# Struct secureblackbox::KMIPServer

The KMIPServer struct provides server-side functionality for Key Management Interoperability Protocol (KMIP).

## Syntax

```text
secureblackbox::KMIPServer
```

## Remarks

The Key Management Interoperability Protocol (KMIP) is an OASIS standard for communication between key management servers and clients. KMIP servers are typically responsible for managing cryptographic keys and providing access to them to remote client applications.

### Object Lifetime

 The *new()* method returns a mutable reference to a struct instance. The object itself is kept in the global list maintained by SecureBlackbox. Due to this, the KMIPServer struct cannot be disposed of automatically. Please, call the *dispose(&mut; self)* method of KMIPServer when you have finished using the instance.

## Property List

*The following is the full list of the properties of the struct with short descriptions. Click on the links for further details.*

|  |  |
| --- | --- |
| [active](#active-property-kmipserver-struct) | Indicates if the KMIP server is active and listening to incoming connections. |
| [allow_keep_alive](#allow_keep_alive-property-kmipserver-struct) | Enables or disables keep-alive mode. |
| [auth_realm](#auth_realm-property-kmipserver-struct) | Specifies authentication realm for digest and NTLM authentication. |
| [auth_types](#auth_types-property-kmipserver-struct) | Defines allowed HTTP authentication types. |
| [bound_port](#bound_port-property-kmipserver-struct) | Indicates the bound listening port. |
| [ca_cert_bytes](#ca_cert_bytes-property-kmipserver-struct) | Returns the raw certificate data in DER format. |
| [ca_cert_handle](#ca_cert_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [certificate_bytes](#certificate_bytes-property-kmipserver-struct) | Returns the raw certificate data in DER format. |
| [certificate_handle](#certificate_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [compression_level](#compression_level-property-kmipserver-struct) | The default compression level to use. |
| [external_crypto_async_document_id](#external_crypto_async_document_id-property-kmipserver-struct) | Specifies an optional document ID for SignAsyncBegin() and SignAsyncEnd() calls. |
| [external_crypto_custom_params](#external_crypto_custom_params-property-kmipserver-struct) | Custom parameters to be passed to the signing service (uninterpreted). |
| [external_crypto_data](#external_crypto_data-property-kmipserver-struct) | Additional data to be included in the async state and mirrored back by the requestor. |
| [external_crypto_external_hash_calculation](#external_crypto_external_hash_calculation-property-kmipserver-struct) | Specifies whether the message hash is to be calculated at the external endpoint. |
| [external_crypto_hash_algorithm](#external_crypto_hash_algorithm-property-kmipserver-struct) | Specifies the request's signature hash algorithm. |
| [external_crypto_key_id](#external_crypto_key_id-property-kmipserver-struct) | The ID of the pre-shared key used for DC request authentication. |
| [external_crypto_key_secret](#external_crypto_key_secret-property-kmipserver-struct) | The pre-shared key used for DC request authentication. |
| [external_crypto_method](#external_crypto_method-property-kmipserver-struct) | Specifies the asynchronous signing method. |
| [external_crypto_mode](#external_crypto_mode-property-kmipserver-struct) | Specifies the external cryptography mode. |
| [external_crypto_public_key_algorithm](#external_crypto_public_key_algorithm-property-kmipserver-struct) | Provide the public key algorithm here if the certificate is not available on the pre-signing stage. |
| [fips_mode](#fips_mode-property-kmipserver-struct) | Reserved. |
| [handshake_timeout](#handshake_timeout-property-kmipserver-struct) | Specifies the handshake timeout in milliseconds. |
| [host](#host-property-kmipserver-struct) | Specifies the host name of the KMIP server. |
| [key_algorithm](#key_algorithm-property-kmipserver-struct) | The algorithm of the cryptographic key. |
| [key_bits](#key_bits-property-kmipserver-struct) | The length of the key in bits. |
| [key_curve](#key_curve-property-kmipserver-struct) | This property specifies the name of the curve the EC key is built on. |
| [key_exportable](#key_exportable-property-kmipserver-struct) | Returns True if the key is exportable (can be serialized into an array of bytes), and False otherwise. |
| [key_fingerprint](#key_fingerprint-property-kmipserver-struct) | Contains the fingerprint (a hash imprint) of this key. |
| [key_handle](#key_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [key_id](#key_id-property-kmipserver-struct) | Provides access to a storage-specific key identifier. |
| [key_iv](#key_iv-property-kmipserver-struct) | The initialization vector (IV) of a symmetric key. |
| [key_nonce](#key_nonce-property-kmipserver-struct) | A nonce value associated with a key. |
| [key_private](#key_private-property-kmipserver-struct) | Returns True if the object hosts a private key, and False otherwise. |
| [key_public](#key_public-property-kmipserver-struct) | Returns True if the object hosts a public key, and False otherwise. |
| [key_subject](#key_subject-property-kmipserver-struct) | Returns the key subject. |
| [key_symmetric](#key_symmetric-property-kmipserver-struct) | Returns True if the object contains a symmetric key, and False otherwise. |
| [key_valid](#key_valid-property-kmipserver-struct) | Returns True if this key is valid. |
| [key_value](#key_value-property-kmipserver-struct) | The byte array representation of the key value. |
| [pinned_client_aead_cipher](#pinned_client_aead_cipher-property-kmipserver-struct) | Indicates whether the encryption algorithm used is an AEAD cipher. |
| [pinned_client_chain_validation_details](#pinned_client_chain_validation_details-property-kmipserver-struct) | The details of a certificate chain validation outcome. |
| [pinned_client_chain_validation_result](#pinned_client_chain_validation_result-property-kmipserver-struct) | The outcome of a certificate chain validation routine. |
| [pinned_client_ciphersuite](#pinned_client_ciphersuite-property-kmipserver-struct) | The cipher suite employed by this connection. |
| [pinned_client_client_authenticated](#pinned_client_client_authenticated-property-kmipserver-struct) | Specifies whether client authentication was performed during this connection. |
| [pinned_client_client_auth_requested](#pinned_client_client_auth_requested-property-kmipserver-struct) | Specifies whether client authentication was requested during this connection. |
| [pinned_client_connection_established](#pinned_client_connection_established-property-kmipserver-struct) | Indicates whether the connection has been established fully. |
| [pinned_client_connection_id](#pinned_client_connection_id-property-kmipserver-struct) | The unique identifier assigned to this connection. |
| [pinned_client_digest_algorithm](#pinned_client_digest_algorithm-property-kmipserver-struct) | The digest algorithm used in a TLS-enabled connection. |
| [pinned_client_encryption_algorithm](#pinned_client_encryption_algorithm-property-kmipserver-struct) | The symmetric encryption algorithm used in a TLS-enabled connection. |
| [pinned_client_exportable](#pinned_client_exportable-property-kmipserver-struct) | Indicates whether a TLS connection uses a reduced-strength exportable cipher. |
| [pinned_client_group](#pinned_client_group-property-kmipserver-struct) | The elliptic curve used in this connection. |
| [pinned_client_id](#pinned_client_id-property-kmipserver-struct) | The client connection's unique identifier. |
| [pinned_client_key_exchange_algorithm](#pinned_client_key_exchange_algorithm-property-kmipserver-struct) | The key exchange algorithm used in a TLS-enabled connection. |
| [pinned_client_key_exchange_key_bits](#pinned_client_key_exchange_key_bits-property-kmipserver-struct) | The length of the key exchange key of a TLS-enabled connection. |
| [pinned_client_pfs_cipher](#pinned_client_pfs_cipher-property-kmipserver-struct) | Indicates whether the chosen ciphersuite provides perfect forward secrecy (PFS). |
| [pinned_client_pre_shared_identity](#pinned_client_pre_shared_identity-property-kmipserver-struct) | Specifies the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated. |
| [pinned_client_pre_shared_identity_hint](#pinned_client_pre_shared_identity_hint-property-kmipserver-struct) | A hint professed by the server to help the client select the PSK identity to use. |
| [pinned_client_public_key_bits](#pinned_client_public_key_bits-property-kmipserver-struct) | The length of the public key. |
| [pinned_client_remote_address](#pinned_client_remote_address-property-kmipserver-struct) | The client's IP address. |
| [pinned_client_remote_port](#pinned_client_remote_port-property-kmipserver-struct) | The remote port of the client connection. |
| [pinned_client_resumed_session](#pinned_client_resumed_session-property-kmipserver-struct) | Indicates whether a TLS-enabled connection was spawned from another TLS connection. |
| [pinned_client_secure_connection](#pinned_client_secure_connection-property-kmipserver-struct) | Indicates whether TLS or SSL is enabled for this connection. |
| [pinned_client_server_authenticated](#pinned_client_server_authenticated-property-kmipserver-struct) | Indicates whether server authentication was performed during a TLS-enabled connection. |
| [pinned_client_signature_algorithm](#pinned_client_signature_algorithm-property-kmipserver-struct) | The signature algorithm used in a TLS handshake. |
| [pinned_client_symmetric_block_size](#pinned_client_symmetric_block_size-property-kmipserver-struct) | The block size of the symmetric algorithm used. |
| [pinned_client_symmetric_key_bits](#pinned_client_symmetric_key_bits-property-kmipserver-struct) | The key length of the symmetric algorithm used. |
| [pinned_client_total_bytes_received](#pinned_client_total_bytes_received-property-kmipserver-struct) | The total number of bytes received over this connection. |
| [pinned_client_total_bytes_sent](#pinned_client_total_bytes_sent-property-kmipserver-struct) | The total number of bytes sent over this connection. |
| [pinned_client_validation_log](#pinned_client_validation_log-property-kmipserver-struct) | Contains the server certificate's chain validation log. |
| [pinned_client_version](#pinned_client_version-property-kmipserver-struct) | Indicates the version of SSL/TLS protocol negotiated during this connection. |
| [pinned_client_cert_count](#pinned_client_cert_count-property-kmipserver-struct) | The number of records in the PinnedClientCert arrays. |
| [pinned_client_cert_bytes](#pinned_client_cert_bytes-property-kmipserver-struct) | Returns the raw certificate data in DER format. |
| [pinned_client_cert_ca_key_id](#pinned_client_cert_ca_key_id-property-kmipserver-struct) | A unique identifier (fingerprint) of the CA certificate's cryptographic key. |
| [pinned_client_cert_fingerprint](#pinned_client_cert_fingerprint-property-kmipserver-struct) | Contains the fingerprint (a hash imprint) of this certificate. |
| [pinned_client_cert_handle](#pinned_client_cert_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [pinned_client_cert_issuer](#pinned_client_cert_issuer-property-kmipserver-struct) | The common name of the certificate issuer (CA), typically a company name. |
| [pinned_client_cert_issuer_rdn](#pinned_client_cert_issuer_rdn-property-kmipserver-struct) | A list of Property=Value pairs that uniquely identify the certificate issuer. |
| [pinned_client_cert_key_algorithm](#pinned_client_cert_key_algorithm-property-kmipserver-struct) | Specifies the public key algorithm of this certificate. |
| [pinned_client_cert_key_bits](#pinned_client_cert_key_bits-property-kmipserver-struct) | Returns the length of the public key in bits. |
| [pinned_client_cert_key_fingerprint](#pinned_client_cert_key_fingerprint-property-kmipserver-struct) | Returns a SHA1 fingerprint of the public key contained in the certificate. |
| [pinned_client_cert_key_usage](#pinned_client_cert_key_usage-property-kmipserver-struct) | Indicates the purposes of the key contained in the certificate, in the form of an OR'ed flag set. |
| [pinned_client_cert_public_key_bytes](#pinned_client_cert_public_key_bytes-property-kmipserver-struct) | Contains the certificate's public key in DER format. |
| [pinned_client_cert_self_signed](#pinned_client_cert_self_signed-property-kmipserver-struct) | Indicates whether the certificate is self-signed (root) or signed by an external CA. |
| [pinned_client_cert_serial_number](#pinned_client_cert_serial_number-property-kmipserver-struct) | Returns the certificate's serial number. |
| [pinned_client_cert_sig_algorithm](#pinned_client_cert_sig_algorithm-property-kmipserver-struct) | Indicates the algorithm that was used by the CA to sign this certificate. |
| [pinned_client_cert_subject](#pinned_client_cert_subject-property-kmipserver-struct) | The common name of the certificate holder, typically an individual's name, a URL, an e-mail address, or a company name. |
| [pinned_client_cert_subject_key_id](#pinned_client_cert_subject_key_id-property-kmipserver-struct) | Contains a unique identifier of the certificate's cryptographic key. |
| [pinned_client_cert_subject_rdn](#pinned_client_cert_subject_rdn-property-kmipserver-struct) | A list of Property=Value pairs that uniquely identify the certificate holder (subject). |
| [pinned_client_cert_valid_from](#pinned_client_cert_valid_from-property-kmipserver-struct) | The time point at which the certificate becomes valid, in UTC. |
| [pinned_client_cert_valid_to](#pinned_client_cert_valid_to-property-kmipserver-struct) | The time point at which the certificate expires, in UTC. |
| [port](#port-property-kmipserver-struct) | A port to listen for connections on. |
| [read_only](#read_only-property-kmipserver-struct) | Controls whether the server works in read-only mode. |
| [session_timeout](#session_timeout-property-kmipserver-struct) | Specifies the default session timeout value in milliseconds. |
| [socket_incoming_speed_limit](#socket_incoming_speed_limit-property-kmipserver-struct) | The maximum number of bytes to read from the socket, per second. |
| [socket_local_address](#socket_local_address-property-kmipserver-struct) | The local network interface to bind the socket to. |
| [socket_local_port](#socket_local_port-property-kmipserver-struct) | The local port number to bind the socket to. |
| [socket_outgoing_speed_limit](#socket_outgoing_speed_limit-property-kmipserver-struct) | The maximum number of bytes to write to the socket, per second. |
| [socket_timeout](#socket_timeout-property-kmipserver-struct) | The maximum period of waiting, in milliseconds, after which the socket operation is considered unsuccessful. |
| [socket_use_ipv6](#socket_use_ipv6-property-kmipserver-struct) | Enables or disables IP protocol version 6. |
| [storage_file_name](#storage_file_name-property-kmipserver-struct) | A path to the KMIP object database. |
| [tls_server_cert_count](#tls_server_cert_count-property-kmipserver-struct) | The number of records in the TLSServerCert arrays. |
| [tls_server_cert_bytes](#tls_server_cert_bytes-property-kmipserver-struct) | Returns the raw certificate data in DER format. |
| [tls_server_cert_handle](#tls_server_cert_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [tls_auto_validate_certificates](#tls_auto_validate_certificates-property-kmipserver-struct) | Specifies whether server-side TLS certificates should be validated automatically using internal validation rules. |
| [tls_base_configuration](#tls_base_configuration-property-kmipserver-struct) | Selects the base configuration for the TLS settings. |
| [tls_ciphersuites](#tls_ciphersuites-property-kmipserver-struct) | A list of ciphersuites separated with commas or semicolons. |
| [tls_client_auth](#tls_client_auth-property-kmipserver-struct) | Enables or disables certificate-based client authentication. |
| [tls_extensions](#tls_extensions-property-kmipserver-struct) | Provides access to TLS extensions. |
| [tls_force_resume_if_destination_changes](#tls_force_resume_if_destination_changes-property-kmipserver-struct) | Whether to force TLS session resumption when the destination address changes. |
| [tls_groups](#tls_groups-property-kmipserver-struct) | Specifies a list of key exchange groups to attempt during the TLS key exchange. |
| [tls_pre_shared_identity](#tls_pre_shared_identity-property-kmipserver-struct) | Defines the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated. |
| [tls_pre_shared_key](#tls_pre_shared_key-property-kmipserver-struct) | Contains the pre-shared key for the PSK (Pre-Shared Key) key-exchange mechanism, encoded with base16. |
| [tls_pre_shared_key_ciphersuite](#tls_pre_shared_key_ciphersuite-property-kmipserver-struct) | Defines the ciphersuite used for PSK (Pre-Shared Key) negotiation. |
| [tls_renegotiation_attack_prevention_mode](#tls_renegotiation_attack_prevention_mode-property-kmipserver-struct) | Selects the renegotiation attack prevention mechanism. |
| [tls_revocation_check](#tls_revocation_check-property-kmipserver-struct) | Specifies the kind(s) of revocation check to perform. |
| [tls_ssl_options](#tls_ssl_options-property-kmipserver-struct) | Various SSL (TLS) protocol options, set of cssloExpectShutdownMessage 0x001 Wait for the close-notify message when shutting down the connection cssloOpenSSLDTLSWorkaround 0x002 (DEPRECATED) Use a DTLS version workaround when talking to very old OpenSSL versions cssloDisableKexLengthAlignment 0x004 Do not align the client-side PMS by the RSA modulus size. |
| [tls_mode](#tls_mode-property-kmipserver-struct) | Specifies the TLS mode to use. |
| [tls_use_extended_master_secret](#tls_use_extended_master_secret-property-kmipserver-struct) | Enables the Extended Master Secret Extension, as defined in RFC 7627. |
| [tls_use_session_resumption](#tls_use_session_resumption-property-kmipserver-struct) | Enables or disables the TLS session resumption capability. |
| [tls_versions](#tls_versions-property-kmipserver-struct) | The SSL/TLS versions to enable by default. |
| [use_chunked_transfer](#use_chunked_transfer-property-kmipserver-struct) | Enables chunked transfer. |
| [use_compression](#use_compression-property-kmipserver-struct) | Enables or disables server-side compression. |
| [use_http](#use_http-property-kmipserver-struct) | Specifies whether the server should use HTTP instead of KMIP-over-TCP/TLS. |
| [user_count](#user_count-property-kmipserver-struct) | The number of records in the User arrays. |
| [user_associated_data](#user_associated_data-property-kmipserver-struct) | Contains the user's Associated Data when SSH AEAD (Authenticated Encryption with Associated Data) algorithm is used. |
| [user_base_path](#user_base_path-property-kmipserver-struct) | Base path for this user in the server's file system. |
| [user_certificate](#user_certificate-property-kmipserver-struct) | Contains the user's certificate. |
| [user_data](#user_data-property-kmipserver-struct) | Contains uninterpreted user-defined data that should be associated with the user account, such as comments or custom settings. |
| [user_email](#user_email-property-kmipserver-struct) | The user's email address. |
| [user_handle](#user_handle-property-kmipserver-struct) | Allows to get or set a 'handle', a unique identifier of the underlying property object. |
| [user_hash_algorithm](#user_hash_algorithm-property-kmipserver-struct) | Specifies the hash algorithm used to generate TOTP (Time-based One-Time Passwords) passwords for this user. |
| [user_incoming_speed_limit](#user_incoming_speed_limit-property-kmipserver-struct) | Specifies the incoming speed limit for this user. |
| [user_otp_algorithm](#user_otp_algorithm-property-kmipserver-struct) | The algorithm used to generate one-time passwords (OTP) for this user, either HOTP (Hash-based OTP) or TOTP (Time-based OTP). |
| [user_otp_len](#user_otp_len-property-kmipserver-struct) | Specifies the length of the user's OTP password. |
| [user_otp_value](#user_otp_value-property-kmipserver-struct) | The user's time interval (TOTP) or Counter (HOTP). |
| [user_outgoing_speed_limit](#user_outgoing_speed_limit-property-kmipserver-struct) | Specifies the outgoing speed limit for this user. |
| [user_password](#user_password-property-kmipserver-struct) | The user's authentication password. |
| [user_shared_secret](#user_shared_secret-property-kmipserver-struct) | Contains the user's secret key, which is essentially a shared secret between the client and server. |
| [user_ssh_key](#user_ssh_key-property-kmipserver-struct) | Contains the user's SSH key. |
| [username](#username-property-kmipserver-struct) | The registered name (login) of the user. |

## Method List

*The following is the full list of the methods of the struct with short descriptions. Click on the links for further details.*

|  |  |
| --- | --- |
| [cleanup](#cleanup-method-kmipserver-struct) | Cleans up the server environment by purging expired sessions and cleaning caches. |
| [config](#config-method-kmipserver-struct) | Sets or retrieves a configuration setting. |
| [do_action](#do_action-method-kmipserver-struct) | Performs an additional action. |
| [drop_client](#drop_client-method-kmipserver-struct) | Terminates a client connection. |
| [get_client_cert](#get_client_cert-method-kmipserver-struct) | Populates the per-connection certificate object. |
| [get_client_key](#get_client_key-method-kmipserver-struct) | Populates the per-connection key object. |
| [get_request_header](#get_request_header-method-kmipserver-struct) | Returns a request header value. |
| [get_response_header](#get_response_header-method-kmipserver-struct) | Returns a response header value. |
| [list_clients](#list_clients-method-kmipserver-struct) | Enumerates the connected clients. |
| [pin_client](#pin_client-method-kmipserver-struct) | Takes a snapshot of the connection's properties. |
| [process_generic_request](#process_generic_request-method-kmipserver-struct) | Processes a generic HTTP request. |
| [reset](#reset-method-kmipserver-struct) | Resets the struct settings. |
| [set_client_bytes](#set_client_bytes-method-kmipserver-struct) | Commits a data buffer to the connection. |
| [set_client_cert](#set_client_cert-method-kmipserver-struct) | Commits the per-connection certificate object to the connection context. |
| [set_client_key](#set_client_key-method-kmipserver-struct) | Commits the per-connection key object to the connection context. |
| [set_response_header](#set_response_header-method-kmipserver-struct) | Sets a response header. |
| [start](#start-method-kmipserver-struct) | Start the KMIP server. |
| [stop](#stop-method-kmipserver-struct) | Stops the KMIP server. |

## Event List

*The following is the full list of the events fired by the struct with short descriptions. Click on the links for further details.*

|  |  |
| --- | --- |
| [on_accept](#on_accept-event-kmipserver-struct) | Reports an incoming connection. |
| [on_activate_object](#on_activate_object-event-kmipserver-struct) | Notifies the application about the object activation request. |
| [on_add](#on_add-event-kmipserver-struct) | Passes the certificate import request to the application. |
| [on_add_key](#on_add_key-event-kmipserver-struct) | Expects the application to handle the key import request. |
| [on_after_add](#on_after_add-event-kmipserver-struct) | Notifies the application about completion of the certificate import operation. |
| [on_after_add_key](#on_after_add_key-event-kmipserver-struct) | Reports the completion of the key import procedure. |
| [on_after_browse](#on_after_browse-event-kmipserver-struct) | KMIP server uses this event to notify the application about the completion of the browsing (attribute request) operation. |
| [on_after_decrypt](#on_after_decrypt-event-kmipserver-struct) | Notifies the application about completion of the decryption call. |
| [on_after_derive_key](#on_after_derive_key-event-kmipserver-struct) | Notifies the application about completion of the key derivation request. |
| [on_after_edit](#on_after_edit-event-kmipserver-struct) | Notifies the application of completion of the object editing operation. |
| [on_after_encrypt](#on_after_encrypt-event-kmipserver-struct) | Notifies the application about the completion of the encryption call. |
| [on_after_generate](#on_after_generate-event-kmipserver-struct) | Signifies completion of certificate generation. |
| [on_after_generate_key](#on_after_generate_key-event-kmipserver-struct) | Notifies the application of the completion of key generation procedure. |
| [on_after_generate_key_pair](#on_after_generate_key_pair-event-kmipserver-struct) | Notifies the application of the completion of keypair generation. |
| [on_after_hash](#on_after_hash-event-kmipserver-struct) | Notifies the application about completion of the hashing call. |
| [on_after_list](#on_after_list-event-kmipserver-struct) | Notifies the application about completion of the list command. |
| [on_after_obtain_lease](#on_after_obtain_lease-event-kmipserver-struct) | Reports the completion of lease allocation operation. |
| [on_after_read_object](#on_after_read_object-event-kmipserver-struct) | Notifies the application of the completion of the read operation on the object. |
| [on_after_re_certify](#on_after_re_certify-event-kmipserver-struct) | Notifies the application about the completion of the re-certify operation. |
| [on_after_re_key](#on_after_re_key-event-kmipserver-struct) | Notifies the application about the completion of the re-key operation. |
| [on_after_rekey_key_pair](#on_after_rekey_key_pair-event-kmipserver-struct) | Notifies the application about the completion of the re-key keypair operation. |
| [on_after_remove_object](#on_after_remove_object-event-kmipserver-struct) | Notifies the application about completion of the object removal request. |
| [on_after_sign](#on_after_sign-event-kmipserver-struct) | Notifies the application of completion of a signing operation. |
| [on_after_verify](#on_after_verify-event-kmipserver-struct) | Notifies the application about completion of the Verify operation. |
| [on_after_verify_hash](#on_after_verify_hash-event-kmipserver-struct) | Notifies the application about completion of the hash verification. |
| [on_archive_object](#on_archive_object-event-kmipserver-struct) | Notifies the application about the received object archival request. |
| [on_auth_attempt](#on_auth_attempt-event-kmipserver-struct) | Fires when a connected client makes an authentication attempt. |
| [on_before_add](#on_before_add-event-kmipserver-struct) | Fires when a certificate import request is received from a client. |
| [on_before_add_key](#on_before_add_key-event-kmipserver-struct) | Fires when a key import request is received from the client. |
| [on_before_browse](#on_before_browse-event-kmipserver-struct) | Notifies the application about the browse request being received. |
| [on_before_decrypt](#on_before_decrypt-event-kmipserver-struct) | Notifies the application about the initiation of the decryption operation. |
| [on_before_derive_key](#on_before_derive_key-event-kmipserver-struct) | Fires when a derive key request is received. |
| [on_before_edit](#on_before_edit-event-kmipserver-struct) | Notifies the application about the start of the object editing operation. |
| [on_before_encrypt](#on_before_encrypt-event-kmipserver-struct) | Notifies the application about the initiation of an encryption operation. |
| [on_before_generate](#on_before_generate-event-kmipserver-struct) | Fires when a certificate generation request is received. |
| [on_before_generate_key](#on_before_generate_key-event-kmipserver-struct) | Fires when a key generation request is received. |
| [on_before_generate_key_pair](#on_before_generate_key_pair-event-kmipserver-struct) | Fires when a key generation request is received. |
| [on_before_hash](#on_before_hash-event-kmipserver-struct) | Notifies the application about the initiation of the hashing operation. |
| [on_before_list](#on_before_list-event-kmipserver-struct) | Notifies the application about the initiation of the list operation. |
| [on_before_obtain_lease](#on_before_obtain_lease-event-kmipserver-struct) | Notifies the application about the client requesting an object lease. |
| [on_before_read_object](#on_before_read_object-event-kmipserver-struct) | Notifies the application about the start of the object reading request. |
| [on_before_re_certify](#on_before_re_certify-event-kmipserver-struct) | Notifies the application about a re-certification request. |
| [on_before_re_key](#on_before_re_key-event-kmipserver-struct) | Notifies the application about a re-key request received. |
| [on_before_rekey_key_pair](#on_before_rekey_key_pair-event-kmipserver-struct) | Notifies the application about a keypair re-key request received. |
| [on_before_remove_object](#on_before_remove_object-event-kmipserver-struct) | Notifies the application about an incoming Remove Object request. |
| [on_before_sign](#on_before_sign-event-kmipserver-struct) | Notifies the application about the initiation of a signing operation. |
| [on_before_verify](#on_before_verify-event-kmipserver-struct) | Notifies the application about the initiation of the verify operation. |
| [on_before_verify_hash](#on_before_verify_hash-event-kmipserver-struct) | Notifies the application about the initiation of the hash verification operation. |
| [on_cancel](#on_cancel-event-kmipserver-struct) | Reports a cancellation request received from the client. |
| [on_check](#on_check-event-kmipserver-struct) | Notifies the application about a Check request received. |
| [on_connect](#on_connect-event-kmipserver-struct) | Reports an accepted connection. |
| [on_decrypt](#on_decrypt-event-kmipserver-struct) | Instructs the application to decrypt a chunk of data. |
| [on_delete_attribute](#on_delete_attribute-event-kmipserver-struct) | Instructs the application to delete an object attribute. |
| [on_derive_key](#on_derive_key-event-kmipserver-struct) | Notifies the application of key derivation request. |
| [on_disconnect](#on_disconnect-event-kmipserver-struct) | Fires to report a disconnected client. |
| [on_encrypt](#on_encrypt-event-kmipserver-struct) | Instructs the application to encrypt a chunk of data. |
| [on_error](#on_error-event-kmipserver-struct) | Information about errors during data delivery. |
| [on_external_sign](#on_external_sign-event-kmipserver-struct) | Handles remote or external signing initiated by the server protocol. |
| [on_generate](#on_generate-event-kmipserver-struct) | Notifies the application about an incoming Generate request. |
| [on_generate_key](#on_generate_key-event-kmipserver-struct) | Notifies the application about an incoming Generate request. |
| [on_generate_key_pair](#on_generate_key_pair-event-kmipserver-struct) | Notifies the application about an incoming Generate request. |
| [on_get_usage_allocation](#on_get_usage_allocation-event-kmipserver-struct) | Notifies the application about an incoming Get Usage Allocation request. |
| [on_hash](#on_hash-event-kmipserver-struct) | Instructs the application to update the current hashing operation. |
| [on_headers_prepared](#on_headers_prepared-event-kmipserver-struct) | Fires when the response headers have been formed and are ready to be sent to the server. |
| [on_kmip_auth_attempt](#on_kmip_auth_attempt-event-kmipserver-struct) | Fires when a connected client makes an authentication attempt. |
| [on_list](#on_list-event-kmipserver-struct) | Instructs the application to return the list of objects that match the specified criteria. |
| [on_list_attributes](#on_list_attributes-event-kmipserver-struct) | Requests a list of object attribute names from the application. |
| [on_notification](#on_notification-event-kmipserver-struct) | This event notifies the application about an underlying control flow event. |
| [on_obtain_lease](#on_obtain_lease-event-kmipserver-struct) | Lets the application handle the lease request. |
| [on_operation_attempt](#on_operation_attempt-event-kmipserver-struct) | Fires when a request is received from the client. |
| [on_poll](#on_poll-event-kmipserver-struct) | Notifies the application about the received Poll request. |
| [on_read_attribute](#on_read_attribute-event-kmipserver-struct) | Requests an object attribute value from the application. |
| [on_read_object](#on_read_object-event-kmipserver-struct) | Requests the details of the object from the application. |
| [on_re_certify](#on_re_certify-event-kmipserver-struct) | Notifies the application about an incoming re-certification request. |
| [on_recover_object](#on_recover_object-event-kmipserver-struct) | Notifies the application about an incoming Recover Object request. |
| [on_re_key](#on_re_key-event-kmipserver-struct) | Notifies the application about an incoming re-key request. |
| [on_rekey_key_pair](#on_rekey_key_pair-event-kmipserver-struct) | Notifies the application about an incoming re-key request. |
| [on_remove_object](#on_remove_object-event-kmipserver-struct) | Notifies the application about the object deletion request. |
| [on_request](#on_request-event-kmipserver-struct) | Notifies the application about KMIP requests being received. |
| [on_response](#on_response-event-kmipserver-struct) | Notifies the application about KMIP responses being sent back. |
| [on_revoke_object](#on_revoke_object-event-kmipserver-struct) | Instructs the application to revoke an object. |
| [on_rng_generate](#on_rng_generate-event-kmipserver-struct) | Asks the application for another block of random numbers. |
| [on_rng_seed](#on_rng_seed-event-kmipserver-struct) | Tells the application to seed the random number generator. |
| [on_set_attribute](#on_set_attribute-event-kmipserver-struct) | Passes a set-attribute request to the application. |
| [on_sign](#on_sign-event-kmipserver-struct) | Instructs the application to sign data with a private key. |
| [on_tls_cert_validate](#on_tls_cert_validate-event-kmipserver-struct) | Fires when a client certificate needs to be validated. |
| [on_tls_established](#on_tls_established-event-kmipserver-struct) | Reports the setup of a TLS session. |
| [on_tls_handshake](#on_tls_handshake-event-kmipserver-struct) | Fires when a newly established client connection initiates a TLS handshake. |
| [on_tls_psk](#on_tls_psk-event-kmipserver-struct) | Requests a pre-shared key for TLS-PSK. |
| [on_tls_shutdown](#on_tls_shutdown-event-kmipserver-struct) | Reports closure of a TLS session. |
| [on_validate_chain](#on_validate_chain-event-kmipserver-struct) | Passes the chain validation request to the application. |
| [on_verify](#on_verify-event-kmipserver-struct) | KMIPServer fires this event to notify the application about a verification operation request, and expects the application to perform it. |
| [on_verify_hash](#on_verify_hash-event-kmipserver-struct) | Delegates the hash verification operation to a custom handler. |

