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309 lines
12 KiB
309 lines
12 KiB
#if !BESTHTTP_DISABLE_ALTERNATE_SSL && (!UNITY_WEBGL || UNITY_EDITOR) |
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#pragma warning disable |
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using System; |
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using System.IO; |
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using System.Text; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities; |
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using BestHTTP.SecureProtocol.Org.BouncyCastle.Utilities.Collections; |
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namespace BestHTTP.SecureProtocol.Org.BouncyCastle.Crypto.Generators |
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{ |
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/** |
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* Password hashing scheme BCrypt, |
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* designed by Niels Provos and David Mazières, using the |
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* String format and the Base64 encoding |
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* of the reference implementation on OpenBSD |
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*/ |
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public class OpenBsdBCrypt |
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{ |
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private static readonly byte[] EncodingTable = // the Bcrypts encoding table for OpenBSD |
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{ |
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(byte)'.', (byte)'/', (byte)'A', (byte)'B', (byte)'C', (byte)'D', |
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(byte)'E', (byte)'F', (byte)'G', (byte)'H', (byte)'I', (byte)'J', |
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(byte)'K', (byte)'L', (byte)'M', (byte)'N', (byte)'O', (byte)'P', |
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(byte)'Q', (byte)'R', (byte)'S', (byte)'T', (byte)'U', (byte)'V', |
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(byte)'W', (byte)'X', (byte)'Y', (byte)'Z', (byte)'a', (byte)'b', |
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(byte)'c', (byte)'d', (byte)'e', (byte)'f', (byte)'g', (byte)'h', |
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(byte)'i', (byte)'j', (byte)'k', (byte)'l', (byte)'m', (byte)'n', |
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(byte)'o', (byte)'p', (byte)'q', (byte)'r', (byte)'s', (byte)'t', |
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(byte)'u', (byte)'v', (byte)'w', (byte)'x', (byte)'y', (byte)'z', |
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(byte)'0', (byte)'1', (byte)'2', (byte)'3', (byte)'4', (byte)'5', |
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(byte)'6', (byte)'7', (byte)'8', (byte)'9' |
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}; |
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/* |
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* set up the decoding table. |
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*/ |
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private static readonly byte[] DecodingTable = new byte[128]; |
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private static readonly string DefaultVersion = "2y"; |
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private static readonly ISet AllowedVersions = new HashSet(); |
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static OpenBsdBCrypt() |
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{ |
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// Presently just the Bcrypt versions. |
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AllowedVersions.Add("2a"); |
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AllowedVersions.Add("2y"); |
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AllowedVersions.Add("2b"); |
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for (int i = 0; i < DecodingTable.Length; i++) |
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{ |
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DecodingTable[i] = (byte)0xff; |
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} |
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for (int i = 0; i < EncodingTable.Length; i++) |
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{ |
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DecodingTable[EncodingTable[i]] = (byte)i; |
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} |
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} |
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public OpenBsdBCrypt() |
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{ |
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} |
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/** |
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* Creates a 60 character Bcrypt String, including |
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* version, cost factor, salt and hash, separated by '$' |
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* |
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* @param version the version, 2y,2b or 2a. (2a is not backwards compatible.) |
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* @param cost the cost factor, treated as an exponent of 2 |
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* @param salt a 16 byte salt |
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* @param password the password |
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* @return a 60 character Bcrypt String |
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*/ |
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private static string CreateBcryptString(string version, byte[] password, byte[] salt, int cost) |
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{ |
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if (!AllowedVersions.Contains(version)) |
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throw new ArgumentException("Version " + version + " is not accepted by this implementation.", "version"); |
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StringBuilder sb = new StringBuilder(60); |
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sb.Append('$'); |
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sb.Append(version); |
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sb.Append('$'); |
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sb.Append(cost < 10 ? ("0" + cost) : cost.ToString()); |
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sb.Append('$'); |
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sb.Append(EncodeData(salt)); |
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byte[] key = BCrypt.Generate(password, salt, cost); |
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sb.Append(EncodeData(key)); |
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return sb.ToString(); |
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} |
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/** |
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* Creates a 60 character Bcrypt String, including |
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* version, cost factor, salt and hash, separated by '$' using version |
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* '2y'. |
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* |
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* @param cost the cost factor, treated as an exponent of 2 |
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* @param salt a 16 byte salt |
