Mercurial > hg > ucis.core
view NaCl/crypto_box/curve25519xsalsa20poly1305.cs @ 87:9b898d8b2541
Small improvements in Windows USB device handling
author | Ivo Smits <Ivo@UCIS.nl> |
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date | Thu, 05 Jun 2014 00:46:15 +0200 |
parents | c873e3dd73fe |
children |
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???using System; using UCIS.NaCl; using System.Runtime.InteropServices; namespace UCIS.NaCl.crypto_box { public static class curve25519xsalsa20poly1305 { /* constants */ public const int PUBLICKEYBYTES = 32; public const int SECRETKEYBYTES = 32; public const int BEFORENMBYTES = 32; public const int NONCEBYTES = 24; public const int ZEROBYTES = 32; public const int BOXZEROBYTES = 16; //Never written to static Byte[] sigma = new Byte[16] {(Byte)'e', (Byte)'x', (Byte)'p', (Byte)'a', //[16] = "expand 32-byte k"; (Byte)'n', (Byte)'d', (Byte)' ', (Byte)'3', (Byte)'2', (Byte)'-', (Byte)'b', (Byte)'y', (Byte)'t', (Byte)'e', (Byte)' ', (Byte)'k', }; /* static pointer based methods */ static unsafe public void crypto_box_getpublickey(Byte* pk, Byte* sk) { crypto_scalarmult.curve25519.crypto_scalarmult_base(pk, sk); } static unsafe public int crypto_box_afternm(Byte* c, Byte* m, UInt64 mlen, Byte* n, Byte* k) { return crypto_secretbox.xsalsa20poly1305.crypto_secretbox(c, m, mlen, n, k); } static unsafe public int crypto_box_open_afternm(Byte* m, Byte* c, UInt64 clen, Byte* n, Byte* k) { return crypto_secretbox.xsalsa20poly1305.crypto_secretbox_open(m, c, clen, n, k); } static unsafe public void crypto_box_beforenm(Byte* k, Byte* pk, Byte* sk) { Byte[] s = new Byte[32]; fixed (Byte* sp = s, sigmap = sigma) { //, np = n crypto_scalarmult.curve25519.crypto_scalarmult(sp, sk, pk); crypto_core.hsalsa20.crypto_core(k, null, sp, sigmap); //k, np, sp, sigmap } } static unsafe public int crypto_box(Byte* c, Byte* m, UInt64 mlen, Byte* n, Byte* pk, Byte* sk) { Byte[] k = new Byte[BEFORENMBYTES]; fixed (Byte* kp = k) { crypto_box_beforenm(kp, pk, sk); return crypto_box_afternm(c, m, mlen, n, kp); } } static unsafe public int crypto_box_open(Byte* m, Byte* c, UInt64 clen, Byte* n, Byte* pk, Byte* sk) { Byte[] k = new Byte[BEFORENMBYTES]; fixed (Byte* kp = k) { crypto_box_beforenm(kp, pk, sk); return crypto_box_open_afternm(m, c, clen, n, kp); } } /* static array based methods */ static unsafe public void crypto_box_keypair(out Byte[] pk, out Byte[] sk) { sk = new Byte[32]; pk = new Byte[32]; randombytes.generate(sk); //randombytes(sk, 32); fixed (Byte* skp = sk, pkp = pk) crypto_scalarmult.curve25519.crypto_scalarmult_base(pkp, skp); } static unsafe public Byte[] crypto_box_getpublickey(Byte[] sk) { Byte[] pk; crypto_box_getpublickey(out pk, sk); return pk; } static unsafe public void crypto_box_getpublickey(out Byte[] pk, Byte[] sk) { if (sk.Length != SECRETKEYBYTES) throw new ArgumentOutOfRangeException("sk"); pk = new Byte[32]; fixed (Byte* skp = sk, pkp = pk) crypto_box_getpublickey(pkp, skp); } static unsafe public void crypto_box_beforenm(Byte[] k, Byte[] pk, Byte[] sk) { fixed (Byte* kp = k, pkp = pk, skp = sk) crypto_box_beforenm(kp, pkp, skp); } static unsafe public Byte[] crypto_box_beforenm(Byte[] pk, Byte[] sk) { if (pk.Length != PUBLICKEYBYTES) throw new ArgumentOutOfRangeException("pk"); if (sk.Length != SECRETKEYBYTES) throw new ArgumentOutOfRangeException("sk"); Byte[] k = new Byte[BEFORENMBYTES]; fixed (Byte* kp = k, pkp = pk, skp = sk) crypto_box_beforenm(kp, pkp, skp); return k; } static unsafe public int crypto_box_afternm(Byte[] c, Byte[] m, Byte[] n, Byte[] k) { fixed (Byte* cp = c, mp = m, np = n, kp = k) return crypto_box_afternm(cp, mp, (ulong)m.Length, np, kp); } static unsafe public int crypto_box_open_afternm(Byte[] m, Byte[] c, Byte[] n, Byte[] k) { fixed (Byte* cp = c, mp = m, np = n, kp = k) return crypto_box_open_afternm(mp, cp, (ulong)c.Length, np, kp); } static unsafe public int crypto_box(Byte[] c, Byte[] m, Byte[] n, Byte[] pk, Byte[] sk) { fixed (Byte* cp = c, mp = m, np = n, pkp = pk, skp = sk) return crypto_box(cp, mp, (ulong)m.Length, np, pkp, skp); } static unsafe public int crypto_box_open(Byte[] m, Byte[] c, Byte[] n, Byte[] pk, Byte[] sk) { fixed (Byte* cp = c, mp = m, np = n, pkp = pk, skp = sk) return crypto_box_open(mp, cp, (ulong)c.Length, np, pkp, skp); } static unsafe public int crypto_box_afternm(Byte[] c, int coffset, Byte[] m, int moffset, int mlen, Byte[] n, Byte[] k) { fixed (Byte* cp = c, mp = m, np = n, kp = k) return crypto_box_afternm(cp + coffset, mp + moffset, (ulong)mlen, np, kp); } static unsafe public int crypto_box_open_afternm(Byte[] m, int moffset, Byte[] c, int coffset, int clen, Byte[] n, Byte[] k) { fixed (Byte* cp = c, mp = m, np = n, kp = k) return crypto_box_open_afternm(mp + moffset, cp + coffset, (ulong)clen, np, kp); } static unsafe public int crypto_box(Byte[] c, int coffset, Byte[] m, int moffset, int mlen, Byte[] n, Byte[] pk, Byte[] sk) { fixed (Byte* cp = c, mp = m, np = n, pkp = pk, skp = sk) return crypto_box(cp + coffset, mp + moffset, (ulong)mlen, np, pkp, skp); } static unsafe public int crypto_box_open(Byte[] m, int moffset, Byte[] c, int coffset, int clen, Byte[] n, Byte[] pk, Byte[] sk) { fixed (Byte* cp = c, mp = m, np = n, pkp = pk, skp = sk) return crypto_box_open(mp + moffset, cp + coffset, (ulong)clen, np, pkp, skp); } } }