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compound_public_key.go
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/
compound_public_key.go
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package foundation
// #include <virgil/crypto/foundation/vscf_foundation_public.h>
import "C"
import "runtime"
import unsafe "unsafe"
/*
* Handles compound public key.
*
* Compound public key contains 2 public keys and signature:
* - cipher key - is used for encryption;
* - signer key - is used for verifying.
*/
type CompoundPublicKey struct {
cCtx *C.vscf_compound_public_key_t /*ct10*/
}
/*
* Return a cipher public key suitable for initial encryption.
*/
func (obj *CompoundPublicKey) CipherKey() (PublicKey, error) {
proxyResult := /*pr4*/C.vscf_compound_public_key_cipher_key(obj.cCtx)
runtime.KeepAlive(obj)
return FoundationImplementationWrapPublicKey(proxyResult) /* r4 */
}
/*
* Return public key suitable for verifying.
*/
func (obj *CompoundPublicKey) SignerKey() (PublicKey, error) {
proxyResult := /*pr4*/C.vscf_compound_public_key_signer_key(obj.cCtx)
runtime.KeepAlive(obj)
return FoundationImplementationWrapPublicKey(proxyResult) /* r4 */
}
/* Handle underlying C context. */
func (obj *CompoundPublicKey) Ctx() uintptr {
return uintptr(unsafe.Pointer(obj.cCtx))
}
func NewCompoundPublicKey() *CompoundPublicKey {
ctx := C.vscf_compound_public_key_new()
obj := &CompoundPublicKey {
cCtx: ctx,
}
runtime.SetFinalizer(obj, (*CompoundPublicKey).Delete)
return obj
}
/* Acquire C context.
* Note. This method is used in generated code only, and SHOULD NOT be used in another way.
*/
func newCompoundPublicKeyWithCtx(ctx *C.vscf_compound_public_key_t /*ct10*/) *CompoundPublicKey {
obj := &CompoundPublicKey {
cCtx: ctx,
}
runtime.SetFinalizer(obj, (*CompoundPublicKey).Delete)
return obj
}
/* Acquire retained C context.
* Note. This method is used in generated code only, and SHOULD NOT be used in another way.
*/
func newCompoundPublicKeyCopy(ctx *C.vscf_compound_public_key_t /*ct10*/) *CompoundPublicKey {
obj := &CompoundPublicKey {
cCtx: C.vscf_compound_public_key_shallow_copy(ctx),
}
runtime.SetFinalizer(obj, (*CompoundPublicKey).Delete)
return obj
}
/*
* Release underlying C context.
*/
func (obj *CompoundPublicKey) Delete() {
if obj == nil {
return
}
runtime.SetFinalizer(obj, nil)
obj.delete()
}
/*
* Release underlying C context.
*/
func (obj *CompoundPublicKey) delete() {
C.vscf_compound_public_key_delete(obj.cCtx)
}
/*
* Algorithm identifier the key belongs to.
*/
func (obj *CompoundPublicKey) AlgId() AlgId {
proxyResult := /*pr4*/C.vscf_compound_public_key_alg_id(obj.cCtx)
runtime.KeepAlive(obj)
return AlgId(proxyResult) /* r8 */
}
/*
* Return algorithm information that can be used for serialization.
*/
func (obj *CompoundPublicKey) AlgInfo() (AlgInfo, error) {
proxyResult := /*pr4*/C.vscf_compound_public_key_alg_info(obj.cCtx)
runtime.KeepAlive(obj)
return FoundationImplementationWrapAlgInfo(proxyResult) /* r4 */
}
/*
* Length of the key in bytes.
*/
func (obj *CompoundPublicKey) Len() uint {
proxyResult := /*pr4*/C.vscf_compound_public_key_len(obj.cCtx)
runtime.KeepAlive(obj)
return uint(proxyResult) /* r9 */
}
/*
* Length of the key in bits.
*/
func (obj *CompoundPublicKey) Bitlen() uint {
proxyResult := /*pr4*/C.vscf_compound_public_key_bitlen(obj.cCtx)
runtime.KeepAlive(obj)
return uint(proxyResult) /* r9 */
}
/*
* Check that key is valid.
* Note, this operation can be slow.
*/
func (obj *CompoundPublicKey) IsValid() bool {
proxyResult := /*pr4*/C.vscf_compound_public_key_is_valid(obj.cCtx)
runtime.KeepAlive(obj)
return bool(proxyResult) /* r9 */
}