.h"
46 #include "llvm/Support/Casting.h"
47 #include "llvm/Support/Format.h"
48 #include "llvm/Support/ScopedPrinter.h"
49 #include "llvm/Support/raw_ostream.h"
50 #include <string>
51
52 namespace clang {
53 namespace clangd {
54 namespace {
55
getPrintingPolicy(PrintingPolicy Base)56 PrintingPolicy getPrintingPolicy(PrintingPolicy Base) {
57 Base.AnonymousTagLocations = false;
58 Base.TerseOutput = true;
59 Base.PolishForDeclaration = true;
60 Base.ConstantsAsWritten = true;
61 Base.SuppressTemplateArgsInCXXConstructors = true;
62 return Base;
63 }
64
65 /// Given a declaration \p D, return a human-readable string representing the
66 /// local scope in which it is declared, i.e. class(es) and method name. Returns
67 /// an empty string if it is not local.
getLocalScope(const Decl * D)68 std::string getLocalScope(const Decl *D) {
69 std::vector<std::string> Scopes;
70 const DeclContext *DC = D->getDeclContext();
71
72 // ObjC scopes won't have multiple components for us to join, instead:
73 // - Methods: "-[Class methodParam1:methodParam2]"
74 // - Classes, categories, and protocols: "MyClass(Category)"
75 if (const ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(DC))
76 return printObjCMethod(*MD);
77 if (const ObjCContainerDecl *CD = dyn_cast<ObjCContainerDecl>(DC))
78 return printObjCContainer(*CD);
79
80 auto GetName = [](const TypeDecl *D) {
81 if (!D->getDeclName().isEmpty()) {
82 PrintingPolicy Policy = D->getASTContext().getPrintingPolicy();
83 Policy.SuppressScope = true;
84 return declaredType(D).getAsString(Policy);
85 }
86 if (auto *RD = dyn_cast<RecordDecl>(D))
87 return ("(anonymous " + RD->getKindName() + ")").str();
88 return std::string("");
89 };
90 while (DC) {
91 if (const TypeDecl *TD = dyn_cast<TypeDecl>(DC))
92 Scopes.push_back(GetName(TD));
93 else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(DC))
94 Scopes.push_back(FD->getNameAsString());
95 DC = DC->getParent();
96 }
97
98 return llvm::join(llvm::reverse(Scopes), "::");
99 }
100
101 /// Returns the human-readable representation for namespace containing the
102 /// declaration \p D. Returns empty if it is contained global namespace.
getNamespaceScope(const Decl * D)103 std::string getNamespaceScope(const Decl *D) {
104 const DeclContext *DC = D->getDeclContext();
105
106 // ObjC does not have the concept of namespaces, so instead we support
107 // local scopes.
108 if (isa<ObjCMethodDecl, ObjCContainerDecl>(DC))
109 return "";
110
111 if (const TagDecl *TD = dyn_cast<TagDecl>(DC))
112 return getNamespaceScope(TD);
113 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(DC))
114 return getNamespaceScope(FD);
115 if (const NamespaceDecl *NSD = dyn_cast<NamespaceDecl>(DC)) {
116 // Skip inline/anon namespaces.
117 if (NSD->isInline() || NSD->isAnonymousNamespace())
118 return getNamespaceScope(NSD);
119 }
120 if (const NamedDecl *ND = dyn_cast<NamedDecl>(DC))
121 return printQualifiedName(*ND);
122
123 return "";
124 }
125
printDefinition(const Decl * D,PrintingPolicy PP,const syntax::TokenBuffer & TB)126 std::string printDefinition(const Decl *D, PrintingPolicy PP,
127 const syntax::TokenBuffer &TB) {
128 if (auto *VD = llvm::dyn_cast<VarDecl>(D)) {
129 if (auto *IE = VD->getInit()) {
130 // Initializers might be huge and result in lots of memory allocations in
131 // some catostrophic cases. Such long lists are not useful in hover cards
132 // anyway.
133 if (200 < TB.expandedTokens(IE->getSourceRange()).size())
134 PP.SuppressInitializers = true;
135 }
136 }
137 std::string Definition;
138 llvm::raw_string_ostream OS(Definition);
139 D->print(OS, PP);
140 OS.flush();
141 return Definition;
142 }
143
getMarkdownLanguage(const ASTContext & Ctx)144 const char *getMarkdownLanguage(const ASTContext &Ctx) {
145 const auto &LangOpts = Ctx.getLangOpts();
146 if (LangOpts.ObjC && LangOpts.CPlusPlus)
147 return "objective-cpp";
148 return LangOpts.ObjC ? "objective-c" : "cpp";
149 }
150
printType(QualType QT,ASTContext & ASTCtx,const PrintingPolicy & PP)151 HoverInfo::PrintedType printType(QualType QT, ASTContext &ASTCtx,
152 const PrintingPolicy &PP) {
153 // TypePrinter doesn't resolve decltypes, so resolve them here.
154 // FIXME: This doesn't handle composite types that contain a decltype in them.
155 // We should rather have a printing policy for that.
156 while (!QT.isNull() && QT->isDecltypeType())
157 QT = QT->castAs<DecltypeType>()->getUnderlyingType();
158 HoverInfo::PrintedType Result;
159 llvm::raw_string_ostream OS(Result.Type);
160 // Special case: if the outer type is a tag type without qualifiers, then
161 // include the tag for extra clarity.
162 // This isn't very idiomatic, so don't attempt it for complex cases, including
163 // pointers/references, template specializations, etc.
164 if (!QT.isNull() && !QT.hasQualifiers() && PP.SuppressTagKeyword) {
165 if (auto *TT = llvm::dyn_cast<TagType>(QT.getTypePtr()))
166 OS << TT->getDecl()->getKindName() << " ";
167 }
168 QT.print(OS, PP);
169 OS.flush();
170
171 const Config &Cfg = Config::current();
172 if (!QT.isNull() && Cfg.Hover.ShowAKA) {
173 bool ShouldAKA = false;
174 QualType DesugaredTy = clang::desugarForDiagnostic(ASTCtx, QT, ShouldAKA);
175 if (ShouldAKA)
176 Result.AKA = DesugaredTy.getAsString(PP);
177 }
178 return Result;
179 }
180
printType(const TemplateTypeParmDecl * TTP)181 HoverInfo::PrintedType printType(const TemplateTypeParmDecl *TTP) {
182 HoverInfo::PrintedType Result;
183 Result.Type = TTP->wasDeclaredWithTypename() ? "typename" : "class";
184 if (TTP->isParameterPack())
185 Result.Type += "...";
186 return Result;
187 }
188
printType(const NonTypeTemplateParmDecl * NTTP,const PrintingPolicy & PP)189 HoverInfo::PrintedType printType(const NonTypeTemplateParmDecl *NTTP,
190 const PrintingPolicy &PP) {
191 auto PrintedType = printType(NTTP->getType(), NTTP->getASTContext(), PP);
192 if (NTTP->isParameterPack()) {
193 PrintedType.Type += "...";
194 if (PrintedType.AKA)
195 *PrintedType.AKA += "...";
196 }
197 return PrintedType;
198 }
199
printType(const TemplateTemplateParmDecl * TTP,const PrintingPolicy & PP)200 HoverInfo::PrintedType printType(const TemplateTemplateParmDecl *TTP,
201 const PrintingPolicy &PP) {
202 HoverInfo::PrintedType Result;
203 llvm::raw_string_ostream OS(Result.Type);
204 OS << "template <";
205 llvm::StringRef Sep = "";
206 for (const Decl *Param : *TTP->getTemplateParameters()) {
207 OS << Sep;
208 Sep = ", ";
209 if (const auto *TTP = dyn_cast<TemplateTypeParmDecl>(Param))
210 OS << printType(TTP).Type;
211 else if (const auto *NTTP = dyn_cast<NonTypeTemplateParmDecl>(Param))
212 OS << printType(NTTP, PP).Type;
213 else if (const auto *TTPD = dyn_cast<TemplateTemplateParmDecl>(Param))
214 OS << printType(TTPD, PP).Type;
215 }
216 // FIXME: TemplateTemplateParameter doesn't store the info on whether this
217 // param was a "typename" or "class".
