Files
FEX-Emu--FEX/Source/Common/ArgumentLoader.cpp
T
Ryan Houdek cb525e4a59 Implements x86 host runner
Will be used for unit tests
2020-09-22 23:19:48 -07:00

276 lines
8.2 KiB
C++

#include "Common/Config.h"
#include "OptionParser.h"
namespace FEX::ArgLoader {
std::vector<std::string> RemainingArgs;
std::vector<std::string> ProgramArguments;
void Load(int argc, char **argv) {
optparse::OptionParser Parser{};
optparse::OptionGroup CPUGroup(Parser, "CPU Core options");
optparse::OptionGroup EmulationGroup(Parser, "Emulation options");
optparse::OptionGroup TestGroup(Parser, "Test Harness options");
optparse::OptionGroup LoggingGroup(Parser, "Logging options");
{
CPUGroup.add_option("-c", "--core")
.dest("Core")
.help("Which CPU core to use")
#ifdef _M_X86_64
.choices({"irint", "irjit", "host"})
#else
.choices({"irint", "irjit"})
#endif
.set_default("irint");
std::string BreakString = "Break";
std::string MultiBlockString = "Multiblock";
Parser.set_defaults(BreakString, "0");
Parser.set_defaults(MultiBlockString, "0");
CPUGroup.add_option("-b", "--break")
.dest("Break")
.action("store_true")
.help("Break when op dispatcher doesn't understand instruction");
CPUGroup.add_option("--no-break")
.dest("Break")
.action("store_false")
.help("Break when op dispatcher doesn't understand instruction");
CPUGroup.add_option("-s", "--single-step")
.dest("SingleStep")
.action("store_true")
.help("Single Step config");
CPUGroup.add_option("-n", "--max-inst")
.dest("MaxInst")
.help("Maximum number of instructions to stick in a block")
.set_default(~0U);
CPUGroup.add_option("-m", "--multiblock")
.dest("Multiblock")
.action("store_true")
.help("Enable Multiblock code compilation");
CPUGroup.add_option("--no-multiblock")
.dest("Multiblock")
.action("store_false")
.help("Enable Multiblock code compilation");
CPUGroup.add_option("-G", "--gdb")
.dest("GdbServer")
.action("store_true")
.help("Enables the GDB server");
CPUGroup.add_option("-T", "--Threads")
.dest("Threads")
.help("Number of physical hardware threads to tell the process we have")
.set_default(1);
CPUGroup.add_option("--disable-tso")
.dest("TSOEnabled")
.action("store_false")
.help("Disables TSO IR ops. Highly likely to break any threaded application")
.set_default(true);
CPUGroup.add_option("--smc-full-checks")
.dest("SMCChecks")
.action("store_true")
.help("Checks code for modification before execution. Slow.")
.set_default(false);
Parser.add_option_group(CPUGroup);
}
{
Parser.set_defaults("RootFS", "");
Parser.set_defaults("ThunkLibs", "");
EmulationGroup.add_option("-R", "--rootfs")
.dest("RootFS")
.help("Which Root filesystem prefix to use");
EmulationGroup.add_option("-t", "--thunklibs")
.dest("ThunkLibs")
.help("Folder to find the host-side thunking libs");
EmulationGroup.add_option("-U", "--unified-memory")
.dest("UnifiedMemory")
.action("store_true")
.help("Enable unified memory for the emulator");
EmulationGroup.add_option("-E", "--env")
.dest("Env")
.help("Adds an environment variable")
.action("append");
Parser.add_option_group(EmulationGroup);
}
{
TestGroup.add_option("-g", "--dump-gprs")
.dest("DumpGPRs")
.action("store_true")
.help("When Test Harness ends, print GPR state")
.set_default(false);
TestGroup.add_option("-C", "--ipc-client")
.dest("IPCClient")
.action("store_true")
.help("If the lockstep runner is a client or server")
.set_default(false);
TestGroup.add_option("-I", "--ID")
.dest("IPCID")
.help("Sets an ID that is prepended to IPC names. For multiple runners")
.set_default("0");
TestGroup.add_option("-e", "--elf")
