Files
FEX-Emu--FEX/Source/Tools/LinuxEmulation/LinuxSyscalls/x64/FD.cpp
T
Ryan Houdek 68939c5a5c LinuxSyscalls: Emulate futimesat syscalls
Since this syscall doesn't exist, we need to convert it to the
equivalent utimensat like the kernel does internally.

This is fairly trivial but there are some safety nets in place.
2025-03-29 11:06:51 -07:00

143 lines
5.6 KiB
C++

// SPDX-License-Identifier: MIT
/*
$info$
tags: LinuxSyscalls|syscalls-x86-64
$end_info$
*/
#include "LinuxSyscalls/FileManagement.h"
#include "LinuxSyscalls/Syscalls.h"
#include "LinuxSyscalls/x64/Syscalls.h"
#include "LinuxSyscalls/x64/Types.h"
#include <FEXCore/Utils/CompilerDefs.h>
#include <FEXCore/Utils/MathUtils.h>
#include <fcntl.h>
#include <poll.h>
#include <stdint.h>
#include <sys/select.h>
#include <sys/stat.h>
#include <sys/statfs.h>
#include <sys/time.h>
#include <sys/uio.h>
#include <sys/sendfile.h>
#include <sys/timerfd.h>
#include <syscall.h>
#include <time.h>
#include <unistd.h>
namespace FEX::HLE::x64 {
void RegisterFD(FEX::HLE::SyscallHandler* Handler) {
REGISTER_SYSCALL_IMPL_X64(
select, [](FEXCore::Core::CpuStateFrame* Frame, int nfds, fd_set* readfds, fd_set* writefds, fd_set* exceptfds, struct timeval* timeout) -> uint64_t {
///< All FD arrays need to be writable
FaultSafeUserMemAccess::VerifyIsWritableOrNull(readfds, sizeof(uint64_t) * nfds);
FaultSafeUserMemAccess::VerifyIsWritableOrNull(writefds, sizeof(uint64_t) * nfds);
FaultSafeUserMemAccess::VerifyIsWritableOrNull(exceptfds, sizeof(uint64_t) * nfds);
FaultSafeUserMemAccess::VerifyIsReadableOrNull(timeout, sizeof(*timeout));
///< timeout doesn't actually need to be writable, this is a quirk of glibc. Kernel just doesn't update timeout if not possible.
FaultSafeUserMemAccess::VerifyIsWritableOrNull(timeout, sizeof(*timeout));
uint64_t Result = ::select(nfds, readfds, writefds, exceptfds, timeout);
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(fcntl, [](FEXCore::Core::CpuStateFrame* Frame, int fd, int cmd, uint64_t arg) -> uint64_t {
uint64_t Result {};
switch (cmd) {
case F_GETFL:
Result = ::fcntl(fd, cmd, arg);
if (Result != -1) {
Result = FEX::HLE::RemapToX86Flags(Result);
}
break;
case F_SETFL: Result = ::fcntl(fd, cmd, FEX::HLE::RemapFromX86Flags(arg)); break;
default: Result = ::fcntl(fd, cmd, arg); break;
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(
futimesat, [](FEXCore::Core::CpuStateFrame* Frame, int dirfd, const char* pathname, const struct timeval times[2]) -> uint64_t {
return FEX::HLE::futimesat_compat<timeval>(dirfd, pathname, times);
});
REGISTER_SYSCALL_IMPL_X64(stat, [](FEXCore::Core::CpuStateFrame* Frame, const char* pathname, FEX::HLE::x64::guest_stat* buf) -> uint64_t {
FaultSafeUserMemAccess::VerifyIsStringReadableMaxSize(pathname, PATH_MAX);
FaultSafeUserMemAccess::VerifyIsWritable(buf, sizeof(*buf));
struct stat host_stat;
uint64_t Result = FEX::HLE::_SyscallHandler->FM.Stat(pathname, &host_stat);
if (Result != -1) {
*buf = host_stat;
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(fstat, [](FEXCore::Core::CpuStateFrame* Frame, int fd, FEX::HLE::x64::guest_stat* buf) -> uint64_t {
FaultSafeUserMemAccess::VerifyIsWritable(buf, sizeof(*buf));
struct stat host_stat;
uint64_t Result = ::fstat(fd, &host_stat);
if (Result != -1) {
*buf = host_stat;
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(lstat, [](FEXCore::Core::CpuStateFrame* Frame, const char* path, FEX::HLE::x64::guest_stat* buf) -> uint64_t {
FaultSafeUserMemAccess::VerifyIsStringReadableMaxSize(path, PATH_MAX);
FaultSafeUserMemAccess::VerifyIsWritable(buf, sizeof(*buf));
struct stat host_stat;
uint64_t Result = FEX::HLE::_SyscallHandler->FM.Lstat(path, &host_stat);
if (Result != -1) {
*buf = host_stat;
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(
newfstatat, [](FEXCore::Core::CpuStateFrame* Frame, int dirfd, const char* pathname, FEX::HLE::x64::guest_stat* buf, int flag) -> uint64_t {
FaultSafeUserMemAccess::VerifyIsStringReadableMaxSize(pathname, PATH_MAX);
FaultSafeUserMemAccess::VerifyIsWritable(buf, sizeof(*buf));
struct stat host_stat;
uint64_t Result = FEX::HLE::_SyscallHandler->FM.NewFSStatAt(dirfd, pathname, &host_stat, flag);
if (Result != -1) {
*buf = host_stat;
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(getdents, [](FEXCore::Core::CpuStateFrame* Frame, int fd, void* dirp, uint32_t count) -> uint64_t {
return GetDentsEmulation<false>(fd, reinterpret_cast<FEX::HLE::x64::linux_dirent*>(dirp), count);
});
REGISTER_SYSCALL_IMPL_X64(getdents64, [](FEXCore::Core::CpuStateFrame* Frame, int fd, void* dirp, uint32_t count) -> uint64_t {
uint64_t Result = ::syscall(SYSCALL_DEF(getdents64), static_cast<uint64_t>(fd), dirp, static_cast<uint64_t>(count));
if (Result != -1) {
// Check for and hide the RootFS FD
for (size_t i = 0; i < Result;) {
linux_dirent_64* Incoming = (linux_dirent_64*)(reinterpret_cast<uint64_t>(dirp) + i);
if (FEX::HLE::_SyscallHandler->FM.IsRootFSFD(fd, Incoming->d_ino)) {
Result -= Incoming->d_reclen;
memmove(Incoming, (linux_dirent_64*)(reinterpret_cast<uint64_t>(Incoming) + Incoming->d_reclen), Result - i);
continue;
}
i += Incoming->d_reclen;
}
}
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(dup2, [](FEXCore::Core::CpuStateFrame* Frame, int oldfd, int newfd) -> uint64_t {
uint64_t Result = ::dup2(oldfd, newfd);
SYSCALL_ERRNO();
});
REGISTER_SYSCALL_IMPL_X64(statfs, [](FEXCore::Core::CpuStateFrame* Frame, const char* path, struct statfs* buf) -> uint64_t {
FaultSafeUserMemAccess::VerifyIsStringReadableMaxSize(path, PATH_MAX);
FaultSafeUserMemAccess::VerifyIsWritable(buf, sizeof(*buf));
uint64_t Result = FEX::HLE::_SyscallHandler->FM.Statfs(path, buf);
SYSCALL_ERRNO();
});
}
} // namespace FEX::HLE::x64