Documentation
¶
Overview ¶
Package devicecheck provides purego-based Go bindings for the macOS DeviceCheck framework.
Apple documentation: https://developer.apple.com/documentation/devicecheck
Index ¶
- func DCErrorDomain() *foundation.NSString
- type Acl_entry_id_t
- type Acl_flag_t
- type Acl_perm_t
- type Acl_tag_t
- type Acl_type_t
- type Clockid_t
- type DCAppAttestService
- func (o *DCAppAttestService) AttestKeyClientDataHashCompletionHandler(keyId *foundation.NSString, clientDataHash *foundation.NSData, ...)
- func (o *DCAppAttestService) GenerateAssertionClientDataHashCompletionHandler(keyId *foundation.NSString, clientDataHash *foundation.NSData, ...)
- func (o *DCAppAttestService) GenerateKeyWithCompletionHandler(completionHandler func(*foundation.NSString, unsafe.Pointer))
- func (o *DCAppAttestService) IsSupported() bool
- type DCDevice
- type DCError
- type Dispatch_autorelease_frequency_t
- type Dispatch_block_flags_t
- type Filesec_property_t
- type Idtype_t
- type Ipc_info_object_type_t
- type Launch_data_type_t
- type MDLabelDomain
- type MDQueryOptionFlags
- type MDQuerySortOptionFlags
- type Mach_vm_range_flags_t
- type Mach_vm_range_flavor_t
- type Mach_vm_range_tag_t
- type Mpo_flags_t
- type Os_clockid_t
- type Ptrauth_key
- type Qos_class_t
- type Virtual_memory_guard_exception_code_t
- type Xpc_listener_create_flags_t
- type Xpc_session_create_flags_t
Constants ¶
This section is empty.
Variables ¶
This section is empty.
Functions ¶
func DCErrorDomain ¶
func DCErrorDomain() *foundation.NSString
The error domain for errors associated with DeviceCheck APIs.
Types ¶
type Acl_entry_id_t ¶
type Acl_entry_id_t int64
const ( ACL_FIRST_ENTRY Acl_entry_id_t = 0 ACL_NEXT_ENTRY Acl_entry_id_t = -1 ACL_LAST_ENTRY Acl_entry_id_t = -2 )
func (Acl_entry_id_t) String ¶
func (e Acl_entry_id_t) String() string
type Acl_flag_t ¶
type Acl_flag_t int64
const ( ACL_FLAG_DEFER_INHERIT Acl_flag_t = 1 ACL_FLAG_NO_INHERIT Acl_flag_t = 131072 ACL_ENTRY_INHERITED Acl_flag_t = 16 ACL_ENTRY_FILE_INHERIT Acl_flag_t = 32 ACL_ENTRY_DIRECTORY_INHERIT Acl_flag_t = 64 ACL_ENTRY_LIMIT_INHERIT Acl_flag_t = 128 ACL_ENTRY_ONLY_INHERIT Acl_flag_t = 256 )
func (Acl_flag_t) String ¶
func (e Acl_flag_t) String() string
type Acl_perm_t ¶
type Acl_perm_t int64
const ( ACL_READ_DATA Acl_perm_t = 2 ACL_LIST_DIRECTORY Acl_perm_t = 2 ACL_WRITE_DATA Acl_perm_t = 4 ACL_ADD_FILE Acl_perm_t = 4 ACL_EXECUTE Acl_perm_t = 8 ACL_SEARCH Acl_perm_t = 8 ACL_DELETE Acl_perm_t = 16 ACL_APPEND_DATA Acl_perm_t = 32 ACL_ADD_SUBDIRECTORY Acl_perm_t = 32 ACL_DELETE_CHILD Acl_perm_t = 64 ACL_READ_ATTRIBUTES Acl_perm_t = 128 ACL_WRITE_ATTRIBUTES Acl_perm_t = 256 ACL_READ_EXTATTRIBUTES Acl_perm_t = 512 ACL_WRITE_EXTATTRIBUTES Acl_perm_t = 1024 ACL_READ_SECURITY Acl_perm_t = 2048 ACL_WRITE_SECURITY Acl_perm_t = 4096 ACL_CHANGE_OWNER Acl_perm_t = 8192 ACL_SYNCHRONIZE Acl_perm_t = 1048576 )
func (Acl_perm_t) String ¶
func (e Acl_perm_t) String() string
type Acl_type_t ¶
type Acl_type_t int64
const ( ACL_TYPE_EXTENDED Acl_type_t = 256 ACL_TYPE_ACCESS Acl_type_t = 0 ACL_TYPE_DEFAULT Acl_type_t = 1 ACL_TYPE_AFS Acl_type_t = 2 ACL_TYPE_CODA Acl_type_t = 3 ACL_TYPE_NTFS Acl_type_t = 4 ACL_TYPE_NWFS Acl_type_t = 5 )
func (Acl_type_t) String ¶
func (e Acl_type_t) String() string
type DCAppAttestService ¶
type DCAppAttestService struct {
foundation.NSObject
}
A service that you use to validate the instance of your app running on a device. Use the “DeviceCheck/DCAppAttestService/sharedService“ instance of the “DeviceCheck/DCAppAttestService“ class to assert the legitimacy of a particular instance of your app to your server. After ensuring service availability by reading the “DeviceCheck/DCAppAttestService/supported“ property, you use the service to: - Create a cryptographic key in the Secure Enclave by calling the “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method. - Ask Apple to certify the key by calling the “DeviceCheck/DCAppAttestService/attestKey:clientDataHash:completionHandler:“ method. - Prepare an assertion of your app’s integrity to accompany any or all server requests using the “DeviceCheck/DCAppAttestService/generateAssertion:clientDataHash:completionHandler:“ method. For more information about how to support App Attest in your app, see <doc:establishing-your-app-s-integrity>. For information about the complementary procedures you implement on your server, see <doc:validating-apps-that-connect-to-your-server>. - Note: To use the App Attest service, your app must have an app ID that you register on the [Apple Developer](https://developer.apple.com/account/) website.
