Files
FEX-Emu--FEX/Source/Common/FEXServerClient.cpp
T
2023-11-14 12:54:54 -08:00

376 lines
12 KiB
C++

// SPDX-License-Identifier: MIT
#include "Common/Config.h"
#include "Common/FEXServerClient.h"
#include <FEXCore/Utils/CompilerDefs.h>
#include <FEXCore/Utils/FileLoading.h>
#include <FEXCore/Utils/LogManager.h>
#include <FEXCore/Utils/NetStream.h>
#include <FEXCore/fextl/fmt.h>
#include <FEXCore/fextl/string.h>
#include <FEXCore/fextl/vector.h>
#include <FEXHeaderUtils/Filesystem.h>
#include <fcntl.h>
#include <linux/limits.h>
#include <unistd.h>
#include <sys/poll.h>
#include <sys/prctl.h>
#include <sys/signal.h>
#include <sys/socket.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/un.h>
#include <sys/uio.h>
#include <thread>
namespace FEXServerClient {
int RequestPIDFDPacket(int ServerSocket, PacketType Type) {
FEXServerRequestPacket Req {
.Header {
.Type = Type,
},
};
int Result = write(ServerSocket, &Req, sizeof(Req.BasicRequest));
if (Result != -1) {
// Wait for success response with SCM_RIGHTS
FEXServerResultPacket Res{};
struct iovec iov {
.iov_base = &Res,
.iov_len = sizeof(Res),
};
struct msghdr msg {
.msg_name = nullptr,
.msg_namelen = 0,
.msg_iov = &iov,
.msg_iovlen = 1,
};
// Setup the ancillary buffer. This is where we will be getting pipe FDs
// We only need 4 bytes for the FD
constexpr size_t CMSG_SIZE = CMSG_SPACE(sizeof(int));
union AncillaryBuffer {
struct cmsghdr Header;
uint8_t Buffer[CMSG_SIZE];
};
AncillaryBuffer AncBuf{};
// Now link to our ancilllary buffer
msg.msg_control = AncBuf.Buffer;
msg.msg_controllen = CMSG_SIZE;
ssize_t DataResult = recvmsg(ServerSocket, &msg, 0);
if (DataResult > 0) {
// Now that we have the data, we can extract the FD from the ancillary buffer
struct cmsghdr *cmsg = CMSG_FIRSTHDR(&msg);
// Do some error checking
if (cmsg == nullptr ||
cmsg->cmsg_len != CMSG_LEN(sizeof(int)) ||
cmsg->cmsg_level != SOL_SOCKET ||
cmsg->cmsg_type != SCM_RIGHTS) {
// Couldn't get a socket
}
else {
// Check for Success.
// If type error was returned then the FEXServer doesn't have a log to pipe in to
if (Res.Header.Type == PacketType::TYPE_SUCCESS) {
// Now that we know the cmsg is sane, read the FD
int NewFD{};
memcpy(&NewFD, CMSG_DATA(cmsg), sizeof(NewFD));
return NewFD;
}
}
}
}
return -1;
}
static int ServerFD {-1};
fextl::string GetServerLockFolder() {
return FEXCore::Config::GetDataDirectory() + "Server/";
}
fextl::string GetServerLockFile() {
return GetServerLockFolder() + "Server.lock";
}
fextl::string GetServerRootFSLockFile() {
return GetServerLockFolder() + "RootFS.lock";
}
fextl::string GetTempFolder() {
auto XDGRuntimeEnv = getenv("XDG_RUNTIME_DIR");
if (XDGRuntimeEnv) {
// If the XDG runtime directory works then use that.
return XDGRuntimeEnv;
}
// Fallback to `/tmp/` if XDG_RUNTIME_DIR doesn't exist.
// Might not be ideal but we don't have much of a choice.
return fextl::string{std::filesystem::temp_directory_path().string()};
}
fextl::string GetServerMountFolder() {
// We need a FEXServer mount directory that has some tricky requirements.
// - We don't want to use `/tmp/` if possible.
// - systemd services use `PrivateTmp` feature to gives services their own tmp.
// - We will use this as a fallback path /only/.
// - Can't be `[$XDG_DATA_HOME,$HOME]/.fex-emu/`
// - Might be mounted with a filesystem (sshfs) which can't handle mount points inside it.
