miqt/qt-restricted-extras/qscintilla/gen_qscilexeridl.cpp
2025-02-01 13:45:22 +13:00

1939 lines
58 KiB
C++

#include <QChildEvent>
#include <QColor>
#include <QEvent>
#include <QFont>
#include <QList>
#include <QMetaMethod>
#include <QMetaObject>
#include <QObject>
#include <QSettings>
#include <QString>
#include <QByteArray>
#include <cstring>
#include <QTimerEvent>
#include <qscilexeridl.h>
#include "gen_qscilexeridl.h"
#ifdef __cplusplus
extern "C" {
#endif
void miqt_exec_callback_QsciLexerIDL_setFoldAtElse(QsciLexerIDL*, intptr_t, bool);
void miqt_exec_callback_QsciLexerIDL_setFoldComments(QsciLexerIDL*, intptr_t, bool);
void miqt_exec_callback_QsciLexerIDL_setFoldCompact(QsciLexerIDL*, intptr_t, bool);
void miqt_exec_callback_QsciLexerIDL_setFoldPreprocessor(QsciLexerIDL*, intptr_t, bool);
void miqt_exec_callback_QsciLexerIDL_setStylePreprocessor(QsciLexerIDL*, intptr_t, bool);
const char* miqt_exec_callback_QsciLexerIDL_language(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_lexer(const QsciLexerIDL*, intptr_t);
int miqt_exec_callback_QsciLexerIDL_lexerId(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_autoCompletionFillups(const QsciLexerIDL*, intptr_t);
struct miqt_array /* of struct miqt_string */ miqt_exec_callback_QsciLexerIDL_autoCompletionWordSeparators(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_blockEnd(const QsciLexerIDL*, intptr_t, int*);
int miqt_exec_callback_QsciLexerIDL_blockLookback(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_blockStart(const QsciLexerIDL*, intptr_t, int*);
const char* miqt_exec_callback_QsciLexerIDL_blockStartKeyword(const QsciLexerIDL*, intptr_t, int*);
int miqt_exec_callback_QsciLexerIDL_braceStyle(const QsciLexerIDL*, intptr_t);
bool miqt_exec_callback_QsciLexerIDL_caseSensitive(const QsciLexerIDL*, intptr_t);
QColor* miqt_exec_callback_QsciLexerIDL_color(const QsciLexerIDL*, intptr_t, int);
bool miqt_exec_callback_QsciLexerIDL_eolFill(const QsciLexerIDL*, intptr_t, int);
QFont* miqt_exec_callback_QsciLexerIDL_font(const QsciLexerIDL*, intptr_t, int);
int miqt_exec_callback_QsciLexerIDL_indentationGuideView(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_keywords(const QsciLexerIDL*, intptr_t, int);
int miqt_exec_callback_QsciLexerIDL_defaultStyle(const QsciLexerIDL*, intptr_t);
struct miqt_string miqt_exec_callback_QsciLexerIDL_description(const QsciLexerIDL*, intptr_t, int);
QColor* miqt_exec_callback_QsciLexerIDL_paper(const QsciLexerIDL*, intptr_t, int);
QColor* miqt_exec_callback_QsciLexerIDL_defaultColorWithStyle(const QsciLexerIDL*, intptr_t, int);
bool miqt_exec_callback_QsciLexerIDL_defaultEolFill(const QsciLexerIDL*, intptr_t, int);
QFont* miqt_exec_callback_QsciLexerIDL_defaultFontWithStyle(const QsciLexerIDL*, intptr_t, int);
QColor* miqt_exec_callback_QsciLexerIDL_defaultPaperWithStyle(const QsciLexerIDL*, intptr_t, int);
void miqt_exec_callback_QsciLexerIDL_setEditor(QsciLexerIDL*, intptr_t, QsciScintilla*);
void miqt_exec_callback_QsciLexerIDL_refreshProperties(QsciLexerIDL*, intptr_t);
int miqt_exec_callback_QsciLexerIDL_styleBitsNeeded(const QsciLexerIDL*, intptr_t);
const char* miqt_exec_callback_QsciLexerIDL_wordCharacters(const QsciLexerIDL*, intptr_t);
void miqt_exec_callback_QsciLexerIDL_setAutoIndentStyle(QsciLexerIDL*, intptr_t, int);
void miqt_exec_callback_QsciLexerIDL_setColor(QsciLexerIDL*, intptr_t, QColor*, int);
void miqt_exec_callback_QsciLexerIDL_setEolFill(QsciLexerIDL*, intptr_t, bool, int);
void miqt_exec_callback_QsciLexerIDL_setFont(QsciLexerIDL*, intptr_t, QFont*, int);
void miqt_exec_callback_QsciLexerIDL_setPaper(QsciLexerIDL*, intptr_t, QColor*, int);
bool miqt_exec_callback_QsciLexerIDL_readProperties(QsciLexerIDL*, intptr_t, QSettings*, struct miqt_string);
bool miqt_exec_callback_QsciLexerIDL_writeProperties(const QsciLexerIDL*, intptr_t, QSettings*, struct miqt_string);
bool miqt_exec_callback_QsciLexerIDL_event(QsciLexerIDL*, intptr_t, QEvent*);
bool miqt_exec_callback_QsciLexerIDL_eventFilter(QsciLexerIDL*, intptr_t, QObject*, QEvent*);
void miqt_exec_callback_QsciLexerIDL_timerEvent(QsciLexerIDL*, intptr_t, QTimerEvent*);
void miqt_exec_callback_QsciLexerIDL_childEvent(QsciLexerIDL*, intptr_t, QChildEvent*);
void miqt_exec_callback_QsciLexerIDL_customEvent(QsciLexerIDL*, intptr_t, QEvent*);
void miqt_exec_callback_QsciLexerIDL_connectNotify(QsciLexerIDL*, intptr_t, QMetaMethod*);
void miqt_exec_callback_QsciLexerIDL_disconnectNotify(QsciLexerIDL*, intptr_t, QMetaMethod*);
#ifdef __cplusplus
} /* extern C */
#endif
class MiqtVirtualQsciLexerIDL final : public QsciLexerIDL {
public:
MiqtVirtualQsciLexerIDL(): QsciLexerIDL() {};
MiqtVirtualQsciLexerIDL(QObject* parent): QsciLexerIDL(parent) {};
virtual ~MiqtVirtualQsciLexerIDL() override = default;
// cgo.Handle value for overwritten implementation
intptr_t handle__setFoldAtElse = 0;
// Subclass to allow providing a Go implementation
virtual void setFoldAtElse(bool fold) override {
if (handle__setFoldAtElse == 0) {
QsciLexerIDL::setFoldAtElse(fold);
return;
}
bool sigval1 = fold;
miqt_exec_callback_QsciLexerIDL_setFoldAtElse(this, handle__setFoldAtElse, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setFoldAtElse(bool fold) {
QsciLexerIDL::setFoldAtElse(fold);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setFoldComments = 0;
// Subclass to allow providing a Go implementation
virtual void setFoldComments(bool fold) override {
if (handle__setFoldComments == 0) {
QsciLexerIDL::setFoldComments(fold);
return;
}
bool sigval1 = fold;
miqt_exec_callback_QsciLexerIDL_setFoldComments(this, handle__setFoldComments, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setFoldComments(bool fold) {
QsciLexerIDL::setFoldComments(fold);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setFoldCompact = 0;