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* @param password the password |
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* @return a 60 character Bcrypt String |
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*/ |
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public static string Generate(char[] password, byte[] salt, int cost) |
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{ |
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return Generate(DefaultVersion, password, salt, cost); |
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} |
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/** |
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* Creates a 60 character Bcrypt String, including |
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* version, cost factor, salt and hash, separated by '$' |
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* |
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* @param version the version, may be 2b, 2y or 2a. (2a is not backwards compatible.) |
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* @param cost the cost factor, treated as an exponent of 2 |
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* @param salt a 16 byte salt |
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* @param password the password |
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* @return a 60 character Bcrypt String |
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*/ |
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public static string Generate(string version, char[] password, byte[] salt, int cost) |
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{ |
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if (!AllowedVersions.Contains(version)) |
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throw new ArgumentException("Version " + version + " is not accepted by this implementation.", "version"); |
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if (password == null) |
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throw new ArgumentNullException("password"); |
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if (salt == null) |
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throw new ArgumentNullException("salt"); |
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if (salt.Length != 16) |
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throw new DataLengthException("16 byte salt required: " + salt.Length); |
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if (cost < 4 || cost > 31) // Minimum rounds: 16, maximum 2^31 |
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throw new ArgumentException("Invalid cost factor.", "cost"); |
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byte[] psw = Strings.ToUtf8ByteArray(password); |
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// 0 termination: |
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byte[] tmp = new byte[psw.Length >= 72 ? 72 : psw.Length + 1]; |
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int copyLen = System.Math.Min(psw.Length, tmp.Length); |
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Array.Copy(psw, 0, tmp, 0, copyLen); |
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Array.Clear(psw, 0, psw.Length); |
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string rv = CreateBcryptString(version, tmp, salt, cost); |
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Array.Clear(tmp, 0, tmp.Length); |
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return rv; |
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} |
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/** |
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* Checks if a password corresponds to a 60 character Bcrypt String |
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* |
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* @param bcryptString a 60 character Bcrypt String, including |
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* version, cost factor, salt and hash, |
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* separated by '$' |
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* @param password the password as an array of chars |
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* @return true if the password corresponds to the |
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* Bcrypt String, otherwise false |
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*/ |
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public static bool CheckPassword(string bcryptString, char[] password) |
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{ |
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// validate bcryptString: |
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if (bcryptString.Length != 60) |
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throw new DataLengthException("Bcrypt String length: " + bcryptString.Length + ", 60 required."); |
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if (bcryptString[0] != '$' || bcryptString[3] != '$' || bcryptString[6] != '$') |
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throw new ArgumentException("Invalid Bcrypt String format.", "bcryptString"); |
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string version = bcryptString.Substring(1, 2); |
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if (!AllowedVersions.Contains(version)) |
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throw new ArgumentException("Bcrypt version '" + version + "' is not supported by this implementation", "bcryptString"); |
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int cost = 0; |
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try |
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{ |
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cost = Int32.Parse(bcryptString.Substring(4, 2)); |
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} |
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catch (Exception nfe) |
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{ |
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#if PORTABLE || NETFX_CORE |
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throw new ArgumentException("Invalid cost factor: " + bcryptString.Substring(4, 2), "bcryptString"); |
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#else |
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throw new ArgumentException("Invalid cost factor: " + bcryptString.Substring(4, 2), "bcryptString", nfe); |
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#endif |
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} |
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if (cost < 4 || cost > 31) |
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throw new ArgumentException("Invalid cost factor: " + cost + ", 4 < cost < 31 expected."); |
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// check password: |
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if (password == null) |
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throw new ArgumentNullException("Missing password."); |
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int start = bcryptString.LastIndexOf('$') + 1, end = bcryptString.Length - 31; |
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byte[] salt = DecodeSaltString(bcryptString.Substring(start, end - start)); |
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string newBcryptString = Generate(version, password, salt, cost); |
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return bcryptString.Equals(newBcryptString); |
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} |
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/* |
