pub struct PKPassLibrary { /* private fields */ }PKPassLibrary only.Expand description
Implementations§
Source§impl PKPassLibrary
impl PKPassLibrary
pub unsafe fn isPassLibraryAvailable() -> bool
pub unsafe fn requestAutomaticPassPresentationSuppressionWithResponseHandler( response_handler: &DynBlock<dyn Fn(PKAutomaticPassPresentationSuppressionResult)>, ) -> PKSuppressionRequestToken
block2 only.pub unsafe fn endAutomaticPassPresentationSuppressionWithRequestToken( request_token: PKSuppressionRequestToken, )
pub unsafe fn isSuppressingAutomaticPassPresentation() -> bool
pub unsafe fn isPaymentPassActivationAvailable_class() -> bool
pub unsafe fn isPaymentPassActivationAvailable(&self) -> bool
pub unsafe fn isSecureElementPassActivationAvailable(&self) -> bool
pub unsafe fn passes(&self) -> Retained<NSArray<PKPass>>
PKObject and PKPass only.pub unsafe fn passWithPassTypeIdentifier_serialNumber( &self, identifier: &NSString, serial_number: &NSString, ) -> Option<Retained<PKPass>>
PKObject and PKPass only.pub unsafe fn passesWithReaderIdentifier( &self, reader_identifier: &NSString, ) -> Retained<NSSet<PKSecureElementPass>>
PKObject and PKPass and PKSecureElementPass only.pub unsafe fn passesOfType( &self, pass_type: PKPassType, ) -> Retained<NSArray<PKPass>>
PKObject and PKPass and PKPass_Types only.pub unsafe fn remotePaymentPasses(&self) -> Retained<NSArray<PKPaymentPass>>
PKObject and PKPass and PKPaymentPass and PKSecureElementPass only.pub unsafe fn remoteSecureElementPasses( &self, ) -> Retained<NSArray<PKSecureElementPass>>
PKObject and PKPass and PKSecureElementPass only.pub unsafe fn removePass(&self, pass: &PKPass)
PKObject and PKPass only.pub unsafe fn containsPass(&self, pass: &PKPass) -> bool
PKObject and PKPass only.pub unsafe fn replacePassWithPass(&self, pass: &PKPass) -> bool
PKObject and PKPass only.pub unsafe fn addPasses_withCompletionHandler( &self, passes: &NSArray<PKPass>, completion: Option<&DynBlock<dyn Fn(PKPassLibraryAddPassesStatus)>>, )
PKObject and PKPass and block2 only.pub unsafe fn openPaymentSetup(&self)
pub unsafe fn presentPaymentPass(&self, pass: &PKPaymentPass)
PKObject and PKPass and PKPaymentPass and PKSecureElementPass only.pub unsafe fn presentSecureElementPass(&self, pass: &PKSecureElementPass)
PKObject and PKPass and PKSecureElementPass only.pub unsafe fn canAddPaymentPassWithPrimaryAccountIdentifier( &self, primary_account_identifier: &NSString, ) -> bool
pub unsafe fn canAddSecureElementPassWithPrimaryAccountIdentifier( &self, primary_account_identifier: &NSString, ) -> bool
pub unsafe fn canAddFelicaPass(&self) -> bool
pub unsafe fn activatePaymentPass_withActivationData_completion( &self, payment_pass: &PKPaymentPass, activation_data: &NSData, completion: Option<&DynBlock<dyn Fn(Bool, NonNull<NSError>)>>, )
PKObject and PKPass and PKPaymentPass and PKSecureElementPass and block2 only.pub unsafe fn activatePaymentPass_withActivationCode_completion( &self, payment_pass: &PKPaymentPass, activation_code: &NSString, completion: Option<&DynBlock<dyn Fn(Bool, NonNull<NSError>)>>, )
PKObject and PKPass and PKPaymentPass and PKSecureElementPass and block2 only.pub unsafe fn activateSecureElementPass_withActivationData_completion( &self, secure_element_pass: &PKSecureElementPass, activation_data: &NSData, completion: Option<&DynBlock<dyn Fn(Bool, *mut NSError)>>, )
PKObject and PKPass and PKSecureElementPass and block2 only.pub unsafe fn signData_withSecureElementPass_completion( &self, sign_data: &NSData, secure_element_pass: &PKSecureElementPass, completion: &DynBlock<dyn Fn(*mut NSData, *mut NSData, *mut NSError)>, )
PKObject and PKPass and PKSecureElementPass and block2 only.pub unsafe fn encryptedServiceProviderDataForSecureElementPass_completion( &self, secure_element_pass: &PKSecureElementPass, completion: &DynBlock<dyn Fn(*mut NSDictionary, *mut NSError)>, )
PKObject and PKPass and PKSecureElementPass and block2 only.pub unsafe fn serviceProviderDataForSecureElementPass_completion( &self, secure_element_pass: &PKSecureElementPass, completion: &DynBlock<dyn Fn(*mut NSData, *mut NSError)>, )
PKObject and PKPass and PKSecureElementPass and block2 only.pub unsafe fn requestAuthorizationForCapability_completion( &self, capability: PKPassLibraryCapability, completion: &DynBlock<dyn Fn(PKPassLibraryAuthorizationStatus)>, )
block2 only.Methods from Deref<Target = NSObject>§
Sourcepub fn doesNotRecognizeSelector(&self, sel: Sel) -> !
pub fn doesNotRecognizeSelector(&self, sel: Sel) -> !
Handle messages the object doesn’t recognize.
See Apple’s documentation for details.
