llvm-project/clang/lib/AST/CommentSema.cpp
Fariborz Jahanian 1c883b9b57 [Doc parsing] This patch searches overridden objc/c++
methods looking for documentation on a particular base
class inherited by any method that overrides the base class.
In case of redeclaration, as when objc method is defined
in the implementation, it also looks up for documentation
in class/class extension being redeclared.

llvm-svn: 165643
2012-10-10 18:34:52 +00:00

822 lines
29 KiB
C++

//===--- CommentSema.cpp - Doxygen comment semantic analysis --------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "clang/AST/CommentSema.h"
#include "clang/AST/CommentDiagnostic.h"
#include "clang/AST/CommentCommandTraits.h"
#include "clang/AST/Decl.h"
#include "clang/AST/DeclTemplate.h"
#include "clang/Basic/SourceManager.h"
#include "clang/Lex/Preprocessor.h"
#include "llvm/ADT/StringSwitch.h"
#include "llvm/ADT/SmallString.h"
namespace clang {
namespace comments {
namespace {
#include "clang/AST/CommentHTMLTagsProperties.inc"
} // unnamed namespace
Sema::Sema(llvm::BumpPtrAllocator &Allocator, const SourceManager &SourceMgr,
DiagnosticsEngine &Diags, CommandTraits &Traits,
const Preprocessor *PP) :
Allocator(Allocator), SourceMgr(SourceMgr), Diags(Diags), Traits(Traits),
PP(PP), ThisDeclInfo(NULL), BriefCommand(NULL), ReturnsCommand(NULL) {
}
void Sema::setDecl(const Decl *D) {
if (!D)
return;
ThisDeclInfo = new (Allocator) DeclInfo;
ThisDeclInfo->CommentDecl = D;
ThisDeclInfo->IsFilled = false;
}
ParagraphComment *Sema::actOnParagraphComment(
ArrayRef<InlineContentComment *> Content) {
return new (Allocator) ParagraphComment(Content);
}
BlockCommandComment *Sema::actOnBlockCommandStart(SourceLocation LocBegin,
SourceLocation LocEnd,
unsigned CommandID) {
return new (Allocator) BlockCommandComment(LocBegin, LocEnd, CommandID);
}
void Sema::actOnBlockCommandArgs(BlockCommandComment *Command,
ArrayRef<BlockCommandComment::Argument> Args) {
Command->setArgs(Args);
}
void Sema::actOnBlockCommandFinish(BlockCommandComment *Command,
ParagraphComment *Paragraph) {
Command->setParagraph(Paragraph);
checkBlockCommandEmptyParagraph(Command);
checkBlockCommandDuplicate(Command);
checkReturnsCommand(Command);
checkDeprecatedCommand(Command);
}
ParamCommandComment *Sema::actOnParamCommandStart(SourceLocation LocBegin,
SourceLocation LocEnd,
unsigned CommandID) {
ParamCommandComment *Command =
new (Allocator) ParamCommandComment(LocBegin, LocEnd, CommandID);
if (!isFunctionDecl())
Diag(Command->getLocation(),
diag::warn_doc_param_not_attached_to_a_function_decl)
<< Command->getCommandNameRange(Traits);
return Command;
}
void Sema::actOnParamCommandDirectionArg(ParamCommandComment *Command,
SourceLocation ArgLocBegin,
SourceLocation ArgLocEnd,
StringRef Arg) {
ParamCommandComment::PassDirection Direction;
std::string ArgLower = Arg.lower();
// TODO: optimize: lower Name first (need an API in SmallString for that),
// after that StringSwitch.
if (ArgLower == "[in]")
Direction = ParamCommandComment::In;
else if (ArgLower == "[out]")
Direction = ParamCommandComment::Out;
else if (ArgLower == "[in,out]" || ArgLower == "[out,in]")
Direction = ParamCommandComment::InOut;
else {
// Remove spaces.