## Config Settings

*The following is a list of config settings for the struct with short descriptions. Click on the links for further details.*

|  |  |
| --- | --- |
| [AllowKeepAlive](#AllowKeepAlive) | Enables or disables keep-alive mode. |
| [AllowOptionsResponseWithoutAuth](#AllowOptionsResponseWithoutAuth) | Enables unauthenticated responses to OPTIONS requests. |
| [AuthBasic](#AuthBasic) | Turns on/off the basic authentication. |
| [AuthDigest](#AuthDigest) | Turns on/off the digest authentication. |
| [AuthDigestExpire](#AuthDigestExpire) | Specifies digest expiration time for digest authentication. |
| [AuthRealm](#AuthRealm) | Specifies authentication realm for digest and NTLM authentication. |
| [CompressionLevel](#CompressionLevel) | The default compression level to use. |
| [DualStack](#DualStack) | Allows the use of ip4 and ip6 simultaneously. |
| [HomePage](#HomePage) | Specifies the home page resource name. |
| [MajorProtocolVersion](#MajorProtocolVersion) | Major protocol version on the KMIP server. |
| [MinorProtocolVersion](#MinorProtocolVersion) | Minor protocol version on the KMIP server. |
| [OAuthAllowAccessByDefault](#OAuthAllowAccessByDefault) | Specifies whether access to a resource is allowed by default. |
| [OAuthAutoValidateTokens](#OAuthAutoValidateTokens) | Allows to validate OAuth 2.0 access tokens automatically. |
| [OAuthIntrospectionClientID](#OAuthIntrospectionClientID) | Specifies a client ID on the authentication service. |
| [OAuthIntrospectionClientSecret](#OAuthIntrospectionClientSecret) | Specifies a client secret on the authentication service. |
| [OAuthIntrospectionURL](#OAuthIntrospectionURL) | Specifies the URL to be used to introspect access tokens. |
| [OAuthTokenValidationKeys](#OAuthTokenValidationKeys) | Specifies JW keys in JSON format for validating access token signatures. |
| [RequestFilter](#RequestFilter) | The request string modifier. |
| [SSLMode](#SSLMode) | Whether to establish a TLS-secured connection. |
| [UseChunkedTransfer](#UseChunkedTransfer) | Whether to use chunked encoding of the data. |
| [UseChunkedTransfer](#UseChunkedTransfer) | Enables chunked transfer. |
| [UseCompression](#UseCompression) | Whether to use GZip compression. |
| [UseCompression](#UseCompression) | Enables or disables server-side compression. |
| [ASN1UseGlobalTagCache](#ASN1UseGlobalTagCache) | Controls whether ASN.1 module should use a global object cache. |
| [AssignSystemSmartCardPins](#AssignSystemSmartCardPins) | Specifies whether CSP-level PINs should be assigned to CNG keys. |
| [CheckKeyIntegrityBeforeUse](#CheckKeyIntegrityBeforeUse) | Enables or disable private key integrity check before use. |
| [CookieCaching](#CookieCaching) | Specifies whether a cookie cache should be used for HTTP(S) transports. |
| [Cookies](#Cookies) | Gets or sets local cookies for the struct. |
| [DefDeriveKeyIterations](#DefDeriveKeyIterations) | Specifies the default key derivation algorithm iteration count. |
| [DNSLocalSuffix](#DNSLocalSuffix) | The suffix to assign for TLD names. |
| [EnableClientSideSSLFFDHE](#EnableClientSideSSLFFDHE) | Enables or disables finite field DHE key exchange support in TLS clients. |
| [EnableSSHMLKEM](#EnableSSHMLKEM) | Enables support for ML-KEM/hybrid key exchange algorithms in SSH client and server structs. |
| [EnableTLSMLKEM](#EnableTLSMLKEM) | Enables support for ML-KEM and hybrid groups in TLS client and server structs. |
| [GlobalCookies](#GlobalCookies) | Gets or sets global cookies for all the HTTP transports. |
| [HardwareCryptoUsePolicy](#HardwareCryptoUsePolicy) | The hardware crypto usage policy. |
| [HttpUserAgent](#HttpUserAgent) | Specifies the user agent name to be used by all HTTP clients. |
| [HttpVersion](#HttpVersion) | The HTTP version to use in any inner HTTP client structs created. |
| [IgnoreExpiredMSCTLSigningCert](#IgnoreExpiredMSCTLSigningCert) | Whether to tolerate the expired Windows Update signing certificate. |
| [ListDelimiter](#ListDelimiter) | The delimiter character for multi-element lists. |
| [LogDestination](#LogDestination) | Specifies the debug log destination. |
| [LogDetails](#LogDetails) | Specifies the debug log details to dump. |
| [LogFile](#LogFile) | Specifies the debug log filename. |
| [LogFilters](#LogFilters) | Specifies the debug log filters. |
| [LogFlushMode](#LogFlushMode) | Specifies the log flush mode. |
| [LogLevel](#LogLevel) | Specifies the debug log level. |
| [LogMaxEventCount](#LogMaxEventCount) | Specifies the maximum number of events to cache before further action is taken. |
| [LogRotationMode](#LogRotationMode) | Specifies the log rotation mode. |
| [MaxASN1BufferLength](#MaxASN1BufferLength) | Specifies the maximal allowed length for ASN.1 primitive tag data. |
| [MaxASN1TreeDepth](#MaxASN1TreeDepth) | Specifies the maximal depth for processed ASN.1 trees. |
| [OCSPHashAlgorithm](#OCSPHashAlgorithm) | Specifies the hash algorithm to be used to identify certificates in OCSP requests. |
| [OldClientSideRSAFallback](#OldClientSideRSAFallback) | Specifies whether the SSH client should use a SHA1 fallback. |
| [PKICache](#PKICache) | Specifies which PKI elements (certificates, CRLs, OCSP responses) should be cached. |
| [PKICachePath](#PKICachePath) | Specifies the file system path where cached PKI data is stored. |
| [ProductVersion](#ProductVersion) | Returns the version of the SecureBlackbox library. |
| [ServerSSLDHKeyLength](#ServerSSLDHKeyLength) | Sets the size of the TLS DHE key exchange group. |
| [StaticDNS](#StaticDNS) | Specifies whether static DNS rules should be used. |
| [StaticIPAddress\[domain\]](#StaticIPAddress[domain]) | Gets or sets an IP address for the specified domain name. |
| [StaticIPAddresses](#StaticIPAddresses) | Gets or sets all the static DNS rules. |
| [Tag](#Tag) | Allows to store any custom data. |
| [TLSSessionGroup](#TLSSessionGroup) | Specifies the group name of TLS sessions to be used for session resumption. |
| [TLSSessionLifetime](#TLSSessionLifetime) | Specifies lifetime in seconds of the cached TLS session. |
| [TLSSessionPurgeInterval](#TLSSessionPurgeInterval) | Specifies how often the session cache should remove the expired TLS sessions. |
| [UseCRLObjectCaching](#UseCRLObjectCaching) | Specifies whether reuse of loaded CRL objects is enabled. |
| [UseInternalRandom](#UseInternalRandom) | Switches between SecureBlackbox-own and platform PRNGs. |
| [UseLegacyAdESValidation](#UseLegacyAdESValidation) | Enables legacy AdES validation mode. |
| [UseOCSPResponseObjectCaching](#UseOCSPResponseObjectCaching) | Specifies whether reuse of loaded OCSP response objects is enabled. |
| [UseOwnDNSResolver](#UseOwnDNSResolver) | Specifies whether the client structs should use own DNS resolver. |
| [UseSharedSystemStorages](#UseSharedSystemStorages) | Specifies whether the validation engine should use a global per-process copy of the system certificate stores. |
| [UseSystemNativeSizeCalculation](#UseSystemNativeSizeCalculation) | An internal CryptoAPI access tweak. |
| [UseSystemOAEPAndPSS](#UseSystemOAEPAndPSS) | Enforces or disables the use of system-driven RSA OAEP and PSS computations. |
| [UseSystemRandom](#UseSystemRandom) | Enables or disables the use of the OS PRNG. |
| [XMLRDNDescriptorName\[OID\]](#XMLRDNDescriptorName[OID]) | Defines an OID mapping to descriptor names for the certificate's IssuerRDN or SubjectRDN. |
| [XMLRDNDescriptorPriority\[OID\]](#XMLRDNDescriptorPriority[OID]) | Specifies the priority of descriptor names associated with a specific OID. |
| [XMLRDNDescriptorReverseOrder](#XMLRDNDescriptorReverseOrder) | Specifies whether to reverse the order of descriptors in RDN. |
| [XMLRDNDescriptorSeparator](#XMLRDNDescriptorSeparator) | Specifies the separator used between descriptors in RDN. |

# active property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates if the KMIP server is active and listening to incoming connections.

## Syntax

*Rust Syntax*

```text
fn active(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Check this property to find out if the KMIP server is in an active state. Use [start](#start-method-kmipserver-struct) and [stop](#stop-method-kmipserver-struct) methods to launch and stop the server.

This property is read-only.

## Data Type

bool

# allow_keep_alive property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables or disables keep-alive mode.

## Syntax

*Rust Syntax*

```text
fn allow_keep_alive(&self ) -> Result<bool, SecureBlackboxError> fn set_allow_keep_alive(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

true

## Remarks

Use this property to enable or disable the keep-alive connection mode. If keep-alive is enabled, clients that choose to use it may stay connected for a while.

## Data Type

bool

# auth_realm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies authentication realm for digest and NTLM authentication.

## Syntax

*Rust Syntax*

```text
fn auth_realm(&self ) -> Result<String, SecureBlackboxError> fn set_auth_realm(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_auth_realm_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

"SecureBlackbox"

## Remarks

Specifies authentication realm for digest and NTLM authentication types.

## Data Type

String

# auth_types property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Defines allowed HTTP authentication types.

## Syntax

*Rust Syntax*

```text
fn auth_types(&self ) -> Result<i32, SecureBlackboxError> fn set_auth_types(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Use this property to define which authentication types the component should support or attempt to use by enabling the relevant bitmask flags:

|  |  |  |
| --- | --- | --- |
| haBasic | 0x01 | Basic authentication |
| haDigest | 0x02 | Digest authentication (RFC 2617) |
| haNTLM | 0x04 | Windows NTLM authentication |
| haKerberos | 0x08 | Kerberos (Negotiate) authentication |
| haOAuth2 | 0x10 | OAuth2 authentication |

## Data Type

i32

# bound_port property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates the bound listening port.

## Syntax

*Rust Syntax*

```text
fn bound_port(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

Check this property to find out the port that has been allocated to the server by the system. The bound port always equals [port](#port-property-kmipserver-struct) if it is provided, or is allocated dynamically if configured to fall in the range between port_range_from and port_range_to constraints.

This property is read-only.

## Data Type

i32

# ca_cert_bytes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the raw certificate data in DER format.

## Syntax

*Rust Syntax*

```text
fn ca_cert_bytes(&self ) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Returns the raw certificate data in DER format.

This property is read-only.

## Data Type

Vec

# ca_cert_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn ca_cert_handle(&self ) -> Result<i64, SecureBlackboxError> fn set_ca_cert_handle(&self, value : i64) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

## Data Type

i64

# certificate_bytes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the raw certificate data in DER format.

## Syntax

*Rust Syntax*

```text
fn certificate_bytes(&self ) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Returns the raw certificate data in DER format.

This property is read-only.

## Data Type

Vec

# certificate_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn certificate_handle(&self ) -> Result<i64, SecureBlackboxError> fn set_certificate_handle(&self, value : i64) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

## Data Type

i64

# compression_level property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The default compression level to use.

## Syntax

*Rust Syntax*

```text
fn compression_level(&self ) -> Result<i32, SecureBlackboxError> fn set_compression_level(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

6

## Remarks

Assign this property with the compression level (1 to 9) to apply for gzipped responses. 1 stands for the lightest but fastest compression, and 9 for the best but the slowest.

## Data Type

i32

# external_crypto_async_document_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies an optional document ID for SignAsyncBegin() and SignAsyncEnd() calls.

## Syntax

*Rust Syntax*

```text
fn external_crypto_async_document_id(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_async_document_id(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_async_document_id_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Specifies an optional document ID for SignAsyncBegin() and SignAsyncEnd() calls.

Use this property when working with multi-signature DCAuth requests and responses to uniquely identify documents signed within a larger batch. On the completion stage, this value helps the signing component identify the correct signature in the returned batch of responses.

If using batched requests, make sure to set this property to the same value on both the pre-signing (SignAsyncBegin) and completion (SignAsyncEnd) stages.

## Data Type

String

# external_crypto_custom_params property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Custom parameters to be passed to the signing service (uninterpreted).

## Syntax

*Rust Syntax*

```text
fn external_crypto_custom_params(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_custom_params(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_custom_params_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Custom parameters to be passed to the signing service (uninterpreted).

## Data Type

String

# external_crypto_data property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Additional data to be included in the async state and mirrored back by the requestor.

## Syntax

*Rust Syntax*

```text
fn external_crypto_data(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_data(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_data_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Additional data to be included in the async state and mirrored back by the requestor.

## Data Type

String

# external_crypto_external_hash_calculation property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies whether the message hash is to be calculated at the external endpoint.

## Syntax

*Rust Syntax*

```text
fn external_crypto_external_hash_calculation(&self ) -> Result<bool, SecureBlackboxError> fn set_external_crypto_external_hash_calculation(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Specifies whether the message hash is to be calculated at the external endpoint. Please note that this mode is not supported by the DCAuth struct.

If set to true, the struct will pass a few kilobytes of to-be-signed data from the document to the OnExternalSign event. This only applies when SignExternal() is called.

## Data Type

bool

# external_crypto_hash_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the request's signature hash algorithm.

## Syntax

*Rust Syntax*

```text
fn external_crypto_hash_algorithm(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_hash_algorithm(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_hash_algorithm_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

"SHA256"

## Remarks

Specifies the request's signature hash algorithm.

|  |  |  |
| --- | --- | --- |
| SB_HASH_ALGORITHM_SHA1 | SHA1 |  |
| SB_HASH_ALGORITHM_SHA224 | SHA224 |  |
| SB_HASH_ALGORITHM_SHA256 | SHA256 |  |
| SB_HASH_ALGORITHM_SHA384 | SHA384 |  |
| SB_HASH_ALGORITHM_SHA512 | SHA512 |  |
| SB_HASH_ALGORITHM_MD2 | MD2 |  |
| SB_HASH_ALGORITHM_MD4 | MD4 |  |
| SB_HASH_ALGORITHM_MD5 | MD5 |  |
| SB_HASH_ALGORITHM_RIPEMD160 | RIPEMD160 |  |
| SB_HASH_ALGORITHM_CRC32 | CRC32 |  |
| SB_HASH_ALGORITHM_SSL3 | SSL3 |  |
| SB_HASH_ALGORITHM_GOST_R3411_1994 | GOST1994 |  |
| SB_HASH_ALGORITHM_WHIRLPOOL | WHIRLPOOL |  |
| SB_HASH_ALGORITHM_POLY1305 | POLY1305 |  |
| SB_HASH_ALGORITHM_SHA3_224 | SHA3_224 |  |
| SB_HASH_ALGORITHM_SHA3_256 | SHA3_256 |  |
| SB_HASH_ALGORITHM_SHA3_384 | SHA3_384 |  |
| SB_HASH_ALGORITHM_SHA3_512 | SHA3_512 |  |
| SB_HASH_ALGORITHM_BLAKE2S_128 | BLAKE2S_128 |  |
| SB_HASH_ALGORITHM_BLAKE2S_160 | BLAKE2S_160 |  |
| SB_HASH_ALGORITHM_BLAKE2S_224 | BLAKE2S_224 |  |
| SB_HASH_ALGORITHM_BLAKE2S_256 | BLAKE2S_256 |  |
| SB_HASH_ALGORITHM_BLAKE2B_160 | BLAKE2B_160 |  |
| SB_HASH_ALGORITHM_BLAKE2B_256 | BLAKE2B_256 |  |
| SB_HASH_ALGORITHM_BLAKE2B_384 | BLAKE2B_384 |  |
| SB_HASH_ALGORITHM_BLAKE2B_512 | BLAKE2B_512 |  |
| SB_HASH_ALGORITHM_SHAKE_128 | SHAKE_128 |  |
| SB_HASH_ALGORITHM_SHAKE_256 | SHAKE_256 |  |
| SB_HASH_ALGORITHM_SHAKE_128_LEN | SHAKE_128_LEN |  |
| SB_HASH_ALGORITHM_SHAKE_256_LEN | SHAKE_256_LEN |  |

## Data Type

String

# external_crypto_key_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The ID of the pre-shared key used for DC request authentication.

## Syntax

*Rust Syntax*

```text
fn external_crypto_key_id(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_key_id(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_key_id_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The ID of the pre-shared key used for DC request authentication.

Asynchronous DCAuth-driven communication requires that parties authenticate each other with a secret pre-shared cryptographic key. This provides an extra protection layer for the protocol and diminishes the risk of the private key becoming abused by foreign parties. Use this property to provide the pre-shared key identifier, and use [external_crypto_key_secret](#external_crypto_key_secret-property-kmipserver-struct) to pass the key itself.

The same KeyID/KeySecret pair should be used on the DCAuth side for the signing requests to be accepted.

Note: The KeyID/KeySecret scheme is very similar to the AuthKey scheme used in various Cloud service providers to authenticate users.

Example:

```text
  signer.ExternalCrypto.KeyID = "MainSigningKey";
  signer.ExternalCrypto.KeySecret = "abcdef0123456789";
```

## Data Type

String

# external_crypto_key_secret property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The pre-shared key used for DC request authentication.

## Syntax

*Rust Syntax*

```text
fn external_crypto_key_secret(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_key_secret(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_key_secret_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The pre-shared key used for DC request authentication. This key must be set and match the key used by the DCAuth counterpart for the scheme to work.

Read more about configuring authentication in the [external_crypto_key_id](#external_crypto_key_id-property-kmipserver-struct) topic.

## Data Type

String

# external_crypto_method property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the asynchronous signing method.

## Syntax

*Rust Syntax*

```text
fn external_crypto_method(&self ) -> Result<i32, SecureBlackboxError> fn set_external_crypto_method(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // PKCS11   // PKCS7
```

## Default Value

0

## Remarks

Specifies the asynchronous signing method. This is typically defined by the DC server capabilities and setup.

Available options:

|  |  |
| --- | --- |
| asmdPKCS1 | 0 |
| asmdPKCS7 | 1 |

## Data Type

i32

# external_crypto_mode property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the external cryptography mode.

## Syntax

*Rust Syntax*

```text
fn external_crypto_mode(&self ) -> Result<i32, SecureBlackboxError> fn set_external_crypto_mode(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // Default1   // Disabled2   // Generic3   // DCAuth4   // DCAuthJSON
```

## Default Value

0

## Remarks

Specifies the external cryptography mode.

Available options:

|  |  |
| --- | --- |
| ecmDefault | The default value (0) |
| ecmDisabled | Do not use DC or external signing (1) |
| ecmGeneric | Generic external signing with the OnExternalSign event (2) |
| ecmDCAuth | DCAuth signing (3) |
| ecmDCAuthJSON | DCAuth signing in JSON format (4) |

## Data Type

i32

# external_crypto_public_key_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Provide the public key algorithm here if the certificate is not available on the pre-signing stage.

## Syntax

*Rust Syntax*

```text
fn external_crypto_public_key_algorithm(&self ) -> Result<String, SecureBlackboxError> fn set_external_crypto_public_key_algorithm(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_external_crypto_public_key_algorithm_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Provide the public key algorithm here if the certificate is not available on the pre-signing stage.

|  |  |  |
| --- | --- | --- |
| SB_CERT_ALGORITHM_ID_RSA_ENCRYPTION | rsaEncryption |  |
| SB_CERT_ALGORITHM_MD2_RSA_ENCRYPTION | md2withRSAEncryption |  |
| SB_CERT_ALGORITHM_MD5_RSA_ENCRYPTION | md5withRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA1_RSA_ENCRYPTION | sha1withRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_DSA | id-dsa |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA1 | id-dsa-with-sha1 |  |
| SB_CERT_ALGORITHM_DH_PUBLIC | dhpublicnumber |  |
| SB_CERT_ALGORITHM_SHA224_RSA_ENCRYPTION | sha224WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA256_RSA_ENCRYPTION | sha256WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA384_RSA_ENCRYPTION | sha384WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA512_RSA_ENCRYPTION | sha512WithRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_RSAPSS | id-RSASSA-PSS |  |
| SB_CERT_ALGORITHM_ID_RSAOAEP | id-RSAES-OAEP |  |
| SB_CERT_ALGORITHM_RSASIGNATURE_RIPEMD160 | ripemd160withRSA |  |
| SB_CERT_ALGORITHM_ID_ELGAMAL | elGamal |  |
| SB_CERT_ALGORITHM_SHA1_ECDSA | ecdsa-with-SHA1 |  |
| SB_CERT_ALGORITHM_RECOMMENDED_ECDSA | ecdsa-recommended |  |
| SB_CERT_ALGORITHM_SHA224_ECDSA | ecdsa-with-SHA224 |  |
| SB_CERT_ALGORITHM_SHA256_ECDSA | ecdsa-with-SHA256 |  |
| SB_CERT_ALGORITHM_SHA384_ECDSA | ecdsa-with-SHA384 |  |
| SB_CERT_ALGORITHM_SHA512_ECDSA | ecdsa-with-SHA512 |  |
| SB_CERT_ALGORITHM_EC | id-ecPublicKey |  |
| SB_CERT_ALGORITHM_SPECIFIED_ECDSA | ecdsa-specified |  |
| SB_CERT_ALGORITHM_GOST_R3410_1994 | id-GostR3410-94 |  |
| SB_CERT_ALGORITHM_GOST_R3410_2001 | id-GostR3410-2001 |  |
| SB_CERT_ALGORITHM_GOST_R3411_WITH_R3410_1994 | id-GostR3411-94-with-GostR3410-94 |  |
| SB_CERT_ALGORITHM_GOST_R3411_WITH_R3410_2001 | id-GostR3411-94-with-GostR3410-2001 |  |
| SB_CERT_ALGORITHM_SHA1_ECDSA_PLAIN | ecdsa-plain-SHA1 |  |
| SB_CERT_ALGORITHM_SHA224_ECDSA_PLAIN | ecdsa-plain-SHA224 |  |
| SB_CERT_ALGORITHM_SHA256_ECDSA_PLAIN | ecdsa-plain-SHA256 |  |
| SB_CERT_ALGORITHM_SHA384_ECDSA_PLAIN | ecdsa-plain-SHA384 |  |
| SB_CERT_ALGORITHM_SHA512_ECDSA_PLAIN | ecdsa-plain-SHA512 |  |
| SB_CERT_ALGORITHM_RIPEMD160_ECDSA_PLAIN | ecdsa-plain-RIPEMD160 |  |
| SB_CERT_ALGORITHM_WHIRLPOOL_RSA_ENCRYPTION | whirlpoolWithRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA224 | id-dsa-with-sha224 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA256 | id-dsa-with-sha256 |  |
| SB_CERT_ALGORITHM_SHA3_224_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-512 |  |
| SB_CERT_ALGORITHM_SHA3_224_ECDSA | id-ecdsa-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_ECDSA | id-ecdsa-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_ECDSA | id-ecdsa-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_ECDSA | id-ecdsa-with-sha3-512 |  |
| SB_CERT_ALGORITHM_SHA3_224_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-512 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA3_224 | id-dsa-with-sha3-224 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA3_256 | id-dsa-with-sha3-256 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b512 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_ECDSA | id-ecdsa-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_ECDSA | id-ecdsa-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_ECDSA | id-ecdsa-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_ECDSA | id-ecdsa-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_ECDSA | id-ecdsa-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_ECDSA | id-ecdsa-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_ECDSA | id-ecdsa-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_ECDSA | id-ecdsa-with-blake2b512 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b512 |  |
| SB_CERT_ALGORITHM_ID_DSA_BLAKE2S_224 | id-dsa-with-blake2s224 |  |
| SB_CERT_ALGORITHM_ID_DSA_BLAKE2S_256 | id-dsa-with-blake2s256 |  |
| SB_CERT_ALGORITHM_EDDSA_ED25519 | id-Ed25519 |  |
| SB_CERT_ALGORITHM_EDDSA_ED448 | id-Ed448 |  |
| SB_CERT_ALGORITHM_EDDSA_ED25519_PH | id-Ed25519ph |  |
| SB_CERT_ALGORITHM_EDDSA_ED448_PH | id-Ed448ph |  |
| SB_CERT_ALGORITHM_EDDSA | id-EdDSA |  |
| SB_CERT_ALGORITHM_EDDSA_SIGNATURE | id-EdDSA-sig |  |
| SB_CERT_ALGORITHM_MLDSA_44 | id-ml-dsa-44 |  |
| SB_CERT_ALGORITHM_MLDSA_65 | id-ml-dsa-65 |  |
| SB_CERT_ALGORITHM_MLDSA_87 | id-ml-dsa-87 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_44_SHA512 | id-hash-ml-dsa-44-with-sha512 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_65_SHA512 | id-hash-ml-dsa-65-with-sha512 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_87_SHA512 | id-hash-ml-dsa-87-with-sha512 |  |
| SB_CERT_ALGORITHM_MLKEM_512 | id-ml-kem-512 |  |
| SB_CERT_ALGORITHM_MLKEM_768 | id-ml-kem-768 |  |
| SB_CERT_ALGORITHM_MLKEM_1024 | id-ml-kem-1024 |  |

## Data Type

String

# fips_mode property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reserved.

## Syntax

*Rust Syntax*

```text
fn fips_mode(&self ) -> Result<bool, SecureBlackboxError> fn set_fips_mode(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

This property is reserved for future use.

## Data Type

bool

# handshake_timeout property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the handshake timeout in milliseconds.

## Syntax

*Rust Syntax*

```text
fn handshake_timeout(&self ) -> Result<i32, SecureBlackboxError> fn set_handshake_timeout(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

20000

## Remarks

Use this property to set the TLS handshake timeout.

## Data Type

i32

# host property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the host name of the KMIP server.

## Syntax

*Rust Syntax*

```text
fn host(&self ) -> Result<String, SecureBlackboxError> fn set_host(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_host_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Use this property to specify the address of the KMIP server.

## Data Type

String

# key_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The algorithm of the cryptographic key.

## Syntax

*Rust Syntax*

```text
fn key_algorithm(&self ) -> Result<String, SecureBlackboxError> fn set_key_algorithm(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_key_algorithm_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The algorithm of the cryptographic key. A cryptokey object may hold either symmetric, MAC, or public key. Public key algorithms: RSA, ECDSA, Elgamal, DH, EdDSA, ML-DSA, ML-KEM.

|  |  |  |
| --- | --- | --- |
| SB_SYMMETRIC_ALGORITHM_RC4 | RC4 |  |
| SB_SYMMETRIC_ALGORITHM_DES | DES |  |
| SB_SYMMETRIC_ALGORITHM_3DES | 3DES |  |
| SB_SYMMETRIC_ALGORITHM_RC2 | RC2 |  |
| SB_SYMMETRIC_ALGORITHM_AES128 | AES128 |  |
| SB_SYMMETRIC_ALGORITHM_AES192 | AES192 |  |
| SB_SYMMETRIC_ALGORITHM_AES256 | AES256 |  |
| SB_SYMMETRIC_ALGORITHM_IDENTITY | Identity |  |
| SB_SYMMETRIC_ALGORITHM_BLOWFISH | Blowfish |  |
| SB_SYMMETRIC_ALGORITHM_CAST128 | CAST128 |  |
| SB_SYMMETRIC_ALGORITHM_IDEA | IDEA |  |
| SB_SYMMETRIC_ALGORITHM_TWOFISH | Twofish |  |
| SB_SYMMETRIC_ALGORITHM_TWOFISH128 | Twofish128 |  |
| SB_SYMMETRIC_ALGORITHM_TWOFISH192 | Twofish192 |  |
| SB_SYMMETRIC_ALGORITHM_TWOFISH256 | Twofish256 |  |
| SB_SYMMETRIC_ALGORITHM_CAMELLIA | Camellia |  |
| SB_SYMMETRIC_ALGORITHM_CAMELLIA128 | Camellia128 |  |
| SB_SYMMETRIC_ALGORITHM_CAMELLIA192 | Camellia192 |  |
| SB_SYMMETRIC_ALGORITHM_CAMELLIA256 | Camellia256 |  |
| SB_SYMMETRIC_ALGORITHM_SERPENT | Serpent |  |
| SB_SYMMETRIC_ALGORITHM_SERPENT128 | Serpent128 |  |
| SB_SYMMETRIC_ALGORITHM_SERPENT192 | Serpent192 |  |
| SB_SYMMETRIC_ALGORITHM_SERPENT256 | Serpent256 |  |
| SB_SYMMETRIC_ALGORITHM_SEED | SEED |  |
| SB_SYMMETRIC_ALGORITHM_RABBIT | Rabbit |  |
| SB_SYMMETRIC_ALGORITHM_SYMMETRIC | Generic |  |
| SB_SYMMETRIC_ALGORITHM_GOST_28147_1989 | GOST-28147-1989 |  |
| SB_SYMMETRIC_ALGORITHM_CHACHA20 | ChaCha20 |  |

|  |  |  |
| --- | --- | --- |
| SB_HASH_ALGORITHM_SHA1 | SHA1 |  |
| SB_HASH_ALGORITHM_SHA224 | SHA224 |  |
| SB_HASH_ALGORITHM_SHA256 | SHA256 |  |
| SB_HASH_ALGORITHM_SHA384 | SHA384 |  |
| SB_HASH_ALGORITHM_SHA512 | SHA512 |  |
| SB_HASH_ALGORITHM_MD2 | MD2 |  |
| SB_HASH_ALGORITHM_MD4 | MD4 |  |
| SB_HASH_ALGORITHM_MD5 | MD5 |  |
| SB_HASH_ALGORITHM_RIPEMD160 | RIPEMD160 |  |
| SB_HASH_ALGORITHM_CRC32 | CRC32 |  |
| SB_HASH_ALGORITHM_SSL3 | SSL3 |  |
| SB_HASH_ALGORITHM_GOST_R3411_1994 | GOST1994 |  |
| SB_HASH_ALGORITHM_WHIRLPOOL | WHIRLPOOL |  |
| SB_HASH_ALGORITHM_POLY1305 | POLY1305 |  |
| SB_HASH_ALGORITHM_SHA3_224 | SHA3_224 |  |
| SB_HASH_ALGORITHM_SHA3_256 | SHA3_256 |  |
| SB_HASH_ALGORITHM_SHA3_384 | SHA3_384 |  |
| SB_HASH_ALGORITHM_SHA3_512 | SHA3_512 |  |
| SB_HASH_ALGORITHM_BLAKE2S_128 | BLAKE2S_128 |  |
| SB_HASH_ALGORITHM_BLAKE2S_160 | BLAKE2S_160 |  |
| SB_HASH_ALGORITHM_BLAKE2S_224 | BLAKE2S_224 |  |
| SB_HASH_ALGORITHM_BLAKE2S_256 | BLAKE2S_256 |  |
| SB_HASH_ALGORITHM_BLAKE2B_160 | BLAKE2B_160 |  |
| SB_HASH_ALGORITHM_BLAKE2B_256 | BLAKE2B_256 |  |
| SB_HASH_ALGORITHM_BLAKE2B_384 | BLAKE2B_384 |  |
| SB_HASH_ALGORITHM_BLAKE2B_512 | BLAKE2B_512 |  |
| SB_HASH_ALGORITHM_SHAKE_128 | SHAKE_128 |  |
| SB_HASH_ALGORITHM_SHAKE_256 | SHAKE_256 |  |
| SB_HASH_ALGORITHM_SHAKE_128_LEN | SHAKE_128_LEN |  |
| SB_HASH_ALGORITHM_SHAKE_256_LEN | SHAKE_256_LEN |  |

## Data Type

String

# key_bits property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The length of the key in bits.

## Syntax

*Rust Syntax*

```text
fn key_bits(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The length of the key in bits.

This property is read-only.

## Data Type

i32

# key_curve property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

This property specifies the name of the curve the EC key is built on.

## Syntax

*Rust Syntax*

```text
fn key_curve(&self ) -> Result<String, SecureBlackboxError> fn set_key_curve(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_key_curve_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

This property specifies the name of the curve the EC key is built on.

## Data Type

String

# key_exportable property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns True if the key is exportable (can be serialized into an array of bytes), and False otherwise.

## Syntax

*Rust Syntax*

```text
fn key_exportable(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Returns True if the key is exportable (can be serialized into an array of bytes), and False otherwise.

This property is read-only.

## Data Type

bool

# key_fingerprint property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the fingerprint (a hash imprint) of this key.

## Syntax

*Rust Syntax*

```text
fn key_fingerprint(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Contains the fingerprint (a hash imprint) of this key.

This property is read-only.

