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[/] [apbtoaes128/] [trunk/] [pli/] [aes_bfm_reset.h] - Rev 8
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////////////////////////////////////////////////////////////////// //// //// //// AES CORE BLOCK //// //// //// //// This file is part of the APB to AES128 project //// //// http://www.opencores.org/cores/apbtoaes128/ //// //// //// //// Description //// //// Implementation of APB IP core according to //// //// aes128_spec IP core specification document. //// //// //// //// To Do: Things are right here but always all block can suffer changes //// //// //// //// //// //// Author(s): - Felipe Fernandes Da Costa, fefe2560@gmail.com //// ///////////////////////////////////////////////////////////////// //// //// //// Copyright (C) 2009 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 //// //// /////////////////////////////////////////////////////////////////// static int aes_reset_calltf(char*user_data) { vpiHandle PRESETn = vpi_handle_by_name("AES_GLADIC_tb.PRESETn", NULL); std::random_device rd_counter; std::uniform_int_distribution<int> counter(1,50); std::mt19937 rd; std::uniform_real_distribution<> time(0,50); v_reset.format=vpiIntVal; //printf("STATE_RESET : %i\n",STATE_RESET); //printf("MAX_RESET_TIMES : %i\n",MAX_RESET_TIMES); //printf("RESET_GENERATED : %i\n",RESET_GENERATED); switch(STATE_RESET) { case IDLE: if(RESET_GENERATED > MAX_RESET_TIMES) { STATE_RESET = IDLE; }else { STATE_RESET = ENTER_RESET; v_reset.value.integer = 0; t_reset.type = vpiScaledRealTime; t_reset.real = time(rd); v_wr.format=vpiIntVal; v_reset.value.integer = 0; vpi_put_value(PRESETn, &v_reset, &t_reset, vpiTransportDelay); counter_reset_wait = counter(rd_counter); } counter_reset_enter=0; counter_reset_wait=0; break; case ENTER_RESET: if(counter_reset_enter >= counter_reset_wait) { v_reset.value.integer = 0; t_reset.type = vpiScaledRealTime; t_reset.real = time(rd); v_wr.format=vpiIntVal; v_reset.value.integer = 1; vpi_put_value(PRESETn,&v_reset, &t_reset, vpiTransportDelay); STATE_RESET = GET_OUT_RESET; } counter_reset_enter++; break; case GET_OUT_RESET: counter_reset_wait=0; counter_reset_enter=0; STATE_RESET = WAIT_RESET; counter_reset_wait = counter(rd_counter); break; case WAIT_RESET: if(counter_reset_enter >= counter_reset_wait) { STATE_RESET = IDLE; counter_reset_wait=0; counter_reset_enter=0; RESET_GENERATED++; } counter_reset_enter++; break; } return 0; }
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