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25 Commits
Author SHA1 Message Date
Mathias Buus 07e1bc4ed6 0.5.0 2017-06-28 11:17:18 +02:00
Mathias Buus 6561ff99f1 use xsalsa20 and support crypto_stream_instance 2017-06-28 11:14:00 +02:00
Emil Bay 0f249a7e8f Run tests with browser-run 2017-06-19 22:39:11 +02:00
Emil Bay fa6f2a836c 0.4.0 2017-06-19 22:36:13 +02:00
Emil Bay 2bae0d19af Use independent randombytes_buf 2017-06-19 22:34:38 +02:00
Emil Bay 75bad77847 Upgrade sodium-test 2017-06-19 22:34:37 +02:00
Emil Bay 49feb73134 Move out randombytes_buf 2017-06-19 22:34:12 +02:00
Julian Gruber 642a68c2a1 Add browser support (#1)
* add browser test target
* add browser-manual target
2017-06-19 21:44:32 +02:00
Mathias Buus abedfa6362 0.3.1 2017-06-12 11:01:30 +02:00
Mathias Buus de8639f558 use siphash24 2017-06-12 11:01:21 +02:00
Mathias Buus 33befeb87a cleanup newlines 2017-06-12 10:31:43 +02:00
Mathias Buus a22454f86f simply wasm loaded logic 2017-06-12 10:29:16 +02:00
Mathias Buus d546f63e11 0.3.0 2017-06-12 10:19:02 +02:00
Mathias Buus 78f7c7111c add wasm info 2017-06-12 10:15:52 +02:00
Mathias Buus 51875f2288 remove unused assert 2017-06-12 10:10:01 +02:00
Mathias Buus 95732bdd4f add crypto_shorthash (#4) 2017-06-12 10:05:49 +02:00
Emil Bay 1967024766 Update to new blake2b 2017-06-11 20:23:06 +02:00
Emil Bay 776ffea91c Fix keygen overflow bug 2017-06-11 10:44:02 +02:00
Emil Bay 56913733b9 0.2.0 2017-06-07 22:39:24 +02:00
Emil Bay 94e3891f67 Added crypto_kdf 2017-06-07 22:38:40 +02:00
Emil Bay afa3b5fc04 0.1.0 2017-06-06 21:05:48 +02:00
Emil Bay 226ecd8778 Add memzero 2017-06-06 21:04:50 +02:00
Emil Bay 5397910bbb Add blake2b for generichash 2017-06-06 21:04:36 +02:00
Emil Bay f639c1ce6f Fix sodium-test require 2017-04-13 17:59:36 +02:00
Emil Bay 92bea299c6 Add sodium-test script 2017-04-11 22:19:34 +02:00
9 changed files with 221 additions and 508 deletions
+34
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@@ -0,0 +1,34 @@
var blake2b = require('blake2b')
module.exports.crypto_generichash_PRIMITIVE = 'blake2b'
module.exports.crypto_generichash_BYTES_MIN = blake2b.BYTES_MIN
module.exports.crypto_generichash_BYTES_MAX = blake2b.BYTES_MAX
module.exports.crypto_generichash_BYTES = blake2b.BYTES
module.exports.crypto_generichash_KEYBYTES_MIN = blake2b.KEYBYTES_MIN
module.exports.crypto_generichash_KEYBYTES_MAX = blake2b.KEYBYTES_MAX
module.exports.crypto_generichash_KEYBYTES = blake2b.KEYBYTES
module.exports.crypto_generichash_WASM_SUPPORTED = blake2b.WASM_SUPPORTED
module.exports.crypto_generichash_WASM_LOADED = false
module.exports.crypto_generichash = function (output, input, key) {
blake2b(output.length, key).update(input).final(output)
}
module.exports.crypto_generichash_ready = blake2b.ready
module.exports.crypto_generichash_batch = function (output, inputArray, key) {
var ctx = blake2b(output.length, key)
for (var i = 0; i < inputArray.length; i++) {
ctx.update(inputArray[i])
}
ctx.final(output)
}
module.exports.crypto_generichash_instance = function (key, outlen) {
if (outlen == null) outlen = module.exports.crypto_generichash_BYTES
return blake2b(outlen, key)
}
blake2b.ready(function (err) {
module.exports.crypto_generichash_WASM_LOADED = blake2b.WASM_LOADED
})
+39
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@@ -0,0 +1,39 @@
var assert = require('nanoassert')
var randombytes_buf = require('./randombytes').randombytes_buf
