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...unless the type has less accessibility than the protocol, in which case they must be as accessible as the type. This restriction applies even with access control checking disabled, but shouldn't affect any decls not already marked with access control modifiers. Swift SVN r19382
459 lines
13 KiB
Swift
459 lines
13 KiB
Swift
//===----------------------------------------------------------------------===//
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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 - 2015 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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@public struct String {
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@public init() {
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core = _StringCore()
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}
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@public init(_ _core: _StringCore) {
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self.core = _core
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}
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@public var core: _StringCore
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}
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extension String {
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@public static func _fromWellFormedCodeUnitSequence<
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Encoding: UnicodeCodec, Input: Collection
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where Input.GeneratorType.Element == Encoding.CodeUnit
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>(
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encoding: Encoding.Type, input: Input
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) -> String {
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return String._fromCodeUnitSequence(encoding, input: input)!
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}
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@public static func _fromCodeUnitSequence<
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Encoding: UnicodeCodec, Input: Collection
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where Input.GeneratorType.Element == Encoding.CodeUnit
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>(
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encoding: Encoding.Type, input: Input
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) -> String? {
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let (stringBufferOptional, _) =
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_StringBuffer.fromCodeUnits(encoding, input: input,
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repairIllFormedSequences: false)
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if let stringBuffer = stringBufferOptional {
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return String(stringBuffer)
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} else {
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return .None
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}
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}
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@public static func _fromCodeUnitSequenceWithRepair<
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Encoding: UnicodeCodec, Input: Collection
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where Input.GeneratorType.Element == Encoding.CodeUnit
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>(
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encoding: Encoding.Type, input: Input
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) -> (String, hadError: Bool) {
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let (stringBuffer, hadError) =
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_StringBuffer.fromCodeUnits(encoding, input: input,
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repairIllFormedSequences: true)
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return (String(stringBuffer!), hadError)
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}
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}
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extension String : _BuiltinExtendedGraphemeClusterLiteralConvertible {
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@public
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static func _convertFromBuiltinExtendedGraphemeClusterLiteral(
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start: Builtin.RawPointer,
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byteSize: Builtin.Word,
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isASCII: Builtin.Int1) -> String {
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return String._fromWellFormedCodeUnitSequence(
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UTF8.self,
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input: UnsafeArray(
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start: UnsafePointer<UTF8.CodeUnit>(start),
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length: Int(byteSize)))
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}
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}
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extension String : ExtendedGraphemeClusterLiteralConvertible {
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@public static func convertFromExtendedGraphemeClusterLiteral(
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value: String
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) -> String {
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return value
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}
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}
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extension String : _BuiltinUTF16StringLiteralConvertible {
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@public
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static func _convertFromBuiltinUTF16StringLiteral(
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start: Builtin.RawPointer, numberOfCodeUnits: Builtin.Word
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) -> String {
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return String(
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_StringCore(
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baseAddress: COpaquePointer(start),
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count: Int(numberOfCodeUnits),
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elementShift: 1,
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hasCocoaBuffer: false,
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owner: nil))
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}
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}
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extension String : _BuiltinStringLiteralConvertible {
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@public
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static func _convertFromBuiltinStringLiteral(
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start: Builtin.RawPointer,
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byteSize: Builtin.Word,
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isASCII: Builtin.Int1) -> String {
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if isASCII {
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return String(
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_StringCore(
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baseAddress: COpaquePointer(start),
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count: Int(byteSize),
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elementShift: 0,
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hasCocoaBuffer: false,
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owner: nil))
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}
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else {
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return String._fromWellFormedCodeUnitSequence(
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UTF8.self,
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input: UnsafeArray(
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start: UnsafePointer<UTF8.CodeUnit>(start),
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length: Int(byteSize)))
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}
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}
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}
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extension String : StringLiteralConvertible {
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@public static func convertFromStringLiteral(value: String) -> String {
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return value
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}
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}
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extension String : DebugPrintable {
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@public var debugDescription: String {
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var result = "\""
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for us in self.unicodeScalars {
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result += us.escape(asASCII: false)
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}
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result += "\""
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return result
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}
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}
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extension String {
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/// Return the number of code units occupied by this string
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/// in the given encoding.
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func _encodedLength<Encoding: UnicodeCodec>(encoding: Encoding.Type) -> Int {
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var codeUnitCount = 0
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self._encode(
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encoding, output: SinkOf<Encoding.CodeUnit>({ _ in ++codeUnitCount;() }))
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return codeUnitCount
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}
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// FIXME: this function does not handle the case when a wrapped NSString
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// contains unpaired surrogates. Fix this before exposing this function as a
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// public API. But it is unclear if it is valid to have such an NSString in
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// the first place. If it is not, we should not be crashing in an obscure
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// way -- add a test for that.
