Files
FEX-Emu--FEX/Source/Tests/TestHarnessRunner.cpp
T
Ryan Houdek bb7f542813 Linux: Emulate MAP_32BIT on mmap
Previous we were just using an address hint to emulate MAP_32BIT.
Seemingly this behaviour has changed on AArch64 where it now isn't
guaranteed to scan up from the hint provided if exact allocation fails.

Now we pull in the full 32-bit allocator and add support for MAP_32BIT
in it. This limits the allocations there in to the first 2GB which Linux
expects.

Necessary for Mono's trampolines to work since it requires code to be in
the first 2GB on x86-64.
2021-11-12 21:25:15 -08:00

171 lines
5.1 KiB
C++

/*
$info$
tags: Bin|TestHarnessRunner
desc: Used to run Assembly tests
$end_info$
*/
#include "Common/ArgumentLoader.h"
#include "CommonCore/HostFactory.h"
#include "HarnessHelpers.h"
#include "Tests/LinuxSyscalls/LinuxAllocator.h"
#include "Tests/LinuxSyscalls/Syscalls.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/Context.h>
#include <FEXCore/Core/CoreState.h>
#include <FEXCore/Core/CPUBackend.h>
#include <FEXCore/Utils/Allocator.h>
#include <FEXCore/Utils/LogManager.h>
#include <cstdint>
#include <errno.h>
#include <memory>
#include <signal.h>
#include <stdio.h>
#include <sys/types.h>
#include <vector>
#include <utility>
namespace FEXCore::Core {
struct InternalThreadState;
}
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;
}
fmt::print("[{}] {}\n", CharLevel, Message);
}
void AssertHandler(char const *Message) {
fmt::print("[ASSERT] {}\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(FEXCore::Config::CreateEnvironmentLayer(envp));
FEXCore::Config::Load();
auto Args = FEX::ArgLoader::Get();
if (Args.size() < 2) {
LogMan::Msg::EFmt("Not enough arguments");
return -1;
}
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);
std::unique_ptr<FEX::HLE::MemAllocator> Allocator;
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 {
// Setup our userspace allocator
uint32_t KernelVersion = FEX::HLE::SyscallHandler::CalculateHostKernelVersion();
if (KernelVersion >= FEX::HLE::SyscallHandler::KernelVersion(4, 17)) {
FEXCore::Allocator::SetupHooks();
}
if (KernelVersion < FEX::HLE::SyscallHandler::KernelVersion(4, 17)) {
Allocator = FEX::HLE::Create32BitAllocator();
}
else {
Allocator = FEX::HLE::CreatePassthroughAllocator();
}
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
LogMan::Msg::EFmt("Failed to map 32-bit elf file.");
return -ENOEXEC;
}
}
auto SignalDelegation = std::make_unique<FEX::HLE::SignalDelegator>();
auto SyscallHandler = Loader.Is64BitMode() ? FEX::HLE::x64::CreateHandler(CTX, SignalDelegation.get())
: FEX::HLE::x32::CreateHandler(CTX, SignalDelegation.get(), std::move(Allocator));
bool DidFault = false;
SignalDelegation->RegisterFrontendHostSignalHandler(SIGSEGV, [&DidFault](FEXCore::Core::InternalThreadState *Thread, int Signal, void *info, void *ucontext) {
DidFault = true;
return false;
}, true);
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::IFmt("Faulted? {}", DidFault ? "Yes" : "No");
LogMan::Msg::IFmt("Passed? {}", Passed ? "Yes" : "No");
SyscallHandler.reset();
SignalDelegation.reset();
FEXCore::Context::DestroyContext(CTX);
FEXCore::Context::ShutdownStaticTables();
FEXCore::Config::Shutdown();
LogMan::Throw::UnInstallHandlers();
LogMan::Msg::UnInstallHandlers();
FEXCore::Allocator::ClearHooks();
return Passed ? 0 : -1;
}