var blake2b = require('blake2b')
module.exports.crypto_kdf_PRIMITIVE = 'blake2b'
module.exports.crypto_kdf_BYTES_MIN = 16
module.exports.crypto_kdf_BYTES_MAX = 64
module.exports.crypto_kdf_CONTEXTBYTES = 8
module.exports.crypto_kdf_KEYBYTES = 64
function STORE64_LE(dest, int) {
var mul = 1
var i = 0
dest[0] = int & 0xFF
while (++i < 8 && (mul *= 0x100)) {
dest[i] = (int / mul) & 0xFF
}
}
module.exports.crypto_kdf_derive_from_key = function crypto_kdf_derive_from_key (subkey, subkey_id, ctx, key) {
assert(subkey.length >= module.exports.crypto_kdf_BYTES_MIN, 'subkey must be at least crypto_kdf_BYTES_MIN')
assert(subkey_id >= 0 && subkey_id <= 0x1fffffffffffff, 'subkey_id must be safe integer')
assert(ctx.length >= module.exports.crypto_kdf_CONTEXTBYTES, 'context must be at least crypto_kdf_CONTEXTBYTES')
var ctx_padded = new Uint8Array(blake2b.PERSONALBYTES)
var salt = new Uint8Array(blake2b.SALTBYTES)
ctx_padded.set(ctx, 0, module.exports.crypto_kdf_CONTEXTBYTES)
STORE64_LE(salt, subkey_id)
var outlen = Math.min(subkey.length, module.exports.crypto_kdf_BYTES_MAX)
blake2b(outlen, key, salt, ctx_padded, true)
.final(subkey)
}
module.exports.crypto_kdf_keygen = function crypto_kdf_keygen (out) {
assert(out.length >= module.exports.crypto_kdf_KEYBYTES, 'out.length must be crypto_kdf_KEYBYTES')
randombytes_buf(out.subarray(0, module.exports.crypto_kdf_KEYBYTES))
}
+17
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@@ -0,0 +1,17 @@
var siphash = require('siphash24')
exports.crypto_shorthash_PRIMITIVE = 'siphash24'
exports.crypto_shorthash_BYTES = siphash.BYTES
exports.crypto_shorthash_KEYBYTES = siphash.KEYBYTES
exports.crypto_shorthash_WASM_SUPPORTED = siphash.WASM_SUPPORTED
exports.crypto_shorthash_WASM_LOADED = siphash.WASM_LOADED
exports.crypto_shorthash_ready = siphash.ready
exports.crypto_shorthash = shorthash
siphash.ready(function () {
exports.crypto_shorthash_WASM_LOADED = siphash.WASM_LOADED
})
function shorthash (out, data, key, noAssert) {
siphash(data, key, out, noAssert)
}
+33
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@@ -0,0 +1,33 @@
var xsalsa20 = require('xsalsa20')
exports.crypto_stream_KEYBYTES = 32
exports.crypto_stream_NONCEBYTES = 24
exports.crypto_stream_PRIMITIVE = 'xsalsa20'
exports.crypto_stream = function (out, nonce, key) {
out.fill(0)
exports.crypto_stream_xor(out, out, nonce, key)
}
exports.crypto_stream_xor = function (out, inp, nonce, key) {
var xor = xsalsa20(nonce, key)
xor.update(inp, out)
xor.final()
}
exports.crypto_stream_xor_instance = function (nonce, key) {
return new XOR(nonce, key)
}
function XOR (nonce, key) {
this._instance = xsalsa20(nonce, key)
}
XOR.prototype.update = function (out, inp) {
this._instance.update(inp, out)
}
XOR.prototype.final = function () {
this._instance.finalize()
this._instance = null
}
+2
View File
@@ -18,3 +18,5 @@ var plainText = new Buffer(cipher.length - sodium.crypto_secretbox_MACBYTES)
sodium.crypto_secretbox_open_easy(plainText, cipher, nonce, key)
console.log('Plaintext:', plainText.toString())
if (typeof window !== 'undefined') window.close()
+38 -505
View File
@@ -3,6 +3,7 @@
// Based on https://github.com/dchest/tweetnacl-js/blob/6dcbcaf5f5cbfd313f2dcfe763db35c828c8ff5b/nacl-fast.js.
var sodium = module.exports
var cs = require('./crypto_stream')
// Ported in 2014 by Dmitry Chestnykh and Devi Mandiri.
// Public domain.