## Data Type

String

# key_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn key_handle(&self ) -> Result<i64, SecureBlackboxError> fn set_key_handle(&self, value : i64) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

## Data Type

i64

# key_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Provides access to a storage-specific key identifier.

## Syntax

*Rust Syntax*

```text
fn key_id(&self ) -> Result<Vec<u8>, SecureBlackboxError> fn set_key_id(&self, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_key_id_ref(&self, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Provides access to a storage-specific key identifier. Key identifiers are used by cryptographic providers to refer to a particular key and/or distinguish between different keys. They are typically unique within a storage, but there is no guarantee that a particular cryptoprovider will conform to that (or will assign any key IDs at all).

## Data Type

Vec

# key_iv property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The initialization vector (IV) of a symmetric key.

## Syntax

*Rust Syntax*

```text
fn key_iv(&self ) -> Result<Vec<u8>, SecureBlackboxError> fn set_key_iv(&self, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_key_iv_ref(&self, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

The initialization vector (IV) of a symmetric key. This is normally a public part of a symmetric key, the idea of which is to introduce randomness to the encrypted data and/or serve as a first block in chaining ciphers.

## Data Type

Vec

# key_nonce property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A nonce value associated with a key.

## Syntax

*Rust Syntax*

```text
fn key_nonce(&self ) -> Result<Vec<u8>, SecureBlackboxError> fn set_key_nonce(&self, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_key_nonce_ref(&self, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

A nonce value associated with a key. It is similar to IV, but its only purpose is to introduce randomness.

## Data Type

Vec

# key_private property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns True if the object hosts a private key, and False otherwise.

## Syntax

*Rust Syntax*

```text
fn key_private(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Returns True if the object hosts a private key, and False otherwise.

This property is read-only.

## Data Type

bool

# key_public property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns True if the object hosts a public key, and False otherwise.

## Syntax

*Rust Syntax*

```text
fn key_public(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Returns True if the object hosts a public key, and False otherwise.

This property is read-only.

## Data Type

bool

# key_subject property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the key subject.

## Syntax

*Rust Syntax*

```text
fn key_subject(&self ) -> Result<Vec<u8>, SecureBlackboxError> fn set_key_subject(&self, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_key_subject_ref(&self, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Returns the key subject. This is a cryptoprovider-dependent value, which normally aims to provide some user-friendly insight into the key owner.

## Data Type

Vec

# key_symmetric property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns True if the object contains a symmetric key, and False otherwise.

## Syntax

*Rust Syntax*

```text
fn key_symmetric(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Returns True if the object contains a symmetric key, and False otherwise.

This property is read-only.

## Data Type

bool

# key_valid property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns True if this key is valid.

## Syntax

*Rust Syntax*

```text
fn key_valid(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Returns True if this key is valid. The term Valid highly depends on the kind of the key being stored. A symmetric key is considered valid if its length fits the algorithm being set. The validity of an RSA key also ensures that the RSA key elements (primes, exponents, and modulus) are consistent.

This property is read-only.

## Data Type

bool

# key_value property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The byte array representation of the key value.

## Syntax

*Rust Syntax*

```text
fn key_value(&self ) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

The byte array representation of the key value. This may not be available for non-[key_exportable](#key_exportable-property-kmipserver-struct) keys.

This property used to be called *Key* in SecureBlackbox versions 2024 and older.

This property is read-only.

## Data Type

Vec

# pinned_client_aead_cipher property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether the encryption algorithm used is an AEAD cipher.

## Syntax

*Rust Syntax*

```text
fn pinned_client_aead_cipher(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether the encryption algorithm used is an AEAD cipher.

This property is read-only.

## Data Type

bool

# pinned_client_chain_validation_details property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The details of a certificate chain validation outcome.

## Syntax

*Rust Syntax*

```text
fn pinned_client_chain_validation_details(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The details of a certificate chain validation outcome. They may often suggest the reasons that contributed to the overall validation result.

Returns a bit mask of the following options:

|  |  |  |
| --- | --- | --- |
| cvrBadData | 0x0001 | One or more certificates in the validation path are malformed |
| cvrRevoked | 0x0002 | One or more certificates are revoked |
| cvrNotYetValid | 0x0004 | One or more certificates are not yet valid |
| cvrExpired | 0x0008 | One or more certificates are expired |
| cvrInvalidSignature | 0x0010 | A certificate contains a non-valid digital signature |
| cvrUnknownCA | 0x0020 | A CA certificate for one or more certificates has not been found (chain incomplete) |
| cvrCAUnauthorized | 0x0040 | One of the CA certificates are not authorized to act as CA |
| cvrCRLNotVerified | 0x0080 | One or more CRLs could not be verified |
| cvrOCSPNotVerified | 0x0100 | One or more OCSP responses could not be verified |
| cvrIdentityMismatch | 0x0200 | The identity protected by the certificate (a TLS endpoint or an e-mail addressee) does not match what is recorded in the certificate |
| cvrNoKeyUsage | 0x0400 | A mandatory key usage is not enabled in one of the chain certificates |
| cvrBlocked | 0x0800 | One or more certificates are blocked |
| cvrFailure | 0x1000 | General validation failure |
| cvrChainLoop | 0x2000 | Chain loop: one of the CA certificates recursively signs itself |
| cvrWeakAlgorithm | 0x4000 | A weak algorithm is used in one of certificates or revocation elements |
| cvrUserEnforced | 0x8000 | The chain was considered invalid following intervention from a user code |

This property is read-only.

## Data Type

i32

# pinned_client_chain_validation_result property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The outcome of a certificate chain validation routine.

## Syntax

*Rust Syntax*

```text
fn pinned_client_chain_validation_result(&self ) -> Result<i32, SecureBlackboxError>
```

## Possible Values

```text
0   // Valid1   // ValidButUntrusted2   // Invalid3   // CantBeEstablished
```

## Default Value

0

## Remarks

The outcome of a certificate chain validation routine.

Available options:

|  |  |  |
| --- | --- | --- |
| cvtValid | 0 | The chain is valid |
| cvtValidButUntrusted | 1 | The chain is valid, but the root certificate is not trusted |
| cvtInvalid | 2 | The chain is not valid (some of certificates are revoked, expired, or contain an invalid signature) |
| cvtCantBeEstablished | 3 | The validity of the chain cannot be established because of missing or unavailable validation information (certificates, CRLs, or OCSP responses) |

Use the ValidationLog property to access the detailed validation log.

This property is read-only.

## Data Type

i32

# pinned_client_ciphersuite property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The cipher suite employed by this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_ciphersuite(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The cipher suite employed by this connection.

For TLS connections, this property returns the ciphersuite that was/is employed by the connection.

This property is read-only.

## Data Type

String

# pinned_client_client_authenticated property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies whether client authentication was performed during this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_client_authenticated(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Specifies whether client authentication was performed during this connection.

This property is read-only.

## Data Type

bool

# pinned_client_client_auth_requested property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies whether client authentication was requested during this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_client_auth_requested(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Specifies whether client authentication was requested during this connection.

This property is read-only.

## Data Type

bool

# pinned_client_connection_established property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether the connection has been established fully.

## Syntax

*Rust Syntax*

```text
fn pinned_client_connection_established(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether the connection has been established fully.

This property is read-only.

## Data Type

bool

# pinned_client_connection_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The unique identifier assigned to this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_connection_id(&self ) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

The unique identifier assigned to this connection.

This property is read-only.

## Data Type

Vec

# pinned_client_digest_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The digest algorithm used in a TLS-enabled connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_digest_algorithm(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The digest algorithm used in a TLS-enabled connection.

This property is read-only.

## Data Type

String

# pinned_client_encryption_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The symmetric encryption algorithm used in a TLS-enabled connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_encryption_algorithm(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The symmetric encryption algorithm used in a TLS-enabled connection.

This property is read-only.

## Data Type

String

# pinned_client_exportable property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether a TLS connection uses a reduced-strength exportable cipher.

## Syntax

*Rust Syntax*

```text
fn pinned_client_exportable(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether a TLS connection uses a reduced-strength exportable cipher.

This property is read-only.

## Data Type

bool

# pinned_client_group property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The elliptic curve used in this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_group(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The elliptic curve used in this connection.

This property was named *NamedECCurve* in SecureBlackbox 2024 and earlier versions.

This property is read-only.

## Data Type

String

# pinned_client_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The client connection's unique identifier.

## Syntax

*Rust Syntax*

```text
fn pinned_client_id(&self ) -> Result<i64, SecureBlackboxError>
```

## Default Value

-1

## Remarks

The client connection's unique identifier. This value is used throughout to refer to a particular client connection.

This property is read-only.

## Data Type

i64

# pinned_client_key_exchange_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The key exchange algorithm used in a TLS-enabled connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_key_exchange_algorithm(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The key exchange algorithm used in a TLS-enabled connection.

This property is read-only.

## Data Type

String

# pinned_client_key_exchange_key_bits property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The length of the key exchange key of a TLS-enabled connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_key_exchange_key_bits(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The length of the key exchange key of a TLS-enabled connection.

This property is read-only.

## Data Type

i32

# pinned_client_pfs_cipher property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether the chosen ciphersuite provides perfect forward secrecy (PFS).

## Syntax

*Rust Syntax*

```text
fn pinned_client_pfs_cipher(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether the chosen ciphersuite provides perfect forward secrecy (PFS).

This property is read-only.

## Data Type

bool

# pinned_client_pre_shared_identity property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated.

## Syntax

*Rust Syntax*

```text
fn pinned_client_pre_shared_identity(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Specifies the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated.

This property is read-only.

## Data Type

String

# pinned_client_pre_shared_identity_hint property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A hint professed by the server to help the client select the PSK identity to use.

## Syntax

*Rust Syntax*

```text
fn pinned_client_pre_shared_identity_hint(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

A hint professed by the server to help the client select the PSK identity to use.

This property is read-only.

## Data Type

String

# pinned_client_public_key_bits property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The length of the public key.

## Syntax

*Rust Syntax*

```text
fn pinned_client_public_key_bits(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The length of the public key.

This property is read-only.

## Data Type

i32

# pinned_client_remote_address property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The client's IP address.

## Syntax

*Rust Syntax*

```text
fn pinned_client_remote_address(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The client's IP address.

This property is read-only.

## Data Type

String

# pinned_client_remote_port property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The remote port of the client connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_remote_port(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The remote port of the client connection.

This property is read-only.

## Data Type

i32

# pinned_client_resumed_session property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether a TLS-enabled connection was spawned from another TLS connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_resumed_session(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether a TLS-enabled connection was spawned from another TLS connection

This property is read-only.

## Data Type

bool

# pinned_client_secure_connection property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether TLS or SSL is enabled for this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_secure_connection(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether TLS or SSL is enabled for this connection.

This property is read-only.

## Data Type

bool

# pinned_client_server_authenticated property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether server authentication was performed during a TLS-enabled connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_server_authenticated(&self ) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether server authentication was performed during a TLS-enabled connection.

This property is read-only.

## Data Type

bool

# pinned_client_signature_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The signature algorithm used in a TLS handshake.

## Syntax

*Rust Syntax*

```text
fn pinned_client_signature_algorithm(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The signature algorithm used in a TLS handshake.

This property is read-only.

## Data Type

String

# pinned_client_symmetric_block_size property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The block size of the symmetric algorithm used.

## Syntax

*Rust Syntax*

```text
fn pinned_client_symmetric_block_size(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The block size of the symmetric algorithm used.

This property is read-only.

## Data Type

i32

# pinned_client_symmetric_key_bits property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The key length of the symmetric algorithm used.

## Syntax

*Rust Syntax*

```text
fn pinned_client_symmetric_key_bits(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

The key length of the symmetric algorithm used.

This property is read-only.

## Data Type

i32

# pinned_client_total_bytes_received property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The total number of bytes received over this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_total_bytes_received(&self ) -> Result<i64, SecureBlackboxError>
```

## Default Value

0

## Remarks

The total number of bytes received over this connection.

This property is read-only.

## Data Type

i64

# pinned_client_total_bytes_sent property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The total number of bytes sent over this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_total_bytes_sent(&self ) -> Result<i64, SecureBlackboxError>
```

## Default Value

0

## Remarks

The total number of bytes sent over this connection.

This property is read-only.

## Data Type

i64

# pinned_client_validation_log property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the server certificate's chain validation log.

## Syntax

*Rust Syntax*

```text
fn pinned_client_validation_log(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Contains the server certificate's chain validation log. This information may be very useful in investigating chain validation failures.

This property is read-only.

## Data Type

String

# pinned_client_version property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates the version of SSL/TLS protocol negotiated during this connection.

## Syntax

*Rust Syntax*

```text
fn pinned_client_version(&self ) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Indicates the version of SSL/TLS protocol negotiated during this connection.

This property is read-only.

## Data Type

String

# pinned_client_cert_count property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The number of records in the PinnedClientCert arrays.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_count(&self ) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

This property controls the size of the following arrays:

- [pinned_client_cert_bytes](#pinned_client_cert_bytes-property-kmipserver-struct)
- [pinned_client_cert_ca_key_id](#pinned_client_cert_ca_key_id-property-kmipserver-struct)
- [pinned_client_cert_fingerprint](#pinned_client_cert_fingerprint-property-kmipserver-struct)
- [pinned_client_cert_handle](#pinned_client_cert_handle-property-kmipserver-struct)
- [pinned_client_cert_issuer](#pinned_client_cert_issuer-property-kmipserver-struct)
- [pinned_client_cert_issuer_rdn](#pinned_client_cert_issuer_rdn-property-kmipserver-struct)
- [pinned_client_cert_key_algorithm](#pinned_client_cert_key_algorithm-property-kmipserver-struct)
- [pinned_client_cert_key_bits](#pinned_client_cert_key_bits-property-kmipserver-struct)
- [pinned_client_cert_key_fingerprint](#pinned_client_cert_key_fingerprint-property-kmipserver-struct)
- [pinned_client_cert_key_usage](#pinned_client_cert_key_usage-property-kmipserver-struct)
- [pinned_client_cert_public_key_bytes](#pinned_client_cert_public_key_bytes-property-kmipserver-struct)
- [pinned_client_cert_self_signed](#pinned_client_cert_self_signed-property-kmipserver-struct)
- [pinned_client_cert_serial_number](#pinned_client_cert_serial_number-property-kmipserver-struct)
- [pinned_client_cert_sig_algorithm](#pinned_client_cert_sig_algorithm-property-kmipserver-struct)
- [pinned_client_cert_subject](#pinned_client_cert_subject-property-kmipserver-struct)
- [pinned_client_cert_subject_key_id](#pinned_client_cert_subject_key_id-property-kmipserver-struct)
- [pinned_client_cert_subject_rdn](#pinned_client_cert_subject_rdn-property-kmipserver-struct)
- [pinned_client_cert_valid_from](#pinned_client_cert_valid_from-property-kmipserver-struct)
- [pinned_client_cert_valid_to](#pinned_client_cert_valid_to-property-kmipserver-struct)

The array indices start at *0* and end at *pinned_client_cert_count - 1*.

This property is read-only.

## Data Type

i32

# pinned_client_cert_bytes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the raw certificate data in DER format.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_bytes(&self , PinnedClientCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Returns the raw certificate data in DER format.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# pinned_client_cert_ca_key_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A unique identifier (fingerprint) of the CA certificate's cryptographic key.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_ca_key_id(&self , PinnedClientCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

A unique identifier (fingerprint) of the CA certificate's cryptographic key.

Authority Key Identifier is a certificate extension which allows identification of certificates belonging to the same issuer, but with different public keys. It is a de-facto standard to include this extension in all certificates to facilitate chain building.

This setting cannot be set when generating a certificate as it always derives from another certificate property. [CertificateManager](#CertificateManager) generates this setting automatically if enough information is available to it: for self-signed certificates, this value is copied from the [pinned_client_cert_subject_key_id](#pinned_client_cert_subject_key_id-property-kmipserver-struct) setting, and for lower-level certificates, from the parent certificate's subject key ID extension.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# pinned_client_cert_fingerprint property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the fingerprint (a hash imprint) of this certificate.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_fingerprint(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Contains the fingerprint (a hash imprint) of this certificate.

While there is no formal standard defining what a fingerprint is, a SHA1 hash of the certificate's DER-encoded body is typically used.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_handle(&self , PinnedClientCertIndex : i32) -> Result<i64, SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

i64

# pinned_client_cert_issuer property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The common name of the certificate issuer (CA), typically a company name.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_issuer(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The common name of the certificate issuer (CA), typically a company name. This is part of a larger set of credentials available via [pinned_client_cert_issuer_rdn](#pinned_client_cert_issuer_rdn-property-kmipserver-struct).

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_issuer_rdn property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A list of Property=Value pairs that uniquely identify the certificate issuer.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_issuer_rdn(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

A list of *Property=Value* pairs that uniquely identify the certificate issuer.

Example: */C=US/O=Nationwide CA/CN=Web Certification Authority*

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_key_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the public key algorithm of this certificate.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_key_algorithm(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

"0"

## Remarks

Specifies the public key algorithm of this certificate.

|  |  |  |
| --- | --- | --- |
| SB_CERT_ALGORITHM_ID_RSA_ENCRYPTION | rsaEncryption |  |
| SB_CERT_ALGORITHM_MD2_RSA_ENCRYPTION | md2withRSAEncryption |  |
| SB_CERT_ALGORITHM_MD5_RSA_ENCRYPTION | md5withRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA1_RSA_ENCRYPTION | sha1withRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_DSA | id-dsa |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA1 | id-dsa-with-sha1 |  |
| SB_CERT_ALGORITHM_DH_PUBLIC | dhpublicnumber |  |
| SB_CERT_ALGORITHM_SHA224_RSA_ENCRYPTION | sha224WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA256_RSA_ENCRYPTION | sha256WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA384_RSA_ENCRYPTION | sha384WithRSAEncryption |  |
| SB_CERT_ALGORITHM_SHA512_RSA_ENCRYPTION | sha512WithRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_RSAPSS | id-RSASSA-PSS |  |
| SB_CERT_ALGORITHM_ID_RSAOAEP | id-RSAES-OAEP |  |
| SB_CERT_ALGORITHM_RSASIGNATURE_RIPEMD160 | ripemd160withRSA |  |
| SB_CERT_ALGORITHM_ID_ELGAMAL | elGamal |  |
| SB_CERT_ALGORITHM_SHA1_ECDSA | ecdsa-with-SHA1 |  |
| SB_CERT_ALGORITHM_RECOMMENDED_ECDSA | ecdsa-recommended |  |
| SB_CERT_ALGORITHM_SHA224_ECDSA | ecdsa-with-SHA224 |  |
| SB_CERT_ALGORITHM_SHA256_ECDSA | ecdsa-with-SHA256 |  |
| SB_CERT_ALGORITHM_SHA384_ECDSA | ecdsa-with-SHA384 |  |
| SB_CERT_ALGORITHM_SHA512_ECDSA | ecdsa-with-SHA512 |  |
| SB_CERT_ALGORITHM_EC | id-ecPublicKey |  |
| SB_CERT_ALGORITHM_SPECIFIED_ECDSA | ecdsa-specified |  |
| SB_CERT_ALGORITHM_GOST_R3410_1994 | id-GostR3410-94 |  |
| SB_CERT_ALGORITHM_GOST_R3410_2001 | id-GostR3410-2001 |  |
| SB_CERT_ALGORITHM_GOST_R3411_WITH_R3410_1994 | id-GostR3411-94-with-GostR3410-94 |  |
| SB_CERT_ALGORITHM_GOST_R3411_WITH_R3410_2001 | id-GostR3411-94-with-GostR3410-2001 |  |
| SB_CERT_ALGORITHM_SHA1_ECDSA_PLAIN | ecdsa-plain-SHA1 |  |
| SB_CERT_ALGORITHM_SHA224_ECDSA_PLAIN | ecdsa-plain-SHA224 |  |
| SB_CERT_ALGORITHM_SHA256_ECDSA_PLAIN | ecdsa-plain-SHA256 |  |
| SB_CERT_ALGORITHM_SHA384_ECDSA_PLAIN | ecdsa-plain-SHA384 |  |
| SB_CERT_ALGORITHM_SHA512_ECDSA_PLAIN | ecdsa-plain-SHA512 |  |
| SB_CERT_ALGORITHM_RIPEMD160_ECDSA_PLAIN | ecdsa-plain-RIPEMD160 |  |
| SB_CERT_ALGORITHM_WHIRLPOOL_RSA_ENCRYPTION | whirlpoolWithRSAEncryption |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA224 | id-dsa-with-sha224 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA256 | id-dsa-with-sha256 |  |
| SB_CERT_ALGORITHM_SHA3_224_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-sha3-512 |  |
| SB_CERT_ALGORITHM_SHA3_224_ECDSA | id-ecdsa-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_ECDSA | id-ecdsa-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_ECDSA | id-ecdsa-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_ECDSA | id-ecdsa-with-sha3-512 |  |
| SB_CERT_ALGORITHM_SHA3_224_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-224 |  |
| SB_CERT_ALGORITHM_SHA3_256_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-256 |  |
| SB_CERT_ALGORITHM_SHA3_384_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-384 |  |
| SB_CERT_ALGORITHM_SHA3_512_ECDSA_PLAIN | id-ecdsa-plain-with-sha3-512 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA3_224 | id-dsa-with-sha3-224 |  |
| SB_CERT_ALGORITHM_ID_DSA_SHA3_256 | id-dsa-with-sha3-256 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_RSA_ENCRYPTION | id-rsassa-pkcs1-v1_5-with-blake2b512 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_ECDSA | id-ecdsa-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_ECDSA | id-ecdsa-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_ECDSA | id-ecdsa-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_ECDSA | id-ecdsa-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_ECDSA | id-ecdsa-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_ECDSA | id-ecdsa-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_ECDSA | id-ecdsa-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_ECDSA | id-ecdsa-with-blake2b512 |  |
| SB_CERT_ALGORITHM_BLAKE2S_128_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s128 |  |
| SB_CERT_ALGORITHM_BLAKE2S_160_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s160 |  |
| SB_CERT_ALGORITHM_BLAKE2S_224_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s224 |  |
| SB_CERT_ALGORITHM_BLAKE2S_256_ECDSA_PLAIN | id-ecdsa-plain-with-blake2s256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_160_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b160 |  |
| SB_CERT_ALGORITHM_BLAKE2B_256_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b256 |  |
| SB_CERT_ALGORITHM_BLAKE2B_384_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b384 |  |
| SB_CERT_ALGORITHM_BLAKE2B_512_ECDSA_PLAIN | id-ecdsa-plain-with-blake2b512 |  |
| SB_CERT_ALGORITHM_ID_DSA_BLAKE2S_224 | id-dsa-with-blake2s224 |  |
| SB_CERT_ALGORITHM_ID_DSA_BLAKE2S_256 | id-dsa-with-blake2s256 |  |
| SB_CERT_ALGORITHM_EDDSA_ED25519 | id-Ed25519 |  |
| SB_CERT_ALGORITHM_EDDSA_ED448 | id-Ed448 |  |
| SB_CERT_ALGORITHM_EDDSA_ED25519_PH | id-Ed25519ph |  |
| SB_CERT_ALGORITHM_EDDSA_ED448_PH | id-Ed448ph |  |
| SB_CERT_ALGORITHM_EDDSA | id-EdDSA |  |
| SB_CERT_ALGORITHM_EDDSA_SIGNATURE | id-EdDSA-sig |  |
| SB_CERT_ALGORITHM_MLDSA_44 | id-ml-dsa-44 |  |
| SB_CERT_ALGORITHM_MLDSA_65 | id-ml-dsa-65 |  |
| SB_CERT_ALGORITHM_MLDSA_87 | id-ml-dsa-87 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_44_SHA512 | id-hash-ml-dsa-44-with-sha512 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_65_SHA512 | id-hash-ml-dsa-65-with-sha512 |  |
| SB_CERT_ALGORITHM_HASH_MLDSA_87_SHA512 | id-hash-ml-dsa-87-with-sha512 |  |
| SB_CERT_ALGORITHM_MLKEM_512 | id-ml-kem-512 |  |
| SB_CERT_ALGORITHM_MLKEM_768 | id-ml-kem-768 |  |
| SB_CERT_ALGORITHM_MLKEM_1024 | id-ml-kem-1024 |  |

Use the [pinned_client_cert_key_bits](#pinned_client_cert_key_bits-property-kmipserver-struct), [pinned_client_cert_curve](#KMIPServer_p_PinnedClientCertCurve), and [pinned_client_cert_public_key_bytes](#pinned_client_cert_public_key_bytes-property-kmipserver-struct) properties to get more details about the key the certificate contains.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_key_bits property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the length of the public key in bits.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_key_bits(&self , PinnedClientCertIndex : i32) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

Returns the length of the public key in bits.

This value indicates the length of the principal cryptographic parameter of the key, such as the length of the RSA modulus or ECDSA field. The key data returned by the [pinned_client_cert_public_key_bytes](#pinned_client_cert_public_key_bytes-property-kmipserver-struct) or [pinned_client_cert_private_key_bytes](#KMIPServer_p_PinnedClientCertPrivateKeyBytes) property would typically contain auxiliary values, and therefore be longer.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

i32

# pinned_client_cert_key_fingerprint property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns a SHA1 fingerprint of the public key contained in the certificate.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_key_fingerprint(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Returns a SHA1 fingerprint of the public key contained in the certificate.

Note that the key fingerprint is different from the certificate fingerprint accessible via the [pinned_client_cert_fingerprint](#pinned_client_cert_fingerprint-property-kmipserver-struct) property. The key fingerprint uniquely identifies the public key, and so can be the same for multiple certificates containing the same key.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_key_usage property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates the purposes of the key contained in the certificate, in the form of an OR'ed flag set.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_key_usage(&self , PinnedClientCertIndex : i32) -> Result<i32, SecureBlackboxError>
```

## Default Value

0

## Remarks

Indicates the purposes of the key contained in the certificate, in the form of an OR'ed flag set.

This value is a bit mask of the following values:

|  |  |  |
| --- | --- | --- |
| ckuUnknown | 0x00000 | Unknown key usage |
| ckuDigitalSignature | 0x00001 | Digital signature |
| ckuNonRepudiation | 0x00002 | Non-repudiation |
| ckuKeyEncipherment | 0x00004 | Key encipherment |
| ckuDataEncipherment | 0x00008 | Data encipherment |
| ckuKeyAgreement | 0x00010 | Key agreement |
| ckuKeyCertSign | 0x00020 | Certificate signing |
| ckuCRLSign | 0x00040 | Revocation signing |
| ckuEncipherOnly | 0x00080 | Encipher only |
| ckuDecipherOnly | 0x00100 | Decipher only |
| ckuServerAuthentication | 0x00200 | Server authentication |
| ckuClientAuthentication | 0x00400 | Client authentication |
| ckuCodeSigning | 0x00800 | Code signing |
| ckuEmailProtection | 0x01000 | Email protection |
| ckuTimeStamping | 0x02000 | Timestamping |
| ckuOCSPSigning | 0x04000 | OCSP signing |
| ckuSmartCardLogon | 0x08000 | Smartcard logon |
| ckuKeyPurposeClientAuth | 0x10000 | Kerberos - client authentication |
| ckuKeyPurposeKDC | 0x20000 | Kerberos - KDC |

Set this property before generating the certificate to propagate the key usage flags to the new certificate.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

i32

# pinned_client_cert_public_key_bytes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the certificate's public key in DER format.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_public_key_bytes(&self , PinnedClientCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Contains the certificate's public key in DER format.

This typically would contain an ASN.1-encoded public key value. The exact format depends on the type of the public key contained in the certificate.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# pinned_client_cert_self_signed property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates whether the certificate is self-signed (root) or signed by an external CA.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_self_signed(&self , PinnedClientCertIndex : i32) -> Result<bool, SecureBlackboxError>
```

## Default Value

false

## Remarks

Indicates whether the certificate is self-signed (root) or signed by an external CA.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

bool

# pinned_client_cert_serial_number property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the certificate's serial number.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_serial_number(&self , PinnedClientCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Returns the certificate's serial number.

The serial number is a binary string that uniquely identifies a certificate among others issued by the same CA. According to the X.509 standard, the (issuer, serial number) pair should be globally unique to facilitate chain building.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# pinned_client_cert_sig_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Indicates the algorithm that was used by the CA to sign this certificate.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_sig_algorithm(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

Indicates the algorithm that was used by the CA to sign this certificate.

A signature algorithm typically combines hash and public key algorithms together, such as *sha256WithRSAEncryption* or *ecdsa-with-SHA256*.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_subject property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The common name of the certificate holder, typically an individual's name, a URL, an e-mail address, or a company name.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_subject(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The common name of the certificate holder, typically an individual's name, a URL, an e-mail address, or a company name. This is part of a larger set of credentials available via [pinned_client_cert_subject_rdn](#pinned_client_cert_subject_rdn-property-kmipserver-struct).

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_subject_key_id property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains a unique identifier of the certificate's cryptographic key.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_subject_key_id(&self , PinnedClientCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Contains a unique identifier of the certificate's cryptographic key.

Subject Key Identifier is a certificate extension which allows a specific public key to be associated with a certificate holder. Typically, subject key identifiers of CA certificates are recorded as respective CA key identifiers in the subordinate certificates that they issue, which facilitates chain building.

The [pinned_client_cert_subject_key_id](#pinned_client_cert_subject_key_id-property-kmipserver-struct) and [pinned_client_cert_ca_key_id](#pinned_client_cert_ca_key_id-property-kmipserver-struct) properties of self-signed certificates typically contain identical values, as in that specific case, the issuer and the subject are the same entity.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# pinned_client_cert_subject_rdn property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A list of Property=Value pairs that uniquely identify the certificate holder (subject).

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_subject_rdn(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

A list of *Property=Value* pairs that uniquely identify the certificate holder (subject).

Depending on the purpose of the certificate and the policies of the CA that issued it, the values included in the subject record may differ drastically and contain business or personal names, web URLs, email addresses, and other data.

Example: */C=US/O=Oranges and Apples, Inc./OU=Accounts Receivable/1.2.3.4.5=Value with unknown OID/CN=Margaret Watkins*.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_valid_from property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The time point at which the certificate becomes valid, in UTC.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_valid_from(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The time point at which the certificate becomes valid, in UTC.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# pinned_client_cert_valid_to property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The time point at which the certificate expires, in UTC.

## Syntax

*Rust Syntax*

```text
fn pinned_client_cert_valid_to(&self , PinnedClientCertIndex : i32) -> Result<String, SecureBlackboxError>
```

## Default Value

""

## Remarks

The time point at which the certificate expires, in UTC.

The *PinnedClientCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [PinnedClientCertCount](#pinned_client_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

String

# port property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A port to listen for connections on.

## Syntax

*Rust Syntax*

```text
fn port(&self ) -> Result<i32, SecureBlackboxError> fn set_port(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

5696

## Remarks

Use this property to specify the listening port.

## Data Type

i32

# read_only property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Controls whether the server works in read-only mode.

## Syntax

*Rust Syntax*

```text
fn read_only(&self ) -> Result<bool, SecureBlackboxError> fn set_read_only(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Use this property to enable or disable read-only mode on the server. It is an easy way to prevent connecting users from adding or removing objects managed by the server.

## Data Type

bool

# session_timeout property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the default session timeout value in milliseconds.

## Syntax

*Rust Syntax*

```text
fn session_timeout(&self ) -> Result<i32, SecureBlackboxError> fn set_session_timeout(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

360000

## Remarks

Specifies the period of inactivity (in milliseconds) after which the connection will be terminated by the server.

## Data Type

i32

# socket_incoming_speed_limit property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The maximum number of bytes to read from the socket, per second.

## Syntax

*Rust Syntax*

```text
fn socket_incoming_speed_limit(&self ) -> Result<i32, SecureBlackboxError> fn set_socket_incoming_speed_limit(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

The maximum number of bytes to read from the socket, per second.

## Data Type

i32

# socket_local_address property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The local network interface to bind the socket to.

## Syntax

*Rust Syntax*

```text
fn socket_local_address(&self ) -> Result<String, SecureBlackboxError> fn set_socket_local_address(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_socket_local_address_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The local network interface to bind the socket to.

## Data Type

String

# socket_local_port property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The local port number to bind the socket to.

## Syntax

*Rust Syntax*

```text
fn socket_local_port(&self ) -> Result<i32, SecureBlackboxError> fn set_socket_local_port(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

The local port number to bind the socket to.

## Data Type

i32

# socket_outgoing_speed_limit property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The maximum number of bytes to write to the socket, per second.

## Syntax

*Rust Syntax*

```text
fn socket_outgoing_speed_limit(&self ) -> Result<i32, SecureBlackboxError> fn set_socket_outgoing_speed_limit(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

The maximum number of bytes to write to the socket, per second.

## Data Type

i32

# socket_timeout property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The maximum period of waiting, in milliseconds, after which the socket operation is considered unsuccessful.

## Syntax

*Rust Syntax*

```text
fn socket_timeout(&self ) -> Result<i32, SecureBlackboxError> fn set_socket_timeout(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

60000

## Remarks

The maximum period of waiting, in milliseconds, after which the socket operation is considered unsuccessful.

If *Timeout* is set to 0, a socket operation will expire after the system-default timeout (2 hrs 8 min for TCP stack).

## Data Type

i32

# socket_use_ipv6 property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables or disables IP protocol version 6.

## Syntax

*Rust Syntax*

```text
fn socket_use_ipv6(&self ) -> Result<bool, SecureBlackboxError> fn set_socket_use_ipv6(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Enables or disables IP protocol version 6.

