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https://github.com/FEX-Emu/FEX.git
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`std::filesystem::exists` is particularly gnarly in how it checks to see if the file exists. It allocates memory, it creates lists, it splits things, then eventually checking the status Remove all this overhead to help out minorly for applications that execve a lot.
518 lines
16 KiB
C++
518 lines
16 KiB
C++
/*
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$info$
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tags: Bin|FEXLoader
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desc: Glues the ELF loader, FEXCore and LinuxSyscalls to launch an elf under fex
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$end_info$
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*/
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#include "AOT/AOTGenerator.h"
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#include "Common/ArgumentLoader.h"
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#include "Common/FEXServerClient.h"
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#include "ELFCodeLoader2.h"
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#include "VDSO_Emulation.h"
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#include "Tests/LinuxSyscalls/LinuxAllocator.h"
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#include "Tests/LinuxSyscalls/Syscalls.h"
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#include "Tests/LinuxSyscalls/x32/Syscalls.h"
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#include "Tests/LinuxSyscalls/x64/Syscalls.h"
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#include "Tests/LinuxSyscalls/SignalDelegator.h"
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#include "Linux/Utils/ELFContainer.h"
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#include <FEXCore/Config/Config.h>
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#include <FEXCore/Core/Context.h>
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#include <FEXCore/Core/CoreState.h>
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#include <FEXCore/Utils/Allocator.h>
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#include <FEXCore/Utils/LogManager.h>
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#include <FEXCore/Utils/Telemetry.h>
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#include <FEXCore/Utils/Threads.h>
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#include <FEXCore/Utils/Profiler.h>
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#include <atomic>
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#include <cerrno>
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#include <cstdint>
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#include <cstdio>
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#include <cstdlib>
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#include <cstring>
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#include <elf.h>
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#include <fcntl.h>
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#include <fstream>
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#include <filesystem>
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#include <memory>
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#include <mutex>
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#include <queue>
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#include <set>
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#include <sstream>
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#include <string>
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#include <sys/auxv.h>
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#include <sys/resource.h>
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#include <sys/select.h>
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#include <system_error>
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#include <thread>
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#include <unistd.h>
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#include <utility>
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#include <vector>
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#include <fmt/format.h>
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#include <sys/sysinfo.h>
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#include <sys/signal.h>
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namespace {
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static bool SilentLog;
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static int OutputFD {STDERR_FILENO};
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static bool ExecutedWithFD {false};
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void MsgHandler(LogMan::DebugLevels Level, char const *Message) {
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if (SilentLog) {
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return;
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}
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const char *CharLevel{nullptr};
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switch (Level) {
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case LogMan::NONE:
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CharLevel = "NONE";
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break;
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case LogMan::ASSERT:
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CharLevel = "ASSERT";
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break;
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case LogMan::ERROR:
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CharLevel = "ERROR";
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break;
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case LogMan::DEBUG:
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CharLevel = "DEBUG";
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break;
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case LogMan::INFO:
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CharLevel = "Info";
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break;
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case LogMan::STDOUT:
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CharLevel = "STDOUT";
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break;
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case LogMan::STDERR:
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CharLevel = "STDERR";
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break;
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default:
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CharLevel = "???";
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break;
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}
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const auto Output = fmt::format("[{}] {}\n", CharLevel, Message);
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write(OutputFD, Output.c_str(), Output.size());
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fsync(OutputFD);
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}
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void AssertHandler(char const *Message) {
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if (SilentLog) {
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return;
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}
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const auto Output = fmt::format("[ASSERT] {}\n", Message);
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write(OutputFD, Output.c_str(), Output.size());
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fsync(OutputFD);
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}
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} // Anonymous namespace
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namespace FEXServerLogging {
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int FEXServerFD{};
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void MsgHandler(LogMan::DebugLevels Level, char const *Message) {
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FEXServerClient::MsgHandler(FEXServerFD, Level, Message);
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}
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void AssertHandler(char const *Message) {
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FEXServerClient::AssertHandler(FEXServerFD, Message);
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}
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}
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void InterpreterHandler(std::string *Filename, std::string const &RootFS, std::vector<std::string> *args) {
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// Open the file pointer to the filename and see if we need to find an interpreter
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std::fstream File(*Filename, std::fstream::in | std::fstream::binary);
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if (!File.is_open()) {
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return;
