Files
qt-creator/src/plugins/cppeditor/cpptoolsreuse.cpp
Christian Kandeler d16d1718f3 ClangCodeModel: Forward to the built-in code model
... if the user tries to complete inside a comment or string.

Fixes: QTCREATORBUG-20828
Change-Id: I245e1bd16acaf696601cabe33f27210da21cc12a
Reviewed-by: David Schulz <david.schulz@qt.io>
Reviewed-by: <github-actions-qt-creator@cristianadam.eu>
2023-10-17 12:03:17 +00:00

865 lines
29 KiB
C++

// Copyright (C) 2016 The Qt Company Ltd.
// SPDX-License-Identifier: LicenseRef-Qt-Commercial OR GPL-3.0-only WITH Qt-GPL-exception-1.0
#include "cpptoolsreuse.h"
#include "clangdiagnosticconfigsmodel.h"
#include "cppautocompleter.h"
#include "cppcanonicalsymbol.h"
#include "cppcodemodelsettings.h"
#include "cppcompletionassist.h"
#include "cppeditorconstants.h"
#include "cppeditorplugin.h"
#include "cppeditorwidget.h"
#include "cppeditortr.h"
#include "cppfilesettingspage.h"
#include "cpphighlighter.h"
#include "cppqtstyleindenter.h"
#include "cppquickfixassistant.h"
#include "cpprefactoringchanges.h"
#include "projectinfo.h"
#include <coreplugin/documentmanager.h>
#include <coreplugin/editormanager/editormanager.h>
#include <coreplugin/idocument.h>
#include <coreplugin/messagemanager.h>
#include <projectexplorer/projectmanager.h>
#include <texteditor/codeassist/assistinterface.h>
#include <texteditor/textdocument.h>
#include <cplusplus/BackwardsScanner.h>
#include <cplusplus/declarationcomments.h>
#include <cplusplus/LookupContext.h>
#include <cplusplus/Overview.h>
#include <cplusplus/SimpleLexer.h>
#include <utils/algorithm.h>
#include <utils/qtcassert.h>
#include <utils/textfileformat.h>
#include <utils/textutils.h>
#include <QDebug>
#include <QElapsedTimer>
#include <QHash>
#include <QRegularExpression>
#include <QSet>
#include <QStringView>
#include <QTextCursor>
#include <QTextDocument>
#include <optional>
#include <vector>
using namespace CPlusPlus;
using namespace Utils;
namespace CppEditor {
static int skipChars(QTextCursor *tc,
QTextCursor::MoveOperation op,
int offset,
std::function<bool(const QChar &)> skip)
{
const QTextDocument *doc = tc->document();
if (!doc)
return 0;
QChar ch = doc->characterAt(tc->position() + offset);
if (ch.isNull())
return 0;
int count = 0;
while (skip(ch)) {
if (tc->movePosition(op))
++count;
else
break;
ch = doc->characterAt(tc->position() + offset);
}
return count;
}
static int skipCharsForward(QTextCursor *tc, std::function<bool(const QChar &)> skip)
{
return skipChars(tc, QTextCursor::NextCharacter, 0, skip);
}
static int skipCharsBackward(QTextCursor *tc, std::function<bool(const QChar &)> skip)
{
return skipChars(tc, QTextCursor::PreviousCharacter, -1, skip);
}
QStringList identifierWordsUnderCursor(const QTextCursor &tc)
{
const QTextDocument *document = tc.document();
if (!document)
return {};
const auto isSpace = [](const QChar &c) { return c.isSpace(); };
const auto isColon = [](const QChar &c) { return c == ':'; };
const auto isValidIdentifierCharAt = [document](const QTextCursor &tc) {
return isValidIdentifierChar(document->characterAt(tc.position()));
};
// move to the end
QTextCursor endCursor(tc);
do {
moveCursorToEndOfIdentifier(&endCursor);
// possibly skip ::
QTextCursor temp(endCursor);
skipCharsForward(&temp, isSpace);
const int colons = skipCharsForward(&temp, isColon);