218 OS << "> class";
219 OS.flush();
220 return Result;
221 }
222
223 std::vector<HoverInfo::Param>
fetchTemplateParameters(const TemplateParameterList * Params,const PrintingPolicy & PP)224 fetchTemplateParameters(const TemplateParameterList *Params,
225 const PrintingPolicy &PP) {
226 assert(Params);
227 std::vector<HoverInfo::Param> TempParameters;
228
229 for (const Decl *Param : *Params) {
230 HoverInfo::Param P;
231 if (const auto *TTP = dyn_cast<TemplateTypeParmDecl>(Param)) {
232 P.Type = printType(TTP);
233
234 if (!TTP->getName().empty())
235 P.Name = TTP->getNameAsString();
236
237 if (TTP->hasDefaultArgument())
238 P.Default = TTP->getDefaultArgument().getAsString(PP);
239 } else if (const auto *NTTP = dyn_cast<NonTypeTemplateParmDecl>(Param)) {
240 P.Type = printType(NTTP, PP);
241
242 if (IdentifierInfo *II = NTTP->getIdentifier())
243 P.Name = II->getName().str();
244
245 if (NTTP->hasDefaultArgument()) {
246 P.Default.emplace();
247 llvm::raw_string_ostream Out(*P.Default);
248 NTTP->getDefaultArgument()->printPretty(Out, nullptr, PP);
249 }
250 } else if (const auto *TTPD = dyn_cast<TemplateTemplateParmDecl>(Param)) {
251 P.Type = printType(TTPD, PP);
252
253 if (!TTPD->getName().empty())
254 P.Name = TTPD->getNameAsString();
255
256 if (TTPD->hasDefaultArgument()) {
257 P.Default.emplace();
258 llvm::raw_string_ostream Out(*P.Default);
259 TTPD->getDefaultArgument().getArgument().print(PP, Out,
260 /*IncludeType*/ false);
261 }
262 }
263 TempParameters.push_back(std::move(P));
264 }
265
266 return TempParameters;
267 }
268
getUnderlyingFunction(const Decl * D)269 const FunctionDecl *getUnderlyingFunction(const Decl *D) {
270 // Extract lambda from variables.
271 if (const VarDecl *VD = llvm::dyn_cast<VarDecl>(D)) {
272 auto QT = VD->getType();
273 if (!QT.isNull()) {
274 while (!QT->getPointeeType().isNull())
275 QT = QT->getPointeeType();
276
277 if (const auto *CD = QT->getAsCXXRecordDecl())
278 return CD->getLambdaCallOperator();
279 }
280 }
281
282 // Non-lambda functions.
283 return D->getAsFunction();
284 }
285
286 // Returns the decl that should be used for querying comments, either from index
287 // or AST.
getDeclForComment(const NamedDecl * D)288 const NamedDecl *getDeclForComment(const NamedDecl *D) {
289 const NamedDecl *DeclForComment = D;
290 if (const auto *TSD = llvm::dyn_cast<ClassTemplateSpecializationDecl>(D)) {
291 // Template may not be instantiated e.g. if the type didn't need to be
292 // complete; fallback to primary template.
293 if (TSD->getTemplateSpecializationKind() == TSK_Undeclared)
294 DeclForComment = TSD->getSpecializedTemplate();
295 else if (const auto *TIP = TSD->getTemplateInstantiationPattern())
296 DeclForComment = TIP;
297 } else if (const auto *TSD =
298 llvm::dyn_cast<VarTemplateSpecializationDecl>(D)) {
299 if (TSD->getTemplateSpecializationKind() == TSK_Undeclared)
300 DeclForComment = TSD->getSpecializedTemplate();
301 else if (const auto *TIP = TSD->getTemplateInstantiationPattern())
302 DeclForComment = TIP;
303 } else if (const auto *FD = D->getAsFunction())
304 if (const auto *TIP = FD->getTemplateInstantiationPattern())
305 DeclForComment = TIP;
306 // Ensure that getDeclForComment(getDeclForComment(X)) = getDeclForComment(X).
307 // This is usually not needed, but in strange cases of comparision operators
308 // being instantiated from spasceship operater, which itself is a template
309 // instantiation the recursrive call is necessary.
310 if (D != DeclForComment)
311 DeclForComment = getDeclForComment(DeclForComment);
312 return DeclForComment;
313 }
314
315 // Look up information about D from the index, and add it to Hover.
enhanceFromIndex(HoverInfo & Hover,const NamedDecl & ND,const SymbolIndex * Index)316 void enhanceFromIndex(HoverInfo &Hover, const NamedDecl &ND,
317 const SymbolIndex *Index) {
318 assert(&ND == getDeclForComment(&ND));
319 // We only add documentation, so don't bother if we already have some.
320 if (!Hover.Documentation.empty() || !Index)
321 return;
322
323 // Skip querying for non-indexable symbols, there's no point.
324 // We're searching for symbols that might be indexed outside this main file.
325 if (!SymbolCollector::shouldCollectSymbol(ND, ND.getASTContext(),
326 SymbolCollector::Options(),
327 /*IsMainFileOnly=*/false))
328 return;
329 auto ID = getSymbolID(&ND);
330 if (!ID)
331 return;
332 LookupRequest Req;
333 Req.IDs.insert(ID);
334 Index->lookup(Req, [&](const Symbol &S) {
335 Hover.Documentation = std::string(S.Documentation);
336 });
337 }
338
339 // Default argument might exist but be unavailable, in the case of unparsed
340 // arguments for example. This function returns the default argument if it is
341 // available.
getDefaultArg(const ParmVarDecl * PVD)342 const Expr *getDefaultArg(const ParmVarDecl *PVD) {
343 // Default argument can be unparsed or uninstantiated. For the former we
344 // can't do much, as token information is only stored in Sema and not
345 // attached to the AST node. For the latter though, it is safe to proceed as
346 // the expression is still valid.
347 if (!PVD->hasDefaultArg() || PVD->hasUnparsedDefaultArg())
348 return nullptr;
349 return PVD->hasUninstantiatedDefaultArg() ? PVD->getUninstantiatedDefaultArg()
350 : PVD->getDefaultArg();
351 }
352
toHoverInfoParam(const ParmVarDecl * PVD,const PrintingPolicy & PP)353 HoverInfo::Param toHoverInfoParam(const ParmVarDecl *PVD,
354 const PrintingPolicy &PP) {
355 HoverInfo::Param Out;
356 Out.Type = printType(PVD->getType(), PVD->getASTContext(), PP);
357 if (!PVD->getName().empty())
358 Out.Name = PVD->getNameAsString();
359 if (const Expr *DefArg = getDefaultArg(PVD)) {
360 Out.Default.emplace();
361 llvm::raw_string_ostream OS(*Out.Default);
362 DefArg->printPretty(OS, nullptr, PP);
363 }
364 return Out;
365 }
366
367 // Populates Type, ReturnType, and Parameters for function-like decls.
fillFunctionTypeAndParams(HoverInfo & HI,const Decl * D,const FunctionDecl * FD,const PrintingPolicy & PP)368 void fillFunctionTypeAndParams(HoverInfo &HI, const Decl *D,
369 const FunctionDecl *FD,
370 const PrintingPolicy &PP) {
371 HI.Parameters.emplace();
372 for (const ParmVarDecl *PVD : FD->parameters())
373 HI.Parameters->emplace_back(toHoverInfoParam(PVD, PP));
374
375 // We don't want any type info, if name already contains it. This is true for
376 // constructors/destructors and conversion operators.