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}
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File.seekg(0, std::fstream::end);
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const auto FileSize = File.tellg();
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File.seekg(0, std::fstream::beg);
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// Is the file large enough for shebang
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if (FileSize <= 2) {
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return;
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}
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// Handle shebang files
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if (File.get() == '#' &&
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File.get() == '!') {
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std::string InterpreterLine;
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std::getline(File, InterpreterLine);
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std::vector<std::string> ShebangArguments{};
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// Shebang line can have a single argument
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std::istringstream InterpreterSS(InterpreterLine);
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std::string Argument;
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while (std::getline(InterpreterSS, Argument, ' ')) {
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if (Argument.empty()) {
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continue;
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}
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ShebangArguments.push_back(std::move(Argument));
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}
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// Executable argument
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std::string &ShebangProgram = ShebangArguments[0];
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// If the filename is absolute then prepend the rootfs
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// If it is relative then don't append the rootfs
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if (ShebangProgram[0] == '/') {
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ShebangProgram = RootFS + ShebangProgram;
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}
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*Filename = ShebangProgram;
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// Insert all the arguments at the start
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args->insert(args->begin(), ShebangArguments.begin(), ShebangArguments.end());
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// Done here
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return;
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}
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}
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void RootFSRedirect(std::string *Filename, std::string const &RootFS) {
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auto RootFSLink = ELFCodeLoader2::ResolveRootfsFile(*Filename, RootFS);
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std::error_code ec{};
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if (std::filesystem::exists(RootFSLink, ec)) {
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*Filename = RootFSLink;
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}
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}
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bool RanAsInterpreter(const char *Program) {
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return ExecutedWithFD || strstr(Program, "FEXInterpreter") != nullptr;
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}
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bool IsInterpreterInstalled() {
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// The interpreter is installed if both the binfmt_misc handlers are available
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// Or if we were originally executed with FD. Which means the interpreter is installed
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return ExecutedWithFD ||
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(access("/proc/sys/fs/binfmt_misc/FEX-x86", F_OK) == 0 &&
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access("/proc/sys/fs/binfmt_misc/FEX-x86_64", F_OK) == 0);
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}
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int main(int argc, char **argv, char **const envp) {
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const bool IsInterpreter = RanAsInterpreter(argv[0]);
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ExecutedWithFD = getauxval(AT_EXECFD) != 0;
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LogMan::Throw::InstallHandler(AssertHandler);
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LogMan::Msg::InstallHandler(MsgHandler);
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auto Program = FEX::Config::LoadConfig(
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IsInterpreter,
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true,
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argc, argv, envp
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);
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if (Program.first.empty()) {
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// Early exit if we weren't passed an argument
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return 0;
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}
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auto Args = FEX::ArgLoader::Get();
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auto ParsedArgs = FEX::ArgLoader::GetParsedArgs();
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// Reload the meta layer
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FEXCore::Config::ReloadMetaLayer();
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FEXCore::Config::Set(FEXCore::Config::CONFIG_IS_INTERPRETER, IsInterpreter ? "1" : "0");
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FEXCore::Config::Set(FEXCore::Config::CONFIG_INTERPRETER_INSTALLED, IsInterpreterInstalled() ? "1" : "0");
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// Early check for process stall
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// Doesn't use CONFIG_ROOTFS and we don't want it to spin up a squashfs instance
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FEX_CONFIG_OPT(StallProcess, STALLPROCESS);
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if (StallProcess) {
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while (1) {
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// Stall this process out forever
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select(0, nullptr, nullptr, nullptr, nullptr);
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}
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}
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// Ensure FEXServer is setup before config options try to pull CONFIG_ROOTFS
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if (!FEXServerClient::SetupClient(argv[0])) {
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LogMan::Msg::EFmt("FEXServerClient: Failure to setup client");
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return -1;
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}
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FEX_CONFIG_OPT(SilentLog, SILENTLOG);
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FEX_CONFIG_OPT(AOTIRCapture, AOTIRCAPTURE);
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FEX_CONFIG_OPT(AOTIRGenerate, AOTIRGENERATE);
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FEX_CONFIG_OPT(AOTIRLoad, AOTIRLOAD);
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FEX_CONFIG_OPT(OutputLog, OUTPUTLOG);
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FEX_CONFIG_OPT(LDPath, ROOTFS);
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FEX_CONFIG_OPT(Environment, ENV);
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FEX_CONFIG_OPT(HostEnvironment, HOSTENV);
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::SilentLog = SilentLog();
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if (::SilentLog) {
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LogMan::Throw::UnInstallHandlers();
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LogMan::Msg::UnInstallHandlers();
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}
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else {
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auto LogFile = OutputLog();
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// If stderr or stdout then we need to dup the FD
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// In some cases some applications will close stderr and stdout
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// then redirect the FD to either a log OR some cases just not use
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// stderr/stdout and the FD will be reused for regular FD ops.
