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* Migrate from `UnsafePointer<Void>` to `UnsafeRawPointer`. As proposed in SE-0107: UnsafeRawPointer. `void*` imports as `UnsafeMutableRawPointer`. `const void*` imports as `UnsafeRawPointer`. Occurrences of `UnsafePointer<Void>` are replaced with UnsafeRawPointer. * Migrate overlays from UnsafePointer<Void> to UnsafeRawPointer. This requires explicit memory binding in several places, particularly in NSData and CoreAudio. * Fix a bunch of test cases for Void->Raw migration. * qsort takes IUO values * Bridge `Unsafe[Mutable]RawPointer as `void [const] *`. * Parse #dsohandle as UnsafeMutableRawPointer * Update a bunch of test cases for Void->Raw migration. * Trivial fix for the SceneKit test case. * Add an UnsafeRawPointer self initializer. This is unfortunately necessary for assignment between types imported from C. * Tiny simplification of the initializer.
513 lines
16 KiB
Swift
513 lines
16 KiB
Swift
//===--- ArrayBuffer.swift - Dynamic storage for Swift Array --------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2016 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See http://swift.org/LICENSE.txt for license information
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// See http://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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//
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// This is the class that implements the storage and object management for
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// Swift Array.
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//
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//===----------------------------------------------------------------------===//
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#if _runtime(_ObjC)
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import SwiftShims
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internal typealias _ArrayBridgeStorage
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= _BridgeStorage<_ContiguousArrayStorageBase, _NSArrayCore>
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@_fixed_layout
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public struct _ArrayBuffer<Element> : _ArrayBufferProtocol {
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/// Create an empty buffer.
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public init() {
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_storage = _ArrayBridgeStorage(native: _emptyArrayStorage)
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}
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public init(nsArray: _NSArrayCore) {
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_sanityCheck(_isClassOrObjCExistential(Element.self))
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_storage = _ArrayBridgeStorage(objC: nsArray)
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}
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/// Returns an `_ArrayBuffer<U>` containing the same elements.
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///
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/// - Precondition: The elements actually have dynamic type `U`, and `U`
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/// is a class or `@objc` existential.
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internal func cast<U>(toBufferOf _: U.Type) -> _ArrayBuffer<U> {
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_sanityCheck(_isClassOrObjCExistential(Element.self))
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_sanityCheck(_isClassOrObjCExistential(U.self))
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return _ArrayBuffer<U>(storage: _storage)
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}
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/// The spare bits that are set when a native array needs deferred
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/// element type checking.
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var deferredTypeCheckMask: Int { return 1 }
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/// Returns an `_ArrayBuffer<U>` containing the same elements,
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/// deferring checking each element's `U`-ness until it is accessed.
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///
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/// - Precondition: `U` is a class or `@objc` existential derived from
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/// `Element`.
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internal func downcast<U>(
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toBufferWithDeferredTypeCheckOf _: U.Type
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) -> _ArrayBuffer<U> {
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_sanityCheck(_isClassOrObjCExistential(Element.self))
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_sanityCheck(_isClassOrObjCExistential(U.self))
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// FIXME: can't check that U is derived from Element pending
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// <rdar://problem/19915280> generic metatype casting doesn't work
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// _sanityCheck(U.self is Element.Type)
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return _ArrayBuffer<U>(
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storage: _ArrayBridgeStorage(
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native: _native._storage, bits: deferredTypeCheckMask))
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}
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var needsElementTypeCheck: Bool {
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// NSArray's need an element typecheck when the element type isn't AnyObject
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return !_isNativeTypeChecked && !(AnyObject.self is Element.Type)
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}
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//===--- private --------------------------------------------------------===//
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internal init(storage: _ArrayBridgeStorage) {
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_storage = storage
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}
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internal var _storage: _ArrayBridgeStorage
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}
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extension _ArrayBuffer {
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/// Adopt the storage of `source`.
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public init(_ source: NativeBuffer, shiftedToStartIndex: Int) {
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_sanityCheck(shiftedToStartIndex == 0, "shiftedToStartIndex must be 0")
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_storage = _ArrayBridgeStorage(native: source._storage)
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}
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/// `true`, if the array is native and does not need a deferred type check.
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var arrayPropertyIsNativeTypeChecked: Bool {
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return _isNativeTypeChecked
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}
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/// Returns `true` iff this buffer's storage is uniquely-referenced.