@@ -16,8 +17,8 @@ var gf = function(init) {
return r;
};
// Pluggable, initialized in high-level API below.
var randombytes = function(/* x, n */) { throw new Error('no PRNG'); };
// also forwarded at the bottom but randombytes is non-enumerable
var randombytes = require('./randombytes').randombytes
var _0 = new Uint8Array(16);
var _9 = new Uint8Array(32); _9[0] = 9;
@@ -56,412 +57,6 @@ function crypto_verify_32(x, xi, y, yi) {
return vn(x,xi,y,yi,32);
}
function core_salsa20(o, p, k, c) {
var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24,
j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24,
j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24,
j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24,
j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24,
j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24,
j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24,
j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24,
j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24,
j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24,
j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24,
j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24,
j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24,
j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24,
j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24,
j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24;
var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7,
x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14,
x15 = j15, u;
for (var i = 0; i < 20; i += 2) {
u = x0 + x12 | 0;
x4 ^= u<<7 | u>>>(32-7);
u = x4 + x0 | 0;
x8 ^= u<<9 | u>>>(32-9);
u = x8 + x4 | 0;
x12 ^= u<<13 | u>>>(32-13);
u = x12 + x8 | 0;
x0 ^= u<<18 | u>>>(32-18);
u = x5 + x1 | 0;
x9 ^= u<<7 | u>>>(32-7);
u = x9 + x5 | 0;
x13 ^= u<<9 | u>>>(32-9);
u = x13 + x9 | 0;
x1 ^= u<<13 | u>>>(32-13);
u = x1 + x13 | 0;
x5 ^= u<<18 | u>>>(32-18);
u = x10 + x6 | 0;
x14 ^= u<<7 | u>>>(32-7);
u = x14 + x10 | 0;
x2 ^= u<<9 | u>>>(32-9);
u = x2 + x14 | 0;
x6 ^= u<<13 | u>>>(32-13);
u = x6 + x2 | 0;
x10 ^= u<<18 | u>>>(32-18);
u = x15 + x11 | 0;
x3 ^= u<<7 | u>>>(32-7);
u = x3 + x15 | 0;
x7 ^= u<<9 | u>>>(32-9);
u = x7 + x3 | 0;
x11 ^= u<<13 | u>>>(32-13);
u = x11 + x7 | 0;
x15 ^= u<<18 | u>>>(32-18);
u = x0 + x3 | 0;
x1 ^= u<<7 | u>>>(32-7);
u = x1 + x0 | 0;
x2 ^= u<<9 | u>>>(32-9);
u = x2 + x1 | 0;
x3 ^= u<<13 | u>>>(32-13);
u = x3 + x2 | 0;
x0 ^= u<<18 | u>>>(32-18);
u = x5 + x4 | 0;
x6 ^= u<<7 | u>>>(32-7);
u = x6 + x5 | 0;
x7 ^= u<<9 | u>>>(32-9);
u = x7 + x6 | 0;
x4 ^= u<<13 | u>>>(32-13);
u = x4 + x7 | 0;
x5 ^= u<<18 | u>>>(32-18);