std::string::iterator O = ArgLower.begin();
for (std::string::iterator I = ArgLower.begin(), E = ArgLower.end();
I != E; ++I) {
const char C = *I;
if (C != ' ' && C != '\n' && C != '\r' &&
C != '\t' && C != '\v' && C != '\f')
*O++ = C;
}
ArgLower.resize(O - ArgLower.begin());
bool RemovingWhitespaceHelped = false;
if (ArgLower == "[in]") {
Direction = ParamCommandComment::In;
RemovingWhitespaceHelped = true;
} else if (ArgLower == "[out]") {
Direction = ParamCommandComment::Out;
RemovingWhitespaceHelped = true;
} else if (ArgLower == "[in,out]" || ArgLower == "[out,in]") {
Direction = ParamCommandComment::InOut;
RemovingWhitespaceHelped = true;
} else {
Direction = ParamCommandComment::In;
RemovingWhitespaceHelped = false;
}
SourceRange ArgRange(ArgLocBegin, ArgLocEnd);
if (RemovingWhitespaceHelped)
Diag(ArgLocBegin, diag::warn_doc_param_spaces_in_direction)
<< ArgRange
<< FixItHint::CreateReplacement(
ArgRange,
ParamCommandComment::getDirectionAsString(Direction));
else
Diag(ArgLocBegin, diag::warn_doc_param_invalid_direction)
<< ArgRange;
}
Command->setDirection(Direction, /* Explicit = */ true);
}
void Sema::actOnParamCommandParamNameArg(ParamCommandComment *Command,
SourceLocation ArgLocBegin,
SourceLocation ArgLocEnd,
StringRef Arg) {
// Parser will not feed us more arguments than needed.
assert(Command->getNumArgs() == 0);
if (!Command->isDirectionExplicit()) {
// User didn't provide a direction argument.
Command->setDirection(ParamCommandComment::In, /* Explicit = */ false);
}
typedef BlockCommandComment::Argument Argument;
Argument *A = new (Allocator) Argument(SourceRange(ArgLocBegin,
ArgLocEnd),
Arg);
Command->setArgs(llvm::makeArrayRef(A, 1));
}
void Sema::actOnParamCommandFinish(ParamCommandComment *Command,
ParagraphComment *Paragraph) {
Command->setParagraph(Paragraph);
checkBlockCommandEmptyParagraph(Command);
}
TParamCommandComment *Sema::actOnTParamCommandStart(SourceLocation LocBegin,
SourceLocation LocEnd,
unsigned CommandID) {
TParamCommandComment *Command =
new (Allocator) TParamCommandComment(LocBegin, LocEnd, CommandID);
if (!isTemplateOrSpecialization())
Diag(Command->getLocation(),
diag::warn_doc_tparam_not_attached_to_a_template_decl)
<< Command->getCommandNameRange(Traits);
return Command;
}
void Sema::actOnTParamCommandParamNameArg(TParamCommandComment *Command,
SourceLocation ArgLocBegin,
SourceLocation ArgLocEnd,
StringRef Arg) {
// Parser will not feed us more arguments than needed.
assert(Command->getNumArgs() == 0);
typedef BlockCommandComment::Argument Argument;
Argument *A = new (Allocator) Argument(SourceRange(ArgLocBegin,
ArgLocEnd),
Arg);
Command->setArgs(llvm::makeArrayRef(A, 1));
if (!isTemplateOrSpecialization()) {
// We already warned that this \\tparam is not attached to a template decl.