Apple documentation: https://developer.apple.com/documentation/devicecheck/dcappattestservice
func DCAppAttestServiceFromID ¶
func DCAppAttestServiceFromID(id objc.ID) *DCAppAttestService
func DCAppAttestServiceSharedService ¶
func DCAppAttestServiceSharedService() *DCAppAttestService
The shared App Attest service that you use to validate your app. Use the shared instance of the service to generate and to certify a cryptographic key, and then to assert your app’s validity using that key.
func (*DCAppAttestService) AttestKeyClientDataHashCompletionHandler ¶
func (o *DCAppAttestService) AttestKeyClientDataHashCompletionHandler(keyId *foundation.NSString, clientDataHash *foundation.NSData, completionHandler func(*foundation.NSData, unsafe.Pointer))
Asks Apple to attest to the validity of a generated cryptographic key. > Concurrency Note: You can call this method from synchronous code using a completion handler, > as shown on this page, or you can call it as an asynchronous method that has the > following declaration: > > ```swift > func attestKey(_ keyId: String, clientDataHash: Data) async throws -> Data > ``` > > For information about concurrency and asynchronous code in Swift, see <doc://com.apple.documentation/documentation/swift/calling-objective-c-apis-asynchronously>. This method asks Apple to attest to the validity of a key that you previously generated with a call to the “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method. Provide the method with both the key identifier and a computed hash of a data block that includes a one-time challenge from your server to prevent replay attacks. For example, you can use CryptoKit to create a <doc://com.apple.documentation/documentation/cryptokit/sha256> hash of challenge data: ```swift import CryptoKit let hash = Data(SHA256.hash(data: challenge)) // A challenge from your server. ``` The attest method calls its completion handler to return an attestation object to you, which you must send to your server for verification. A compromised version of your app could falsify the verification result, thus circumventing App Attest. If you successfully verify the attestation object on your server, as described in <doc:validating-apps-that-connect-to-your-server>, then you can associate the key identifier with the user on the device for future reference. You’ll need the identifier to generate assertions with calls to “DeviceCheck/DCAppAttestService/generateAssertion:clientDataHash:completionHandler:“. If your server fails to verify the attestation object, discard the key identifier. If the method’s completion handler returns the “DeviceCheck/DCError-swift.struct/serverUnavailable“ error — typically due to network connectivity issues — it means that the framework failed to reach the App Attest service to complete the attestation. In this case, retry attestation again using the same key and client data hash later to avoid unnecessarily generating new keys. Retrying with the same inputs helps to preserve the risk metric for a given device. - Parameters: - keyId: The identifier you received when generating a cryptographic key by calling the “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method. - clientDataHash: A SHA256 hash of a unique, single-use data block that embeds a challenge from your server. Should be at least 16 bytes in length. - completionHandler: A closure that the method calls upon completion with the following parameters: - `attestationObject`: A statement from Apple about the validity of the key associated with `keyId`. Send this to your server for processing. - `error`: A “DeviceCheck/DCError-swift.struct“ instance that indicates the reason for failure, or `nil` on success.