## Data Type

bool

# storage_file_name property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A path to the KMIP object database.

## Syntax

*Rust Syntax*

```text
fn storage_file_name(&self ) -> Result<String, SecureBlackboxError> fn set_storage_file_name(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_storage_file_name_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Assign the path to the database of objects managed by the KMIP server to this property.

## Data Type

String

# tls_server_cert_count property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The number of records in the TLSServerCert arrays.

## Syntax

*Rust Syntax*

```text
fn tls_server_cert_count(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_server_cert_count(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

This property controls the size of the following arrays:

- [tls_server_cert_bytes](#tls_server_cert_bytes-property-kmipserver-struct)
- [tls_server_cert_handle](#tls_server_cert_handle-property-kmipserver-struct)

The array indices start at *0* and end at *tls_server_cert_count - 1*.

## Data Type

i32

# tls_server_cert_bytes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns the raw certificate data in DER format.

## Syntax

*Rust Syntax*

```text
fn tls_server_cert_bytes(&self , TLSServerCertIndex : i32) -> Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

Returns the raw certificate data in DER format.

The *TLSServerCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [TLSServerCertCount](#tls_server_cert_count-property-kmipserver-struct) property.

This property is read-only.

## Data Type

Vec

# tls_server_cert_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn tls_server_cert_handle(&self , TLSServerCertIndex : i32) -> Result<i64, SecureBlackboxError> fn set_tls_server_cert_handle(&self, TLSServerCertIndex : i32, value : i64) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

The *TLSServerCertIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [TLSServerCertCount](#tls_server_cert_count-property-kmipserver-struct) property.

## Data Type

i64

# tls_auto_validate_certificates property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies whether server-side TLS certificates should be validated automatically using internal validation rules.

## Syntax

*Rust Syntax*

```text
fn tls_auto_validate_certificates(&self ) -> Result<bool, SecureBlackboxError> fn set_tls_auto_validate_certificates(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

true

## Remarks

Specifies whether server-side TLS certificates should be validated automatically using internal validation rules.

## Data Type

bool

# tls_base_configuration property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Selects the base configuration for the TLS settings.

## Syntax

*Rust Syntax*

```text
fn tls_base_configuration(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_base_configuration(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // Default1   // Compatible2   // ComprehensiveInsecure3   // HighlySecure
```

## Default Value

0

## Remarks

Selects the base configuration for the TLS settings. Several profiles are offered and tuned up for different purposes, such as high security or higher compatibility.

|  |  |  |
| --- | --- | --- |
| stpcDefault | 0 |  |
| stpcCompatible | 1 |  |
| stpcComprehensiveInsecure | 2 |  |
| stpcHighlySecure | 3 |  |

## Data Type

i32

# tls_ciphersuites property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

A list of ciphersuites separated with commas or semicolons.

## Syntax

*Rust Syntax*

```text
fn tls_ciphersuites(&self ) -> Result<String, SecureBlackboxError> fn set_tls_ciphersuites(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_ciphersuites_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

A list of ciphersuites separated with commas or semicolons. Each ciphersuite in the list may be prefixed with a minus sign (-) to indicate that the ciphersuite should be disabled rather than enabled. Besides the specific ciphersuite modifiers, this property supports the *all* (and *-all*) aliases, allowing all ciphersuites to be blanketly enabled or disabled at once.

Note: the list of ciphersuites provided to this property alters the baseline list of ciphersuites as defined by [tls_base_configuration](#tls_base_configuration-property-kmipserver-struct). Remember to start your ciphersuite string with -all; if you need to only enable a specific fixed set of ciphersuites. The list of supported ciphersuites is provided below:

- NULL_NULL_NULL
- RSA_NULL_MD5
- RSA_NULL_SHA
- RSA_RC4_MD5
- RSA_RC4_SHA
- RSA_RC2_MD5
- RSA_IDEA_MD5
- RSA_IDEA_SHA
- RSA_DES_MD5
- RSA_DES_SHA
- RSA_3DES_MD5
- RSA_3DES_SHA
- RSA_AES128_SHA
- RSA_AES256_SHA
- DH_DSS_DES_SHA
- DH_DSS_3DES_SHA
- DH_DSS_AES128_SHA
- DH_DSS_AES256_SHA
- DH_RSA_DES_SHA
- DH_RSA_3DES_SHA
- DH_RSA_AES128_SHA
- DH_RSA_AES256_SHA
- DHE_DSS_DES_SHA
- DHE_DSS_3DES_SHA
- DHE_DSS_AES128_SHA
- DHE_DSS_AES256_SHA
- DHE_RSA_DES_SHA
- DHE_RSA_3DES_SHA
- DHE_RSA_AES128_SHA
- DHE_RSA_AES256_SHA
- DH_ANON_RC4_MD5
- DH_ANON_DES_SHA
- DH_ANON_3DES_SHA
- DH_ANON_AES128_SHA
- DH_ANON_AES256_SHA
- RSA_RC2_MD5_EXPORT
- RSA_RC4_MD5_EXPORT
- RSA_DES_SHA_EXPORT
- DH_DSS_DES_SHA_EXPORT
- DH_RSA_DES_SHA_EXPORT
- DHE_DSS_DES_SHA_EXPORT
- DHE_RSA_DES_SHA_EXPORT
- DH_ANON_RC4_MD5_EXPORT
- DH_ANON_DES_SHA_EXPORT
- RSA_CAMELLIA128_SHA
- DH_DSS_CAMELLIA128_SHA
- DH_RSA_CAMELLIA128_SHA
- DHE_DSS_CAMELLIA128_SHA
- DHE_RSA_CAMELLIA128_SHA
- DH_ANON_CAMELLIA128_SHA
- RSA_CAMELLIA256_SHA
- DH_DSS_CAMELLIA256_SHA
- DH_RSA_CAMELLIA256_SHA
- DHE_DSS_CAMELLIA256_SHA
- DHE_RSA_CAMELLIA256_SHA
- DH_ANON_CAMELLIA256_SHA
- PSK_RC4_SHA
- PSK_3DES_SHA
- PSK_AES128_SHA
- PSK_AES256_SHA
- DHE_PSK_RC4_SHA
- DHE_PSK_3DES_SHA
- DHE_PSK_AES128_SHA
- DHE_PSK_AES256_SHA
- RSA_PSK_RC4_SHA
- RSA_PSK_3DES_SHA
- RSA_PSK_AES128_SHA
- RSA_PSK_AES256_SHA
- RSA_SEED_SHA
- DH_DSS_SEED_SHA
- DH_RSA_SEED_SHA
- DHE_DSS_SEED_SHA
- DHE_RSA_SEED_SHA
- DH_ANON_SEED_SHA
- SRP_SHA_3DES_SHA
- SRP_SHA_RSA_3DES_SHA
- SRP_SHA_DSS_3DES_SHA
- SRP_SHA_AES128_SHA
- SRP_SHA_RSA_AES128_SHA
- SRP_SHA_DSS_AES128_SHA
- SRP_SHA_AES256_SHA
- SRP_SHA_RSA_AES256_SHA
- SRP_SHA_DSS_AES256_SHA
- ECDH_ECDSA_NULL_SHA
- ECDH_ECDSA_RC4_SHA
- ECDH_ECDSA_3DES_SHA
- ECDH_ECDSA_AES128_SHA
- ECDH_ECDSA_AES256_SHA
- ECDHE_ECDSA_NULL_SHA
- ECDHE_ECDSA_RC4_SHA
- ECDHE_ECDSA_3DES_SHA
- ECDHE_ECDSA_AES128_SHA
- ECDHE_ECDSA_AES256_SHA
- ECDH_RSA_NULL_SHA
- ECDH_RSA_RC4_SHA
- ECDH_RSA_3DES_SHA
- ECDH_RSA_AES128_SHA
- ECDH_RSA_AES256_SHA
- ECDHE_RSA_NULL_SHA
- ECDHE_RSA_RC4_SHA
- ECDHE_RSA_3DES_SHA
- ECDHE_RSA_AES128_SHA
- ECDHE_RSA_AES256_SHA
- ECDH_ANON_NULL_SHA
- ECDH_ANON_RC4_SHA
- ECDH_ANON_3DES_SHA
- ECDH_ANON_AES128_SHA
- ECDH_ANON_AES256_SHA
- RSA_NULL_SHA256
- RSA_AES128_SHA256
- RSA_AES256_SHA256
- DH_DSS_AES128_SHA256
- DH_RSA_AES128_SHA256
- DHE_DSS_AES128_SHA256
- DHE_RSA_AES128_SHA256
- DH_DSS_AES256_SHA256
- DH_RSA_AES256_SHA256
- DHE_DSS_AES256_SHA256
- DHE_RSA_AES256_SHA256
- DH_ANON_AES128_SHA256
- DH_ANON_AES256_SHA256
- RSA_AES128_GCM_SHA256
- RSA_AES256_GCM_SHA384
- DHE_RSA_AES128_GCM_SHA256
- DHE_RSA_AES256_GCM_SHA384
- DH_RSA_AES128_GCM_SHA256
- DH_RSA_AES256_GCM_SHA384
- DHE_DSS_AES128_GCM_SHA256
- DHE_DSS_AES256_GCM_SHA384
- DH_DSS_AES128_GCM_SHA256
- DH_DSS_AES256_GCM_SHA384
- DH_ANON_AES128_GCM_SHA256
- DH_ANON_AES256_GCM_SHA384
- ECDHE_ECDSA_AES128_SHA256
- ECDHE_ECDSA_AES256_SHA384
- ECDH_ECDSA_AES128_SHA256
- ECDH_ECDSA_AES256_SHA384
- ECDHE_RSA_AES128_SHA256
- ECDHE_RSA_AES256_SHA384
- ECDH_RSA_AES128_SHA256
- ECDH_RSA_AES256_SHA384
- ECDHE_ECDSA_AES128_GCM_SHA256
- ECDHE_ECDSA_AES256_GCM_SHA384
- ECDH_ECDSA_AES128_GCM_SHA256
- ECDH_ECDSA_AES256_GCM_SHA384
- ECDHE_RSA_AES128_GCM_SHA256
- ECDHE_RSA_AES256_GCM_SHA384
- ECDH_RSA_AES128_GCM_SHA256
- ECDH_RSA_AES256_GCM_SHA384
- PSK_AES128_GCM_SHA256
- PSK_AES256_GCM_SHA384
- DHE_PSK_AES128_GCM_SHA256
- DHE_PSK_AES256_GCM_SHA384
- RSA_PSK_AES128_GCM_SHA256
- RSA_PSK_AES256_GCM_SHA384
- PSK_AES128_SHA256
- PSK_AES256_SHA384
- PSK_NULL_SHA256
- PSK_NULL_SHA384
- DHE_PSK_AES128_SHA256
- DHE_PSK_AES256_SHA384
- DHE_PSK_NULL_SHA256
- DHE_PSK_NULL_SHA384
- RSA_PSK_AES128_SHA256
- RSA_PSK_AES256_SHA384
- RSA_PSK_NULL_SHA256
- RSA_PSK_NULL_SHA384
- RSA_CAMELLIA128_SHA256
- DH_DSS_CAMELLIA128_SHA256
- DH_RSA_CAMELLIA128_SHA256
- DHE_DSS_CAMELLIA128_SHA256
- DHE_RSA_CAMELLIA128_SHA256
- DH_ANON_CAMELLIA128_SHA256
- RSA_CAMELLIA256_SHA256
- DH_DSS_CAMELLIA256_SHA256
- DH_RSA_CAMELLIA256_SHA256
- DHE_DSS_CAMELLIA256_SHA256
- DHE_RSA_CAMELLIA256_SHA256
- DH_ANON_CAMELLIA256_SHA256
- ECDHE_ECDSA_CAMELLIA128_SHA256
- ECDHE_ECDSA_CAMELLIA256_SHA384
- ECDH_ECDSA_CAMELLIA128_SHA256
- ECDH_ECDSA_CAMELLIA256_SHA384
- ECDHE_RSA_CAMELLIA128_SHA256
- ECDHE_RSA_CAMELLIA256_SHA384
- ECDH_RSA_CAMELLIA128_SHA256
- ECDH_RSA_CAMELLIA256_SHA384
- RSA_CAMELLIA128_GCM_SHA256
- RSA_CAMELLIA256_GCM_SHA384
- DHE_RSA_CAMELLIA128_GCM_SHA256
- DHE_RSA_CAMELLIA256_GCM_SHA384
- DH_RSA_CAMELLIA128_GCM_SHA256
- DH_RSA_CAMELLIA256_GCM_SHA384
- DHE_DSS_CAMELLIA128_GCM_SHA256
- DHE_DSS_CAMELLIA256_GCM_SHA384
- DH_DSS_CAMELLIA128_GCM_SHA256
- DH_DSS_CAMELLIA256_GCM_SHA384
- DH_anon_CAMELLIA128_GCM_SHA256
- DH_anon_CAMELLIA256_GCM_SHA384
- ECDHE_ECDSA_CAMELLIA128_GCM_SHA256
- ECDHE_ECDSA_CAMELLIA256_GCM_SHA384
- ECDH_ECDSA_CAMELLIA128_GCM_SHA256
- ECDH_ECDSA_CAMELLIA256_GCM_SHA384
- ECDHE_RSA_CAMELLIA128_GCM_SHA256
- ECDHE_RSA_CAMELLIA256_GCM_SHA384
- ECDH_RSA_CAMELLIA128_GCM_SHA256
- ECDH_RSA_CAMELLIA256_GCM_SHA384
- PSK_CAMELLIA128_GCM_SHA256
- PSK_CAMELLIA256_GCM_SHA384
- DHE_PSK_CAMELLIA128_GCM_SHA256
- DHE_PSK_CAMELLIA256_GCM_SHA384
- RSA_PSK_CAMELLIA128_GCM_SHA256
- RSA_PSK_CAMELLIA256_GCM_SHA384
- PSK_CAMELLIA128_SHA256
- PSK_CAMELLIA256_SHA384
- DHE_PSK_CAMELLIA128_SHA256
- DHE_PSK_CAMELLIA256_SHA384
- RSA_PSK_CAMELLIA128_SHA256
- RSA_PSK_CAMELLIA256_SHA384
- ECDHE_PSK_CAMELLIA128_SHA256
- ECDHE_PSK_CAMELLIA256_SHA384
- ECDHE_PSK_RC4_SHA
- ECDHE_PSK_3DES_SHA
- ECDHE_PSK_AES128_SHA
- ECDHE_PSK_AES256_SHA
- ECDHE_PSK_AES128_SHA256
- ECDHE_PSK_AES256_SHA384
- ECDHE_PSK_NULL_SHA
- ECDHE_PSK_NULL_SHA256
- ECDHE_PSK_NULL_SHA384
- ECDHE_RSA_CHACHA20_POLY1305_SHA256
- ECDHE_ECDSA_CHACHA20_POLY1305_SHA256
- DHE_RSA_CHACHA20_POLY1305_SHA256
- PSK_CHACHA20_POLY1305_SHA256
- ECDHE_PSK_CHACHA20_POLY1305_SHA256
- DHE_PSK_CHACHA20_POLY1305_SHA256
- RSA_PSK_CHACHA20_POLY1305_SHA256
- AES128_GCM_SHA256
- AES256_GCM_SHA384
- CHACHA20_POLY1305_SHA256
- AES128_CCM_SHA256
- AES128_CCM8_SHA256

## Data Type

String

# tls_client_auth property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables or disables certificate-based client authentication.

## Syntax

*Rust Syntax*

```text
fn tls_client_auth(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_client_auth(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // NoAuth1   // RequestCert2   // RequireCert
```

## Default Value

0

## Remarks

Enables or disables certificate-based client authentication.

Set this property to true to tune up the client authentication type:

|  |  |  |
| --- | --- | --- |
| ccatNoAuth | 0 |  |
| ccatRequestCert | 1 |  |
| ccatRequireCert | 2 |  |

## Data Type

i32

# tls_extensions property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Provides access to TLS extensions.

## Syntax

*Rust Syntax*

```text
fn tls_extensions(&self ) -> Result<String, SecureBlackboxError> fn set_tls_extensions(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_extensions_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Provides access to TLS extensions.

## Data Type

String

# tls_force_resume_if_destination_changes property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Whether to force TLS session resumption when the destination address changes.

## Syntax

*Rust Syntax*

```text
fn tls_force_resume_if_destination_changes(&self ) -> Result<bool, SecureBlackboxError> fn set_tls_force_resume_if_destination_changes(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Whether to force TLS session resumption when the destination address changes.

## Data Type

bool

# tls_groups property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies a list of key exchange groups to attempt during the TLS key exchange.

## Syntax

*Rust Syntax*

```text
fn tls_groups(&self ) -> Result<String, SecureBlackboxError> fn set_tls_groups(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_groups_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Specifies a list of key exchange groups to attempt during the TLS key exchange.

Keep this setting at its default value (empty string) to stick with the default list of key exchange groups. You can tweak the list by using '+' and '-' modifiers that are immediately followed by a group name or the *all* placeholder:

```text
  // Ensure the two x25519-based groups are enabled and the finite field DHE2048 is disabled
  client.TLSSettings.Groups = "+x25519mlkem768;+x25519;-ffdhe2048";

  // Only enable the hybrid X25519/ML-KEM768 group
  client.TLSSettings.Groups = "-all;+x25519mlkem768";
```

The list of groups supported by the component is provided below. All the names are case-insensitive:

**Elliptic curve-based groups:**

- SECT163K1
- SECT163R1
- SECT163R2
- SECT193R1
- SECT193R2
- SECT233K1
- SECT233R1
- SECT239K1
- SECT283K1
- SECT283R1
- SECT409K1
- SECT409R1
- SECT571K1
- SECT571R1
- SECP160K1
- SECP160R1
- SECP160R2
- SECP192K1
- SECP192R1
- SECP224K1
- SECP224R1
- SECP256K1
- SECP256R1
- SECP384R1
- SECP521R1
- BRAINPOOLP256R1
- BRAINPOOLP384R1
- BRAINPOOLP512R1
- X25519
- X448

**Finite field-based groups:**

- FFDHE2048
- FFDHE3072
- FFDHE4096
- FFDHE6144
- FFDHE8192

**Post-Quantum and Hybrid groups:**

- MLKEM512
- MLKEM768
- MLKEM1024
- SECP256R1MLKEM768
- X25519MLKEM768
- SECP384R1MLKEM1024

Note: this property was called *ECCurves* in SecureBlackbox 2024 and older.

## Data Type

String

# tls_pre_shared_identity property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Defines the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated.

## Syntax

*Rust Syntax*

```text
fn tls_pre_shared_identity(&self ) -> Result<String, SecureBlackboxError> fn set_tls_pre_shared_identity(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_pre_shared_identity_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Defines the identity used when the PSK (Pre-Shared Key) key-exchange mechanism is negotiated.

## Data Type

String

# tls_pre_shared_key property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the pre-shared key for the PSK (Pre-Shared Key) key-exchange mechanism, encoded with base16.

## Syntax

*Rust Syntax*

```text
fn tls_pre_shared_key(&self ) -> Result<String, SecureBlackboxError> fn set_tls_pre_shared_key(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_pre_shared_key_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Contains the pre-shared key for the PSK (Pre-Shared Key) key-exchange mechanism, encoded with base16.

## Data Type

String

# tls_pre_shared_key_ciphersuite property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Defines the ciphersuite used for PSK (Pre-Shared Key) negotiation.

## Syntax

*Rust Syntax*

```text
fn tls_pre_shared_key_ciphersuite(&self ) -> Result<String, SecureBlackboxError> fn set_tls_pre_shared_key_ciphersuite(&self, value : &str) ->  Option<SecureBlackboxError>
fn set_tls_pre_shared_key_ciphersuite_ref(&self, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Defines the ciphersuite used for PSK (Pre-Shared Key) negotiation.

## Data Type

String

# tls_renegotiation_attack_prevention_mode property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Selects the renegotiation attack prevention mechanism.

## Syntax

*Rust Syntax*

```text
fn tls_renegotiation_attack_prevention_mode(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_renegotiation_attack_prevention_mode(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // Compatible1   // Strict2   // Auto
```

## Default Value

2

## Remarks

Selects the renegotiation attack prevention mechanism.

The following options are available:

|  |  |  |
| --- | --- | --- |
| crapmCompatible | 0 | TLS 1.0 and 1.1 compatibility mode (renegotiation indication extension is disabled). |
| crapmStrict | 1 | Renegotiation attack prevention is enabled and enforced. |
| crapmAuto | 2 | Automatically choose whether to enable or disable renegotiation attack prevention. |

## Data Type

i32

# tls_revocation_check property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the kind(s) of revocation check to perform.

## Syntax

*Rust Syntax*

```text
fn tls_revocation_check(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_revocation_check(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // None1   // Auto2   // AllCRL3   // AllOCSP4   // AllCRLAndOCSP5   // AnyCRL6   // AnyOCSP7   // AnyCRLOrOCSP8   // AnyOCSPOrCRL
```

## Default Value

1

## Remarks

Specifies the kind(s) of revocation check to perform.

Revocation checking is necessary to ensure the integrity of the chain and obtain up-to-date certificate validity and trustworthiness information.

|  |  |  |
| --- | --- | --- |
| crcNone | 0 | No revocation checking. |
| crcAuto | 1 | Automatic mode selection. Currently this maps to crcAnyOCSPOrCRL, but it may change in the future. |
| crcAllCRL | 2 | All provided CRL endpoints will be checked, and all checks must succeed. |
| crcAllOCSP | 3 | All provided OCSP endpoints will be checked, and all checks must succeed. |
| crcAllCRLAndOCSP | 4 | All provided CRL and OCSP endpoints will be checked, and all checks must succeed. |
| crcAnyCRL | 5 | All provided CRL endpoints will be checked, and at least one check must succeed. |
| crcAnyOCSP | 6 | All provided OCSP endpoints will be checked, and at least one check must succeed. |
| crcAnyCRLOrOCSP | 7 | All provided CRL and OCSP endpoints will be checked, and at least one check must succeed. CRL endpoints are checked first. |
| crcAnyOCSPOrCRL | 8 | All provided CRL and OCSP endpoints will be checked, and at least one check must succeed. OCSP endpoints are checked first. |

This setting controls the way the revocation checks are performed for every certificate in the chain. Typically certificates come with two types of revocation information sources: CRL (certificate revocation lists) and OCSP responders. CRLs are static objects periodically published by the CA at some online location. OCSP responders are active online services maintained by the CA that can provide up-to-date information on certificate statuses in near real time.

There are some conceptual differences between the two. CRLs are normally larger in size. Their use involves some latency because there is normally some delay between the time when a certificate was revoked and the time the subsequent CRL mentioning that is published. The benefits of CRL is that the same object can provide statuses for all certificates issued by a particular CA, and that the whole technology is much simpler than OCSP (and thus is supported by more CAs).

This setting lets you adjust the validation course by including or excluding certain types of revocation sources from the validation process. The crcAnyOCSPOrCRL setting (give preference to the faster OCSP route and only demand one source to succeed) is a good choice for most typical validation environments. The "crcAll*" modes are much stricter, and may be used in scenarios where bulletproof validity information is essential.

NOTE: If no CRL or OCSP endpoints are provided by the CA, the revocation check will be considered successful. This is because the CA chose not to supply revocation information for its certificates, meaning they are considered irrevocable.

NOTE: Within each of the above settings, if any retrieved CRL or OCSP response indicates that the certificate has been revoked, the revocation check fails.

## Data Type

i32

# tls_ssl_options property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Various SSL (TLS) protocol options, set of cssloExpectShutdownMessage 0x001 Wait for the close-notify message when shutting down the connection cssloOpenSSLDTLSWorkaround 0x002 (DEPRECATED) Use a DTLS version workaround when talking to very old OpenSSL versions cssloDisableKexLengthAlignment 0x004 Do not align the client-side PMS by the RSA modulus size.

## Syntax

*Rust Syntax*

```text
fn tls_ssl_options(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_ssl_options(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

16

## Remarks

Various SSL (TLS) protocol options, set of

|  |  |  |
| --- | --- | --- |
| cssloExpectShutdownMessage | 0x001 | Wait for the close-notify message when shutting down the connection |
| cssloOpenSSLDTLSWorkaround | 0x002 | (DEPRECATED) Use a DTLS version workaround when talking to very old OpenSSL versions |
| cssloDisableKexLengthAlignment | 0x004 | Do not align the client-side PMS by the RSA modulus size. It is unlikely that you will ever need to adjust it. |
| cssloForceUseOfClientCertHashAlg | 0x008 | Enforce the use of the client certificate hash algorithm. It is unlikely that you will ever need to adjust it. |
| cssloAutoAddServerNameExtension | 0x010 | Automatically add the server name extension when known |
| cssloAcceptTrustedSRPPrimesOnly | 0x020 | Accept trusted SRP primes only |
| cssloDisableSignatureAlgorithmsExtension | 0x040 | Disable (do not send) the signature algorithms extension. It is unlikely that you will ever need to adjust it. |
| cssloIntolerateHigherProtocolVersions | 0x080 | (server option) Do not allow fallback from TLS versions higher than currently enabled |
| cssloStickToPrefCertHashAlg | 0x100 | Stick to preferred certificate hash algorithms |
| cssloNoImplicitTLS12Fallback | 0x200 | Disable implicit TLS 1.3 to 1.2 fallbacks |
| cssloUseHandshakeBatches | 0x400 | Send the handshake message as large batches rather than individually |

## Data Type

i32

# tls_mode property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the TLS mode to use.

## Syntax

*Rust Syntax*

```text
fn tls_mode(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_mode(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // Default1   // NoTLS2   // ExplicitTLS3   // ImplicitTLS4   // MixedTLS
```

## Default Value

0

## Remarks

Specifies the TLS mode to use.

|  |  |  |
| --- | --- | --- |
| smDefault | 0 |  |
| smNoTLS | 1 | Do not use TLS |
| smExplicitTLS | 2 | Connect to the server without any encryption and then request an SSL session. |
| smImplicitTLS | 3 | Connect to the specified port, and establish the SSL session at once. |
| smMixedTLS | 4 | Connect to the specified port, and establish the SSL session at once, but allow plain data. |

## Data Type

i32

# tls_use_extended_master_secret property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables the Extended Master Secret Extension, as defined in RFC 7627.

## Syntax

*Rust Syntax*

```text
fn tls_use_extended_master_secret(&self ) -> Result<bool, SecureBlackboxError> fn set_tls_use_extended_master_secret(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

true

## Remarks

Enables the Extended Master Secret Extension, as defined in RFC 7627.

## Data Type

bool

# tls_use_session_resumption property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables or disables the TLS session resumption capability.

## Syntax

*Rust Syntax*

```text
fn tls_use_session_resumption(&self ) -> Result<bool, SecureBlackboxError> fn set_tls_use_session_resumption(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Enables or disables the TLS session resumption capability.

## Data Type

bool

# tls_versions property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The SSL/TLS versions to enable by default.

## Syntax

*Rust Syntax*

```text
fn tls_versions(&self ) -> Result<i32, SecureBlackboxError> fn set_tls_versions(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

48

## Remarks

The SSL/TLS versions to enable by default.

|  |  |  |
| --- | --- | --- |
| csbSSL2 | 0x01 | SSL 2 |
| csbSSL3 | 0x02 | SSL 3 |
| csbTLS1 | 0x04 | TLS 1.0 |
| csbTLS11 | 0x08 | TLS 1.1 |
| csbTLS12 | 0x10 | TLS 1.2 |
| csbTLS13 | 0x20 | TLS 1.3 |

## Data Type

i32

# use_chunked_transfer property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables chunked transfer.

## Syntax

*Rust Syntax*

```text
fn use_chunked_transfer(&self ) -> Result<bool, SecureBlackboxError> fn set_use_chunked_transfer(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Use this property to enable chunked content encoding.

## Data Type

bool

# use_compression property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enables or disables server-side compression.

## Syntax

*Rust Syntax*

```text
fn use_compression(&self ) -> Result<bool, SecureBlackboxError> fn set_use_compression(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Use this property to enable or disable server-side content compression.

## Data Type

bool

# use_http property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies whether the server should use HTTP instead of KMIP-over-TCP/TLS.

## Syntax

*Rust Syntax*

```text
fn use_http(&self ) -> Result<bool, SecureBlackboxError> fn set_use_http(&self, value : bool) ->  Option<SecureBlackboxError>
```

## Default Value

false

## Remarks

Set this property to true to tell the server to expect HTTP(S) connections instead of TCP-based KMIP requests.

## Data Type

bool

# user_count property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The number of records in the User arrays.

## Syntax

*Rust Syntax*

```text
fn user_count(&self ) -> Result<i32, SecureBlackboxError> fn set_user_count(&self, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

This property controls the size of the following arrays:

- [user_associated_data](#user_associated_data-property-kmipserver-struct)
- [user_base_path](#user_base_path-property-kmipserver-struct)
- [user_certificate](#user_certificate-property-kmipserver-struct)
- [user_data](#user_data-property-kmipserver-struct)
- [user_email](#user_email-property-kmipserver-struct)
- [user_handle](#user_handle-property-kmipserver-struct)
- [user_hash_algorithm](#user_hash_algorithm-property-kmipserver-struct)
- [user_incoming_speed_limit](#user_incoming_speed_limit-property-kmipserver-struct)
- [username](#username-property-kmipserver-struct)
- [user_otp_algorithm](#user_otp_algorithm-property-kmipserver-struct)
- [user_otp_len](#user_otp_len-property-kmipserver-struct)
- [user_otp_value](#user_otp_value-property-kmipserver-struct)
- [user_outgoing_speed_limit](#user_outgoing_speed_limit-property-kmipserver-struct)
- [user_password](#user_password-property-kmipserver-struct)
- [user_shared_secret](#user_shared_secret-property-kmipserver-struct)
- [user_ssh_key](#user_ssh_key-property-kmipserver-struct)

The array indices start at *0* and end at *user_count - 1*.

## Data Type

i32

# user_associated_data property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the user's Associated Data when SSH AEAD (Authenticated Encryption with Associated Data) algorithm is used.

## Syntax

*Rust Syntax*

```text
fn user_associated_data(&self , UserIndex : i32) -> Result<Vec<u8>, SecureBlackboxError> fn set_user_associated_data(&self, UserIndex : i32, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_user_associated_data_ref(&self, UserIndex : i32, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Contains the user's Associated Data when SSH AEAD (Authenticated Encryption with Associated Data) algorithm is used.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

Vec

# user_base_path property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Base path for this user in the server's file system.

## Syntax

*Rust Syntax*

```text
fn user_base_path(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_user_base_path(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_user_base_path_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Base path for this user in the server's file system.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# user_certificate property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the user's certificate.

## Syntax

*Rust Syntax*

```text
fn user_certificate(&self , UserIndex : i32) -> Result<Vec<u8>, SecureBlackboxError> fn set_user_certificate(&self, UserIndex : i32, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_user_certificate_ref(&self, UserIndex : i32, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Contains the user's certificate.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

Vec

# user_data property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains uninterpreted user-defined data that should be associated with the user account, such as comments or custom settings.

## Syntax

*Rust Syntax*

```text
fn user_data(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_user_data(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_user_data_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Contains uninterpreted user-defined data that should be associated with the user account, such as comments or custom settings.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# user_email property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The user's email address.

## Syntax

*Rust Syntax*

```text
fn user_email(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_user_email(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_user_email_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The user's email address.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# user_handle property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Allows to get or set a 'handle', a unique identifier of the underlying property object.

## Syntax

*Rust Syntax*

```text
fn user_handle(&self , UserIndex : i32) -> Result<i64, SecureBlackboxError> fn set_user_handle(&self, UserIndex : i32, value : i64) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Allows to get or set a 'handle', a unique identifier of the underlying property object. Use this property to assign objects of the same type in a quicker manner, without copying them fieldwise.

When you pass a handle of one object to another, the source object is copied to the destination rather than assigned. It is safe to get rid of the original object after such operation.

```text
  pdfSigner.setSigningCertHandle(certMgr.getCertHandle());
```

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i64

# user_hash_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the hash algorithm used to generate TOTP (Time-based One-Time Passwords) passwords for this user.

## Syntax

*Rust Syntax*

```text
fn user_hash_algorithm(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_user_hash_algorithm(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_user_hash_algorithm_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

Specifies the hash algorithm used to generate TOTP (Time-based One-Time Passwords) passwords for this user. Three HMAC algorithms are supported, with SHA-1, SHA-256, and SHA-512 digests:

|  |  |  |
| --- | --- | --- |
| SB_MAC_ALGORITHM_HMAC_SHA1 | SHA1 |  |
| SB_MAC_ALGORITHM_HMAC_SHA256 | SHA256 |  |
| SB_MAC_ALGORITHM_HMAC_SHA512 | SHA512 |  |

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# user_incoming_speed_limit property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the incoming speed limit for this user.

## Syntax

*Rust Syntax*

```text
fn user_incoming_speed_limit(&self , UserIndex : i32) -> Result<i32, SecureBlackboxError> fn set_user_incoming_speed_limit(&self, UserIndex : i32, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Specifies the incoming speed limit for this user. The value of 0 (zero) means "no limitation".

