334 lines
11 KiB
C++
334 lines
11 KiB
C++
/*
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* Copyright (c) 2020, Itamar S. <itamar8910@gmail.com>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Assertions.h>
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#include <AK/ByteBuffer.h>
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#include <AK/OwnPtr.h>
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#include <AK/Platform.h>
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#include <AK/StringBuilder.h>
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#include <LibC/sys/arch/i386/regs.h>
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#include <LibCore/ArgsParser.h>
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#include <LibDebug/DebugInfo.h>
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#include <LibDebug/DebugSession.h>
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#include <LibLine/Editor.h>
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#include <LibX86/Disassembler.h>
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#include <LibX86/Instruction.h>
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#include <signal.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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RefPtr<Line::Editor> editor;
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OwnPtr<Debug::DebugSession> g_debug_session;
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static void handle_sigint(int)
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{
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outln("Debugger: SIGINT");
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// The destructor of DebugSession takes care of detaching
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g_debug_session = nullptr;
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}
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static void handle_print_registers(const PtraceRegisters& regs)
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{
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#if ARCH(I386)
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outln("eax={:p} ebx={:p} ecx={:p} edx={:p}", regs.eax, regs.ebx, regs.ecx, regs.edx);
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outln("esp={:p} ebp={:p} esi={:p} edi={:p}", regs.esp, regs.ebp, regs.esi, regs.edi);
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outln("eip={:p} eflags={:p}", regs.eip, regs.eflags);
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#else
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outln("rax={:p} rbx={:p} rcx={:p} rdx={:p}", regs.rax, regs.rbx, regs.rcx, regs.rdx);
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outln("rsp={:p} rbp={:p} rsi={:p} rdi={:p}", regs.rsp, regs.rbp, regs.rsi, regs.rdi);
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outln("r8 ={:p} r9 ={:p} r10={:p} r11={:p}", regs.r8, regs.r9, regs.r10, regs.r11);
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outln("r12={:p} r13={:p} r14={:p} r15={:p}", regs.r12, regs.r13, regs.r14, regs.r15);
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outln("rip={:p} rflags={:p}", regs.rip, regs.rflags);
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#endif
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}
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static bool handle_disassemble_command(const String& command, void* first_instruction)
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{
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auto parts = command.split(' ');
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size_t number_of_instructions_to_disassemble = 5;
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if (parts.size() == 2) {
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auto number = parts[1].to_uint();
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if (!number.has_value())
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return false;
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number_of_instructions_to_disassemble = number.value();
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}
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// FIXME: Instead of using a fixed "dump_size",
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// we can feed instructions to the disassembler one by one
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constexpr size_t dump_size = 0x100;
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ByteBuffer code;
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for (size_t i = 0; i < dump_size / sizeof(u32); ++i) {
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auto value = g_debug_session->peek(reinterpret_cast<u32*>(first_instruction) + i);
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if (!value.has_value())
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break;
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if (code.try_append(&value, sizeof(u32)).is_error())
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break;
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}
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X86::SimpleInstructionStream stream(code.data(), code.size());
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X86::Disassembler disassembler(stream);
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for (size_t i = 0; i < number_of_instructions_to_disassemble; ++i) {
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auto offset = stream.offset();
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auto insn = disassembler.next();
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if (!insn.has_value())
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break;
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outln(" {:p} <+{}>:\t{}", offset + reinterpret_cast<size_t>(first_instruction), offset, insn.value().to_string(offset));
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}
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return true;
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}
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static bool handle_backtrace_command(const PtraceRegisters& regs)
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{
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#if ARCH(I386)
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auto ebp_val = regs.ebp;
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auto eip_val = regs.eip;
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outln("Backtrace:");
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while (g_debug_session->peek((u32*)eip_val).has_value() && g_debug_session->peek((u32*)ebp_val).has_value()) {
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auto eip_symbol = g_debug_session->symbolicate(eip_val);
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auto source_position = g_debug_session->get_source_position(eip_val);
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String symbol_location = (eip_symbol.has_value() && eip_symbol->symbol != "") ? eip_symbol->symbol : "???";
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if (source_position.has_value()) {
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outln("{:p} in {} ({}:{})", eip_val, symbol_location, source_position->file_path, source_position->line_number);
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} else {
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outln("{:p} in {}", eip_val, symbol_location);
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}
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auto next_eip = g_debug_session->peek((u32*)(ebp_val + 4));
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auto next_ebp = g_debug_session->peek((u32*)ebp_val);
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eip_val = (u32)next_eip.value();
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ebp_val = (u32)next_ebp.value();
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}
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#else
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(void)regs;
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TODO();
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#endif
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return true;
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}
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static bool insert_breakpoint_at_address(FlatPtr address)
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{
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return g_debug_session->insert_breakpoint((void*)address);
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}
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static bool insert_breakpoint_at_source_position(const String& file, size_t line)
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{
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auto result = g_debug_session->insert_breakpoint(file, line);
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if (!result.has_value()) {
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warnln("Could not insert breakpoint at {}:{}", file, line);
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return false;
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}
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outln("Breakpoint inserted [{}:{} ({}:{:p})]", result.value().filename, result.value().line_number, result.value().library_name, result.value().address);
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return true;
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}
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static bool insert_breakpoint_at_symbol(const String& symbol)
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{
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auto result = g_debug_session->insert_breakpoint(symbol);
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if (!result.has_value()) {
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warnln("Could not insert breakpoint at symbol: {}", symbol);
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return false;
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}
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outln("Breakpoint inserted [{}:{:p}]", result.value().library_name, result.value().address);
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return true;
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}
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static bool handle_breakpoint_command(const String& command)
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{
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auto parts = command.split(' ');
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if (parts.size() != 2)
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return false;
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auto argument = parts[1];
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if (argument.is_empty())
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return false;
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if (argument.contains(":")) {
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auto source_arguments = argument.split(':');
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if (source_arguments.size() != 2)
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return false;
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auto line = source_arguments[1].to_uint();
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if (!line.has_value())
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return false;
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auto file = source_arguments[0];
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return insert_breakpoint_at_source_position(file, line.value());
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}
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if ((argument.starts_with("0x"))) {
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return insert_breakpoint_at_address(strtoul(argument.characters() + 2, nullptr, 16));
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}
