396 lines
10 KiB
C++
396 lines
10 KiB
C++
#include "bus.h"
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#include "console.h"
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#include "cpu.h"
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#include "gen.h"
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#include "log.h"
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#include "utils.h"
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#if defined(ESP32)
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void setBootLoader(bus *const b);
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#endif
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// returns size of instruction (in bytes)
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int disassemble(cpu *const c, console *const cnsl, const int pc, const bool instruction_only)
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{
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auto data = c->disassemble(pc);
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auto registers = data["registers"];
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auto psw = data["psw"][0];
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std::string instruction_values;
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for(auto iv : data["instruction-values"])
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instruction_values += (instruction_values.empty() ? "" : ",") + iv;
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std::string work_values;
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for(auto wv : data["work-values"])
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work_values += (work_values.empty() ? "" : ",") + wv;
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std::string instruction = data["instruction-text"].at(0);
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std::string MMR0 = data["MMR0"].at(0);
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std::string MMR2 = data["MMR2"].at(0);
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std::string result;
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if (instruction_only)
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result = format("PC: %06o, instr: %s\t%s\t%s",
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pc,
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instruction_values.c_str(),
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instruction.c_str(),
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work_values.c_str()
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);
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else
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result = format("R0: %s, R1: %s, R2: %s, R3: %s, R4: %s, R5: %s, SP: %s, PC: %06o, PSW: %s, instr: %s: %s - MMR0/2: %s/%s",
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registers[0].c_str(), registers[1].c_str(), registers[2].c_str(), registers[3].c_str(), registers[4].c_str(), registers[5].c_str(),
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registers[6].c_str(), pc,
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psw.c_str(),
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instruction_values.c_str(),
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instruction.c_str(),
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MMR0.c_str(), MMR2.c_str()
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);
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#if defined(COMPARE_OUTPUT)
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{
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std::string temp = format("R0: %s, R1: %s, R2: %s, R3: %s, R4: %s, R5: %s, SP: %s, PC: %06o, PSW: %s, instr: %s",
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registers[0].c_str(), registers[1].c_str(), registers[2].c_str(), registers[3].c_str(), registers[4].c_str(), registers[5].c_str(), registers[6].c_str(), pc,
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psw.c_str(),
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data["instruction-values"][0].c_str()
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);
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FILE *fh = fopen("compare.dat", "a+");
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fprintf(fh, "%s\n", temp.c_str());
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fclose(fh);
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}
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#endif
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if (cnsl)
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cnsl->debug(result);
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else
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DOLOG(debug, true, "%s", result.c_str());
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return data["instruction-values"].size() * 2;
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}
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std::map<std::string, std::string> split(const std::vector<std::string> & kv_array, const std::string & splitter)
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{
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std::map<std::string, std::string> out;
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for(auto pair : kv_array) {
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auto kv = split(pair, splitter);
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if (kv.size() == 1)
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out.insert({ kv[0], "" });
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else if (kv.size() == 2)
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out.insert({ kv[0], kv[1] });
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}
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return out;
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}
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void dump_par_pdr(console *const cnsl, bus *const b, const uint16_t pdrs, const uint16_t pars, const std::string & name, const int state)
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{
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if (state == 0 || state == 2)
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cnsl->put_string_lf(name);
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else
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cnsl->put_string_lf(format("%s DISABLED", name.c_str()));
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cnsl->put_string_lf(" PAR PDR");
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for(int i=0; i<8; i++) {
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uint16_t par_value = b->read(pars + i * 2, false, false, true);
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uint16_t pdr_value = b->read(pdrs + i * 2, false, false, true);
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uint16_t pdr_len = (((pdr_value >> 8) & 127) + 1) * 64;
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cnsl->put_string_lf(format("%d] %06o %08o %06o %04o D%d A%d", i, par_value, par_value * 64, pdr_value, pdr_len, !!(pdr_value & 8), pdr_value & 7));
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}
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}
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void mmu_dump(console *const cnsl, bus *const b)
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{
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uint16_t mmr0 = b->getMMR0();
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cnsl->put_string_lf(mmr0 & 1 ? "MMU enabled" : "MMU NOT enabled");
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uint16_t mmr3 = b->getMMR3();
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cnsl->put_string_lf(format("MMR0: %06o", mmr0));
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cnsl->put_string_lf(format("MMR1: %06o", b->getMMR1()));
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cnsl->put_string_lf(format("MMR2: %06o", b->getMMR2()));
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cnsl->put_string_lf(format("MMR3: %06o", mmr3));
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dump_par_pdr(cnsl, b, ADDR_PDR_SV_START, ADDR_PAR_SV_START, "supervisor i-space", 0);
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dump_par_pdr(cnsl, b, ADDR_PDR_SV_START + 020, ADDR_PAR_SV_START + 020, "supervisor d-space", 1 + (!!(mmr3 & 2)));
