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#include <systemc.h>
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SC_MODULE (RegFile) {
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sc_in_clk clk;
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sc_in <bool> regWrite;
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sc_in <sc_uint<3>> r1;
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sc_in <sc_uint<3>> r2;
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sc_in <sc_uint<3>> r3;
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sc_in <sc_int<8>> data;
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sc_out <sc_int<8>> Rr1;
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sc_out <sc_int<8>> Rr2;
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//testing wires
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sc_out <sc_int<8>> r[8];
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/*
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** module global variables
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*/
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sc_int<8> reg[8]; // 8 registers in register file
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int c = 0;
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SC_CTOR (RegFile){
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SC_METHOD (process);
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sensitive << regWrite << r1 << r2 << r3 << data;
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}
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void process () {
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// whether the regWrite is 0 or not, the Rr1 and Rr2 have the corresponding output!
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Rr1.write(reg[r1.read()]);
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Rr2.write(reg[r2.read()]);
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if(regWrite.read() == 1){
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reg[r3.read()] = data.read();
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}
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for (int i=0; i< 8; i++){
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r[i].write(reg[i]);
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}
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if (c++ == 32) {
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reg[0] = 3;
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}
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}
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};
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/*
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* @ASCK
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*/
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#include <systemc.h>
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/*
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** GLOBAL EVENT FOR MICRO-ACC
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*/
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//////////////////////////
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sc_event micro_acc_ev;///
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////////////////////////
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/*
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** GLOBAL EVENT FOR ACC-MEMORY -> READ MODE
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*/
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//////////////////////////
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sc_event acc_mem_read_ev;///
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////////////////////////
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/*
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** GLOBAL EVENT FOR ACC-MEMORY -> WRITE MODE
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*/
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//////////////////////////
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sc_event acc_mem_write_ev;///
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////////////////////////
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/*
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** variable for checking if IF/ID/EXE/WB should have been stopped after call=1 on memory-access stage or not!
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*/
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bool now_is_call = false;
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#include <./Micro.cpp>
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#include <./Bus.cpp>
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#include <./Memory.cpp>
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#include <./Acc.cpp>
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SC_MODULE(System)
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{
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sc_in_clk clk;
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sc_in_clk clk_bus;
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// testing wires
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sc_out<sc_uint<14>> pc;
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sc_out<sc_uint<5>> test_aluop;
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sc_out<sc_int<8>> reg_dump[8];
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/*
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