// Subclass to allow providing a Go implementation
virtual void setFoldCompact(bool fold) override {
if (handle__setFoldCompact == 0) {
QsciLexerIDL::setFoldCompact(fold);
return;
}
bool sigval1 = fold;
miqt_exec_callback_QsciLexerIDL_setFoldCompact(this, handle__setFoldCompact, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setFoldCompact(bool fold) {
QsciLexerIDL::setFoldCompact(fold);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setFoldPreprocessor = 0;
// Subclass to allow providing a Go implementation
virtual void setFoldPreprocessor(bool fold) override {
if (handle__setFoldPreprocessor == 0) {
QsciLexerIDL::setFoldPreprocessor(fold);
return;
}
bool sigval1 = fold;
miqt_exec_callback_QsciLexerIDL_setFoldPreprocessor(this, handle__setFoldPreprocessor, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setFoldPreprocessor(bool fold) {
QsciLexerIDL::setFoldPreprocessor(fold);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setStylePreprocessor = 0;
// Subclass to allow providing a Go implementation
virtual void setStylePreprocessor(bool style) override {
if (handle__setStylePreprocessor == 0) {
QsciLexerIDL::setStylePreprocessor(style);
return;
}
bool sigval1 = style;
miqt_exec_callback_QsciLexerIDL_setStylePreprocessor(this, handle__setStylePreprocessor, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setStylePreprocessor(bool style) {
QsciLexerIDL::setStylePreprocessor(style);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__language = 0;
// Subclass to allow providing a Go implementation
virtual const char* language() const override {
if (handle__language == 0) {
return nullptr; // Pure virtual, there is no base we can call
}
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_language(this, handle__language);
return callback_return_value;
}
// cgo.Handle value for overwritten implementation
intptr_t handle__lexer = 0;
// Subclass to allow providing a Go implementation
virtual const char* lexer() const override {
if (handle__lexer == 0) {
return QsciLexerIDL::lexer();
}
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_lexer(this, handle__lexer);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_lexer() const {
return (const char*) QsciLexerIDL::lexer();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__lexerId = 0;
// Subclass to allow providing a Go implementation
virtual int lexerId() const override {
if (handle__lexerId == 0) {
return QsciLexerIDL::lexerId();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_lexerId(this, handle__lexerId);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_lexerId() const {
return QsciLexerIDL::lexerId();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__autoCompletionFillups = 0;
// Subclass to allow providing a Go implementation
virtual const char* autoCompletionFillups() const override {
if (handle__autoCompletionFillups == 0) {
return QsciLexerIDL::autoCompletionFillups();
}
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_autoCompletionFillups(this, handle__autoCompletionFillups);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_autoCompletionFillups() const {
return (const char*) QsciLexerIDL::autoCompletionFillups();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__autoCompletionWordSeparators = 0;
// Subclass to allow providing a Go implementation
virtual QStringList autoCompletionWordSeparators() const override {
if (handle__autoCompletionWordSeparators == 0) {
return QsciLexerIDL::autoCompletionWordSeparators();
}
struct miqt_array /* of struct miqt_string */ callback_return_value = miqt_exec_callback_QsciLexerIDL_autoCompletionWordSeparators(this, handle__autoCompletionWordSeparators);
QStringList callback_return_value_QList;
callback_return_value_QList.reserve(callback_return_value.len);
struct miqt_string* callback_return_value_arr = static_cast<struct miqt_string*>(callback_return_value.data);
for(size_t i = 0; i < callback_return_value.len; ++i) {
QString callback_return_value_arr_i_QString = QString::fromUtf8(callback_return_value_arr[i].data, callback_return_value_arr[i].len);
callback_return_value_QList.push_back(callback_return_value_arr_i_QString);
}
return callback_return_value_QList;
}
// Wrapper to allow calling protected method
struct miqt_array /* of struct miqt_string */ virtualbase_autoCompletionWordSeparators() const {
QStringList _ret = QsciLexerIDL::autoCompletionWordSeparators();
// Convert QList<> from C++ memory to manually-managed C memory
struct miqt_string* _arr = static_cast<struct miqt_string*>(malloc(sizeof(struct miqt_string) * _ret.length()));
for (size_t i = 0, e = _ret.length(); i < e; ++i) {
QString _lv_ret = _ret[i];
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _lv_b = _lv_ret.toUtf8();
struct miqt_string _lv_ms;
_lv_ms.len = _lv_b.length();
_lv_ms.data = static_cast<char*>(malloc(_lv_ms.len));
memcpy(_lv_ms.data, _lv_b.data(), _lv_ms.len);
_arr[i] = _lv_ms;
}
struct miqt_array _out;
_out.len = _ret.length();
_out.data = static_cast<void*>(_arr);
return _out;
}
// cgo.Handle value for overwritten implementation
intptr_t handle__blockEnd = 0;
// Subclass to allow providing a Go implementation
virtual const char* blockEnd(int* style) const override {
if (handle__blockEnd == 0) {
return QsciLexerIDL::blockEnd(style);
}
int* sigval1 = style;
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_blockEnd(this, handle__blockEnd, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_blockEnd(int* style) const {
return (const char*) QsciLexerIDL::blockEnd(static_cast<int*>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__blockLookback = 0;
// Subclass to allow providing a Go implementation
virtual int blockLookback() const override {
if (handle__blockLookback == 0) {