skipCharsForward(&temp, isSpace);
if (colons == 2 && isValidIdentifierCharAt(temp))
endCursor = temp;
} while (isValidIdentifierCharAt(endCursor));
QStringList results;
QTextCursor startCursor(endCursor);
do {
moveCursorToStartOfIdentifier(&startCursor);
if (startCursor.position() == endCursor.position())
break;
QTextCursor temp(endCursor);
temp.setPosition(startCursor.position(), QTextCursor::KeepAnchor);
results.append(temp.selectedText().remove(QRegularExpression("\\s")));
// possibly skip ::
temp = startCursor;
skipCharsBackward(&temp, isSpace);
const int colons = skipCharsBackward(&temp, isColon);
skipCharsBackward(&temp, isSpace);
if (colons == 2
&& isValidIdentifierChar(document->characterAt(temp.position() - 1))) {
startCursor = temp;
}
} while (!isValidIdentifierCharAt(startCursor));
return results;
}
void moveCursorToEndOfIdentifier(QTextCursor *tc)
{
skipCharsForward(tc, isValidIdentifierChar);
}
void moveCursorToStartOfIdentifier(QTextCursor *tc)
{
skipCharsBackward(tc, isValidIdentifierChar);
}
static bool isOwnershipRAIIName(const QString &name)
{
static QSet<QString> knownNames;
if (knownNames.isEmpty()) {
// Qt
knownNames.insert(QLatin1String("QScopedPointer"));
knownNames.insert(QLatin1String("QScopedArrayPointer"));
knownNames.insert(QLatin1String("QMutexLocker"));
knownNames.insert(QLatin1String("QReadLocker"));
knownNames.insert(QLatin1String("QWriteLocker"));
// Standard C++
knownNames.insert(QLatin1String("auto_ptr"));
knownNames.insert(QLatin1String("unique_ptr"));
// Boost
knownNames.insert(QLatin1String("scoped_ptr"));
knownNames.insert(QLatin1String("scoped_array"));
}
return knownNames.contains(name);
}
bool isOwnershipRAIIType(Symbol *symbol, const LookupContext &context)
{
if (!symbol)
return false;
// This is not a "real" comparison of types. What we do is to resolve the symbol
// in question and then try to match its name with already known ones.
if (symbol->asDeclaration()) {
Declaration *declaration = symbol->asDeclaration();
const NamedType *namedType = declaration->type()->asNamedType();
if (namedType) {
ClassOrNamespace *clazz = context.lookupType(namedType->name(),
declaration->enclosingScope());
if (clazz && !clazz->symbols().isEmpty()) {
Overview overview;
Symbol *symbol = clazz->symbols().at(0);
return isOwnershipRAIIName(overview.prettyName(symbol->name()));
}
}
}
return false;
}
bool isValidAsciiIdentifierChar(const QChar &ch)
{
return ch.isLetterOrNumber() || ch == QLatin1Char('_');
}
bool isValidFirstIdentifierChar(const QChar &ch)
{
return ch.isLetter() || ch == QLatin1Char('_') || ch.isHighSurrogate() || ch.isLowSurrogate();
}
bool isValidIdentifierChar(const QChar &ch)
{
return isValidFirstIdentifierChar(ch) || ch.isNumber();
}
bool isValidIdentifier(const QString &s)
{
const int length = s.length();
for (int i = 0; i < length; ++i) {
const QChar &c = s.at(i);
if (i == 0) {
if (!isValidFirstIdentifierChar(c))
return false;
} else {
if (!isValidIdentifierChar(c))
return false;
}
}
return true;
}
bool isQtKeyword(QStringView text)
{
switch (text.length()) {
case 4:
switch (text.at(0).toLatin1()) {
case 'e':
if (text == QLatin1String("emit"))
return true;
break;
case 'S':
if (text == QLatin1String("SLOT"))
return true;
break;
}
break;
case 5:
if (text.at(0) == QLatin1Char('s') && text == QLatin1String("slots"))
return true;
break;
case 6:
if (text.at(0) == QLatin1Char('S') && text == QLatin1String("SIGNAL"))
return true;
break;
case 7:
switch (text.at(0).toLatin1()) {
case 's':
if (text == QLatin1String("signals"))
return true;
break;
case 'f':
if (text == QLatin1String("foreach") || text == QLatin1String("forever"))
return true;
break;
}
break;
default:
break;
}
return false;
}
QString identifierUnderCursor(QTextCursor *cursor)
{
cursor->movePosition(QTextCursor::StartOfWord);
cursor->movePosition(QTextCursor::EndOfWord, QTextCursor::KeepAnchor);
return cursor->selectedText();
}
const Macro *findCanonicalMacro(const QTextCursor &cursor, Document::Ptr document)
{
QTC_ASSERT(document, return nullptr);
if (const Macro *macro = document->findMacroDefinitionAt(cursor.blockNumber() + 1)) {
QTextCursor macroCursor = cursor;
const QByteArray name = identifierUnderCursor(&macroCursor).toUtf8();
if (macro->name() == name)
return macro;
} else if (const Document::MacroUse *use = document->findMacroUseAt(cursor.position())) {
return &use->macro();
}
return nullptr;
}
bool isInCommentOrString(const TextEditor::AssistInterface *interface,
CPlusPlus::LanguageFeatures features)
{
QTextCursor tc(interface->textDocument());
tc.setPosition(interface->position());
return isInCommentOrString(tc, features);
}
bool isInCommentOrString(const QTextCursor &cursor, CPlusPlus::LanguageFeatures features)
{
SimpleLexer tokenize;
features.qtMocRunEnabled = true;
tokenize.setLanguageFeatures(features);
tokenize.setSkipComments(false);
const Tokens &tokens = tokenize(cursor.block().text(),
BackwardsScanner::previousBlockState(cursor.block()));
const int tokenIdx = SimpleLexer::tokenBefore(tokens, qMax(0, cursor.positionInBlock() - 1));
const Token tk = (tokenIdx == -1) ? Token() : tokens.at(tokenIdx);
if (tk.isComment())
return true;
if (!tk.isStringLiteral())
return false;
if (tokens.size() == 3 && tokens.at(0).kind() == T_POUND
&& tokens.at(1).kind() == T_IDENTIFIER) {
const QString &line = cursor.block().text();
const Token &idToken = tokens.at(1);
QStringView identifier = QStringView(line).mid(idToken.utf16charsBegin(),
idToken.utf16chars());
if (identifier == QLatin1String("include")
|| identifier == QLatin1String("include_next")
|| (features.objCEnabled && identifier == QLatin1String("import"))) {
return false;
}
}
return true;
}
TextEditor::QuickFixOperations quickFixOperations(const TextEditor::AssistInterface *interface)
{
return Internal::quickFixOperations(interface);
}
CppCompletionAssistProcessor *getCppCompletionAssistProcessor()
{
return new Internal::InternalCppCompletionAssistProcessor();
}
CppCodeModelSettings *codeModelSettings()
{
return Internal::CppEditorPlugin::instance()->codeModelSettings();
}
int indexerFileSizeLimitInMb()
{
const CppCodeModelSettings *settings = codeModelSettings();
QTC_ASSERT(settings, return -1);
if (settings->skipIndexingBigFiles())
return settings->indexerFileSizeLimitInMb();
return -1;
}
bool fileSizeExceedsLimit(const FilePath &filePath, int sizeLimitInMb)
{
if (sizeLimitInMb <= 0)
return false;
const qint64 fileSizeInMB = filePath.fileSize() / (1000 * 1000);
if (fileSizeInMB > sizeLimitInMb) {
const QString msg = Tr::tr("C++ Indexer: Skipping file \"%1\" because it is too big.")