.dest("ELFType")
.action("store_true")
.help("Lockstep runner should load argument as ELF")
.set_default(false);
Parser.add_option_group(TestGroup);
}
{
LoggingGroup.add_option("-s", "--silent")
.dest("SilentLog")
.help("Disable logging")
.action("store_true");
LoggingGroup.add_option("-o", "--output-log")
.dest("OutputLog")
.help("File to write FEX output to [stdout, stderr, <Filename>]")
.set_default("stderr");
Parser.add_option_group(LoggingGroup);
}
optparse::Values Options = Parser.parse_args(argc, argv);
{
if (Options.is_set_by_user("Core")) {
auto Core = Options["Core"];
if (Core == "irint")
Config::Add("Core", "0");
else if (Core == "irjit")
Config::Add("Core", "1");
#ifdef _M_X86_64
else if (Core == "host")
Config::Add("Core", "2");
#endif
}
if (Options.is_set_by_user("Break")) {
bool Break = Options.get("Break");
Config::Add("Break", std::to_string(Break));
}
if (Options.is_set_by_user("SingleStep")) {
bool SingleStep = Options.get("SingleStep");
Config::Add("SingleStep", std::to_string(SingleStep));
// Single stepping also enforces single instruction size blocks
Config::Add("MaxInst", std::to_string(1u));
}
else {
if (Options.is_set_by_user("MaxInst")) {
uint32_t MaxInst = Options.get("MaxInst");
Config::Add("MaxInst", std::to_string(MaxInst));
}
}
if (Options.is_set_by_user("Multiblock")) {
bool Multiblock = Options.get("Multiblock");
Config::Add("Multiblock", std::to_string(Multiblock));
}
if (Options.is_set_by_user("GdbServer")) {
bool GdbServer = Options.get("GdbServer");
Config::Add("GdbServer", std::to_string(GdbServer));
}
if (Options.is_set_by_user("Threads")) {
uint64_t Config = Options.get("Threads");
Config::Add("Threads", std::to_string(Config));
}
if (Options.is_set_by_user("TSOEnabled")) {
bool TSOEnabled = Options.get("TSOEnabled");
Config::Add("TSOEnabled", std::to_string(TSOEnabled));
}
if (Options.is_set_by_user("SMCChecks")) {
bool SMCChecks = Options.get("SMCChecks");
Config::Add("SMCChecks", std::to_string(SMCChecks));
}
}
{
if (Options.is_set_by_user("RootFS")) {
std::string Option = Options["RootFS"];
Config::Add("RootFS", Option);
}
if (Options.is_set_by_user("ThunkLibs")) {
std::string Option = Options["ThunkLibs"];
Config::Add("ThunkLibs", Option);
}
if (Options.is_set_by_user("UnifiedMemory")) {
bool Option = Options.get("UnifiedMemory");
Config::Add("UnifiedMemory", std::to_string(Option));
}
if (Options.is_set_by_user("Env")) {
for (auto iter = Options.all("Env").begin(); iter != Options.all("Env").end(); ++iter) {
Config::Append("Env", *iter);
}
}
}
{
if (Options.is_set_by_user("DumpGPRs")) {
bool DumpGPRs = Options.get("DumpGPRs");
Config::Add("DumpGPRs", std::to_string(DumpGPRs));
}
if (Options.is_set_by_user("IPCClient")) {
bool IPCClient = Options.get("IPCClient");
Config::Add("IPCClient", std::to_string(IPCClient));
}
if (Options.is_set_by_user("ELFType")) {
bool ELFType = Options.get("ELFType");
Config::Add("ELFType", std::to_string(ELFType));
}
if (Options.is_set_by_user("IPCID")) {
const char* Value = Options.get("IPCID");
Config::Add("IPCID", Value);
}
}
{
if (Options.is_set_by_user("SilentLog")) {
bool SilentLog = Options.get("SilentLog");
Config::Add("SilentLog", std::to_string(SilentLog));
}
if (Options.is_set_by_user("OutputLog")) {
std::string OutputLog = Options["OutputLog"];
Config::Add("OutputLog", OutputLog);
}
}
RemainingArgs = Parser.args();
ProgramArguments = Parser.parsed_args();
}
std::vector<std::string> Get() {
return RemainingArgs;
}
std::vector<std::string> GetParsedArgs() {
return ProgramArguments;
}
}