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dump_par_pdr(cnsl, b, ADDR_PDR_K_START, ADDR_PAR_K_START, "kernel i-space", 0);
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dump_par_pdr(cnsl, b, ADDR_PDR_K_START + 020, ADDR_PAR_K_START + 020, "kernel d-space", 1 + (!!(mmr3 & 4)));
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dump_par_pdr(cnsl, b, ADDR_PDR_U_START, ADDR_PAR_U_START, "user i-space", 0);
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dump_par_pdr(cnsl, b, ADDR_PDR_U_START + 020, ADDR_PAR_U_START + 020, "user d-space", 1 + (!!(mmr3 & 1)));
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}
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void debugger(console *const cnsl, bus *const b, std::atomic_uint32_t *const stop_event, const bool tracing_in)
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{
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int32_t trace_start_addr = -1;
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bool tracing = tracing_in;
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int n_single_step = 1;
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cpu *const c = b->getCpu();
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b->set_debug_mode();
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bool single_step = false;
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while(*stop_event != EVENT_TERMINATE) {
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std::string cmd = cnsl->read_line(format("%d", stop_event->load()));
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auto parts = split(cmd, " ");
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auto kv = split(parts, "=");
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if (parts.empty())
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continue;
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if (cmd == "go") {
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single_step = false;
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*stop_event = EVENT_NONE;
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}
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else if (parts[0] == "single" || parts[0] == "s") {
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single_step = true;
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if (parts.size() == 2)
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n_single_step = atoi(parts[1].c_str());
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else
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n_single_step = 1;
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*stop_event = EVENT_NONE;
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}
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else if ((parts[0] == "sbp" || parts[0] == "cbp") && parts.size() == 2){
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uint16_t pc = std::stoi(parts[1].c_str(), nullptr, 8);
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if (parts[0] == "sbp") {
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c->set_breakpoint(pc);
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cnsl->put_string_lf(format("Set breakpoint at %06o", pc));
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}
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else {
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c->remove_breakpoint(pc);
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cnsl->put_string_lf(format("Clear breakpoint at %06o", pc));
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}
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continue;
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}
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else if (cmd == "lbp") {
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auto bps = c->list_breakpoints();
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cnsl->put_string_lf("Breakpoints:");
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for(auto a : bps) {
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cnsl->put_string(format(" %06o> ", a));
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disassemble(c, cnsl, a, true);
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}
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continue;
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}
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else if (parts[0] == "disassemble" || parts[0] == "d") {
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int pc = kv.find("pc") != kv.end() ? std::stoi(kv.find("pc")->second, nullptr, 8) : c->getPC();
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int n = kv.find("n") != kv.end() ? std::stoi(kv.find("n") ->second, nullptr, 10) : 1;
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cnsl->put_string_lf(format("Disassemble %d instructions starting at %o", n, pc));
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bool show_registers = kv.find("pc") == kv.end();
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for(int i=0; i<n; i++) {
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pc += disassemble(c, cnsl, pc, !show_registers);
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show_registers = false;
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}
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continue;
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}
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else if (parts[0] == "setpc") {
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if (parts.size() == 2) {
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uint16_t new_pc = std::stoi(parts.at(1), nullptr, 8);
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c->setPC(new_pc);
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cnsl->put_string_lf(format("Set PC to %06o", new_pc));
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}
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else {
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cnsl->put_string_lf("setpc requires an (octal address as) parameter");
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}
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continue;
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}
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else if (parts[0] == "setmem") {
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auto a_it = kv.find("a");
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auto v_it = kv.find("v");
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if (a_it == kv.end() || v_it == kv.end())
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cnsl->put_string_lf("setmem: parameter missing?");
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else {
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uint16_t a = std::stoi(a_it->second, nullptr, 8);
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uint8_t v = std::stoi(v_it->second, nullptr, 8);
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c->getBus()->writeByte(a, v);
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cnsl->put_string_lf(format("Set %06o to %03o", a, v));
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}
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continue;
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}
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else if (parts[0] == "trace" || parts[0] == "t") {
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tracing = !tracing;
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cnsl->put_string_lf(format("Tracing set to %s", tracing ? "ON" : "OFF"));
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continue;
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}
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else if (parts[0] == "mmudump") {
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mmu_dump(cnsl, b);
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continue;
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}
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else if (parts[0] == "strace") {
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if (parts.size() != 2) {
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trace_start_addr = -1;
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cnsl->put_string_lf("Tracing start address reset");
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}
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else {
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trace_start_addr = std::stoi(parts[1], nullptr, 8);
