| // Copyright 2017 The Chromium OS Authors. All rights reserved. |
| // Use of this source code is governed by a BSD-style license that can be |
| // found in the LICENSE file. |
| |
| use std; |
| use std::ffi::{CString, CStr}; |
| use std::fmt; |
| use std::fs::{File, OpenOptions, remove_file}; |
| use std::io::{self, stdin, stdout}; |
| use std::os::unix::net::UnixDatagram; |
| use std::path::{Path, PathBuf}; |
| use std::sync::atomic::{AtomicBool, Ordering}; |
| use std::sync::{Arc, Mutex, Barrier}; |
| use std::thread; |
| use std::thread::JoinHandle; |
| |
| use libc; |
| |
| use device_manager; |
| use devices; |
| use io_jail::{self, Minijail}; |
| use kernel_cmdline; |
| use kernel_loader; |
| use kvm::*; |
| use net_util::Tap; |
| use qcow::{self, QcowFile}; |
| use sys_util::*; |
| use sys_util; |
| use vhost; |
| use vm_control::VmRequest; |
| |
| use Config; |
| use DiskType; |
| |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| use x86_64; |
| |
| pub enum Error { |
| BalloonDeviceNew(devices::virtio::BalloonError), |
| BlockDeviceNew(sys_util::Error), |
| ChownWaylandRoot(sys_util::Error), |
| CloneEventFd(sys_util::Error), |
| Cmdline(kernel_cmdline::Error), |
| CreateEventFd(sys_util::Error), |
| CreateGuestMemory(sys_util::GuestMemoryError), |
| CreateIrqChip(sys_util::Error), |
| CreateKvm(sys_util::Error), |
| CreatePit(sys_util::Error), |
| CreateSignalFd(sys_util::SignalFdError), |
| CreateSocket(io::Error), |
| CreateVcpu(sys_util::Error), |
| CreateVm(sys_util::Error), |
| DeviceJail(io_jail::Error), |
| DevicePivotRoot(io_jail::Error), |
| Disk(io::Error), |
| DiskImageLock(sys_util::Error), |
| GetWaylandGroup(sys_util::Error), |
| LoadCmdline(kernel_loader::Error), |
| LoadKernel(kernel_loader::Error), |
| NetDeviceNew(devices::virtio::NetError), |
| NoVarEmpty, |
| OpenKernel(PathBuf, io::Error), |
| QcowDeviceCreate(qcow::Error), |
| RegisterBalloon(device_manager::Error), |
| RegisterBlock(device_manager::Error), |
| RegisterIrqfd(sys_util::Error), |
| RegisterNet(device_manager::Error), |
| RegisterRng(device_manager::Error), |
| RegisterVsock(device_manager::Error), |
| RegisterWayland(device_manager::Error), |
| RngDeviceNew(devices::virtio::RngError), |
| SettingGidMap(io_jail::Error), |
| SettingUidMap(io_jail::Error), |
| SetTssAddr(sys_util::Error), |
| SignalFd(sys_util::SignalFdError), |
| SpawnVcpu(io::Error), |
| VhostNetDeviceNew(devices::virtio::vhost::Error), |
| VhostVsockDeviceNew(devices::virtio::vhost::Error), |
| WaylandDeviceNew(sys_util::Error), |
| WaylandTempDir(sys_util::Error), |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| ConfigureSystem(x86_64::Error), |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| ConfigureVcpu(x86_64::Error), |
| } |
| |
| impl fmt::Display for Error { |
| fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { |
| match self { |
| &Error::BalloonDeviceNew(ref e) => write!(f, "failed to create balloon: {:?}", e), |
| &Error::BlockDeviceNew(ref e) => write!(f, "failed to create block device: {:?}", e), |
| &Error::ChownWaylandRoot(ref e) => { |
| write!(f, "error chowning wayland root directory: {:?}", e) |
| } |
| &Error::CloneEventFd(ref e) => write!(f, "failed to clone eventfd: {:?}", e), |
| &Error::Cmdline(ref e) => write!(f, "the given kernel command line was invalid: {}", e), |
| &Error::CreateEventFd(ref e) => write!(f, "failed to create eventfd: {:?}", e), |
