291 lines
9.0 KiB
C#
291 lines
9.0 KiB
C#
//
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// CryptoConvert.cs - Crypto Convertion Routines
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//
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// Author:
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// Sebastien Pouliot <sebastien@ximian.com>
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//
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// (C) 2003 Motus Technologies Inc. (http://www.motus.com)
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// Copyright (C) 2004-2006 Novell Inc. (http://www.novell.com)
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//
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// Permission is hereby granted, free of charge, to any person obtaining
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// a copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to
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// permit persons to whom the Software is furnished to do so, subject to
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// the following conditions:
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//
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// The above copyright notice and this permission notice shall be
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// included in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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// EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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// NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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// LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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// OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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//
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using System;
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using System.Security.Cryptography;
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namespace MonoFN.Security.Cryptography {
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static class CryptoConvert {
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static private int ToInt32LE (byte [] bytes, int offset)
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{
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return (bytes [offset + 3] << 24) | (bytes [offset + 2] << 16) | (bytes [offset + 1] << 8) | bytes [offset];
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}
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static private uint ToUInt32LE (byte [] bytes, int offset)
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{
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return (uint)((bytes [offset + 3] << 24) | (bytes [offset + 2] << 16) | (bytes [offset + 1] << 8) | bytes [offset]);
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}
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static private byte [] GetBytesLE (int val)
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{
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return new byte [] {
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(byte) (val & 0xff),
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(byte) ((val >> 8) & 0xff),
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(byte) ((val >> 16) & 0xff),
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(byte) ((val >> 24) & 0xff)
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};
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}
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static private byte [] Trim (byte [] array)
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{
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for (int i = 0; i < array.Length; i++) {
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if (array [i] != 0x00) {
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byte [] result = new byte [array.Length - i];
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Buffer.BlockCopy (array, i, result, 0, result.Length);
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return result;
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}
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}
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return null;
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}
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static RSA FromCapiPrivateKeyBlob (byte [] blob, int offset)
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{
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RSAParameters rsap = new RSAParameters ();
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try {
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if ((blob [offset] != 0x07) || // PRIVATEKEYBLOB (0x07)
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(blob [offset + 1] != 0x02) || // Version (0x02)
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(blob [offset + 2] != 0x00) || // Reserved (word)
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(blob [offset + 3] != 0x00) ||
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(ToUInt32LE (blob, offset + 8) != 0x32415352)) // DWORD magic = RSA2
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throw new CryptographicException ("Invalid blob header");
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// ALGID (CALG_RSA_SIGN, CALG_RSA_KEYX, ...)
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// int algId = ToInt32LE (blob, offset+4);
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// DWORD bitlen
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int bitLen = ToInt32LE (blob, offset + 12);
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// DWORD public exponent
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byte [] exp = new byte [4];
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Buffer.BlockCopy (blob, offset + 16, exp, 0, 4);
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Array.Reverse (exp);
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rsap.Exponent = Trim (exp);
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int pos = offset + 20;
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// BYTE modulus[rsapubkey.bitlen/8];
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int byteLen = (bitLen >> 3);
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rsap.Modulus = new byte [byteLen];
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Buffer.BlockCopy (blob, pos, rsap.Modulus, 0, byteLen);
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Array.Reverse (rsap.Modulus);
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pos += byteLen;
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// BYTE prime1[rsapubkey.bitlen/16];
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int byteHalfLen = (byteLen >> 1);
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rsap.P = new byte [byteHalfLen];
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Buffer.BlockCopy (blob, pos, rsap.P, 0, byteHalfLen);
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Array.Reverse (rsap.P);
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pos += byteHalfLen;
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// BYTE prime2[rsapubkey.bitlen/16];
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rsap.Q = new byte [byteHalfLen];
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Buffer.BlockCopy (blob, pos, rsap.Q, 0, byteHalfLen);
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Array.Reverse (rsap.Q);
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pos += byteHalfLen;
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// BYTE exponent1[rsapubkey.bitlen/16];
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rsap.DP = new byte [byteHalfLen];
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Buffer.BlockCopy (blob, pos, rsap.DP, 0, byteHalfLen);
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Array.Reverse (rsap.DP);
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pos += byteHalfLen;
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// BYTE exponent2[rsapubkey.bitlen/16];
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rsap.DQ = new byte [byteHalfLen];
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Buffer.BlockCopy (blob, pos, rsap.DQ, 0, byteHalfLen);
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Array.Reverse (rsap.DQ);
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pos += byteHalfLen;
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// BYTE coefficient[rsapubkey.bitlen/16];
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rsap.InverseQ = new byte [byteHalfLen];
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Buffer.BlockCopy (blob, pos, rsap.InverseQ, 0, byteHalfLen);
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Array.Reverse (rsap.InverseQ);
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pos += byteHalfLen;
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// ok, this is hackish but CryptoAPI support it so...