func (*DCAppAttestService) GenerateAssertionClientDataHashCompletionHandler ¶
func (o *DCAppAttestService) GenerateAssertionClientDataHashCompletionHandler(keyId *foundation.NSString, clientDataHash *foundation.NSData, completionHandler func(*foundation.NSData, unsafe.Pointer))
Creates a block of data that demonstrates the legitimacy of an instance of your app running on a device. > Concurrency Note: You can call this method from synchronous code using a completion handler, > as shown on this page, or you can call it as an asynchronous method that has the > following declaration: > > ```swift > func generateAssertion(_ keyId: String, clientDataHash: Data) async throws -> Data > ``` > > For information about concurrency and asynchronous code in Swift, see <doc://com.apple.documentation/documentation/swift/calling-objective-c-apis-asynchronously>. After generating a key with the “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method and validating it with the “DeviceCheck/DCAppAttestService/attestKey:clientDataHash:completionHandler:“ method, you can use the key at critical moments in your app’s life cycle — like when a user tries to access premium content — to reaffirm the legitimacy of a given instance of your app. Do this by using the “DeviceCheck/DCAppAttestService/generateAssertion:clientDataHash:completionHandler:“ method to sign server requests with your attested key. You provide the key identifier and a hash of the request that includes a challenge from your server to prevent replay attacks, where an attacker reuses captured network traffic to pose as someone else. The method returns an assertion object in its completion handler that you send to your server for verification, as described in <doc:establishing-your-app-s-integrity>. - Parameters: - keyId: The identifier you received when generating a cryptographic key by calling the “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method. - clientDataHash: A SHA256 hash of a unique, single-use data block that represents the client data to be signed with the attested private key. Should be at least 16 bytes in length. - completionHandler: A closure that the method calls upon completion with the following parameters: - `assertionObject`: A data structure that you send to your server for processing. - `error` : A “DeviceCheck/DCError-swift.struct“ instance that indicates the reason for failure, or `nil` on success.
func (*DCAppAttestService) GenerateKeyWithCompletionHandler ¶
func (o *DCAppAttestService) GenerateKeyWithCompletionHandler(completionHandler func(*foundation.NSString, unsafe.Pointer))
Creates a new cryptographic key for use with the App Attest service. > Concurrency Note: You can call this method from synchronous code using a completion handler, > as shown on this page, or you can call it as an asynchronous method that has the > following declaration: > > ```swift > func generateKey() async throws -> String > ``` > For example: > ```swift > let keyIdentifier = try await generateKey() > ``` > For information about concurrency and asynchronous code in Swift, see <doc://com.apple.documentation/documentation/swift/calling-objective-c-apis-asynchronously>. Call this method to request the creation of a secure, unattested key pair on a device for a specific user. On success, the method provides your app with an identifier that represents the key pair stored in the Secure Enclave. Because there’s no way to use or retrieve the key without the identifier, you’ll want to either record it in your app or on your server right away. If key generation fails, the closure provides a “DeviceCheck/DCError-swift.struct“ that indicates the reason for the failure. Create a unique key for each user account on a device. Otherwise it’s hard to detect an attack that uses a single compromised device to serve multiple remote users running a compromised version of your app. For more information, see <doc:assessing-fraud-risk>. After you get the identifier, you call the “DeviceCheck/DCAppAttestService/attestKey:clientDataHash:completionHandler:“ method with the key identifier to ask Apple to attest to the validity of the associated key. Later, you call the “DeviceCheck/DCAppAttestService/generateAssertion:clientDataHash:completionHandler:“ method with the key identifier to answer a challenge from your server, and establish the legitimacy of this instance of your app. - Parameters: - completionHandler: A closure that the method calls upon completion with the following parameters: - `keyId`: An identifier that you use to refer to the key. The framework securely stores the key in the Secure Enclave. - `error`: A “DeviceCheck/DCError-swift.struct“ instance that indicates the reason for failure, or `nil` on success.