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cnsl->put_string_lf(format("Tracing start address set to %06o", trace_start_addr));
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}
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continue;
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}
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else if (parts[0] == "examine" || parts[0] == "e") {
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if (parts.size() < 3)
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cnsl->put_string_lf("parameter missing");
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else {
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int addr = std::stoi(parts[2], nullptr, 8);
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int val = -1;
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int n = parts.size() == 4 ? atoi(parts[3].c_str()) : 1;
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bool word = parts[1] == "w";
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if (parts[1] != "w" && parts[1] != "b") {
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cnsl->put_string_lf("expected b or w");
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continue;
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}
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std::string out;
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for(int i=0; i<n; i++) {
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if (!word)
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val = b->read(addr + i, true, false, true);
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else if (word)
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val = b->read(addr + i, false, false, true);
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if (val == -1) {
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cnsl->put_string_lf(format("Can't read from %06o\n", addr + i));
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break;
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}
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if (n == 1)
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cnsl->put_string_lf(format("value at %06o, octal: %o, hex: %x, dec: %d\n", addr + i, val, val, val));
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if (n > 1) {
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if (i > 0)
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out += " ";
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if (word)
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out += format("%06o", val);
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else
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out += format("%03o", val);
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}
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}
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if (n > 1)
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cnsl->put_string_lf(out);
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}
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continue;
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}
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else if (cmd == "reset" || cmd == "r") {
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#if defined(ESP32)
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ESP.restart();
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#else
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*stop_event = EVENT_NONE;
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c->reset();
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#endif
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continue;
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}
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else if (cmd == "quit" || cmd == "q") {
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#if defined(ESP32)
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ESP.restart();
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#endif
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break;
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}
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else if (cmd == "help" || cmd == "h" || cmd == "?") {
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cnsl->put_string_lf("disassemble/d - show current instruction (pc=/n=)");
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cnsl->put_string_lf("go - run until trap or ^e");
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#if !defined(ESP32)
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cnsl->put_string_lf("quit/q - stop emulator");
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#endif
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cnsl->put_string_lf("examine/e - show memory address (<b|w> <octal address> [<n>])");
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cnsl->put_string_lf("reset/r - reset cpu/bus/etc");
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cnsl->put_string_lf("single/s - run 1 instruction (implicit 'disassemble' command)");
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cnsl->put_string_lf("sbp/cbp/lbp - set/clear/list breakpoint(s)");
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cnsl->put_string_lf("trace/t - toggle tracing");
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cnsl->put_string_lf("strace - start tracing from address - invoke without address to disable");
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cnsl->put_string_lf("mmudump - dump MMU settings (PARs/PDRs)");
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cnsl->put_string_lf("setpc - set PC to value");
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cnsl->put_string_lf("setmem - set memory (a=) to value (v=), both in octal, one byte");
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continue;
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}
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else {
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cnsl->put_string_lf("?");
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continue;
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}
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c->emulation_start();
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*cnsl->get_running_flag() = true;
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while(*stop_event == EVENT_NONE) {
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if (!single_step)
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DOLOG(debug, false, "---");
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c->step_a();
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if (trace_start_addr != -1 && c->getPC() == trace_start_addr)
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tracing = true;
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if (tracing || single_step)
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disassemble(c, single_step ? cnsl : nullptr, c->getPC(), false);
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if (c->check_breakpoint() && !single_step) {
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cnsl->put_string_lf("Breakpoint");
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break;
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}
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c->step_b();
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if (single_step && --n_single_step == 0)
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break;
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}
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*cnsl->get_running_flag() = false;
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if (!single_step) {
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auto speed = c->get_mips_rel_speed();
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cnsl->debug("MIPS: %.2f, relative speed: %.2f%%, instructions executed: %lu", std::get<0>(speed), std::get<1>(speed), std::get<2>(speed));
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}
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if (*stop_event == EVENT_INTERRUPT) {
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single_step = true;
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*stop_event = EVENT_NONE;
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}
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}
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}
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