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mutating func isUniquelyReferenced() -> Bool {
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if !_isClassOrObjCExistential(Element.self) {
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return _storage.isUniquelyReferenced_native_noSpareBits()
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}
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return _storage.isUniquelyReferencedNative() && _isNative
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}
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/// Returns `true` iff this buffer's storage is either
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/// uniquely-referenced or pinned.
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mutating func isUniquelyReferencedOrPinned() -> Bool {
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if !_isClassOrObjCExistential(Element.self) {
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return _storage.isUniquelyReferencedOrPinned_native_noSpareBits()
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}
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return _storage.isUniquelyReferencedOrPinnedNative() && _isNative
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}
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/// Convert to an NSArray.
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///
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/// O(1) if the element type is bridged verbatim, O(N) otherwise.
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public func _asCocoaArray() -> _NSArrayCore {
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return _fastPath(_isNative) ? _native._asCocoaArray() : _nonNative
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}
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/// If this buffer is backed by a uniquely-referenced mutable
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/// `_ContiguousArrayBuffer` that can be grown in-place to allow the self
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/// buffer store minimumCapacity elements, returns that buffer.
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/// Otherwise, returns `nil`.
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public mutating func requestUniqueMutableBackingBuffer(minimumCapacity: Int)
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-> NativeBuffer? {
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if _fastPath(isUniquelyReferenced()) {
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let b = _native
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if _fastPath(b.capacity >= minimumCapacity) {
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return b
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}
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}
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return nil
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}
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public mutating func isMutableAndUniquelyReferenced() -> Bool {
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return isUniquelyReferenced()
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}
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public mutating func isMutableAndUniquelyReferencedOrPinned() -> Bool {
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return isUniquelyReferencedOrPinned()
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}
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/// If this buffer is backed by a `_ContiguousArrayBuffer`
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/// containing the same number of elements as `self`, return it.
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/// Otherwise, return `nil`.
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public func requestNativeBuffer() -> NativeBuffer? {
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if !_isClassOrObjCExistential(Element.self) {
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return _native
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}
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return _fastPath(_storage.isNative) ? _native : nil
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}
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// We have two versions of type check: one that takes a range and the other
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// checks one element. The reason for this is that the ARC optimizer does not
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// handle loops atm. and so can get blocked by the presence of a loop (over
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// the range). This loop is not necessary for a single element access.
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@inline(never)
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internal func _typeCheckSlowPath(_ index: Int) {
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if _fastPath(_isNative) {
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let element: AnyObject = cast(toBufferOf: AnyObject.self)._native[index]
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_precondition(
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element is Element,
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"Down-casted Array element failed to match the target type")
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}
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else {
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let ns = _nonNative
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_precondition(
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ns.objectAt(index) is Element,
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"NSArray element failed to match the Swift Array Element type")
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}
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}
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func _typeCheck(_ subRange: Range<Int>) {
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if !_isClassOrObjCExistential(Element.self) {
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return
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}
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if _slowPath(needsElementTypeCheck) {
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// Could be sped up, e.g. by using
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// enumerateObjectsAtIndexes:options:usingBlock: in the
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// non-native case.
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for i in CountableRange(subRange) {
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_typeCheckSlowPath(i)
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}
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}
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}
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/// Copy the elements in `bounds` from this buffer into uninitialized
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/// memory starting at `target`. Return a pointer "past the end" of the
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/// just-initialized memory.
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@discardableResult
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public func _copyContents(
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subRange bounds: Range<Int>,
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initializing target: UnsafeMutablePointer<Element>
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) -> UnsafeMutablePointer<Element> {
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_typeCheck(bounds)
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if _fastPath(_isNative) {
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return _native._copyContents(subRange: bounds, initializing: target)
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}
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let nonNative = _nonNative
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let nsSubRange = SwiftShims._SwiftNSRange(
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location: bounds.lowerBound,
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length: bounds.upperBound - bounds.lowerBound)
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let buffer = UnsafeMutablePointer<AnyObject>(target)
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// Copies the references out of the NSArray without retaining them
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nonNative.getObjects(buffer, range: nsSubRange)
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// Make another pass to retain the copied objects
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var result = target
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for _ in CountableRange(bounds) {
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result.initialize(to: result.pointee)
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result += 1
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}
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return result
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}
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/// Returns a `_SliceBuffer` containing the given sub-range of elements in
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/// `bounds` from this buffer.