377 const auto NK = FD->getDeclName().getNameKind();
378 if (NK == DeclarationName::CXXConstructorName ||
379 NK == DeclarationName::CXXDestructorName ||
380 NK == DeclarationName::CXXConversionFunctionName)
381 return;
382
383 HI.ReturnType = printType(FD->getReturnType(), FD->getASTContext(), PP);
384 QualType QT = FD->getType();
385 if (const VarDecl *VD = llvm::dyn_cast<VarDecl>(D)) // Lambdas
386 QT = VD->getType().getDesugaredType(D->getASTContext());
387 HI.Type = printType(QT, D->getASTContext(), PP);
388 // FIXME: handle variadics.
389 }
390
391 // Non-negative numbers are printed using min digits
392 // 0 => 0x0
393 // 100 => 0x64
394 // Negative numbers are sign-extended to 32/64 bits
395 // -2 => 0xfffffffe
396 // -2^32 => 0xfffffffeffffffff
printHex(const llvm::APSInt & V)397 static llvm::FormattedNumber printHex(const llvm::APSInt &V) {
398 uint64_t Bits = V.getExtValue();
399 if (V.isNegative() && V.getMinSignedBits() <= 32)
400 return llvm::format_hex(uint32_t(Bits), 0);
401 return llvm::format_hex(Bits, 0);
402 }
403
printExprValue(const Expr * E,const ASTContext & Ctx)404 llvm::Optional<std::string> printExprValue(const Expr *E,
405 const ASTContext &Ctx) {
406 // InitListExpr has two forms, syntactic and semantic. They are the same thing
407 // (refer to a same AST node) in most cases.
408 // When they are different, RAV returns the syntactic form, and we should feed
409 // the semantic form to EvaluateAsRValue.
410 if (const auto *ILE = llvm::dyn_cast<InitListExpr>(E)) {
411 if (!ILE->isSemanticForm())
412 E = ILE->getSemanticForm();
413 }
414
415 // Evaluating [[foo]]() as "&foo" isn't useful, and prevents us walking up
416 // to the enclosing call. Evaluating an expression of void type doesn't
417 // produce a meaningful result.
418 QualType T = E->getType();
419 if (T.isNull() || T->isFunctionType() || T->isFunctionPointerType() ||
420 T->isFunctionReferenceType() || T->isVoidType())
421 return llvm::None;
422
423 Expr::EvalResult Constant;
424 // Attempt to evaluate. If expr is dependent, evaluation crashes!
425 if (E->isValueDependent() || !E->EvaluateAsRValue(Constant, Ctx) ||
426 // Disable printing for record-types, as they are usually confusing and
427 // might make clang crash while printing the expressions.
428 Constant.Val.isStruct() || Constant.Val.isUnion())
429 return llvm::None;
430
431 // Show enums symbolically, not numerically like APValue::printPretty().
432 if (T->isEnumeralType() && Constant.Val.getInt().getMinSignedBits() <= 64) {
433 // Compare to int64_t to avoid bit-width match requirements.
434 int64_t Val = Constant.Val.getInt().getExtValue();
435 for (const EnumConstantDecl *ECD :
436 T->castAs<EnumType>()->getDecl()->enumerators())
437 if (ECD->getInitVal() == Val)
438 return llvm::formatv("{0} ({1})", ECD->getNameAsString(),
439 printHex(Constant.Val.getInt()))
440 .str();
441 }
442 // Show hex value of integers if they're at least 10 (or negative!)
443 if (T->isIntegralOrEnumerationType() &&
444 Constant.Val.getInt().getMinSignedBits() <= 64 &&
445 Constant.Val.getInt().uge(10))
446 return llvm::formatv("{0} ({1})", Constant.Val.getAsString(Ctx, T),
447 printHex(Constant.Val.getInt()))
448 .str();
449 return Constant.Val.getAsString(Ctx, T);
450 }
451
printExprValue(const SelectionTree::Node * N,const ASTContext & Ctx)452 llvm::Optional<std::string> printExprValue(const SelectionTree::Node *N,
453 const ASTContext &Ctx) {
454 for (; N; N = N->Parent) {
455 // Try to evaluate the first evaluatable enclosing expression.
456 if (const Expr *E = N->ASTNode.get<Expr>()) {
457 // Once we cross an expression of type 'cv void', the evaluated result
458 // has nothing to do with our original cursor position.
459 if (!E->getType().isNull() && E->getType()->isVoidType())
460 break;
461 if (auto Val = printExprValue(E, Ctx))
462 return Val;
463 } else if (N->ASTNode.get<Decl>() || N->ASTNode.get<Stmt>()) {
464 // Refuse to cross certain non-exprs. (TypeLoc are OK as part of Exprs).
465 // This tries to ensure we're showing a value related to the cursor.
466 break;
467 }
468 }
469 return llvm::None;
470 }
471
fieldName(const Expr * E)472 llvm::Optional<StringRef> fieldName(const Expr *E) {
473 const auto *ME = llvm::dyn_cast<MemberExpr>(E->IgnoreCasts());
474 if (!ME || !llvm::isa<CXXThisExpr>(ME->getBase()->IgnoreCasts()))
475 return llvm::None;
476 const auto *Field = llvm::dyn_cast<FieldDecl>(ME->getMemberDecl());
477 if (!Field || !Field->getDeclName().isIdentifier())
478 return llvm::None;
479 return Field->getDeclName().getAsIdentifierInfo()->getName();
480 }
481
482 // If CMD is of the form T foo() { return FieldName; } then returns "FieldName".
getterVariableName(const CXXMethodDecl * CMD)483 llvm::Optional<StringRef> getterVariableName(const CXXMethodDecl *CMD) {
484 assert(CMD->hasBody());
485 if (CMD->getNumParams() != 0 || CMD->isVariadic())
486 return llvm::None;
487 const auto *Body = llvm::dyn_cast<CompoundStmt>(CMD->getBody());
488 const auto *OnlyReturn = (Body && Body->size() == 1)
489 ? llvm::dyn_cast<ReturnStmt>(Body->body_front())
490 : nullptr;
491 if (!OnlyReturn || !OnlyReturn->getRetValue())
492 return llvm::None;
493 return fieldName(OnlyReturn->getRetValue());
494 }
495
496 // If CMD is one of the forms:
497 // void foo(T arg) { FieldName = arg; }
498 // R foo(T arg) { FieldName = arg; return *this; }
499 // void foo(T arg) { FieldName = std::move(arg); }
500 // R foo(T arg) { FieldName = std::move(arg); return *this; }
501 // then returns "FieldName"
setterVariableName(const CXXMethodDecl * CMD)502 llvm::Optional<StringRef> setterVariableName(const CXXMethodDecl *CMD) {
503 assert(CMD->hasBody());
504 if (CMD->isConst() || CMD->getNumParams() != 1 || CMD->isVariadic())
505 return llvm::None;
506 const ParmVarDecl *Arg = CMD->getParamDecl(0);
507 if (Arg->isParameterPack())
508 return llvm::None;
509
510 const auto *Body = llvm::dyn_cast<CompoundStmt>(CMD->getBody());
511 if (!Body || Body->size() == 0 || Body->size() > 2)
512 return llvm::None;
513 // If the second statement exists, it must be `return this` or `return *this`.
