Move all source files to Sources/ and rename WireGuardKit targets
Signed-off-by: Andrej Mihajlov <and@mullvad.net>
This commit is contained in:
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// SPDX-License-Identifier: MIT
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// Copyright © 2018-2019 WireGuard LLC. All Rights Reserved.
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import Foundation
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import WireGuardKitCTarget
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/// The class describing a private key used by WireGuard.
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public class PrivateKey: _BaseKey {
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/// Derived public key
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public var publicKey: PublicKey {
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return rawValue.withUnsafeBytes { (privateKeyBufferPointer: UnsafeRawBufferPointer) -> PublicKey in
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var publicKeyData = Data(repeating: 0, count: Int(WG_KEY_LEN))
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let privateKeyBytes = privateKeyBufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self)
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publicKeyData.withUnsafeMutableBytes { (publicKeyBufferPointer: UnsafeMutableRawBufferPointer) in
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let publicKeyBytes = publicKeyBufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self)
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curve25519_derive_public_key(publicKeyBytes, privateKeyBytes)
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}
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return PublicKey(rawValue: publicKeyData)!
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}
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}
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/// Initialize new private key
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convenience public init() {
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var privateKeyData = Data(repeating: 0, count: Int(WG_KEY_LEN))
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privateKeyData.withUnsafeMutableBytes { (rawBufferPointer: UnsafeMutableRawBufferPointer) in
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let privateKeyBytes = rawBufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self)
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curve25519_generate_private_key(privateKeyBytes)
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}
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self.init(rawValue: privateKeyData)!
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}
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}
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/// The class describing a public key used by WireGuard.
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public class PublicKey: _BaseKey {}
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/// The class describing a pre-shared key used by WireGuard.
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public class PreSharedKey: _BaseKey {}
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/// The base key implementation. Should not be used directly.
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public class _BaseKey: RawRepresentable, Equatable, Hashable {
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/// Raw key representation
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public let rawValue: Data
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/// Hex encoded representation
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public var hexKey: String {
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return rawValue.withUnsafeBytes { (rawBufferPointer: UnsafeRawBufferPointer) -> String in
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let inBytes = rawBufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self)
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var outBytes = [CChar](repeating: 0, count: Int(WG_KEY_LEN_HEX))
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key_to_hex(&outBytes, inBytes)
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return String(cString: outBytes, encoding: .ascii)!
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}
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}
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/// Base64 encoded representation
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public var base64Key: String {
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return rawValue.withUnsafeBytes { (rawBufferPointer: UnsafeRawBufferPointer) -> String in
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let inBytes = rawBufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self)
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var outBytes = [CChar](repeating: 0, count: Int(WG_KEY_LEN_BASE64))
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key_to_base64(&outBytes, inBytes)
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return String(cString: outBytes, encoding: .ascii)!
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}
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}
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/// Initialize the key with existing raw representation
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required public init?(rawValue: Data) {
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if rawValue.count == WG_KEY_LEN {
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self.rawValue = rawValue
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} else {
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return nil
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}
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}
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/// Initialize the key with hex representation
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public convenience init?(hexKey: String) {
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var bytes = Data(repeating: 0, count: Int(WG_KEY_LEN))
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let success = bytes.withUnsafeMutableBytes { (bufferPointer: UnsafeMutableRawBufferPointer) -> Bool in
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return key_from_hex(bufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self), hexKey)
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}
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if success {
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self.init(rawValue: bytes)
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} else {
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return nil
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}
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}
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/// Initialize the key with base64 representation
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public convenience init?(base64Key: String) {
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var bytes = Data(repeating: 0, count: Int(WG_KEY_LEN))
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let success = bytes.withUnsafeMutableBytes { (bufferPointer: UnsafeMutableRawBufferPointer) -> Bool in
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return key_from_base64(bufferPointer.baseAddress!.assumingMemoryBound(to: UInt8.self), base64Key)
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}
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if success {
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self.init(rawValue: bytes)
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} else {
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return nil
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}
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}
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public static func == (lhs: _BaseKey, rhs: _BaseKey) -> Bool {
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return lhs.rawValue.withUnsafeBytes { (lhsBytes: UnsafeRawBufferPointer) -> Bool in
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return rhs.rawValue.withUnsafeBytes { (rhsBytes: UnsafeRawBufferPointer) -> Bool in
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return key_eq(
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lhsBytes.baseAddress!.assumingMemoryBound(to: UInt8.self),
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rhsBytes.baseAddress!.assumingMemoryBound(to: UInt8.self)
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)
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}
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}
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}
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}
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