func (*DCAppAttestService) IsSupported ¶
func (o *DCAppAttestService) IsSupported() bool
A Boolean value that indicates whether a particular device provides the App Attest service. > Important: Not all device types support the App Attest service, so check > for support before using the service. > > If you read “DeviceCheck/DCAppAttestService/supported“ from an app running > on a Mac device, the value is > <doc://com.apple.documentation/documentation/swift/false>. This includes > Mac Catalyst apps, and iOS or iPadOS apps running on Apple silicon. If you read “DeviceCheck/DCAppAttestService/supported“ from within an app extension, the value might be <doc://com.apple.documentation/documentation/swift/true> or <doc://com.apple.documentation/documentation/swift/false>, depending on the extension type. However, most extensions don’t support App Attest. The “DeviceCheck/DCAppAttestService/generateKeyWithCompletionHandler:“ method fails when you call it from an app extension, regardless of the value of “DeviceCheck/DCAppAttestService/supported“. The only app extensions that support App Attest are watchOS extensions in watchOS 9 or later. For these extensions, you can use the results from “DeviceCheck/DCAppAttestService/supported“ to indicate whether your WatchKit extension bypasses attestation.
type DCDevice ¶
type DCDevice struct {
foundation.NSObject
}
A representation of a device that provides a unique, authenticated token. Use the shared instance of the `DCDevice` class to generate a token that identifies a device. Call the “DeviceCheck/DCDevice/generateTokenWithCompletionHandler:“ method to get the token, and then send it to your server: ```swift if DCDevice.current.isSupported { // Always test for availability. DCDevice.current.generateToken { token, error in guard error == nil else { /* Handle the error. */ } // Send the token to your server. } } ``` On your server, combine the token with an authentication key that you obtain from Apple, and use the result to request access to two per-device binary digits (bits). After authenticating the device, Apple passes the current values of the bits, along with the date they were last modified, to your server. Your server applies its business logic to this information and communicates the results to your app. For more information about server-side procedures, see <doc:accessing-and-modifying-per-device-data>. - Note: To use the `DCDevice` class, your app must have an app ID that you register on the [Apple Developer](https://developer.apple.com/account/) website. Apple records the bits for you, and reports the bits back to you, but you’re responsible for keeping track of what the bits mean. You’re also responsible for determining when to reset the bits for a given device; for example, when a user sells the device to someone else.
Apple documentation: https://developer.apple.com/documentation/devicecheck/dcdevice
func DCDeviceCurrentDevice ¶
func DCDeviceCurrentDevice() *DCDevice
A representation of the device for which you want to query the two bits of data.
func DCDeviceFromID ¶
func (*DCDevice) GenerateTokenWithCompletionHandler ¶
func (o *DCDevice) GenerateTokenWithCompletionHandler(completion func(*foundation.NSData, unsafe.Pointer))
Generates a token that identifies the current device. > Concurrency Note: You can call this method from synchronous code using a completion handler, > as shown on this page, or you can call it as an asynchronous method that has the > following declaration: > > ```swift > func generateToken() async throws -> Data > ``` > For example: > ```swift > let token = try await generateToken() > ``` > For information about concurrency and asynchronous code in Swift, see <doc://com.apple.documentation/documentation/swift/calling-objective-c-apis-asynchronously>. Your server uses the generated token in its requests to get or set the persistent bits for the current device. You should treat the token you receive in the completion block as single-use. Although the token remains valid long enough for your server to retry a specific request if necessary, you should not use a token multiple times. Instead, use this method to generate a new token. - Note: The app you use to generate the token must be associated with your developer account; otherwise, the generation request fails. - Parameters: - completion: A completion block that includes the following parameters: - `token`: An ephemeral token that identifies the current device. - `error`: The error that occurred, if any.
func (*DCDevice) IsSupported ¶
A Boolean value that indicates whether the device supports the DeviceCheck API.