| &Error::CreateGuestMemory(ref e) => write!(f, "failed to create guest memory: {:?}", e), |
| &Error::CreateIrqChip(ref e) => { |
| write!(f, "failed to create in-kernel IRQ chip: {:?}", e) |
| } |
| &Error::CreateKvm(ref e) => write!(f, "failed to open /dev/kvm: {:?}", e), |
| &Error::CreatePit(ref e) => write!(f, "failed to create in-kernel PIT: {:?}", e), |
| &Error::CreateSignalFd(ref e) => write!(f, "failed to create signalfd: {:?}", e), |
| &Error::CreateSocket(ref e) => write!(f, "failed to create socket: {}", e), |
| &Error::CreateVcpu(ref e) => write!(f, "failed to create VCPU: {:?}", e), |
| &Error::CreateVm(ref e) => write!(f, "failed to create KVM VM object: {:?}", e), |
| &Error::DeviceJail(ref e) => write!(f, "failed to jail device: {}", e), |
| &Error::DevicePivotRoot(ref e) => write!(f, "failed to pivot root device: {}", e), |
| &Error::Disk(ref e) => write!(f, "failed to load disk image: {}", e), |
| &Error::DiskImageLock(ref e) => write!(f, "failed to lock disk image: {:?}", e), |
| &Error::GetWaylandGroup(ref e) => { |
| write!(f, "could not find gid for wayland group: {:?}", e) |
| } |
| &Error::LoadCmdline(ref e) => write!(f, "error loading kernel command line: {:?}", e), |
| &Error::LoadKernel(ref e) => write!(f, "error loading kernel: {:?}", e), |
| &Error::NetDeviceNew(ref e) => write!(f, "failed to set up virtio networking: {:?}", e), |
| &Error::NoVarEmpty => write!(f, "/var/empty doesn't exist, can't jail devices."), |
| &Error::OpenKernel(ref p, ref e) => { |
| write!(f, "failed to open kernel image {:?}: {}", p, e) |
| } |
| &Error::QcowDeviceCreate(ref e) => { |
| write!(f, "failed to read qcow formatted file {:?}", e) |
| } |
| &Error::RegisterBalloon(ref e) => { |
| write!(f, "error registering balloon device: {:?}", e) |
| }, |
| &Error::RegisterBlock(ref e) => write!(f, "error registering block device: {:?}", e), |
| &Error::RegisterIrqfd(ref e) => write!(f, "error registering irqfd: {:?}", e), |
| &Error::RegisterNet(ref e) => write!(f, "error registering net device: {:?}", e), |
| &Error::RegisterRng(ref e) => write!(f, "error registering rng device: {:?}", e), |
| &Error::RegisterVsock(ref e) => { |
| write!(f, "error registering virtual socket device: {:?}", e) |
| } |
| &Error::RegisterWayland(ref e) => write!(f, "error registering wayland device: {}", e), |
| &Error::RngDeviceNew(ref e) => write!(f, "failed to set up rng: {:?}", e), |
| &Error::SettingGidMap(ref e) => write!(f, "error setting GID map: {}", e), |
| &Error::SettingUidMap(ref e) => write!(f, "error setting UID map: {}", e), |
| &Error::SetTssAddr(ref e) => write!(f, "failed to set TSS address: {:?}", e), |
| &Error::SignalFd(ref e) => write!(f, "failed to read signal fd: {:?}", e), |
| &Error::SpawnVcpu(ref e) => write!(f, "failed to spawn VCPU thread: {:?}", e), |
| &Error::VhostNetDeviceNew(ref e) => { |
| write!(f, "failed to set up vhost networking: {:?}", e) |
| } |
| &Error::VhostVsockDeviceNew(ref e) => { |
| write!(f, "failed to set up virtual socket device: {:?}", e) |
| } |
| &Error::WaylandDeviceNew(ref e) => { |
| write!(f, "failed to create wayland device: {:?}", e) |
| } |
| &Error::WaylandTempDir(ref e) => { |
| write!(f, "failed to create wayland device jail directroy: {:?}", e) |
| } |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| &Error::ConfigureSystem(ref e) => write!(f, "error configuring system: {:?}", e), |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| &Error::ConfigureVcpu(ref e) => write!(f, "failed to configure vcpu: {:?}", e), |