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// note: only works because CRT is used by default
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// http://bugzilla.ximian.com/show_bug.cgi?id=57941
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rsap.D = new byte [byteLen]; // must be allocated
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if (pos + byteLen + offset <= blob.Length) {
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// BYTE privateExponent[rsapubkey.bitlen/8];
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Buffer.BlockCopy (blob, pos, rsap.D, 0, byteLen);
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Array.Reverse (rsap.D);
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}
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}
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catch (Exception e) {
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throw new CryptographicException ("Invalid blob.", e);
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}
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RSA rsa = null;
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try {
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rsa = RSA.Create ();
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rsa.ImportParameters (rsap);
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}
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catch (CryptographicException) {
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// this may cause problem when this code is run under
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// the SYSTEM identity on Windows (e.g. ASP.NET). See
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// http://bugzilla.ximian.com/show_bug.cgi?id=77559
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bool throws = false;
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try {
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CspParameters csp = new CspParameters ();
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csp.Flags = CspProviderFlags.UseMachineKeyStore;
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rsa = new RSACryptoServiceProvider (csp);
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rsa.ImportParameters (rsap);
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}
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catch {
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throws = true;
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}
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if (throws) {
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// rethrow original, not the latter, exception if this fails
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throw;
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}
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}
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return rsa;
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}
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static RSA FromCapiPublicKeyBlob (byte [] blob, int offset)
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{
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try {
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if ((blob [offset] != 0x06) || // PUBLICKEYBLOB (0x06)
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(blob [offset + 1] != 0x02) || // Version (0x02)
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(blob [offset + 2] != 0x00) || // Reserved (word)
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(blob [offset + 3] != 0x00) ||
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(ToUInt32LE (blob, offset + 8) != 0x31415352)) // DWORD magic = RSA1
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throw new CryptographicException ("Invalid blob header");
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// ALGID (CALG_RSA_SIGN, CALG_RSA_KEYX, ...)
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// int algId = ToInt32LE (blob, offset+4);
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// DWORD bitlen
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int bitLen = ToInt32LE (blob, offset + 12);
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// DWORD public exponent
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RSAParameters rsap = new RSAParameters ();
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rsap.Exponent = new byte [3];
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rsap.Exponent [0] = blob [offset + 18];
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rsap.Exponent [1] = blob [offset + 17];
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rsap.Exponent [2] = blob [offset + 16];
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int pos = offset + 20;
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// BYTE modulus[rsapubkey.bitlen/8];
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int byteLen = (bitLen >> 3);
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rsap.Modulus = new byte [byteLen];
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Buffer.BlockCopy (blob, pos, rsap.Modulus, 0, byteLen);
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Array.Reverse (rsap.Modulus);
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RSA rsa = null;
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try {
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rsa = RSA.Create ();
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rsa.ImportParameters (rsap);
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}
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catch (CryptographicException) {
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// this may cause problem when this code is run under
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// the SYSTEM identity on Windows (e.g. ASP.NET). See
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// http://bugzilla.ximian.com/show_bug.cgi?id=77559
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CspParameters csp = new CspParameters ();
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csp.Flags = CspProviderFlags.UseMachineKeyStore;
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rsa = new RSACryptoServiceProvider (csp);
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rsa.ImportParameters (rsap);
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}
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return rsa;
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}
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catch (Exception e) {
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throw new CryptographicException ("Invalid blob.", e);
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}
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}
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// PRIVATEKEYBLOB
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// PUBLICKEYBLOB
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static public RSA FromCapiKeyBlob (byte [] blob)
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{
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return FromCapiKeyBlob (blob, 0);
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}
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static public RSA FromCapiKeyBlob (byte [] blob, int offset)
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{
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if (blob == null)
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throw new ArgumentNullException ("blob");
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if (offset >= blob.Length)
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throw new ArgumentException ("blob is too small.");
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switch (blob [offset]) {
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case 0x00:
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// this could be a public key inside an header
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// like "sn -e" would produce
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if (blob [offset + 12] == 0x06) {
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return FromCapiPublicKeyBlob (blob, offset + 12);
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}
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break;
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case 0x06:
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return FromCapiPublicKeyBlob (blob, offset);
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case 0x07:
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return FromCapiPrivateKeyBlob (blob, offset);
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}
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throw new CryptographicException ("Unknown blob format.");
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}
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static public byte [] ToCapiPublicKeyBlob (RSA rsa)
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{
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RSAParameters p = rsa.ExportParameters (false);
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int keyLength = p.Modulus.Length; // in bytes
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byte [] blob = new byte [20 + keyLength];
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blob [0] = 0x06; // Type - PUBLICKEYBLOB (0x06)
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blob [1] = 0x02; // Version - Always CUR_BLOB_VERSION (0x02)
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// [2], [3] // RESERVED - Always 0
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blob [5] = 0x24; // ALGID - Always 00 24 00 00 (for CALG_RSA_SIGN)
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blob [8] = 0x52; // Magic - RSA1 (ASCII in hex)
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blob [9] = 0x53;
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blob [10] = 0x41;
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blob [11] = 0x31;
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byte [] bitlen = GetBytesLE (keyLength << 3);
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blob [12] = bitlen [0]; // bitlen
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blob [13] = bitlen [1];
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blob [14] = bitlen [2];
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blob [15] = bitlen [3];
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// public exponent (DWORD)
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int pos = 16;
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int n = p.Exponent.Length;
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while (n > 0)
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blob [pos++] = p.Exponent [--n];
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// modulus
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pos = 20;
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byte [] part = p.Modulus;
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int len = part.Length;
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Array.Reverse (part, 0, len);
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Buffer.BlockCopy (part, 0, blob, pos, len);
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pos += len;
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return blob;
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}
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}
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}
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