Files
FEX-Emu--FEX/Source/Tests/TestHarnessRunner.cpp
T
Ryan Houdek 04e0baadc6 Changes LogMan assert to defines
C++ no-op functions can't optimize out the predicate arguments in all cases.
This was causing a problem where zero cost assertions weren't actually zero cost.

The only way to resolve this is to actually use macros sadly enough.

This will give a fairly hefty performance uplift with anything operating on IR.
2021-04-26 13:49:35 -07:00

143 lines
4.3 KiB
C++

/*
$info$
tags: Bin|TestHarnessRunner
desc: Used to run Assembly tests
$end_info$
*/
#include "Common/ArgumentLoader.h"
#include "Common/EnvironmentLoader.h"
#include "CommonCore/HostFactory.h"
#include "HarnessHelpers.h"
#include "Tests/LinuxSyscalls/x32/Syscalls.h"
#include "Tests/LinuxSyscalls/x64/Syscalls.h"
#include "Tests/LinuxSyscalls/SignalDelegator.h"
#include <FEXCore/Config/Config.h>
#include <FEXCore/Core/CodeLoader.h>
#include <FEXCore/Core/Context.h>
#include <FEXCore/Core/CoreState.h>
#include <FEXCore/Core/CPUBackend.h>
#include <FEXCore/Core/X86Enums.h>
#include <FEXCore/HLE/SyscallHandler.h>
#include <FEXCore/Debug/InternalThreadState.h>
#include <FEXCore/Utils/Allocator.h>
#include <FEXCore/Utils/LogManager.h>
#include <cassert>
#include <cstdint>
#include <string>
#include <vector>
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;
default:
CharLevel = "???";
break;
}
printf("[%s] %s\n", CharLevel, Message);
}
void AssertHandler(char const *Message) {
printf("[ASSERT] %s\n", Message);
}
int main(int argc, char **argv, char **const envp) {
LogMan::Throw::InstallHandler(AssertHandler);
LogMan::Msg::InstallHandler(MsgHandler);
FEXCore::Config::Initialize();
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();
LOGMAN_THROW_A(Args.size() > 1, "Not enough arguments");
FEX::HarnessHelper::HarnessCodeLoader Loader{Args[0], Args[1].c_str()};
FEXCore::Config::Set(FEXCore::Config::CONFIG_IS64BIT_MODE, Loader.Is64BitMode() ? "1" : "0");
FEXCore::Context::InitializeStaticTables(Loader.Is64BitMode() ? FEXCore::Context::MODE_64BIT : FEXCore::Context::MODE_32BIT);
auto CTX = FEXCore::Context::CreateNewContext();
FEXCore::Context::SetCustomCPUBackendFactory(CTX, HostFactory::CPUCreationFactory);
FEXCore::Context::InitializeContext(CTX);
FEX::HLE::x32::MemAllocator *Allocator = nullptr;
if (Loader.Is64BitMode()) {
if (!Loader.MapMemory([](void *addr, size_t length, int prot, int flags, int fd, off_t offset) {
return FEXCore::Allocator::mmap(addr, length, prot, flags, fd, offset);
}, [](void *addr, size_t length) {
return FEXCore::Allocator::munmap(addr, length);
})) {
// failed to map
return -ENOEXEC;
}
} else {
Allocator = new FEX::HLE::x32::MemAllocator();
if (!Loader.MapMemory([Allocator](void *addr, size_t length, int prot, int flags, int fd, off_t offset) {
return Allocator->mmap(addr, length, prot, flags, fd, offset);
}, [Allocator](void *addr, size_t length) {
return Allocator->munmap(addr, length);
})) {
// failed to map
return -ENOEXEC;
}
}
std::unique_ptr<FEX::HLE::SignalDelegator> SignalDelegation = std::make_unique<FEX::HLE::SignalDelegator>();
std::unique_ptr<FEX::HLE::SyscallHandler> SyscallHandler{
Loader.Is64BitMode() ?
FEX::HLE::x64::CreateHandler(CTX, SignalDelegation.get()) :
FEX::HLE::x32::CreateHandler(CTX, SignalDelegation.get(), Allocator)
};
bool DidFault = false;
SignalDelegation->RegisterFrontendHostSignalHandler(SIGSEGV, [&DidFault](FEXCore::Core::InternalThreadState *Thread, int Signal, void *info, void *ucontext) {
DidFault = true;
return false;
});
FEXCore::Context::SetSignalDelegator(CTX, SignalDelegation.get());
FEXCore::Context::SetSyscallHandler(CTX, SyscallHandler.get());
bool Result1 = FEXCore::Context::InitCore(CTX, &Loader);
if (!Result1)
return 1;
FEXCore::Context::RunUntilExit(CTX);
// Just re-use compare state. It also checks against the expected values in config.
FEXCore::Core::CPUState State;
FEXCore::Context::GetCPUState(CTX, &State);
bool Passed = !DidFault && Loader.CompareStates(&State, nullptr);
LogMan::Msg::I("Faulted? %s", DidFault ? "Yes" : "No");
LogMan::Msg::I("Passed? %s", Passed ? "Yes" : "No");
FEXCore::Context::DestroyContext(CTX);
return Passed ? 0 : -1;
}