return;
}
const TemplateParameterList *TemplateParameters =
ThisDeclInfo->TemplateParameters;
SmallVector<unsigned, 2> Position;
if (resolveTParamReference(Arg, TemplateParameters, &Position)) {
Command->setPosition(copyArray(llvm::makeArrayRef(Position)));
llvm::StringMap<TParamCommandComment *>::iterator PrevCommandIt =
TemplateParameterDocs.find(Arg);
if (PrevCommandIt != TemplateParameterDocs.end()) {
SourceRange ArgRange(ArgLocBegin, ArgLocEnd);
Diag(ArgLocBegin, diag::warn_doc_tparam_duplicate)
<< Arg << ArgRange;
TParamCommandComment *PrevCommand = PrevCommandIt->second;
Diag(PrevCommand->getLocation(), diag::note_doc_tparam_previous)
<< PrevCommand->getParamNameRange();
}
TemplateParameterDocs[Arg] = Command;
return;
}
SourceRange ArgRange(ArgLocBegin, ArgLocEnd);
Diag(ArgLocBegin, diag::warn_doc_tparam_not_found)
<< Arg << ArgRange;
if (!TemplateParameters || TemplateParameters->size() == 0)
return;
StringRef CorrectedName;
if (TemplateParameters->size() == 1) {
const NamedDecl *Param = TemplateParameters->getParam(0);
const IdentifierInfo *II = Param->getIdentifier();
if (II)
CorrectedName = II->getName();
} else {
CorrectedName = correctTypoInTParamReference(Arg, TemplateParameters);
}
if (!CorrectedName.empty()) {
Diag(ArgLocBegin, diag::note_doc_tparam_name_suggestion)
<< CorrectedName
<< FixItHint::CreateReplacement(ArgRange, CorrectedName);
}
return;
}
void Sema::actOnTParamCommandFinish(TParamCommandComment *Command,
ParagraphComment *Paragraph) {
Command->setParagraph(Paragraph);
checkBlockCommandEmptyParagraph(Command);
}
InlineCommandComment *Sema::actOnInlineCommand(SourceLocation CommandLocBegin,
SourceLocation CommandLocEnd,
unsigned CommandID) {
ArrayRef<InlineCommandComment::Argument> Args;
StringRef CommandName = Traits.getCommandInfo(CommandID)->Name;
return new (Allocator) InlineCommandComment(
CommandLocBegin,
CommandLocEnd,
CommandID,
getInlineCommandRenderKind(CommandName),
Args);
}
InlineCommandComment *Sema::actOnInlineCommand(SourceLocation CommandLocBegin,
SourceLocation CommandLocEnd,
unsigned CommandID,
SourceLocation ArgLocBegin,
SourceLocation ArgLocEnd,
StringRef Arg) {
typedef InlineCommandComment::Argument Argument;
Argument *A = new (Allocator) Argument(SourceRange(ArgLocBegin,
ArgLocEnd),
Arg);
StringRef CommandName = Traits.getCommandInfo(CommandID)->Name;
return new (Allocator) InlineCommandComment(
CommandLocBegin,
CommandLocEnd,
CommandID,
getInlineCommandRenderKind(CommandName),
llvm::makeArrayRef(A, 1));
}
InlineContentComment *Sema::actOnUnknownCommand(SourceLocation LocBegin,
SourceLocation LocEnd,
StringRef CommandName) {
unsigned CommandID = Traits.registerUnknownCommand(CommandName)->getID();
return actOnUnknownCommand(LocBegin, LocEnd, CommandID);
}
InlineContentComment *Sema::actOnUnknownCommand(SourceLocation LocBegin,
SourceLocation LocEnd,
unsigned CommandID) {
ArrayRef<InlineCommandComment::Argument> Args;
return new (Allocator) InlineCommandComment(
LocBegin, LocEnd, CommandID,
InlineCommandComment::RenderNormal,
Args);
}
TextComment *Sema::actOnText(SourceLocation LocBegin,
SourceLocation LocEnd,
StringRef Text) {
return new (Allocator) TextComment(LocBegin, LocEnd, Text);
}
VerbatimBlockComment *Sema::actOnVerbatimBlockStart(SourceLocation Loc,
unsigned CommandID) {
StringRef CommandName = Traits.getCommandInfo(CommandID)->Name;
return new (Allocator) VerbatimBlockComment(
Loc,
Loc.getLocWithOffset(1 + CommandName.size()),
CommandID);
}
VerbatimBlockLineComment *Sema::actOnVerbatimBlockLine(SourceLocation Loc,
StringRef Text) {
return new (Allocator) VerbatimBlockLineComment(Loc, Text);
}
void Sema::actOnVerbatimBlockFinish(
VerbatimBlockComment *Block,
SourceLocation CloseNameLocBegin,
StringRef CloseName,
ArrayRef<VerbatimBlockLineComment *> Lines) {
Block->setCloseName(CloseName, CloseNameLocBegin);
Block->setLines(Lines);
}
VerbatimLineComment *Sema::actOnVerbatimLine(SourceLocation LocBegin,
unsigned CommandID,
SourceLocation TextBegin,
StringRef Text) {
return new (Allocator) VerbatimLineComment(
LocBegin,
TextBegin.getLocWithOffset(Text.size()),
CommandID,
TextBegin,
Text);
}
HTMLStartTagComment *Sema::actOnHTMLStartTagStart(SourceLocation LocBegin,