return QsciLexerIDL::blockLookback();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_blockLookback(this, handle__blockLookback);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_blockLookback() const {
return QsciLexerIDL::blockLookback();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__blockStart = 0;
// Subclass to allow providing a Go implementation
virtual const char* blockStart(int* style) const override {
if (handle__blockStart == 0) {
return QsciLexerIDL::blockStart(style);
}
int* sigval1 = style;
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_blockStart(this, handle__blockStart, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_blockStart(int* style) const {
return (const char*) QsciLexerIDL::blockStart(static_cast<int*>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__blockStartKeyword = 0;
// Subclass to allow providing a Go implementation
virtual const char* blockStartKeyword(int* style) const override {
if (handle__blockStartKeyword == 0) {
return QsciLexerIDL::blockStartKeyword(style);
}
int* sigval1 = style;
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_blockStartKeyword(this, handle__blockStartKeyword, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_blockStartKeyword(int* style) const {
return (const char*) QsciLexerIDL::blockStartKeyword(static_cast<int*>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__braceStyle = 0;
// Subclass to allow providing a Go implementation
virtual int braceStyle() const override {
if (handle__braceStyle == 0) {
return QsciLexerIDL::braceStyle();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_braceStyle(this, handle__braceStyle);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_braceStyle() const {
return QsciLexerIDL::braceStyle();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__caseSensitive = 0;
// Subclass to allow providing a Go implementation
virtual bool caseSensitive() const override {
if (handle__caseSensitive == 0) {
return QsciLexerIDL::caseSensitive();
}
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_caseSensitive(this, handle__caseSensitive);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_caseSensitive() const {
return QsciLexerIDL::caseSensitive();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__color = 0;
// Subclass to allow providing a Go implementation
virtual QColor color(int style) const override {
if (handle__color == 0) {
return QsciLexerIDL::color(style);
}
int sigval1 = style;
QColor* callback_return_value = miqt_exec_callback_QsciLexerIDL_color(this, handle__color, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QColor* virtualbase_color(int style) const {
return new QColor(QsciLexerIDL::color(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__eolFill = 0;
// Subclass to allow providing a Go implementation
virtual bool eolFill(int style) const override {
if (handle__eolFill == 0) {
return QsciLexerIDL::eolFill(style);
}
int sigval1 = style;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_eolFill(this, handle__eolFill, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_eolFill(int style) const {
return QsciLexerIDL::eolFill(static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__font = 0;
// Subclass to allow providing a Go implementation
virtual QFont font(int style) const override {
if (handle__font == 0) {
return QsciLexerIDL::font(style);
}
int sigval1 = style;
QFont* callback_return_value = miqt_exec_callback_QsciLexerIDL_font(this, handle__font, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QFont* virtualbase_font(int style) const {
return new QFont(QsciLexerIDL::font(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__indentationGuideView = 0;
// Subclass to allow providing a Go implementation
virtual int indentationGuideView() const override {
if (handle__indentationGuideView == 0) {
return QsciLexerIDL::indentationGuideView();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_indentationGuideView(this, handle__indentationGuideView);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_indentationGuideView() const {
return QsciLexerIDL::indentationGuideView();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__keywords = 0;
// Subclass to allow providing a Go implementation
virtual const char* keywords(int set) const override {
if (handle__keywords == 0) {
return QsciLexerIDL::keywords(set);
}
int sigval1 = set;
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_keywords(this, handle__keywords, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_keywords(int set) const {
return (const char*) QsciLexerIDL::keywords(static_cast<int>(set));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__defaultStyle = 0;
// Subclass to allow providing a Go implementation
virtual int defaultStyle() const override {
if (handle__defaultStyle == 0) {
return QsciLexerIDL::defaultStyle();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_defaultStyle(this, handle__defaultStyle);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_defaultStyle() const {
return QsciLexerIDL::defaultStyle();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__description = 0;
// Subclass to allow providing a Go implementation
virtual QString description(int style) const override {
if (handle__description == 0) {
return QString(); // Pure virtual, there is no base we can call
}
int sigval1 = style;
struct miqt_string callback_return_value = miqt_exec_callback_QsciLexerIDL_description(this, handle__description, sigval1);
QString callback_return_value_QString = QString::fromUtf8(callback_return_value.data, callback_return_value.len);
return callback_return_value_QString;
}
// cgo.Handle value for overwritten implementation
intptr_t handle__paper = 0;
// Subclass to allow providing a Go implementation
