applies clang-format
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@ -42,7 +42,6 @@
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#include <iss/plugin/loader.h>
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#endif
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#include "sc_core_adapter_if.h"
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#include <iss/arch/tgc_mapper.h>
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#include <scc/report.h>
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#include <util/ities.h>
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#include <iostream>
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@ -208,8 +207,7 @@ core_complex<BUSWIDTH>::core_complex(sc_module_name const& name)
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}
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#endif
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::init() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::init() {
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trc = new core_trace();
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ibus.register_invalidate_direct_mem_ptr([=](uint64_t start, uint64_t end) -> void {
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auto lut_entry = fetch_lut.getEntry(start);
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@ -254,19 +252,16 @@ void core_complex<BUSWIDTH>::init() {
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#endif
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}
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template <unsigned int BUSWIDTH>
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core_complex<BUSWIDTH>::~core_complex() {
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template <unsigned int BUSWIDTH> core_complex<BUSWIDTH>::~core_complex() {
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delete cpu;
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delete trc;
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for(auto* p : plugin_list)
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delete p;
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::trace(sc_trace_file* trf) const {}
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::trace(sc_trace_file* trf) const {}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::before_end_of_elaboration() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::before_end_of_elaboration() {
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SCCDEBUG(SCMOD) << "instantiating iss::arch::tgf with " << GET_PROP_VALUE(backend) << " backend";
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// cpu = scc::make_unique<core_wrapper>(this);
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cpu = new core_wrapper(this);
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@ -307,8 +302,7 @@ void core_complex<BUSWIDTH>::before_end_of_elaboration() {
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}
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::start_of_simulation() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::start_of_simulation() {
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// quantum_keeper.reset();
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if(GET_PROP_VALUE(elf_file).size() > 0) {
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istringstream is(GET_PROP_VALUE(elf_file));
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@ -331,8 +325,7 @@ void core_complex<BUSWIDTH>::start_of_simulation() {
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}
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}
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template <unsigned int BUSWIDTH>
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bool core_complex<BUSWIDTH>::disass_output(uint64_t pc, const std::string instr_str) {
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template <unsigned int BUSWIDTH> bool core_complex<BUSWIDTH>::disass_output(uint64_t pc, const std::string instr_str) {
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if(trc->m_db == nullptr)
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return false;
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if(trc->tr_handle.is_active())
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@ -346,8 +339,7 @@ bool core_complex<BUSWIDTH>::disass_output(uint64_t pc, const std::string instr_
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return true;
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::forward() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::forward() {
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#ifndef CWR_SYSTEMC
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set_clock_period(clk_i.read());
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#else
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@ -356,30 +348,24 @@ void core_complex<BUSWIDTH>::forward() {
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#endif
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::set_clock_period(sc_core::sc_time period) {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::set_clock_period(sc_core::sc_time period) {
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curr_clk = period;
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if(period == SC_ZERO_TIME)
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cpu->set_interrupt_execution(true);
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::rst_cb() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::rst_cb() {
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if(rst_i.read())
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cpu->set_interrupt_execution(true);
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::sw_irq_cb() { cpu->local_irq(3, sw_irq_i.read()); }
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::sw_irq_cb() { cpu->local_irq(3, sw_irq_i.read()); }
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::timer_irq_cb() { cpu->local_irq(7, timer_irq_i.read()); }
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::timer_irq_cb() { cpu->local_irq(7, timer_irq_i.read()); }
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::ext_irq_cb() { cpu->local_irq(11, ext_irq_i.read()); }
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::ext_irq_cb() { cpu->local_irq(11, ext_irq_i.read()); }
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::local_irq_cb() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::local_irq_cb() {
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for(auto i = 0U; i < local_irq_i.size(); ++i) {
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if(local_irq_i[i].event()) {
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cpu->local_irq(16 + i, local_irq_i[i].read());
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@ -387,8 +373,7 @@ void core_complex<BUSWIDTH>::local_irq_cb() {
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}
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}
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template <unsigned int BUSWIDTH>
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void core_complex<BUSWIDTH>::run() {
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template <unsigned int BUSWIDTH> void core_complex<BUSWIDTH>::run() {
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wait(SC_ZERO_TIME); // separate from elaboration phase
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do {
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wait(SC_ZERO_TIME);
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@ -406,8 +391,7 @@ void core_complex<BUSWIDTH>::run() {
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sc_stop();
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}
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template <unsigned int BUSWIDTH>
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bool core_complex<BUSWIDTH>::read_mem(uint64_t addr, unsigned length, uint8_t* const data, bool is_fetch) {
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template <unsigned int BUSWIDTH> bool core_complex<BUSWIDTH>::read_mem(uint64_t addr, unsigned length, uint8_t* const data, bool is_fetch) {
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auto& dmi_lut = is_fetch ? fetch_lut : read_lut;
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auto lut_entry = dmi_lut.getEntry(addr);
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if(lut_entry.get_granted_access() != tlm::tlm_dmi::DMI_ACCESS_NONE && addr + length <= lut_entry.get_end_address() + 1) {
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@ -465,8 +449,7 @@ bool core_complex<BUSWIDTH>::read_mem(uint64_t addr, unsigned length, uint8_t* c
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}
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}
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template <unsigned int BUSWIDTH>
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bool core_complex<BUSWIDTH>::write_mem(uint64_t addr, unsigned length, const uint8_t* const data) {
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template <unsigned int BUSWIDTH> bool core_complex<BUSWIDTH>::write_mem(uint64_t addr, unsigned length, const uint8_t* const data) {
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auto lut_entry = write_lut.getEntry(addr);
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if(lut_entry.get_granted_access() != tlm::tlm_dmi::DMI_ACCESS_NONE && addr + length <= lut_entry.get_end_address() + 1) {
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auto offset = addr - lut_entry.get_start_address();
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@ -514,8 +497,7 @@ bool core_complex<BUSWIDTH>::write_mem(uint64_t addr, unsigned length, const uin
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}
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}
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template <unsigned int BUSWIDTH>
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bool core_complex<BUSWIDTH>::read_mem_dbg(uint64_t addr, unsigned length, uint8_t* const data) {
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template <unsigned int BUSWIDTH> bool core_complex<BUSWIDTH>::read_mem_dbg(uint64_t addr, unsigned length, uint8_t* const data) {
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tlm::tlm_generic_payload gp;
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gp.set_command(tlm::TLM_READ_COMMAND);
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gp.set_address(addr);
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@ -525,8 +507,7 @@ bool core_complex<BUSWIDTH>::read_mem_dbg(uint64_t addr, unsigned length, uint8_
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return dbus->transport_dbg(gp) == length;
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}
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template <unsigned int BUSWIDTH>
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bool core_complex<BUSWIDTH>::write_mem_dbg(uint64_t addr, unsigned length, const uint8_t* const data) {
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template <unsigned int BUSWIDTH> bool core_complex<BUSWIDTH>::write_mem_dbg(uint64_t addr, unsigned length, const uint8_t* const data) {
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write_buf.resize(length);
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std::copy(data, data + length, write_buf.begin()); // need to copy as TLM does not guarantee data integrity
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tlm::tlm_generic_payload gp;
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