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return insert_breakpoint_at_symbol(argument);
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}
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static bool handle_examine_command(const String& command)
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{
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auto parts = command.split(' ');
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if (parts.size() != 2)
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return false;
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auto argument = parts[1];
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if (argument.is_empty())
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return false;
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if (!(argument.starts_with("0x"))) {
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return false;
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}
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FlatPtr address = strtoul(argument.characters() + 2, nullptr, 16);
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auto res = g_debug_session->peek((u32*)address);
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if (!res.has_value()) {
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outln("Could not examine memory at address {:p}", address);
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return true;
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}
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outln("{:#x}", res.value());
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return true;
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}
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static void print_help()
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{
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out("Options:\n"
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"cont - Continue execution\n"
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"si - step to the next instruction\n"
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"sl - step to the next source line\n"
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"line - show the position of the current instruction in the source code\n"
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"regs - Print registers\n"
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"dis [number of instructions] - Print disassembly\n"
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"bp <address/symbol/file:line> - Insert a breakpoint\n"
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"bt - show backtrace for current thread\n"
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"x <address> - examine dword in memory\n");
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}
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int main(int argc, char** argv)
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{
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editor = Line::Editor::construct();
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if (pledge("stdio proc ptrace exec rpath tty sigaction cpath unix", nullptr) < 0) {
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perror("pledge");
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return 1;
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}
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const char* command = nullptr;
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Core::ArgsParser args_parser;
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args_parser.add_positional_argument(command,
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"The program to be debugged, along with its arguments",
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"program", Core::ArgsParser::Required::Yes);
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args_parser.parse(argc, argv);
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auto result = Debug::DebugSession::exec_and_attach(command);
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if (!result) {
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warnln("Failed to start debugging session for: \"{}\"", command);
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exit(1);
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}
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g_debug_session = result.release_nonnull();
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struct sigaction sa {
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};
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sa.sa_handler = handle_sigint;
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sigaction(SIGINT, &sa, nullptr);
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Debug::DebugInfo::SourcePosition previous_source_position;
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bool in_step_line = false;
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g_debug_session->run(Debug::DebugSession::DesiredInitialDebugeeState::Stopped, [&](Debug::DebugSession::DebugBreakReason reason, Optional<PtraceRegisters> optional_regs) {
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if (reason == Debug::DebugSession::DebugBreakReason::Exited) {
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outln("Program exited.");
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return Debug::DebugSession::DebugDecision::Detach;
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}
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VERIFY(optional_regs.has_value());
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const PtraceRegisters& regs = optional_regs.value();
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#if ARCH(I386)
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const FlatPtr ip = regs.eip;
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#else
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const FlatPtr ip = regs.rip;
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#endif
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auto symbol_at_ip = g_debug_session->symbolicate(ip);
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auto source_position = g_debug_session->get_source_position(ip);
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if (in_step_line) {
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bool no_source_info = !source_position.has_value();
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if (no_source_info || source_position.value() != previous_source_position) {
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if (no_source_info)
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outln("No source information for current instruction! stopping.");
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in_step_line = false;
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} else {
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return Debug::DebugSession::DebugDecision::SingleStep;
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}
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}
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if (symbol_at_ip.has_value())
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outln("Program is stopped at: {:p} ({}:{})", ip, symbol_at_ip.value().library_name, symbol_at_ip.value().symbol);
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else
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outln("Program is stopped at: {:p}", ip);
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if (source_position.has_value()) {
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previous_source_position = source_position.value();
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outln("Source location: {}:{}", source_position.value().file_path, source_position.value().line_number);
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} else {
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outln("(No source location information for the current instruction)");
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}
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for (;;) {
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auto command_result = editor->get_line("(sdb) ");
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if (command_result.is_error())
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return Debug::DebugSession::DebugDecision::Detach;
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auto& command = command_result.value();
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bool success = false;
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Optional<Debug::DebugSession::DebugDecision> decision;
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if (command.is_empty() && !editor->history().is_empty()) {
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command = editor->history().last().entry;
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}
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if (command == "cont") {
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decision = Debug::DebugSession::DebugDecision::Continue;
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success = true;
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} else if (command == "si") {
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decision = Debug::DebugSession::DebugDecision::SingleStep;
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success = true;
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} else if (command == "sl") {
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if (source_position.has_value()) {
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decision = Debug::DebugSession::DebugDecision::SingleStep;
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in_step_line = true;
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success = true;
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} else {
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outln("No source location information for the current instruction");
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}
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} else if (command == "regs") {
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handle_print_registers(regs);
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success = true;
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} else if (command.starts_with("dis")) {
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success = handle_disassemble_command(command, reinterpret_cast<void*>(ip));
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} else if (command.starts_with("bp")) {
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success = handle_breakpoint_command(command);
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} else if (command.starts_with("x")) {
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success = handle_examine_command(command);
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} else if (command.starts_with("bt")) {
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success = handle_backtrace_command(regs);
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}
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if (success && !command.is_empty()) {
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// Don't add repeated commands to history
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if (editor->history().is_empty() || editor->history().last().entry != command)
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editor->add_to_history(command);
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}
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if (!success) {
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print_help();
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}
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if (decision.has_value())
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return decision.value();
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}
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});
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}
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