2009-03-12 16:28:45 +00:00
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/* main-threefish-test.c */
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/*
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This file is part of the AVR-Crypto-Lib.
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Copyright (C) 2008 Daniel Otte (daniel.otte@rub.de)
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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/*
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* threefish test-suit
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*
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*/
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#include "config.h"
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2009-11-05 05:33:56 +00:00
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2009-07-29 09:49:57 +00:00
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#include "uart_i.h"
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2009-03-12 16:28:45 +00:00
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#include "debug.h"
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#include "ubi.h"
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#include "cli.h"
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#include "performance_test.h"
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#include <stdint.h>
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#include <string.h>
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#include <stdlib.h>
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char* algo_name = "UBI-Threefish";
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/*****************************************************************************
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* additional validation-functions *
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*****************************************************************************/
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void testrun_stdtest_ubi256(uint16_t outsize){
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ubi256_ctx_t ctx;
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skein_config_t conf;
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uint64_t iv[4];
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cli_putstr_P(PSTR("\r\n\r\nTest vectors for UBI (256 bits):"));
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memset(&conf, 0, sizeof(skein_config_t));
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ubi256_init(&ctx, &conf, UBI_TYPE_CFG);
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conf.schema[0] = 'S';
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conf.schema[1] = 'H';
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conf.schema[2] = 'A';
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conf.schema[3] = '3';
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conf.version = 1;
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conf.out_length = outsize;
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ubi256_lastBlock(&ctx, &conf, 256);
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ubi256_ctx2hash(iv, &ctx);
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cli_putstr_P(PSTR("\r\nIV: "));
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cli_hexdump_rev(&(iv[0]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[1]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[2]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[3]), 8);
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}
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void testrun_stdtest_ubi512(uint16_t outsize){
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ubi512_ctx_t ctx;
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skein_config_t conf;
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uint64_t iv[8];
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uint8_t null[UBI512_BLOCKSIZE_B];
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cli_putstr_P(PSTR("\r\n\r\nTest vectors for UBI (512 bits):"));
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memset(&conf, 0, sizeof(skein_config_t));
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memset(null, 0, UBI512_BLOCKSIZE_B);
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ubi512_init(&ctx, null, UBI_TYPE_CFG);
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conf.schema[0] = 'S';
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conf.schema[1] = 'H';
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conf.schema[2] = 'A';
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conf.schema[3] = '3';
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conf.version = 1;
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conf.out_length = outsize;
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ubi512_lastBlock(&ctx, &conf, 256);
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ubi512_ctx2hash(iv, &ctx);
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cli_putstr_P(PSTR("\r\nIV: "));
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cli_hexdump_rev(&(iv[0]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[1]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[2]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[3]), 8);
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cli_putstr_P(PSTR("\r\n "));
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cli_hexdump_rev(&(iv[4]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[5]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[6]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[7]), 8);
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}
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void testrun_stdtest_ubi1024(uint16_t outsize){
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ubi1024_ctx_t ctx;
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skein_config_t conf;
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uint64_t iv[16];
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uint8_t null[UBI1024_BLOCKSIZE_B];
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cli_putstr_P(PSTR("\r\n\r\nTest vectors for UBI (1024 bits):"));
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memset(&conf, 0, sizeof(skein_config_t));
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memset(null, 0, UBI1024_BLOCKSIZE_B);
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ubi1024_init(&ctx, null, UBI_TYPE_CFG);
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conf.schema[0] = 'S';
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conf.schema[1] = 'H';
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conf.schema[2] = 'A';
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conf.schema[3] = '3';
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conf.version = 1;
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conf.out_length = outsize;
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ubi1024_lastBlock(&ctx, &conf, 256);
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ubi1024_ctx2hash(iv, &ctx);
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cli_putstr_P(PSTR("\r\nIV: "));
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cli_hexdump_rev(&(iv[0]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[1]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[2]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[3]), 8);
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cli_putstr_P(PSTR("\r\n "));
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cli_hexdump_rev(&(iv[4]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[5]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[6]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[7]), 8);
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cli_putstr_P(PSTR("\r\n "));
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cli_hexdump_rev(&(iv[8]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[9]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[10]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[11]), 8);
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cli_putstr_P(PSTR("\r\n "));
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cli_hexdump_rev(&(iv[12]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[13]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[14]), 8);
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cli_putstr_P(PSTR(" "));
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cli_hexdump_rev(&(iv[15]), 8);
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}
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void testrun_stdtest_ubi(void){
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testrun_stdtest_ubi256(128);
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testrun_stdtest_ubi256(160);
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testrun_stdtest_ubi256(224);
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testrun_stdtest_ubi256(256);
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testrun_stdtest_ubi512(128);
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testrun_stdtest_ubi512(160);
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testrun_stdtest_ubi512(224);
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testrun_stdtest_ubi512(256);
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testrun_stdtest_ubi512(384);
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testrun_stdtest_ubi512(512);
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testrun_stdtest_ubi1024(384);
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testrun_stdtest_ubi1024(512);
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testrun_stdtest_ubi1024(1024);
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}
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/*****************************************************************************
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* main *
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*****************************************************************************/
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const char nessie_str[] PROGMEM = "nessie";
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const char test_str[] PROGMEM = "test";
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const char performance_str[] PROGMEM = "performance";
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const char echo_str[] PROGMEM = "echo";
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cmdlist_entry_t cmdlist[] PROGMEM = {
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// { nessie_str, NULL, testrun_nessie_noekeon},
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{ test_str, NULL, testrun_stdtest_ubi},
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// { performance_str, NULL, testrun_performance_noekeon},
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{ echo_str, (void*)1, (void_fpt)echo_ctrl},
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{ NULL, NULL, NULL}
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};
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int main (void){
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DEBUG_INIT();
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2009-07-29 09:49:57 +00:00
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cli_rx = (cli_rx_fpt)uart0_getc;
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cli_tx = (cli_tx_fpt)uart0_putc;
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2009-03-12 16:28:45 +00:00
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for(;;){
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cli_putstr_P(PSTR("\r\n\r\nCrypto-VS ("));
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cli_putstr(algo_name);
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cli_putstr_P(PSTR(")\r\nloaded and running\r\n"));
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cmd_interface(cmdlist);
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}
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}
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