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i32

# user_otp_algorithm property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The algorithm used to generate one-time passwords (OTP) for this user, either HOTP (Hash-based OTP) or TOTP (Time-based OTP).

## Syntax

*Rust Syntax*

```text
fn user_otp_algorithm(&self , UserIndex : i32) -> Result<i32, SecureBlackboxError> fn set_user_otp_algorithm(&self, UserIndex : i32, value : i32) ->  Option<SecureBlackboxError>
```

## Possible Values

```text
0   // None1   // Hmac2   // Time
```

## Default Value

0

## Remarks

The algorithm used to generate one-time passwords (OTP) for this user, either HOTP (Hash-based OTP) or TOTP (Time-based OTP). In the former case, a value of a dedicated counter is used to generate a unique password, while in the latter the password is generated on the basis of the current time value.

|  |  |  |
| --- | --- | --- |
| oaHmac | 0 |  |
| oaTime | 1 |  |

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i32

# user_otp_len property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the length of the user's OTP password.

## Syntax

*Rust Syntax*

```text
fn user_otp_len(&self , UserIndex : i32) -> Result<i32, SecureBlackboxError> fn set_user_otp_len(&self, UserIndex : i32, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Specifies the length of the user's OTP password.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i32

# user_otp_value property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The user's time interval (TOTP) or Counter (HOTP).

## Syntax

*Rust Syntax*

```text
fn user_otp_value(&self , UserIndex : i32) -> Result<i32, SecureBlackboxError> fn set_user_otp_value(&self, UserIndex : i32, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

The user's time interval (TOTP) or Counter (HOTP).

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i32

# user_outgoing_speed_limit property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Specifies the outgoing speed limit for this user.

## Syntax

*Rust Syntax*

```text
fn user_outgoing_speed_limit(&self , UserIndex : i32) -> Result<i32, SecureBlackboxError> fn set_user_outgoing_speed_limit(&self, UserIndex : i32, value : i32) ->  Option<SecureBlackboxError>
```

## Default Value

0

## Remarks

Specifies the outgoing speed limit for this user. The value of 0 (zero) means "no limitation".

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

i32

# user_password property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The user's authentication password.

## Syntax

*Rust Syntax*

```text
fn user_password(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_user_password(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_user_password_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The user's authentication password.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# user_shared_secret property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the user's secret key, which is essentially a shared secret between the client and server.

## Syntax

*Rust Syntax*

```text
fn user_shared_secret(&self , UserIndex : i32) -> Result<Vec<u8>, SecureBlackboxError> fn set_user_shared_secret(&self, UserIndex : i32, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_user_shared_secret_ref(&self, UserIndex : i32, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Contains the user's secret key, which is essentially a shared secret between the client and server.

Shared secrets can be used in TLS-driven protocols, as well as in OTP (where it is called a 'key secret') for generating one-time passwords on one side, and validate them on the other.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

Vec

# user_ssh_key property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Contains the user's SSH key.

## Syntax

*Rust Syntax*

```text
fn user_ssh_key(&self , UserIndex : i32) -> Result<Vec<u8>, SecureBlackboxError> fn set_user_ssh_key(&self, UserIndex : i32, value : Vec<u8>) ->  Option<SecureBlackboxError>
fn set_user_ssh_key_ref(&self, UserIndex : i32, value : &[u8]) ->  Option<SecureBlackboxError>
```

## Remarks

Contains the user's SSH key.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

Vec

# username property ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

The registered name (login) of the user.

## Syntax

*Rust Syntax*

```text
fn username(&self , UserIndex : i32) -> Result<String, SecureBlackboxError> fn set_username(&self, UserIndex : i32, value : &str) ->  Option<SecureBlackboxError>
fn set_username_ref(&self, UserIndex : i32, value : &String) ->  Option<SecureBlackboxError>
```

## Default Value

""

## Remarks

The registered name (login) of the user.

The *UserIndex* parameter specifies the index of the item in the array. The size of the array is controlled by the [UserCount](#user_count-property-kmipserver-struct) property.

## Data Type

String

# cleanup method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Cleans up the server environment by purging expired sessions and cleaning caches.

## Syntax

*Rust Syntax*

```text
fn cleanup(&self) -> Result<(), SecureBlackboxError>
```

## Remarks

Call this method while the server is active to clean up the environment allocated for the server by releasing unused resources and cleaning caches.

# config method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Sets or retrieves a configuration setting.

## Syntax

*Rust Syntax*

```text
fn config(&self, configuration_string : &str) ->  Result<String, SecureBlackboxError>
```

## Remarks

config is a generic method available in every struct. It is used to set and retrieve [configuration settings](#config-settings-kmipserver-struct) for the struct.

These settings are similar in functionality to properties, but they are rarely used. In order to avoid "polluting" the property namespace of the struct, access to these *internal properties* is provided through the config method.

To set a configuration setting named *PROPERTY*, you must call *Config("PROPERTY=VALUE")*, where *VALUE* is the value of the setting expressed as a string. For boolean values, use the strings "True", "False", "0", "1", "Yes", or "No" (case does not matter).

To read (query) the value of a [configuration setting](#config-settings-kmipserver-struct), you must call *Config("PROPERTY")*. The value will be returned as a string.

# do_action method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Performs an additional action.

## Syntax

*Rust Syntax*

```text
fn do_action(&self, action_id : &str, action_params : &str) ->  Result<String, SecureBlackboxError>
```

## Remarks

do_action is a generic method available in every struct. It is used to perform an additional action introduced after the product major release. The list of actions is not fixed, and may be flexibly extended over time.

The unique identifier (case insensitive) of the action is provided in the *ActionID* parameter.

*ActionParams* contains the value of a single parameter, or a list of multiple parameters for the action in the form of *PARAM1=VALUE1;PARAM2=VALUE2;...*.

Common ActionIDs:

|  |  |  |  |
| --- | --- | --- | --- |
| Action | Parameters | Returned value | Description |
| ResetTrustedListCache | none | none | Clears the cached list of trusted lists. |
| ResetCertificateCache | none | none | Clears the cached certificates. |
| ResetCRLCache | none | none | Clears the cached CRLs. |
| ResetOCSPResponseCache | none | none | Clears the cached OCSP responses. |

# drop_client method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Terminates a client connection.

## Syntax

*Rust Syntax*

```text
fn drop_client(&self, connection_id : i64, forced : bool) -> Result<(), SecureBlackboxError>
```

## Remarks

Call this method to shut down a connected client. *Forced* indicates whether the connection should be closed in a graceful manner.

# get_client_cert method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Populates the per-connection certificate object.

## Syntax

*Rust Syntax*

```text
fn get_client_cert(&self, connection_id : i64) -> Result<(), SecureBlackboxError>
```

## Remarks

This method populates the certificate template/object received with the certificate generation request in certificate property.

Call this method from your [on_before_generate](#on_before_generate-event-kmipserver-struct) event handler to populate the certificate template, as received in the request. It is still not late to alter the details of the certificate on this stage.

Call it from your [on_after_generate](#on_after_generate-event-kmipserver-struct) event handler to populate the certificate that has been generated.

# get_client_key method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Populates the per-connection key object.

## Syntax

*Rust Syntax*

```text
fn get_client_key(&self, connection_id : i64) -> Result<(), SecureBlackboxError>
```

## Remarks

This method populates the key template/object received with the key generation request in key property.

Call this method from your [on_before_generate_key](#on_before_generate_key-event-kmipserver-struct) event handler to populate the key template, as received in the request. It is still not late to alter the details of the key on this stage.

Call it from your [on_after_generate_key](#on_after_generate_key-event-kmipserver-struct) event handler to populate the key that has been generated.

# get_request_header method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns a request header value.

## Syntax

*Rust Syntax*

```text
fn get_request_header(&self, connection_id : i64, header_name : &str) ->  Result<String, SecureBlackboxError>
```

## Remarks

Use this method to get the value of a request header. A good place to call this method is a request-marking event, such as on_get_request or on_post_request.

# get_response_header method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Returns a response header value.

## Syntax

*Rust Syntax*

```text
fn get_response_header(&self, connection_id : i64, header_name : &str) ->  Result<String, SecureBlackboxError>
```

## Remarks

Use this method to get the value of a response header. A good place to call this method is [on_headers_prepared](#on_headers_prepared-event-kmipserver-struct) event. Call the method with empty *HeaderName* to get the whole response header.

# list_clients method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Enumerates the connected clients.

## Syntax

*Rust Syntax*

```text
fn list_clients(&self) ->  Result<String, SecureBlackboxError>
```

## Remarks

This method enumerates the connected clients. It returns a list of strings, with each string being of 'ConnectionID|Address|Port' format, and representing a single connection.

# pin_client method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Takes a snapshot of the connection's properties.

## Syntax

*Rust Syntax*

```text
fn pin_client(&self, connection_id : i64) -> Result<(), SecureBlackboxError>
```

## Remarks

Use this method to take a snapshot of a connected client. The captured properties are populated in pinned_client and pinned_client_chain properties.

# process_generic_request method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Processes a generic HTTP request.

## Syntax

*Rust Syntax*

```text
fn process_generic_request(&self, connection_id : i64, request_bytes : &[u8]) ->  Result<Vec<u8>, SecureBlackboxError>
```

## Remarks

This method processes a generic HTTP request and produces a response. Use it to generate HTTP responses for requests obtained externally, out of the default HTTP channel.

This method respects all current settings of the server object, and invokes the corresponding events to consult about the request and response details with the application. *ConnectionId* allows to identify the request in the events.

The method returns the complete HTTP response including HTTP headers.

# reset method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Resets the struct settings.

## Syntax

*Rust Syntax*

```text
fn reset(&self) -> Result<(), SecureBlackboxError>
```

## Remarks

reset is a generic method available in every struct.

# set_client_bytes method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Commits a data buffer to the connection.

## Syntax

*Rust Syntax*

```text
fn set_client_bytes(&self, connection_id : i64, value : &[u8]) -> Result<(), SecureBlackboxError>
```

## Remarks

Use this method from your [on_response](#on_response-event-kmipserver-struct) [on_encrypt](#on_encrypt-event-kmipserver-struct) [on_after_encrypt](#on_after_encrypt-event-kmipserver-struct) [on_decrypt](#on_decrypt-event-kmipserver-struct) [on_after_decrypt](#on_after_decrypt-event-kmipserver-struct) [on_sign](#on_sign-event-kmipserver-struct) [on_after_sign](#on_after_sign-event-kmipserver-struct) events handler to commit a new data to the server component.

# set_client_cert method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Commits the per-connection certificate object to the connection context.

## Syntax

*Rust Syntax*

```text
fn set_client_cert(&self, connection_id : i64) -> Result<(), SecureBlackboxError>
```

## Remarks

This method commits the certificate object stored in certificate to the connection context.

# set_client_key method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Commits the per-connection key object to the connection context.

## Syntax

*Rust Syntax*

```text
fn set_client_key(&self, connection_id : i64) -> Result<(), SecureBlackboxError>
```

## Remarks

This method commits the key object stored in key to the connection context.

# set_response_header method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Sets a response header.

## Syntax

*Rust Syntax*

```text
fn set_response_header(&self, connection_id : i64, header_name : &str, value : &str) -> Result<(), SecureBlackboxError>
```

## Remarks

Use this method to set a response header. A good place to call this method is a request-marking event, such as on_get_request or on_post_request.

# start method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Start the KMIP server.

## Syntax

*Rust Syntax*

```text
fn start(&self) -> Result<(), SecureBlackboxError>
```

## Remarks

Call this method to activate the KMIP server and start listening to incoming connections.

# stop method ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Stops the KMIP server.

## Syntax

*Rust Syntax*

```text
fn stop(&self) -> Result<(), SecureBlackboxError>
```

## Remarks

Call this method to stop the KMIP server.

# on_accept event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports an incoming connection.

## Syntax

*Rust Syntax*

```text
// KMIPServerAcceptEventArgs carries the KMIPServer Accept event's parameters.
pub struct KMIPServerAcceptEventArgs {
  fn remote_address(&self) -> &String
  fn remote_port(&self) -> i32
  fn accept(&self) -> bool
  fn set_accept(&self, value : bool)
}

// KMIPServerAcceptEvent defines the signature of the KMIPServer Accept event's handler function.
pub trait KMIPServerAcceptEvent {
  fn on_accept(&self, sender : KMIPServer, e : &mut KMIPServerAcceptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_accept(&self) -> &'a dyn KMIPServerAcceptEvent;
  pub fn set_on_accept(&mut self, value : &'a dyn KMIPServerAcceptEvent);
  ...
}
```

## Remarks

This event is fired when a new connection from *RemoteAddress*:*RemotePort* is ready to be accepted. Use the *Accept* parameter to accept or decline it.

Subscribe to [on_connect](#on_connect-event-kmipserver-struct) event to be notified of every connection that has been set up.

# on_activate_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the object activation request.

## Syntax

*Rust Syntax*

```text
// KMIPServerActivateObjectEventArgs carries the KMIPServer ActivateObject event's parameters.
pub struct KMIPServerActivateObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerActivateObjectEvent defines the signature of the KMIPServer ActivateObject event's handler function.
pub trait KMIPServerActivateObjectEvent {
  fn on_activate_object(&self, sender : KMIPServer, e : &mut KMIPServerActivateObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_activate_object(&self) -> &'a dyn KMIPServerActivateObjectEvent;
  pub fn set_on_activate_object(&mut self, value : &'a dyn KMIPServerActivateObjectEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about object activation requests. The *ObjectId* parameter contain the unique identifier of the object being activated.

Object activation requests are handled in a simplified way, without using the three-step virtualization approach.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_add event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Passes the certificate import request to the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerAddEventArgs carries the KMIPServer Add event's parameters.
pub struct KMIPServerAddEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn cert_id(&self) -> &String
  fn set_cert_id(&self, value : &str)
  fn set_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAddEvent defines the signature of the KMIPServer Add event's handler function.
pub trait KMIPServerAddEvent {
  fn on_add(&self, sender : KMIPServer, e : &mut KMIPServerAddEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_add(&self) -> &'a dyn KMIPServerAddEvent;
  pub fn set_on_add(&mut self, value : &'a dyn KMIPServerAddEvent);
  ...
}
```

## Remarks

The server uses this event to allow the application to customize a certificate import request. This request fires after [on_before_add](#on_before_add-event-kmipserver-struct) if the *Action* parameter passed back to it was set to *fraCustom*.

The *Group* parameter indicates the shared name for the certificate elements (public key, private key, certificate). The *CertId* provides a unique identifier for the certificate object. Both can be adjusted by the application as required. Use the certificate object to access the certificate parameters.

Upon completion of the processing, set the value of *OperationStatus* to match the result of the operation.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_add_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Expects the application to handle the key import request.

## Syntax

*Rust Syntax*

```text
// KMIPServerAddKeyEventArgs carries the KMIPServer AddKey event's parameters.
pub struct KMIPServerAddKeyEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn key_id(&self) -> &String
  fn set_key_id(&self, value : &str)
  fn set_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAddKeyEvent defines the signature of the KMIPServer AddKey event's handler function.
pub trait KMIPServerAddKeyEvent {
  fn on_add_key(&self, sender : KMIPServer, e : &mut KMIPServerAddKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_add_key(&self) -> &'a dyn KMIPServerAddKeyEvent;
  pub fn set_on_add_key(&mut self, value : &'a dyn KMIPServerAddKeyEvent);
  ...
}
```

## Remarks

Application uses this event to wiretap into the key import procedure. For this event to be invoked, the *fraCustom* action needs to be previously returned from the [on_before_add_key](#on_before_add_key-event-kmipserver-struct) event.

The handler of this event should process the key data provided via the key property, typically by storing the key object in a local database. The handler also should set the *KeyId* and, optionally, *Group* parameters to match the properties of the new key object. The result of the operation should be returned via the *OperationStatus* parameter.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_add event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the certificate import operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterAddEventArgs carries the KMIPServer AfterAdd event's parameters.
pub struct KMIPServerAfterAddEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn cert_id(&self) -> &String
  fn set_cert_id(&self, value : &str)
  fn set_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterAddEvent defines the signature of the KMIPServer AfterAdd event's handler function.
pub trait KMIPServerAfterAddEvent {
  fn on_after_add(&self, sender : KMIPServer, e : &mut KMIPServerAfterAddEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_add(&self) -> &'a dyn KMIPServerAfterAddEvent;
  pub fn set_on_after_add(&mut self, value : &'a dyn KMIPServerAfterAddEvent);
  ...
}
```

## Remarks

The struct fires this event upon completion of certificate import routine. The certificate object that has been generated can be read from the certificate property.

The *Group* and *CertId* parameters contain the name of the group and the unique identifier assigned to the new certificate. The *OperationStatus* parameter contains the result of the operation. The application can adjust them as required.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_add_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports the completion of the key import procedure.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterAddKeyEventArgs carries the KMIPServer AfterAddKey event's parameters.
pub struct KMIPServerAfterAddKeyEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn key_id(&self) -> &String
  fn set_key_id(&self, value : &str)
  fn set_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterAddKeyEvent defines the signature of the KMIPServer AfterAddKey event's handler function.
pub trait KMIPServerAfterAddKeyEvent {
  fn on_after_add_key(&self, sender : KMIPServer, e : &mut KMIPServerAfterAddKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_add_key(&self) -> &'a dyn KMIPServerAfterAddKeyEvent;
  pub fn set_on_after_add_key(&mut self, value : &'a dyn KMIPServerAfterAddKeyEvent);
  ...
}
```

## Remarks

The component uses the on_after_add_key event to notify the application about completion of the key import processing. The *OperationStatus* parameter returns the operation result. The *KeyId* and *Group* parameters are set to match the properties of the newly created key. The application can change them if required.

This event fires both for "normal" and "virtualized" requests, independently of the value of the *Action* parameter returned from the [on_before_add_key](#on_before_add_key-event-kmipserver-struct) event. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_browse event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

KMIP server uses this event to notify the application about the completion of the browsing (attribute request) operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterBrowseEventArgs carries the KMIPServer AfterBrowse event's parameters.
pub struct KMIPServerAfterBrowseEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterBrowseEvent defines the signature of the KMIPServer AfterBrowse event's handler function.
pub trait KMIPServerAfterBrowseEvent {
  fn on_after_browse(&self, sender : KMIPServer, e : &mut KMIPServerAfterBrowseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_browse(&self) -> &'a dyn KMIPServerAfterBrowseEvent;
  pub fn set_on_after_browse(&mut self, value : &'a dyn KMIPServerAfterBrowseEvent);
  ...
}
```

## Remarks

The *ConnectionID* parameter identifies the client connection, and the *ObjectId* parameter specifies the unique ID of the object the attributes of which are being requested.

This event follows the three-step virtualization approach, and fires after the preceding [on_before_browse](#on_before_browse-event-kmipserver-struct) and [on_read_attribute](#on_read_attribute-event-kmipserver-struct) events.

Check the operation status, and alter it, if needed, through the *OperationStatus* parameter:

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_decrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the decryption call.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterDecryptEventArgs carries the KMIPServer AfterDecrypt event's parameters.
pub struct KMIPServerAfterDecryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn decrypted_data(&self) -> &[u8]
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterDecryptEvent defines the signature of the KMIPServer AfterDecrypt event's handler function.
pub trait KMIPServerAfterDecryptEvent {
  fn on_after_decrypt(&self, sender : KMIPServer, e : &mut KMIPServerAfterDecryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_decrypt(&self) -> &'a dyn KMIPServerAfterDecryptEvent;
  pub fn set_on_after_decrypt(&mut self, value : &'a dyn KMIPServerAfterDecryptEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about completion of the decrypt request. The event parameters provide the details of the decryption operation. This event fires independently of whether the build-in or virtualized decryption is used.

The *ObjectId* parameter contains the unique identifier of the decryption key. *DecryptedData* contains the decryption result. The *CorrelationValue* string is a linking token that allows to associate several pieces of a multi-step decryption operation together. The *OperationStatus* contains the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_derive_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the key derivation request.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterDeriveKeyEventArgs carries the KMIPServer AfterDeriveKey event's parameters.
pub struct KMIPServerAfterDeriveKeyEventArgs {
  fn connection_id(&self) -> i64
  fn new_key_id(&self) -> &String
  fn set_new_key_id(&self, value : &str)
  fn set_new_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterDeriveKeyEvent defines the signature of the KMIPServer AfterDeriveKey event's handler function.
pub trait KMIPServerAfterDeriveKeyEvent {
  fn on_after_derive_key(&self, sender : KMIPServer, e : &mut KMIPServerAfterDeriveKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_derive_key(&self) -> &'a dyn KMIPServerAfterDeriveKeyEvent;
  pub fn set_on_after_derive_key(&mut self, value : &'a dyn KMIPServerAfterDeriveKeyEvent);
  ...
}
```

## Remarks

Use this event to get notified about completion of key derivation requests. The *OperationStatus* parameter specifies the result of the key derivation operation. The *NewKeyId* contains the unique identifier of the new key. You can change both parameters if required.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_edit event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of completion of the object editing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterEditEventArgs carries the KMIPServer AfterEdit event's parameters.
pub struct KMIPServerAfterEditEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterEditEvent defines the signature of the KMIPServer AfterEdit event's handler function.
pub trait KMIPServerAfterEditEvent {
  fn on_after_edit(&self, sender : KMIPServer, e : &mut KMIPServerAfterEditEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_edit(&self) -> &'a dyn KMIPServerAfterEditEvent;
  pub fn set_on_after_edit(&mut self, value : &'a dyn KMIPServerAfterEditEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about completion of an edit operation. An edit operation consists of a number of individual attribute update requests.

The *ObjectId* parameter contains the unique identifier of the object that was edited. Use the *OperationStatus* parameter to check or update the result of the operation.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_encrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the completion of the encryption call.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterEncryptEventArgs carries the KMIPServer AfterEncrypt event's parameters.
pub struct KMIPServerAfterEncryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn encrypted_data(&self) -> &[u8]
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterEncryptEvent defines the signature of the KMIPServer AfterEncrypt event's handler function.
pub trait KMIPServerAfterEncryptEvent {
  fn on_after_encrypt(&self, sender : KMIPServer, e : &mut KMIPServerAfterEncryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_encrypt(&self) -> &'a dyn KMIPServerAfterEncryptEvent;
  pub fn set_on_after_encrypt(&mut self, value : &'a dyn KMIPServerAfterEncryptEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about completion of the encrypt request. The event parameters provide the details of the encryption operation. This event fires independently of whether the build-in or virtualized decryption is used.

The *ObjectId* parameter contains the unique identifier of the encryption key. *EncryptedData* contains the encryption result. The *CorrelationValue* string is a linking token that allows to associate several pieces of a multi-step encryption operation together. The *OperationStatus* contains the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_generate event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Signifies completion of certificate generation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterGenerateEventArgs carries the KMIPServer AfterGenerate event's parameters.
pub struct KMIPServerAfterGenerateEventArgs {
  fn connection_id(&self) -> i64
  fn cert_id(&self) -> &String
  fn set_cert_id(&self, value : &str)
  fn set_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterGenerateEvent defines the signature of the KMIPServer AfterGenerate event's handler function.
pub trait KMIPServerAfterGenerateEvent {
  fn on_after_generate(&self, sender : KMIPServer, e : &mut KMIPServerAfterGenerateEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_generate(&self) -> &'a dyn KMIPServerAfterGenerateEvent;
  pub fn set_on_after_generate(&mut self, value : &'a dyn KMIPServerAfterGenerateEvent);
  ...
}
```

## Remarks

The struct fires this event upon completion of certificate generation routine. The generated certificate can be read from certificate.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_generate_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of the completion of key generation procedure.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterGenerateKeyEventArgs carries the KMIPServer AfterGenerateKey event's parameters.
pub struct KMIPServerAfterGenerateKeyEventArgs {
  fn connection_id(&self) -> i64
  fn key_id(&self) -> &String
  fn set_key_id(&self, value : &str)
  fn set_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterGenerateKeyEvent defines the signature of the KMIPServer AfterGenerateKey event's handler function.
pub trait KMIPServerAfterGenerateKeyEvent {
  fn on_after_generate_key(&self, sender : KMIPServer, e : &mut KMIPServerAfterGenerateKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_generate_key(&self) -> &'a dyn KMIPServerAfterGenerateKeyEvent;
  pub fn set_on_after_generate_key(&mut self, value : &'a dyn KMIPServerAfterGenerateKeyEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the completion of the key generation procedure. The *KeyId* parameter contains the ID of the new key object (and can be changed by the user code if required). The *OperationStatus* parameter reports the result of the operation.

This event is the third and conclusive in the sequence of [on_before_generate_key](#on_before_generate_key-event-kmipserver-struct), [on_generate_key](#on_generate_key-event-kmipserver-struct), and the on_after_generate_key events. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_generate_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of the completion of keypair generation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterGenerateKeyPairEventArgs carries the KMIPServer AfterGenerateKeyPair event's parameters.
pub struct KMIPServerAfterGenerateKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn private_key_id(&self) -> &String
  fn set_private_key_id(&self, value : &str)
  fn set_private_key_id_ref(&self, value : &String)
  fn public_key_id(&self) -> &String
  fn set_public_key_id(&self, value : &str)
  fn set_public_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterGenerateKeyPairEvent defines the signature of the KMIPServer AfterGenerateKeyPair event's handler function.
pub trait KMIPServerAfterGenerateKeyPairEvent {
  fn on_after_generate_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerAfterGenerateKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_generate_key_pair(&self) -> &'a dyn KMIPServerAfterGenerateKeyPairEvent;
  pub fn set_on_after_generate_key_pair(&mut self, value : &'a dyn KMIPServerAfterGenerateKeyPairEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the completion of the keypair generation operation. The *PrivateKeyId* and *PublicKeyId* parameters contain the IDs of the new private and public keys respectively. The *OperationStatus* parameter returns the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the hashing call.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterHashEventArgs carries the KMIPServer AfterHash event's parameters.
pub struct KMIPServerAfterHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_data(&self) -> &[u8]
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterHashEvent defines the signature of the KMIPServer AfterHash event's handler function.
pub trait KMIPServerAfterHashEvent {
  fn on_after_hash(&self, sender : KMIPServer, e : &mut KMIPServerAfterHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_hash(&self) -> &'a dyn KMIPServerAfterHashEvent;
  pub fn set_on_after_hash(&mut self, value : &'a dyn KMIPServerAfterHashEvent);
  ...
}
```

## Remarks

Subscribe to this event to be notified about completion of the hashing request processing. The *DataHash* parameter contains the hash that has been calculated. The *OperationStatus* parameter contains the operation result. If the hashing operation was a MAC (keyed) operation, the ID of the key is passed to the *ObjectId* parameter.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_list event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the list command.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterListEventArgs carries the KMIPServer AfterList event's parameters.
pub struct KMIPServerAfterListEventArgs {
  fn connection_id(&self) -> i64
  fn object_type(&self) -> i32
  fn object_status(&self) -> i32
  fn only_fresh_objects(&self) -> bool
  fn object_ids(&self) -> &String
  fn set_object_ids(&self, value : &str)
  fn set_object_ids_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterListEvent defines the signature of the KMIPServer AfterList event's handler function.
pub trait KMIPServerAfterListEvent {
  fn on_after_list(&self, sender : KMIPServer, e : &mut KMIPServerAfterListEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_list(&self) -> &'a dyn KMIPServerAfterListEvent;
  pub fn set_on_after_list(&mut self, value : &'a dyn KMIPServerAfterListEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the completion of the list command. The *ObjectType*, *ObjectStatus*, and *OnlyFreshObjects* contain the listing criteria. The *ObjectIds* contains a list of object unique identifiers, separated by newlines.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_obtain_lease event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports the completion of lease allocation operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterObtainLeaseEventArgs carries the KMIPServer AfterObtainLease event's parameters.
pub struct KMIPServerAfterObtainLeaseEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn lease_time(&self) -> i32
  fn set_lease_time(&self, value : i32)
  fn last_change_date(&self) -> &String
  fn set_last_change_date(&self, value : &str)
  fn set_last_change_date_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterObtainLeaseEvent defines the signature of the KMIPServer AfterObtainLease event's handler function.
pub trait KMIPServerAfterObtainLeaseEvent {
  fn on_after_obtain_lease(&self, sender : KMIPServer, e : &mut KMIPServerAfterObtainLeaseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_obtain_lease(&self) -> &'a dyn KMIPServerAfterObtainLeaseEvent;
  pub fn set_on_after_obtain_lease(&mut self, value : &'a dyn KMIPServerAfterObtainLeaseEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the completion of lease allocation operation. The *ObjectId* parameter specifies the identifier of the object a lease for each is allocated. The *LeaseTime* and *LastChangeDate* parameters specify parameters of the lease.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_read_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of the completion of the read operation on the object.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterReadObjectEventArgs carries the KMIPServer AfterReadObject event's parameters.
pub struct KMIPServerAfterReadObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn object_type(&self) -> i32
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterReadObjectEvent defines the signature of the KMIPServer AfterReadObject event's handler function.
pub trait KMIPServerAfterReadObjectEvent {
  fn on_after_read_object(&self, sender : KMIPServer, e : &mut KMIPServerAfterReadObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_read_object(&self) -> &'a dyn KMIPServerAfterReadObjectEvent;
  pub fn set_on_after_read_object(&mut self, value : &'a dyn KMIPServerAfterReadObjectEvent);
  ...
}
```

## Remarks

Use this event to be notified about completion of the read operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_re_certify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the completion of the re-certify operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterReCertifyEventArgs carries the KMIPServer AfterReCertify event's parameters.
pub struct KMIPServerAfterReCertifyEventArgs {
  fn connection_id(&self) -> i64
  fn new_cert_id(&self) -> &String
  fn set_new_cert_id(&self, value : &str)
  fn set_new_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterReCertifyEvent defines the signature of the KMIPServer AfterReCertify event's handler function.
pub trait KMIPServerAfterReCertifyEvent {
  fn on_after_re_certify(&self, sender : KMIPServer, e : &mut KMIPServerAfterReCertifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_re_certify(&self) -> &'a dyn KMIPServerAfterReCertifyEvent;
  pub fn set_on_after_re_certify(&mut self, value : &'a dyn KMIPServerAfterReCertifyEvent);
  ...
}
```

## Remarks

The server component uses this event to notify the application about the completion of the re-certification (certificate renewal) operation. The *NewCertId* contains the unique ID of the new certificate object. You can adjust it if required.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_re_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the completion of the re-key operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterReKeyEventArgs carries the KMIPServer AfterReKey event's parameters.
pub struct KMIPServerAfterReKeyEventArgs {
  fn connection_id(&self) -> i64
  fn new_key_id(&self) -> &String
  fn set_new_key_id(&self, value : &str)
  fn set_new_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterReKeyEvent defines the signature of the KMIPServer AfterReKey event's handler function.
pub trait KMIPServerAfterReKeyEvent {
  fn on_after_re_key(&self, sender : KMIPServer, e : &mut KMIPServerAfterReKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_re_key(&self) -> &'a dyn KMIPServerAfterReKeyEvent;
  pub fn set_on_after_re_key(&mut self, value : &'a dyn KMIPServerAfterReKeyEvent);
  ...
}
```

## Remarks

The server component uses this event to notify the application about the completion of the re-key (key renewal) operation. The *NewKeyId* contains the unique ID of the new key object. You can adjust it if required.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_rekey_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the completion of the re-key keypair operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterRekeyKeyPairEventArgs carries the KMIPServer AfterRekeyKeyPair event's parameters.
pub struct KMIPServerAfterRekeyKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn new_private_key_id(&self) -> &String
  fn set_new_private_key_id(&self, value : &str)
  fn set_new_private_key_id_ref(&self, value : &String)
  fn new_public_key_id(&self) -> &String
  fn set_new_public_key_id(&self, value : &str)
  fn set_new_public_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterRekeyKeyPairEvent defines the signature of the KMIPServer AfterRekeyKeyPair event's handler function.
pub trait KMIPServerAfterRekeyKeyPairEvent {
  fn on_after_rekey_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerAfterRekeyKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_rekey_key_pair(&self) -> &'a dyn KMIPServerAfterRekeyKeyPairEvent;
  pub fn set_on_after_rekey_key_pair(&mut self, value : &'a dyn KMIPServerAfterRekeyKeyPairEvent);
  ...
}
```

## Remarks

The server component uses this event to notify the application about the completion of the re-key (asymmetric key renewal) operation. The *NewPrivateKeyId* and *NewPublicKeyId* parameters contains the unique ID of the new key objects. You can adjust them if required.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_remove_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the object removal request.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterRemoveObjectEventArgs carries the KMIPServer AfterRemoveObject event's parameters.
pub struct KMIPServerAfterRemoveObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterRemoveObjectEvent defines the signature of the KMIPServer AfterRemoveObject event's handler function.
pub trait KMIPServerAfterRemoveObjectEvent {
  fn on_after_remove_object(&self, sender : KMIPServer, e : &mut KMIPServerAfterRemoveObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_remove_object(&self) -> &'a dyn KMIPServerAfterRemoveObjectEvent;
  pub fn set_on_after_remove_object(&mut self, value : &'a dyn KMIPServerAfterRemoveObjectEvent);
  ...
}
```

## Remarks

Subscribe to this event to be notified about completion of an object removal request. The *OperationStatus* parameter contains the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_sign event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of completion of a signing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterSignEventArgs carries the KMIPServer AfterSign event's parameters.
pub struct KMIPServerAfterSignEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn signature_data(&self) -> &[u8]
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterSignEvent defines the signature of the KMIPServer AfterSign event's handler function.
pub trait KMIPServerAfterSignEvent {
  fn on_after_sign(&self, sender : KMIPServer, e : &mut KMIPServerAfterSignEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_sign(&self) -> &'a dyn KMIPServerAfterSignEvent;
  pub fn set_on_after_sign(&mut self, value : &'a dyn KMIPServerAfterSignEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the completion of a signing operation.

The *ObjectId* parameter contains the unique identifier of the signing key. *SignatureData* contains the signing result. The *CorrelationValue* string is a linking token that allows to associate several pieces of a multi-step signing operation together. The *OperationStatus* contains the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_verify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the Verify operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterVerifyEventArgs carries the KMIPServer AfterVerify event's parameters.
pub struct KMIPServerAfterVerifyEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn validation_result(&self) -> i32
  fn set_validation_result(&self, value : i32)
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterVerifyEvent defines the signature of the KMIPServer AfterVerify event's handler function.
pub trait KMIPServerAfterVerifyEvent {
  fn on_after_verify(&self, sender : KMIPServer, e : &mut KMIPServerAfterVerifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_verify(&self) -> &'a dyn KMIPServerAfterVerifyEvent;
  pub fn set_on_after_verify(&mut self, value : &'a dyn KMIPServerAfterVerifyEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application of a completion of a verification operation. The *ValidationResult* parameter contains the validity status of the signature.

The *ObjectId* parameter contains the unique identifier of the verifying key. The *OperationStatus* parameter contains the result of the operation.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_after_verify_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about completion of the hash verification.

## Syntax

*Rust Syntax*

```text
// KMIPServerAfterVerifyHashEventArgs carries the KMIPServer AfterVerifyHash event's parameters.
pub struct KMIPServerAfterVerifyHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn is_valid(&self) -> bool
  fn set_is_valid(&self, value : bool)
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerAfterVerifyHashEvent defines the signature of the KMIPServer AfterVerifyHash event's handler function.
pub trait KMIPServerAfterVerifyHashEvent {
  fn on_after_verify_hash(&self, sender : KMIPServer, e : &mut KMIPServerAfterVerifyHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_after_verify_hash(&self) -> &'a dyn KMIPServerAfterVerifyHashEvent;
  pub fn set_on_after_verify_hash(&mut self, value : &'a dyn KMIPServerAfterVerifyHashEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about hash verification result. The optional *ObjectId* parameter contains the unique identifier of the key object if HMAC algorithm is used.