.arg(filePath.displayName());
QMetaObject::invokeMethod(Core::MessageManager::instance(),
[msg]() { Core::MessageManager::writeSilently(msg); });
return true;
}
return false;
}
UsePrecompiledHeaders getPchUsage()
{
const CppCodeModelSettings *cms = codeModelSettings();
if (cms->pchUsage() == CppCodeModelSettings::PchUse_None)
return UsePrecompiledHeaders::No;
return UsePrecompiledHeaders::Yes;
}
static void addBuiltinConfigs(ClangDiagnosticConfigsModel &model)
{
ClangDiagnosticConfig config;
// Questionable constructs
config = ClangDiagnosticConfig();
config.setId(Constants::CPP_CLANG_DIAG_CONFIG_QUESTIONABLE);
config.setDisplayName(Tr::tr("Checks for questionable constructs"));
config.setIsReadOnly(true);
config.setClangOptions({
"-Wall",
"-Wextra",
});
config.setClazyMode(ClangDiagnosticConfig::ClazyMode::UseCustomChecks);
config.setClangTidyMode(ClangDiagnosticConfig::TidyMode::UseCustomChecks);
model.appendOrUpdate(config);
// Warning flags from build system
config = ClangDiagnosticConfig();
config.setId(Constants::CPP_CLANG_DIAG_CONFIG_BUILDSYSTEM);
config.setDisplayName(Tr::tr("Build-system warnings"));
config.setIsReadOnly(true);
config.setClazyMode(ClangDiagnosticConfig::ClazyMode::UseCustomChecks);
config.setClangTidyMode(ClangDiagnosticConfig::TidyMode::UseCustomChecks);
config.setUseBuildSystemWarnings(true);
model.appendOrUpdate(config);
}
ClangDiagnosticConfigsModel diagnosticConfigsModel(const ClangDiagnosticConfigs &customConfigs)
{
ClangDiagnosticConfigsModel model;
addBuiltinConfigs(model);
for (const ClangDiagnosticConfig &config : customConfigs)
model.appendOrUpdate(config);
return model;
}
ClangDiagnosticConfigsModel diagnosticConfigsModel()
{
return diagnosticConfigsModel(ClangdSettings::instance().customDiagnosticConfigs());
}
NSVisitor::NSVisitor(const CppRefactoringFile *file, const QStringList &namespaces, int symbolPos)
: ASTVisitor(file->cppDocument()->translationUnit()),
m_file(file),
m_remainingNamespaces(namespaces),
m_symbolPos(symbolPos)
{}
bool NSVisitor::preVisit(AST *ast)
{
if (!m_firstToken)
m_firstToken = ast;
if (m_file->startOf(ast) >= m_symbolPos)
m_done = true;
return !m_done;
}
bool NSVisitor::visit(NamespaceAST *ns)
{
if (!m_firstNamespace)
m_firstNamespace = ns;
if (m_remainingNamespaces.isEmpty()) {
m_done = true;
return false;
}
QString name;
const Identifier * const id = translationUnit()->identifier(ns->identifier_token);
if (id)
name = QString::fromUtf8(id->chars(), id->size());
if (name != m_remainingNamespaces.first())
return false;
if (!ns->linkage_body) {
m_done = true;
return false;
}
m_enclosingNamespace = ns;
m_remainingNamespaces.removeFirst();
return !m_remainingNamespaces.isEmpty();
}
void NSVisitor::postVisit(AST *ast)
{
if (ast == m_enclosingNamespace)
m_done = true;
}
/**
* @brief The NSCheckerVisitor class checks which namespaces are missing for a given list
* of enclosing namespaces at a given position
*/
NSCheckerVisitor::NSCheckerVisitor(const CppRefactoringFile *file, const QStringList &namespaces,
int symbolPos)
: ASTVisitor(file->cppDocument()->translationUnit())
, m_file(file)
, m_remainingNamespaces(namespaces)
, m_symbolPos(symbolPos)
{}
bool NSCheckerVisitor::preVisit(AST *ast)
{
if (m_file->startOf(ast) >= m_symbolPos)
m_done = true;
return !m_done;
}
void NSCheckerVisitor::postVisit(AST *ast)
{
if (!m_done && m_file->endOf(ast) > m_symbolPos)
m_done = true;
}
bool NSCheckerVisitor::visit(NamespaceAST *ns)
{
if (m_remainingNamespaces.isEmpty())
return false;
QString name = getName(ns);
if (name != m_remainingNamespaces.first())
return false;
m_enteredNamespaces.push_back(ns);
m_remainingNamespaces.removeFirst();
// if we reached the searched namespace we don't have to search deeper
return !m_remainingNamespaces.isEmpty();
}
bool NSCheckerVisitor::visit(UsingDirectiveAST *usingNS)
{
// example: we search foo::bar and get 'using namespace foo;using namespace foo::bar;'
const QString fullName = Overview{}.prettyName(usingNS->name->name);
const QStringList namespaces = fullName.split("::");
if (namespaces.length() > m_remainingNamespaces.length())
return false;
// from other using namespace statements