StringRef TagName) {
return new (Allocator) HTMLStartTagComment(LocBegin, TagName);
}
void Sema::actOnHTMLStartTagFinish(
HTMLStartTagComment *Tag,
ArrayRef<HTMLStartTagComment::Attribute> Attrs,
SourceLocation GreaterLoc,
bool IsSelfClosing) {
Tag->setAttrs(Attrs);
Tag->setGreaterLoc(GreaterLoc);
if (IsSelfClosing)
Tag->setSelfClosing();
else if (!isHTMLEndTagForbidden(Tag->getTagName()))
HTMLOpenTags.push_back(Tag);
}
HTMLEndTagComment *Sema::actOnHTMLEndTag(SourceLocation LocBegin,
SourceLocation LocEnd,
StringRef TagName) {
HTMLEndTagComment *HET =
new (Allocator) HTMLEndTagComment(LocBegin, LocEnd, TagName);
if (isHTMLEndTagForbidden(TagName)) {
Diag(HET->getLocation(), diag::warn_doc_html_end_forbidden)
<< TagName << HET->getSourceRange();
return HET;
}
bool FoundOpen = false;
for (SmallVectorImpl<HTMLStartTagComment *>::const_reverse_iterator
I = HTMLOpenTags.rbegin(), E = HTMLOpenTags.rend();
I != E; ++I) {
if ((*I)->getTagName() == TagName) {
FoundOpen = true;
break;
}
}
if (!FoundOpen) {
Diag(HET->getLocation(), diag::warn_doc_html_end_unbalanced)
<< HET->getSourceRange();
return HET;
}
while (!HTMLOpenTags.empty()) {
const HTMLStartTagComment *HST = HTMLOpenTags.back();
HTMLOpenTags.pop_back();
StringRef LastNotClosedTagName = HST->getTagName();
if (LastNotClosedTagName == TagName)
break;
if (isHTMLEndTagOptional(LastNotClosedTagName))
continue;
bool OpenLineInvalid;
const unsigned OpenLine = SourceMgr.getPresumedLineNumber(
HST->getLocation(),
&OpenLineInvalid);
bool CloseLineInvalid;
const unsigned CloseLine = SourceMgr.getPresumedLineNumber(
HET->getLocation(),
&CloseLineInvalid);
if (OpenLineInvalid || CloseLineInvalid || OpenLine == CloseLine)
Diag(HST->getLocation(), diag::warn_doc_html_start_end_mismatch)
<< HST->getTagName() << HET->getTagName()
<< HST->getSourceRange() << HET->getSourceRange();
else {
Diag(HST->getLocation(), diag::warn_doc_html_start_end_mismatch)
<< HST->getTagName() << HET->getTagName()
<< HST->getSourceRange();
Diag(HET->getLocation(), diag::note_doc_html_end_tag)
<< HET->getSourceRange();
}
}
return HET;
}
FullComment *Sema::actOnFullComment(
ArrayRef<BlockContentComment *> Blocks) {
FullComment *FC = new (Allocator) FullComment(Blocks, ThisDeclInfo, 0);
resolveParamCommandIndexes(FC);
return FC;
}
void Sema::checkBlockCommandEmptyParagraph(BlockCommandComment *Command) {
if (Traits.getCommandInfo(Command->getCommandID())->IsEmptyParagraphAllowed)
return;
ParagraphComment *Paragraph = Command->getParagraph();
if (Paragraph->isWhitespace()) {
SourceLocation DiagLoc;
if (Command->getNumArgs() > 0)
DiagLoc = Command->getArgRange(Command->getNumArgs() - 1).getEnd();
if (!DiagLoc.isValid())
DiagLoc = Command->getCommandNameRange(Traits).getEnd();
Diag(DiagLoc, diag::warn_doc_block_command_empty_paragraph)
<< Command->getCommandName(Traits)
<< Command->getSourceRange();
}
}
void Sema::checkReturnsCommand(const BlockCommandComment *Command) {
if (!Traits.getCommandInfo(Command->getCommandID())->IsReturnsCommand)
return;
if (isFunctionDecl()) {
if (ThisDeclInfo->ResultType->isVoidType()) {
unsigned DiagKind;
switch (ThisDeclInfo->CommentDecl->getKind()) {
default:
if (ThisDeclInfo->IsObjCMethod)
DiagKind = 3;
else
DiagKind = 0;
break;
case Decl::CXXConstructor:
DiagKind = 1;
break;
case Decl::CXXDestructor:
DiagKind = 2;
break;
}
Diag(Command->getLocation(),
diag::warn_doc_returns_attached_to_a_void_function)
<< Command->getCommandName(Traits)
<< DiagKind
<< Command->getSourceRange();
}
return;
}
Diag(Command->getLocation(),
diag::warn_doc_returns_not_attached_to_a_function_decl)
<< Command->getCommandName(Traits)
<< Command->getSourceRange();
}
void Sema::checkBlockCommandDuplicate(const BlockCommandComment *Command) {
const CommandInfo *Info = Traits.getCommandInfo(Command->getCommandID());
const BlockCommandComment *PrevCommand = NULL;
if (Info->IsBriefCommand) {
if (!BriefCommand) {
BriefCommand = Command;
return;
}
PrevCommand = BriefCommand;
} else if (Info->IsReturnsCommand) {
if (!ReturnsCommand) {
ReturnsCommand = Command;
return;
}
PrevCommand = ReturnsCommand;
} else {
// We don't want to check this command for duplicates.
