Source Code Cross Referenced for JCrypt.java in  » Source-Control » gruntspud » gruntspud » Java Source Code / Java DocumentationJava Source Code and Java Documentation

Java Source Code / Java Documentation
1. 6.0 JDK Core
2. 6.0 JDK Modules
3. 6.0 JDK Modules com.sun
4. 6.0 JDK Modules com.sun.java
5. 6.0 JDK Modules sun
6. 6.0 JDK Platform
7. Ajax
8. Apache Harmony Java SE
9. Aspect oriented
10. Authentication Authorization
11. Blogger System
12. Build
13. Byte Code
14. Cache
15. Chart
16. Chat
17. Code Analyzer
18. Collaboration
19. Content Management System
20. Database Client
21. Database DBMS
22. Database JDBC Connection Pool
23. Database ORM
24. Development
25. EJB Server geronimo
26. EJB Server GlassFish
27. EJB Server JBoss 4.2.1
28. EJB Server resin 3.1.5
29. ERP CRM Financial
30. ESB
31. Forum
32. GIS
33. Graphic Library
34. Groupware
35. HTML Parser
36. IDE
37. IDE Eclipse
38. IDE Netbeans
39. Installer
40. Internationalization Localization
41. Inversion of Control
42. Issue Tracking
43. J2EE
44. JBoss
45. JMS
46. JMX
47. Library
48. Mail Clients
49. Net
50. Parser
51. PDF
52. Portal
53. Profiler
54. Project Management
55. Report
56. RSS RDF
57. Rule Engine
58. Science
59. Scripting
60. Search Engine
61. Security
62. Sevlet Container
63. Source Control
64. Swing Library
65. Template Engine
66. Test Coverage
67. Testing
68. UML
69. Web Crawler
70. Web Framework
71. Web Mail
72. Web Server
73. Web Services
74. Web Services apache cxf 2.0.1
75. Web Services AXIS2
76. Wiki Engine
77. Workflow Engines
78. XML
79. XML UI
Java
Java Tutorial
Java Open Source
Jar File Download
Java Articles
Java Products
Java by API
Photoshop Tutorials
Maya Tutorials
Flash Tutorials
3ds-Max Tutorials
Illustrator Tutorials
GIMP Tutorials
C# / C Sharp
C# / CSharp Tutorial
C# / CSharp Open Source
ASP.Net
ASP.NET Tutorial
JavaScript DHTML
JavaScript Tutorial
JavaScript Reference
HTML / CSS
HTML CSS Reference
C / ANSI-C
C Tutorial
C++
C++ Tutorial
Ruby
PHP
Python
Python Tutorial
Python Open Source
SQL Server / T-SQL
SQL Server / T-SQL Tutorial
Oracle PL / SQL
Oracle PL/SQL Tutorial
PostgreSQL
SQL / MySQL
MySQL Tutorial
VB.Net
VB.Net Tutorial
Flash / Flex / ActionScript
VBA / Excel / Access / Word
XML
XML Tutorial
Microsoft Office PowerPoint 2007 Tutorial
Microsoft Office Excel 2007 Tutorial
Microsoft Office Word 2007 Tutorial
Java Source Code / Java Documentation » Source Control » gruntspud » gruntspud 
Source Cross Referenced  Class Diagram Java Document (Java Doc) 


001:        /****************************************************************************
002:         * jcrypt.java
003:         *
004:         * Java-based implementation of the unix crypt command
005:         *
006:         * Based upon C source code written by Eric Young, eay@psych.uq.oz.au
007:         *
008:         ****************************************************************************/package gruntspud;
009:
010:        /**
011:         * DOCUMENT ME!