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//
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// We want to maintain the original output location otherwise we
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// can run in to problems of writing to some file
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if (LogFile == "stderr") {
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OutputFD = dup(STDERR_FILENO);
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}
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else if (LogFile == "stdout") {
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OutputFD = dup(STDOUT_FILENO);
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}
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else if (LogFile == "server") {
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LogMan::Throw::UnInstallHandlers();
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LogMan::Msg::UnInstallHandlers();
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FEXServerLogging::FEXServerFD = FEXServerClient::RequestLogFD(FEXServerClient::GetServerFD());
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if (FEXServerLogging::FEXServerFD != -1) {
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LogMan::Throw::InstallHandler(FEXServerLogging::AssertHandler);
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LogMan::Msg::InstallHandler(FEXServerLogging::MsgHandler);
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}
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}
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else if (!LogFile.empty()) {
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OutputFD = open(LogFile.c_str(), O_CREAT | O_CLOEXEC | O_WRONLY);
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}
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}
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FEXCore::Profiler::Init();
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FEXCore::Telemetry::Initialize();
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RootFSRedirect(&Program.first, LDPath());
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InterpreterHandler(&Program.first, LDPath(), &Args);
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std::error_code ec{};
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if (!std::filesystem::exists(Program.first, ec)) {
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// Early exit if the program passed in doesn't exist
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// Will prevent a crash later
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fmt::print(stderr, "{}: command not found\n", Program.first);
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return -ENOEXEC;
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}
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uint32_t KernelVersion = FEX::HLE::SyscallHandler::CalculateHostKernelVersion();
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if (KernelVersion < FEX::HLE::SyscallHandler::KernelVersion(4, 17)) {
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// We require 4.17 minimum for MAP_FIXED_NOREPLACE
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LogMan::Msg::EFmt("FEXLoader requires kernel 4.17 minimum. Expect problems.");
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}
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// Before we go any further, set all of our host environment variables that the config has provided
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for (auto &HostEnv : HostEnvironment.All()) {
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// We are going to keep these alive in memory.
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// No need to split the string with setenv
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putenv(HostEnv.data());
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}
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ELFCodeLoader2 Loader{Program.first, LDPath(), Args, ParsedArgs, envp, &Environment};
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//FEX::HarnessHelper::ELFCodeLoader Loader{Program.first, LDPath(), Args, ParsedArgs, envp, &Environment};
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if (!Loader.ELFWasLoaded()) {
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// Loader couldn't load this program for some reason
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fmt::print(stderr, "Invalid or Unsupported elf file.\n");
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#ifdef _M_ARM_64
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fmt::print(stderr, "This is likely due to a misconfigured x86-64 RootFS\n");
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fmt::print(stderr, "Current RootFS path set to '{}'\n", LDPath());
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std::error_code ec;
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if (LDPath().empty() ||
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std::filesystem::exists(LDPath(), ec) == false) {
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fmt::print(stderr, "RootFS path doesn't exist. This is required on AArch64 hosts\n");
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fmt::print(stderr, "Use FEXRootFSFetcher to download a RootFS\n");
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}
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#endif
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return -ENOEXEC;
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}
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FEXCore::Config::EraseSet(FEXCore::Config::CONFIG_APP_FILENAME, std::filesystem::canonical(Program.first).string());
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FEXCore::Config::EraseSet(FEXCore::Config::CONFIG_APP_CONFIG_NAME, Program.second);
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FEXCore::Config::EraseSet(FEXCore::Config::CONFIG_IS64BIT_MODE, Loader.Is64BitMode() ? "1" : "0");
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std::unique_ptr<FEX::HLE::MemAllocator> Allocator;
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std::vector<FEXCore::Allocator::MemoryRegion> Base48Bit;