return;
}
StringRef CommandName = Command->getCommandName(Traits);
StringRef PrevCommandName = PrevCommand->getCommandName(Traits);
Diag(Command->getLocation(), diag::warn_doc_block_command_duplicate)
<< CommandName
<< Command->getSourceRange();
if (CommandName == PrevCommandName)
Diag(PrevCommand->getLocation(), diag::note_doc_block_command_previous)
<< PrevCommandName
<< PrevCommand->getSourceRange();
else
Diag(PrevCommand->getLocation(),
diag::note_doc_block_command_previous_alias)
<< PrevCommandName
<< CommandName;
}
void Sema::checkDeprecatedCommand(const BlockCommandComment *Command) {
if (!Traits.getCommandInfo(Command->getCommandID())->IsDeprecatedCommand)
return;
const Decl *D = ThisDeclInfo->CommentDecl;
if (!D)
return;
if (D->hasAttr<DeprecatedAttr>() ||
D->hasAttr<AvailabilityAttr>() ||
D->hasAttr<UnavailableAttr>())
return;
Diag(Command->getLocation(),
diag::warn_doc_deprecated_not_sync)
<< Command->getSourceRange();
// Try to emit a fixit with a deprecation attribute.
if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
// Don't emit a Fix-It for non-member function definitions. GCC does not
// accept attributes on them.
const DeclContext *Ctx = FD->getDeclContext();
if ((!Ctx || !Ctx->isRecord()) &&
FD->doesThisDeclarationHaveABody())
return;
StringRef AttributeSpelling = "__attribute__((deprecated))";
if (PP) {
TokenValue Tokens[] = {
tok::kw___attribute, tok::l_paren, tok::l_paren,
PP->getIdentifierInfo("deprecated"),
tok::r_paren, tok::r_paren
};
StringRef MacroName = PP->getLastMacroWithSpelling(FD->getLocation(),
Tokens);
if (!MacroName.empty())
AttributeSpelling = MacroName;
}
SmallString<64> TextToInsert(" ");
TextToInsert += AttributeSpelling;
Diag(FD->getLocEnd(),
diag::note_add_deprecation_attr)
<< FixItHint::CreateInsertion(FD->getLocEnd().getLocWithOffset(1),
TextToInsert);
}
}
void Sema::resolveParamCommandIndexes(const FullComment *FC) {
if (!isFunctionDecl()) {
// We already warned that \\param commands are not attached to a function
// decl.
return;
}
llvm::SmallVector<ParamCommandComment *, 8> UnresolvedParamCommands;
// Comment AST nodes that correspond to \c ParamVars for which we have
// found a \\param command or NULL if no documentation was found so far.
llvm::SmallVector<ParamCommandComment *, 8> ParamVarDocs;
ArrayRef<const ParmVarDecl *> ParamVars = getParamVars();
ParamVarDocs.resize(ParamVars.size(), NULL);
// First pass over all \\param commands: resolve all parameter names.
for (Comment::child_iterator I = FC->child_begin(), E = FC->child_end();
I != E; ++I) {
ParamCommandComment *PCC = dyn_cast<ParamCommandComment>(*I);
if (!PCC || !PCC->hasParamName())
continue;
StringRef ParamName = PCC->getParamName(0);
// Check that referenced parameter name is in the function decl.
