Files
FEX-Emu--FEX/Source/Tests/ELFLoader.cpp
T
Ryan Houdek f14cd54791 Switches over to having a correctly layered configuration system
Instead of having the configuration being loaded and stored in to a
frontend system. First moves the backing store of the configuration in
to FEXCore.

Each layer that is constructed then loads its particular configuration.
After the layers are loaded, then a meta layer is constructed that
merges the layers flat.

This means we will no longer hit the problem where a configuration is
stored in the "main" configuration file, then environment and arguments
passed manage to overwrite it.

The order of the layers going from inner most layer to outer most, with
outermost overwriting previous layer configurations is as follows:

Main < Global application < Local application < Arguments < Environment

One step that needs to be changed in the future is that FEXCore can then
just load its configuration from the layers directly since the data is
in FEXCore now. This will be reserved for a future change so we are less
disruptive.
2020-12-07 11:15:48 -08:00

276 lines
9.1 KiB
C++

#include "Common/ArgumentLoader.h"
#include "Common/EnvironmentLoader.h"
#include "Common/Config.h"
#include "HarnessHelpers.h"
#include <FEXCore/Config/Config.h>
#include <FEXCore/Core/CodeLoader.h>
#include <FEXCore/Core/Context.h>
#include <FEXCore/Memory/SharedMem.h>
#include <FEXCore/Utils/ELFLoader.h>
#include <FEXCore/Utils/LogManager.h>
#include <cstdint>
#include <filesystem>
#include <string>
#include <unistd.h>
#include <vector>
namespace {
static bool SilentLog;
static FILE *OutputFD {stdout};
void MsgHandler(LogMan::DebugLevels Level, char const *Message) {
const char *CharLevel{nullptr};
switch (Level) {
case LogMan::NONE:
CharLevel = "NONE";
break;
case LogMan::ASSERT:
CharLevel = "ASSERT";
break;
case LogMan::ERROR:
CharLevel = "ERROR";
break;
case LogMan::DEBUG:
CharLevel = "DEBUG";
break;
case LogMan::INFO:
CharLevel = "Info";
break;
case LogMan::STDOUT:
CharLevel = "STDOUT";
break;
case LogMan::STDERR:
CharLevel = "STDERR";
break;
default:
CharLevel = "???";
break;
}
if (!SilentLog) {
fprintf(OutputFD, "[%s] %s\n", CharLevel, Message);
fflush(OutputFD);
}
}
void AssertHandler(char const *Message) {
if (!SilentLog) {
fprintf(OutputFD, "[ASSERT] %s\n", Message);
fflush(OutputFD);
}
}
bool CheckMemMapping() {
std::fstream fs;
fs.open("/proc/self/maps", std::fstream::in | std::fstream::binary);
std::string Line;
while (std::getline(fs, Line)) {
if (fs.eof()) break;
uint64_t Begin, End;
if (sscanf(Line.c_str(), "%lx-%lx", &Begin, &End) == 2) {
// If a memory range is living inside the 32bit memory space then we have a problem
if (Begin < 0x1'0000'0000) {
return false;
}
}
}
fs.close();
return true;
}
}
void InterpreterHandler(std::string *Filename, std::string const &RootFS, std::vector<std::string> *args) {
// Open the file pointer to the filename and see if we need to find an interpreter
std::fstream File;
size_t FileSize{0};
File.open(*Filename, std::fstream::in | std::fstream::binary);
if (!File.is_open())
return;
File.seekg(0, File.end);
FileSize = File.tellg();
File.seekg(0, File.beg);
// Is the file large enough for shebang
if (FileSize <= 2)
return;
// Handle shebang files
if (File.get() == '#' &&
File.get() == '!') {
std::string InterpreterLine;
std::getline(File, InterpreterLine);
// Shebang line can have a single argument
std::istringstream InterpreterSS(InterpreterLine);
std::string Argument;
if (std::getline(InterpreterSS, Argument, ' ')) {
// If the filename is absolute then prepend the rootfs
// If it is relative then don't append the rootfs
if (Argument[0] == '/') {
*Filename = RootFS + Argument;
}
else {
*Filename = Argument;
}
// Push the filename in to the argument
args->emplace(args->begin(), *Filename);
}
// Now check for argument
if (std::getline(InterpreterSS, Argument, ' ')) {
// Insert after the interpreter filename
args->emplace(args->begin() + 1, Argument);
}
// Done here
return;
}
}
int main(int argc, char **argv, char **const envp) {
LogMan::Throw::InstallHandler(AssertHandler);
LogMan::Msg::InstallHandler(MsgHandler);
if (!CheckMemMapping()) {
LogMan::Msg::E("[Unsupported] FEX mapped to lower 32bits! Exiting!");
return -1;
}
FEXCore::Config::Initialize();
FEXCore::Config::AddLayer(std::make_unique<FEX::Config::MainLoader>());
FEXCore::Config::AddLayer(std::make_unique<FEX::ArgLoader::ArgLoader>(argc, argv));
FEXCore::Config::AddLayer(std::make_unique<FEX::Config::EnvLoader>(envp));
FEXCore::Config::Load();
auto Args = FEX::ArgLoader::Get();
auto ParsedArgs = FEX::ArgLoader::GetParsedArgs();
if (Args.empty()) {
// Early exit if we weren't passed an argument
return 0;
}
std::string Program = Args[0];
// These layers load on initialization
FEXCore::Config::AddLayer(std::make_unique<FEX::Config::AppLoader>(std::filesystem::path(Program).filename(), true));