u = x10 + x9 | 0;
x11 ^= u<<7 | u>>>(32-7);
u = x11 + x10 | 0;
x8 ^= u<<9 | u>>>(32-9);
u = x8 + x11 | 0;
x9 ^= u<<13 | u>>>(32-13);
u = x9 + x8 | 0;
x10 ^= u<<18 | u>>>(32-18);
u = x15 + x14 | 0;
x12 ^= u<<7 | u>>>(32-7);
u = x12 + x15 | 0;
x13 ^= u<<9 | u>>>(32-9);
u = x13 + x12 | 0;
x14 ^= u<<13 | u>>>(32-13);
u = x14 + x13 | 0;
x15 ^= u<<18 | u>>>(32-18);
}
x0 = x0 + j0 | 0;
x1 = x1 + j1 | 0;
x2 = x2 + j2 | 0;
x3 = x3 + j3 | 0;
x4 = x4 + j4 | 0;
x5 = x5 + j5 | 0;
x6 = x6 + j6 | 0;
x7 = x7 + j7 | 0;
x8 = x8 + j8 | 0;
x9 = x9 + j9 | 0;
x10 = x10 + j10 | 0;
x11 = x11 + j11 | 0;
x12 = x12 + j12 | 0;
x13 = x13 + j13 | 0;
x14 = x14 + j14 | 0;
x15 = x15 + j15 | 0;
o[ 0] = x0 >>> 0 & 0xff;
o[ 1] = x0 >>> 8 & 0xff;
o[ 2] = x0 >>> 16 & 0xff;
o[ 3] = x0 >>> 24 & 0xff;
o[ 4] = x1 >>> 0 & 0xff;
o[ 5] = x1 >>> 8 & 0xff;
o[ 6] = x1 >>> 16 & 0xff;
o[ 7] = x1 >>> 24 & 0xff;
o[ 8] = x2 >>> 0 & 0xff;
o[ 9] = x2 >>> 8 & 0xff;
o[10] = x2 >>> 16 & 0xff;
o[11] = x2 >>> 24 & 0xff;
o[12] = x3 >>> 0 & 0xff;
o[13] = x3 >>> 8 & 0xff;
o[14] = x3 >>> 16 & 0xff;
o[15] = x3 >>> 24 & 0xff;
o[16] = x4 >>> 0 & 0xff;
o[17] = x4 >>> 8 & 0xff;
o[18] = x4 >>> 16 & 0xff;
o[19] = x4 >>> 24 & 0xff;
o[20] = x5 >>> 0 & 0xff;
o[21] = x5 >>> 8 & 0xff;
o[22] = x5 >>> 16 & 0xff;
o[23] = x5 >>> 24 & 0xff;
o[24] = x6 >>> 0 & 0xff;
o[25] = x6 >>> 8 & 0xff;
o[26] = x6 >>> 16 & 0xff;
o[27] = x6 >>> 24 & 0xff;
o[28] = x7 >>> 0 & 0xff;
o[29] = x7 >>> 8 & 0xff;
o[30] = x7 >>> 16 & 0xff;
o[31] = x7 >>> 24 & 0xff;
o[32] = x8 >>> 0 & 0xff;
o[33] = x8 >>> 8 & 0xff;
o[34] = x8 >>> 16 & 0xff;
o[35] = x8 >>> 24 & 0xff;
o[36] = x9 >>> 0 & 0xff;
o[37] = x9 >>> 8 & 0xff;
o[38] = x9 >>> 16 & 0xff;
o[39] = x9 >>> 24 & 0xff;
o[40] = x10 >>> 0 & 0xff;
o[41] = x10 >>> 8 & 0xff;
o[42] = x10 >>> 16 & 0xff;
o[43] = x10 >>> 24 & 0xff;
o[44] = x11 >>> 0 & 0xff;
o[45] = x11 >>> 8 & 0xff;
o[46] = x11 >>> 16 & 0xff;
o[47] = x11 >>> 24 & 0xff;
o[48] = x12 >>> 0 & 0xff;
o[49] = x12 >>> 8 & 0xff;
o[50] = x12 >>> 16 & 0xff;
o[51] = x12 >>> 24 & 0xff;
o[52] = x13 >>> 0 & 0xff;
o[53] = x13 >>> 8 & 0xff;
o[54] = x13 >>> 16 & 0xff;
o[55] = x13 >>> 24 & 0xff;
o[56] = x14 >>> 0 & 0xff;
o[57] = x14 >>> 8 & 0xff;
o[58] = x14 >>> 16 & 0xff;
o[59] = x14 >>> 24 & 0xff;
o[60] = x15 >>> 0 & 0xff;
o[61] = x15 >>> 8 & 0xff;
o[62] = x15 >>> 16 & 0xff;
o[63] = x15 >>> 24 & 0xff;
}
function core_hsalsa20(o,p,k,c) {
var j0 = c[ 0] & 0xff | (c[ 1] & 0xff)<<8 | (c[ 2] & 0xff)<<16 | (c[ 3] & 0xff)<<24,
j1 = k[ 0] & 0xff | (k[ 1] & 0xff)<<8 | (k[ 2] & 0xff)<<16 | (k[ 3] & 0xff)<<24,
j2 = k[ 4] & 0xff | (k[ 5] & 0xff)<<8 | (k[ 6] & 0xff)<<16 | (k[ 7] & 0xff)<<24,