const unsigned ResolvedParamIndex = resolveParmVarReference(ParamName,
ParamVars);
if (ResolvedParamIndex == ParamCommandComment::InvalidParamIndex) {
UnresolvedParamCommands.push_back(PCC);
continue;
}
PCC->setParamIndex(ResolvedParamIndex);
if (ParamVarDocs[ResolvedParamIndex]) {
SourceRange ArgRange = PCC->getParamNameRange();
Diag(ArgRange.getBegin(), diag::warn_doc_param_duplicate)
<< ParamName << ArgRange;
ParamCommandComment *PrevCommand = ParamVarDocs[ResolvedParamIndex];
Diag(PrevCommand->getLocation(), diag::note_doc_param_previous)
<< PrevCommand->getParamNameRange();
}
ParamVarDocs[ResolvedParamIndex] = PCC;
}
// Find parameter declarations that have no corresponding \\param.
llvm::SmallVector<const ParmVarDecl *, 8> OrphanedParamDecls;
for (unsigned i = 0, e = ParamVarDocs.size(); i != e; ++i) {
if (!ParamVarDocs[i])
OrphanedParamDecls.push_back(ParamVars[i]);
}
// Second pass over unresolved \\param commands: do typo correction.
// Suggest corrections from a set of parameter declarations that have no
// corresponding \\param.
for (unsigned i = 0, e = UnresolvedParamCommands.size(); i != e; ++i) {
const ParamCommandComment *PCC = UnresolvedParamCommands[i];
SourceRange ArgRange = PCC->getParamNameRange();
StringRef ParamName = PCC->getParamName(0);
Diag(ArgRange.getBegin(), diag::warn_doc_param_not_found)
<< ParamName << ArgRange;
// All parameters documented -- can't suggest a correction.
if (OrphanedParamDecls.size() == 0)
continue;
unsigned CorrectedParamIndex = ParamCommandComment::InvalidParamIndex;
if (OrphanedParamDecls.size() == 1) {
// If one parameter is not documented then that parameter is the only
// possible suggestion.
CorrectedParamIndex = 0;
} else {
// Do typo correction.
CorrectedParamIndex = correctTypoInParmVarReference(ParamName,
OrphanedParamDecls);
}
if (CorrectedParamIndex != ParamCommandComment::InvalidParamIndex) {
const ParmVarDecl *CorrectedPVD = OrphanedParamDecls[CorrectedParamIndex];
if (const IdentifierInfo *CorrectedII = CorrectedPVD->getIdentifier())
Diag(ArgRange.getBegin(), diag::note_doc_param_name_suggestion)
<< CorrectedII->getName()
<< FixItHint::CreateReplacement(ArgRange, CorrectedII->getName());
}
}
}
bool Sema::isFunctionDecl() {
if (!ThisDeclInfo)
return false;
if (!ThisDeclInfo->IsFilled)
inspectThisDecl();
return ThisDeclInfo->getKind() == DeclInfo::FunctionKind;
}
bool Sema::isTemplateOrSpecialization() {
if (!ThisDeclInfo)
return false;
if (!ThisDeclInfo->IsFilled)
inspectThisDecl();
return ThisDeclInfo->getTemplateKind() != DeclInfo::NotTemplate;
}
ArrayRef<const ParmVarDecl *> Sema::getParamVars() {
if (!ThisDeclInfo->IsFilled)
inspectThisDecl();
return ThisDeclInfo->ParamVars;
}
void Sema::inspectThisDecl() {
ThisDeclInfo->fill();
}
unsigned Sema::resolveParmVarReference(StringRef Name,
ArrayRef<const ParmVarDecl *> ParamVars) {
for (unsigned i = 0, e = ParamVars.size(); i != e; ++i) {
const IdentifierInfo *II = ParamVars[i]->getIdentifier();
if (II && II->getName() == Name)
return i;
}
return ParamCommandComment::InvalidParamIndex;
}
namespace {
class SimpleTypoCorrector {
StringRef Typo;
const unsigned MaxEditDistance;
const NamedDecl *BestDecl;
unsigned BestEditDistance;
unsigned BestIndex;
unsigned NextIndex;
public:
SimpleTypoCorrector(StringRef Typo) :
Typo(Typo), MaxEditDistance((Typo.size() + 2) / 3),
BestDecl(NULL), BestEditDistance(MaxEditDistance + 1),
BestIndex(0), NextIndex(0)
{ }
void addDecl(const NamedDecl *ND);