type DCError ¶
type DCError int64
const ( // A failure has occurred, such as the failure to generate a token. DCErrorUnknownSystemFailure DCError = 0 // DeviceCheck is unavailable on this device. DCErrorFeatureUnsupported DCError = 1 // An error code that indicates when your app provides data that isn’t formatted correctly. DCErrorInvalidInput DCError = 2 // An error caused by a failed attempt to use the App Attest key. You receive this error if something goes wrong with generating, retrieving, or using an App Attest cryptographic key, when: - You call “DeviceCheck/DCAppAttestService/attestKey:clientDataHash:completionHandler:“ for a key that’s already been attested. - You call “DeviceCheck/DCAppAttestService/generateAssertion:clientDataHash:completionHandler:“ with an unattested key. - The App Attest service rejects the key. DCErrorInvalidKey DCError = 3 DCErrorServerUnavailable DCError = 4 )
type Dispatch_autorelease_frequency_t ¶
type Dispatch_autorelease_frequency_t uint64
const ( DISPATCH_AUTORELEASE_FREQUENCY_INHERIT Dispatch_autorelease_frequency_t = 0 DISPATCH_AUTORELEASE_FREQUENCY_WORK_ITEM Dispatch_autorelease_frequency_t = 1 DISPATCH_AUTORELEASE_FREQUENCY_NEVER Dispatch_autorelease_frequency_t = 2 )
func (Dispatch_autorelease_frequency_t) String ¶
func (e Dispatch_autorelease_frequency_t) String() string
type Dispatch_block_flags_t ¶
type Dispatch_block_flags_t uint64
const ( DISPATCH_BLOCK_BARRIER Dispatch_block_flags_t = 1 DISPATCH_BLOCK_DETACHED Dispatch_block_flags_t = 2 DISPATCH_BLOCK_ASSIGN_CURRENT Dispatch_block_flags_t = 4 DISPATCH_BLOCK_NO_QOS_CLASS Dispatch_block_flags_t = 8 DISPATCH_BLOCK_INHERIT_QOS_CLASS Dispatch_block_flags_t = 16 DISPATCH_BLOCK_ENFORCE_QOS_CLASS Dispatch_block_flags_t = 32 )
func (Dispatch_block_flags_t) String ¶
func (e Dispatch_block_flags_t) String() string
type Filesec_property_t ¶
type Filesec_property_t int64
const ( FILESEC_OWNER Filesec_property_t = 1 FILESEC_GROUP Filesec_property_t = 2 FILESEC_UUID Filesec_property_t = 3 FILESEC_MODE Filesec_property_t = 4 FILESEC_ACL Filesec_property_t = 5 FILESEC_GRPUUID Filesec_property_t = 6 FILESEC_ACL_RAW Filesec_property_t = 100 FILESEC_ACL_ALLOCSIZE Filesec_property_t = 101 )
func (Filesec_property_t) String ¶
func (e Filesec_property_t) String() string
type Ipc_info_object_type_t ¶
type Ipc_info_object_type_t int64
const ( IPC_OTYPE_NONE Ipc_info_object_type_t = 0 IPC_OTYPE_THREAD_CONTROL Ipc_info_object_type_t = 1 IPC_OTYPE_TASK_CONTROL Ipc_info_object_type_t = 2 IPC_OTYPE_HOST Ipc_info_object_type_t = 3 IPC_OTYPE_HOST_PRIV Ipc_info_object_type_t = 4 IPC_OTYPE_PROCESSOR Ipc_info_object_type_t = 5 IPC_OTYPE_PROCESSOR_SET Ipc_info_object_type_t = 6 IPC_OTYPE_PROCESSOR_SET_NAME Ipc_info_object_type_t = 7 IPC_OTYPE_TIMER Ipc_info_object_type_t = 8 IPC_OTYPE_PORT_SUBST_ONCE Ipc_info_object_type_t = 9 IPC_OTYPE_MIG Ipc_info_object_type_t = 10 IPC_OTYPE_MEMORY_OBJECT Ipc_info_object_type_t = 11 IPC_OTYPE_XMM_PAGER