//
// Directories it can be in:
// - $XDG_RUNTIME_DIR if set
// - Is typically `/run/user/<UID>/`
// - systemd `PrivateTmp` feature doesn't touch this.
// - If this path doesn't exist then fallback to `/tmp/` as a last resort.
// - pressure-vessel explicitly creates an internal XDG_RUNTIME_DIR inside its chroot.
// - This is okay since pressure-vessel rbinds the FEX rootfs from the host to `/run/pressure-vessel/interpreter-root`.
auto Folder = GetTempFolder();
if (FEXCore::Config::FindContainer() == "pressure-vessel") {
// In pressure-vessel the mount point changes location.
// This is due to pressure-vesssel being a chroot environment.
// It by default maps the host-filesystem to `/run/host/` so we need to redirect.
// After pressure-vessel is fully set up it will set the `FEX_ROOTFS` environment variable,
// which the FEXInterpreter will pick up on.
Folder = "/run/host/" + Folder;
}
return Folder;
}
fextl::string GetServerSocketName() {
FEX_CONFIG_OPT(ServerSocketPath, SERVERSOCKETPATH);
if (ServerSocketPath().empty()) {
return fextl::fmt::format("{}.FEXServer.Socket", ::geteuid());
}
return ServerSocketPath;
}
int GetServerFD() {
return ServerFD;
}
int ConnectToServer(ConnectionOption ConnectionOption) {
auto ServerSocketName = GetServerSocketName();
// Create the initial unix socket
int SocketFD = socket(AF_UNIX, SOCK_STREAM | SOCK_CLOEXEC, 0);
if (SocketFD == -1) {
LogMan::Msg::EFmt("Couldn't open AF_UNIX socket {} {}", errno, strerror(errno));
return -1;
}
// AF_UNIX has a special feature for named socket paths.
// If the name of the socket begins with `\0` then it is an "abstract" socket address.
// The entirety of the name is used as a path to a socket that doesn't have any filesystem backing.
struct sockaddr_un addr{};
addr.sun_family = AF_UNIX;
size_t SizeOfSocketString = std::min(ServerSocketName.size() + 1, sizeof(addr.sun_path) - 1);
addr.sun_path[0] = 0; // Abstract AF_UNIX sockets start with \0
strncpy(addr.sun_path + 1, ServerSocketName.data(), SizeOfSocketString);
// Include final null character.
size_t SizeOfAddr = sizeof(addr.sun_family) + SizeOfSocketString;
if (connect(SocketFD, reinterpret_cast<struct sockaddr*>(&addr), SizeOfAddr) == -1) {
if (ConnectionOption == ConnectionOption::Default || errno != ECONNREFUSED) {
LogMan::Msg::EFmt("Couldn't connect to FEXServer socket {} {} {}", ServerSocketName, errno, strerror(errno));
}
close(SocketFD);
return -1;
}
return SocketFD;
}
bool SetupClient(char *InterpreterPath) {
ServerFD = FEXServerClient::ConnectToAndStartServer(InterpreterPath);
if (ServerFD == -1) {
return false;
}
// If we were started in a container then we want to use the rootfs that they provided.
// In the pressure-vessel case this is a combination of our rootfs and the steam soldier runtime.
if (FEXCore::Config::FindContainer() != "pressure-vessel") {
fextl::string RootFSPath = FEXServerClient::RequestRootFSPath(ServerFD);
//// If everything has passed then we can now update the rootfs path
FEXCore::Config::EraseSet(FEXCore::Config::CONFIG_ROOTFS, RootFSPath);
}
return true;
}
int ConnectToAndStartServer(char *InterpreterPath) {
int ServerFD = ConnectToServer(ConnectionOption::NoPrintConnectionError);
if (ServerFD == -1) {
// Couldn't connect to the server. Start one
// Open some pipes for letting us know when the server is ready
int fds[2]{};
if (pipe2(fds, 0) != 0) {
LogMan::Msg::EFmt("Couldn't open pipe");
return -1;
}
fextl::string FEXServerPath = FHU::Filesystem::ParentPath(InterpreterPath) + "/FEXServer";
// Check if a local FEXServer next to FEXInterpreter exists
// If it does then it takes priority over the installed one
if (!FHU::Filesystem::Exists(FEXServerPath)) {
FEXServerPath = "FEXServer";
}
// Set-up our SIGCHLD handler to ignore the signal.
// This is early in the initialization stage so no handlers have been installed.