The *IsValid* parameter contains the validity factor of the hash.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_archive_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the received object archival request.

## Syntax

*Rust Syntax*

```text
// KMIPServerArchiveObjectEventArgs carries the KMIPServer ArchiveObject event's parameters.
pub struct KMIPServerArchiveObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerArchiveObjectEvent defines the signature of the KMIPServer ArchiveObject event's handler function.
pub trait KMIPServerArchiveObjectEvent {
  fn on_archive_object(&self, sender : KMIPServer, e : &mut KMIPServerArchiveObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_archive_object(&self) -> &'a dyn KMIPServerArchiveObjectEvent;
  pub fn set_on_archive_object(&mut self, value : &'a dyn KMIPServerArchiveObjectEvent);
  ...
}
```

## Remarks

The component fires this event when it receives an object archival request from a connected client. The archival procedure go through a simplified handling route, without the three-step flow.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_auth_attempt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a connected client makes an authentication attempt.

## Syntax

*Rust Syntax*

```text
// KMIPServerAuthAttemptEventArgs carries the KMIPServer AuthAttempt event's parameters.
pub struct KMIPServerAuthAttemptEventArgs {
  fn connection_id(&self) -> i64
  fn http_method(&self) -> &String
  fn uri(&self) -> &String
  fn auth_method(&self) -> &String
  fn username(&self) -> &String
  fn password(&self) -> &String
  fn allow(&self) -> bool
  fn set_allow(&self, value : bool)
}

// KMIPServerAuthAttemptEvent defines the signature of the KMIPServer AuthAttempt event's handler function.
pub trait KMIPServerAuthAttemptEvent {
  fn on_auth_attempt(&self, sender : KMIPServer, e : &mut KMIPServerAuthAttemptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_auth_attempt(&self) -> &'a dyn KMIPServerAuthAttemptEvent;
  pub fn set_on_auth_attempt(&mut self, value : &'a dyn KMIPServerAuthAttemptEvent);
  ...
}
```

## Remarks

The struct fires this event whenever a client attempts to authenticate itself. Use the *Allow* parameter to let the client through.

*ConnectionID* contains the unique session identifier for that client, *HTTPMethod* specifies the HTTP method (GET, POST, etc.) used to access the *URI* resource, *AuthMethod* specifies the authentication method, and *Username* and *Password* contain the professed credentials.

# on_before_add event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a certificate import request is received from a client.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeAddEventArgs carries the KMIPServer BeforeAdd event's parameters.
pub struct KMIPServerBeforeAddEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeAddEvent defines the signature of the KMIPServer BeforeAdd event's handler function.
pub trait KMIPServerBeforeAddEvent {
  fn on_before_add(&self, sender : KMIPServer, e : &mut KMIPServerBeforeAddEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_add(&self) -> &'a dyn KMIPServerBeforeAddEvent;
  pub fn set_on_before_add(&mut self, value : &'a dyn KMIPServerBeforeAddEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to import a certificate on to the server. The supplied certificate is available in certificate object.

The *Group* parameter specifies a common identifier for objects related to the certificate being imported: the certificate, its public key, and its private key.

# on_before_add_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a key import request is received from the client.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeAddKeyEventArgs carries the KMIPServer BeforeAddKey event's parameters.
pub struct KMIPServerBeforeAddKeyEventArgs {
  fn connection_id(&self) -> i64
  fn group(&self) -> &String
  fn set_group(&self, value : &str)
  fn set_group_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeAddKeyEvent defines the signature of the KMIPServer BeforeAddKey event's handler function.
pub trait KMIPServerBeforeAddKeyEvent {
  fn on_before_add_key(&self, sender : KMIPServer, e : &mut KMIPServerBeforeAddKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_add_key(&self) -> &'a dyn KMIPServerBeforeAddKeyEvent;
  pub fn set_on_before_add_key(&mut self, value : &'a dyn KMIPServerBeforeAddKeyEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to import a key on to the server. The supplied key is available in the key parameter.

For keypairs, the *Group* parameter contains a common label that will be applied to both parts of that keypair (the public key object and the private key object).

# on_before_browse event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the browse request being received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeBrowseEventArgs carries the KMIPServer BeforeBrowse event's parameters.
pub struct KMIPServerBeforeBrowseEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeBrowseEvent defines the signature of the KMIPServer BeforeBrowse event's handler function.
pub trait KMIPServerBeforeBrowseEvent {
  fn on_before_browse(&self, sender : KMIPServer, e : &mut KMIPServerBeforeBrowseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_browse(&self) -> &'a dyn KMIPServerBeforeBrowseEvent;
  pub fn set_on_before_browse(&mut self, value : &'a dyn KMIPServerBeforeBrowseEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about a browse request received for an object *ObjectId*.

# on_before_decrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of the decryption operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeDecryptEventArgs carries the KMIPServer BeforeDecrypt event's parameters.
pub struct KMIPServerBeforeDecryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeDecryptEvent defines the signature of the KMIPServer BeforeDecrypt event's handler function.
pub trait KMIPServerBeforeDecryptEvent {
  fn on_before_decrypt(&self, sender : KMIPServer, e : &mut KMIPServerBeforeDecryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_decrypt(&self) -> &'a dyn KMIPServerBeforeDecryptEvent;
  pub fn set_on_before_decrypt(&mut self, value : &'a dyn KMIPServerBeforeDecryptEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of the decryption operation. The *ObjectId* parameter contains a reference to the decryption key. The optional *CorrelationValue* parameter can be used to link consecutive steps of multi-part decryption operation together.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_before_derive_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a derive key request is received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeDeriveKeyEventArgs carries the KMIPServer BeforeDeriveKey event's parameters.
pub struct KMIPServerBeforeDeriveKeyEventArgs {
  fn connection_id(&self) -> i64
  fn object_type(&self) -> i32
  fn object_ids(&self) -> &String
  fn derivation_method(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeDeriveKeyEvent defines the signature of the KMIPServer BeforeDeriveKey event's handler function.
pub trait KMIPServerBeforeDeriveKeyEvent {
  fn on_before_derive_key(&self, sender : KMIPServer, e : &mut KMIPServerBeforeDeriveKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_derive_key(&self) -> &'a dyn KMIPServerBeforeDeriveKeyEvent;
  pub fn set_on_before_derive_key(&mut self, value : &'a dyn KMIPServerBeforeDeriveKeyEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to derive a key. The supplied certificate is available in key.

# on_before_edit event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the start of the object editing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeEditEventArgs carries the KMIPServer BeforeEdit event's parameters.
pub struct KMIPServerBeforeEditEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeEditEvent defines the signature of the KMIPServer BeforeEdit event's handler function.
pub trait KMIPServerBeforeEditEvent {
  fn on_before_edit(&self, sender : KMIPServer, e : &mut KMIPServerBeforeEditEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_edit(&self) -> &'a dyn KMIPServerBeforeEditEvent;
  pub fn set_on_before_edit(&mut self, value : &'a dyn KMIPServerBeforeEditEvent);
  ...
}
```

## Remarks

The editing operation consists of a sequence of attribute update requests. Each attribute is provided to the application via an individual [on_set_attribute](#on_set_attribute-event-kmipserver-struct) call. When the list of supplied attributes has been exhausted, the [on_after_edit](#on_after_edit-event-kmipserver-struct) event call follows.

The *ObjectId* parameter specifies the identifier of the object being edited.

# on_before_encrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of an encryption operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeEncryptEventArgs carries the KMIPServer BeforeEncrypt event's parameters.
pub struct KMIPServerBeforeEncryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeEncryptEvent defines the signature of the KMIPServer BeforeEncrypt event's handler function.
pub trait KMIPServerBeforeEncryptEvent {
  fn on_before_encrypt(&self, sender : KMIPServer, e : &mut KMIPServerBeforeEncryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_encrypt(&self) -> &'a dyn KMIPServerBeforeEncryptEvent;
  pub fn set_on_before_encrypt(&mut self, value : &'a dyn KMIPServerBeforeEncryptEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of an encryption operation. The *ObjectId* parameter contains a reference to the encryption key. The optional *CorrelationValue* parameter can be used to link consecutive steps of multi-part encryption operation together.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_before_generate event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a certificate generation request is received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeGenerateEventArgs carries the KMIPServer BeforeGenerate event's parameters.
pub struct KMIPServerBeforeGenerateEventArgs {
  fn connection_id(&self) -> i64
  fn public_key_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeGenerateEvent defines the signature of the KMIPServer BeforeGenerate event's handler function.
pub trait KMIPServerBeforeGenerateEvent {
  fn on_before_generate(&self, sender : KMIPServer, e : &mut KMIPServerBeforeGenerateEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_generate(&self) -> &'a dyn KMIPServerBeforeGenerateEvent;
  pub fn set_on_before_generate(&mut self, value : &'a dyn KMIPServerBeforeGenerateEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to generate a certificate. The supplied certificate template is available in certificate.

# on_before_generate_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a key generation request is received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeGenerateKeyEventArgs carries the KMIPServer BeforeGenerateKey event's parameters.
pub struct KMIPServerBeforeGenerateKeyEventArgs {
  fn connection_id(&self) -> i64
  fn key_algorithm(&self) -> &String
  fn set_key_algorithm(&self, value : &str)
  fn set_key_algorithm_ref(&self, value : &String)
  fn key_length(&self) -> i32
  fn set_key_length(&self, value : i32)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeGenerateKeyEvent defines the signature of the KMIPServer BeforeGenerateKey event's handler function.
pub trait KMIPServerBeforeGenerateKeyEvent {
  fn on_before_generate_key(&self, sender : KMIPServer, e : &mut KMIPServerBeforeGenerateKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_generate_key(&self) -> &'a dyn KMIPServerBeforeGenerateKeyEvent;
  pub fn set_on_before_generate_key(&mut self, value : &'a dyn KMIPServerBeforeGenerateKeyEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to generate a key. *KeyAlgorithm* and *KeyLength* parameters specify the requested key properties.

# on_before_generate_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a key generation request is received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeGenerateKeyPairEventArgs carries the KMIPServer BeforeGenerateKeyPair event's parameters.
pub struct KMIPServerBeforeGenerateKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn key_algorithm(&self) -> &String
  fn set_key_algorithm(&self, value : &str)
  fn set_key_algorithm_ref(&self, value : &String)
  fn key_length(&self) -> i32
  fn set_key_length(&self, value : i32)
  fn scheme(&self) -> &String
  fn set_scheme(&self, value : &str)
  fn set_scheme_ref(&self, value : &String)
  fn scheme_params(&self) -> &String
  fn set_scheme_params(&self, value : &str)
  fn set_scheme_params_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeGenerateKeyPairEvent defines the signature of the KMIPServer BeforeGenerateKeyPair event's handler function.
pub trait KMIPServerBeforeGenerateKeyPairEvent {
  fn on_before_generate_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerBeforeGenerateKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_generate_key_pair(&self) -> &'a dyn KMIPServerBeforeGenerateKeyPairEvent;
  pub fn set_on_before_generate_key_pair(&mut self, value : &'a dyn KMIPServerBeforeGenerateKeyPairEvent);
  ...
}
```

## Remarks

The struct fires this event when it receives a request from the client to generate a keypair. *KeyAlgorithm*, *KeyLength*, *Scheme* and *SchemeParams* parameters specify the requested key properties.

# on_before_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of the hashing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeHashEventArgs carries the KMIPServer BeforeHash event's parameters.
pub struct KMIPServerBeforeHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeHashEvent defines the signature of the KMIPServer BeforeHash event's handler function.
pub trait KMIPServerBeforeHashEvent {
  fn on_before_hash(&self, sender : KMIPServer, e : &mut KMIPServerBeforeHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_hash(&self) -> &'a dyn KMIPServerBeforeHashEvent;
  pub fn set_on_before_hash(&mut self, value : &'a dyn KMIPServerBeforeHashEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of a hashing operation. The optional *ObjectId* parameter contains a reference to the hashing key if HMAC-based hashing is used. The optional *CorrelationValue* parameter can be used to link consecutive steps of multi-part hash operation together.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_before_list event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of the list operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeListEventArgs carries the KMIPServer BeforeList event's parameters.
pub struct KMIPServerBeforeListEventArgs {
  fn connection_id(&self) -> i64
  fn object_type(&self) -> i32
  fn object_status(&self) -> i32
  fn only_fresh_objects(&self) -> bool
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeListEvent defines the signature of the KMIPServer BeforeList event's handler function.
pub trait KMIPServerBeforeListEvent {
  fn on_before_list(&self, sender : KMIPServer, e : &mut KMIPServerBeforeListEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_list(&self) -> &'a dyn KMIPServerBeforeListEvent;
  pub fn set_on_before_list(&mut self, value : &'a dyn KMIPServerBeforeListEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application of the received list call. The *ObjectType*, *ObjectStatus*, and *OnlyFreshObjects* parameters provide the listing criteria.

# on_before_obtain_lease event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the client requesting an object lease.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeObtainLeaseEventArgs carries the KMIPServer BeforeObtainLease event's parameters.
pub struct KMIPServerBeforeObtainLeaseEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeObtainLeaseEvent defines the signature of the KMIPServer BeforeObtainLease event's handler function.
pub trait KMIPServerBeforeObtainLeaseEvent {
  fn on_before_obtain_lease(&self, sender : KMIPServer, e : &mut KMIPServerBeforeObtainLeaseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_obtain_lease(&self) -> &'a dyn KMIPServerBeforeObtainLeaseEvent;
  pub fn set_on_before_obtain_lease(&mut self, value : &'a dyn KMIPServerBeforeObtainLeaseEvent);
  ...
}
```

## Remarks

Use this event to get notified about the connected client requesting an object lease.

# on_before_read_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the start of the object reading request.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeReadObjectEventArgs carries the KMIPServer BeforeReadObject event's parameters.
pub struct KMIPServerBeforeReadObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeReadObjectEvent defines the signature of the KMIPServer BeforeReadObject event's handler function.
pub trait KMIPServerBeforeReadObjectEvent {
  fn on_before_read_object(&self, sender : KMIPServer, e : &mut KMIPServerBeforeReadObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_read_object(&self) -> &'a dyn KMIPServerBeforeReadObjectEvent;
  pub fn set_on_before_read_object(&mut self, value : &'a dyn KMIPServerBeforeReadObjectEvent);
  ...
}
```

## Remarks

Object "reading" consists of a number of individual attribute requests. If *fraCustom* action is returned from this event handler, the component will fire [on_read_object](#on_read_object-event-kmipserver-struct) and [on_read_attribute](#on_read_attribute-event-kmipserver-struct) events repeatedly to request information about the object from your code.

# on_before_re_certify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about a re-certification request.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeReCertifyEventArgs carries the KMIPServer BeforeReCertify event's parameters.
pub struct KMIPServerBeforeReCertifyEventArgs {
  fn connection_id(&self) -> i64
  fn old_cert_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeReCertifyEvent defines the signature of the KMIPServer BeforeReCertify event's handler function.
pub trait KMIPServerBeforeReCertifyEvent {
  fn on_before_re_certify(&self, sender : KMIPServer, e : &mut KMIPServerBeforeReCertifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_re_certify(&self) -> &'a dyn KMIPServerBeforeReCertifyEvent;
  pub fn set_on_before_re_certify(&mut self, value : &'a dyn KMIPServerBeforeReCertifyEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about a re-certification request (a request to re-issue an existing certificate).

The *OldCertId* parameter indicates the unique identifier of the certificate object that needs to be re-issued.

This event provides a pre-notification for the operation. If your code sets the *Action* parameter to *fraCustom*, this event will be followed by a [on_re_certify](#on_re_certify-event-kmipserver-struct) call that will let you handle the actual request as required.

# on_before_re_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about a re-key request received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeReKeyEventArgs carries the KMIPServer BeforeReKey event's parameters.
pub struct KMIPServerBeforeReKeyEventArgs {
  fn connection_id(&self) -> i64
  fn old_key_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeReKeyEvent defines the signature of the KMIPServer BeforeReKey event's handler function.
pub trait KMIPServerBeforeReKeyEvent {
  fn on_before_re_key(&self, sender : KMIPServer, e : &mut KMIPServerBeforeReKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_re_key(&self) -> &'a dyn KMIPServerBeforeReKeyEvent;
  pub fn set_on_before_re_key(&mut self, value : &'a dyn KMIPServerBeforeReKeyEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about a key re-issue request received from the client. The *OldKeyId* parameter contains the unique identifier of the old key object.

# on_before_rekey_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about a keypair re-key request received.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeRekeyKeyPairEventArgs carries the KMIPServer BeforeRekeyKeyPair event's parameters.
pub struct KMIPServerBeforeRekeyKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn old_private_key_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeRekeyKeyPairEvent defines the signature of the KMIPServer BeforeRekeyKeyPair event's handler function.
pub trait KMIPServerBeforeRekeyKeyPairEvent {
  fn on_before_rekey_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerBeforeRekeyKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_rekey_key_pair(&self) -> &'a dyn KMIPServerBeforeRekeyKeyPairEvent;
  pub fn set_on_before_rekey_key_pair(&mut self, value : &'a dyn KMIPServerBeforeRekeyKeyPairEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about a keypair re-issue request received from the client. The *OldPrivateKeyId* parameter contains the unique identifier of the old private key object.

# on_before_remove_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Remove Object request.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeRemoveObjectEventArgs carries the KMIPServer BeforeRemoveObject event's parameters.
pub struct KMIPServerBeforeRemoveObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeRemoveObjectEvent defines the signature of the KMIPServer BeforeRemoveObject event's handler function.
pub trait KMIPServerBeforeRemoveObjectEvent {
  fn on_before_remove_object(&self, sender : KMIPServer, e : &mut KMIPServerBeforeRemoveObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_remove_object(&self) -> &'a dyn KMIPServerBeforeRemoveObjectEvent;
  pub fn set_on_before_remove_object(&mut self, value : &'a dyn KMIPServerBeforeRemoveObjectEvent);
  ...
}
```

## Remarks

Subscribe to this event to choose the operation flow (automated/custom) for the object removal operation.

# on_before_sign event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of a signing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeSignEventArgs carries the KMIPServer BeforeSign event's parameters.
pub struct KMIPServerBeforeSignEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn algorithm(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeSignEvent defines the signature of the KMIPServer BeforeSign event's handler function.
pub trait KMIPServerBeforeSignEvent {
  fn on_before_sign(&self, sender : KMIPServer, e : &mut KMIPServerBeforeSignEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_sign(&self) -> &'a dyn KMIPServerBeforeSignEvent;
  pub fn set_on_before_sign(&mut self, value : &'a dyn KMIPServerBeforeSignEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of the signing operation. The *ObjectId* parameter contains a reference to the signing key. The optional *CorrelationValue* parameter can be used to link consecutive steps of multi-part signing operation together.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_before_verify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of the verify operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeVerifyEventArgs carries the KMIPServer BeforeVerify event's parameters.
pub struct KMIPServerBeforeVerifyEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeVerifyEvent defines the signature of the KMIPServer BeforeVerify event's handler function.
pub trait KMIPServerBeforeVerifyEvent {
  fn on_before_verify(&self, sender : KMIPServer, e : &mut KMIPServerBeforeVerifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_verify(&self) -> &'a dyn KMIPServerBeforeVerifyEvent;
  pub fn set_on_before_verify(&mut self, value : &'a dyn KMIPServerBeforeVerifyEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of the verification operation. The *ObjectId* parameter contains a reference to the verification key.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_before_verify_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the initiation of the hash verification operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerBeforeVerifyHashEventArgs carries the KMIPServer BeforeVerifyHash event's parameters.
pub struct KMIPServerBeforeVerifyHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn action(&self) -> i32
  fn set_action(&self, value : i32)
}

// KMIPServerBeforeVerifyHashEvent defines the signature of the KMIPServer BeforeVerifyHash event's handler function.
pub trait KMIPServerBeforeVerifyHashEvent {
  fn on_before_verify_hash(&self, sender : KMIPServer, e : &mut KMIPServerBeforeVerifyHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_before_verify_hash(&self) -> &'a dyn KMIPServerBeforeVerifyHashEvent;
  pub fn set_on_before_verify_hash(&mut self, value : &'a dyn KMIPServerBeforeVerifyHashEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the initiation of the hash verification operation. The *ObjectId* parameter contains a reference to the HMAC key, if MAC algorithm is used.

Use the *Action* parameter to indicate the procedure you want to use for this request. See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

# on_cancel event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports a cancellation request received from the client.

## Syntax

*Rust Syntax*

```text
// KMIPServerCancelEventArgs carries the KMIPServer Cancel event's parameters.
pub struct KMIPServerCancelEventArgs {
  fn connection_id(&self) -> i64
  fn async_correlation_value(&self) -> &String
  fn cancellation_result(&self) -> i32
  fn set_cancellation_result(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerCancelEvent defines the signature of the KMIPServer Cancel event's handler function.
pub trait KMIPServerCancelEvent {
  fn on_cancel(&self, sender : KMIPServer, e : &mut KMIPServerCancelEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_cancel(&self) -> &'a dyn KMIPServerCancelEvent;
  pub fn set_on_cancel(&mut self, value : &'a dyn KMIPServerCancelEvent);
  ...
}
```

## Remarks

The component uses this event to notify the application about the cancellation request received. The application should handle the cancellation request and set *CancellationResult* and *OperationStatus* to one of the following values:

|  |  |  |
| --- | --- | --- |
| kccCancelled | 0x01 |  |
| kccUnableToCancel | 0x02 |  |
| kccCompleted | 0x03 |  |
| kccFailed | 0x04 |  |
| kccUnavailable | 0x05 |  |

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_check event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about a Check request received.

## Syntax

*Rust Syntax*

```text
// KMIPServerCheckEventArgs carries the KMIPServer Check event's parameters.
pub struct KMIPServerCheckEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn usage_limits_count(&self) -> i64
  fn set_usage_limits_count(&self, value : i64)
  fn cryptographic_usage_mask(&self) -> i32
  fn set_cryptographic_usage_mask(&self, value : i32)
  fn lease_time(&self) -> i32
  fn set_lease_time(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerCheckEvent defines the signature of the KMIPServer Check event's handler function.
pub trait KMIPServerCheckEvent {
  fn on_check(&self, sender : KMIPServer, e : &mut KMIPServerCheckEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_check(&self) -> &'a dyn KMIPServerCheckEvent;
  pub fn set_on_check(&mut self, value : &'a dyn KMIPServerCheckEvent);
  ...
}
```

## Remarks

The component fires this event to notify the application about the Check request received from the client side. Applications working in virtual mode should implement the relevant logic in their event handlers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_connect event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports an accepted connection.

## Syntax

*Rust Syntax*

```text
// KMIPServerConnectEventArgs carries the KMIPServer Connect event's parameters.
pub struct KMIPServerConnectEventArgs {
  fn connection_id(&self) -> i64
  fn remote_address(&self) -> &String
  fn remote_port(&self) -> i32
}

// KMIPServerConnectEvent defines the signature of the KMIPServer Connect event's handler function.
pub trait KMIPServerConnectEvent {
  fn on_connect(&self, sender : KMIPServer, e : &mut KMIPServerConnectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_connect(&self) -> &'a dyn KMIPServerConnectEvent;
  pub fn set_on_connect(&mut self, value : &'a dyn KMIPServerConnectEvent);
  ...
}
```

## Remarks

The struct fires this event to report that a new connection has been established. *ConnectionId* indicates the unique ID assigned to this connection. The same ID will be supplied to any other events related to this connection, such as on_get_request or [on_auth_attempt](#on_auth_attempt-event-kmipserver-struct).

# on_decrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to decrypt a chunk of data.

## Syntax

*Rust Syntax*

```text
// KMIPServerDecryptEventArgs carries the KMIPServer Decrypt event's parameters.
pub struct KMIPServerDecryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn data(&self) -> &[u8]
  fn iv(&self) -> &String
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn block_cipher_mode(&self) -> &String
  fn tag_length(&self) -> i32
  fn padding_method(&self) -> &String
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerDecryptEvent defines the signature of the KMIPServer Decrypt event's handler function.
pub trait KMIPServerDecryptEvent {
  fn on_decrypt(&self, sender : KMIPServer, e : &mut KMIPServerDecryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_decrypt(&self) -> &'a dyn KMIPServerDecryptEvent;
  pub fn set_on_decrypt(&mut self, value : &'a dyn KMIPServerDecryptEvent);
  ...
}
```

## Remarks

The server uses this event to inform the application of a decryption request submitted by the client and, optionally, request the application to decrypt the data block with the provided set of parameters. The decryption logic only needs to be implemented if the application uses the virtual storage mode.

In the event handler, use the parameters provided to decrypt *Data* with the key identified with *ObjectId*. The *InitIndicator* and *FinalIndicator* tell whether the provided block is first and/or last in a sequence of blocks forming a multi-step decryption operation. If the block is not the last one, set *CorrelationValue* to a random string to preserve continuity between consecutive block decryptions.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_delete_attribute event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to delete an object attribute.

## Syntax

*Rust Syntax*

```text
// KMIPServerDeleteAttributeEventArgs carries the KMIPServer DeleteAttribute event's parameters.
pub struct KMIPServerDeleteAttributeEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn attribute_name(&self) -> &String
  fn attribute_value(&self) -> &String
  fn set_attribute_value(&self, value : &str)
  fn set_attribute_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerDeleteAttributeEvent defines the signature of the KMIPServer DeleteAttribute event's handler function.
pub trait KMIPServerDeleteAttributeEvent {
  fn on_delete_attribute(&self, sender : KMIPServer, e : &mut KMIPServerDeleteAttributeEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_delete_attribute(&self) -> &'a dyn KMIPServerDeleteAttributeEvent;
  pub fn set_on_delete_attribute(&mut self, value : &'a dyn KMIPServerDeleteAttributeEvent);
  ...
}
```

## Remarks

The server fires this event to relay the KMIP client's Delete Attribute request to the application if the application chose to use custom flow in the preceding [on_before_edit](#on_before_edit-event-kmipserver-struct) event.

The event handler is expected to delete the *AttributeName* from the *ObjectId*'s attribute set, and return the (now deleted) *AttributeValue* and the *OperationStatus* back to the server.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_derive_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application of key derivation request.

## Syntax

*Rust Syntax*

```text
// KMIPServerDeriveKeyEventArgs carries the KMIPServer DeriveKey event's parameters.
pub struct KMIPServerDeriveKeyEventArgs {
  fn connection_id(&self) -> i64
  fn object_type(&self) -> i32
  fn object_ids(&self) -> &String
  fn derivation_method(&self) -> &String
  fn initialization_vector(&self) -> &[u8]
  fn derivation_data(&self) -> &[u8]
  fn new_key_id(&self) -> &String
  fn set_new_key_id(&self, value : &str)
  fn set_new_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerDeriveKeyEvent defines the signature of the KMIPServer DeriveKey event's handler function.
pub trait KMIPServerDeriveKeyEvent {
  fn on_derive_key(&self, sender : KMIPServer, e : &mut KMIPServerDeriveKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_derive_key(&self) -> &'a dyn KMIPServerDeriveKeyEvent;
  pub fn set_on_derive_key(&mut self, value : &'a dyn KMIPServerDeriveKeyEvent);
  ...
}
```

## Remarks

The server fires this event to notify the application of a received key derivation request. Applications working in virtual mode should react to this event by performing the requested operation and returning the ID of the new key via the *NewKeyId* parameter.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_disconnect event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires to report a disconnected client.

## Syntax

*Rust Syntax*

```text
// KMIPServerDisconnectEventArgs carries the KMIPServer Disconnect event's parameters.
pub struct KMIPServerDisconnectEventArgs {
  fn connection_id(&self) -> i64
}

// KMIPServerDisconnectEvent defines the signature of the KMIPServer Disconnect event's handler function.
pub trait KMIPServerDisconnectEvent {
  fn on_disconnect(&self, sender : KMIPServer, e : &mut KMIPServerDisconnectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_disconnect(&self) -> &'a dyn KMIPServerDisconnectEvent;
  pub fn set_on_disconnect(&mut self, value : &'a dyn KMIPServerDisconnectEvent);
  ...
}
```

## Remarks

The struct fires this event when a connected client disconnects.

# on_encrypt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to encrypt a chunk of data.

## Syntax

*Rust Syntax*

```text
// KMIPServerEncryptEventArgs carries the KMIPServer Encrypt event's parameters.
pub struct KMIPServerEncryptEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn data(&self) -> &[u8]
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn block_cipher_mode(&self) -> &String
  fn tag_length(&self) -> i32
  fn padding_method(&self) -> &String
  fn random_iv(&self) -> bool
  fn iv(&self) -> &String
  fn set_iv(&self, value : &str)
  fn set_iv_ref(&self, value : &String)
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerEncryptEvent defines the signature of the KMIPServer Encrypt event's handler function.
pub trait KMIPServerEncryptEvent {
  fn on_encrypt(&self, sender : KMIPServer, e : &mut KMIPServerEncryptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_encrypt(&self) -> &'a dyn KMIPServerEncryptEvent;
  pub fn set_on_encrypt(&mut self, value : &'a dyn KMIPServerEncryptEvent);
  ...
}
```

## Remarks

The server uses this event to request the application to encrypt a data block with the provided set of parameters. This event is only fired if the application chose to use a custom encryption flow in the preceding [on_before_encrypt](#on_before_encrypt-event-kmipserver-struct) call.

In the event handler, use the parameters provided to encrypt *Data* with the key identified with *ObjectId*. The *InitIndicator* and *FinalIndicator* tell whether the provided block is first and/or last in a sequence of blocks forming a multi-step encryption operation. If the block is not last, set *CorrelationValue* to a random string to preserve continuity between consecutive block encryptions.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_error event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Information about errors during data delivery.

## Syntax

*Rust Syntax*

```text
// KMIPServerErrorEventArgs carries the KMIPServer Error event's parameters.
pub struct KMIPServerErrorEventArgs {
  fn connection_id(&self) -> i64
  fn error_code(&self) -> i32
  fn fatal(&self) -> bool
  fn remote(&self) -> bool
  fn description(&self) -> &String
}

// KMIPServerErrorEvent defines the signature of the KMIPServer Error event's handler function.
pub trait KMIPServerErrorEvent {
  fn on_error(&self, sender : KMIPServer, e : &mut KMIPServerErrorEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_error(&self) -> &'a dyn KMIPServerErrorEvent;
  pub fn set_on_error(&mut self, value : &'a dyn KMIPServerErrorEvent);
  ...
}
```

## Remarks

The event is fired in case of exceptional conditions during message processing.

*ErrorCode* contains an error code and *Description* contains a textual description of the error. For a list of valid error codes and their descriptions, please refer to the [HTTPS](#trappable-errors-kmipserver-struct) section.

# on_external_sign event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Handles remote or external signing initiated by the server protocol.

## Syntax

*Rust Syntax*

```text
// KMIPServerExternalSignEventArgs carries the KMIPServer ExternalSign event's parameters.
pub struct KMIPServerExternalSignEventArgs {
  fn connection_id(&self) -> i64
  fn operation_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn pars(&self) -> &String
  fn data(&self) -> &String
  fn signed_data(&self) -> &String
  fn set_signed_data(&self, value : &str)
  fn set_signed_data_ref(&self, value : &String)
}

// KMIPServerExternalSignEvent defines the signature of the KMIPServer ExternalSign event's handler function.
pub trait KMIPServerExternalSignEvent {
  fn on_external_sign(&self, sender : KMIPServer, e : &mut KMIPServerExternalSignEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_external_sign(&self) -> &'a dyn KMIPServerExternalSignEvent;
  pub fn set_on_external_sign(&mut self, value : &'a dyn KMIPServerExternalSignEvent);
  ...
}
```

## Remarks

Assign a handler to this event if you need to delegate a low-level signing operation to an external, remote, or custom signing engine. Depending on the settings, the handler will receive a hashed or unhashed value to be signed.

The event handler must pass the value of *Data* to the signer, obtain the signature, and pass it back to the struct via the *SignedData* parameter.

*OperationId* provides a comment about the operation and its origin. It depends on the exact struct being used, and may be empty. *HashAlgorithm* specifies the hash algorithm being used for the operation, and *Pars* contains algorithm-dependent parameters.

The struct uses base16 (hex) encoding for the *Data*, *SignedData*, and *Pars* parameters. If your signing engine uses a different input and output encoding, you may need to decode and/or encode the data before and/or after the signing.

A sample MD5 hash encoded in base16: a0dee2a0382afbb09120ffa7ccd8a152 - lower case base16 A0DEE2A0382AFBB09120FFA7CCD8A152 - upper case base16

A sample event handler that uses the .NET RSACryptoServiceProvider class may look like the following:

```text
signer.OnExternalSign += (s, e) =>
{
       var cert = new X509Certificate2("cert.pfx", "", X509KeyStorageFlags.Exportable);
       var key = (RSACryptoServiceProvider)cert.PrivateKey;

       var dataToSign = e.Data.FromBase16String();
       var signedData = key.SignHash(dataToSign, "2.16.840.1.101.3.4.2.1");
       e.SignedData = signedData.ToBase16String();
};
```

# on_generate event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Generate request.

## Syntax

*Rust Syntax*

```text
// KMIPServerGenerateEventArgs carries the KMIPServer Generate event's parameters.
pub struct KMIPServerGenerateEventArgs {
  fn connection_id(&self) -> i64
  fn public_key_id(&self) -> &String
  fn cert_id(&self) -> &String
  fn set_cert_id(&self, value : &str)
  fn set_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerGenerateEvent defines the signature of the KMIPServer Generate event's handler function.
pub trait KMIPServerGenerateEvent {
  fn on_generate(&self, sender : KMIPServer, e : &mut KMIPServerGenerateEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_generate(&self) -> &'a dyn KMIPServerGenerateEvent;
  pub fn set_on_generate(&mut self, value : &'a dyn KMIPServerGenerateEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about incoming certificate generate requests. The *PublicKeyId* parameter specifies the public key that the new certificate should be generated over.