514 if (Body->size() == 2) {
515 auto *Ret = llvm::dyn_cast<ReturnStmt>(Body->body_back());
516 if (!Ret || !Ret->getRetValue())
517 return llvm::None;
518 const Expr *RetVal = Ret->getRetValue()->IgnoreCasts();
519 if (const auto *UO = llvm::dyn_cast<UnaryOperator>(RetVal)) {
520 if (UO->getOpcode() != UO_Deref)
521 return llvm::None;
522 RetVal = UO->getSubExpr()->IgnoreCasts();
523 }
524 if (!llvm::isa<CXXThisExpr>(RetVal))
525 return llvm::None;
526 }
527 // The first statement must be an assignment of the arg to a field.
528 const Expr *LHS, *RHS;
529 if (const auto *BO = llvm::dyn_cast<BinaryOperator>(Body->body_front())) {
530 if (BO->getOpcode() != BO_Assign)
531 return llvm::None;
532 LHS = BO->getLHS();
533 RHS = BO->getRHS();
534 } else if (const auto *COCE =
535 llvm::dyn_cast<CXXOperatorCallExpr>(Body->body_front())) {
536 if (COCE->getOperator() != OO_Equal || COCE->getNumArgs() != 2)
537 return llvm::None;
538 LHS = COCE->getArg(0);
539 RHS = COCE->getArg(1);
540 } else {
541 return llvm::None;
542 }
543
544 // Detect the case when the item is moved into the field.
545 if (auto *CE = llvm::dyn_cast<CallExpr>(RHS->IgnoreCasts())) {
546 if (CE->getNumArgs() != 1)
547 return llvm::None;
548 auto *ND = llvm::dyn_cast_or_null<NamedDecl>(CE->getCalleeDecl());
549 if (!ND || !ND->getIdentifier() || ND->getName() != "move" ||
550 !ND->isInStdNamespace())
551 return llvm::None;
552 RHS = CE->getArg(0);
553 }
554
555 auto *DRE = llvm::dyn_cast<DeclRefExpr>(RHS->IgnoreCasts());
556 if (!DRE || DRE->getDecl() != Arg)
557 return llvm::None;
558 return fieldName(LHS);
559 }
560
synthesizeDocumentation(const NamedDecl * ND)561 std::string synthesizeDocumentation(const NamedDecl *ND) {
562 if (const auto *CMD = llvm::dyn_cast<CXXMethodDecl>(ND)) {
563 // Is this an ordinary, non-static method whose definition is visible?
564 if (CMD->getDeclName().isIdentifier() && !CMD->isStatic() &&
565 (CMD = llvm::dyn_cast_or_null<CXXMethodDecl>(CMD->getDefinition())) &&
566 CMD->hasBody()) {
567 if (const auto GetterField = getterVariableName(CMD))
568 return llvm::formatv("Trivial accessor for `{0}`.", *GetterField);
569 if (const auto SetterField = setterVariableName(CMD))
570 return llvm::formatv("Trivial setter for `{0}`.", *SetterField);
571 }
572 }
573 return "";
574 }
575
576 /// Generate a \p Hover object given the declaration \p D.
getHoverContents(const NamedDecl * D,const PrintingPolicy & PP,const SymbolIndex * Index,const syntax::TokenBuffer & TB)577 HoverInfo getHoverContents(const NamedDecl *D, const PrintingPolicy &PP,
578 const SymbolIndex *Index,
579 const syntax::TokenBuffer &TB) {
580 HoverInfo HI;
581 auto &Ctx = D->getASTContext();
582
583 HI.AccessSpecifier = getAccessSpelling(D->getAccess()).str();
584 HI.NamespaceScope = getNamespaceScope(D);
585 if (!HI.NamespaceScope->empty())
586 HI.NamespaceScope->append("::");
587 HI.LocalScope = getLocalScope(D);
588 if (!HI.LocalScope.empty())
589 HI.LocalScope.append("::");
590
591 HI.Name = printName(Ctx, *D);
592 const auto *CommentD = getDeclForComment(D);
593 HI.Documentation = getDeclComment(Ctx, *CommentD);
594 enhanceFromIndex(HI, *CommentD, Index);
595 if (HI.Documentation.empty())
596 HI.Documentation = synthesizeDocumentation(D);
597
598 HI.Kind = index::getSymbolInfo(D).Kind;
599
600 // Fill in template params.
601 if (const TemplateDecl *TD = D->getDescribedTemplate()) {
602 HI.TemplateParameters =
603 fetchTemplateParameters(TD->getTemplateParameters(), PP);
604 D = TD;
605 } else if (const FunctionDecl *FD = D->getAsFunction()) {
606 if (const auto *FTD = FD->getDescribedTemplate()) {
607 HI.TemplateParameters =
608 fetchTemplateParameters(FTD->getTemplateParameters(), PP);
609 D = FTD;
610 }
611 }
612
613 // Fill in types and params.
614 if (const FunctionDecl *FD = getUnderlyingFunction(D))
615 fillFunctionTypeAndParams(HI, D, FD, PP);
616 else if (const auto *VD = dyn_cast<ValueDecl>(D))
617 HI.Type = printType(VD->getType(), Ctx, PP);
618 else if (const auto *TTP = dyn_cast<TemplateTypeParmDecl>(D))
619 HI.Type = TTP->wasDeclaredWithTypename() ? "typename" : "class";
620 else if (const auto *TTP = dyn_cast<TemplateTemplateParmDecl>(D))
621 HI.Type = printType(TTP, PP);
622 else if (const auto *VT = dyn_cast<VarTemplateDecl>(D))
623 HI.Type = printType(VT->getTemplatedDecl()->getType(), Ctx, PP);
624 else if (const auto *TN = dyn_cast<TypedefNameDecl>(D))
625 HI.Type = printType(TN->getUnderlyingType().getDesugaredType(Ctx), Ctx, PP);
626 else if (const auto *TAT = dyn_cast<TypeAliasTemplateDecl>(D))
627 HI.Type = printType(TAT->getTemplatedDecl()->getUnderlyingType(), Ctx, PP);
628
629 // Fill in value with evaluated initializer if possible.
630 if (const auto *Var = dyn_cast<VarDecl>(D)) {
631 if (const Expr *Init = Var->getInit())
632 HI.Value = printExprValue(Init, Ctx);
633 } else if (const auto *ECD = dyn_cast<EnumConstantDecl>(D)) {
634 // Dependent enums (e.g. nested in template classes) don't have values yet.