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// Related: <rdar://problem/17340917> Please document how NSString interacts
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// with unpaired surrogates
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func _encode<
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Encoding: UnicodeCodec,
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Output: Sink
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where Encoding.CodeUnit == Output.Element
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>(encoding: Encoding.Type, output: Output)
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{
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return core.encode(encoding, output: output)
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}
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}
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extension String: Equatable {
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}
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@public func ==(lhs: String, rhs: String) -> Bool {
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// FIXME: Compares UnicodeScalars, but should eventually do proper
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// Unicode string comparison. This is above the level of the
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// standard equal algorithm because even the largest units
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// (Characters/a.k.a. grapheme clusters) don't have a 1-for-1
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// correspondence. For example, "SS" == "ß" should be true.
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//
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// NOTE: if this algorithm is changed, consider updating equality comparison
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// of Character.
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return Swift.equal(lhs.unicodeScalars, rhs.unicodeScalars)
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}
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@public func <(lhs: String, rhs: String) -> Bool {
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// FIXME: Does lexicographical ordering on component UnicodeScalars,
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// but should eventually do a proper unicode String collation. See
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// the comment on == for more information.
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return lexicographicalCompare(lhs.unicodeScalars, rhs.unicodeScalars)
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}
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// Support for copy-on-write
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extension String {
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mutating func _append(rhs: String) {
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core.append(rhs.core)
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}
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mutating func _append(x: UnicodeScalar) {
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core.append(x)
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}
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var _utf16Count: Int {
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return core.count
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}
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init(_ storage: _StringBuffer) {
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core = _StringCore(storage)
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}
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}
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extension String : Hashable {
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@public var hashValue: Int {
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var r : Int = 5381
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_encode(
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UTF8.self,
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output: SinkOf<UTF8.CodeUnit> ({
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r = ((r << 5) &+ r) &+ Int($0)
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}))
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return r
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}
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}
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extension String : StringInterpolationConvertible {
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@public
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static func convertFromStringInterpolation(strings: String...) -> String {
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var result = String()
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for str in strings {
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result += str
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}
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return result
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}
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@public
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static func convertFromStringInterpolationSegment<T>(expr: T) -> String {
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return toString(expr)
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}
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}
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@public func +(var lhs: String, rhs: String) -> String {
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if (lhs.isEmpty) {
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return rhs
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}
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lhs._append(rhs)
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return lhs
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}
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@public func +(var lhs: String, rhs: Character) -> String {
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lhs._append(String(rhs))
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return lhs
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}
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@public func +(lhs: Character, rhs: String) -> String {
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var result = String(lhs)
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result._append(rhs)
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return result
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}
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@public func +(lhs: Character, rhs: Character) -> String {
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var result = String(lhs)
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result += String(rhs)
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return result
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}
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// String append
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@assignment @public func += (inout lhs: String, rhs: String) {
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if (lhs.isEmpty) {
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lhs = rhs
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}
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else {
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lhs._append(rhs)
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}
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}
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@assignment @public func += (inout lhs: String, rhs: Character) {
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lhs += String(rhs)
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}
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// Comparison operators
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// FIXME: Compare Characters, not code units
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extension String : Comparable {
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}
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extension String {
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/// Low-level construction interface used by introspection
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/// implementation in the runtime library. Constructs a String in
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/// resultStorage containing the given UTF8.
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@asmname("swift_stringFromUTF8InRawMemory")
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static func _fromUTF8InRawMemory(
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resultStorage: UnsafePointer<String>,
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start: UnsafePointer<UTF8.CodeUnit>, utf8Count: Int
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) {
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resultStorage.initialize(
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String._fromWellFormedCodeUnitSequence(UTF8.self,
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input: UnsafeArray(start: start, length: utf8Count)))
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}
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}
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/// String is a Collection of Character
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extension String : Collection {
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// An adapter over UnicodeScalarView that advances by whole Character
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@public struct Index : BidirectionalIndex {
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@public init(_ _base: UnicodeScalarView.IndexType) {
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self._base = _base
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self._lengthUTF16 = Index._measureExtendedGraphemeClusterForward(_base)
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}
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init(_ _base: UnicodeScalarView.IndexType, _ _lengthUTF16: Int) {
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self._base = _base
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self._lengthUTF16 = _lengthUTF16
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}
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@public func successor() -> Index {
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_precondition(_base != _base._viewEndIndex,
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"can not advance endIndex forward")
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return Index(_endBase)
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}
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@public func predecessor() -> Index {
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_precondition(_base != _base._viewStartIndex,
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"can not advance startIndex backwards")
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let predecessorLengthUTF16 =
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Index._measureExtendedGraphemeClusterBackward(_base)
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return Index(UnicodeScalarView.IndexType(
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_utf16Index - predecessorLengthUTF16, _base._core))
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}
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let _base: UnicodeScalarView.IndexType
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/// The length of this extended grapheme cluster in UTF-16 code units.