virtual QColor paper(int style) const override {
if (handle__paper == 0) {
return QsciLexerIDL::paper(style);
}
int sigval1 = style;
QColor* callback_return_value = miqt_exec_callback_QsciLexerIDL_paper(this, handle__paper, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QColor* virtualbase_paper(int style) const {
return new QColor(QsciLexerIDL::paper(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__defaultColorWithStyle = 0;
// Subclass to allow providing a Go implementation
virtual QColor defaultColor(int style) const override {
if (handle__defaultColorWithStyle == 0) {
return QsciLexerIDL::defaultColor(style);
}
int sigval1 = style;
QColor* callback_return_value = miqt_exec_callback_QsciLexerIDL_defaultColorWithStyle(this, handle__defaultColorWithStyle, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QColor* virtualbase_defaultColorWithStyle(int style) const {
return new QColor(QsciLexerIDL::defaultColor(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__defaultEolFill = 0;
// Subclass to allow providing a Go implementation
virtual bool defaultEolFill(int style) const override {
if (handle__defaultEolFill == 0) {
return QsciLexerIDL::defaultEolFill(style);
}
int sigval1 = style;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_defaultEolFill(this, handle__defaultEolFill, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_defaultEolFill(int style) const {
return QsciLexerIDL::defaultEolFill(static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__defaultFontWithStyle = 0;
// Subclass to allow providing a Go implementation
virtual QFont defaultFont(int style) const override {
if (handle__defaultFontWithStyle == 0) {
return QsciLexerIDL::defaultFont(style);
}
int sigval1 = style;
QFont* callback_return_value = miqt_exec_callback_QsciLexerIDL_defaultFontWithStyle(this, handle__defaultFontWithStyle, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QFont* virtualbase_defaultFontWithStyle(int style) const {
return new QFont(QsciLexerIDL::defaultFont(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__defaultPaperWithStyle = 0;
// Subclass to allow providing a Go implementation
virtual QColor defaultPaper(int style) const override {
if (handle__defaultPaperWithStyle == 0) {
return QsciLexerIDL::defaultPaper(style);
}
int sigval1 = style;
QColor* callback_return_value = miqt_exec_callback_QsciLexerIDL_defaultPaperWithStyle(this, handle__defaultPaperWithStyle, sigval1);
return *callback_return_value;
}
// Wrapper to allow calling protected method
QColor* virtualbase_defaultPaperWithStyle(int style) const {
return new QColor(QsciLexerIDL::defaultPaper(static_cast<int>(style)));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setEditor = 0;
// Subclass to allow providing a Go implementation
virtual void setEditor(QsciScintilla* editor) override {
if (handle__setEditor == 0) {
QsciLexerIDL::setEditor(editor);
return;
}
QsciScintilla* sigval1 = editor;
miqt_exec_callback_QsciLexerIDL_setEditor(this, handle__setEditor, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setEditor(QsciScintilla* editor) {
QsciLexerIDL::setEditor(editor);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__refreshProperties = 0;
// Subclass to allow providing a Go implementation
virtual void refreshProperties() override {
if (handle__refreshProperties == 0) {
QsciLexerIDL::refreshProperties();
return;
}
miqt_exec_callback_QsciLexerIDL_refreshProperties(this, handle__refreshProperties);
}
// Wrapper to allow calling protected method
void virtualbase_refreshProperties() {
QsciLexerIDL::refreshProperties();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__styleBitsNeeded = 0;
// Subclass to allow providing a Go implementation
virtual int styleBitsNeeded() const override {
if (handle__styleBitsNeeded == 0) {
return QsciLexerIDL::styleBitsNeeded();
}
int callback_return_value = miqt_exec_callback_QsciLexerIDL_styleBitsNeeded(this, handle__styleBitsNeeded);
return static_cast<int>(callback_return_value);
}
// Wrapper to allow calling protected method
int virtualbase_styleBitsNeeded() const {
return QsciLexerIDL::styleBitsNeeded();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__wordCharacters = 0;
// Subclass to allow providing a Go implementation
virtual const char* wordCharacters() const override {
if (handle__wordCharacters == 0) {
return QsciLexerIDL::wordCharacters();
}
const char* callback_return_value = miqt_exec_callback_QsciLexerIDL_wordCharacters(this, handle__wordCharacters);
return callback_return_value;
}
// Wrapper to allow calling protected method
const char* virtualbase_wordCharacters() const {
return (const char*) QsciLexerIDL::wordCharacters();
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setAutoIndentStyle = 0;
// Subclass to allow providing a Go implementation
virtual void setAutoIndentStyle(int autoindentstyle) override {
if (handle__setAutoIndentStyle == 0) {
QsciLexerIDL::setAutoIndentStyle(autoindentstyle);
return;
}
int sigval1 = autoindentstyle;
miqt_exec_callback_QsciLexerIDL_setAutoIndentStyle(this, handle__setAutoIndentStyle, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_setAutoIndentStyle(int autoindentstyle) {
QsciLexerIDL::setAutoIndentStyle(static_cast<int>(autoindentstyle));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setColor = 0;
// Subclass to allow providing a Go implementation
virtual void setColor(const QColor& c, int style) override {
if (handle__setColor == 0) {
QsciLexerIDL::setColor(c, style);
return;
}
const QColor& c_ret = c;
// Cast returned reference into pointer
QColor* sigval1 = const_cast<QColor*>(&c_ret);
int sigval2 = style;
miqt_exec_callback_QsciLexerIDL_setColor(this, handle__setColor, sigval1, sigval2);
}
// Wrapper to allow calling protected method