635 if (!ECD->getType()->isDependentType())
636 HI.Value = toString(ECD->getInitVal(), 10);
637 }
638
639 HI.Definition = printDefinition(D, PP, TB);
640 return HI;
641 }
642
643 /// Generate a \p Hover object given the macro \p MacroDecl.
getHoverContents(const DefinedMacro & Macro,ParsedAST & AST)644 HoverInfo getHoverContents(const DefinedMacro &Macro, ParsedAST &AST) {
645 HoverInfo HI;
646 SourceManager &SM = AST.getSourceManager();
647 HI.Name = std::string(Macro.Name);
648 HI.Kind = index::SymbolKind::Macro;
649 // FIXME: Populate documentation
650 // FIXME: Populate parameters
651
652 // Try to get the full definition, not just the name
653 SourceLocation StartLoc = Macro.Info->getDefinitionLoc();
654 SourceLocation EndLoc = Macro.Info->getDefinitionEndLoc();
655 // Ensure that EndLoc is a valid offset. For example it might come from
656 // preamble, and source file might've changed, in such a scenario EndLoc still
657 // stays valid, but getLocForEndOfToken will fail as it is no longer a valid
658 // offset.
659 // Note that this check is just to ensure there's text data inside the range.
660 // It will still succeed even when the data inside the range is irrelevant to
661 // macro definition.
662 if (SM.getPresumedLoc(EndLoc, /*UseLineDirectives=*/false).isValid()) {
663 EndLoc = Lexer::getLocForEndOfToken(EndLoc, 0, SM, AST.getLangOpts());
664 bool Invalid;
665 StringRef Buffer = SM.getBufferData(SM.getFileID(StartLoc), &Invalid);
666 if (!Invalid) {
667 unsigned StartOffset = SM.getFileOffset(StartLoc);
668 unsigned EndOffset = SM.getFileOffset(EndLoc);
669 if (EndOffset <= Buffer.size() && StartOffset < EndOffset)
670 HI.Definition =
671 ("#define " + Buffer.substr(StartOffset, EndOffset - StartOffset))
672 .str();
673 }
674 }
675 return HI;
676 }
677
typeAsDefinition(const HoverInfo::PrintedType & PType)678 std::string typeAsDefinition(const HoverInfo::PrintedType &PType) {
679 std::string Result;
680 llvm::raw_string_ostream OS(Result);
681 OS << PType.Type;
682 if (PType.AKA)
683 OS << " // aka: " << *PType.AKA;
684 OS.flush();
685 return Result;
686 }
687
getThisExprHoverContents(const CXXThisExpr * CTE,ASTContext & ASTCtx,const PrintingPolicy & PP)688 llvm::Optional<HoverInfo> getThisExprHoverContents(const CXXThisExpr *CTE,
689 ASTContext &ASTCtx,
690 const PrintingPolicy &PP) {
691 QualType OriginThisType = CTE->getType()->getPointeeType();
692 QualType ClassType = declaredType(OriginThisType->getAsTagDecl());
693 // For partial specialization class, origin `this` pointee type will be
694 // parsed as `InjectedClassNameType`, which will ouput template arguments
695 // like "type-parameter-0-0". So we retrieve user written class type in this
696 // case.
697 QualType PrettyThisType = ASTCtx.getPointerType(
698 QualType(ClassType.getTypePtr(), OriginThisType.getCVRQualifiers()));
699
700 HoverInfo HI;
701 HI.Name = "this";
702 HI.Definition = typeAsDefinition(printType(PrettyThisType, ASTCtx, PP));
703 return HI;
704 }
705
706 /// Generate a HoverInfo object given the deduced type \p QT
getDeducedTypeHoverContents(QualType QT,const syntax::Token & Tok,ASTContext & ASTCtx,const PrintingPolicy & PP,const SymbolIndex * Index)707 HoverInfo getDeducedTypeHoverContents(QualType QT, const syntax::Token &Tok,
708 ASTContext &ASTCtx,
709 const PrintingPolicy &PP,
710 const SymbolIndex *Index) {
711 HoverInfo HI;
712 // FIXME: distinguish decltype(auto) vs decltype(expr)
713 HI.Name = tok::getTokenName(Tok.kind());
714 HI.Kind = index::SymbolKind::TypeAlias;
715
716 if (QT->isUndeducedAutoType()) {
717 HI.Definition = "/* not deduced */";
718 } else {
719 HI.Definition = typeAsDefinition(printType(QT, ASTCtx, PP));
720
721 if (const auto *D = QT->getAsTagDecl()) {
722 const auto *CommentD = getDeclForComment(D);
723 HI.Documentation = getDeclComment(ASTCtx, *CommentD);
724 enhanceFromIndex(HI, *CommentD, Index);
725 }
726 }
727
728 return HI;
729 }
730
isLiteral(const Expr * E)731 bool isLiteral(const Expr *E) {
732 // Unfortunately there's no common base Literal classes inherits from
733 // (apart from Expr), therefore these exclusions.
734 return llvm::isa<CompoundLiteralExpr>(E) ||
735 llvm::isa<CXXBoolLiteralExpr>(E) ||
736 llvm::isa<CXXNullPtrLiteralExpr>(E) ||
737 llvm::isa<FixedPointLiteral>(E) || llvm::isa<FloatingLiteral>(E) ||
738 llvm::isa<ImaginaryLiteral>(E) || llvm::isa<IntegerLiteral>(E) ||
739 llvm::isa<StringLiteral>(E) || llvm::isa<UserDefinedLiteral>(E);
740 }
741
getNameForExpr(const Expr * E)742 llvm::StringLiteral getNameForExpr(const Expr *E) {
743 // FIXME: Come up with names for `special` expressions.
744 //
745 // It's an known issue for GCC5, https://godbolt.org/z/Z_tbgi. Work around
746 // that by using explicit conversion constructor.
747 //
748 // TODO: Once GCC5 is fully retired and not the minimal requirement as stated
749 // in `GettingStarted`, please remove the explicit conversion constructor.
750 return llvm::StringLiteral("expression");
751 }
752
753 // Generates hover info for `this` and evaluatable expressions.
754 // FIXME: Support hover for literals (esp user-defined)
getHoverContents(const Expr * E,ParsedAST & AST,const PrintingPolicy & PP,const SymbolIndex * Index)755 llvm::Optional<HoverInfo> getHoverContents(const Expr *E, ParsedAST &AST,
756 const PrintingPolicy &PP,
757 const SymbolIndex *Index) {
758 // There's not much value in hovering over "42" and getting a hover card
759 // saying "42 is an int", similar for other literals.
760 if (isLiteral(E))
761 return llvm::None;
762
763 HoverInfo HI;
764 // For `this` expr we currently generate hover with pointee type.
765 if (const CXXThisExpr *CTE = dyn_cast<CXXThisExpr>(E))
766 return getThisExprHoverContents(CTE, AST.getASTContext(), PP);
767 // For expressions we currently print the type and the value, iff it is
768 // evaluatable.
