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clone3 was added in Linux 5.3 but our minimum spec is 5.0. Additionally the Raspberry Pi 5 kernel seems to complain about clone3 for some reason? Just use clone instead of clone3
143 lines
5.3 KiB
C++
143 lines
5.3 KiB
C++
// SPDX-License-Identifier: MIT
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/*
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$info$
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tags: LinuxSyscalls|syscalls-x86-64
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$end_info$
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*/
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#include "LinuxSyscalls/SignalDelegator.h"
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#include "LinuxSyscalls/Syscalls.h"
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#include "LinuxSyscalls/x64/Syscalls.h"
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#include "LinuxSyscalls/x64/Thread.h"
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#include <FEXCore/Core/CoreState.h>
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#include <FEXCore/Debug/InternalThreadState.h>
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#include <FEXCore/IR/IR.h>
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#include <FEXCore/fextl/vector.h>
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#include <sched.h>
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#include <signal.h>
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#include <stddef.h>
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#include <syscall.h>
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#include <stdint.h>
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#include <unistd.h>
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namespace FEX::HLE::x64 {
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uint64_t SetThreadArea(FEXCore::Core::CpuStateFrame* Frame, void* tls) {
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Frame->State.fs_cached = reinterpret_cast<uint64_t>(tls);
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return 0;
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}
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void AdjustRipForNewThread(FEXCore::Core::CpuStateFrame* Frame) {
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Frame->State.rip += 2;
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}
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void RegisterThread(FEX::HLE::SyscallHandler* Handler) {
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using namespace FEXCore::IR;
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REGISTER_SYSCALL_IMPL_X64_FLAGS(
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clone, SyscallFlags::DEFAULT,
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([](FEXCore::Core::CpuStateFrame* Frame, uint32_t flags, void* stack, pid_t* parent_tid, pid_t* child_tid, void* tls) -> uint64_t {
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// This is slightly different EFAULT behaviour, if child_tid or parent_tid is invalid then the kernel just doesn't write to the
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// pointer. Still need to be EFAULT safe although.
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if ((flags & (CLONE_CHILD_SETTID | CLONE_CHILD_CLEARTID)) && child_tid) {
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FaultSafeUserMemAccess::VerifyIsWritable(child_tid, sizeof(*child_tid));
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}
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if ((flags & CLONE_PARENT_SETTID) && parent_tid) {
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FaultSafeUserMemAccess::VerifyIsWritable(parent_tid, sizeof(*parent_tid));
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}
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FEX::HLE::clone3_args args {
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.Type = TypeOfClone::TYPE_CLONE2,
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.args =
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{
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.flags = flags & ~CSIGNAL, // This no longer contains CSIGNAL
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.pidfd = 0, // For clone, pidfd is duplicated here
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.child_tid = reinterpret_cast<uint64_t>(child_tid),
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.parent_tid = reinterpret_cast<uint64_t>(parent_tid),
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.exit_signal = flags & CSIGNAL,
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.stack = reinterpret_cast<uint64_t>(stack),
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.stack_size = 0, // This syscall isn't able to see the stack size
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.tls = reinterpret_cast<uint64_t>(tls),
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.set_tid = 0, // This syscall isn't able to select TIDs
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.set_tid_size = 0,
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.cgroup = 0, // This syscall can't select cgroups
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},
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};
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return CloneHandler(Frame, &args);
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}));
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REGISTER_SYSCALL_IMPL_X64(sigaltstack, [](FEXCore::Core::CpuStateFrame* Frame, const stack_t* ss, stack_t* old_ss) -> uint64_t {
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FaultSafeUserMemAccess::VerifyIsReadableOrNull(ss, sizeof(*ss));
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FaultSafeUserMemAccess::VerifyIsWritableOrNull(old_ss, sizeof(*old_ss));
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return FEX::HLE::_SyscallHandler->GetSignalDelegator()->RegisterGuestSigAltStack(
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FEX::HLE::ThreadManager::GetStateObjectFromCPUState(Frame), ss, old_ss);
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});
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// launch a new process under fex
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// currently does not propagate argv[0] correctly
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REGISTER_SYSCALL_IMPL_X64_FLAGS(execve, SyscallFlags::DEFAULT,
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[](FEXCore::Core::CpuStateFrame* Frame, const char* pathname, char* const argv[], char* const envp[]) -> uint64_t {
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fextl::vector<const char*> Args;
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fextl::vector<const char*> Envp;
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if (argv) {
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for (int i = 0; argv[i]; i++) {
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Args.push_back(argv[i]);
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}
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Args.push_back(nullptr);
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}
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if (envp) {
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for (int i = 0; envp[i]; i++) {
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Envp.push_back(envp[i]);
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}
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Envp.push_back(nullptr);
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}
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auto* const* ArgsPtr = argv ? const_cast<char* const*>(Args.data()) : nullptr;
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auto* const* EnvpPtr = envp ? const_cast<char* const*>(Envp.data()) : nullptr;
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FEX::HLE::ExecveAtArgs AtArgs = FEX::HLE::ExecveAtArgs::Empty();
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return FEX::HLE::ExecveHandler(Frame, pathname, ArgsPtr, EnvpPtr, AtArgs);
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});
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REGISTER_SYSCALL_IMPL_X64_FLAGS(
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execveat, SyscallFlags::DEFAULT,
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([](FEXCore::Core::CpuStateFrame* Frame, int dirfd, const char* pathname, char* const argv[], char* const envp[], int flags) -> uint64_t {
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fextl::vector<const char*> Args;
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fextl::vector<const char*> Envp;
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if (argv) {
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for (int i = 0; argv[i]; i++) {
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Args.push_back(argv[i]);
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}
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Args.push_back(nullptr);
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}
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if (envp) {
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for (int i = 0; envp[i]; i++) {
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Envp.push_back(envp[i]);
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}
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Envp.push_back(nullptr);
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}
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FEX::HLE::ExecveAtArgs AtArgs {
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.dirfd = dirfd,
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.flags = flags,
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};
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auto* const* ArgsPtr = argv ? const_cast<char* const*>(Args.data()) : nullptr;
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auto* const* EnvpPtr = envp ? const_cast<char* const*>(Envp.data()) : nullptr;
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return FEX::HLE::ExecveHandler(Frame, pathname, ArgsPtr, EnvpPtr, AtArgs);
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}));
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}
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} // namespace FEX::HLE::x64
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