j3 = k[ 8] & 0xff | (k[ 9] & 0xff)<<8 | (k[10] & 0xff)<<16 | (k[11] & 0xff)<<24,
j4 = k[12] & 0xff | (k[13] & 0xff)<<8 | (k[14] & 0xff)<<16 | (k[15] & 0xff)<<24,
j5 = c[ 4] & 0xff | (c[ 5] & 0xff)<<8 | (c[ 6] & 0xff)<<16 | (c[ 7] & 0xff)<<24,
j6 = p[ 0] & 0xff | (p[ 1] & 0xff)<<8 | (p[ 2] & 0xff)<<16 | (p[ 3] & 0xff)<<24,
j7 = p[ 4] & 0xff | (p[ 5] & 0xff)<<8 | (p[ 6] & 0xff)<<16 | (p[ 7] & 0xff)<<24,
j8 = p[ 8] & 0xff | (p[ 9] & 0xff)<<8 | (p[10] & 0xff)<<16 | (p[11] & 0xff)<<24,
j9 = p[12] & 0xff | (p[13] & 0xff)<<8 | (p[14] & 0xff)<<16 | (p[15] & 0xff)<<24,
j10 = c[ 8] & 0xff | (c[ 9] & 0xff)<<8 | (c[10] & 0xff)<<16 | (c[11] & 0xff)<<24,
j11 = k[16] & 0xff | (k[17] & 0xff)<<8 | (k[18] & 0xff)<<16 | (k[19] & 0xff)<<24,
j12 = k[20] & 0xff | (k[21] & 0xff)<<8 | (k[22] & 0xff)<<16 | (k[23] & 0xff)<<24,
j13 = k[24] & 0xff | (k[25] & 0xff)<<8 | (k[26] & 0xff)<<16 | (k[27] & 0xff)<<24,
j14 = k[28] & 0xff | (k[29] & 0xff)<<8 | (k[30] & 0xff)<<16 | (k[31] & 0xff)<<24,
j15 = c[12] & 0xff | (c[13] & 0xff)<<8 | (c[14] & 0xff)<<16 | (c[15] & 0xff)<<24;
var x0 = j0, x1 = j1, x2 = j2, x3 = j3, x4 = j4, x5 = j5, x6 = j6, x7 = j7,
x8 = j8, x9 = j9, x10 = j10, x11 = j11, x12 = j12, x13 = j13, x14 = j14,
x15 = j15, u;
for (var i = 0; i < 20; i += 2) {
u = x0 + x12 | 0;
x4 ^= u<<7 | u>>>(32-7);
u = x4 + x0 | 0;
x8 ^= u<<9 | u>>>(32-9);
u = x8 + x4 | 0;
x12 ^= u<<13 | u>>>(32-13);
u = x12 + x8 | 0;
x0 ^= u<<18 | u>>>(32-18);
u = x5 + x1 | 0;
x9 ^= u<<7 | u>>>(32-7);
u = x9 + x5 | 0;
x13 ^= u<<9 | u>>>(32-9);
u = x13 + x9 | 0;
x1 ^= u<<13 | u>>>(32-13);
u = x1 + x13 | 0;
x5 ^= u<<18 | u>>>(32-18);
u = x10 + x6 | 0;
x14 ^= u<<7 | u>>>(32-7);
u = x14 + x10 | 0;
x2 ^= u<<9 | u>>>(32-9);
u = x2 + x14 | 0;
x6 ^= u<<13 | u>>>(32-13);
u = x6 + x2 | 0;
x10 ^= u<<18 | u>>>(32-18);
u = x15 + x11 | 0;
x3 ^= u<<7 | u>>>(32-7);
u = x3 + x15 | 0;
x7 ^= u<<9 | u>>>(32-9);
u = x7 + x3 | 0;
x11 ^= u<<13 | u>>>(32-13);
u = x11 + x7 | 0;
x15 ^= u<<18 | u>>>(32-18);
u = x0 + x3 | 0;
x1 ^= u<<7 | u>>>(32-7);
u = x1 + x0 | 0;
x2 ^= u<<9 | u>>>(32-9);
u = x2 + x1 | 0;
x3 ^= u<<13 | u>>>(32-13);
u = x3 + x2 | 0;
x0 ^= u<<18 | u>>>(32-18);
u = x5 + x4 | 0;
x6 ^= u<<7 | u>>>(32-7);
u = x6 + x5 | 0;
x7 ^= u<<9 | u>>>(32-9);
u = x7 + x6 | 0;
x4 ^= u<<13 | u>>>(32-13);
u = x4 + x7 | 0;
x5 ^= u<<18 | u>>>(32-18);
u = x10 + x9 | 0;
x11 ^= u<<7 | u>>>(32-7);
u = x11 + x10 | 0;
x8 ^= u<<9 | u>>>(32-9);
u = x8 + x11 | 0;
x9 ^= u<<13 | u>>>(32-13);
u = x9 + x8 | 0;
x10 ^= u<<18 | u>>>(32-18);
u = x15 + x14 | 0;
x12 ^= u<<7 | u>>>(32-7);
u = x12 + x15 | 0;
x13 ^= u<<9 | u>>>(32-9);
u = x13 + x12 | 0;
x14 ^= u<<13 | u>>>(32-13);
u = x14 + x13 | 0;
x15 ^= u<<18 | u>>>(32-18);
}
o[ 0] = x0 >>> 0 & 0xff;