012:         *
013:         * @author $author$
014:         */
015:        public class JCrypt {
016:            private static final int ITERATIONS = 16;
017:            private static final int[] con_salt = { 0x00, 0x00, 0x00, 0x00,
018:                    0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
019:                    0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
020:                    0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
021:                    0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
022:                    0x00, 0x00, 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
023:                    0x08, 0x09, 0x0A, 0x0B, 0x05, 0x06, 0x07, 0x08, 0x09, 0x0A,
024:                    0x0B, 0x0C, 0x0D, 0x0E, 0x0F, 0x10, 0x11, 0x12, 0x13, 0x14,
025:                    0x15, 0x16, 0x17, 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E,
026:                    0x1F, 0x20, 0x21, 0x22, 0x23, 0x24, 0x25, 0x20, 0x21, 0x22,
027:                    0x23, 0x24, 0x25, 0x26, 0x27, 0x28, 0x29, 0x2A, 0x2B, 0x2C,
028:                    0x2D, 0x2E, 0x2F, 0x30, 0x31, 0x32, 0x33, 0x34, 0x35, 0x36,
029:                    0x37, 0x38, 0x39, 0x3A, 0x3B, 0x3C, 0x3D, 0x3E, 0x3F, 0x00,
030:                    0x00, 0x00, 0x00, 0x00, };
031:            private static final boolean[] shifts2 = { false, false, true,
032:                    true, true, true, true, true, false, true, true, true,
033:                    true, true, true, false };
034:            private static final int[][] skb = {
035:                    {
036:
037:                    /* for C bits (numbered as per FIPS 46) 1 2 3 4 5 6 */
038:                    0x00000000, 0x00000010, 0x20000000, 0x20000010, 0x00010000,
039:                            0x00010010, 0x20010000, 0x20010010, 0x00000800,
040:                            0x00000810, 0x20000800, 0x20000810, 0x00010800,
041:                            0x00010810, 0x20010800, 0x20010810, 0x00000020,
042:                            0x00000030, 0x20000020, 0x20000030, 0x00010020,
043:                            0x00010030, 0x20010020, 0x20010030, 0x00000820,
044:                            0x00000830, 0x20000820, 0x20000830, 0x00010820,
045:                            0x00010830, 0x20010820, 0x20010830, 0x00080000,
046:                            0x00080010, 0x20080000, 0x20080010, 0x00090000,
047:                            0x00090010, 0x20090000, 0x20090010, 0x00080800,
048:                            0x00080810, 0x20080800, 0x20080810, 0x00090800,
049:                            0x00090810, 0x20090800, 0x20090810, 0x00080020,
050:                            0x00080030, 0x20080020, 0x20080030, 0x00090020,
051:                            0x00090030, 0x20090020, 0x20090030, 0x00080820,
052:                            0x00080830, 0x20080820, 0x20080830, 0x00090820,
053:                            0x00090830, 0x20090820, 0x20090830, },
054:                    {
055:
056:                    /* for C bits (numbered as per FIPS 46) 7 8 10 11 12 13 */
057:                    0x00000000, 0x02000000, 0x00002000, 0x02002000, 0x00200000,
058:                            0x02200000, 0x00202000, 0x02202000, 0x00000004,
059:                            0x02000004, 0x00002004, 0x02002004, 0x00200004,
060:                            0x02200004, 0x00202004, 0x02202004, 0x00000400,
061:                            0x02000400, 0x00002400, 0x02002400, 0x00200400,
062:                            0x02200400, 0x00202400, 0x02202400, 0x00000404,
063:                            0x02000404, 0x00002404, 0x02002404, 0x00200404,
064:                            0x02200404, 0x00202404, 0x02202404, 0x10000000,
065:                            0x12000000, 0x10002000, 0x12002000, 0x10200000,
066:                            0x12200000, 0x10202000, 0x12202000, 0x10000004,
067:                            0x12000004, 0x10002004, 0x12002004, 0x10200004,
068:                            0x12200004, 0x10202004, 0x12202004, 0x10000400,
069:                            0x12000400, 0x10002400, 0x12002400, 0x10200400,
070:                            0x12200400, 0x10202400, 0x12202400, 0x10000404,
071:                            0x12000404, 0x10002404, 0x12002404, 0x10200404,
072:                            0x12200404, 0x10202404, 0x12202404, },
073:                    {
074:
075:                    /* for C bits (numbered as per FIPS 46) 14 15 16 17 19 20 */
076:                    0x00000000, 0x00000001, 0x00040000, 0x00040001, 0x01000000,
077:                            0x01000001, 0x01040000, 0x01040001, 0x00000002,
078:                            0x00000003, 0x00040002, 0x00040003, 0x01000002,
079:                            0x01000003, 0x01040002, 0x01040003, 0x00000200,
080:                            0x00000201, 0x00040200, 0x00040201, 0x01000200,
081:                            0x01000201, 0x01040200, 0x01040201, 0x00000202,