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if (Loader.Is64BitMode()) {
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// Destroy the 48th bit if it exists
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Base48Bit = FEXCore::Allocator::Steal48BitVA();
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} else {
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FEX_CONFIG_OPT(Use32BitAllocator, FORCE32BITALLOCATOR);
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if (KernelVersion < FEX::HLE::SyscallHandler::KernelVersion(4, 17)) {
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Use32BitAllocator = true;
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}
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// Setup our userspace allocator
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if (!Use32BitAllocator &&
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KernelVersion >= FEX::HLE::SyscallHandler::KernelVersion(4, 17)) {
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FEXCore::Allocator::SetupHooks();
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}
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if (Use32BitAllocator) {
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Allocator = FEX::HLE::Create32BitAllocator();
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}
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else {
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Allocator = FEX::HLE::CreatePassthroughAllocator();
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}
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}
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// System allocator is now system allocator or FEX
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FEXCore::Context::InitializeStaticTables(Loader.Is64BitMode() ? FEXCore::Context::MODE_64BIT : FEXCore::Context::MODE_32BIT);
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auto CTX = FEXCore::Context::CreateNewContext();
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FEXCore::Context::InitializeContext(CTX);
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auto SignalDelegation = std::make_unique<FEX::HLE::SignalDelegator>();
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SignalDelegation->RegisterFrontendHostSignalHandler(SIGILL, [&SignalDelegation](FEXCore::Core::InternalThreadState *Thread, int Signal, void *info, void *ucontext) -> bool {
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ucontext_t* _context = (ucontext_t*)ucontext;
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auto &mcontext = _context->uc_mcontext;
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uint64_t PC{};
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#ifdef _M_ARM_64
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PC = mcontext.pc;
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#else
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PC = mcontext.gregs[REG_RIP];
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#endif
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if (PC == reinterpret_cast<uint64_t>(&FEXCore::Assert::ForcedAssert)) {
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// This is a host side assert. Don't deliver this to the guest
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// We want to actually break here
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SignalDelegation->UninstallHostHandler(Signal);
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return true;
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}
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return false;
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}, true);
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auto SyscallHandler = Loader.Is64BitMode() ? FEX::HLE::x64::CreateHandler(CTX, SignalDelegation.get())
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: FEX::HLE::x32::CreateHandler(CTX, SignalDelegation.get(), std::move(Allocator));
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auto Mapper = std::bind_front(&FEX::HLE::SyscallHandler::GuestMmap, SyscallHandler.get());
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auto Unmapper = std::bind_front(&FEX::HLE::SyscallHandler::GuestMunmap, SyscallHandler.get());
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// Load VDSO in to memory prior to mapping our ELFs.
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void* VDSOBase = FEX::VDSO::LoadVDSOThunks(Loader.Is64BitMode(), Mapper);
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Loader.SetVDSOBase(VDSOBase);
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Loader.CalculateHWCaps(CTX);
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if (!Loader.MapMemory(Mapper, Unmapper)) {
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// failed to map
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LogMan::Msg::EFmt("Failed to map %d-bit elf file.", Loader.Is64BitMode() ? 64 : 32);
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return -ENOEXEC;
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}
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SyscallHandler->SetCodeLoader(&Loader);
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auto BRKInfo = Loader.GetBRKInfo();
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SyscallHandler->DefaultProgramBreak(BRKInfo.Base, BRKInfo.Size);
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FEXCore::Context::SetSignalDelegator(CTX, SignalDelegation.get());
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FEXCore::Context::SetSyscallHandler(CTX, SyscallHandler.get());
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FEXCore::Context::InitCore(CTX, Loader.DefaultRIP(), Loader.GetStackPointer());
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// Pass in our VDSO thunks
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FEXCore::Context::AppendThunkDefinitions(CTX, FEX::VDSO::GetVDSOThunkDefinitions());
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FEXCore::Context::ExitReason ShutdownReason = FEXCore::Context::ExitReason::EXIT_SHUTDOWN;
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// There might already be an exit handler, leave it installed