//
// We want to ignore the signal so that if FEXServer starts in daemon mode, it
// doesn't leave a zombie process around waiting for something to get the result.
struct sigaction action{};
action.sa_handler = SIG_IGN,
sigaction(SIGCHLD, &action, &action);
pid_t pid = fork();
if (pid == 0) {
// Child
close(fds[0]); // Close read end of pipe
const char *argv[2];
argv[0] = FEXServerPath.c_str();
argv[1] = nullptr;
if (execvp(argv[0], (char * const*)argv) == -1) {
// Let the parent know that we couldn't execute for some reason
uint64_t error{1};
write(fds[1], &error, sizeof(error));
// Give a hopefully helpful error message for users
LogMan::Msg::EFmt("Couldn't execute: {}", argv[0]);
LogMan::Msg::EFmt("This means the squashFS rootfs won't be mounted.");
LogMan::Msg::EFmt("Expect errors!");
// Destroy this fork
exit(1);
}
FEX_UNREACHABLE;
}
else {
// Parent
// Wait for the child to exit so we can check if it is mounted or not
close(fds[1]); // Close write end of the pipe
// Wait for a message from FEXServer
pollfd PollFD;
PollFD.fd = fds[0];
PollFD.events = POLLIN | POLLOUT | POLLRDHUP | POLLERR | POLLHUP | POLLNVAL;
// Wait for a result on the pipe that isn't EINTR
while (poll(&PollFD, 1, -1) == -1 && errno == EINTR);
for (size_t i = 0; i < 5; ++i) {
ServerFD = ConnectToServer(ConnectionOption::Default);
if (ServerFD != -1) {
break;
}
std::this_thread::sleep_for(std::chrono::seconds(1));
}
if (ServerFD == -1) {
// Still couldn't connect to the socket.
LogMan::Msg::EFmt("Couldn't connect to FEXServer socket {} after launching the process", GetServerSocketName());
}
}
// Restore the original SIGCHLD handler if it existed.
sigaction(SIGCHLD, &action, nullptr);
}
return ServerFD;
}
/**
* @name Packet request functions
* @{ */
void RequestServerKill(int ServerSocket) {
FEXServerRequestPacket Req {
.Header {
.Type = PacketType::TYPE_KILL,
},
};
write(ServerSocket, &Req, sizeof(Req.BasicRequest));
}
int RequestLogFD(int ServerSocket) {
return RequestPIDFDPacket(ServerSocket, PacketType::TYPE_GET_LOG_FD);
}
fextl::string RequestRootFSPath(int ServerSocket) {
FEXServerRequestPacket Req {
.Header {
.Type = PacketType::TYPE_GET_ROOTFS_PATH,
},
};
int Result = write(ServerSocket, &Req, sizeof(Req.BasicRequest));
if (Result != -1) {
// Wait for success response with data
fextl::vector<char> Data(PATH_MAX + sizeof(FEXServerResultPacket));
ssize_t DataResult = recv(ServerSocket, Data.data(), Data.size(), 0);
if (DataResult >= sizeof(FEXServerResultPacket)) {
FEXServerResultPacket *ResultPacket = reinterpret_cast<FEXServerResultPacket*>(Data.data());
if (ResultPacket->Header.Type == PacketType::TYPE_GET_ROOTFS_PATH &&
ResultPacket->MountPath.Length > 0) {
return fextl::string(ResultPacket->MountPath.Mount);
}
}
}
return {};
}
int RequestPIDFD(int ServerSocket) {
return RequestPIDFDPacket(ServerSocket, PacketType::TYPE_GET_PID_FD);
}
/** @} */
/**
* @name FEX logging through FEXServer
* @{ */
void MsgHandler(int FD, LogMan::DebugLevels Level, char const *Message) {
size_t MsgLen = strlen(Message) + 1;
Logging::PacketMsg Msg;
Msg.Header = Logging::FillHeader(Logging::PacketTypes::TYPE_MSG);
Msg.MessageLength = MsgLen;
Msg.Level = Level;
const iovec vec[2] = {
{
.iov_base = &Msg,
.iov_len = sizeof(Msg),
},
{
.iov_base = const_cast<char*>(Message),
.iov_len = Msg.MessageLength,
},
};
writev(FD, vec, 2);
}
void AssertHandler(int FD, char const *Message) {
MsgHandler(FD, LogMan::DebugLevels::ASSERT, Message);
}
/** @} */
}