void virtualbase_setColor(QColor* c, int style) {
QsciLexerIDL::setColor(*c, static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setEolFill = 0;
// Subclass to allow providing a Go implementation
virtual void setEolFill(bool eoffill, int style) override {
if (handle__setEolFill == 0) {
QsciLexerIDL::setEolFill(eoffill, style);
return;
}
bool sigval1 = eoffill;
int sigval2 = style;
miqt_exec_callback_QsciLexerIDL_setEolFill(this, handle__setEolFill, sigval1, sigval2);
}
// Wrapper to allow calling protected method
void virtualbase_setEolFill(bool eoffill, int style) {
QsciLexerIDL::setEolFill(eoffill, static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setFont = 0;
// Subclass to allow providing a Go implementation
virtual void setFont(const QFont& f, int style) override {
if (handle__setFont == 0) {
QsciLexerIDL::setFont(f, style);
return;
}
const QFont& f_ret = f;
// Cast returned reference into pointer
QFont* sigval1 = const_cast<QFont*>(&f_ret);
int sigval2 = style;
miqt_exec_callback_QsciLexerIDL_setFont(this, handle__setFont, sigval1, sigval2);
}
// Wrapper to allow calling protected method
void virtualbase_setFont(QFont* f, int style) {
QsciLexerIDL::setFont(*f, static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__setPaper = 0;
// Subclass to allow providing a Go implementation
virtual void setPaper(const QColor& c, int style) override {
if (handle__setPaper == 0) {
QsciLexerIDL::setPaper(c, style);
return;
}
const QColor& c_ret = c;
// Cast returned reference into pointer
QColor* sigval1 = const_cast<QColor*>(&c_ret);
int sigval2 = style;
miqt_exec_callback_QsciLexerIDL_setPaper(this, handle__setPaper, sigval1, sigval2);
}
// Wrapper to allow calling protected method
void virtualbase_setPaper(QColor* c, int style) {
QsciLexerIDL::setPaper(*c, static_cast<int>(style));
}
// cgo.Handle value for overwritten implementation
intptr_t handle__readProperties = 0;
// Subclass to allow providing a Go implementation
virtual bool readProperties(QSettings& qs, const QString& prefix) override {
if (handle__readProperties == 0) {
return QsciLexerIDL::readProperties(qs, prefix);
}
QSettings& qs_ret = qs;
// Cast returned reference into pointer
QSettings* sigval1 = &qs_ret;
const QString prefix_ret = prefix;
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray prefix_b = prefix_ret.toUtf8();
struct miqt_string prefix_ms;
prefix_ms.len = prefix_b.length();
prefix_ms.data = static_cast<char*>(malloc(prefix_ms.len));
memcpy(prefix_ms.data, prefix_b.data(), prefix_ms.len);
struct miqt_string sigval2 = prefix_ms;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_readProperties(this, handle__readProperties, sigval1, sigval2);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_readProperties(QSettings* qs, struct miqt_string prefix) {
QString prefix_QString = QString::fromUtf8(prefix.data, prefix.len);
return QsciLexerIDL::readProperties(*qs, prefix_QString);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__writeProperties = 0;
// Subclass to allow providing a Go implementation
virtual bool writeProperties(QSettings& qs, const QString& prefix) const override {
if (handle__writeProperties == 0) {
return QsciLexerIDL::writeProperties(qs, prefix);
}
QSettings& qs_ret = qs;
// Cast returned reference into pointer
QSettings* sigval1 = &qs_ret;
const QString prefix_ret = prefix;
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray prefix_b = prefix_ret.toUtf8();
struct miqt_string prefix_ms;
prefix_ms.len = prefix_b.length();
prefix_ms.data = static_cast<char*>(malloc(prefix_ms.len));
memcpy(prefix_ms.data, prefix_b.data(), prefix_ms.len);
struct miqt_string sigval2 = prefix_ms;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_writeProperties(this, handle__writeProperties, sigval1, sigval2);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_writeProperties(QSettings* qs, struct miqt_string prefix) const {
QString prefix_QString = QString::fromUtf8(prefix.data, prefix.len);
return QsciLexerIDL::writeProperties(*qs, prefix_QString);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__event = 0;
// Subclass to allow providing a Go implementation
virtual bool event(QEvent* event) override {
if (handle__event == 0) {
return QsciLexerIDL::event(event);
}
QEvent* sigval1 = event;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_event(this, handle__event, sigval1);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_event(QEvent* event) {
return QsciLexerIDL::event(event);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__eventFilter = 0;
// Subclass to allow providing a Go implementation
virtual bool eventFilter(QObject* watched, QEvent* event) override {
if (handle__eventFilter == 0) {
return QsciLexerIDL::eventFilter(watched, event);
}
QObject* sigval1 = watched;
QEvent* sigval2 = event;
bool callback_return_value = miqt_exec_callback_QsciLexerIDL_eventFilter(this, handle__eventFilter, sigval1, sigval2);
return callback_return_value;
}
// Wrapper to allow calling protected method
bool virtualbase_eventFilter(QObject* watched, QEvent* event) {
return QsciLexerIDL::eventFilter(watched, event);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__timerEvent = 0;
// Subclass to allow providing a Go implementation
virtual void timerEvent(QTimerEvent* event) override {
if (handle__timerEvent == 0) {
QsciLexerIDL::timerEvent(event);
return;
}
QTimerEvent* sigval1 = event;
miqt_exec_callback_QsciLexerIDL_timerEvent(this, handle__timerEvent, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_timerEvent(QTimerEvent* event) {
QsciLexerIDL::timerEvent(event);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__childEvent = 0;
// Subclass to allow providing a Go implementation