082:                            0x00000203, 0x00040202, 0x00040203, 0x01000202,
083:                            0x01000203, 0x01040202, 0x01040203, 0x08000000,
084:                            0x08000001, 0x08040000, 0x08040001, 0x09000000,
085:                            0x09000001, 0x09040000, 0x09040001, 0x08000002,
086:                            0x08000003, 0x08040002, 0x08040003, 0x09000002,
087:                            0x09000003, 0x09040002, 0x09040003, 0x08000200,
088:                            0x08000201, 0x08040200, 0x08040201, 0x09000200,
089:                            0x09000201, 0x09040200, 0x09040201, 0x08000202,
090:                            0x08000203, 0x08040202, 0x08040203, 0x09000202,
091:                            0x09000203, 0x09040202, 0x09040203, },
092:                    {
093:
094:                    /* for C bits (numbered as per FIPS 46) 21 23 24 26 27 28 */
095:                    0x00000000, 0x00100000, 0x00000100, 0x00100100, 0x00000008,
096:                            0x00100008, 0x00000108, 0x00100108, 0x00001000,
097:                            0x00101000, 0x00001100, 0x00101100, 0x00001008,
098:                            0x00101008, 0x00001108, 0x00101108, 0x04000000,
099:                            0x04100000, 0x04000100, 0x04100100, 0x04000008,
100:                            0x04100008, 0x04000108, 0x04100108, 0x04001000,
101:                            0x04101000, 0x04001100, 0x04101100, 0x04001008,
102:                            0x04101008, 0x04001108, 0x04101108, 0x00020000,
103:                            0x00120000, 0x00020100, 0x00120100, 0x00020008,
104:                            0x00120008, 0x00020108, 0x00120108, 0x00021000,
105:                            0x00121000, 0x00021100, 0x00121100, 0x00021008,
106:                            0x00121008, 0x00021108, 0x00121108, 0x04020000,
107:                            0x04120000, 0x04020100, 0x04120100, 0x04020008,
108:                            0x04120008, 0x04020108, 0x04120108, 0x04021000,
109:                            0x04121000, 0x04021100, 0x04121100, 0x04021008,
110:                            0x04121008, 0x04021108, 0x04121108, },
111:                    {
112:
113:                    /* for D bits (numbered as per FIPS 46) 1 2 3 4 5 6 */
114:                    0x00000000, 0x10000000, 0x00010000, 0x10010000, 0x00000004,
115:                            0x10000004, 0x00010004, 0x10010004, 0x20000000,
116:                            0x30000000, 0x20010000, 0x30010000, 0x20000004,
117:                            0x30000004, 0x20010004, 0x30010004, 0x00100000,
118:                            0x10100000, 0x00110000, 0x10110000, 0x00100004,
119:                            0x10100004, 0x00110004, 0x10110004, 0x20100000,
120:                            0x30100000, 0x20110000, 0x30110000, 0x20100004,
121:                            0x30100004, 0x20110004, 0x30110004, 0x00001000,
122:                            0x10001000, 0x00011000, 0x10011000, 0x00001004,
123:                            0x10001004, 0x00011004, 0x10011004, 0x20001000,
124:                            0x30001000, 0x20011000, 0x30011000, 0x20001004,
125:                            0x30001004, 0x20011004, 0x30011004, 0x00101000,
126:                            0x10101000, 0x00111000, 0x10111000, 0x00101004,
127:                            0x10101004, 0x00111004, 0x10111004, 0x20101000,
128:                            0x30101000, 0x20111000, 0x30111000, 0x20101004,
129:                            0x30101004, 0x20111004, 0x30111004, },
130:                    {
131:
132:                    /* for D bits (numbered as per FIPS 46) 8 9 11 12 13 14 */
133:                    0x00000000, 0x08000000, 0x00000008, 0x08000008, 0x00000400,
134:                            0x08000400, 0x00000408, 0x08000408, 0x00020000,
135:                            0x08020000, 0x00020008, 0x08020008, 0x00020400,
136:                            0x08020400, 0x00020408, 0x08020408, 0x00000001,
137:                            0x08000001, 0x00000009, 0x08000009, 0x00000401,
138:                            0x08000401, 0x00000409, 0x08000409, 0x00020001,
139:                            0x08020001, 0x00020009, 0x08020009, 0x00020401,
140:                            0x08020401, 0x00020409, 0x08020409, 0x02000000,
141:                            0x0A000000, 0x02000008, 0x0A000008, 0x02000400,
142:                            0x0A000400, 0x02000408, 0x0A000408, 0x02020000,
143:                            0x0A020000, 0x02020008, 0x0A020008, 0x02020400,
144:                            0x0A020400, 0x02020408, 0x0A020408, 0x02000001,
145:                            0x0A000001, 0x02000009, 0x0A000009, 0x02000401,
146:                            0x0A000401, 0x02000409, 0x0A000409, 0x02020001,
147:                            0x0A020001, 0x02020009, 0x0A020009, 0x02020401,
