mirror of
https://github.com/mappu/miqt.git
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163 lines
5.4 KiB
C++
163 lines
5.4 KiB
C++
#include <QByteArray>
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#include <QIODevice>
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#include <QSslKey>
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#include <qsslkey.h>
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#include "gen_qsslkey.h"
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#include "_cgo_export.h"
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void QSslKey_new(QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey();
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*outptr_QSslKey = ret;
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}
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void QSslKey_new2(struct miqt_string encoded, int algorithm, QSslKey** outptr_QSslKey) {
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QByteArray encoded_QByteArray(encoded.data, encoded.len);
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QSslKey* ret = new QSslKey(encoded_QByteArray, static_cast<QSsl::KeyAlgorithm>(algorithm));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new3(QIODevice* device, int algorithm, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(device, static_cast<QSsl::KeyAlgorithm>(algorithm));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new4(void* handle, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(handle);
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*outptr_QSslKey = ret;
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}
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void QSslKey_new5(QSslKey* other, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(*other);
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*outptr_QSslKey = ret;
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}
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void QSslKey_new6(struct miqt_string encoded, int algorithm, int format, QSslKey** outptr_QSslKey) {
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QByteArray encoded_QByteArray(encoded.data, encoded.len);
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QSslKey* ret = new QSslKey(encoded_QByteArray, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new7(struct miqt_string encoded, int algorithm, int format, int typeVal, QSslKey** outptr_QSslKey) {
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QByteArray encoded_QByteArray(encoded.data, encoded.len);
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QSslKey* ret = new QSslKey(encoded_QByteArray, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format), static_cast<QSsl::KeyType>(typeVal));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new8(struct miqt_string encoded, int algorithm, int format, int typeVal, struct miqt_string passPhrase, QSslKey** outptr_QSslKey) {
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QByteArray encoded_QByteArray(encoded.data, encoded.len);
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QByteArray passPhrase_QByteArray(passPhrase.data, passPhrase.len);
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QSslKey* ret = new QSslKey(encoded_QByteArray, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format), static_cast<QSsl::KeyType>(typeVal), passPhrase_QByteArray);
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*outptr_QSslKey = ret;
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}
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void QSslKey_new9(QIODevice* device, int algorithm, int format, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(device, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new10(QIODevice* device, int algorithm, int format, int typeVal, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(device, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format), static_cast<QSsl::KeyType>(typeVal));
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*outptr_QSslKey = ret;
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}
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void QSslKey_new11(QIODevice* device, int algorithm, int format, int typeVal, struct miqt_string passPhrase, QSslKey** outptr_QSslKey) {
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QByteArray passPhrase_QByteArray(passPhrase.data, passPhrase.len);
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QSslKey* ret = new QSslKey(device, static_cast<QSsl::KeyAlgorithm>(algorithm), static_cast<QSsl::EncodingFormat>(format), static_cast<QSsl::KeyType>(typeVal), passPhrase_QByteArray);
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*outptr_QSslKey = ret;
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}
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void QSslKey_new12(void* handle, int typeVal, QSslKey** outptr_QSslKey) {
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QSslKey* ret = new QSslKey(handle, static_cast<QSsl::KeyType>(typeVal));
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*outptr_QSslKey = ret;
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}
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void QSslKey_OperatorAssign(QSslKey* self, QSslKey* other) {
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self->operator=(*other);
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}
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void QSslKey_Swap(QSslKey* self, QSslKey* other) {
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self->swap(*other);
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}
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bool QSslKey_IsNull(const QSslKey* self) {
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return self->isNull();
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}
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void QSslKey_Clear(QSslKey* self) {
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self->clear();
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}
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int QSslKey_Length(const QSslKey* self) {
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return self->length();
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}
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int QSslKey_Type(const QSslKey* self) {
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QSsl::KeyType _ret = self->type();
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return static_cast<int>(_ret);
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}
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int QSslKey_Algorithm(const QSslKey* self) {
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QSsl::KeyAlgorithm _ret = self->algorithm();
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return static_cast<int>(_ret);
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}
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struct miqt_string QSslKey_ToPem(const QSslKey* self) {
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QByteArray _qb = self->toPem();
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struct miqt_string _ms;
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_ms.len = _qb.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _qb.data(), _ms.len);
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return _ms;
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}
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struct miqt_string QSslKey_ToDer(const QSslKey* self) {
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QByteArray _qb = self->toDer();
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struct miqt_string _ms;
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_ms.len = _qb.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _qb.data(), _ms.len);
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return _ms;
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}
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void* QSslKey_Handle(const QSslKey* self) {
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Qt::HANDLE _ret = self->handle();
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return static_cast<void*>(_ret);
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}
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bool QSslKey_OperatorEqual(const QSslKey* self, QSslKey* key) {
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return (*self == *key);
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}
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bool QSslKey_OperatorNotEqual(const QSslKey* self, QSslKey* key) {
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return (*self != *key);
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}
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struct miqt_string QSslKey_ToPem1(const QSslKey* self, struct miqt_string passPhrase) {
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QByteArray passPhrase_QByteArray(passPhrase.data, passPhrase.len);
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QByteArray _qb = self->toPem(passPhrase_QByteArray);
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struct miqt_string _ms;
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_ms.len = _qb.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _qb.data(), _ms.len);
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return _ms;
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}
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struct miqt_string QSslKey_ToDer1(const QSslKey* self, struct miqt_string passPhrase) {
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QByteArray passPhrase_QByteArray(passPhrase.data, passPhrase.len);
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QByteArray _qb = self->toDer(passPhrase_QByteArray);
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struct miqt_string _ms;
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_ms.len = _qb.length();
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_ms.data = static_cast<char*>(malloc(_ms.len));
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memcpy(_ms.data, _qb.data(), _ms.len);
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return _ms;
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}
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void QSslKey_Delete(QSslKey* self, bool isSubclass) {
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if (isSubclass) {
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delete dynamic_cast<QSslKey*>( self );
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} else {
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delete self;
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}
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}
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