virtual void childEvent(QChildEvent* event) override {
if (handle__childEvent == 0) {
QsciLexerIDL::childEvent(event);
return;
}
QChildEvent* sigval1 = event;
miqt_exec_callback_QsciLexerIDL_childEvent(this, handle__childEvent, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_childEvent(QChildEvent* event) {
QsciLexerIDL::childEvent(event);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__customEvent = 0;
// Subclass to allow providing a Go implementation
virtual void customEvent(QEvent* event) override {
if (handle__customEvent == 0) {
QsciLexerIDL::customEvent(event);
return;
}
QEvent* sigval1 = event;
miqt_exec_callback_QsciLexerIDL_customEvent(this, handle__customEvent, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_customEvent(QEvent* event) {
QsciLexerIDL::customEvent(event);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__connectNotify = 0;
// Subclass to allow providing a Go implementation
virtual void connectNotify(const QMetaMethod& signal) override {
if (handle__connectNotify == 0) {
QsciLexerIDL::connectNotify(signal);
return;
}
const QMetaMethod& signal_ret = signal;
// Cast returned reference into pointer
QMetaMethod* sigval1 = const_cast<QMetaMethod*>(&signal_ret);
miqt_exec_callback_QsciLexerIDL_connectNotify(this, handle__connectNotify, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_connectNotify(QMetaMethod* signal) {
QsciLexerIDL::connectNotify(*signal);
}
// cgo.Handle value for overwritten implementation
intptr_t handle__disconnectNotify = 0;
// Subclass to allow providing a Go implementation
virtual void disconnectNotify(const QMetaMethod& signal) override {
if (handle__disconnectNotify == 0) {
QsciLexerIDL::disconnectNotify(signal);
return;
}
const QMetaMethod& signal_ret = signal;
// Cast returned reference into pointer
QMetaMethod* sigval1 = const_cast<QMetaMethod*>(&signal_ret);
miqt_exec_callback_QsciLexerIDL_disconnectNotify(this, handle__disconnectNotify, sigval1);
}
// Wrapper to allow calling protected method
void virtualbase_disconnectNotify(QMetaMethod* signal) {
QsciLexerIDL::disconnectNotify(*signal);
}
};
QsciLexerIDL* QsciLexerIDL_new() {
return new MiqtVirtualQsciLexerIDL();
}
QsciLexerIDL* QsciLexerIDL_new2(QObject* parent) {
return new MiqtVirtualQsciLexerIDL(parent);
}
void QsciLexerIDL_virtbase(QsciLexerIDL* src, QsciLexerCPP** outptr_QsciLexerCPP) {
*outptr_QsciLexerCPP = static_cast<QsciLexerCPP*>(src);
}
QMetaObject* QsciLexerIDL_metaObject(const QsciLexerIDL* self) {
return (QMetaObject*) self->metaObject();
}
void* QsciLexerIDL_metacast(QsciLexerIDL* self, const char* param1) {
return self->qt_metacast(param1);
}
struct miqt_string QsciLexerIDL_tr(const char* s) {
QString _ret = QsciLexerIDL::tr(s);
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
struct miqt_string QsciLexerIDL_trUtf8(const char* s) {
QString _ret = QsciLexerIDL::trUtf8(s);
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
const char* QsciLexerIDL_language(const QsciLexerIDL* self) {
return (const char*) self->language();
}
QColor* QsciLexerIDL_defaultColor(const QsciLexerIDL* self, int style) {
return new QColor(self->defaultColor(static_cast<int>(style)));
}
const char* QsciLexerIDL_keywords(const QsciLexerIDL* self, int set) {
return (const char*) self->keywords(static_cast<int>(set));
}
struct miqt_string QsciLexerIDL_description(const QsciLexerIDL* self, int style) {
QString _ret = self->description(static_cast<int>(style));
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
struct miqt_string QsciLexerIDL_tr2(const char* s, const char* c) {
QString _ret = QsciLexerIDL::tr(s, c);
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
struct miqt_string QsciLexerIDL_tr3(const char* s, const char* c, int n) {
QString _ret = QsciLexerIDL::tr(s, c, static_cast<int>(n));
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
struct miqt_string QsciLexerIDL_trUtf82(const char* s, const char* c) {
QString _ret = QsciLexerIDL::trUtf8(s, c);
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
struct miqt_string QsciLexerIDL_trUtf83(const char* s, const char* c, int n) {
QString _ret = QsciLexerIDL::trUtf8(s, c, static_cast<int>(n));
// Convert QString from UTF-16 in C++ RAII memory to UTF-8 in manually-managed C memory
QByteArray _b = _ret.toUtf8();
struct miqt_string _ms;
_ms.len = _b.length();
_ms.data = static_cast<char*>(malloc(_ms.len));
memcpy(_ms.data, _b.data(), _ms.len);
return _ms;
}
bool QsciLexerIDL_override_virtual_setFoldAtElse(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setFoldAtElse = slot;
return true;
}
void QsciLexerIDL_virtualbase_setFoldAtElse(void* self, bool fold) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setFoldAtElse(fold);
}
bool QsciLexerIDL_override_virtual_setFoldComments(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setFoldComments = slot;
return true;
}
void QsciLexerIDL_virtualbase_setFoldComments(void* self, bool fold) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setFoldComments(fold);
}
bool QsciLexerIDL_override_virtual_setFoldCompact(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setFoldCompact = slot;
return true;
}
void QsciLexerIDL_virtualbase_setFoldCompact(void* self, bool fold) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setFoldCompact(fold);
}
bool QsciLexerIDL_override_virtual_setFoldPreprocessor(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setFoldPreprocessor = slot;
return true;
}
void QsciLexerIDL_virtualbase_setFoldPreprocessor(void* self, bool fold) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setFoldPreprocessor(fold);
}
bool QsciLexerIDL_override_virtual_setStylePreprocessor(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setStylePreprocessor = slot;
return true;
}