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* encode the input data producing a Bcrypt base 64 string. |
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* |
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* @param a byte representation of the salt or the password |
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* @return the Bcrypt base64 string |
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*/ |
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private static string EncodeData(byte[] data) |
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{ |
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if (data.Length != 24 && data.Length != 16) // 192 bit key or 128 bit salt expected |
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throw new DataLengthException("Invalid length: " + data.Length + ", 24 for key or 16 for salt expected"); |
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bool salt = false; |
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if (data.Length == 16)//salt |
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{ |
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salt = true; |
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byte[] tmp = new byte[18];// zero padding |
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Array.Copy(data, 0, tmp, 0, data.Length); |
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data = tmp; |
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} |
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else // key |
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{ |
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data[data.Length - 1] = (byte)0; |
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} |
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MemoryStream mOut = new MemoryStream(); |
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int len = data.Length; |
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uint a1, a2, a3; |
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int i; |
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for (i = 0; i < len; i += 3) |
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{ |
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a1 = data[i]; |
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a2 = data[i + 1]; |
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a3 = data[i + 2]; |
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mOut.WriteByte(EncodingTable[(a1 >> 2) & 0x3f]); |
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mOut.WriteByte(EncodingTable[((a1 << 4) | (a2 >> 4)) & 0x3f]); |
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mOut.WriteByte(EncodingTable[((a2 << 2) | (a3 >> 6)) & 0x3f]); |
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mOut.WriteByte(EncodingTable[a3 & 0x3f]); |
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} |
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string result = Strings.FromByteArray(mOut.ToArray()); |
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int resultLen = salt |
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? 22 // truncate padding |
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: result.Length - 1; |
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return result.Substring(0, resultLen); |
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} |
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/* |
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* decodes the bcrypt base 64 encoded SaltString |
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* |
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* @param a 22 character Bcrypt base 64 encoded String |
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* @return the 16 byte salt |
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* @exception DataLengthException if the length |
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* of parameter is not 22 |
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* @exception InvalidArgumentException if the parameter |
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* contains a value other than from Bcrypts base 64 encoding table |
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*/ |
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private static byte[] DecodeSaltString(string saltString) |
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{ |
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char[] saltChars = saltString.ToCharArray(); |
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MemoryStream mOut = new MemoryStream(16); |
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byte b1, b2, b3, b4; |
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if (saltChars.Length != 22)// bcrypt salt must be 22 (16 bytes) |
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throw new DataLengthException("Invalid base64 salt length: " + saltChars.Length + " , 22 required."); |
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// check string for invalid characters: |
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for (int i = 0; i < saltChars.Length; i++) |
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{ |
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int value = saltChars[i]; |
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if (value > 122 || value < 46 || (value > 57 && value < 65)) |
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throw new ArgumentException("Salt string contains invalid character: " + value, "saltString"); |
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} |
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// Padding: add two '\u0000' |
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char[] tmp = new char[22 + 2]; |
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Array.Copy(saltChars, 0, tmp, 0, saltChars.Length); |
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saltChars = tmp; |
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int len = saltChars.Length; |
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for (int i = 0; i < len; i += 4) |
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{ |
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b1 = DecodingTable[saltChars[i]]; |
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b2 = DecodingTable[saltChars[i + 1]]; |
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b3 = DecodingTable[saltChars[i + 2]]; |
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b4 = DecodingTable[saltChars[i + 3]]; |
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mOut.WriteByte((byte)((b1 << 2) | (b2 >> 4))); |
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mOut.WriteByte((byte)((b2 << 4) | (b3 >> 2))); |
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mOut.WriteByte((byte)((b3 << 6) | b4)); |
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} |
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byte[] saltBytes = mOut.ToArray(); |
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// truncate: |
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byte[] tmpSalt = new byte[16]; |
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Array.Copy(saltBytes, 0, tmpSalt, 0, tmpSalt.Length); |
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saltBytes = tmpSalt; |
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return saltBytes; |
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} |
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} |
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} |
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#pragma warning restore |
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#endif
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