o[ 1] = x0 >>> 8 & 0xff;
o[ 2] = x0 >>> 16 & 0xff;
o[ 3] = x0 >>> 24 & 0xff;
o[ 4] = x5 >>> 0 & 0xff;
o[ 5] = x5 >>> 8 & 0xff;
o[ 6] = x5 >>> 16 & 0xff;
o[ 7] = x5 >>> 24 & 0xff;
o[ 8] = x10 >>> 0 & 0xff;
o[ 9] = x10 >>> 8 & 0xff;
o[10] = x10 >>> 16 & 0xff;
o[11] = x10 >>> 24 & 0xff;
o[12] = x15 >>> 0 & 0xff;
o[13] = x15 >>> 8 & 0xff;
o[14] = x15 >>> 16 & 0xff;
o[15] = x15 >>> 24 & 0xff;
o[16] = x6 >>> 0 & 0xff;
o[17] = x6 >>> 8 & 0xff;
o[18] = x6 >>> 16 & 0xff;
o[19] = x6 >>> 24 & 0xff;
o[20] = x7 >>> 0 & 0xff;
o[21] = x7 >>> 8 & 0xff;
o[22] = x7 >>> 16 & 0xff;
o[23] = x7 >>> 24 & 0xff;
o[24] = x8 >>> 0 & 0xff;
o[25] = x8 >>> 8 & 0xff;
o[26] = x8 >>> 16 & 0xff;
o[27] = x8 >>> 24 & 0xff;
o[28] = x9 >>> 0 & 0xff;
o[29] = x9 >>> 8 & 0xff;
o[30] = x9 >>> 16 & 0xff;
o[31] = x9 >>> 24 & 0xff;
}
function crypto_core_salsa20(out,inp,k,c) {
core_salsa20(out,inp,k,c);
}
function crypto_core_hsalsa20(out,inp,k,c) {
core_hsalsa20(out,inp,k,c);
}
var sigma = new Uint8Array([101, 120, 112, 97, 110, 100, 32, 51, 50, 45, 98, 121, 116, 101, 32, 107]);
// "expand 32-byte k"
function crypto_stream_salsa20_xor(c,cpos,m,mpos,b,n,k) {
var z = new Uint8Array(16), x = new Uint8Array(64);
var u, i;
for (i = 0; i < 16; i++) z[i] = 0;
for (i = 0; i < 8; i++) z[i] = n[i];
while (b >= 64) {
crypto_core_salsa20(x,z,k,sigma);
for (i = 0; i < 64; i++) c[cpos+i] = m[mpos+i] ^ x[i];
u = 1;
for (i = 8; i < 16; i++) {
u = u + (z[i] & 0xff) | 0;
z[i] = u & 0xff;
u >>>= 8;
}
b -= 64;
cpos += 64;
mpos += 64;
}
if (b > 0) {
crypto_core_salsa20(x,z,k,sigma);
for (i = 0; i < b; i++) c[cpos+i] = m[mpos+i] ^ x[i];
}
return 0;
}
function crypto_stream_salsa20(c,cpos,b,n,k) {
var z = new Uint8Array(16), x = new Uint8Array(64);
var u, i;
for (i = 0; i < 16; i++) z[i] = 0;
for (i = 0; i < 8; i++) z[i] = n[i];
while (b >= 64) {
crypto_core_salsa20(x,z,k,sigma);
for (i = 0; i < 64; i++) c[cpos+i] = x[i];
u = 1;
for (i = 8; i < 16; i++) {
u = u + (z[i] & 0xff) | 0;
z[i] = u & 0xff;
u >>>= 8;
}
b -= 64;
cpos += 64;
}
if (b > 0) {
crypto_core_salsa20(x,z,k,sigma);
for (i = 0; i < b; i++) c[cpos+i] = x[i];
}
return 0;
}
function crypto_stream(c,cpos,d,n,k) {
var s = new Uint8Array(32);
crypto_core_hsalsa20(s,n,k,sigma);
var sn = new Uint8Array(8);
for (var i = 0; i < 8; i++) sn[i] = n[i+16];
return crypto_stream_salsa20(c,cpos,d,sn,s);
}
function crypto_stream_xor(c,cpos,m,mpos,d,n,k) {
var s = new Uint8Array(32);
crypto_core_hsalsa20(s,n,k,sigma);
var sn = new Uint8Array(8);
for (var i = 0; i < 8; i++) sn[i] = n[i+16];
return crypto_stream_salsa20_xor(c,cpos,m,mpos,d,sn,s);
}
/*
* Port of Andrew Moon's Poly1305-donna-16. Public domain.