void QsciLexerIDL_virtualbase_setStylePreprocessor(void* self, bool style) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setStylePreprocessor(style);
}
bool QsciLexerIDL_override_virtual_language(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__language = slot;
return true;
}
bool QsciLexerIDL_override_virtual_lexer(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__lexer = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_lexer(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_lexer();
}
bool QsciLexerIDL_override_virtual_lexerId(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__lexerId = slot;
return true;
}
int QsciLexerIDL_virtualbase_lexerId(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_lexerId();
}
bool QsciLexerIDL_override_virtual_autoCompletionFillups(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__autoCompletionFillups = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_autoCompletionFillups(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_autoCompletionFillups();
}
bool QsciLexerIDL_override_virtual_autoCompletionWordSeparators(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__autoCompletionWordSeparators = slot;
return true;
}
struct miqt_array /* of struct miqt_string */ QsciLexerIDL_virtualbase_autoCompletionWordSeparators(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_autoCompletionWordSeparators();
}
bool QsciLexerIDL_override_virtual_blockEnd(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__blockEnd = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_blockEnd(const void* self, int* style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_blockEnd(style);
}
bool QsciLexerIDL_override_virtual_blockLookback(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__blockLookback = slot;
return true;
}
int QsciLexerIDL_virtualbase_blockLookback(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_blockLookback();
}
bool QsciLexerIDL_override_virtual_blockStart(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__blockStart = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_blockStart(const void* self, int* style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_blockStart(style);
}
bool QsciLexerIDL_override_virtual_blockStartKeyword(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__blockStartKeyword = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_blockStartKeyword(const void* self, int* style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_blockStartKeyword(style);
}
bool QsciLexerIDL_override_virtual_braceStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__braceStyle = slot;
return true;
}
int QsciLexerIDL_virtualbase_braceStyle(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_braceStyle();
}
bool QsciLexerIDL_override_virtual_caseSensitive(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__caseSensitive = slot;
return true;
}
bool QsciLexerIDL_virtualbase_caseSensitive(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_caseSensitive();
}
bool QsciLexerIDL_override_virtual_color(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__color = slot;
return true;
}
QColor* QsciLexerIDL_virtualbase_color(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_color(style);
}
bool QsciLexerIDL_override_virtual_eolFill(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__eolFill = slot;
return true;
}
bool QsciLexerIDL_virtualbase_eolFill(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_eolFill(style);
}
bool QsciLexerIDL_override_virtual_font(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__font = slot;
return true;
}
QFont* QsciLexerIDL_virtualbase_font(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_font(style);
}
bool QsciLexerIDL_override_virtual_indentationGuideView(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__indentationGuideView = slot;
return true;
}
int QsciLexerIDL_virtualbase_indentationGuideView(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_indentationGuideView();
}
bool QsciLexerIDL_override_virtual_keywords(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__keywords = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_keywords(const void* self, int set) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_keywords(set);
}
bool QsciLexerIDL_override_virtual_defaultStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__defaultStyle = slot;
return true;
}
int QsciLexerIDL_virtualbase_defaultStyle(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_defaultStyle();
}
bool QsciLexerIDL_override_virtual_description(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__description = slot;
return true;
}
bool QsciLexerIDL_override_virtual_paper(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__paper = slot;
return true;
}
QColor* QsciLexerIDL_virtualbase_paper(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_paper(style);
}
bool QsciLexerIDL_override_virtual_defaultColorWithStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__defaultColorWithStyle = slot;
return true;
}
QColor* QsciLexerIDL_virtualbase_defaultColorWithStyle(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_defaultColorWithStyle(style);
}
bool QsciLexerIDL_override_virtual_defaultEolFill(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__defaultEolFill = slot;
return true;
}
bool QsciLexerIDL_virtualbase_defaultEolFill(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_defaultEolFill(style);
}
bool QsciLexerIDL_override_virtual_defaultFontWithStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__defaultFontWithStyle = slot;
return true;
}
QFont* QsciLexerIDL_virtualbase_defaultFontWithStyle(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_defaultFontWithStyle(style);
}