Methods from Deref<Target = AnyObject>§
Sourcepub fn class(&self) -> &'static AnyClass
pub fn class(&self) -> &'static AnyClass
Dynamically find the class of this object.
§Panics
May panic if the object is invalid (which may be the case for objects
returned from unavailable init/new methods).
§Example
Check that an instance of NSObject has the precise class NSObject.
use objc2::ClassType;
use objc2::runtime::NSObject;
let obj = NSObject::new();
assert_eq!(obj.class(), NSObject::class());Sourcepub unsafe fn get_ivar<T>(&self, name: &str) -> &Twhere
T: Encode,
👎Deprecated: this is difficult to use correctly, use Ivar::load instead.
pub unsafe fn get_ivar<T>(&self, name: &str) -> &Twhere
T: Encode,
Ivar::load instead.Use Ivar::load instead.
§Safety
The object must have an instance variable with the given name, and it
must be of type T.
See Ivar::load_ptr for details surrounding this.
Sourcepub fn downcast_ref<T>(&self) -> Option<&T>where
T: DowncastTarget,
pub fn downcast_ref<T>(&self) -> Option<&T>where
T: DowncastTarget,
Attempt to downcast the object to a class of type T.
This is the reference-variant. Use Retained::downcast if you want
to convert a retained object to another type.
§Mutable classes
Some classes have immutable and mutable variants, such as NSString
and NSMutableString.
When some Objective-C API signature says it gives you an immutable class, it generally expects you to not mutate that, even though it may technically be mutable “under the hood”.
So using this method to convert a NSString to a NSMutableString,
while not unsound, is generally frowned upon unless you created the
string yourself, or the API explicitly documents the string to be
mutable.
See Apple’s documentation on mutability and on
isKindOfClass: for more details.
§Generic classes
Objective-C generics are called “lightweight generics”, and that’s because they aren’t exposed in the runtime. This makes it impossible to safely downcast to generic collections, so this is disallowed by this method.
You can, however, safely downcast to generic collections where all the
type-parameters are AnyObject.
§Panics
This works internally by calling isKindOfClass:. That means that the
object must have the instance method of that name, and an exception
will be thrown (if CoreFoundation is linked) or the process will abort
if that is not the case. In the vast majority of cases, you don’t need
to worry about this, since both root objects NSObject and
NSProxy implement this method.
§Examples
Cast an NSString back and forth from NSObject.
use objc2::rc::Retained;
use objc2_foundation::{NSObject, NSString};
let obj: Retained<NSObject> = NSString::new().into_super();
let string = obj.downcast_ref::<NSString>().unwrap();
// Or with `downcast`, if we do not need the object afterwards
let string = obj.downcast::<NSString>().unwrap();Try (and fail) to cast an NSObject to an NSString.
use objc2_foundation::{NSObject, NSString};
let obj = NSObject::new();
assert!(obj.downcast_ref::<NSString>().is_none());Try to cast to an array of strings.
use objc2_foundation::{NSArray, NSObject, NSString};
let arr = NSArray::from_retained_slice(&[NSObject::new()]);
// This is invalid and doesn't type check.
let arr = arr.downcast_ref::<NSArray<NSString>>();This fails to compile, since it would require enumerating over the array to ensure that each element is of the desired type, which is a performance pitfall.
Downcast when processing each element instead.
use objc2_foundation::{NSArray, NSObject, NSString};
let arr = NSArray::from_retained_slice(&[NSObject::new()]);
for elem in arr {
if let Some(data) = elem.downcast_ref::<NSString>() {
// handle `data`
}
}Trait Implementations§
Source§impl AsRef<AnyObject> for PKPassLibrary
impl AsRef<AnyObject> for PKPassLibrary
Source§impl AsRef<NSObject> for PKPassLibrary
impl AsRef<NSObject> for PKPassLibrary
Source§impl AsRef<PKPassLibrary> for PKPassLibrary
impl AsRef<PKPassLibrary> for PKPassLibrary
Source§impl Borrow<AnyObject> for PKPassLibrary
impl Borrow<AnyObject> for PKPassLibrary
Source§impl Borrow<NSObject> for PKPassLibrary
impl Borrow<NSObject> for PKPassLibrary
Source§impl ClassType for PKPassLibrary
impl ClassType for PKPassLibrary
Source§const NAME: &'static str = "PKPassLibrary"
const NAME: &'static str = "PKPassLibrary"
Source§type ThreadKind = <<PKPassLibrary as ClassType>::Super as ClassType>::ThreadKind
type ThreadKind = <<PKPassLibrary as ClassType>::Super as ClassType>::ThreadKind
Source§impl Debug for PKPassLibrary
impl Debug for PKPassLibrary
Source§impl Deref for PKPassLibrary
impl Deref for PKPassLibrary
Source§impl Hash for PKPassLibrary
impl Hash for PKPassLibrary
Source§impl Message for PKPassLibrary
impl Message for PKPassLibrary
Source§impl NSObjectProtocol for PKPassLibrary
impl NSObjectProtocol for PKPassLibrary
Source§fn isEqual(&self, other: Option<&AnyObject>) -> bool
fn isEqual(&self, other: Option<&AnyObject>) -> bool
Source§fn hash(&self) -> usize
fn hash(&self) -> usize
Source§fn isKindOfClass(&self, cls: &AnyClass) -> bool
fn isKindOfClass(&self, cls: &AnyClass) -> bool
Source§fn is_kind_of<T>(&self) -> bool
fn is_kind_of<T>(&self) -> bool
isKindOfClass directly, or cast your objects with AnyObject::downcast_ref