Ipc_info_object_type_t = 12 IPC_OTYPE_XMM_KERNEL Ipc_info_object_type_t = 13 IPC_OTYPE_XMM_REPLY Ipc_info_object_type_t = 14 IPC_OTYPE_UND_REPLY Ipc_info_object_type_t = 15 IPC_OTYPE_HOST_NOTIFY Ipc_info_object_type_t = 16 IPC_OTYPE_HOST_SECURITY Ipc_info_object_type_t = 17 IPC_OTYPE_LEDGER Ipc_info_object_type_t = 18 IPC_OTYPE_MAIN_DEVICE Ipc_info_object_type_t = 19 IPC_OTYPE_TASK_NAME Ipc_info_object_type_t = 20 IPC_OTYPE_SUBSYSTEM Ipc_info_object_type_t = 21 IPC_OTYPE_IO_DONE_QUEUE Ipc_info_object_type_t = 22 IPC_OTYPE_SEMAPHORE Ipc_info_object_type_t = 23 IPC_OTYPE_LOCK_SET Ipc_info_object_type_t = 24 IPC_OTYPE_CLOCK Ipc_info_object_type_t = 25 IPC_OTYPE_CLOCK_CTRL Ipc_info_object_type_t = 26 IPC_OTYPE_IOKIT_IDENT Ipc_info_object_type_t = 27 IPC_OTYPE_NAMED_ENTRY Ipc_info_object_type_t = 28 IPC_OTYPE_IOKIT_CONNECT Ipc_info_object_type_t = 29 IPC_OTYPE_IOKIT_OBJECT Ipc_info_object_type_t = 30 IPC_OTYPE_UPL Ipc_info_object_type_t = 31 IPC_OTYPE_MEM_OBJ_CONTROL Ipc_info_object_type_t = 32 IPC_OTYPE_AU_SESSIONPORT Ipc_info_object_type_t = 33 IPC_OTYPE_FILEPORT Ipc_info_object_type_t = 34 IPC_OTYPE_LABELH Ipc_info_object_type_t = 35 IPC_OTYPE_TASK_RESUME Ipc_info_object_type_t = 36 IPC_OTYPE_VOUCHER Ipc_info_object_type_t = 37 IPC_OTYPE_VOUCHER_ATTR_CONTROL Ipc_info_object_type_t = 38 IPC_OTYPE_WORK_INTERVAL Ipc_info_object_type_t = 39 IPC_OTYPE_UX_HANDLER Ipc_info_object_type_t = 40 IPC_OTYPE_UEXT_OBJECT Ipc_info_object_type_t = 41 IPC_OTYPE_ARCADE_REG Ipc_info_object_type_t = 42 IPC_OTYPE_EVENTLINK Ipc_info_object_type_t = 43 IPC_OTYPE_TASK_INSPECT Ipc_info_object_type_t = 44 IPC_OTYPE_TASK_READ Ipc_info_object_type_t = 45 IPC_OTYPE_THREAD_INSPECT Ipc_info_object_type_t = 46 IPC_OTYPE_THREAD_READ Ipc_info_object_type_t = 47 IPC_OTYPE_SUID_CRED Ipc_info_object_type_t = 48 IPC_OTYPE_HYPERVISOR Ipc_info_object_type_t = 49 IPC_OTYPE_TASK_ID_TOKEN Ipc_info_object_type_t = 50 IPC_OTYPE_TASK_FATAL Ipc_info_object_type_t = 51 IPC_OTYPE_KCDATA Ipc_info_object_type_t = 52 IPC_OTYPE_EXCLAVES_RESOURCE Ipc_info_object_type_t = 53 IPC_OTYPE_THREAD_RESUME Ipc_info_object_type_t = 54 IPC_OTYPE_UNKNOWN Ipc_info_object_type_t = 4294967295 )
func (Ipc_info_object_type_t) String ¶
func (e Ipc_info_object_type_t) String() string
type Launch_data_type_t ¶
type Launch_data_type_t int64
const ( LAUNCH_DATA_DICTIONARY Launch_data_type_t = 1 LAUNCH_DATA_ARRAY Launch_data_type_t = 2 LAUNCH_DATA_FD Launch_data_type_t = 3 LAUNCH_DATA_INTEGER Launch_data_type_t = 4 LAUNCH_DATA_REAL Launch_data_type_t = 5 LAUNCH_DATA_BOOL Launch_data_type_t = 6 LAUNCH_DATA_STRING Launch_data_type_t = 7 LAUNCH_DATA_OPAQUE Launch_data_type_t = 8 LAUNCH_DATA_ERRNO Launch_data_type_t = 9 LAUNCH_DATA_MACHPORT Launch_data_type_t = 10 )
func (Launch_data_type_t) String ¶
func (e Launch_data_type_t) String() string
type MDLabelDomain ¶
type MDLabelDomain int64
@typedef MDLabelDomain @abstract These constants are used to specify a domain to MDLabelCreate().