const NamedDecl *getBestDecl() const {
if (BestEditDistance > MaxEditDistance)
return NULL;
return BestDecl;
}
unsigned getBestDeclIndex() const {
assert(getBestDecl());
return BestIndex;
}
};
void SimpleTypoCorrector::addDecl(const NamedDecl *ND) {
unsigned CurrIndex = NextIndex++;
const IdentifierInfo *II = ND->getIdentifier();
if (!II)
return;
StringRef Name = II->getName();
unsigned MinPossibleEditDistance = abs((int)Name.size() - (int)Typo.size());
if (MinPossibleEditDistance > 0 &&
Typo.size() / MinPossibleEditDistance < 3)
return;
unsigned EditDistance = Typo.edit_distance(Name, true, MaxEditDistance);
if (EditDistance < BestEditDistance) {
BestEditDistance = EditDistance;
BestDecl = ND;
BestIndex = CurrIndex;
}
}
} // unnamed namespace
unsigned Sema::correctTypoInParmVarReference(
StringRef Typo,
ArrayRef<const ParmVarDecl *> ParamVars) {
SimpleTypoCorrector Corrector(Typo);
for (unsigned i = 0, e = ParamVars.size(); i != e; ++i)
Corrector.addDecl(ParamVars[i]);
if (Corrector.getBestDecl())
return Corrector.getBestDeclIndex();
else
return ParamCommandComment::InvalidParamIndex;
}
namespace {
bool ResolveTParamReferenceHelper(
StringRef Name,
const TemplateParameterList *TemplateParameters,
SmallVectorImpl<unsigned> *Position) {
for (unsigned i = 0, e = TemplateParameters->size(); i != e; ++i) {
const NamedDecl *Param = TemplateParameters->getParam(i);
const IdentifierInfo *II = Param->getIdentifier();
if (II && II->getName() == Name) {
Position->push_back(i);
return true;
}
if (const TemplateTemplateParmDecl *TTP =
dyn_cast<TemplateTemplateParmDecl>(Param)) {
Position->push_back(i);
if (ResolveTParamReferenceHelper(Name, TTP->getTemplateParameters(),
Position))
return true;
Position->pop_back();
}
}
return false;
}
} // unnamed namespace
bool Sema::resolveTParamReference(
StringRef Name,
const TemplateParameterList *TemplateParameters,
SmallVectorImpl<unsigned> *Position) {
Position->clear();
if (!TemplateParameters)
return false;
return ResolveTParamReferenceHelper(Name, TemplateParameters, Position);
}
namespace {
void CorrectTypoInTParamReferenceHelper(
const TemplateParameterList *TemplateParameters,
SimpleTypoCorrector &Corrector) {
for (unsigned i = 0, e = TemplateParameters->size(); i != e; ++i) {
const NamedDecl *Param = TemplateParameters->getParam(i);
Corrector.addDecl(Param);
if (const TemplateTemplateParmDecl *TTP =
dyn_cast<TemplateTemplateParmDecl>(Param))
CorrectTypoInTParamReferenceHelper(TTP->getTemplateParameters(),
Corrector);
}
}
} // unnamed namespace
StringRef Sema::correctTypoInTParamReference(
StringRef Typo,
const TemplateParameterList *TemplateParameters) {
SimpleTypoCorrector Corrector(Typo);
CorrectTypoInTParamReferenceHelper(TemplateParameters, Corrector);
if (const NamedDecl *ND = Corrector.getBestDecl()) {
const IdentifierInfo *II = ND->getIdentifier();
assert(II && "SimpleTypoCorrector should not return this decl");
return II->getName();
}
return StringRef();
}
InlineCommandComment::RenderKind
Sema::getInlineCommandRenderKind(StringRef Name) const {
assert(Traits.getCommandInfo(Name)->IsInlineCommand);
return llvm::StringSwitch<InlineCommandComment::RenderKind>(Name)
.Case("b", InlineCommandComment::RenderBold)
.Cases("c", "p", InlineCommandComment::RenderMonospaced)
.Cases("a", "e", "em", InlineCommandComment::RenderEmphasized)
.Default(InlineCommandComment::RenderNormal);
}
} // end namespace comments
} // end namespace clang