148:                            0x0A020401, 0x02020409, 0x0A020409, },
149:                    {
150:
151:                    /* for D bits (numbered as per FIPS 46) 16 17 18 19 20 21 */
152:                    0x00000000, 0x00000100, 0x00080000, 0x00080100, 0x01000000,
153:                            0x01000100, 0x01080000, 0x01080100, 0x00000010,
154:                            0x00000110, 0x00080010, 0x00080110, 0x01000010,
155:                            0x01000110, 0x01080010, 0x01080110, 0x00200000,
156:                            0x00200100, 0x00280000, 0x00280100, 0x01200000,
157:                            0x01200100, 0x01280000, 0x01280100, 0x00200010,
158:                            0x00200110, 0x00280010, 0x00280110, 0x01200010,
159:                            0x01200110, 0x01280010, 0x01280110, 0x00000200,
160:                            0x00000300, 0x00080200, 0x00080300, 0x01000200,
161:                            0x01000300, 0x01080200, 0x01080300, 0x00000210,
162:                            0x00000310, 0x00080210, 0x00080310, 0x01000210,
163:                            0x01000310, 0x01080210, 0x01080310, 0x00200200,
164:                            0x00200300, 0x00280200, 0x00280300, 0x01200200,
165:                            0x01200300, 0x01280200, 0x01280300, 0x00200210,
166:                            0x00200310, 0x00280210, 0x00280310, 0x01200210,
167:                            0x01200310, 0x01280210, 0x01280310, },
168:                    {
169:
170:                    /* for D bits (numbered as per FIPS 46) 22 23 24 25 27 28 */
171:                    0x00000000, 0x04000000, 0x00040000, 0x04040000, 0x00000002,
172:                            0x04000002, 0x00040002, 0x04040002, 0x00002000,
173:                            0x04002000, 0x00042000, 0x04042000, 0x00002002,
174:                            0x04002002, 0x00042002, 0x04042002, 0x00000020,
175:                            0x04000020, 0x00040020, 0x04040020, 0x00000022,
176:                            0x04000022, 0x00040022, 0x04040022, 0x00002020,
177:                            0x04002020, 0x00042020, 0x04042020, 0x00002022,
178:                            0x04002022, 0x00042022, 0x04042022, 0x00000800,
179:                            0x04000800, 0x00040800, 0x04040800, 0x00000802,
180:                            0x04000802, 0x00040802, 0x04040802, 0x00002800,
181:                            0x04002800, 0x00042800, 0x04042800, 0x00002802,
182:                            0x04002802, 0x00042802, 0x04042802, 0x00000820,
183:                            0x04000820, 0x00040820, 0x04040820, 0x00000822,
184:                            0x04000822, 0x00040822, 0x04040822, 0x00002820,
185:                            0x04002820, 0x00042820, 0x04042820, 0x00002822,
186:                            0x04002822, 0x00042822, 0x04042822, }, };
187:            private static final int[][] SPtrans = {
188:                    {
189:
190:                    /* nibble 0 */
191:                    0x00820200, 0x00020000, 0x80800000, 0x80820200, 0x00800000,
192:                            0x80020200, 0x80020000, 0x80800000, 0x80020200,
193:                            0x00820200, 0x00820000, 0x80000200, 0x80800200,
194:                            0x00800000, 0x00000000, 0x80020000, 0x00020000,
195:                            0x80000000, 0x00800200, 0x00020200, 0x80820200,
196:                            0x00820000, 0x80000200, 0x00800200, 0x80000000,
197:                            0x00000200, 0x00020200, 0x80820000, 0x00000200,
198:                            0x80800200, 0x80820000, 0x00000000, 0x00000000,
199:                            0x80820200, 0x00800200, 0x80020000, 0x00820200,
200:                            0x00020000, 0x80000200, 0x00800200, 0x80820000,
201:                            0x00000200, 0x00020200, 0x80800000, 0x80020200,
202:                            0x80000000, 0x80800000, 0x00820000, 0x80820200,
203:                            0x00020200, 0x00820000, 0x80800200, 0x00800000,
204:                            0x80000200, 0x80020000, 0x00000000, 0x00020000,
205:                            0x00800000, 0x80800200, 0x00820200, 0x80000000,
206:                            0x80820000, 0x00000200, 0x80020200, },
207:                    {
208:
209:                    /* nibble 1 */
210:                    0x10042004, 0x00000000, 0x00042000, 0x10040000, 0x10000004,
211:                            0x00002004, 0x10002000, 0x00042000, 0x00002000,
212:                            0x10040004, 0x00000004, 0x10002000, 0x00040004,
213:                            0x10042000, 0x10040000, 0x00000004, 0x00040000,
214:                            0x10002004, 0x10040004, 0x00002000, 0x00042004,
215:                            0x10000000, 0x00000000, 0x00040004, 0x10002004,
216:                            0x00042004, 0x10042000, 0x10000004, 0x10000000,