bool QsciLexerIDL_override_virtual_defaultPaperWithStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__defaultPaperWithStyle = slot;
return true;
}
QColor* QsciLexerIDL_virtualbase_defaultPaperWithStyle(const void* self, int style) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_defaultPaperWithStyle(style);
}
bool QsciLexerIDL_override_virtual_setEditor(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setEditor = slot;
return true;
}
void QsciLexerIDL_virtualbase_setEditor(void* self, QsciScintilla* editor) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setEditor(editor);
}
bool QsciLexerIDL_override_virtual_refreshProperties(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__refreshProperties = slot;
return true;
}
void QsciLexerIDL_virtualbase_refreshProperties(void* self) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_refreshProperties();
}
bool QsciLexerIDL_override_virtual_styleBitsNeeded(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__styleBitsNeeded = slot;
return true;
}
int QsciLexerIDL_virtualbase_styleBitsNeeded(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_styleBitsNeeded();
}
bool QsciLexerIDL_override_virtual_wordCharacters(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__wordCharacters = slot;
return true;
}
const char* QsciLexerIDL_virtualbase_wordCharacters(const void* self) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_wordCharacters();
}
bool QsciLexerIDL_override_virtual_setAutoIndentStyle(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setAutoIndentStyle = slot;
return true;
}
void QsciLexerIDL_virtualbase_setAutoIndentStyle(void* self, int autoindentstyle) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setAutoIndentStyle(autoindentstyle);
}
bool QsciLexerIDL_override_virtual_setColor(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setColor = slot;
return true;
}
void QsciLexerIDL_virtualbase_setColor(void* self, QColor* c, int style) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setColor(c, style);
}
bool QsciLexerIDL_override_virtual_setEolFill(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setEolFill = slot;
return true;
}
void QsciLexerIDL_virtualbase_setEolFill(void* self, bool eoffill, int style) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setEolFill(eoffill, style);
}
bool QsciLexerIDL_override_virtual_setFont(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setFont = slot;
return true;
}
void QsciLexerIDL_virtualbase_setFont(void* self, QFont* f, int style) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setFont(f, style);
}
bool QsciLexerIDL_override_virtual_setPaper(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__setPaper = slot;
return true;
}
void QsciLexerIDL_virtualbase_setPaper(void* self, QColor* c, int style) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_setPaper(c, style);
}
bool QsciLexerIDL_override_virtual_readProperties(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__readProperties = slot;
return true;
}
bool QsciLexerIDL_virtualbase_readProperties(void* self, QSettings* qs, struct miqt_string prefix) {
return ( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_readProperties(qs, prefix);
}
bool QsciLexerIDL_override_virtual_writeProperties(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__writeProperties = slot;
return true;
}
bool QsciLexerIDL_virtualbase_writeProperties(const void* self, QSettings* qs, struct miqt_string prefix) {
return ( (const MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_writeProperties(qs, prefix);
}
bool QsciLexerIDL_override_virtual_event(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__event = slot;
return true;
}
bool QsciLexerIDL_virtualbase_event(void* self, QEvent* event) {
return ( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_event(event);
}
bool QsciLexerIDL_override_virtual_eventFilter(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__eventFilter = slot;
return true;
}
bool QsciLexerIDL_virtualbase_eventFilter(void* self, QObject* watched, QEvent* event) {
return ( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_eventFilter(watched, event);
}
bool QsciLexerIDL_override_virtual_timerEvent(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__timerEvent = slot;
return true;
}
void QsciLexerIDL_virtualbase_timerEvent(void* self, QTimerEvent* event) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_timerEvent(event);
}
bool QsciLexerIDL_override_virtual_childEvent(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__childEvent = slot;
return true;
}
void QsciLexerIDL_virtualbase_childEvent(void* self, QChildEvent* event) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_childEvent(event);
}
bool QsciLexerIDL_override_virtual_customEvent(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__customEvent = slot;
return true;
}
void QsciLexerIDL_virtualbase_customEvent(void* self, QEvent* event) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_customEvent(event);
}
bool QsciLexerIDL_override_virtual_connectNotify(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__connectNotify = slot;
return true;
}
void QsciLexerIDL_virtualbase_connectNotify(void* self, QMetaMethod* signal) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_connectNotify(signal);
}
bool QsciLexerIDL_override_virtual_disconnectNotify(void* self, intptr_t slot) {
MiqtVirtualQsciLexerIDL* self_cast = dynamic_cast<MiqtVirtualQsciLexerIDL*>( (QsciLexerIDL*)(self) );
if (self_cast == nullptr) {
return false;
}
self_cast->handle__disconnectNotify = slot;
return true;
}
void QsciLexerIDL_virtualbase_disconnectNotify(void* self, QMetaMethod* signal) {
( (MiqtVirtualQsciLexerIDL*)(self) )->virtualbase_disconnectNotify(signal);
}
void QsciLexerIDL_delete(QsciLexerIDL* self) {
delete self;
}