mirror of
https://github.com/mappu/miqt.git
synced 2024-12-22 00:48:38 +00:00
251 lines
7.4 KiB
Go
251 lines
7.4 KiB
Go
package network
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/*
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#include "gen_qsslkey.h"
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#include <stdlib.h>
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*/
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import "C"
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import (
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"github.com/mappu/miqt/qt"
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"runtime"
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"unsafe"
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)
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type QSslKey struct {
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h *C.QSslKey
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isSubclass bool
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}
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func (this *QSslKey) cPointer() *C.QSslKey {
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if this == nil {
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return nil
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}
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return this.h
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}
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func (this *QSslKey) UnsafePointer() unsafe.Pointer {
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if this == nil {
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return nil
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}
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return unsafe.Pointer(this.h)
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}
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// newQSslKey constructs the type using only CGO pointers.
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func newQSslKey(h *C.QSslKey) *QSslKey {
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if h == nil {
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return nil
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}
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return &QSslKey{h: h}
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}
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// UnsafeNewQSslKey constructs the type using only unsafe pointers.
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func UnsafeNewQSslKey(h unsafe.Pointer) *QSslKey {
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return newQSslKey((*C.QSslKey)(h))
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}
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// NewQSslKey constructs a new QSslKey object.
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func NewQSslKey() *QSslKey {
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ret := newQSslKey(C.QSslKey_new())
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey2 constructs a new QSslKey object.
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func NewQSslKey2(encoded []byte, algorithm QSsl__KeyAlgorithm) *QSslKey {
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encoded_alias := C.struct_miqt_string{}
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encoded_alias.data = (*C.char)(unsafe.Pointer(&encoded[0]))
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encoded_alias.len = C.size_t(len(encoded))
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ret := newQSslKey(C.QSslKey_new2(encoded_alias, (C.int)(algorithm)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey3 constructs a new QSslKey object.
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func NewQSslKey3(device *qt.QIODevice, algorithm QSsl__KeyAlgorithm) *QSslKey {
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ret := newQSslKey(C.QSslKey_new3((*C.QIODevice)(device.UnsafePointer()), (C.int)(algorithm)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey4 constructs a new QSslKey object.
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func NewQSslKey4(handle unsafe.Pointer) *QSslKey {
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ret := newQSslKey(C.QSslKey_new4(handle))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey5 constructs a new QSslKey object.
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func NewQSslKey5(other *QSslKey) *QSslKey {
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ret := newQSslKey(C.QSslKey_new5(other.cPointer()))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey6 constructs a new QSslKey object.
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func NewQSslKey6(encoded []byte, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat) *QSslKey {
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encoded_alias := C.struct_miqt_string{}
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encoded_alias.data = (*C.char)(unsafe.Pointer(&encoded[0]))
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encoded_alias.len = C.size_t(len(encoded))
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ret := newQSslKey(C.QSslKey_new6(encoded_alias, (C.int)(algorithm), (C.int)(format)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey7 constructs a new QSslKey object.
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func NewQSslKey7(encoded []byte, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat, typeVal QSsl__KeyType) *QSslKey {
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encoded_alias := C.struct_miqt_string{}
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encoded_alias.data = (*C.char)(unsafe.Pointer(&encoded[0]))
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encoded_alias.len = C.size_t(len(encoded))
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ret := newQSslKey(C.QSslKey_new7(encoded_alias, (C.int)(algorithm), (C.int)(format), (C.int)(typeVal)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey8 constructs a new QSslKey object.
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func NewQSslKey8(encoded []byte, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat, typeVal QSsl__KeyType, passPhrase []byte) *QSslKey {
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encoded_alias := C.struct_miqt_string{}
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encoded_alias.data = (*C.char)(unsafe.Pointer(&encoded[0]))
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encoded_alias.len = C.size_t(len(encoded))
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passPhrase_alias := C.struct_miqt_string{}
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passPhrase_alias.data = (*C.char)(unsafe.Pointer(&passPhrase[0]))
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passPhrase_alias.len = C.size_t(len(passPhrase))
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ret := newQSslKey(C.QSslKey_new8(encoded_alias, (C.int)(algorithm), (C.int)(format), (C.int)(typeVal), passPhrase_alias))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey9 constructs a new QSslKey object.
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func NewQSslKey9(device *qt.QIODevice, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat) *QSslKey {
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ret := newQSslKey(C.QSslKey_new9((*C.QIODevice)(device.UnsafePointer()), (C.int)(algorithm), (C.int)(format)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey10 constructs a new QSslKey object.
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func NewQSslKey10(device *qt.QIODevice, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat, typeVal QSsl__KeyType) *QSslKey {
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ret := newQSslKey(C.QSslKey_new10((*C.QIODevice)(device.UnsafePointer()), (C.int)(algorithm), (C.int)(format), (C.int)(typeVal)))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey11 constructs a new QSslKey object.