217:                            0x00040000, 0x00002004, 0x10042004, 0x00040004,
218:                            0x10042000, 0x10002000, 0x00042004, 0x10042004,
219:                            0x00040004, 0x10000004, 0x00000000, 0x10000000,
220:                            0x00002004, 0x00040000, 0x10040004, 0x00002000,
221:                            0x10000000, 0x00042004, 0x10002004, 0x10042000,
222:                            0x00002000, 0x00000000, 0x10000004, 0x00000004,
223:                            0x10042004, 0x00042000, 0x10040000, 0x10040004,
224:                            0x00040000, 0x00002004, 0x10002000, 0x10002004,
225:                            0x00000004, 0x10040000, 0x00042000, },
226:                    {
227:
228:                    /* nibble 2 */
229:                    0x41000000, 0x01010040, 0x00000040, 0x41000040, 0x40010000,
230:                            0x01000000, 0x41000040, 0x00010040, 0x01000040,
231:                            0x00010000, 0x01010000, 0x40000000, 0x41010040,
232:                            0x40000040, 0x40000000, 0x41010000, 0x00000000,
233:                            0x40010000, 0x01010040, 0x00000040, 0x40000040,
234:                            0x41010040, 0x00010000, 0x41000000, 0x41010000,
235:                            0x01000040, 0x40010040, 0x01010000, 0x00010040,
236:                            0x00000000, 0x01000000, 0x40010040, 0x01010040,
237:                            0x00000040, 0x40000000, 0x00010000, 0x40000040,
238:                            0x40010000, 0x01010000, 0x41000040, 0x00000000,
239:                            0x01010040, 0x00010040, 0x41010000, 0x40010000,
240:                            0x01000000, 0x41010040, 0x40000000, 0x40010040,
241:                            0x41000000, 0x01000000, 0x41010040, 0x00010000,
242:                            0x01000040, 0x41000040, 0x00010040, 0x01000040,
243:                            0x00000000, 0x41010000, 0x40000040, 0x41000000,
244:                            0x40010040, 0x00000040, 0x01010000, },
245:                    {
246:
247:                    /* nibble 3 */
248:                    0x00100402, 0x04000400, 0x00000002, 0x04100402, 0x00000000,
249:                            0x04100000, 0x04000402, 0x00100002, 0x04100400,
250:                            0x04000002, 0x04000000, 0x00000402, 0x04000002,
251:                            0x00100402, 0x00100000, 0x04000000, 0x04100002,
252:                            0x00100400, 0x00000400, 0x00000002, 0x00100400,
253:                            0x04000402, 0x04100000, 0x00000400, 0x00000402,
254:                            0x00000000, 0x00100002, 0x04100400, 0x04000400,
255:                            0x04100002, 0x04100402, 0x00100000, 0x04100002,
256:                            0x00000402, 0x00100000, 0x04000002, 0x00100400,
257:                            0x04000400, 0x00000002, 0x04100000, 0x04000402,
258:                            0x00000000, 0x00000400, 0x00100002, 0x00000000,
259:                            0x04100002, 0x04100400, 0x00000400, 0x04000000,
260:                            0x04100402, 0x00100402, 0x00100000, 0x04100402,
261:                            0x00000002, 0x04000400, 0x00100402, 0x00100002,
262:                            0x00100400, 0x04100000, 0x04000402, 0x00000402,
263:                            0x04000000, 0x04000002, 0x04100400, },
264:                    {
265:
266:                    /* nibble 4 */
267:                    0x02000000, 0x00004000, 0x00000100, 0x02004108, 0x02004008,
268:                            0x02000100, 0x00004108, 0x02004000, 0x00004000,
269:                            0x00000008, 0x02000008, 0x00004100, 0x02000108,
270:                            0x02004008, 0x02004100, 0x00000000, 0x00004100,
271:                            0x02000000, 0x00004008, 0x00000108, 0x02000100,
272:                            0x00004108, 0x00000000, 0x02000008, 0x00000008,
273:                            0x02000108, 0x02004108, 0x00004008, 0x02004000,
274:                            0x00000100, 0x00000108, 0x02004100, 0x02004100,
275:                            0x02000108, 0x00004008, 0x02004000, 0x00004000,
276:                            0x00000008, 0x02000008, 0x02000100, 0x02000000,
277:                            0x00004100, 0x02004108, 0x00000000, 0x00004108,
278:                            0x02000000, 0x00000100, 0x00004008, 0x02000108,
279:                            0x00000100, 0x00000000, 0x02004108, 0x02004008,
280:                            0x02004100, 0x00000108, 0x00004000, 0x00004100,
281:                            0x02004008, 0x02000100, 0x00000108, 0x00000008,
282:                            0x00004108, 0x02004000, 0x02000008, },
283:                    {
284:
285:                    /* nibble 5 */
286:                    0x20000010, 0x00080010, 0x00000000, 0x20080800, 0x00080010,