769 if (auto Val = printExprValue(E, AST.getASTContext())) {
770 HI.Type = printType(E->getType(), AST.getASTContext(), PP);
771 HI.Value = *Val;
772 HI.Name = std::string(getNameForExpr(E));
773 return HI;
774 }
775 return llvm::None;
776 }
777
778 // Generates hover info for attributes.
getHoverContents(const Attr * A,ParsedAST & AST)779 llvm::Optional<HoverInfo> getHoverContents(const Attr *A, ParsedAST &AST) {
780 HoverInfo HI;
781 HI.Name = A->getSpelling();
782 if (A->hasScope())
783 HI.LocalScope = A->getScopeName()->getName().str();
784 {
785 llvm::raw_string_ostream OS(HI.Definition);
786 A->printPretty(OS, AST.getASTContext().getPrintingPolicy());
787 }
788 HI.Documentation = Attr::getDocumentation(A->getKind()).str();
789 return HI;
790 }
791
isParagraphBreak(llvm::StringRef Rest)792 bool isParagraphBreak(llvm::StringRef Rest) {
793 return Rest.ltrim(" \t").startswith("\n");
794 }
795
punctuationIndicatesLineBreak(llvm::StringRef Line)796 bool punctuationIndicatesLineBreak(llvm::StringRef Line) {
797 constexpr llvm::StringLiteral Punctuation = R"txt(.:,;!?)txt";
798
799 Line = Line.rtrim();
800 return !Line.empty() && Punctuation.contains(Line.back());
801 }
802
isHardLineBreakIndicator(llvm::StringRef Rest)803 bool isHardLineBreakIndicator(llvm::StringRef Rest) {
804 // '-'/'*' md list, '@'/'\' documentation command, '>' md blockquote,
805 // '#' headings, '`' code blocks
806 constexpr llvm::StringLiteral LinebreakIndicators = R"txt(-*@\>#`)txt";
807
808 Rest = Rest.ltrim(" \t");
809 if (Rest.empty())
810 return false;
811
812 if (LinebreakIndicators.contains(Rest.front()))
813 return true;
814
815 if (llvm::isDigit(Rest.front())) {
816 llvm::StringRef AfterDigit = Rest.drop_while(llvm::isDigit);
817 if (AfterDigit.startswith(".") || AfterDigit.startswith(")"))
818 return true;
819 }
820 return false;
821 }
822
isHardLineBreakAfter(llvm::StringRef Line,llvm::StringRef Rest)823 bool isHardLineBreakAfter(llvm::StringRef Line, llvm::StringRef Rest) {
824 // Should we also consider whether Line is short?
825 return punctuationIndicatesLineBreak(Line) || isHardLineBreakIndicator(Rest);
826 }
827
addLayoutInfo(const NamedDecl & ND,HoverInfo & HI)828 void addLayoutInfo(const NamedDecl &ND, HoverInfo &HI) {
829 if (ND.isInvalidDecl())
830 return;
831
832 const auto &Ctx = ND.getASTContext();
833 if (auto *RD = llvm::dyn_cast<RecordDecl>(&ND)) {
834 if (auto Size = Ctx.getTypeSizeInCharsIfKnown(RD->getTypeForDecl()))
835 HI.Size = Size->getQuantity();
836 return;
837 }
838
839 if (const auto *FD = llvm::dyn_cast<FieldDecl>(&ND)) {
840 const auto *Record = FD->getParent();
841 if (Record)
842 Record = Record->getDefinition();
843 if (Record && !Record->isInvalidDecl() && !Record->isDependentType() &&
844 !FD->isBitField()) {
845 const ASTRecordLayout &Layout = Ctx.getASTRecordLayout(Record);
846 HI.Offset = Layout.getFieldOffset(FD->getFieldIndex()) / 8;
847 if (auto Size = Ctx.getTypeSizeInCharsIfKnown(FD->getType())) {
848 HI.Size = FD->isZeroSize(Ctx) ? 0 : Size->getQuantity();
849 unsigned EndOfField = *HI.Offset + *HI.Size;
850
851 // Calculate padding following the field.
852 if (!Record->isUnion() &&
853 FD->getFieldIndex() + 1 < Layout.getFieldCount()) {
854 // Measure padding up to the next class field.
855 unsigned NextOffset =
856 Layout.getFieldOffset(FD->getFieldIndex() + 1) / 8;
857 if (NextOffset >= EndOfField) // next field could be a bitfield!
858 HI.Padding = NextOffset - EndOfField;
859 } else {
860 // Measure padding up to the end of the object.
861 HI.Padding = Layout.getSize().getQuantity() - EndOfField;
862 }
863 }
864 // Offset in a union is always zero, so not really useful to report.
865 if (Record->isUnion())
866 HI.Offset.reset();
867 }
868 return;
869 }
870 }
871
872 // If N is passed as argument to a function, fill HI.CalleeArgInfo with
873 // information about that argument.
maybeAddCalleeArgInfo(const SelectionTree::Node * N,HoverInfo & HI,const PrintingPolicy & PP)874 void maybeAddCalleeArgInfo(const SelectionTree::Node *N, HoverInfo &HI,
875 const PrintingPolicy &PP) {
876 const auto &OuterNode = N->outerImplicit();
877 if (!OuterNode.Parent)
878 return;
879 const auto *CE = OuterNode.Parent->ASTNode.get<CallExpr>();
880 if (!CE)
881 return;
882 const FunctionDecl *FD = CE->getDirectCallee();
883 // For non-function-call-like operatators (e.g. operator+, operator<<) it's
884 // not immediattely obvious what the "passed as" would refer to and, given
885 // fixed function signature, the value would be very low anyway, so we choose
886 // to not support that.
887 // Both variadic functions and operator() (especially relevant for lambdas)
888 // should be supported in the future.
889 if (!FD || FD->isOverloadedOperator() || FD->isVariadic())
890 return;
891
892 // Find argument index for N.
893 for (unsigned I = 0; I < CE->getNumArgs() && I < FD->getNumParams(); ++I) {
894 if (CE->getArg(I) != OuterNode.ASTNode.get<Expr>())
895 continue;
896
897 // Extract matching argument from function declaration.
898 if (const ParmVarDecl *PVD = FD->getParamDecl(I))
899 HI.CalleeArgInfo.emplace(toHoverInfoParam(PVD, PP));
900 break;
901 }
902 if (!HI.CalleeArgInfo)
903 return;
904
905 // If we found a matching argument, also figure out if it's a
906 // [const-]reference. For this we need to walk up the AST from the arg itself
907 // to CallExpr and check all implicit casts, constructor calls, etc.
908 HoverInfo::PassType PassType;
909 if (const auto *E = N->ASTNode.get<Expr>()) {
910 if (E->getType().isConstQualified())
911 PassType.PassBy = HoverInfo::PassType::ConstRef;
912 }
913
914 for (auto *CastNode = N->Parent;
915 CastNode != OuterNode.Parent && !PassType.Converted;
916 CastNode = CastNode->Parent) {
917 if (const auto *ImplicitCast = CastNode->ASTNode.get<ImplicitCastExpr>()) {
918 switch (ImplicitCast->getCastKind()) {
919 case CK_NoOp:
920 case CK_DerivedToBase:
921 case CK_UncheckedDerivedToBase:
922 // If it was a reference before, it's still a reference.
923 if (PassType.PassBy != HoverInfo::PassType::Value)
924 PassType.PassBy = ImplicitCast->getType().isConstQualified()
925 ? HoverInfo::PassType::ConstRef
926 : HoverInfo::PassType::Ref;
927 break;
928 case CK_LValueToRValue:
929 case CK_ArrayToPointerDecay:
930 case CK_FunctionToPointerDecay:
931 case CK_NullToPointer:
932 case CK_NullToMemberPointer:
933 // No longer a reference, but we do not show this as type conversion.
934 PassType.PassBy = HoverInfo::PassType::Value;
935 break;
936 default:
937 PassType.PassBy = HoverInfo::PassType::Value;
938 PassType.Converted = true;
939 break;
940 }
941 } else if (const auto *CtorCall =
942 CastNode->ASTNode.get<CXXConstructExpr>()) {
943 // We want to be smart about copy constructors. They should not show up as
944 // type conversion, but instead as passing by value.
945 if (CtorCall->getConstructor()->isCopyConstructor())
946 PassType.PassBy = HoverInfo::PassType::Value;
947 else
948 PassType.Converted = true;
949 } else { // Unknown implicit node, assume type conversion.