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let _lengthUTF16: Int
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/// The integer offset of this index in UTF-16 code units.
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@public var _utf16Index: Int {
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return _base._position
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}
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/// The one past end index for this extended grapheme cluster in Unicode
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/// scalars.
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var _endBase: UnicodeScalarView.IndexType {
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return UnicodeScalarView.IndexType(
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_utf16Index + _lengthUTF16, _base._core)
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}
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/// Returns the length of the first extended grapheme cluster in UTF-16
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/// code units.
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@private static func _measureExtendedGraphemeClusterForward(
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var start: UnicodeScalarView.IndexType
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) -> Int {
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let end = start._viewEndIndex
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if start == end {
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return 0
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}
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let startIndexUTF16 = start._position
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let unicodeScalars = UnicodeScalarView(start._core)
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let graphemeClusterBreakProperty =
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_UnicodeGraphemeClusterBreakPropertyTrie()
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let segmenter = _UnicodeExtendedGraphemeClusterSegmenter()
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var gcb0 = graphemeClusterBreakProperty.getPropertyRawValue(
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unicodeScalars[start].value)
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++start
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for ; start != end; ++start {
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if segmenter.isBoundaryAfter(gcb0) {
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break
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}
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let gcb1 = graphemeClusterBreakProperty.getPropertyRawValue(
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unicodeScalars[start].value)
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if segmenter.isBoundary(gcb0, gcb1) {
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break
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}
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gcb0 = gcb1
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}
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return start._position - startIndexUTF16
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}
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/// Returns the length of the previous extended grapheme cluster in UTF-16
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/// code units.
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@private static func _measureExtendedGraphemeClusterBackward(
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end: UnicodeScalarView.IndexType
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) -> Int {
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var start = end._viewStartIndex
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if start == end {
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return 0
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}
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let endIndexUTF16 = end._position
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let unicodeScalars = UnicodeScalarView(start._core)
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let graphemeClusterBreakProperty =
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_UnicodeGraphemeClusterBreakPropertyTrie()
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let segmenter = _UnicodeExtendedGraphemeClusterSegmenter()
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var graphemeClusterStart = end
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--graphemeClusterStart
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var gcb0 = graphemeClusterBreakProperty.getPropertyRawValue(
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unicodeScalars[graphemeClusterStart].value)
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var graphemeClusterStartUTF16 = graphemeClusterStart._position
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while graphemeClusterStart != start {
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--graphemeClusterStart
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let gcb1 = graphemeClusterBreakProperty.getPropertyRawValue(
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unicodeScalars[graphemeClusterStart].value)
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if segmenter.isBoundary(gcb1, gcb0) {
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break
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}
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gcb0 = gcb1
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graphemeClusterStartUTF16 = graphemeClusterStart._position
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}
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return endIndexUTF16 - graphemeClusterStartUTF16
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}
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}
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@public var startIndex: Index {
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return Index(unicodeScalars.startIndex)
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}
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@public var endIndex: Index {
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return Index(unicodeScalars.endIndex)
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}
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@public subscript(i: Index) -> Character {
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return Character(unicodeScalars[i._base..<i._endBase])
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}
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@public func generate() -> IndexingGenerator<String> {
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return IndexingGenerator(self)
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}
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}
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@public func == (lhs: String.Index, rhs: String.Index) -> Bool {
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return lhs._base == rhs._base
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}
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extension String : Sliceable {
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@public subscript(subRange: Range<Index>) -> String {
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return String(
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unicodeScalars[subRange.startIndex._base..<subRange.endIndex._base]._core)
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}
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}
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// Algorithms
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extension String {
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@public func join<
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S : Sequence where S.GeneratorType.Element == String
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>(elements: S) -> String{
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return Swift.join(self, elements)
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}
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}
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