287:                            0x00000800, 0x20000810, 0x00080000, 0x00000810,
288:                            0x20080810, 0x00080800, 0x20000000, 0x20000800,
289:                            0x20000010, 0x20080000, 0x00080810, 0x00080000,
290:                            0x20000810, 0x20080010, 0x00000000, 0x00000800,
291:                            0x00000010, 0x20080800, 0x20080010, 0x20080810,
292:                            0x20080000, 0x20000000, 0x00000810, 0x00000010,
293:                            0x00080800, 0x00080810, 0x20000800, 0x00000810,
294:                            0x20000000, 0x20000800, 0x00080810, 0x20080800,
295:                            0x00080010, 0x00000000, 0x20000800, 0x20000000,
296:                            0x00000800, 0x20080010, 0x00080000, 0x00080010,
297:                            0x20080810, 0x00080800, 0x00000010, 0x20080810,
298:                            0x00080800, 0x00080000, 0x20000810, 0x20000010,
299:                            0x20080000, 0x00080810, 0x00000000, 0x00000800,
300:                            0x20000010, 0x20000810, 0x20080800, 0x20080000,
301:                            0x00000810, 0x00000010, 0x20080010, },
302:                    {
303:
304:                    /* nibble 6 */
305:                    0x00001000, 0x00000080, 0x00400080, 0x00400001, 0x00401081,
306:                            0x00001001, 0x00001080, 0x00000000, 0x00400000,
307:                            0x00400081, 0x00000081, 0x00401000, 0x00000001,
308:                            0x00401080, 0x00401000, 0x00000081, 0x00400081,
309:                            0x00001000, 0x00001001, 0x00401081, 0x00000000,
310:                            0x00400080, 0x00400001, 0x00001080, 0x00401001,
311:                            0x00001081, 0x00401080, 0x00000001, 0x00001081,
312:                            0x00401001, 0x00000080, 0x00400000, 0x00001081,
313:                            0x00401000, 0x00401001, 0x00000081, 0x00001000,
314:                            0x00000080, 0x00400000, 0x00401001, 0x00400081,
315:                            0x00001081, 0x00001080, 0x00000000, 0x00000080,
316:                            0x00400001, 0x00000001, 0x00400080, 0x00000000,
317:                            0x00400081, 0x00400080, 0x00001080, 0x00000081,
318:                            0x00001000, 0x00401081, 0x00400000, 0x00401080,
319:                            0x00000001, 0x00001001, 0x00401081, 0x00400001,
320:                            0x00401080, 0x00401000, 0x00001001, },
321:                    {
322:
323:                    /* nibble 7 */
324:                    0x08200020, 0x08208000, 0x00008020, 0x00000000, 0x08008000,
325:                            0x00200020, 0x08200000, 0x08208020, 0x00000020,
326:                            0x08000000, 0x00208000, 0x00008020, 0x00208020,
327:                            0x08008020, 0x08000020, 0x08200000, 0x00008000,
328:                            0x00208020, 0x00200020, 0x08008000, 0x08208020,
329:                            0x08000020, 0x00000000, 0x00208000, 0x08000000,
330:                            0x00200000, 0x08008020, 0x08200020, 0x00200000,
331:                            0x00008000, 0x08208000, 0x00000020, 0x00200000,
332:                            0x00008000, 0x08000020, 0x08208020, 0x00008020,
333:                            0x08000000, 0x00000000, 0x00208000, 0x08200020,
334:                            0x08008020, 0x08008000, 0x00200020, 0x08208000,
335:                            0x00000020, 0x00200020, 0x08008000, 0x08208020,
336:                            0x00200000, 0x08200000, 0x08000020, 0x00208000,
337:                            0x00008020, 0x08008020, 0x08200000, 0x00000020,
338:                            0x08208000, 0x00208020, 0x00000000, 0x08000000,
339:                            0x08200020, 0x00008000, 0x00208020 } };
340:            private static final int[] cov_2char = { 0x2E, 0x2F, 0x30, 0x31,
341:                    0x32, 0x33, 0x34, 0x35, 0x36, 0x37, 0x38, 0x39, 0x41, 0x42,
342:                    0x43, 0x44, 0x45, 0x46, 0x47, 0x48, 0x49, 0x4A, 0x4B, 0x4C,
343:                    0x4D, 0x4E, 0x4F, 0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56,
344:                    0x57, 0x58, 0x59, 0x5A, 0x61, 0x62, 0x63, 0x64, 0x65, 0x66,
345:                    0x67, 0x68, 0x69, 0x6A, 0x6B, 0x6C, 0x6D, 0x6E, 0x6F, 0x70,
346:                    0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78, 0x79, 0x7A };
347:
348:            private JCrypt() {
349:            }
350:
351:            private static final int byteToUnsigned(byte b) {
352:                int value = (int) b;
353:
354:                return ((value >= 0) ? value : (value + 256));
355:            }
356:
357:            private static int fourBytesToInt(byte[] b, int offset) {
358:                int value;
359:
360:                value = byteToUnsigned(b[offset++]);
361:                value |= (byteToUnsigned(b[offset++]) << 8);
362:                value |= (byteToUnsigned(b[offset++]) << 16);
363:                value |= (byteToUnsigned(b[offset++]) << 24);
364:
365:                return (value);
366:            }
367:
368:            private static final void intToFourBytes(int iValue, byte[] b,
369:                    int offset) {
370:                b[offset++] = (byte) ((iValue) & 0xff);
371:                b[offset++] = (byte) ((iValue >>> 8) & 0xff);
372:                b[offset++] = (byte) ((iValue >>> 16) & 0xff);
373:                b[offset++] = (byte) ((iValue >>> 24) & 0xff);
374:            }
375:
376:            private static final void PERM_OP(int a, int b, int n, int m,
377:                    int[] results) {
378:                int t;
379:
380:                t = ((a >>> n) ^ b) & m;
381:                a ^= (t << n);
382:                b ^= t;
383:
384:                results[0] = a;
385:                results[1] = b;
386:            }
387:
388:            private static final int HPERM_OP(int a, int n, int m) {
389:                int t;
390:
391:                t = ((a << (16 - n)) ^ a) & m;
392:                a = a ^ t ^ (t >>> (16 - n));
393:
394:                return (a);
395:            }
396:
397:            private static int[] des_set_key(byte[] key) {
398:                int[] schedule = new int[ITERATIONS * 2];
399:
400:                int c = fourBytesToInt(key, 0);
401:                int d = fourBytesToInt(key, 4);
402:
403:                int[] results = new int[2];
404:
405:                PERM_OP(d, c, 4, 0x0f0f0f0f, results);
406:                d = results[0];
407:                c = results[1];
408:
409:                c = HPERM_OP(c, -2, 0xcccc0000);
410:                d = HPERM_OP(d, -2, 0xcccc0000);
411:
412:                PERM_OP(d, c, 1, 0x55555555, results);
413:                d = results[0];
414:                c = results[1];
415:
416:                PERM_OP(c, d, 8, 0x00ff00ff, results);
417:                c = results[0];
418:                d = results[1];
419:
420:                PERM_OP(d, c, 1, 0x55555555, results);
421:                d = results[0];
422:                c = results[1];
423:
424:                d = (((d & 0x000000ff) << 16) | (d & 0x0000ff00)
425:                        | ((d & 0x00ff0000) >>> 16) | ((c & 0xf0000000) >>> 4));
426:                c &= 0x0fffffff;
427:
428:                int s;
429:                int t;
430:                int j = 0;
431:
432:                for (int i = 0; i < ITERATIONS; i++) {
433:                    if (shifts2[i]) {
434:                        c = (c >>> 2) | (c << 26);
435:                        d = (d >>> 2) | (d << 26);
436:                    } else {
437:                        c = (c >>> 1) | (c << 27);
438:                        d = (d >>> 1) | (d << 27);
439:                    }
440:
441:                    c &= 0x0fffffff;
442:                    d &= 0x0fffffff;
443:
444:                    s = skb[0][(c) & 0x3f]
445:                            | skb[1][((c >>> 6) & 0x03) | ((c >>> 7) & 0x3c)]
446:                            | skb[2][((c >>> 13) & 0x0f) | ((c >>> 14) & 0x30)]
447:                            | skb[3][((c >>> 20) & 0x01) | ((c >>> 21) & 0x06)
448:                                    | ((c >>> 22) & 0x38)];
449:
450:                    t = skb[4][(d) & 0x3f]
451:                            | skb[5][((d >>> 7) & 0x03) | ((d >>> 8) & 0x3c)]
452:                            | skb[6][(d >>> 15) & 0x3f]
453:                            | skb[7][((d >>> 21) & 0x0f) | ((d >>> 22) & 0x30)];
454:
455:                    schedule[j++] = ((t << 16) | (s & 0x0000ffff)) & 0xffffffff;
456:                    s = ((s >>> 16) | (t & 0xffff0000));
457:
458:                    s = (s << 4) | (s >>> 28);
459:                    schedule[j++] = s & 0xffffffff;
460:                }
461:
462:                return (schedule);
463:            }
464:
465:            private static final int D_ENCRYPT(int L, int R, int S, int E0,
466:                    int E1, int[] s) {
467:                int t;
468:                int u;
469:                int v;
470:
471:                v = R ^ (R >>> 16);
472:                u = v & E0;
473:                v = v & E1;
474:                u = (u ^ (u << 16)) ^ R ^ s[S];
475:                t = (v ^ (v << 16)) ^ R ^ s[S + 1];
476:                t = (t >>> 4) | (t << 28);
477:
478:                L ^= (SPtrans[1][(t) & 0x3f] | SPtrans[3][(t >>> 8) & 0x3f]
479:                        | SPtrans[5][(t >>> 16) & 0x3f]
480:                        | SPtrans[7][(t >>> 24) & 0x3f]
481:                        | SPtrans[0][(u) & 0x3f] | SPtrans[2][(u >>> 8) & 0x3f]
482:                        | SPtrans[4][(u >>> 16) & 0x3f] | SPtrans[6][(u >>> 24) & 0x3f]);
483:
484:                return (L);