950 PassType.PassBy = HoverInfo::PassType::Value;
951 PassType.Converted = true;
952 }
953 }
954
955 HI.CallPassType.emplace(PassType);
956 }
957
958 } // namespace
959
getHover(ParsedAST & AST,Position Pos,const format::FormatStyle & Style,const SymbolIndex * Index)960 llvm::Optional<HoverInfo> getHover(ParsedAST &AST, Position Pos,
961 const format::FormatStyle &Style,
962 const SymbolIndex *Index) {
963 PrintingPolicy PP =
964 getPrintingPolicy(AST.getASTContext().getPrintingPolicy());
965 const SourceManager &SM = AST.getSourceManager();
966 auto CurLoc = sourceLocationInMainFile(SM, Pos);
967 if (!CurLoc) {
968 llvm::consumeError(CurLoc.takeError());
969 return llvm::None;
970 }
971 const auto &TB = AST.getTokens();
972 auto TokensTouchingCursor = syntax::spelledTokensTouching(*CurLoc, TB);
973 // Early exit if there were no tokens around the cursor.
974 if (TokensTouchingCursor.empty())
975 return llvm::None;
976
977 // Show full header file path if cursor is on include directive.
978 if (const auto MainFilePath =
979 getCanonicalPath(SM.getFileEntryForID(SM.getMainFileID()), SM)) {
980 for (const auto &Inc : AST.getIncludeStructure().MainFileIncludes) {
981 if (Inc.Resolved.empty() || Inc.HashLine != Pos.line)
982 continue;
983 HoverInfo HI;
984 HI.Name = std::string(llvm::sys::path::filename(Inc.Resolved));
985 // FIXME: We don't have a fitting value for Kind.
986 HI.Definition =
987 URIForFile::canonicalize(Inc.Resolved, *MainFilePath).file().str();
988 HI.DefinitionLanguage = "";
989 return HI;
990 }
991 }
992
993 // To be used as a backup for highlighting the selected token, we use back as
994 // it aligns better with biases elsewhere (editors tend to send the position
995 // for the left of the hovered token).
996 CharSourceRange HighlightRange =
997 TokensTouchingCursor.back().range(SM).toCharRange(SM);
998 llvm::Optional<HoverInfo> HI;
999 // Macros and deducedtype only works on identifiers and auto/decltype keywords
1000 // respectively. Therefore they are only trggered on whichever works for them,
1001 // similar to SelectionTree::create().
1002 for (const auto &Tok : TokensTouchingCursor) {
1003 if (Tok.kind() == tok::identifier) {
1004 // Prefer the identifier token as a fallback highlighting range.
1005 HighlightRange = Tok.range(SM).toCharRange(SM);
1006 if (auto M = locateMacroAt(Tok, AST.getPreprocessor())) {
1007 HI = getHoverContents(*M, AST);
1008 break;
1009 }
1010 } else if (Tok.kind() == tok::kw_auto || Tok.kind() == tok::kw_decltype) {
1011 if (auto Deduced = getDeducedType(AST.getASTContext(), Tok.location())) {
1012 HI = getDeducedTypeHoverContents(*Deduced, Tok, AST.getASTContext(), PP,
1013 Index);
1014 HighlightRange = Tok.range(SM).toCharRange(SM);
1015 break;
1016 }
1017
1018 // If we can't find interesting hover information for this
1019 // auto/decltype keyword, return nothing to avoid showing
1020 // irrelevant or incorrect informations.
1021 return llvm::None;
1022 }
1023 }
1024
1025 // If it wasn't auto/decltype or macro, look for decls and expressions.
1026 if (!HI) {
1027 auto Offset = SM.getFileOffset(*CurLoc);
1028 // Editors send the position on the left of the hovered character.
1029 // So our selection tree should be biased right. (Tested with VSCode).
1030 SelectionTree ST =
1031 SelectionTree::createRight(AST.getASTContext(), TB, Offset, Offset);
1032 if (const SelectionTree::Node *N = ST.commonAncestor()) {
1033 // FIXME: Fill in HighlightRange with range coming from N->ASTNode.
1034 auto Decls = explicitReferenceTargets(N->ASTNode, DeclRelation::Alias,
1035 AST.getHeuristicResolver());
1036 if (!Decls.empty()) {
1037 HI = getHoverContents(Decls.front(), PP, Index, TB);
1038 // Layout info only shown when hovering on the field/class itself.
1039 if (Decls.front() == N->ASTNode.get<Decl>())
1040 addLayoutInfo(*Decls.front(), *HI);
1041 // Look for a close enclosing expression to show the value of.
1042 if (!HI->Value)
1043 HI->Value = printExprValue(N, AST.getASTContext());
1044 maybeAddCalleeArgInfo(N, *HI, PP);
1045 } else if (const Expr *E = N->ASTNode.get<Expr>()) {
1046 HI = getHoverContents(E, AST, PP, Index);
1047 } else if (const Attr *A = N->ASTNode.get<Attr>()) {
1048 HI = getHoverContents(A, AST);
1049 }
1050 // FIXME: support hovers for other nodes?
1051 // - built-in types
1052 }
1053 }
1054
1055 if (!HI)
1056 return llvm::None;
1057
1058 auto Replacements = format::reformat(
1059 Style, HI->Definition, tooling::Range(0, HI->Definition.size()));
1060 if (auto Formatted =
1061 tooling::applyAllReplacements(HI->Definition, Replacements))
1062 HI->Definition = *Formatted;
1063 HI->DefinitionLanguage = getMarkdownLanguage(AST.getASTContext());
1064 HI->SymRange = halfOpenToRange(SM, HighlightRange);
1065
1066 return HI;
1067 }
1068
present() const1069 markup::Document HoverInfo::present() const {
1070 markup::Document Output;
1071
1072 // Header contains a text of the form:
1073 // variable `var`
1074 //
1075 // class `X`
1076 //
1077 // function `foo`
1078 //
1079 // expression
1080 //
1081 // Note that we are making use of a level-3 heading because VSCode renders
1082 // level 1 and 2 headers in a huge font, see
1083 // https://github.com/microsoft/vscode/issues/88417 for details.
1084 markup::Paragraph &Header = Output.addHeading(3);
1085 if (Kind != index::SymbolKind::Unknown)
1086 Header.appendText(index::getSymbolKindString(Kind)).appendSpace();
1087 assert(!Name.empty() && "hover triggered on a nameless symbol");
1088 Header.appendCode(Name);
1089
1090 // Put a linebreak after header to increase readability.
1091 Output.addRuler();
1092 // Print Types on their own lines to reduce chances of getting line-wrapped by
1093 // editor, as they might be long.