const auto curList = m_usingsPerNamespace.find(currentNamespace());
const bool isCurListValid = curList != m_usingsPerNamespace.end();
const bool startEqual = std::equal(namespaces.cbegin(),
namespaces.cend(),
m_remainingNamespaces.cbegin());
if (startEqual) {
if (isCurListValid) {
if (namespaces.length() > curList->second.length()) {
// eg. we already have 'using namespace foo;' and
// now get 'using namespace foo::bar;'
curList->second = namespaces;
}
// the other case: first 'using namespace foo::bar;' and now 'using namespace foo;'
} else
m_usingsPerNamespace.emplace(currentNamespace(), namespaces);
} else if (isCurListValid) {
// ex: we have already 'using namespace foo;' and get 'using namespace bar;' now
QStringList newlist = curList->second;
newlist.append(namespaces);
if (newlist.length() <= m_remainingNamespaces.length()) {
const bool startEqual = std::equal(newlist.cbegin(),
newlist.cend(),
m_remainingNamespaces.cbegin());
if (startEqual)
curList->second.append(namespaces);
}
}
return false;
}
void NSCheckerVisitor::endVisit(NamespaceAST *ns)
{
// if the symbolPos was in the namespace and the
// namespace has no children, m_done should be true
postVisit(ns);
if (!m_done && currentNamespace() == ns) {
// we were not succesfull in this namespace, so undo all changes
m_remainingNamespaces.push_front(getName(currentNamespace()));
m_usingsPerNamespace.erase(currentNamespace());
m_enteredNamespaces.pop_back();
}
}
void NSCheckerVisitor::endVisit(TranslationUnitAST *)
{
// the last node, create the final result
// we must handle like the following: We search for foo::bar and have:
// using namespace foo::bar;
// namespace foo {
// // cursor/symbolPos here
// }
if (m_remainingNamespaces.empty()) {
// we are already finished
return;
}
// find the longest combination of normal namespaces + using statements
int longestNamespaceList = 0;
int enteredNamespaceCount = 0;
// check 'using namespace ...;' statements in the global scope
const auto namespaces = m_usingsPerNamespace.find(nullptr);
if (namespaces != m_usingsPerNamespace.end())
longestNamespaceList = namespaces->second.length();
for (auto ns : m_enteredNamespaces) {
++enteredNamespaceCount;
const auto namespaces = m_usingsPerNamespace.find(ns);
int newListLength = enteredNamespaceCount;
if (namespaces != m_usingsPerNamespace.end())
newListLength += namespaces->second.length();
longestNamespaceList = std::max(newListLength, longestNamespaceList);
}
m_remainingNamespaces.erase(m_remainingNamespaces.begin(),
m_remainingNamespaces.begin() + longestNamespaceList
- m_enteredNamespaces.size());
}
QString NSCheckerVisitor::getName(NamespaceAST *ns)
{
const Identifier *const id = translationUnit()->identifier(ns->identifier_token);
if (id)
return QString::fromUtf8(id->chars(), id->size());
return {};
}
NamespaceAST *NSCheckerVisitor::currentNamespace()
{
return m_enteredNamespaces.empty() ? nullptr : m_enteredNamespaces.back();
}
ProjectExplorer::Project *projectForProjectPart(const ProjectPart &part)
{
return ProjectExplorer::ProjectManager::projectWithProjectFilePath(part.topLevelProject);
}
ProjectExplorer::Project *projectForProjectInfo(const ProjectInfo &info)
{
return ProjectExplorer::ProjectManager::projectWithProjectFilePath(info.projectFilePath());
}
void openEditor(const Utils::FilePath &filePath, bool inNextSplit, Utils::Id editorId)
{
using Core::EditorManager;
EditorManager::openEditor(filePath, editorId, inNextSplit ? EditorManager::OpenInOtherSplit
: EditorManager::NoFlags);
}
bool preferLowerCaseFileNames(ProjectExplorer::Project *project)
{
return Internal::CppEditorPlugin::fileSettings(project).lowerCaseFiles;
}
QString preferredCxxHeaderSuffix(ProjectExplorer::Project *project)
{
return Internal::CppEditorPlugin::fileSettings(project).headerSuffix;
}
QString preferredCxxSourceSuffix(ProjectExplorer::Project *project)
{
return Internal::CppEditorPlugin::fileSettings(project).sourceSuffix;
}
SearchResultItems symbolOccurrencesInDeclarationComments(
const Utils::SearchResultItems &symbolOccurrencesInCode)
{
if (symbolOccurrencesInCode.isEmpty())
return {};
// When using clangd, this function gets called every time the replacement string changes,
// so cache the results.