Applications using the server in virtual storage mode should implement the generation logic in the event handler and return the new *CertId* back along with *OperationStatus*.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_generate_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Generate request.

## Syntax

*Rust Syntax*

```text
// KMIPServerGenerateKeyEventArgs carries the KMIPServer GenerateKey event's parameters.
pub struct KMIPServerGenerateKeyEventArgs {
  fn connection_id(&self) -> i64
  fn key_algorithm(&self) -> &String
  fn key_length(&self) -> i32
  fn group(&self) -> &String
  fn key_id(&self) -> &String
  fn set_key_id(&self, value : &str)
  fn set_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerGenerateKeyEvent defines the signature of the KMIPServer GenerateKey event's handler function.
pub trait KMIPServerGenerateKeyEvent {
  fn on_generate_key(&self, sender : KMIPServer, e : &mut KMIPServerGenerateKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_generate_key(&self) -> &'a dyn KMIPServerGenerateKeyEvent;
  pub fn set_on_generate_key(&mut self, value : &'a dyn KMIPServerGenerateKeyEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about incoming key generation requests. The *KeyAlgorithm* and *KeyLength* parameters specify the parameters of the key to be generated. Use the *Group* parameter to arrange together keys belonging to the same set, such as private and public parts of a keypair.

Applications using the server in virtual storage mode should implement the generation logic in the event handler and return the new *KeyId* back along with *OperationStatus*.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_generate_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Generate request.

## Syntax

*Rust Syntax*

```text
// KMIPServerGenerateKeyPairEventArgs carries the KMIPServer GenerateKeyPair event's parameters.
pub struct KMIPServerGenerateKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn key_algorithm(&self) -> &String
  fn key_length(&self) -> i32
  fn scheme(&self) -> &String
  fn scheme_params(&self) -> &String
  fn group(&self) -> &String
  fn private_key_id(&self) -> &String
  fn set_private_key_id(&self, value : &str)
  fn set_private_key_id_ref(&self, value : &String)
  fn public_key_id(&self) -> &String
  fn set_public_key_id(&self, value : &str)
  fn set_public_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerGenerateKeyPairEvent defines the signature of the KMIPServer GenerateKeyPair event's handler function.
pub trait KMIPServerGenerateKeyPairEvent {
  fn on_generate_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerGenerateKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_generate_key_pair(&self) -> &'a dyn KMIPServerGenerateKeyPairEvent;
  pub fn set_on_generate_key_pair(&mut self, value : &'a dyn KMIPServerGenerateKeyPairEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about incoming keypair generation requests. The *KeyAlgorithm*, *KeyLength*, *Scheme* and *SchemeParams* parameters specify the parameters of the keypair to be generated. Use the *Group* parameter to put together keys belonging to the same set, such as private and public parts of a keypair.

Applications using the server in virtual storage mode should implement the generation logic in the event handler and return the new *PrivateKeyId* and *PublicKeyId* back along with *OperationStatus*.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_get_usage_allocation event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Get Usage Allocation request.

## Syntax

*Rust Syntax*

```text
// KMIPServerGetUsageAllocationEventArgs carries the KMIPServer GetUsageAllocation event's parameters.
pub struct KMIPServerGetUsageAllocationEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn usage_limits_count(&self) -> i32
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerGetUsageAllocationEvent defines the signature of the KMIPServer GetUsageAllocation event's handler function.
pub trait KMIPServerGetUsageAllocationEvent {
  fn on_get_usage_allocation(&self, sender : KMIPServer, e : &mut KMIPServerGetUsageAllocationEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_get_usage_allocation(&self) -> &'a dyn KMIPServerGetUsageAllocationEvent;
  pub fn set_on_get_usage_allocation(&mut self, value : &'a dyn KMIPServerGetUsageAllocationEvent);
  ...
}
```

## Remarks

The component uses this event to tell the application about a Get Usage Allocation request received.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to update the current hashing operation.

## Syntax

*Rust Syntax*

```text
// KMIPServerHashEventArgs carries the KMIPServer Hash event's parameters.
pub struct KMIPServerHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn data(&self) -> &[u8]
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerHashEvent defines the signature of the KMIPServer Hash event's handler function.
pub trait KMIPServerHashEvent {
  fn on_hash(&self, sender : KMIPServer, e : &mut KMIPServerHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_hash(&self) -> &'a dyn KMIPServerHashEvent;
  pub fn set_on_hash(&mut self, value : &'a dyn KMIPServerHashEvent);
  ...
}
```

## Remarks

The server fires this event to pass a new chunk of data to the application for inclusion in the hash. This event is only fired if the application chose to process the hashing operation manually in the preceding [on_before_hash](#on_before_hash-event-kmipserver-struct) event.

The *ObjectId* specifies the key object for Hash+MAC operations. The *Data* parameters contains the data buffer that needs to be added to the hash, with *InitIndicator* and *FinalIndicator* specifying the very first and very last data blocks respectively.

Return a unique *CorrelationValue* to chain pieces of a multi-block hashing operation together.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_headers_prepared event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when the response headers have been formed and are ready to be sent to the server.

## Syntax

*Rust Syntax*

```text
// KMIPServerHeadersPreparedEventArgs carries the KMIPServer HeadersPrepared event's parameters.
pub struct KMIPServerHeadersPreparedEventArgs {
  fn connection_id(&self) -> i64
}

// KMIPServerHeadersPreparedEvent defines the signature of the KMIPServer HeadersPrepared event's handler function.
pub trait KMIPServerHeadersPreparedEvent {
  fn on_headers_prepared(&self, sender : KMIPServer, e : &mut KMIPServerHeadersPreparedEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_headers_prepared(&self) -> &'a dyn KMIPServerHeadersPreparedEvent;
  pub fn set_on_headers_prepared(&mut self, value : &'a dyn KMIPServerHeadersPreparedEvent);
  ...
}
```

## Remarks

The struct fires this event when the response headers are ready to be sent to the server. *ConnectionID* indicates the connection that processed the request.

Use [get_response_header](#get_response_header-method-kmipserver-struct) method with an empty header name to get the whole response header.

# on_kmip_auth_attempt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a connected client makes an authentication attempt.

## Syntax

*Rust Syntax*

```text
// KMIPServerKMIPAuthAttemptEventArgs carries the KMIPServer KMIPAuthAttempt event's parameters.
pub struct KMIPServerKMIPAuthAttemptEventArgs {
  fn connection_id(&self) -> i64
  fn username(&self) -> &String
  fn password(&self) -> &String
  fn accept(&self) -> bool
  fn set_accept(&self, value : bool)
}

// KMIPServerKMIPAuthAttemptEvent defines the signature of the KMIPServer KMIPAuthAttempt event's handler function.
pub trait KMIPServerKMIPAuthAttemptEvent {
  fn on_kmip_auth_attempt(&self, sender : KMIPServer, e : &mut KMIPServerKMIPAuthAttemptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_kmip_auth_attempt(&self) -> &'a dyn KMIPServerKMIPAuthAttemptEvent;
  pub fn set_on_kmip_auth_attempt(&mut self, value : &'a dyn KMIPServerKMIPAuthAttemptEvent);
  ...
}
```

## Remarks

The struct fires this event whenever a client attempts to authenticate itself. Use the *Accept* parameter to let the client through.

*Username* and *Password* contain the professed credentials.

# on_list event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to return the list of objects that match the specified criteria.

## Syntax

*Rust Syntax*

```text
// KMIPServerListEventArgs carries the KMIPServer List event's parameters.
pub struct KMIPServerListEventArgs {
  fn connection_id(&self) -> i64
  fn object_type(&self) -> i32
  fn object_status(&self) -> i32
  fn only_fresh_objects(&self) -> bool
  fn offset_items(&self) -> i32
  fn maximum_items(&self) -> i32
  fn object_ids(&self) -> &String
  fn set_object_ids(&self, value : &str)
  fn set_object_ids_ref(&self, value : &String)
  fn located_items(&self) -> i32
  fn set_located_items(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerListEvent defines the signature of the KMIPServer List event's handler function.
pub trait KMIPServerListEvent {
  fn on_list(&self, sender : KMIPServer, e : &mut KMIPServerListEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_list(&self) -> &'a dyn KMIPServerListEvent;
  pub fn set_on_list(&mut self, value : &'a dyn KMIPServerListEvent);
  ...
}
```

## Remarks

The server uses this event to request a list of objects in accordance with the List call received from a KMIP client. This event only fires if the application chose to follow a custom listing flow in the preceding [on_before_list](#on_before_list-event-kmipserver-struct) event.

The event handler should use the filtering parameters provided to form the list of IDs and return it via the *ObjectIds* parameters. Note that *ObjectType* contains a bit mask of the object types that need to be returned. If that mask is set to zero, objects of all types must be considered.

The *OnlyFreshObjects* modifier tells the server to only return the objects that were not previously exported to the client.

|  |  |  |
| --- | --- | --- |
| otUnknown | 0x00 |  |
| otCertificate | 0x01 |  |
| otSymmetricKey | 0x02 |  |
| otPublicKey | 0x04 |  |
| otPrivateKey | 0x08 |  |

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_list_attributes event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Requests a list of object attribute names from the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerListAttributesEventArgs carries the KMIPServer ListAttributes event's parameters.
pub struct KMIPServerListAttributesEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn attribute_names(&self) -> &String
  fn set_attribute_names(&self, value : &str)
  fn set_attribute_names_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerListAttributesEvent defines the signature of the KMIPServer ListAttributes event's handler function.
pub trait KMIPServerListAttributesEvent {
  fn on_list_attributes(&self, sender : KMIPServer, e : &mut KMIPServerListAttributesEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_list_attributes(&self) -> &'a dyn KMIPServerListAttributesEvent;
  pub fn set_on_list_attributes(&mut self, value : &'a dyn KMIPServerListAttributesEvent);
  ...
}
```

## Remarks

The server fires this event to request a list of names of attributes defined for the object. This event is only fired if the application chose to use a custom flow for attribute listing in the preceding [on_before_browse](#on_before_browse-event-kmipserver-struct) event call.

Following completion of this event, the server will call the [on_read_attribute](#on_read_attribute-event-kmipserver-struct) event for each attribute name to request the respective values.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_notification event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

This event notifies the application about an underlying control flow event.

## Syntax

*Rust Syntax*

```text
// KMIPServerNotificationEventArgs carries the KMIPServer Notification event's parameters.
pub struct KMIPServerNotificationEventArgs {
  fn event_id(&self) -> &String
  fn event_param(&self) -> &String
}

// KMIPServerNotificationEvent defines the signature of the KMIPServer Notification event's handler function.
pub trait KMIPServerNotificationEvent {
  fn on_notification(&self, sender : KMIPServer, e : &mut KMIPServerNotificationEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_notification(&self) -> &'a dyn KMIPServerNotificationEvent;
  pub fn set_on_notification(&mut self, value : &'a dyn KMIPServerNotificationEvent);
  ...
}
```

## Remarks

The struct fires this event to let the application know about some event, occurrence, or milestone in the struct. For example, it may fire to report completion of the document processing. The list of events being reported is not fixed, and may be flexibly extended over time.

The unique identifier of the event is provided in the *EventID* parameter. *EventParam* contains any parameters accompanying the occurrence. Depending on the type of the struct, the exact action it is performing, or the document being processed, one or both may be omitted.

This struct can fire this event with the following *EventID* values:

|  |  |
| --- | --- |
| ListeningStarted | Notifies the application that the server has started listening for incoming connections. |
| ListeningStopped | Notifies the application that the server has stopped listening to incoming connections. |

# on_obtain_lease event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Lets the application handle the lease request.

## Syntax

*Rust Syntax*

```text
// KMIPServerObtainLeaseEventArgs carries the KMIPServer ObtainLease event's parameters.
pub struct KMIPServerObtainLeaseEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn lease_time(&self) -> i32
  fn set_lease_time(&self, value : i32)
  fn last_change_date(&self) -> &String
  fn set_last_change_date(&self, value : &str)
  fn set_last_change_date_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerObtainLeaseEvent defines the signature of the KMIPServer ObtainLease event's handler function.
pub trait KMIPServerObtainLeaseEvent {
  fn on_obtain_lease(&self, sender : KMIPServer, e : &mut KMIPServerObtainLeaseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_obtain_lease(&self) -> &'a dyn KMIPServerObtainLeaseEvent;
  pub fn set_on_obtain_lease(&mut self, value : &'a dyn KMIPServerObtainLeaseEvent);
  ...
}
```

## Remarks

Subscribe to this event to react to object lease requests in virtualized mode.

The *ObjectId* parameter indicates the object a lease for which is requested. The *LeaseTime* and *LastChangeDate* specify the requested parameters of the lease. You can adjust them as required.

Set *OperationStatus* to indicate the intended operation result to the client.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_operation_attempt event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a request is received from the client.

## Syntax

*Rust Syntax*

```text
// KMIPServerOperationAttemptEventArgs carries the KMIPServer OperationAttempt event's parameters.
pub struct KMIPServerOperationAttemptEventArgs {
  fn connection_id(&self) -> i64
  fn operation(&self) -> &String
  fn username(&self) -> &String
  fn reject(&self) -> bool
  fn set_reject(&self, value : bool)
}

// KMIPServerOperationAttemptEvent defines the signature of the KMIPServer OperationAttempt event's handler function.
pub trait KMIPServerOperationAttemptEvent {
  fn on_operation_attempt(&self, sender : KMIPServer, e : &mut KMIPServerOperationAttemptEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_operation_attempt(&self) -> &'a dyn KMIPServerOperationAttemptEvent;
  pub fn set_on_operation_attempt(&mut self, value : &'a dyn KMIPServerOperationAttemptEvent);
  ...
}
```

## Remarks

The *Operation* parameter specifies the operation to perform, and *Username* the originator of the request. Use the *Reject* parameter to reject the request.

# on_poll event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the received Poll request.

## Syntax

*Rust Syntax*

```text
// KMIPServerPollEventArgs carries the KMIPServer Poll event's parameters.
pub struct KMIPServerPollEventArgs {
  fn connection_id(&self) -> i64
  fn async_correlation_value(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerPollEvent defines the signature of the KMIPServer Poll event's handler function.
pub trait KMIPServerPollEvent {
  fn on_poll(&self, sender : KMIPServer, e : &mut KMIPServerPollEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_poll(&self) -> &'a dyn KMIPServerPollEvent;
  pub fn set_on_poll(&mut self, value : &'a dyn KMIPServerPollEvent);
  ...
}
```

## Remarks

KMIP clients may use Poll requests to check with the server asynchronously about the progress of an operation they started earlier. Use the handler of this event to return the *OperationStatus* for the operation identified with the *AsyncCorrelationValue* parameter.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_read_attribute event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Requests an object attribute value from the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerReadAttributeEventArgs carries the KMIPServer ReadAttribute event's parameters.
pub struct KMIPServerReadAttributeEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn attribute_name(&self) -> &String
  fn attribute_value(&self) -> &String
  fn set_attribute_value(&self, value : &str)
  fn set_attribute_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerReadAttributeEvent defines the signature of the KMIPServer ReadAttribute event's handler function.
pub trait KMIPServerReadAttributeEvent {
  fn on_read_attribute(&self, sender : KMIPServer, e : &mut KMIPServerReadAttributeEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_read_attribute(&self) -> &'a dyn KMIPServerReadAttributeEvent;
  pub fn set_on_read_attribute(&mut self, value : &'a dyn KMIPServerReadAttributeEvent);
  ...
}
```

## Remarks

The server uses this event to request an attribute value from the application. This event is only fired if the application chose the custom object browsing flow in the preceding [on_before_browse](#on_before_browse-event-kmipserver-struct) event.

This event is fired for every *AttributeName* in the list returned by the application from a preceding [on_list_attributes](#on_list_attributes-event-kmipserver-struct) event call.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_read_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Requests the details of the object from the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerReadObjectEventArgs carries the KMIPServer ReadObject event's parameters.
pub struct KMIPServerReadObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn object_type(&self) -> i32
  fn set_object_type(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerReadObjectEvent defines the signature of the KMIPServer ReadObject event's handler function.
pub trait KMIPServerReadObjectEvent {
  fn on_read_object(&self, sender : KMIPServer, e : &mut KMIPServerReadObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_read_object(&self) -> &'a dyn KMIPServerReadObjectEvent;
  pub fn set_on_read_object(&mut self, value : &'a dyn KMIPServerReadObjectEvent);
  ...
}
```

## Remarks

The server fires this event to request the details of the object from the application. This event is only invoked if the application chose to use custom operation handling in the preceding [on_before_read_object](#on_before_read_object-event-kmipserver-struct) event call.

The event handler should set the *ObjectType* and *OperationStatus* as required, and provide the relevant object via the certificate or key property and committing it using [set_client_cert](#set_client_cert-method-kmipserver-struct) or [set_client_key](#set_client_key-method-kmipserver-struct) respectively.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_re_certify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming re-certification request.

## Syntax

*Rust Syntax*

```text
// KMIPServerReCertifyEventArgs carries the KMIPServer ReCertify event's parameters.
pub struct KMIPServerReCertifyEventArgs {
  fn connection_id(&self) -> i64
  fn old_cert_id(&self) -> &String
  fn offset(&self) -> i32
  fn group(&self) -> &String
  fn new_cert_id(&self) -> &String
  fn set_new_cert_id(&self, value : &str)
  fn set_new_cert_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerReCertifyEvent defines the signature of the KMIPServer ReCertify event's handler function.
pub trait KMIPServerReCertifyEvent {
  fn on_re_certify(&self, sender : KMIPServer, e : &mut KMIPServerReCertifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_re_certify(&self) -> &'a dyn KMIPServerReCertifyEvent;
  pub fn set_on_re_certify(&mut self, value : &'a dyn KMIPServerReCertifyEvent);
  ...
}
```

## Remarks

The server uses this event to notify the application about the incoming re-certification request.

If the application uses the component in virtual mode, it should perform the requested re-certification operation in the event handler and return the identifier of the new certificate via the *NewCertId* parameter.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_recover_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming Recover Object request.

## Syntax

*Rust Syntax*

```text
// KMIPServerRecoverObjectEventArgs carries the KMIPServer RecoverObject event's parameters.
pub struct KMIPServerRecoverObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRecoverObjectEvent defines the signature of the KMIPServer RecoverObject event's handler function.
pub trait KMIPServerRecoverObjectEvent {
  fn on_recover_object(&self, sender : KMIPServer, e : &mut KMIPServerRecoverObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_recover_object(&self) -> &'a dyn KMIPServerRecoverObjectEvent;
  pub fn set_on_recover_object(&mut self, value : &'a dyn KMIPServerRecoverObjectEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about the Recover Object request. Applications that use the component in the virtual mode should handle the request in their event handler and set *OperationStatus* in accordance with the operation result.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_re_key event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming re-key request.

## Syntax

*Rust Syntax*

```text
// KMIPServerReKeyEventArgs carries the KMIPServer ReKey event's parameters.
pub struct KMIPServerReKeyEventArgs {
  fn connection_id(&self) -> i64
  fn old_key_id(&self) -> &String
  fn offset(&self) -> i32
  fn group(&self) -> &String
  fn new_key_id(&self) -> &String
  fn set_new_key_id(&self, value : &str)
  fn set_new_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerReKeyEvent defines the signature of the KMIPServer ReKey event's handler function.
pub trait KMIPServerReKeyEvent {
  fn on_re_key(&self, sender : KMIPServer, e : &mut KMIPServerReKeyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_re_key(&self) -> &'a dyn KMIPServerReKeyEvent;
  pub fn set_on_re_key(&mut self, value : &'a dyn KMIPServerReKeyEvent);
  ...
}
```

## Remarks

The server uses this event to notify the application about the incoming re-keying request.

If the application uses the component in virtual mode, it should perform the requested re-key operation in the event handler and return the identifier of the new key via the *NewKeyId* parameter.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_rekey_key_pair event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about an incoming re-key request.

## Syntax

*Rust Syntax*

```text
// KMIPServerRekeyKeyPairEventArgs carries the KMIPServer RekeyKeyPair event's parameters.
pub struct KMIPServerRekeyKeyPairEventArgs {
  fn connection_id(&self) -> i64
  fn old_private_key_id(&self) -> &String
  fn offset(&self) -> i32
  fn group(&self) -> &String
  fn new_private_key_id(&self) -> &String
  fn set_new_private_key_id(&self, value : &str)
  fn set_new_private_key_id_ref(&self, value : &String)
  fn new_public_key_id(&self) -> &String
  fn set_new_public_key_id(&self, value : &str)
  fn set_new_public_key_id_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRekeyKeyPairEvent defines the signature of the KMIPServer RekeyKeyPair event's handler function.
pub trait KMIPServerRekeyKeyPairEvent {
  fn on_rekey_key_pair(&self, sender : KMIPServer, e : &mut KMIPServerRekeyKeyPairEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_rekey_key_pair(&self) -> &'a dyn KMIPServerRekeyKeyPairEvent;
  pub fn set_on_rekey_key_pair(&mut self, value : &'a dyn KMIPServerRekeyKeyPairEvent);
  ...
}
```

## Remarks

The server uses this event to notify the application about the incoming asymmetric re-keying request.

If the application uses the component in virtual mode, it should perform the requested re-certification operation in the event handler and return the identifiers of the new public and private keys via the *NewPublicKeyId* and *NewPrivateKeyId* parameters.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_remove_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about the object deletion request.

## Syntax

*Rust Syntax*

```text
// KMIPServerRemoveObjectEventArgs carries the KMIPServer RemoveObject event's parameters.
pub struct KMIPServerRemoveObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRemoveObjectEvent defines the signature of the KMIPServer RemoveObject event's handler function.
pub trait KMIPServerRemoveObjectEvent {
  fn on_remove_object(&self, sender : KMIPServer, e : &mut KMIPServerRemoveObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_remove_object(&self) -> &'a dyn KMIPServerRemoveObjectEvent;
  pub fn set_on_remove_object(&mut self, value : &'a dyn KMIPServerRemoveObjectEvent);
  ...
}
```

## Remarks

The server uses this event to notify the application about the incoming object removal request. Applications working in virtual mode should perform the requested operation in the event handler and set *OperationStatus* according to the outcome of the operation.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_request event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about KMIP requests being received.

## Syntax

*Rust Syntax*

```text
// KMIPServerRequestEventArgs carries the KMIPServer Request event's parameters.
pub struct KMIPServerRequestEventArgs {
  fn connection_id(&self) -> i64
  fn request_data(&self) -> &[u8]
}

// KMIPServerRequestEvent defines the signature of the KMIPServer Request event's handler function.
pub trait KMIPServerRequestEvent {
  fn on_request(&self, sender : KMIPServer, e : &mut KMIPServerRequestEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_request(&self) -> &'a dyn KMIPServerRequestEvent;
  pub fn set_on_request(&mut self, value : &'a dyn KMIPServerRequestEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about incoming KMIP requests. The *RequestData* parameter contains the serialized KMIP request object.

# on_response event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Notifies the application about KMIP responses being sent back.

## Syntax

*Rust Syntax*

```text
// KMIPServerResponseEventArgs carries the KMIPServer Response event's parameters.
pub struct KMIPServerResponseEventArgs {
  fn connection_id(&self) -> i64
  fn response_data(&self) -> &[u8]
}

// KMIPServerResponseEvent defines the signature of the KMIPServer Response event's handler function.
pub trait KMIPServerResponseEvent {
  fn on_response(&self, sender : KMIPServer, e : &mut KMIPServerResponseEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_response(&self) -> &'a dyn KMIPServerResponseEvent;
  pub fn set_on_response(&mut self, value : &'a dyn KMIPServerResponseEvent);
  ...
}
```

## Remarks

Subscribe to this event to get notified about KMIP protocol responses being sent back to KMIP clients.

# on_revoke_object event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to revoke an object.

## Syntax

*Rust Syntax*

```text
// KMIPServerRevokeObjectEventArgs carries the KMIPServer RevokeObject event's parameters.
pub struct KMIPServerRevokeObjectEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn reason_code(&self) -> i32
  fn reason_message(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRevokeObjectEvent defines the signature of the KMIPServer RevokeObject event's handler function.
pub trait KMIPServerRevokeObjectEvent {
  fn on_revoke_object(&self, sender : KMIPServer, e : &mut KMIPServerRevokeObjectEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_revoke_object(&self) -> &'a dyn KMIPServerRevokeObjectEvent;
  pub fn set_on_revoke_object(&mut self, value : &'a dyn KMIPServerRevokeObjectEvent);
  ...
}
```

## Remarks

The server uses this event to relay a client's Revoke Object request to the application.

The application must mark the requested object (*ObjectId*) as revoked, providing *ReasonCode* and *ReasonMessage* as evidence.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_rng_generate event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Asks the application for another block of random numbers.

## Syntax

*Rust Syntax*

```text
// KMIPServerRNGGenerateEventArgs carries the KMIPServer RNGGenerate event's parameters.
pub struct KMIPServerRNGGenerateEventArgs {
  fn connection_id(&self) -> i64
  fn data_length(&self) -> i32
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRNGGenerateEvent defines the signature of the KMIPServer RNGGenerate event's handler function.
pub trait KMIPServerRNGGenerateEvent {
  fn on_rng_generate(&self, sender : KMIPServer, e : &mut KMIPServerRNGGenerateEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_rng_generate(&self) -> &'a dyn KMIPServerRNGGenerateEvent;
  pub fn set_on_rng_generate(&mut self, value : &'a dyn KMIPServerRNGGenerateEvent);
  ...
}
```

## Remarks

The server uses this event to request another chunk of random data from the application, following a client's PRNG Generate request.

An application that handles this event must use its PRNG to generate *DataLength* bytes of data and pass that data buffer back to the server via the [set_client_bytes](#set_client_bytes-method-kmipserver-struct) method.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_rng_seed event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Tells the application to seed the random number generator.

## Syntax

*Rust Syntax*

```text
// KMIPServerRNGSeedEventArgs carries the KMIPServer RNGSeed event's parameters.
pub struct KMIPServerRNGSeedEventArgs {
  fn connection_id(&self) -> i64
  fn data(&self) -> &[u8]
  fn bytes_used(&self) -> i32
  fn set_bytes_used(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerRNGSeedEvent defines the signature of the KMIPServer RNGSeed event's handler function.
pub trait KMIPServerRNGSeedEvent {
  fn on_rng_seed(&self, sender : KMIPServer, e : &mut KMIPServerRNGSeedEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_rng_seed(&self) -> &'a dyn KMIPServerRNGSeedEvent;
  pub fn set_on_rng_seed(&mut self, value : &'a dyn KMIPServerRNGSeedEvent);
  ...
}
```

## Remarks

The server component uses this event to notify the application about the client's RNG Seed call. The application that handles this event must seed the provided data to its PRNG and return the number of *BytesUsed* along with the *OperationStatus*.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_set_attribute event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Passes a set-attribute request to the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerSetAttributeEventArgs carries the KMIPServer SetAttribute event's parameters.
pub struct KMIPServerSetAttributeEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn attribute_name(&self) -> &String
  fn attribute_value(&self) -> &String
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerSetAttributeEvent defines the signature of the KMIPServer SetAttribute event's handler function.
pub trait KMIPServerSetAttributeEvent {
  fn on_set_attribute(&self, sender : KMIPServer, e : &mut KMIPServerSetAttributeEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_set_attribute(&self) -> &'a dyn KMIPServerSetAttributeEvent;
  pub fn set_on_set_attribute(&mut self, value : &'a dyn KMIPServerSetAttributeEvent);
  ...
}
```

## Remarks

The server component uses this event to tell the application that a certain attribute on an object should be set. This event only fires if the application chose to handle the edit operation manually in [on_before_edit](#on_before_edit-event-kmipserver-struct) event handler.

The handler of this event should attempt to set the *AttributeName* attribute of the respective object as requested and return the operation result in the *OperationStatus* parameter.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_sign event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Instructs the application to sign data with a private key.

## Syntax

*Rust Syntax*

```text
// KMIPServerSignEventArgs carries the KMIPServer Sign event's parameters.
pub struct KMIPServerSignEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn algorithm(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn data(&self) -> &[u8]
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerSignEvent defines the signature of the KMIPServer Sign event's handler function.
pub trait KMIPServerSignEvent {
  fn on_sign(&self, sender : KMIPServer, e : &mut KMIPServerSignEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_sign(&self) -> &'a dyn KMIPServerSignEvent;
  pub fn set_on_sign(&mut self, value : &'a dyn KMIPServerSignEvent);
  ...
}
```

## Remarks

The server used this event to request the application to sign the provided *Data* (or the hash of the data, subject to *InputIsHash*) with the private key identified by the *ObjectId* parameter. This event is only fired if the application chose to proceed with the custom signing flow in the preceding [on_before_sign](#on_before_sign-event-kmipserver-struct) event.

The *InitIndicator* and *FinalIndicator* provide guidance as to whether the data block is the first or last in a sequence of blocks. For blocks that are not last, generate a unique *CorrelationValue* to ensure continuity between consecutive data blocks.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_tls_cert_validate event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a client certificate needs to be validated.

