]> git.cryptolib.org Git - avr-crypto-lib.git/blob - test_src/main-skipjack-test.c
renaming to AVR-Crypto-Lib
[avr-crypto-lib.git] / test_src / main-skipjack-test.c
1 /* main-skipjack-test.c */
2 /*
3     This file is part of the This file is part of the AVR-Crypto-Lib.
4     Copyright (C) 2008  Daniel Otte (daniel.otte@rub.de)
5
6     This program is free software: you can redistribute it and/or modify
7     it under the terms of the GNU General Public License as published by
8     the Free Software Foundation, either version 3 of the License, or
9     (at your option) any later version.
10
11     This program is distributed in the hope that it will be useful,
12     but WITHOUT ANY WARRANTY; without even the implied warranty of
13     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14     GNU General Public License for more details.
15
16     You should have received a copy of the GNU General Public License
17     along with this program.  If not, see <http://www.gnu.org/licenses/>.
18 */
19 /*
20  * skipjack test-suit
21  * 
22 */
23
24 #include "config.h"
25 #include "serial-tools.h"
26 #include "uart.h"
27 #include "debug.h"
28
29 #include "skipjack.h"
30 #include "nessie_bc_test.h"
31 #include "cli.h"
32 #include "performance_test.h"
33
34 #include <stdint.h>
35 #include <string.h>
36 #include <stdlib.h>
37
38
39 char* cipher_name = "Skipjack";
40
41 /*****************************************************************************
42  *  additional validation-functions                                                                                      *
43  *****************************************************************************/
44 void skipjack_genctx_dummy(uint8_t* key, uint16_t keysize, void* ctx){
45         memcpy(ctx, key, 10);
46 }
47
48 void testrun_nessie_skipjack(void){
49         nessie_bc_ctx.blocksize_B =   8;
50         nessie_bc_ctx.keysize_b   =  80;
51         nessie_bc_ctx.name        = cipher_name;
52         nessie_bc_ctx.ctx_size_B  = 10;
53         nessie_bc_ctx.cipher_enc  = (nessie_bc_enc_fpt)skipjack_enc;
54         nessie_bc_ctx.cipher_dec  = (nessie_bc_dec_fpt)skipjack_dec;
55         nessie_bc_ctx.cipher_genctx  = (nessie_bc_gen_fpt)skipjack_genctx_dummy;
56         
57         nessie_bc_run();
58 }
59
60
61 void testrun_performance_skipjack(void){
62         uint64_t t;
63         char str[16];
64         uint8_t key[10], data[8];
65         
66         calibrateTimer();
67         print_overhead();
68         
69         memset(key,  0, 10);
70         memset(data, 0,  8);
71         
72         startTimer(1);
73         skipjack_enc(data, key);
74         t = stopTimer();
75         uart_putstr_P(PSTR("\r\n\tencrypt time: "));
76         ultoa((unsigned long)t, str, 10);
77         uart_putstr(str);
78         
79         
80         startTimer(1);
81         skipjack_dec(data, key);
82         t = stopTimer();
83         uart_putstr_P(PSTR("\r\n\tdecrypt time: "));
84         ultoa((unsigned long)t, str, 10);
85         uart_putstr(str);
86         
87         uart_putstr_P(PSTR("\r\n"));
88 }
89
90 /*****************************************************************************
91  *  self tests                                                                                                                           *
92  *****************************************************************************/
93
94 void testencrypt(uint8_t* block, uint8_t* key){
95         uart_putstr("\r\n==testy-encrypt==\r\n key: ");
96         uart_hexdump(key,10);
97         uart_putstr("\r\n plain: ");
98         uart_hexdump(block,8);
99         skipjack_enc(block,key);
100         uart_putstr("\r\n crypt: ");
101         uart_hexdump(block,8);
102 }
103
104 void testdecrypt(uint8_t* block, uint8_t* key){
105         uart_putstr("\r\n==testy-decrypt==\r\n key: ");
106         uart_hexdump(key,10);
107         uart_putstr("\r\n crypt: ");
108         uart_hexdump(block,8);
109         skipjack_dec(block,key);
110         uart_putstr("\r\n plain: ");
111         uart_hexdump(block,8);
112 }
113
114 void testrun_skipjack(void){
115         uint8_t key[2][10]={
116                              { 0x00, 0x99, 0x88, 0x77, 0x66,
117                                0x55, 0x44, 0x33, 0x22, 0x11 },
118                              { 0x11, 0x22, 0x33, 0x44, 0x55,
119                                0x66, 0x77, 0x88, 0x99, 0x00 }
120                                            };   
121                          
122         uint8_t data[2][8]={
123                                  { 0x33, 0x22, 0x11, 0x00, 
124                                    0xdd, 0xcc, 0xbb, 0xaa },
125                                  { 0xaa, 0xbb, 0xcc, 0xdd,
126                                    0x00, 0x11, 0x22, 0x33 }
127                                            };
128         testencrypt(data[0],key[0]);
129         testdecrypt(data[0],key[0]);
130         testencrypt(data[1],key[1]);
131         testdecrypt(data[1],key[1]);    
132 }
133
134
135
136 /*****************************************************************************
137  *  main                                                                                                                                         *
138  *****************************************************************************/
139
140 int main (void){
141         char str[20];
142
143         DEBUG_INIT();
144         uart_putstr("\r\n");
145
146         uart_putstr("\r\n\r\nCrypto-VS (skipjack)\r\nloaded and running\r\n");
147
148         PGM_P    u   = PSTR("nessie\0test\0performance\0");
149         void_fpt v[] = {testrun_nessie_skipjack, testrun_skipjack, testrun_performance_skipjack};
150
151         while(1){ 
152                 if (!getnextwordn(str,20)){DEBUG_S("DBG: W1\r\n"); goto error;}
153                 if(execcommand_d0_P(str, u, v)<0){
154                         uart_putstr_P(PSTR("\r\nunknown command\r\n"));
155                 }
156                 continue;
157         error:
158                 uart_putstr("ERROR\r\n");
159         }
160         
161 }
162