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public subscript(bounds: Range<Int>) -> _SliceBuffer<Element> {
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get {
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_typeCheck(bounds)
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if _fastPath(_isNative) {
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return _native[bounds]
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}
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let boundsCount = bounds.count
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if boundsCount == 0 {
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return _SliceBuffer(
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_ContiguousArrayBuffer<Element>(),
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shiftedToStartIndex: bounds.lowerBound)
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}
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// Look for contiguous storage in the NSArray
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let nonNative = self._nonNative
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let cocoa = _CocoaArrayWrapper(nonNative)
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let cocoaStorageBaseAddress =
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cocoa.contiguousStorage(Range(self.indices))
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if let cocoaStorageBaseAddress = cocoaStorageBaseAddress {
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return _SliceBuffer(
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owner: nonNative,
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subscriptBaseAddress: UnsafeMutablePointer(cocoaStorageBaseAddress),
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indices: bounds,
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hasNativeBuffer: false)
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}
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// No contiguous storage found; we must allocate
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let result = _ContiguousArrayBuffer<Element>(
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uninitializedCount: boundsCount, minimumCapacity: 0)
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// Tell Cocoa to copy the objects into our storage
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cocoa.buffer.getObjects(
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UnsafeMutablePointer(result.firstElementAddress),
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range: _SwiftNSRange(location: bounds.lowerBound, length: boundsCount))
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return _SliceBuffer(result, shiftedToStartIndex: bounds.lowerBound)
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}
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set {
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fatalError("not implemented")
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}
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}
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/// A pointer to the first element.
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///
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/// - Precondition: The elements are known to be stored contiguously.
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public var firstElementAddress: UnsafeMutablePointer<Element> {
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_sanityCheck(_isNative, "must be a native buffer")
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return _native.firstElementAddress
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}
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public var firstElementAddressIfContiguous: UnsafeMutablePointer<Element>? {
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return _fastPath(_isNative) ? firstElementAddress : nil
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}
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/// The number of elements the buffer stores.
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public var count: Int {
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@inline(__always)
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get {
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return _fastPath(_isNative) ? _native.count : _nonNative.count
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}
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set {
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_sanityCheck(_isNative, "attempting to update count of Cocoa array")
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_native.count = newValue
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}
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}
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/// Traps if an inout violation is detected or if the buffer is
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/// native and the subscript is out of range.
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///
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/// wasNative == _isNative in the absence of inout violations.
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/// Because the optimizer can hoist the original check it might have
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/// been invalidated by illegal user code.
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internal func _checkInoutAndNativeBounds(_ index: Int, wasNative: Bool) {
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_precondition(
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_isNative == wasNative,
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"inout rules were violated: the array was overwritten")
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if _fastPath(wasNative) {
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_native._checkValidSubscript(index)
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}
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}
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// TODO: gyb this
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/// Traps if an inout violation is detected or if the buffer is
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/// native and typechecked and the subscript is out of range.
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///
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/// wasNativeTypeChecked == _isNativeTypeChecked in the absence of
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/// inout violations. Because the optimizer can hoist the original
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/// check it might have been invalidated by illegal user code.
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internal func _checkInoutAndNativeTypeCheckedBounds(
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_ index: Int, wasNativeTypeChecked: Bool
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) {
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_precondition(
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_isNativeTypeChecked == wasNativeTypeChecked,
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"inout rules were violated: the array was overwritten")
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if _fastPath(wasNativeTypeChecked) {
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_native._checkValidSubscript(index)
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}
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}
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/// The number of elements the buffer can store without reallocation.
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public var capacity: Int {
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return _fastPath(_isNative) ? _native.capacity : _nonNative.count
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}
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@_versioned
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@inline(__always)
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func getElement(_ i: Int, wasNativeTypeChecked: Bool) -> Element {
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if _fastPath(wasNativeTypeChecked) {
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return _nativeTypeChecked[i]
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}
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return unsafeBitCast(_getElementSlowPath(i), to: Element.self)
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}
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@_versioned
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@inline(never)
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func _getElementSlowPath(_ i: Int) -> AnyObject {
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_sanityCheck(
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_isClassOrObjCExistential(Element.self),
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"Only single reference elements can be indexed here.")
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let element: AnyObject
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if _isNative {
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// _checkInoutAndNativeTypeCheckedBounds does no subscript
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// checking for the native un-typechecked case. Therefore we
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// have to do it here.
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_native._checkValidSubscript(i)
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element = cast(toBufferOf: AnyObject.self)._native[i]
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_precondition(
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element is Element,
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"Down-casted Array element failed to match the target type")
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} else {
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// ObjC arrays do their own subscript checking.