## Syntax

*Rust Syntax*

```text
// KMIPServerTLSCertValidateEventArgs carries the KMIPServer TLSCertValidate event's parameters.
pub struct KMIPServerTLSCertValidateEventArgs {
  fn connection_id(&self) -> i64
  fn accept(&self) -> bool
  fn set_accept(&self, value : bool)
}

// KMIPServerTLSCertValidateEvent defines the signature of the KMIPServer TLSCertValidate event's handler function.
pub trait KMIPServerTLSCertValidateEvent {
  fn on_tls_cert_validate(&self, sender : KMIPServer, e : &mut KMIPServerTLSCertValidateEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_tls_cert_validate(&self) -> &'a dyn KMIPServerTLSCertValidateEvent;
  pub fn set_on_tls_cert_validate(&mut self, value : &'a dyn KMIPServerTLSCertValidateEvent);
  ...
}
```

## Remarks

The struct fires this event to notify the application of an authenticating client. Use the event handler to validate the certificate and pass your decision back to the server component via the *Accept* parameter.

# on_tls_established event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports the setup of a TLS session.

## Syntax

*Rust Syntax*

```text
// KMIPServerTLSEstablishedEventArgs carries the KMIPServer TLSEstablished event's parameters.
pub struct KMIPServerTLSEstablishedEventArgs {
  fn connection_id(&self) -> i64
}

// KMIPServerTLSEstablishedEvent defines the signature of the KMIPServer TLSEstablished event's handler function.
pub trait KMIPServerTLSEstablishedEvent {
  fn on_tls_established(&self, sender : KMIPServer, e : &mut KMIPServerTLSEstablishedEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_tls_established(&self) -> &'a dyn KMIPServerTLSEstablishedEvent;
  pub fn set_on_tls_established(&mut self, value : &'a dyn KMIPServerTLSEstablishedEvent);
  ...
}
```

## Remarks

Subscribe to this event to be notified about the setup of a TLS connection by a connected client.

# on_tls_handshake event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Fires when a newly established client connection initiates a TLS handshake.

## Syntax

*Rust Syntax*

```text
// KMIPServerTLSHandshakeEventArgs carries the KMIPServer TLSHandshake event's parameters.
pub struct KMIPServerTLSHandshakeEventArgs {
  fn connection_id(&self) -> i64
  fn server_name(&self) -> &String
  fn abort(&self) -> bool
  fn set_abort(&self, value : bool)
}

// KMIPServerTLSHandshakeEvent defines the signature of the KMIPServer TLSHandshake event's handler function.
pub trait KMIPServerTLSHandshakeEvent {
  fn on_tls_handshake(&self, sender : KMIPServer, e : &mut KMIPServerTLSHandshakeEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_tls_handshake(&self) -> &'a dyn KMIPServerTLSHandshakeEvent;
  pub fn set_on_tls_handshake(&mut self, value : &'a dyn KMIPServerTLSHandshakeEvent);
  ...
}
```

## Remarks

Use this event to get notified about the initiation of the TLS handshake by the remote client. The *ServerName* parameter specifies the requested host from the client hello message.

# on_tls_psk event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Requests a pre-shared key for TLS-PSK.

## Syntax

*Rust Syntax*

```text
// KMIPServerTLSPSKEventArgs carries the KMIPServer TLSPSK event's parameters.
pub struct KMIPServerTLSPSKEventArgs {
  fn connection_id(&self) -> i64
  fn identity(&self) -> &String
  fn psk(&self) -> &String
  fn set_psk(&self, value : &str)
  fn set_psk_ref(&self, value : &String)
  fn ciphersuite(&self) -> &String
  fn set_ciphersuite(&self, value : &str)
  fn set_ciphersuite_ref(&self, value : &String)
}

// KMIPServerTLSPSKEvent defines the signature of the KMIPServer TLSPSK event's handler function.
pub trait KMIPServerTLSPSKEvent {
  fn on_tls_psk(&self, sender : KMIPServer, e : &mut KMIPServerTLSPSKEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_tls_psk(&self) -> &'a dyn KMIPServerTLSPSKEvent;
  pub fn set_on_tls_psk(&mut self, value : &'a dyn KMIPServerTLSPSKEvent);
  ...
}
```

## Remarks

The struct fires this event to report that a client has requested a TLS-PSK negotiation. *ConnectionId* indicates the unique connection ID that requested the PSK handshake.

Use *Identity* to look up for the corresponding pre-shared key in the server's database, then assign the key to the *PSK* parameter. If TLS 1.3 PSK is used, you will also need to assign the *Ciphersuite* parameter with the cipher suite associated with that identity and their key.

# on_tls_shutdown event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Reports closure of a TLS session.

## Syntax

*Rust Syntax*

```text
// KMIPServerTLSShutdownEventArgs carries the KMIPServer TLSShutdown event's parameters.
pub struct KMIPServerTLSShutdownEventArgs {
  fn connection_id(&self) -> i64
}

// KMIPServerTLSShutdownEvent defines the signature of the KMIPServer TLSShutdown event's handler function.
pub trait KMIPServerTLSShutdownEvent {
  fn on_tls_shutdown(&self, sender : KMIPServer, e : &mut KMIPServerTLSShutdownEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_tls_shutdown(&self) -> &'a dyn KMIPServerTLSShutdownEvent;
  pub fn set_on_tls_shutdown(&mut self, value : &'a dyn KMIPServerTLSShutdownEvent);
  ...
}
```

## Remarks

The struct fires this event when a connected client closes their TLS session gracefully. This event is typically followed by a [on_disconnect](#on_disconnect-event-kmipserver-struct), which marks the closure of the underlying TCP session.

# on_validate_chain event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Passes the chain validation request to the application.

## Syntax

*Rust Syntax*

```text
// KMIPServerValidateChainEventArgs carries the KMIPServer ValidateChain event's parameters.
pub struct KMIPServerValidateChainEventArgs {
  fn connection_id(&self) -> i64
  fn object_ids(&self) -> &String
  fn validity(&self) -> i32
  fn set_validity(&self, value : i32)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerValidateChainEvent defines the signature of the KMIPServer ValidateChain event's handler function.
pub trait KMIPServerValidateChainEvent {
  fn on_validate_chain(&self, sender : KMIPServer, e : &mut KMIPServerValidateChainEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_validate_chain(&self) -> &'a dyn KMIPServerValidateChainEvent;
  pub fn set_on_validate_chain(&mut self, value : &'a dyn KMIPServerValidateChainEvent);
  ...
}
```

## Remarks

The server fires this event to notify the application about the received chain validation request. The application needs to build a chain out of certificates contained in the *ObjectIds* list, validate it, and return the validation result via the *Validity* parameter, which can take one of the following values:

|  |  |  |
| --- | --- | --- |
| cvtValid | 0 | The chain is valid |
| cvtValidButUntrusted | 1 | The chain is valid, but the root certificate is not trusted |
| cvtInvalid | 2 | The chain is not valid (some of certificates are revoked, expired, or contain an invalid signature) |
| cvtCantBeEstablished | 3 | The validity of the chain cannot be established because of missing or unavailable validation information (certificates, CRLs, or OCSP responses) |

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_verify event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

KMIPServer fires this event to notify the application about a verification operation request, and expects the application to perform it.

## Syntax

*Rust Syntax*

```text
// KMIPServerVerifyEventArgs carries the KMIPServer Verify event's parameters.
pub struct KMIPServerVerifyEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn input_is_hash(&self) -> bool
  fn data(&self) -> &[u8]
  fn signature_data(&self) -> &[u8]
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn validation_result(&self) -> i32
  fn set_validation_result(&self, value : i32)
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerVerifyEvent defines the signature of the KMIPServer Verify event's handler function.
pub trait KMIPServerVerifyEvent {
  fn on_verify(&self, sender : KMIPServer, e : &mut KMIPServerVerifyEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_verify(&self) -> &'a dyn KMIPServerVerifyEvent;
  pub fn set_on_verify(&mut self, value : &'a dyn KMIPServerVerifyEvent);
  ...
}
```

## Remarks

Subscribe to this event to be notified about public key signature verification operations. For this event to be invoked, the *fraCustom* action needs to be previously returned from the [on_before_verify](#on_before_verify-event-kmipserver-struct) event.

The parameters of this event provide the details of the verification request:

- *ObjectId*: the key object to verify the signature with.
- *HashAlgorithm*: the hash algorithm to use for verification.
- *InputIsHash*: specifies whether *Data* contains the hash of the signed object or the object itself.
- *Data*: the signed data that needs to be verified.
- *SignatureData*: the signature data.
- *InitIndicator*: whether the provided data block starts a sequence of blocks.
- *FinalIndicator*: whether the provided data block ends a sequence of blocks.

Upon processing, set the *ValidationResult* and *OperationStatus* in accordance with the operation result.

See the [Three-step Virtualization](pages.md#pg_threestepvirtualization) article for more details about handling and virtualizing requests in SecureBlackbox servers.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# on_verify_hash event ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

Delegates the hash verification operation to a custom handler.

## Syntax

*Rust Syntax*

```text
// KMIPServerVerifyHashEventArgs carries the KMIPServer VerifyHash event's parameters.
pub struct KMIPServerVerifyHashEventArgs {
  fn connection_id(&self) -> i64
  fn object_id(&self) -> &String
  fn hash_algorithm(&self) -> &String
  fn data(&self) -> &[u8]
  fn hash(&self) -> &[u8]
  fn init_indicator(&self) -> bool
  fn final_indicator(&self) -> bool
  fn is_valid(&self) -> bool
  fn set_is_valid(&self, value : bool)
  fn correlation_value(&self) -> &String
  fn set_correlation_value(&self, value : &str)
  fn set_correlation_value_ref(&self, value : &String)
  fn operation_status(&self) -> i32
  fn set_operation_status(&self, value : i32)
}

// KMIPServerVerifyHashEvent defines the signature of the KMIPServer VerifyHash event's handler function.
pub trait KMIPServerVerifyHashEvent {
  fn on_verify_hash(&self, sender : KMIPServer, e : &mut KMIPServerVerifyHashEventArgs);
}

impl <'a> KMIPServer<'a> {
  pub fn on_verify_hash(&self) -> &'a dyn KMIPServerVerifyHashEvent;
  pub fn set_on_verify_hash(&mut self, value : &'a dyn KMIPServerVerifyHashEvent);
  ...
}
```

## Remarks

This event allows the application to wiretap into the server's verification procedure. It is invoked if the *Action* parameter in the preceding [on_before_verify](#on_before_verify-event-kmipserver-struct) hash call was set to *fraCustom*.

KMIPServer uses this event to delegate both hash and MAC (keyed hash) verifications.

The *ObjectId* parameter contains the identifier of the key object that should be used to calculate the MAC code. This parameter is empty if a simple hashing operation is requested. The *Data* parameter contains the data that should be verified against the hash.

The *Hash* parameter contains the hash or MAC record. The *Algorithm* parameter specifies the hash algorithm.

In this handler, the application should calculate an *Algorithm* hash over *Data*, and verify that the result matches *Hash*. If the result does match, it should set the *IsValid* parameter to true. If the hashes do not match, or if any of the call parameters are malformed or not understood by the application, it should set *IsValid* to false.

|  |  |  |
| --- | --- | --- |
| ostOk | 1 |  |
| ostNoSuchFile | 2 |  |
| ostAccessDenied | 3 |  |
| ostWriteProtect | 4 |  |
| ostUnsupported | 5 |  |
| ostInvalidParameter | 6 |  |
| ostEOF | 7 |  |

# Config Settings ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

 The struct accepts one or more of the following *configuration settings*. Configuration settings are similar in functionality to properties, but they are rarely used. In order to avoid "polluting" the property namespace of the struct, access to these *internal properties* is provided through the [config](#config-method-kmipserver-struct) method.

### KMIPServer Config Settings

**AllowKeepAlive**: Enables or disables keep-alive mode.Use this property to enable or disable the keep-alive connection mode. If keep-alive is enabled, clients that choose to use it may stay connected for a while.

**AllowOptionsResponseWithoutAuth**: Enables unauthenticated responses to OPTIONS requests.Set this property to true to allow the server serve OPTIONS requests without prior authentication of the client.

**AuthBasic**: Turns on/off the basic authentication.When switched on, connecting clients can use the basic authentication.

**AuthDigest**: Turns on/off the digest authentication.When switched on, connecting clients can use the digest authentication.

**AuthDigestExpire**: Specifies digest expiration time for digest authentication.Use this property to specify the digest expiration time for digest authentication, in seconds. The default setting is 20.

**AuthRealm**: Specifies authentication realm for digest and NTLM authentication.Specifies authentication realm for digest and NTLM authentication types.

**CompressionLevel**: The default compression level to use.Assign this property with the compression level (1 to 9) to apply for gzipped responses. 1 stands for the lightest but fastest compression, and 9 for the best but the slowest.

**DualStack**: Allows the use of ip4 and ip6 simultaneously.This setting specifies a socket can use ip4 and ip6 simultaneously.

**HomePage**: Specifies the home page resource name.Use this property to specify the home page (/) resource name.

**MajorProtocolVersion**: Major protocol version on the KMIP server.Use this property to specify the major version of KMIP used on the server.

**MinorProtocolVersion**: Minor protocol version on the KMIP server.Use this property to specify the minor version of KMIP used on the server.

**OAuthAllowAccessByDefault**: Specifies whether access to a resource is allowed by default.Use this property to enable or disable access to a resource in case if no scopes defined or the resource doesn't match any of the user's scopes.

**OAuthAutoValidateTokens**: Allows to validate OAuth 2.0 access tokens automatically.Use this property to enable or disable pre-validation of access tokens.

**OAuthIntrospectionClientID**: Specifies a client ID on the authentication service.Use this property to provide a client ID for access token introspection.

**OAuthIntrospectionClientSecret**: Specifies a client secret on the authentication service.Use this property to provide a client secret for access token introspection.

**OAuthIntrospectionURL**: Specifies the URL to be used to introspect access tokens.Use this property to provide the URL for introspection.

**OAuthTokenValidationKeys**: Specifies JW keys in JSON format for validating access token signatures.

**RequestFilter**: The request string modifier.Use this property to tune up the request string as returned by GetRequestString method. Supported filters: params (request parameters only), params[Index] or params['Name'] (a specific request parameter), parts[Index] (the contents of a particular part of a multipart message). An empty request filter makes GetRequestString return the whole body of the request.

**SSLMode**: Whether to establish a TLS-secured connection.When SSLMode is True, the struct establishes a TLS session and encrypts the data.

**UseChunkedTransfer**: Whether to use chunked encoding of the data.Set this property to true to generate chunked responses to the clients. Enables chunked transfer.Use this property to enable chunked content encoding.

**UseChunkedTransfer**: Whether to use chunked encoding of the data.Set this property to true to generate chunked responses to the clients. Enables chunked transfer.Use this property to enable chunked content encoding.

**UseCompression**: Whether to use GZip compression.Use this property to tell the struct that it should use data compression when generating responses. Enables or disables server-side compression.Use this property to enable or disable server-side content compression.

**UseCompression**: Whether to use GZip compression.Use this property to tell the struct that it should use data compression when generating responses. Enables or disables server-side compression.Use this property to enable or disable server-side content compression.

### Base Config Settings

**ASN1UseGlobalTagCache**: Controls whether ASN.1 module should use a global object cache.This is a performance setting. It is unlikely that you will ever need to adjust it.

**AssignSystemSmartCardPins**: Specifies whether CSP-level PINs should be assigned to CNG keys.This is a low-level tweak for certain cryptographic providers. It is unlikely that you will ever need to adjust it.

**CheckKeyIntegrityBeforeUse**: Enables or disable private key integrity check before use.This global property enables or disables private key material check before each signing operation. This slows down performance a bit, but prevents a selection of attacks on RSA keys where keys with unknown origins are used.

You can switch this property off to improve performance if your project only uses known, good private keys.

**CookieCaching**: Specifies whether a cookie cache should be used for HTTP(S) transports.Set this property to enable or disable cookies caching for the struct.

Supported values are:

|  |  |  |
| --- | --- | --- |
| off |  | No caching (default) |
| local |  | Local caching |
| global |  | Global caching |

**Cookies**: Gets or sets local cookies for the struct.Use this property to get cookies from the internal cookie storage of the struct and/or restore them back between application sessions.

**DefDeriveKeyIterations**: Specifies the default key derivation algorithm iteration count.This global property sets the default number of iterations for all supported key derivation algorithms. Note that you can provide the required number of iterations by using properties of the relevant key generation component; this global setting is used in scenarios where specific iteration count is not or cannot be provided.

**DNSLocalSuffix**: The suffix to assign for TLD names.Use this global setting to adjust the default suffix to assign to top-level domain names. The default is *.local*.

**EnableClientSideSSLFFDHE**: Enables or disables finite field DHE key exchange support in TLS clients.This global property enables or disables support for finite field DHE key exchange methods in TLS clients. FF DHE is a slower algorithm if compared to EC DHE; enabling it may result in slower connections.

This setting only applies to sessions negotiated with TLS version 1.3.

**EnableSSHMLKEM**: Enables support for ML-KEM/hybrid key exchange algorithms in SSH client and server components.Use this setting to enable hybrid key exchange algorithms in client and server SSH and SFTP components. This is a global setting that enables ML-KEM blanketly in all SSH-dependent components.

**EnableTLSMLKEM**: Enables support for ML-KEM and hybrid groups in TLS client and server components.Use this setting to enable ML-KEM and hybrid key exchange groups in client and server TLS components. This is a global setting that enables ML-KEM blanketly in all TLS-dependent components.

**GlobalCookies**: Gets or sets global cookies for all the HTTP transports.Use this property to get cookies from the GLOBAL cookie storage or restore them back between application sessions. These cookies will be used by all the structs that have its *CookieCaching* property set to "global".

**HardwareCryptoUsePolicy**: The hardware crypto usage policy.This global setting controls the hardware cryptography usage policy.

Supported Values:

|  |  |
| --- | --- |
| auto | Use hardware cryptography if available; otherwise, fall back to software-based cryptography (default). |
| enable | Always attempt to use hardware cryptography. If unavailable, exception will be thrown. |
| disable | Do not use hardware cryptography. |

**HttpUserAgent**: Specifies the user agent name to be used by all HTTP clients.This global setting defines the User-Agent field of the HTTP request provides information about the software that initiates the request. This value will be used by all the HTTP clients including the ones used internally in other structs.

**HttpVersion**: The HTTP version to use in any inner HTTP client components created.Set this property to 1.0 or 1.1 to indicate the HTTP version that any internal HTTP clients should use.

**IgnoreExpiredMSCTLSigningCert**: Whether to tolerate the expired Windows Update signing certificate.It is not uncommon for Microsoft Windows Update Certificate Trust List to be signed with an expired Microsoft certificate. Setting this global property to true makes SBB ignore the expired factor and take the Trust List into account.

**ListDelimiter**: The delimiter character for multi-element lists.Allows to set the delimiter for any multi-entry values returned by the component as a string object, such as file lists. For most of the components, this property is set to a newline sequence.

**LogDestination**: Specifies the debug log destination.Contains a comma-separated list of values that specifies where debug log should be dumped.

Supported values are:

|  |  |  |
| --- | --- | --- |
| file |  | File |
| console |  | Console |
| systemlog |  | System Log (supported for Android only) |
| debugger |  | Debugger (supported for VCL for Windows and .Net) |

**LogDetails**: Specifies the debug log details to dump.Contains a comma-separated list of values that specifies which debug log details to dump.

Supported values are:

|  |  |  |
| --- | --- | --- |
| time |  | Current time |
| level |  | Level |
| package |  | Package name |
| module |  | Module name |
| class |  | Class name |
| method |  | Method name |
| threadid |  | Thread Id |
| contenttype |  | Content type |
| content |  | Content |
| all |  | All details |

**LogFile**: Specifies the debug log filename.Use this property to provide a path to the log file.

**LogFilters**: Specifies the debug log filters.Contains a comma-separated list of value pairs ("name:value") that describe filters.

Supported filter names are:

|  |  |  |
| --- | --- | --- |
| exclude-package |  | Exclude a package specified in the value |
| exclude-module |  | Exclude a module specified in the value |
| exclude-class |  | Exclude a class specified in the value |
| exclude-method |  | Exclude a method specified in the value |
| include-package |  | Include a package specified in the value |
| include-module |  | Include a module specified in the value |
| include-class |  | Include a class specified in the value |
| include-method |  | Include a method specified in the value |

**LogFlushMode**: Specifies the log flush mode.Use this property to set the log flush mode. The following values are defined:

|  |  |  |
| --- | --- | --- |
| none |  | No flush (caching only) |
| immediate |  | Immediate flush (real-time logging) |
| maxcount |  | Flush cached entries upon reaching LogMaxEventCount entries in the cache. |

**LogLevel**: Specifies the debug log level.Use this property to provide the desired debug log level.

Supported values are:

|  |  |  |
| --- | --- | --- |
| none |  | None (by default) |
| fatal |  | Severe errors that cause premature termination. |
| error |  | Other runtime errors or unexpected conditions. |
| warning |  | Use of deprecated APIs, poor use of API, 'almost' errors, other runtime situations that are undesirable or unexpected, but not necessarily "wrong". |
| info |  | Interesting runtime events (startup/shutdown). |
| debug |  | Detailed information on flow of through the system. |
| trace |  | More detailed information. |

**LogMaxEventCount**: Specifies the maximum number of events to cache before further action is taken.Use this property to specify the log event number threshold. This threshold may have different effects, depending on the rotation setting and/or the flush mode.

The default value of this setting is 100.

**LogRotationMode**: Specifies the log rotation mode.Use this property to set the log rotation mode. The following values are defined:

|  |  |  |
| --- | --- | --- |
| none |  | No rotation |
| deleteolder |  | Delete older entries from the cache upon reaching LogMaxEventCount |
| keepolder |  | Keep older entries in the cache upon reaching LogMaxEventCount (newer entries are discarded) |

**MaxASN1BufferLength**: Specifies the maximal allowed length for ASN.1 primitive tag data.This global property limits the maximal allowed length for ASN.1 tag data for non-content-carrying structures, such as certificates, CRLs, or timestamps. It does not affect structures that can carry content, such as CMS/CAdES messages. This is a security property aiming at preventing DoS attacks.

**MaxASN1TreeDepth**: Specifies the maximal depth for processed ASN.1 trees.This global property limits the maximal depth of ASN.1 trees that the component can handle without throwing an error. This is a security property aiming at preventing DoS attacks.

**OCSPHashAlgorithm**: Specifies the hash algorithm to be used to identify certificates in OCSP requests.This global setting defines the hash algorithm to use in OCSP requests during chain validation. Some OCSP responders can only use older algorithms, in which case setting this property to SHA1 may be helpful.

**OldClientSideRSAFallback**: Specifies whether the SSH client should use a SHA1 fallback.Tells the SSH client to use a legacy ssh-rsa authentication even if the server indicates support for newer algorithms, such as rsa-sha-256. This is a backward-compatibility tweak.

**PKICache**: Specifies which PKI elements (certificates, CRLs, OCSP responses) should be cached.The PKICache setting specifies which Public Key Infrastructure (PKI) elements should be cached to optimize performance and reduce retrieval times. It supports comma-separated values to indicate the specific types of PKI data that should be cached.

Supported Values:

|  |  |
| --- | --- |
| certificate | Enables caching of certificates. |
| crl | Enables caching of Certificate Revocation Lists (CRLs). |
| ocsp | Enables caching of OCSP (Online Certificate Status Protocol) responses. |

Example (default value):

```text
PKICache=certificate,crl,ocsp
```

 In this example, the component caches certificates, CRLs, and OCSP responses.

**PKICachePath**: Specifies the file system path where cached PKI data is stored.The PKICachePath setting defines the file system path where cached PKI data (e.g., certificates, CRLs, OCSP responses and Trusted Lists) will be stored. This allows the system to persistently save and retrieve PKI cache data, even across application restarts.

The default value is an empty string - no cached PKI data is stored on disk.

Example:

```text
PKICachePath=C:\Temp\cache
```

 In this example, the cached PKI data is stored in the C:\Temp\cache directory.

**ProductVersion**: Returns the version of the SecureBlackbox library.This property returns the long version string of the SecureBlackbox library being used (major.minor.build.revision).

**ServerSSLDHKeyLength**: Sets the size of the TLS DHE key exchange group.Use this property to adjust the length, in bits, of the DHE prime to be used by the TLS server.

**StaticDNS**: Specifies whether static DNS rules should be used.Set this property to enable or disable static DNS rules for the struct. Works only if *UseOwnDNSResolver* is set to *true*.

Supported values are:

|  |  |  |
| --- | --- | --- |
| none |  | No static DNS rules (default) |
| local |  | Local static DNS rules |
| global |  | Global static DNS rules |

**StaticIPAddress[domain]**: Gets or sets an IP address for the specified domain name.Use this property to get or set an IP address for the specified domain name in the internal (of the struct) or global DNS rules storage depending on the *StaticDNS* value. The type of the IP address (IPv4 or IPv6) is determined automatically. If both addresses are available, they are divided by the | (pipe) character.

**StaticIPAddresses**: Gets or sets all the static DNS rules.Use this property to get static DNS rules from the current rules storage or restore them back between application sessions. If *StaticDNS* of the struct is set to "*local*", the property returns/restores the rules from/to the internal storage of the struct. If *StaticDNS* of the struct is set to "*global*", the property returns/restores the rules from/to the GLOBAL storage. The rules list is returned and accepted in JSON format.

**Tag**: Allows to store any custom data.Use this config property to store any custom data.

**TLSSessionGroup**: Specifies the group name of TLS sessions to be used for session resumption.Use this property to limit the search of cached TLS sessions to the specified group. Sessions from other groups will be ignored. By default, all sessions are cached with an empty group name and available to all the structs.

**TLSSessionLifetime**: Specifies lifetime in seconds of the cached TLS session.Use this property to specify how much time the TLS session should be kept in the session cache. After this time, the session expires and will be automatically removed from the cache. Default value is 300 seconds (5 minutes).

**TLSSessionPurgeInterval**: Specifies how often the session cache should remove the expired TLS sessions.Use this property to specify the time interval of purging the expired TLS sessions from the session cache. Default value is 60 seconds (1 minute).

**UseCRLObjectCaching**: Specifies whether reuse of loaded CRL objects is enabled.This setting enables or disables the caching of CRL objects. When set to true (the default value), the system checks if a CRL object is already loaded in memory before attempting to load a new instance. If the object is found, the existing instance is reused, and its reference count is incremented to track its usage. When the reference count reaches zero, indicating that no references to the object remain, the system will free the object from memory. This setting enhances performance by minimizing unnecessary object instantiation and promotes efficient memory management, particularly in scenarios where CRL objects are frequently used.

**UseInternalRandom**: Switches between SecureBlackbox-own and platform PRNGs.Allows to switch between internal/native PRNG implementation and the one provided by the platform.

**UseLegacyAdESValidation**: Enables legacy AdES validation mode.Use this setting to switch the AdES component to the validation approach that was used in SBB 2020/SBB 2022 (less attention to temporal details).

**UseOCSPResponseObjectCaching**: Specifies whether reuse of loaded OCSP response objects is enabled.This setting enables or disables the caching of OCSP response objects. When set to true (the default value), the system checks if a OCSP response object is already loaded in memory before attempting to load a new instance. If the object is found, the existing instance is reused, and its reference count is incremented to track its usage. When the reference count reaches zero, indicating that no references to the object remain, the system will free the object from memory. This setting enhances performance by minimizing unnecessary object instantiation and promotes efficient memory management, particularly in scenarios where OCSP response objects are frequently used.

**UseOwnDNSResolver**: Specifies whether the client components should use own DNS resolver.Set this global property to false to force all the client components to use the DNS resolver provided by the target OS instead of using own one.

**UseSharedSystemStorages**: Specifies whether the validation engine should use a global per-process copy of the system certificate stores.Set this global property to false to make each validation run use its own copy of system certificate stores.

**UseSystemNativeSizeCalculation**: An internal CryptoAPI access tweak.This is an internal setting. Please do not use it unless instructed by the support team.

**UseSystemOAEPAndPSS**: Enforces or disables the use of system-driven RSA OAEP and PSS computations.This global setting defines who is responsible for performing RSA-OAEP and RSA-PSS computations where the private key is stored in a Windows system store and is exportable. If set to true, SBB will delegate the computations to Windows via a CryptoAPI call. Otherwise, it will export the key material and perform the computations using its own OAEP/PSS implementation.

This setting only applies to certificates originating from a Windows system store.

**UseSystemRandom**: Enables or disables the use of the OS PRNG.Use this global property to enable or disable the use of operating system-driven pseudorandom number generation.

**XMLRDNDescriptorName[OID]**: Defines an OID mapping to descriptor names for the certificate's IssuerRDN or SubjectRDN.This property defines custom mappings between Object Identifiers (OIDs) and descriptor names. This mapping specifies how the certificate's issuer and subject information (ds:IssuerRDN and ds:SubjectRDN elements respectively) are represented in XML signatures.

The property accepts comma-separated values where the first descriptor name is used when the OID is mapped, and subsequent values act as aliases for parsing.

Syntax:

```text
Config("XMLRDNDescriptorName[OID]=PrimaryName,Alias1,Alias2");
```

Where:

OID: The Object Identifier from the certificate's IssuerRDN or SubjectRDN that you want to map.

PrimaryName: The main descriptor name used in the XML signature when the OID is encountered.

Alias1, Alias2, ...: Optional alternative names recognized during parsing.

Usage Examples:

Map OID 2.5.4.5 to SERIALNUMBER:

```text
Config("XMLRDNDescriptorName[2.5.4.5]=SERIALNUMBER");
```

Map OID 1.2.840.113549.1.9.1 to E, with aliases EMAIL and EMAILADDRESS:

```text
Config("XMLRDNDescriptorName[1.2.840.113549.1.9.1]=E,EMAIL,EMAILADDRESS");
```

**XMLRDNDescriptorPriority[OID]**: Specifies the priority of descriptor names associated with a specific OID.This property specifies the priority of descriptor names associated with a specific OID that allows to reorder descriptors in the ds:IssuerRDN and ds:SubjectRDN elements during signing.

**XMLRDNDescriptorReverseOrder**: Specifies whether to reverse the order of descriptors in RDN.Specifies whether to reverse the order of descriptors in the ds:IssuerRDN and ds:SubjectRDN elements during XML signing. By default, this property is set to true (as specified in RFC 2253, 2.1).

**XMLRDNDescriptorSeparator**: Specifies the separator used between descriptors in RDN.Specifies the separator used between descriptors in the ds:IssuerRDN and ds:SubjectRDN elements during XML signing. By default, this property is set to ", " value.

# Trappable Errors ([KMIPServer](#struct-secureblackboxkmipserver) Struct)

### KMIPServer Errors

|  |  |
| --- | --- |
| 1048577 | Invalid parameter ([SB_ERROR_INVALID_PARAMETER](constants.md#const_SBERRORINVALIDPARAMETER)) |
| 1048578 | Invalid configuration ([SB_ERROR_INVALID_SETUP](constants.md#const_SBERRORINVALIDSETUP)) |
| 1048579 | Invalid state ([SB_ERROR_INVALID_STATE](constants.md#const_SBERRORINVALIDSTATE)) |
| 1048580 | Invalid value ([SB_ERROR_INVALID_VALUE](constants.md#const_SBERRORINVALIDVALUE)) |
| 1048581 | Private key not found ([SB_ERROR_NO_PRIVATE_KEY](constants.md#const_SBERRORNOPRIVATEKEY)) |
| 1048582 | Cancelled by the user ([SB_ERROR_CANCELLED_BY_USER](constants.md#const_SBERRORCANCELLEDBYUSER)) |
| 1048583 | The file was not found ([SB_ERROR_NO_SUCH_FILE](constants.md#const_SBERRORNOSUCHFILE)) |
| 1048584 | Unsupported feature or operation ([SB_ERROR_UNSUPPORTED_FEATURE](constants.md#const_SBERRORUNSUPPORTEDFEATURE)) |
| 1048585 | General error ([SB_ERROR_GENERAL_ERROR](constants.md#const_SBERRORGENERALERROR)) |
| 20971521 | KMIP request failed ([SB_ERROR_KMIP_REQUEST_FAILED](constants.md#const_SBERRORKMIPREQUESTFAILED)) |
| 20971522 | The input file does not exist ([SB_ERROR_KMIP_INPUTFILE_NOT_EXISTS](constants.md#const_SBERRORKMIPINPUTFILENOTEXISTS)) |
| 20971523 | Unsupported key algorithm ([SB_ERROR_KMIP_UNSUPPORTED_KEY_ALGORITHM](constants.md#const_SBERRORKMIPUNSUPPORTEDKEYALGORITHM)) |
| 20971524 | Invalid key ([SB_ERROR_KMIP_INVALID_KEY](constants.md#const_SBERRORKMIPINVALIDKEY)) |