* https://github.com/floodyberry/poly1305-donna
@@ -819,6 +414,14 @@ poly1305.prototype.update = function(m, mpos, bytes) {
}
};
function crypto_stream_xor (c, cpos, m, mpos, clen, n, k) {
cs.crypto_stream_xor(c, m, n, k)
}
function crypto_stream (c, cpos, clen, n, k) {
cs.crypto_stream(c, n, k)
}
function crypto_onetimeauth(out, outpos, m, mpos, n, k) {
var s = new poly1305(k);
s.update(m, mpos, n);
@@ -1384,32 +987,6 @@ function crypto_scalarmult_base(q, n) {
return crypto_scalarmult(q, n, _9);
}
function crypto_box_keypair(y, x) {
randombytes(x, 32);
return crypto_scalarmult_base(y, x);
}
function crypto_box_beforenm(k, y, x) {
var s = new Uint8Array(32);
crypto_scalarmult(s, x, y);
return crypto_core_hsalsa20(k, _0, s, sigma);
}
var crypto_box_afternm = crypto_secretbox;
var crypto_box_open_afternm = crypto_secretbox_open;
function crypto_box(c, m, d, n, y, x) {
var k = new Uint8Array(32);
crypto_box_beforenm(k, y, x);
return crypto_box_afternm(c, m, d, n, k);
}
function crypto_box_open(m, c, d, n, y, x) {
var k = new Uint8Array(32);
crypto_box_beforenm(k, y, x);
return crypto_box_open_afternm(m, c, d, n, k);
}
var K = [
0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd,
0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc,
@@ -2112,23 +1689,20 @@ function crypto_sign_verify_detached (sig, m, pk) {
return crypto_sign_open(sm, m, pk)
}
function randombytes_buf (n) {
randombytes(n, n.length)
function crypto_secretbox_detached (o, mac, msg, n, k) {
check(mac, sodium.crypto_secretbox_MACBYTES)
var tmp = new Uint8Array(msg.length + mac.length)
crypto_secretbox_easy(tmp, msg, n, k)
o.set(tmp.subarray(0, msg.length))
mac.set(tmp.subarray(msg.length))
}
function crypto_stream_wrap(c, n, k) {
check(c, 0)
check(n, sodium.crypto_stream_NONCEBYTES)
check(k, sodium.crypto_stream_KEYBYTES)
crypto_stream(c, 0, c.length, n, k)
}
function crypto_stream_xor_wrap(c, m, n, k) {
check(m, 0)
check(c, m.length)
check(n, sodium.crypto_stream_NONCEBYTES)
check(k, sodium.crypto_stream_KEYBYTES)
crypto_stream_xor(c, 0, m, 0, m.length, n, k)
function crypto_secretbox_open_detached (msg, o, mac, n, k) {
check(mac, sodium.crypto_secretbox_MACBYTES)
var tmp = new Uint8Array(o.length + mac.length)
tmp.set(o)
tmp.set(mac, msg.length)
return crypto_secretbox_open_easy(msg, tmp, n, k)
}
function crypto_secretbox_easy(o, msg, n, k) {
@@ -2162,21 +1736,6 @@ function crypto_secretbox_open_easy(msg, box, n, k) {
return true
}
var blake2b = require('blakejs/blake2b')
function crypto_generichash (out, data, key) {
var tmp = blake2b.blake2b(data, key, out.length)
for (var i = 0; i < tmp.length; i++) out[i] = tmp[i]
}
function crypto_generichash_batch (out, batch, key) {
var i = 0
var ctx = blake2b.blake2bInit(out.length, key)
for (i = 0; i < batch.length; i++) blake2b.blake2bUpdate(ctx, batch[i])
var tmp = blake2b.blake2bFinal(ctx)
for (var i = 0; i < tmp.length; i++) out[i] = tmp[i]
}
var crypto_secretbox_KEYBYTES = 32,
crypto_secretbox_NONCEBYTES = 24,
crypto_secretbox_ZEROBYTES = 32,
@@ -2195,7 +1754,9 @@ var crypto_secretbox_KEYBYTES = 32,
crypto_sign_SEEDBYTES = 32,
crypto_hash_BYTES = 64;
sodium.randombytes_buf = randombytes_buf
sodium.memzero = function (len, offset) {
for (var i = offset; i < len; i++) arr[i] = 0;
}
sodium.crypto_sign_BYTES = crypto_sign_BYTES
sodium.crypto_sign_PUBLICKEYBYTES = crypto_sign_PUBLICKEYBYTES
@@ -2208,10 +1769,11 @@ sodium.crypto_sign_open = crypto_sign_open
sodium.crypto_sign_detached = crypto_sign_detached
sodium.crypto_sign_verify_detached = crypto_sign_verify_detached
sodium.crypto_stream_KEYBYTES = 32
sodium.crypto_stream_NONCEBYTES = 24
sodium.crypto_stream = crypto_stream_wrap
sodium.crypto_stream_xor = crypto_stream_xor_wrap
forward(require('./crypto_generichash'))
forward(require('./crypto_kdf'))