1094 if (ReturnType) {
1095 // For functions we display signature in a list form, e.g.:
1096 // → `x`
1097 // Parameters:
1098 // - `bool param1`
1099 // - `int param2 = 5`
1100 Output.addParagraph().appendText("→ ").appendCode(
1101 llvm::to_string(*ReturnType));
1102 }
1103
1104 if (Parameters && !Parameters->empty()) {
1105 Output.addParagraph().appendText("Parameters: ");
1106 markup::BulletList &L = Output.addBulletList();
1107 for (const auto &Param : *Parameters)
1108 L.addItem().addParagraph().appendCode(llvm::to_string(Param));
1109 }
1110
1111 // Don't print Type after Parameters or ReturnType as this will just duplicate
1112 // the information
1113 if (Type && !ReturnType && !Parameters)
1114 Output.addParagraph().appendText("Type: ").appendCode(
1115 llvm::to_string(*Type));
1116
1117 if (Value) {
1118 markup::Paragraph &P = Output.addParagraph();
1119 P.appendText("Value = ");
1120 P.appendCode(*Value);
1121 }
1122
1123 if (Offset)
1124 Output.addParagraph().appendText(
1125 llvm::formatv("Offset: {0} byte{1}", *Offset, *Offset == 1 ? "" : "s")
1126 .str());
1127 if (Size) {
1128 auto &P = Output.addParagraph().appendText(
1129 llvm::formatv("Size: {0} byte{1}", *Size, *Size == 1 ? "" : "s").str());
1130 if (Padding && *Padding != 0)
1131 P.appendText(llvm::formatv(" (+{0} padding)", *Padding).str());
1132 }
1133
1134 if (CalleeArgInfo) {
1135 assert(CallPassType);
1136 std::string Buffer;
1137 llvm::raw_string_ostream OS(Buffer);
1138 OS << "Passed ";
1139 if (CallPassType->PassBy != HoverInfo::PassType::Value) {
1140 OS << "by ";
1141 if (CallPassType->PassBy == HoverInfo::PassType::ConstRef)
1142 OS << "const ";
1143 OS << "reference ";
1144 }
1145 if (CalleeArgInfo->Name)
1146 OS << "as " << CalleeArgInfo->Name;
1147 if (CallPassType->Converted && CalleeArgInfo->Type)
1148 OS << " (converted to " << CalleeArgInfo->Type->Type << ")";
1149 Output.addParagraph().appendText(OS.str());
1150 }
1151
1152 if (!Documentation.empty())
1153 parseDocumentation(Documentation, Output);
1154
1155 if (!Definition.empty()) {
1156 Output.addRuler();
1157 std::string ScopeComment;
1158 // Drop trailing "::".
1159 if (!LocalScope.empty()) {
1160 // Container name, e.g. class, method, function.
1161 // We might want to propagate some info about container type to print
1162 // function foo, class X, method X::bar, etc.
1163 ScopeComment =
1164 "// In " + llvm::StringRef(LocalScope).rtrim(':').str() + '\n';
1165 } else if (NamespaceScope && !NamespaceScope->empty()) {
1166 ScopeComment = "// In namespace " +
1167 llvm::StringRef(*NamespaceScope).rtrim(':').str() + '\n';
1168 }
1169 std::string DefinitionWithAccess = !AccessSpecifier.empty()
1170 ? AccessSpecifier + ": " + Definition
1171 : Definition;
1172 // Note that we don't print anything for global namespace, to not annoy
1173 // non-c++ projects or projects that are not making use of namespaces.
1174 Output.addCodeBlock(ScopeComment + DefinitionWithAccess,
1175 DefinitionLanguage);
1176 }
1177
1178 return Output;
1179 }
1180
1181 // If the backtick at `Offset` starts a probable quoted range, return the range
1182 // (including the quotes).
getBacktickQuoteRange(llvm::StringRef Line,unsigned Offset)1183 llvm::Optional<llvm::StringRef> getBacktickQuoteRange(llvm::StringRef Line,
1184 unsigned Offset) {
1185 assert(Line[Offset] == '`');
1186
1187 // The open-quote is usually preceded by whitespace.
1188 llvm::StringRef Prefix = Line.substr(0, Offset);
1189 constexpr llvm::StringLiteral BeforeStartChars = " \t(=";
1190 if (!Prefix.empty() && !BeforeStartChars.contains(Prefix.back()))
1191 return llvm::None;
1192
1193 // The quoted string must be nonempty and usually has no leading/trailing ws.
1194 auto Next = Line.find('`', Offset + 1);
1195 if (Next == llvm::StringRef::npos)
1196 return llvm::None;
1197 llvm::StringRef Contents = Line.slice(Offset + 1, Next);
1198 if (Contents.empty() || isWhitespace(Contents.front()) ||
1199 isWhitespace(Contents.back()))
1200 return llvm::None;
1201
1202 // The close-quote is usually followed by whitespace or punctuation.
1203 llvm::StringRef Suffix = Line.substr(Next + 1);
1204 constexpr llvm::StringLiteral AfterEndChars = " \t)=.,;:";
1205 if (!Suffix.empty() && !AfterEndChars.contains(Suffix.front()))
1206 return llvm::None;
1207
1208 return Line.slice(Offset, Next + 1);
1209 }
1210
parseDocumentationLine(llvm::StringRef Line,markup::Paragraph & Out)1211 void parseDocumentationLine(llvm::StringRef Line, markup::Paragraph &Out) {
1212 // Probably this is appendText(Line), but scan for something interesting.
1213 for (unsigned I = 0; I < Line.size(); ++I) {
1214 switch (Line[I]) {
1215 case '`':
1216 if (auto Range = getBacktickQuoteRange(Line, I)) {
1217 Out.appendText(Line.substr(0, I));
1218 Out.appendCode(Range->trim("`"), /*Preserve=*/true);
1219 return parseDocumentationLine(Line.substr(I + Range->size()), Out);
1220 }
1221 break;
1222 }
1223 }
1224 Out.appendText(Line).appendSpace();
1225 }
1226
parseDocumentation(llvm::StringRef Input,markup::Document & Output)1227 void parseDocumentation(llvm::StringRef Input, markup::Document &Output) {
1228 std::vector<llvm::StringRef> ParagraphLines;
1229 auto FlushParagraph = [&] {
1230 if (ParagraphLines.empty())
1231 return;
1232 auto &P = Output.addParagraph();
1233 for (llvm::StringRef Line : ParagraphLines)
1234 parseDocumentationLine(Line, P);
1235 ParagraphLines.clear();
1236 };
1237
1238 llvm::StringRef Line, Rest;
1239 for (std::tie(Line, Rest) = Input.split('\n');
1240 !(Line.empty() && Rest.empty());
1241 std::tie(Line, Rest) = Rest.split('\n')) {
1242
1243 // After a linebreak remove spaces to avoid 4 space markdown code blocks.
1244 // FIXME: make FlushParagraph handle this.
1245 Line = Line.ltrim();
1246 if (!Line.empty())
1247 ParagraphLines.push_back(Line);
1248
1249 if (isParagraphBreak(Rest) || isHardLineBreakAfter(Line, Rest)) {
1250 FlushParagraph();
1251 }
1252 }
1253 FlushParagraph();
1254 }
1255
operator <<(llvm::raw_ostream & OS,const HoverInfo::PrintedType & T)1256 llvm::raw_ostream &operator<<(llvm::raw_ostream &OS,
1257 const HoverInfo::PrintedType &T) {
1258 OS << T.Type;
1259 if (T.AKA)
1260 OS << " (aka " << *T.AKA << ")";
1261 return OS;
1262 }
1263
operator <<(llvm::raw_ostream & OS,const HoverInfo::Param & P)1264 llvm::raw_ostream &operator<<(llvm::raw_ostream &OS,
1265 const HoverInfo::Param &P) {
1266 if (P.Type)
1267 OS << P.Type->Type;
1268 if (P.Name)
1269 OS << " " << *P.Name;
1270 if (P.Default)
1271 OS << " = " << *P.Default;
1272 if (P.Type && P.Type->AKA)
1273 OS << " (aka " << *P.Type->AKA << ")";
1274 return OS;
1275 }
1276
1277 } // namespace clangd
1278 } // namespace clang
1279