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Contents.swift 4.4 KB

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  1. /*:
  2. To whom may be concerned: I offer professional support to all my open source projects.
  3. Contact: [marcin@krzyzanowskim.com](http://krzyzanowskim.com)
  4. */
  5. import CryptoSwift
  6. import Foundation
  7. /*:
  8. # Data types conversinn
  9. */
  10. let data = Data(bytes: [0x01, 0x02, 0x03])
  11. let bytes = data.bytes
  12. let bytesHex = Array<UInt8>(hex: "0x010203")
  13. let hexString = bytesHex.toHexString()
  14. /*:
  15. # Digest
  16. */
  17. data.md5()
  18. data.sha1()
  19. data.sha224()
  20. data.sha256()
  21. data.sha384()
  22. data.sha512()
  23. bytes.sha1()
  24. "123".sha1()
  25. Digest.sha1(bytes)
  26. //: Digest calculated incrementally
  27. do {
  28. var digest = MD5()
  29. let partial1 = try digest.update(withBytes: [0x31, 0x32])
  30. let partial2 = try digest.update(withBytes: [0x33])
  31. let result = try digest.finish()
  32. } catch { }
  33. /*:
  34. # CRC
  35. */
  36. bytes.crc16()
  37. bytes.crc32()
  38. /*:
  39. # HMAC
  40. */
  41. do {
  42. let key:Array<UInt8> = [1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,23,25,26,27,28,29,30,31,32]
  43. try Poly1305(key: key).authenticate(bytes)
  44. try HMAC(key: key, variant: .sha256).authenticate(bytes)
  45. } catch {}
  46. /*:
  47. # PBKDF1, PBKDF2
  48. */
  49. do {
  50. let password: Array<UInt8> = Array("s33krit".utf8)
  51. let salt: Array<UInt8> = Array("nacllcan".utf8)
  52. try PKCS5.PBKDF1(password: password, salt: salt, variant: .sha1, iterations: 4096).calculate()
  53. let value = try PKCS5.PBKDF2(password: password, salt: salt, iterations: 4096, variant: .sha256).calculate()
  54. } catch {}
  55. /*:
  56. # Padding
  57. */
  58. PKCS7().add(to: bytes, blockSize: AES.blockSize)
  59. /*:
  60. # ChaCha20
  61. */
  62. do {
  63. let key:Array<UInt8> = [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32];
  64. let iv:Array<UInt8> = [1, 2, 3, 4, 5, 6, 7, 8]
  65. let message = Array<UInt8>(repeating: 7, count: 10)
  66. let encrypted = try ChaCha20(key: key, iv: iv).encrypt(message)
  67. let decrypted = try ChaCha20(key: key, iv: iv).decrypt(encrypted)
  68. } catch {
  69. print(error)
  70. }
  71. /*:
  72. # AES
  73. ### One-time shot.
  74. Encrypt all data at once.
  75. */
  76. do {
  77. let aes = try AES(key: "passwordpassword", iv: "drowssapdrowssap") // aes128
  78. let ciphertext = try aes.encrypt(Array("Nullam quis risus eget urna mollis ornare vel eu leo.".utf8))
  79. print(ciphertext.toHexString())
  80. } catch {
  81. print(error)
  82. }
  83. /*:
  84. ### Incremental encryption
  85. Instantiate Encryptor for AES encryption (or decryptor for decryption) and process input data partially.
  86. */
  87. do {
  88. var encryptor = try AES(key: "passwordpassword", iv: "drowssapdrowssap").makeEncryptor()
  89. var ciphertext = Array<UInt8>()
  90. // aggregate partial results
  91. ciphertext += try encryptor.update(withBytes: Array("Nullam quis risus ".utf8))
  92. ciphertext += try encryptor.update(withBytes: Array("eget urna mollis ".utf8))
  93. ciphertext += try encryptor.update(withBytes: Array("ornare vel eu leo.".utf8))
  94. // finish at the end
  95. ciphertext += try encryptor.finish()
  96. print(ciphertext.toHexString())
  97. } catch {
  98. print(error)
  99. }
  100. /*:
  101. ### Encrypt stream
  102. */
  103. do {
  104. // write until all is written
  105. func writeTo(stream: OutputStream, bytes: Array<UInt8>) {
  106. var writtenCount = 0
  107. while stream.hasSpaceAvailable && writtenCount < bytes.count {
  108. writtenCount += stream.write(bytes, maxLength: bytes.count)
  109. }
  110. }
  111. let aes = try AES(key: "passwordpassword", iv: "drowssapdrowssap")
  112. var encryptor = aes.makeEncryptor()
  113. // prepare streams
  114. let data = Data(bytes: (0..<100).map { $0 })
  115. let inputStream = InputStream(data: data)
  116. let outputStream = OutputStream(toMemory: ())
  117. inputStream.open()
  118. outputStream.open()
  119. var buffer = Array<UInt8>(repeating: 0, count: 2)
  120. // encrypt input stream data and write encrypted result to output stream
  121. while (inputStream.hasBytesAvailable) {
  122. let readCount = inputStream.read(&buffer, maxLength: buffer.count)
  123. if (readCount > 0) {
  124. try encryptor.update(withBytes: buffer[0..<readCount]) { (bytes) in
  125. writeTo(stream: outputStream, bytes: bytes)
  126. }
  127. }
  128. }
  129. // finalize encryption
  130. try encryptor.finish { (bytes) in
  131. writeTo(stream: outputStream, bytes: bytes)
  132. }
  133. // print result
  134. if let ciphertext = outputStream.property(forKey: Stream.PropertyKey(rawValue: Stream.PropertyKey.dataWrittenToMemoryStreamKey.rawValue)) as? Data {
  135. print("Encrypted stream data: \(ciphertext.toHexString())")
  136. }
  137. } catch {
  138. print(error)
  139. }