base-x-3.0.7.js 3.9 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120
  1. 'use strict';
  2. // base-x encoding / decoding
  3. // based on https://github.com/cryptocoinjs/base-x 3.0.7
  4. // modification: removed Buffer dependency and node.modules entry
  5. // Copyright (c) 2018 base-x contributors
  6. // Copyright (c) 2014-2018 The Bitcoin Core developers (base58.cpp)
  7. // Distributed under the MIT software license, see the accompanying
  8. // file LICENSE or http://www.opensource.org/licenses/mit-license.php.
  9. (function(){
  10. this.baseX = function base (ALPHABET) {
  11. if (ALPHABET.length >= 255) { throw new TypeError('Alphabet too long') }
  12. var BASE_MAP = new Uint8Array(256)
  13. BASE_MAP.fill(255)
  14. for (var i = 0; i < ALPHABET.length; i++) {
  15. var x = ALPHABET.charAt(i)
  16. var xc = x.charCodeAt(0)
  17. if (BASE_MAP[xc] !== 255) { throw new TypeError(x + ' is ambiguous') }
  18. BASE_MAP[xc] = i
  19. }
  20. var BASE = ALPHABET.length
  21. var LEADER = ALPHABET.charAt(0)
  22. var FACTOR = Math.log(BASE) / Math.log(256) // log(BASE) / log(256), rounded up
  23. var iFACTOR = Math.log(256) / Math.log(BASE) // log(256) / log(BASE), rounded up
  24. function encode (source) {
  25. if (source.length === 0) { return '' }
  26. // Skip & count leading zeroes.
  27. var zeroes = 0
  28. var length = 0
  29. var pbegin = 0
  30. var pend = source.length
  31. while (pbegin !== pend && source[pbegin] === 0) {
  32. pbegin++
  33. zeroes++
  34. }
  35. // Allocate enough space in big-endian base58 representation.
  36. var size = ((pend - pbegin) * iFACTOR + 1) >>> 0
  37. var b58 = new Uint8Array(size)
  38. // Process the bytes.
  39. while (pbegin !== pend) {
  40. var carry = source[pbegin]
  41. // Apply "b58 = b58 * 256 + ch".
  42. var i = 0
  43. for (var it1 = size - 1; (carry !== 0 || i < length) && (it1 !== -1); it1--, i++) {
  44. carry += (256 * b58[it1]) >>> 0
  45. b58[it1] = (carry % BASE) >>> 0
  46. carry = (carry / BASE) >>> 0
  47. }
  48. if (carry !== 0) { throw new Error('Non-zero carry') }
  49. length = i
  50. pbegin++
  51. }
  52. // Skip leading zeroes in base58 result.
  53. var it2 = size - length
  54. while (it2 !== size && b58[it2] === 0) {
  55. it2++
  56. }
  57. // Translate the result into a string.
  58. var str = LEADER.repeat(zeroes)
  59. for (; it2 < size; ++it2) { str += ALPHABET.charAt(b58[it2]) }
  60. return str
  61. }
  62. function decodeUnsafe (source) {
  63. if (typeof source !== 'string') { throw new TypeError('Expected String') }
  64. if (source.length === 0) { return '' }
  65. var psz = 0
  66. // Skip leading spaces.
  67. if (source[psz] === ' ') { return }
  68. // Skip and count leading '1's.
  69. var zeroes = 0
  70. var length = 0
  71. while (source[psz] === LEADER) {
  72. zeroes++
  73. psz++
  74. }
  75. // Allocate enough space in big-endian base256 representation.
  76. var size = (((source.length - psz) * FACTOR) + 1) >>> 0 // log(58) / log(256), rounded up.
  77. var b256 = new Uint8Array(size)
  78. // Process the characters.
  79. while (source[psz]) {
  80. // Decode character
  81. var carry = BASE_MAP[source.charCodeAt(psz)]
  82. // Invalid character
  83. if (carry === 255) { return }
  84. var i = 0
  85. for (var it3 = size - 1; (carry !== 0 || i < length) && (it3 !== -1); it3--, i++) {
  86. carry += (BASE * b256[it3]) >>> 0
  87. b256[it3] = (carry % 256) >>> 0
  88. carry = (carry / 256) >>> 0
  89. }
  90. if (carry !== 0) { throw new Error('Non-zero carry') }
  91. length = i
  92. psz++
  93. }
  94. // Skip trailing spaces.
  95. if (source[psz] === ' ') { return }
  96. // Skip leading zeroes in b256.
  97. var it4 = size - length
  98. while (it4 !== size && b256[it4] === 0) {
  99. it4++
  100. }
  101. var vch = []
  102. var j = zeroes
  103. while (it4 !== size) {
  104. vch[j++] = b256[it4++]
  105. }
  106. return vch
  107. }
  108. function decode (string) {
  109. var buffer = decodeUnsafe(string)
  110. if (buffer) { return buffer }
  111. throw new Error('Non-base' + BASE + ' character')
  112. }
  113. return {
  114. encode: encode,
  115. decodeUnsafe: decodeUnsafe,
  116. decode: decode
  117. }
  118. }
  119. }).call(this);