const ( KMDLabelUserDomain MDLabelDomain = 0 KMDLabelLocalDomain MDLabelDomain = 1 )
func (MDLabelDomain) String ¶
func (e MDLabelDomain) String() string
type MDQueryOptionFlags ¶
type MDQueryOptionFlags int64
const ( KMDQuerySynchronous MDQueryOptionFlags = 1 KMDQueryWantsUpdates MDQueryOptionFlags = 4 KMDQueryAllowFSTranslation MDQueryOptionFlags = 8 )
func (MDQueryOptionFlags) String ¶
func (e MDQueryOptionFlags) String() string
type MDQuerySortOptionFlags ¶
type MDQuerySortOptionFlags int64
@enum MDQuerySortOptionFlags @constant kMDQueryReverseSortOrderFlag Sort the attribute in reverse order.
const (
KMDQueryReverseSortOrderFlag MDQuerySortOptionFlags = 1
)
func (MDQuerySortOptionFlags) String ¶
func (e MDQuerySortOptionFlags) String() string
type Mach_vm_range_flags_t ¶
type Mach_vm_range_flags_t int64
const (
MACH_VM_RANGE_NONE Mach_vm_range_flags_t = 0
)
func (Mach_vm_range_flags_t) String ¶
func (e Mach_vm_range_flags_t) String() string
type Mach_vm_range_flavor_t ¶
type Mach_vm_range_flavor_t int64
const ( MACH_VM_RANGE_FLAVOR_INVALID Mach_vm_range_flavor_t = 0 MACH_VM_RANGE_FLAVOR_V1 Mach_vm_range_flavor_t = 1 )
func (Mach_vm_range_flavor_t) String ¶
func (e Mach_vm_range_flavor_t) String() string
type Mach_vm_range_tag_t ¶
type Mach_vm_range_tag_t int64
const ( MACH_VM_RANGE_DEFAULT Mach_vm_range_tag_t = 0 MACH_VM_RANGE_DATA Mach_vm_range_tag_t = 1 MACH_VM_RANGE_FIXED Mach_vm_range_tag_t = 2 )
func (Mach_vm_range_tag_t) String ¶
func (e Mach_vm_range_tag_t) String() string
type Mpo_flags_t ¶
type Mpo_flags_t int64
const ( MPO_PORT Mpo_flags_t = 0 MPO_SERVICE_PORT Mpo_flags_t = 1024 MPO_CONNECTION_PORT Mpo_flags_t = 2048 MPO_REPLY_PORT Mpo_flags_t = 4096 MPO_WEAK_REPLY_PORT Mpo_flags_t = 16384 MPO_NOTIFICATION_PORT Mpo_flags_t = 17408 MPO_EXCEPTION_PORT Mpo_flags_t = 32768 MPO_CONNECTION_PORT_WITH_PORT_ARRAY Mpo_flags_t = 65536 )
func (Mpo_flags_t) String ¶
func (e Mpo_flags_t) String() string
type Os_clockid_t ¶
type Os_clockid_t int64
const (
OS_CLOCK_MACH_ABSOLUTE_TIME Os_clockid_t = 32
)
func (Os_clockid_t) String ¶
func (e Os_clockid_t) String() string
type Ptrauth_key ¶
type Ptrauth_key int64
const ( Ptrauth_key_none Ptrauth_key = -1 Ptrauth_key_asia Ptrauth_key = 0 Ptrauth_key_asib Ptrauth_key = 1 Ptrauth_key_asda Ptrauth_key = 2 Ptrauth_key_asdb Ptrauth_key = 3 Ptrauth_key_process_independent_code Ptrauth_key = 0 Ptrauth_key_process_dependent_code Ptrauth_key = 1 Ptrauth_key_process_independent_data Ptrauth_key = 2 Ptrauth_key_process_dependent_data Ptrauth_key = 3 Ptrauth_key_return_address Ptrauth_key = 1 Ptrauth_key_frame_pointer Ptrauth_key = 3 Ptrauth_key_function_pointer Ptrauth_key = 0 Ptrauth_key_block_function Ptrauth_key = 0 Ptrauth_key_cxx_vtable_pointer Ptrauth_key = 2 Ptrauth_key_method_list_pointer Ptrauth_key = 2 Ptrauth_key_objc_isa_pointer Ptrauth_key = 2 Ptrauth_key_objc_super_pointer Ptrauth_key = 2 Ptrauth_key_objc_sel_pointer Ptrauth_key = 3 Ptrauth_key_objc_class_ro_pointer Ptrauth_key = 2 Ptrauth_key_block_descriptor_pointer Ptrauth_key = 2 Ptrauth_key_init_fini_pointer Ptrauth_key = 0 )