485:            }
486:
487:            private static final int[] body(int[] schedule, int Eswap0,
488:                    int Eswap1) {
489:                int left = 0;
490:                int right = 0;
491:                int t = 0;
492:
493:                for (int j = 0; j < 25; j++) {
494:                    for (int i = 0; i < (ITERATIONS * 2); i += 4) {
495:                        left = D_ENCRYPT(left, right, i, Eswap0, Eswap1,
496:                                schedule);
497:                        right = D_ENCRYPT(right, left, i + 2, Eswap0, Eswap1,
498:                                schedule);
499:                    }
500:
501:                    t = left;
502:                    left = right;
503:                    right = t;
504:                }
505:
506:                t = right;
507:
508:                right = (left >>> 1) | (left << 31);
509:                left = (t >>> 1) | (t << 31);
510:
511:                left &= 0xffffffff;
512:                right &= 0xffffffff;
513:
514:                int[] results = new int[2];
515:
516:                PERM_OP(right, left, 1, 0x55555555, results);
517:                right = results[0];
518:                left = results[1];
519:
520:                PERM_OP(left, right, 8, 0x00ff00ff, results);
521:                left = results[0];
522:                right = results[1];
523:
524:                PERM_OP(right, left, 2, 0x33333333, results);
525:                right = results[0];
526:                left = results[1];
527:
528:                PERM_OP(left, right, 16, 0x0000ffff, results);
529:                left = results[0];
530:                right = results[1];
531:
532:                PERM_OP(right, left, 4, 0x0f0f0f0f, results);
533:                right = results[0];
534:                left = results[1];
535:
536:                int[] out = new int[2];
537:
538:                out[0] = left;
539:                out[1] = right;
540:
541:                return (out);
542:            }
543:
544:            /**
545:             * DOCUMENT ME!
546:             *
547:             * @param salt DOCUMENT ME!
548:             * @param original DOCUMENT ME!
549:             *
550:             * @return DOCUMENT ME!
551:             */
552:            public static final String crypt(String salt, String original) {
553:                while (salt.length() < 2) {
554:                    salt += "A";
555:
556:                }
557:                StringBuffer buffer = new StringBuffer("             ");
558:
559:                char charZero = salt.charAt(0);
560:                char charOne = salt.charAt(1);
561:
562:                buffer.setCharAt(0, charZero);
563:                buffer.setCharAt(1, charOne);
564:
565:                int Eswap0 = con_salt[(int) charZero];
566:                int Eswap1 = con_salt[(int) charOne] << 4;
567:
568:                byte[] key = new byte[8];
569:
570:                for (int i = 0; i < key.length; i++) {
571:                    key[i] = (byte) 0;
572:
573:                }
574:                for (int i = 0; (i < key.length) && (i < original.length()); i++) {
575:                    int iChar = (int) original.charAt(i);
576:
577:                    key[i] = (byte) (iChar << 1);
578:                }
579:
580:                int[] schedule = des_set_key(key);
581:                int[] out = body(schedule, Eswap0, Eswap1);
582:
583:                byte[] b = new byte[9];
584:
585:                intToFourBytes(out[0], b, 0);
586:                intToFourBytes(out[1], b, 4);
587:                b[8] = 0;
588:
589:                for (int i = 2, y = 0, u = 0x80; i < 13; i++) {
590:                    for (int j = 0, c = 0; j < 6; j++) {
591:                        c <<= 1;
592:
593:                        if (((int) b[y] & u) != 0) {
594:                            c |= 1;
595:
596:                        }
597:                        u >>>= 1;
598:
599:                        if (u == 0) {
600:                            y++;
601:                            u = 0x80;
602:                        }
603:
604:                        buffer.setCharAt(i, (char) cov_2char[c]);
605:                    }
606:                }
607:
608:                return (buffer.toString());
609:            }
610:
611:            /**
612:             * DOCUMENT ME!
613:             *
614:             * @param args DOCUMENT ME!
615:             */
616:            public static void main(String[] args) {
617:                if (args.length >= 2) {
618:                    System.out.println("[" + args[0] + "] [" + args[1]
619:                            + "] => [" + JCrypt.crypt(args[0], args[1]) + "]");
620:                }
621:            }
622:        }
www.java2java.com | Contact Us
Copyright 2009 - 12 Demo Source and Support. All rights reserved.
All other trademarks are property of their respective owners.