miqt/qt-restricted-extras/qscintilla/gen_qscilexerruby.cpp
2024-10-20 18:07:38 +13:00

185 lines
5.6 KiB
C++

#include <QColor>
#include <QFont>
#include <QMetaObject>
#include <QObject>
#include <QString>
#include <QByteArray>
#include <cstring>
#include <qscilexerruby.h>
#include "gen_qscilexerruby.h"
#include "_cgo_export.h"
QsciLexerRuby* QsciLexerRuby_new() {
return new QsciLexerRuby();
}
QsciLexerRuby* QsciLexerRuby_new2(QObject* parent) {
return new QsciLexerRuby(parent);
}
QMetaObject* QsciLexerRuby_MetaObject(const QsciLexerRuby* self) {
return (QMetaObject*) self->metaObject();
}
void* QsciLexerRuby_Metacast(QsciLexerRuby* self, const char* param1) {
return self->qt_metacast(param1);
}
struct miqt_string QsciLexerRuby_Tr(const char* s) {
QString _ret = QsciLexerRuby::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 QsciLexerRuby_TrUtf8(const char* s) {
QString _ret = QsciLexerRuby::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* QsciLexerRuby_Language(const QsciLexerRuby* self) {
return (const char*) self->language();
}
const char* QsciLexerRuby_Lexer(const QsciLexerRuby* self) {
return (const char*) self->lexer();
}
const char* QsciLexerRuby_BlockEnd(const QsciLexerRuby* self) {
return (const char*) self->blockEnd();
}
const char* QsciLexerRuby_BlockStart(const QsciLexerRuby* self) {
return (const char*) self->blockStart();
}
const char* QsciLexerRuby_BlockStartKeyword(const QsciLexerRuby* self) {
return (const char*) self->blockStartKeyword();
}
int QsciLexerRuby_BraceStyle(const QsciLexerRuby* self) {
return self->braceStyle();
}
QColor* QsciLexerRuby_DefaultColor(const QsciLexerRuby* self, int style) {
return new QColor(self->defaultColor(static_cast<int>(style)));
}
bool QsciLexerRuby_DefaultEolFill(const QsciLexerRuby* self, int style) {
return self->defaultEolFill(static_cast<int>(style));
}
QFont* QsciLexerRuby_DefaultFont(const QsciLexerRuby* self, int style) {
return new QFont(self->defaultFont(static_cast<int>(style)));
}
QColor* QsciLexerRuby_DefaultPaper(const QsciLexerRuby* self, int style) {
return new QColor(self->defaultPaper(static_cast<int>(style)));
}
const char* QsciLexerRuby_Keywords(const QsciLexerRuby* self, int set) {
return (const char*) self->keywords(static_cast<int>(set));
}
struct miqt_string QsciLexerRuby_Description(const QsciLexerRuby* 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;
}
void QsciLexerRuby_RefreshProperties(QsciLexerRuby* self) {
self->refreshProperties();
}
void QsciLexerRuby_SetFoldComments(QsciLexerRuby* self, bool fold) {
self->setFoldComments(fold);
}
bool QsciLexerRuby_FoldComments(const QsciLexerRuby* self) {
return self->foldComments();
}
void QsciLexerRuby_SetFoldCompact(QsciLexerRuby* self, bool fold) {
self->setFoldCompact(fold);
}
bool QsciLexerRuby_FoldCompact(const QsciLexerRuby* self) {
return self->foldCompact();
}
struct miqt_string QsciLexerRuby_Tr2(const char* s, const char* c) {
QString _ret = QsciLexerRuby::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 QsciLexerRuby_Tr3(const char* s, const char* c, int n) {
QString _ret = QsciLexerRuby::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 QsciLexerRuby_TrUtf82(const char* s, const char* c) {
QString _ret = QsciLexerRuby::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 QsciLexerRuby_TrUtf83(const char* s, const char* c, int n) {
QString _ret = QsciLexerRuby::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;
}
const char* QsciLexerRuby_BlockEnd1(const QsciLexerRuby* self, int* style) {
return (const char*) self->blockEnd(static_cast<int*>(style));
}
const char* QsciLexerRuby_BlockStart1(const QsciLexerRuby* self, int* style) {
return (const char*) self->blockStart(static_cast<int*>(style));
}
const char* QsciLexerRuby_BlockStartKeyword1(const QsciLexerRuby* self, int* style) {
return (const char*) self->blockStartKeyword(static_cast<int*>(style));
}
void QsciLexerRuby_Delete(QsciLexerRuby* self) {
delete self;
}