static QHash<SearchResultItems, SearchResultItems> resultCache;
if (const auto it = resultCache.constFind(symbolOccurrencesInCode);
it != resultCache.constEnd()) {
return it.value();
}
if (resultCache.size() > 5)
resultCache.clear();
QElapsedTimer timer;
timer.start();
Snapshot snapshot = CppModelManager::snapshot();
std::vector<std::unique_ptr<QTextDocument>> docPool;
using FileData = std::tuple<QTextDocument *, QString, Document::Ptr, QList<Token>>;
QHash<FilePath, FileData> dataPerFile;
QString symbolName;
const auto fileData = [&](const FilePath &filePath) -> FileData & {
auto &data = dataPerFile[filePath];
auto &[doc, content, cppDoc, allCommentTokens] = data;
if (!doc) {
if (TextEditor::TextDocument * const textDoc
= TextEditor::TextDocument::textDocumentForFilePath(filePath)) {
doc = textDoc->document();
} else {
std::unique_ptr<QTextDocument> newDoc = std::make_unique<QTextDocument>();
if (const auto content = TextFileFormat::readFile(
filePath, Core::EditorManager::defaultTextCodec())) {
newDoc->setPlainText(content.value());
}
doc = newDoc.get();
docPool.push_back(std::move(newDoc));
}
content = doc->toPlainText();
cppDoc = snapshot.preprocessedDocument(content.toUtf8(), filePath);
cppDoc->check();
}
return data;
};
static const auto addToken = [](QList<Token> &tokens, const Token &tok) {
if (!Utils::contains(tokens, [&tok](const Token &t) {
return t.byteOffset == tok.byteOffset; })) {
tokens << tok;
}
};
struct ClassInfo {
FilePath filePath;
int startOffset = -1;
int endOffset = -1;
};
std::optional<ClassInfo> classInfo;
// Collect comment blocks associated with replace locations.
for (const SearchResultItem &item : symbolOccurrencesInCode) {
const FilePath filePath = FilePath::fromUserInput(item.path().last());
auto &[doc, content, cppDoc, allCommentTokens] = fileData(filePath);
const Text::Range &range = item.mainRange();
if (symbolName.isEmpty()) {
const int symbolStartPos = Utils::Text::positionInText(doc, range.begin.line,
range.begin.column + 1);
const int symbolEndPos = Utils::Text::positionInText(doc, range.end.line,
range.end.column + 1);
symbolName = content.mid(symbolStartPos, symbolEndPos - symbolStartPos);
}
const QList<Token> commentTokens = commentsForDeclaration(symbolName, range.begin,
*doc, cppDoc);
for (const Token &tok : commentTokens)
addToken(allCommentTokens, tok);
if (!classInfo) {
QTextCursor cursor(doc);
cursor.setPosition(Text::positionInText(doc, range.begin.line, range.begin.column + 1));
Internal::CanonicalSymbol cs(cppDoc, snapshot);
Symbol * const canonicalSymbol = cs(cursor);
if (canonicalSymbol) {
classInfo.emplace();
if (Class * const klass = canonicalSymbol->asClass()) {
classInfo->filePath = canonicalSymbol->filePath();
classInfo->startOffset = klass->startOffset();
classInfo->endOffset = klass->endOffset();
}
}
}
// We hook in between the end of the "regular" search and (possibly non-interactive)
// actions on it, so we must run synchronously in the UI thread and therefore be fast.
// If we notice we are lagging, just abort, as renaming the comments is not
// required for code correctness.
if (timer.elapsed() > 1000) {
resultCache.insert(symbolOccurrencesInCode, {});
return {};
}
}
// If the symbol is a class, collect all comment blocks in the class body.
if (classInfo && !classInfo->filePath.isEmpty()) {
auto &[_1, _2, symbolCppDoc, commentTokens] = fileData(classInfo->filePath);
TranslationUnit * const tu = symbolCppDoc->translationUnit();
for (int i = 0; i < tu->commentCount(); ++i) {
const Token &tok = tu->commentAt(i);
if (tok.bytesBegin() < classInfo->startOffset)
continue;
if (tok.bytesBegin() >= classInfo->endOffset)
break;
addToken(commentTokens, tok);
}
}
// Create new replace items for occurrences of the symbol name in collected comment blocks.