func (Ptrauth_key) String ¶
func (e Ptrauth_key) String() string
type Qos_class_t ¶
type Qos_class_t uint32
const ( QOS_CLASS_USER_INTERACTIVE Qos_class_t = 33 QOS_CLASS_USER_INITIATED Qos_class_t = 25 QOS_CLASS_DEFAULT Qos_class_t = 21 QOS_CLASS_UTILITY Qos_class_t = 17 QOS_CLASS_BACKGROUND Qos_class_t = 9 QOS_CLASS_UNSPECIFIED Qos_class_t = 0 )
func (Qos_class_t) String ¶
func (e Qos_class_t) String() string
type Virtual_memory_guard_exception_code_t ¶
type Virtual_memory_guard_exception_code_t int64
const ( KGUARD_EXC_DEALLOC_GAP Virtual_memory_guard_exception_code_t = 1 KGUARD_EXC_RECLAIM_COPYIO_FAILURE Virtual_memory_guard_exception_code_t = 2 KGUARD_EXC_RECLAIM_INDEX_FAILURE Virtual_memory_guard_exception_code_t = 4 KGUARD_EXC_RECLAIM_DEALLOCATE_FAILURE Virtual_memory_guard_exception_code_t = 8 KGUARD_EXC_RECLAIM_ACCOUNTING_FAILURE Virtual_memory_guard_exception_code_t = 9 KGUARD_EXC_SEC_IOPL_ON_EXEC_PAGE Virtual_memory_guard_exception_code_t = 10 KGUARD_EXC_SEC_EXEC_ON_IOPL_PAGE Virtual_memory_guard_exception_code_t = 11 KGUARD_EXC_SEC_UPL_WRITE_ON_EXEC_REGION Virtual_memory_guard_exception_code_t = 12 KGUARD_EXC_LARGE_ALLOCATION_TELEMETRY Virtual_memory_guard_exception_code_t = 13 KGUARD_EXC_SEC_ACCESS_FAULT Virtual_memory_guard_exception_code_t = 98 KGUARD_EXC_SEC_ASYNC_ACCESS_FAULT Virtual_memory_guard_exception_code_t = 99 KGUARD_EXC_SEC_COPY_DENIED Virtual_memory_guard_exception_code_t = 100 KGUARD_EXC_SEC_SHARING_DENIED Virtual_memory_guard_exception_code_t = 101 KGUARD_EXC_MTE_SYNC_FAULT Virtual_memory_guard_exception_code_t = 200 KGUARD_EXC_MTE_ASYNC_USER_FAULT Virtual_memory_guard_exception_code_t = 201 KGUARD_EXC_MTE_ASYNC_KERN_FAULT Virtual_memory_guard_exception_code_t = 202 KGUARD_EXC_GUARD_OBJECT_ASYNC_USER_FAULT Virtual_memory_guard_exception_code_t = 203 KGUARD_EXC_GUARD_OBJECT_ASYNC_KERN_FAULT Virtual_memory_guard_exception_code_t = 204 )
func (Virtual_memory_guard_exception_code_t) String ¶
func (e Virtual_memory_guard_exception_code_t) String() string
type Xpc_listener_create_flags_t ¶
type Xpc_listener_create_flags_t int64
const ( XPC_LISTENER_CREATE_NONE Xpc_listener_create_flags_t = 0 XPC_LISTENER_CREATE_INACTIVE Xpc_listener_create_flags_t = 1 XPC_LISTENER_CREATE_FORCE_MACH Xpc_listener_create_flags_t = 2 XPC_LISTENER_CREATE_FORCE_XPCSERVICE Xpc_listener_create_flags_t = 4 )
func (Xpc_listener_create_flags_t) String ¶
func (e Xpc_listener_create_flags_t) String() string
type Xpc_session_create_flags_t ¶
type Xpc_session_create_flags_t int64
const ( XPC_SESSION_CREATE_NONE Xpc_session_create_flags_t = 0 XPC_SESSION_CREATE_INACTIVE Xpc_session_create_flags_t = 1 XPC_SESSION_CREATE_MACH_PRIVILEGED Xpc_session_create_flags_t = 2 )
func (Xpc_session_create_flags_t) String ¶
func (e Xpc_session_create_flags_t) String() string