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📄 main.cpp

📁 面积最小的AES高级加密算法实现
💻 CPP
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//////////////////////////////////////////////////////////////////////////                                                              ////////  Main simulation file                                        ////////                                                              ////////  This file is part of the SystemC AES                        ////////                                                              ////////  Description:                                                ////////  Connect all the modules and begin the simulation            ////////                                                              ////////  To Do:                                                      ////////   - done                                                     ////////                                                              ////////  Author(s):                                                  ////////      - Javier Castillo, jcastilo@opencores.org               ////////                                                              //////////////////////////////////////////////////////////////////////////////                                                              //////// Copyright (C) 2000 Authors and OPENCORES.ORG                 ////////                                                              //////// This source file may be used and distributed without         //////// restriction provided that this copyright statement is not    //////// removed from the file and that any derivative work contains  //////// the original copyright notice and the associated disclaimer. ////////                                                              //////// This source file is free software; you can redistribute it   //////// and/or modify it under the terms of the GNU Lesser General   //////// Public License as published by the Free Software Foundation; //////// either version 2.1 of the License, or (at your option) any   //////// later version.                                               ////////                                                              //////// This source is distributed in the hope that it will be       //////// useful, but WITHOUT ANY WARRANTY; without even the implied   //////// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR      //////// PURPOSE.  See the GNU Lesser General Public License for more //////// details.                                                     ////////                                                              //////// You should have received a copy of the GNU Lesser General    //////// Public License along with this source; if not, download it   //////// from http://www.opencores.org/lgpl.shtml                     ////////                                                              ////////////////////////////////////////////////////////////////////////////// CVS Revision History//// $Log: main.cpp,v $// Revision 1.1  2005/02/14 16:18:23  jcastillo// aes192 uploaded//#include "systemc.h"#include "iostream.h"#include "aes.h"#include "aesfunctions.h"#include "aesmodel.h"#include "stimulus.h"#include "adapt.h"#include "checker.h"	int sc_main(int argc, char* argv[]){	    sc_clock clk("clk",20);	 	test *t;    aes_transactor *tr;    aes *ae1;	aesmodel *am1;	adapter *ad1;	checker *ch1;		t=new test("testbench");    tr=new aes_transactor("aes_transactor");    am1=new aesmodel("aes_C_model");	ae1=new aes("aes");	ad1=new adapter("adapter");	ch1=new checker("checker");			t->transactor(*tr);		sc_signal<bool> reset;	sc_signal<bool> rt_load;	sc_signal<bool> rt_decrypt;	sc_signal<sc_biguint<128> > rt_data_i;	sc_signal<sc_biguint<192> > rt_key;			sc_signal<sc_biguint<128> > rt_data_o;	sc_signal<bool> rt_ready;		sc_fifo<sc_biguint<128> > rt_aes_data_ck;	sc_fifo<sc_biguint<128> > c_aes_data_ck;		sc_fifo<bool> c_decrypt;	sc_fifo<sc_biguint<192> > c_key;	sc_fifo<sc_biguint<128> > c_data;		ch1->reset(reset);	ch1->rt_aes_data_i(rt_aes_data_ck);	ch1->c_aes_data_i(c_aes_data_ck);			ad1->clk(clk);	ad1->rt_ready_i(rt_ready);	ad1->rt_aes_data_i(rt_data_o);	ad1->rt_aes_data_o(rt_aes_data_ck);		am1->decrypt(c_decrypt);	am1->aes_key_i(c_key);	am1->aes_data_i(c_data);	am1->aes_data_o(c_aes_data_ck);		ae1->clk(clk);    ae1->reset(reset);		ae1->load_i(rt_load);	ae1->decrypt_i(rt_decrypt);	ae1->data_i(rt_data_i);	ae1->key_i(rt_key);	ae1->data_o(rt_data_o);	ae1->ready_o(rt_ready);		tr->clk(clk);    tr->reset(reset);		//Ports to RT model	tr->rt_load_o(rt_load);	tr->rt_decrypt_o(rt_decrypt);	tr->rt_aes_data_o(rt_data_i);	tr->rt_aes_key_o(rt_key);	tr->rt_aes_ready_i(rt_ready);	//Ports to C model	tr->c_decrypt_o(c_decrypt);	tr->c_aes_key_o(c_key);	tr->c_aes_data_o(c_data);	  		sc_start(-1);		return 0;	    }

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