Unaligned jalr raise exception, ecall raise exception
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@ -141,7 +141,7 @@ bool BASE_ISA::Exec_JAL() const {
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return true;
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}
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bool BASE_ISA::Exec_JALR() const {
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bool BASE_ISA::Exec_JALR() {
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uint32_t mem_addr = 0;
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int rd, rs1;
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int new_pc, old_pc;
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@ -154,12 +154,21 @@ bool BASE_ISA::Exec_JALR() const {
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regs->setValue(rd, old_pc + 4);
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new_pc = static_cast<int32_t>((regs->getValue(rs1) + mem_addr) & 0xFFFFFFFE);
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regs->setPC(new_pc);
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if (log->getLogLevel() >= Log::INFO) {
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log->SC_log(Log::INFO) << "JALR: x" << std::dec << rd << " <- 0x"
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<< std::hex << old_pc + 4 << " PC <- 0x" << new_pc << "\n";
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}
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if( (new_pc & 0x00000003) != 0) {
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// not aligned
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log->SC_log(Log::ERROR) << "JALR: x" << std::dec << rd << " <- 0x"
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<< std::hex << old_pc + 4 << " PC <- 0x" << new_pc << "\n";
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log->SC_log(Log::ERROR) << "JALR : Exception\n";
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RaiseException(EXCEPTION_CAUSE_LOAD_ADDR_MISALIGN, m_instr);
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} else {
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regs->setPC(new_pc);
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if (log->getLogLevel() >= Log::INFO) {
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log->SC_log(Log::INFO) << "JALR: x" << std::dec << rd << " <- 0x"
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<< std::hex << old_pc + 4 << " PC <- 0x" << new_pc << "\n";
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}
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}
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return true;
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}
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@ -912,7 +921,7 @@ bool BASE_ISA::Exec_FENCE() const {
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return true;
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}
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bool BASE_ISA::Exec_ECALL() const {
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bool BASE_ISA::Exec_ECALL() {
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log->SC_log(Log::INFO) << "ECALL" << "\n" << std::flush ;
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std::cout << "\n" << "ECALL Instruction called, stopping simulation"
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@ -921,6 +930,7 @@ bool BASE_ISA::Exec_ECALL() const {
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std::cout << "Simulation time " << sc_core::sc_time_stamp() << "\n";
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perf->dump();
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#if 0
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uint32_t gp_value = regs->getValue(Registers::gp);
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if (gp_value == 1) {
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std::cout << "GP value is 1, test result is OK" << "\n";
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@ -929,22 +939,24 @@ bool BASE_ISA::Exec_ECALL() const {
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}
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sc_core::sc_stop();
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#else
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RaiseException(11, m_instr);
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#endif
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return true;
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}
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bool BASE_ISA::Exec_EBREAK() {
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log->SC_log(Log::INFO) << "EBREAK" << "\n";
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std::cout << "\n" << "EBRAK Instruction called, dumping information"
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log->SC_log(Log::INFO) << "EBREAK" << "\n" << std::flush;
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std::cout << "\n" << "EBREAK Instruction called, dumping information"
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<< "\n";
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regs->dump();
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std::cout << "Simulation time " << sc_core::sc_time_stamp() << "\n";
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perf->dump();
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sc_core::sc_stop();
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RaiseException(11, m_instr);
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return true;
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return false;
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}
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bool BASE_ISA::Exec_CSRRW() const {
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@ -1295,9 +1307,8 @@ bool BASE_ISA::process_instruction(Instruction *inst, bool *breakpoint) {
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std::cout << "ECALL" << std::endl;
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break;
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case OP_EBREAK:
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Exec_EBREAK();
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*breakpoint = true;
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std::cout << "EBREAK" << std::endl;
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PC_not_affected = Exec_EBREAK();
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// *breakpoint = true;
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break;
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case OP_CSRRW:
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Exec_CSRRW();
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