FEXCore::Config::AddLayer(std::make_unique<FEX::Config::AppLoader>(std::filesystem::path(Program).filename(), false));
// Reload the meta layer
FEXCore::Config::ReloadMetaLayer();
FEXCore::Config::Value<uint8_t> CoreConfig{FEXCore::Config::CONFIG_DEFAULTCORE, 0};
FEXCore::Config::Value<uint64_t> BlockSizeConfig{FEXCore::Config::CONFIG_MAXBLOCKINST, 1};
FEXCore::Config::Value<bool> SingleStepConfig{FEXCore::Config::CONFIG_SINGLESTEP, false};
FEXCore::Config::Value<bool> MultiblockConfig{FEXCore::Config::CONFIG_MULTIBLOCK, false};
FEXCore::Config::Value<bool> GdbServerConfig{FEXCore::Config::CONFIG_GDBSERVER, false};
FEXCore::Config::Value<uint64_t> ThreadsConfig{FEXCore::Config::CONFIG_EMULATED_CPU_CORES, 1};
FEXCore::Config::Value<std::string> LDPath{FEXCore::Config::CONFIG_ROOTFSPATH, ""};
FEXCore::Config::Value<std::string> ThunkLibsPath{FEXCore::Config::CONFIG_THUNKLIBSPATH, ""};
FEXCore::Config::Value<bool> SilentLog{FEXCore::Config::CONFIG_SILENTLOGS, false};
FEXCore::Config::Value<std::string> Environment{FEXCore::Config::CONFIG_ENVIRONMENT, ""};
FEXCore::Config::Value<std::string> OutputLog{FEXCore::Config::CONFIG_OUTPUTLOG, "stderr"};
FEXCore::Config::Value<std::string> DumpIR{FEXCore::Config::CONFIG_DUMPIR, "no"};
FEXCore::Config::Value<bool> TSOEnabledConfig{FEXCore::Config::CONFIG_TSO_ENABLED, true};
FEXCore::Config::Value<bool> SMCChecksConfig{FEXCore::Config::CONFIG_SMC_CHECKS, false};
FEXCore::Config::Value<bool> ABILocalFlags{FEXCore::Config::CONFIG_ABI_LOCAL_FLAGS, false};
FEXCore::Config::Value<bool> AbiNoPF{FEXCore::Config::CONFIG_ABI_NO_PF, false};
::SilentLog = SilentLog();
if (!::SilentLog) {
auto LogFile = OutputLog();
if (LogFile == "stderr") {
OutputFD = stderr;
}
else if (LogFile == "stdout") {
OutputFD = stdout;
}
else if (!LogFile.empty()) {
OutputFD = fopen(LogFile.c_str(), "wb");
}
}
InterpreterHandler(&Program, LDPath(), &Args);
if (!std::filesystem::exists(Program)) {
// Early exit if the program passed in doesn't exist
// Will prevent a crash later
LogMan::Msg::E("%s: command not found", Program.c_str());
return 0;
}
FEX::HarnessHelper::ELFCodeLoader Loader{Program, LDPath(), Args, ParsedArgs, envp, &Environment};
FEXCore::Context::InitializeStaticTables(Loader.Is64BitMode() ? FEXCore::Context::MODE_64BIT : FEXCore::Context::MODE_32BIT);
uint64_t VMemSize = 1ULL << 36;
if (!Loader.Is64BitMode()) {
VMemSize = 1ULL << 32;
}
auto SHM = FEXCore::SHM::AllocateSHMRegion(VMemSize);
auto CTX = FEXCore::Context::CreateNewContext();
FEXCore::Context::InitializeContext(CTX);
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_DEFAULTCORE, CoreConfig() > 3 ? FEXCore::Config::CONFIG_CUSTOM : CoreConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_MULTIBLOCK, MultiblockConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_SINGLESTEP, SingleStepConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_MAXBLOCKINST, BlockSizeConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_GDBSERVER, GdbServerConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_ROOTFSPATH, LDPath());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_THUNKLIBSPATH, ThunkLibsPath());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_UNIFIED_MEMORY, true);
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_IS64BIT_MODE, Loader.Is64BitMode());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_EMULATED_CPU_CORES, ThreadsConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_TSO_ENABLED, TSOEnabledConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_SMC_CHECKS, SMCChecksConfig());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_ABI_LOCAL_FLAGS, ABILocalFlags());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_ABI_NO_PF, AbiNoPF());
FEXCore::Config::SetConfig(CTX, FEXCore::Config::CONFIG_DUMPIR, DumpIR());
FEXCore::Context::AddGuestMemoryRegion(CTX, SHM);
FEXCore::Context::InitCore(CTX, &Loader);
FEXCore::Context::SetApplicationFile(CTX, std::filesystem::canonical(Program));
FEXCore::Context::ExitReason ShutdownReason = FEXCore::Context::ExitReason::EXIT_SHUTDOWN;
// There might already be an exit handler, leave it installed
if(!FEXCore::Context::GetExitHandler(CTX)) {
FEXCore::Context::SetExitHandler(CTX, [&](uint64_t thread, FEXCore::Context::ExitReason reason) {
if (reason != FEXCore::Context::ExitReason::EXIT_DEBUG) {
ShutdownReason = reason;
FEXCore::Context::Stop(CTX);
}
});
}
FEXCore::Context::RunUntilExit(CTX);
auto ProgramStatus = FEXCore::Context::GetProgramStatus(CTX);
FEXCore::Context::DestroyContext(CTX);
FEXCore::SHM::DestroyRegion(SHM);
FEXCore::Config::Shutdown();
if (OutputFD != stderr &&
OutputFD != stdout &&
OutputFD != nullptr) {
fclose(OutputFD);
}
if (ShutdownReason == FEXCore::Context::ExitReason::EXIT_SHUTDOWN) {
return ProgramStatus;
}
else {
return -64 | ShutdownReason;
}
}