SearchResultItems commentItems;
for (auto it = dataPerFile.cbegin(); it != dataPerFile.cend(); ++it) {
const auto &[doc, content, cppDoc, commentTokens] = it.value();
const QStringView docView(content);
for (const Token &tok : commentTokens) {
const int tokenStartPos = cppDoc->translationUnit()->getTokenPositionInDocument(
tok, doc);
const int tokenEndPos = cppDoc->translationUnit()->getTokenEndPositionInDocument(
tok, doc);
const QStringView tokenView = docView.mid(tokenStartPos, tokenEndPos - tokenStartPos);
const QList<Text::Range> ranges = symbolOccurrencesInText(
*doc, tokenView, tokenStartPos, symbolName);
for (const Text::Range &range : ranges) {
SearchResultItem item;
item.setUseTextEditorFont(true);
item.setFilePath(it.key());
item.setMainRange(range);
item.setLineText(doc->findBlockByNumber(range.begin.line - 1).text());
commentItems << item;
}
}
}
resultCache.insert(symbolOccurrencesInCode, commentItems);
return commentItems;
}
QList<Text::Range> symbolOccurrencesInText(const QTextDocument &doc, QStringView text, int offset,
const QString &symbolName)
{
QList<Text::Range> ranges;
int index = 0;
while (true) {
index = text.indexOf(symbolName, index);
if (index == -1)
break;
// Prevent substring matching.
const auto checkAdjacent = [&](int i) {
if (i == -1 || i == text.size())
return true;
const QChar c = text.at(i);
if (c.isLetterOrNumber() || c == '_') {
index += symbolName.length();
return false;
}
return true;
};
if (!checkAdjacent(index - 1))
continue;
if (!checkAdjacent(index + symbolName.length()))
continue;
const Text::Position startPos = Text::Position::fromPositionInDocument(&doc, offset + index);
index += symbolName.length();
const Text::Position endPos = Text::Position::fromPositionInDocument(&doc, offset + index);
ranges << Text::Range{startPos, endPos};
}
return ranges;
}
QList<Text::Range> symbolOccurrencesInDeclarationComments(CppEditorWidget *editorWidget,
const QTextCursor &cursor)
{
if (!editorWidget)
return {};
const SemanticInfo &semanticInfo = editorWidget->semanticInfo();
const Document::Ptr &cppDoc = semanticInfo.doc;
if (!cppDoc)
return {};
Internal::CanonicalSymbol cs(cppDoc, semanticInfo.snapshot);
const Symbol * const symbol = cs(cursor);
if (!symbol || !symbol->asArgument())
return {};
const QTextDocument * const textDoc = editorWidget->textDocument()->document();
QTC_ASSERT(textDoc, return {});
const QList<Token> comments = commentsForDeclaration(symbol, *textDoc, cppDoc);
if (comments.isEmpty())
return {};
QList<Text::Range> ranges;
const QString &content = textDoc->toPlainText();
const QStringView docView = QStringView(content);
const QString symbolName = Overview().prettyName(symbol->name());
for (const Token &tok : comments) {
const int tokenStartPos = cppDoc->translationUnit()->getTokenPositionInDocument(
tok, textDoc);
const int tokenEndPos = cppDoc->translationUnit()->getTokenEndPositionInDocument(
tok, textDoc);
const QStringView tokenView = docView.mid(tokenStartPos, tokenEndPos - tokenStartPos);
ranges << symbolOccurrencesInText(*textDoc, tokenView, tokenStartPos, symbolName);
}
return ranges;
}
namespace Internal {
void decorateCppEditor(TextEditor::TextEditorWidget *editor)
{
editor->textDocument()->setSyntaxHighlighter(new CppHighlighter);
editor->textDocument()->setIndenter(
new CppQtStyleIndenter(editor->textDocument()->document()));
editor->setAutoCompleter(new CppAutoCompleter);
}
} // namespace Internal
} // CppEditor