forward(require('./crypto_shorthash'))
forward(require('./randombytes'))
forward(require('./crypto_stream'))
sodium.crypto_scalarmult_BYTES = crypto_scalarmult_BYTES
sodium.crypto_scalarmult_SCALARBYTES = crypto_scalarmult_SCALARBYTES
@@ -2223,15 +1785,8 @@ sodium.crypto_secretbox_NONCEBYTES = crypto_secretbox_NONCEBYTES,
sodium.crypto_secretbox_MACBYTES = 16
sodium.crypto_secretbox_easy = crypto_secretbox_easy
sodium.crypto_secretbox_open_easy = crypto_secretbox_open_easy
sodium.crypto_generichash_BYTES_MIN = 16
sodium.crypto_generichash_BYTES_MAX = 64
sodium.crypto_generichash_BYTES = 32
sodium.crypto_generichash_KEYBYTES_MIN = 16
sodium.crypto_generichash_KEYBYTES_MAX = 64
sodium.crypto_generichash_KEYBYTES = 32
sodium.crypto_generichash = crypto_generichash
sodium.crypto_generichash_batch = crypto_generichash_batch
sodium.crypto_secretbox_detached = crypto_secretbox_detached
sodium.crypto_secretbox_open_detached = crypto_secretbox_open_detached
function cleanup(arr) {
for (var i = 0; i < arr.length; i++) arr[i] = 0;
@@ -2241,30 +1796,8 @@ function check (buf, len) {
if (!buf || (len && buf.length < len)) throw new Error('Argument must be a buffer' + (len ? ' of length ' + len : ''))
}
(function() {
// Initialize PRNG if environment provides CSPRNG.
// If not, methods calling randombytes will throw.
var crypto = typeof self !== 'undefined' ? (self.crypto || self.msCrypto) : null;
if (crypto && crypto.getRandomValues) {
// Browsers.
var QUOTA = 65536;
randombytes = function(x, n) {
var i, v = new Uint8Array(n);
for (i = 0; i < n; i += QUOTA) {
crypto.getRandomValues(v.subarray(i, i + Math.min(n - i, QUOTA)));
}
for (i = 0; i < n; i++) x[i] = v[i];
cleanup(v);
};
} else if (typeof require !== 'undefined') {
// Node.js.
crypto = require('cry' + 'pto');
if (crypto && crypto.randomBytes) {
randombytes = function(x, n) {
var i, v = crypto.randomBytes(n);
for (i = 0; i < n; i++) x[i] = v[i];
cleanup(v);
};
}
}
})();
function forward (submodule) {
Object.keys(submodule).forEach(function (prop) {
module.exports[prop] = submodule[prop]
})
}
+15 -3
View File
@@ -1,12 +1,24 @@
{
"name": "sodium-javascript",
"version": "0.0.1",
"version": "0.5.0",
"description": "WIP - a pure javascript version of sodium-native",
"main": "index.js",
"dependencies": {
"blakejs": "^1.0.1"
"blake2b": "^2.1.1",
"nanoassert": "^1.0.0",
"siphash24": "^1.0.1",
"xsalsa20": "^1.0.0"
},
"devDependencies": {
"browser-run": "^4.0.2",
"browserify": "^14.1.0",
"sodium-test": "^0.6.0"
},
"scripts": {
"browser": "browserify test.js | browser-run",
"browser-manual": "browserify test.js | browser-run -p 1234",
"test": "node test.js"
},
"devDependencies": {},
"repository": {
"type": "git",
"url": "https://github.com/mafintosh/sodium-javascript.git"
+40
View File
@@ -0,0 +1,40 @@
var assert = require('nanoassert')
var randombytes = (function () {
var QUOTA = 65536 // limit for QuotaExceededException
var crypto = typeof window !== 'undefined' ? (window.crypto || window.msCrypto) : null
function windowBytes (out, n) {
for (var i = 0; i < n; i += QUOTA) {
crypto.getRandomValues(out.subarray(i, i + Math.min(n - i, QUOTA)))
}
}
function nodeBytes (out, n) {
out.set(crypto.randomBytes(n))
}
function noImpl () {
throw new Error('No secure random number generator available')
}
if (crypto && crypto.getRandomValues) {
return windowBytes
} else if (typeof require !== 'undefined') {
// Node.js.
crypto = require('cry' + 'pto');
if (crypto && crypto.randomBytes) {
return nodeBytes
}
}
return noImpl
})()
Object.defineProperty(module.exports, 'randombytes', {
value: randombytes
})
module.exports.randombytes_buf = function (out) {
assert(out, 'out must be given')
randombytes(out, out.length)
}
+3
View File
@@ -0,0 +1,3 @@
require('sodium-test')(require('.'))
if (typeof window !== 'undefined') window.close()