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if(!FEXCore::Context::GetExitHandler(CTX)) {
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FEXCore::Context::SetExitHandler(CTX, [&](uint64_t thread, FEXCore::Context::ExitReason reason) {
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if (reason != FEXCore::Context::ExitReason::EXIT_DEBUG) {
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ShutdownReason = reason;
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FEXCore::Context::Stop(CTX);
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}
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});
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}
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const bool AOTEnabled = AOTIRLoad() || AOTIRCapture() || AOTIRGenerate();
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if (AOTEnabled) {
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LogMan::Msg::IFmt("Warning: AOTIR is experimental, and might lead to crashes. "
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"Capture doesn't work with programs that fork.");
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FEXCore::Context::SetAOTIRLoader(CTX, [](const std::string &fileid) -> int {
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auto filepath = std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir" / (fileid + ".aotir");
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return open(filepath.c_str(), O_RDONLY);
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});
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FEXCore::Context::SetAOTIRWriter(CTX, [](const std::string& fileid) -> std::unique_ptr<std::ofstream> {
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auto filepath = std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir" / (fileid + ".aotir.tmp");
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auto AOTWrite = std::make_unique<std::ofstream>(filepath, std::ios::out | std::ios::binary);
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if (*AOTWrite) {
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std::filesystem::resize_file(filepath, 0);
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AOTWrite->seekp(0);
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LogMan::Msg::IFmt("AOTIR: Storing {}", fileid);
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} else {
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LogMan::Msg::IFmt("AOTIR: Failed to store {}", fileid);
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}
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return AOTWrite;
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});
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FEXCore::Context::SetAOTIRRenamer(CTX, [](const std::string& fileid) -> void {
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auto TmpFilepath = std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir" / (fileid + ".aotir.tmp");
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auto NewFilepath = std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir" / (fileid + ".aotir");
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// Rename the temporary file to atomically update the file
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std::filesystem::rename(TmpFilepath, NewFilepath);
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});
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}
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if (AOTIRGenerate()) {
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for(auto &Section: Loader.Sections) {
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FEX::AOT::AOTGenSection(CTX, Section);
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}
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} else {
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FEXCore::Context::RunUntilExit(CTX);
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}
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if (AOTEnabled) {
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std::filesystem::create_directories(std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir", ec);
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if (!ec) {
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FEXCore::Context::WriteFilesWithCode(CTX, [](const std::string& fileid, const std::string& filename) {
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auto filepath = std::filesystem::path(FEXCore::Config::GetDataDirectory()) / "aotir" / (fileid + ".path");
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int fd = open(filepath.c_str(), O_CREAT | O_EXCL | O_WRONLY, 0644);
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if (fd != -1) {
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write(fd, filename.c_str(), filename.size());
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close(fd);
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}
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|
});
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|
}
|
|
|
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if (AOTIRCapture() || AOTIRGenerate()) {
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FEXCore::Context::FinalizeAOTIRCache(CTX);
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|
LogMan::Msg::IFmt("AOTIR Cache Stored");
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|
}
|
|
}
|
|
|
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auto ProgramStatus = FEXCore::Context::GetProgramStatus(CTX);
|
|
|
|
SyscallHandler.reset();
|
|
SignalDelegation.reset();
|
|
FEXCore::Context::DestroyContext(CTX);
|
|
|
|
FEXCore::Context::ShutdownStaticTables();
|
|
FEXCore::Threads::Shutdown();
|
|
|
|
Loader.FreeSections();
|
|
|
|
FEXCore::Config::Shutdown();
|
|
|
|
LogMan::Throw::UnInstallHandlers();
|
|
LogMan::Msg::UnInstallHandlers();
|
|
|
|
FEXCore::Allocator::ClearHooks();
|
|
FEXCore::Allocator::ReclaimMemoryRegion(Base48Bit);
|
|
// Allocator is now original system allocator
|
|
FEXCore::Telemetry::Shutdown(Program.second);
|
|
FEXCore::Profiler::Shutdown();
|
|
if (ShutdownReason == FEXCore::Context::ExitReason::EXIT_SHUTDOWN) {
|
|
return ProgramStatus;
|
|
}
|
|
else {
|
|
return -64 | ShutdownReason;
|
|
}
|
|
}
|