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element = _nonNative.objectAt(i)
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_precondition(
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element is Element,
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"NSArray element failed to match the Swift Array Element type")
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}
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return element
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}
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/// Get or set the value of the ith element.
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public subscript(i: Int) -> Element {
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get {
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return getElement(i, wasNativeTypeChecked: _isNativeTypeChecked)
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}
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nonmutating set {
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if _fastPath(_isNative) {
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_native[i] = newValue
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}
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else {
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var refCopy = self
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refCopy.replace(
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subRange: i..<(i + 1),
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with: 1,
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elementsOf: CollectionOfOne(newValue))
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}
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}
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}
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/// Call `body(p)`, where `p` is an `UnsafeBufferPointer` over the
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/// underlying contiguous storage. If no such storage exists, it is
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/// created on-demand.
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public func withUnsafeBufferPointer<R>(
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_ body: @noescape (UnsafeBufferPointer<Element>) throws -> R
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) rethrows -> R {
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if _fastPath(_isNative) {
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defer { _fixLifetime(self) }
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return try body(
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UnsafeBufferPointer(start: firstElementAddress, count: count))
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}
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return try ContiguousArray(self).withUnsafeBufferPointer(body)
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}
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/// Call `body(p)`, where `p` is an `UnsafeMutableBufferPointer`
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/// over the underlying contiguous storage.
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///
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/// - Precondition: Such contiguous storage exists or the buffer is empty.
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public mutating func withUnsafeMutableBufferPointer<R>(
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_ body: @noescape (UnsafeMutableBufferPointer<Element>) throws -> R
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) rethrows -> R {
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_sanityCheck(
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_isNative || count == 0,
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"Array is bridging an opaque NSArray; can't get a pointer to the elements"
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)
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defer { _fixLifetime(self) }
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return try body(UnsafeMutableBufferPointer(
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start: firstElementAddressIfContiguous, count: count))
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}
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/// An object that keeps the elements stored in this buffer alive.
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public var owner: AnyObject {
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return _fastPath(_isNative) ? _native._storage : _nonNative
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}
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/// An object that keeps the elements stored in this buffer alive.
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///
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/// - Precondition: This buffer is backed by a `_ContiguousArrayBuffer`.
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public var nativeOwner: AnyObject {
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_sanityCheck(_isNative, "Expect a native array")
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return _native._storage
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}
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/// A value that identifies the storage used by the buffer. Two
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/// buffers address the same elements when they have the same
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/// identity and count.
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public var identity: UnsafeRawPointer {
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if _isNative {
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return _native.identity
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}
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else {
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return unsafeAddress(of: _nonNative)
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}
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}
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//===--- Collection conformance -------------------------------------===//
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/// The position of the first element in a non-empty collection.
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///
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/// In an empty collection, `startIndex == endIndex`.
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public var startIndex: Int {
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return 0
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}
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/// The collection's "past the end" position.
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///
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/// `endIndex` is not a valid argument to `subscript`, and is always
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/// reachable from `startIndex` by zero or more applications of
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/// `index(after:)`.
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public var endIndex: Int {
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return count
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}
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public typealias Indices = CountableRange<Int>
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//===--- private --------------------------------------------------------===//
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typealias Storage = _ContiguousArrayStorage<Element>
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public typealias NativeBuffer = _ContiguousArrayBuffer<Element>
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@_versioned
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var _isNative: Bool {
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if !_isClassOrObjCExistential(Element.self) {
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return true
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} else {
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return _storage.isNative
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}
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}
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/// `true`, if the array is native and does not need a deferred type check.
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var _isNativeTypeChecked: Bool {
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if !_isClassOrObjCExistential(Element.self) {
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return true
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} else {
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return _storage.isNativeWithClearedSpareBits(deferredTypeCheckMask)
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}
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}
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/// Our native representation.
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///
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/// - Precondition: `_isNative`.
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@_versioned
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var _native: NativeBuffer {
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return NativeBuffer(
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_isClassOrObjCExistential(Element.self)
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? _storage.nativeInstance : _storage.nativeInstance_noSpareBits)
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}
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/// Fast access to the native representation.
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///
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/// - Precondition: `_isNativeTypeChecked`.
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@_versioned
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var _nativeTypeChecked: NativeBuffer {
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return NativeBuffer(_storage.nativeInstance_noSpareBits)
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}
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@_versioned
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var _nonNative: _NSArrayCore {
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@inline(__always)
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get {
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_sanityCheck(_isClassOrObjCExistential(Element.self))
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return _storage.objCInstance
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}
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}
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}
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#endif
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