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func NewQSslKey11(device *qt.QIODevice, algorithm QSsl__KeyAlgorithm, format QSsl__EncodingFormat, typeVal QSsl__KeyType, passPhrase []byte) *QSslKey {
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passPhrase_alias := C.struct_miqt_string{}
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passPhrase_alias.data = (*C.char)(unsafe.Pointer(&passPhrase[0]))
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passPhrase_alias.len = C.size_t(len(passPhrase))
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ret := newQSslKey(C.QSslKey_new11((*C.QIODevice)(device.UnsafePointer()), (C.int)(algorithm), (C.int)(format), (C.int)(typeVal), passPhrase_alias))
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ret.isSubclass = true
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return ret
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}
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// NewQSslKey12 constructs a new QSslKey object.
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func NewQSslKey12(handle unsafe.Pointer, typeVal QSsl__KeyType) *QSslKey {
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ret := newQSslKey(C.QSslKey_new12(handle, (C.int)(typeVal)))
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ret.isSubclass = true
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return ret
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}
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func (this *QSslKey) OperatorAssign(other *QSslKey) {
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C.QSslKey_OperatorAssign(this.h, other.cPointer())
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}
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func (this *QSslKey) Swap(other *QSslKey) {
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C.QSslKey_Swap(this.h, other.cPointer())
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}
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func (this *QSslKey) IsNull() bool {
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return (bool)(C.QSslKey_IsNull(this.h))
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}
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func (this *QSslKey) Clear() {
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C.QSslKey_Clear(this.h)
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}
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func (this *QSslKey) Length() int {
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return (int)(C.QSslKey_Length(this.h))
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}
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func (this *QSslKey) Type() QSsl__KeyType {
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return (QSsl__KeyType)(C.QSslKey_Type(this.h))
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}
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func (this *QSslKey) Algorithm() QSsl__KeyAlgorithm {
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return (QSsl__KeyAlgorithm)(C.QSslKey_Algorithm(this.h))
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}
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func (this *QSslKey) ToPem() []byte {
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var _bytearray C.struct_miqt_string = C.QSslKey_ToPem(this.h)
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_ret := C.GoBytes(unsafe.Pointer(_bytearray.data), C.int(int64(_bytearray.len)))
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C.free(unsafe.Pointer(_bytearray.data))
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return _ret
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}
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func (this *QSslKey) ToDer() []byte {
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var _bytearray C.struct_miqt_string = C.QSslKey_ToDer(this.h)
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_ret := C.GoBytes(unsafe.Pointer(_bytearray.data), C.int(int64(_bytearray.len)))
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C.free(unsafe.Pointer(_bytearray.data))
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return _ret
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}
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func (this *QSslKey) Handle() unsafe.Pointer {
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return (unsafe.Pointer)(C.QSslKey_Handle(this.h))
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}
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func (this *QSslKey) OperatorEqual(key *QSslKey) bool {
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return (bool)(C.QSslKey_OperatorEqual(this.h, key.cPointer()))
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}
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func (this *QSslKey) OperatorNotEqual(key *QSslKey) bool {
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return (bool)(C.QSslKey_OperatorNotEqual(this.h, key.cPointer()))
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}
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func (this *QSslKey) ToPem1(passPhrase []byte) []byte {
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passPhrase_alias := C.struct_miqt_string{}
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passPhrase_alias.data = (*C.char)(unsafe.Pointer(&passPhrase[0]))
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passPhrase_alias.len = C.size_t(len(passPhrase))
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var _bytearray C.struct_miqt_string = C.QSslKey_ToPem1(this.h, passPhrase_alias)
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_ret := C.GoBytes(unsafe.Pointer(_bytearray.data), C.int(int64(_bytearray.len)))
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C.free(unsafe.Pointer(_bytearray.data))
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return _ret
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}
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func (this *QSslKey) ToDer1(passPhrase []byte) []byte {
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passPhrase_alias := C.struct_miqt_string{}
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passPhrase_alias.data = (*C.char)(unsafe.Pointer(&passPhrase[0]))
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passPhrase_alias.len = C.size_t(len(passPhrase))
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var _bytearray C.struct_miqt_string = C.QSslKey_ToDer1(this.h, passPhrase_alias)
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_ret := C.GoBytes(unsafe.Pointer(_bytearray.data), C.int(int64(_bytearray.len)))
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C.free(unsafe.Pointer(_bytearray.data))
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return _ret
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}
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// Delete this object from C++ memory.
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func (this *QSslKey) Delete() {
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C.QSslKey_Delete(this.h, C.bool(this.isSubclass))
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}
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// GoGC adds a Go Finalizer to this pointer, so that it will be deleted
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// from C++ memory once it is unreachable from Go memory.
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func (this *QSslKey) GoGC() {
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runtime.SetFinalizer(this, func(this *QSslKey) {
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this.Delete()
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runtime.KeepAlive(this.h)
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})
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}
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