| } |
| } |
| } |
| |
| type Result<T> = std::result::Result<T, Error>; |
| |
| struct UnlinkUnixDatagram(UnixDatagram); |
| impl AsRef<UnixDatagram> for UnlinkUnixDatagram { |
| fn as_ref(&self) -> &UnixDatagram{ |
| &self.0 |
| } |
| } |
| impl Drop for UnlinkUnixDatagram { |
| fn drop(&mut self) { |
| if let Ok(addr) = self.0.local_addr() { |
| if let Some(path) = addr.as_pathname() { |
| if let Err(e) = remove_file(path) { |
| warn!("failed to remove control socket file: {:?}", e); |
| } |
| } |
| } |
| } |
| } |
| |
| const KERNEL_START_OFFSET: u64 = 0x200000; |
| const CMDLINE_OFFSET: u64 = 0x20000; |
| const CMDLINE_MAX_SIZE: u64 = KERNEL_START_OFFSET - CMDLINE_OFFSET; |
| const BASE_DEV_MEMORY_PFN: u64 = 1u64 << 26; |
| |
| fn create_base_minijail(root: &Path, seccomp_policy: &Path) -> Result<Minijail> { |
| // All child jails run in a new user namespace without any users mapped, |
| // they run as nobody unless otherwise configured. |
| let mut j = Minijail::new().map_err(|e| Error::DeviceJail(e))?; |
| j.namespace_pids(); |
| j.namespace_user(); |
| j.namespace_user_disable_setgroups(); |
| // Don't need any capabilities. |
| j.use_caps(0); |
| // Create a new mount namespace with an empty root FS. |
| j.namespace_vfs(); |
| j.enter_pivot_root(root) |
| .map_err(|e| Error::DevicePivotRoot(e))?; |
| // Run in an empty network namespace. |
| j.namespace_net(); |
| // Apply the block device seccomp policy. |
| j.no_new_privs(); |
| // Use TSYNC only for the side effect of it using SECCOMP_RET_TRAP, which will correctly kill |
| // the entire device process if a worker thread commits a seccomp violation. |
| j.set_seccomp_filter_tsync(); |
| j.parse_seccomp_filters(seccomp_policy) |
| .map_err(|e| Error::DeviceJail(e))?; |
| j.use_seccomp_filter(); |
| // Don't do init setup. |
| j.run_as_init(); |
| Ok(j) |
| } |
| |
| fn setup_memory(memory: Option<usize>) -> Result<GuestMemory> { |
| let mem_size = memory.unwrap_or(256) << 20; |
| #[cfg(not(any(target_arch = "x86", target_arch = "x86_64")))] |
| let arch_mem_regions = vec![(GuestAddress(0), mem_size as u64)]; |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| let arch_mem_regions = x86_64::arch_memory_regions(mem_size as u64); |
| GuestMemory::new(&arch_mem_regions).map_err(Error::CreateGuestMemory) |
| } |
| |
| fn setup_io_bus(vm: &mut Vm, |
| exit_evt: EventFd) |
| -> Result<(devices::Bus, Arc<Mutex<devices::Serial>>)> { |
| struct NoDevice; |
| impl devices::BusDevice for NoDevice {} |
| |
| let mut io_bus = devices::Bus::new(); |
| |
| let com_evt_1_3 = EventFd::new().map_err(Error::CreateEventFd)?; |
| let com_evt_2_4 = EventFd::new().map_err(Error::CreateEventFd)?; |
| let stdio_serial = |
| Arc::new(Mutex::new(devices::Serial::new_out(com_evt_1_3 |
| .try_clone() |
| .map_err(Error::CloneEventFd)?, |
| Box::new(stdout())))); |
| let nul_device = Arc::new(Mutex::new(NoDevice)); |
| io_bus.insert(stdio_serial.clone(), 0x3f8, 0x8).unwrap(); |
| io_bus |
| .insert(Arc::new(Mutex::new(devices::Serial::new_sink(com_evt_2_4 |
| .try_clone() |
| .map_err(Error::CloneEventFd)?))), |
| 0x2f8, |
| 0x8) |
| .unwrap(); |
| io_bus |
| .insert(Arc::new(Mutex::new(devices::Serial::new_sink(com_evt_1_3 |
| .try_clone() |
| .map_err(Error::CloneEventFd)?))), |
| 0x3e8, |
| 0x8) |
| .unwrap(); |
| io_bus |
| .insert(Arc::new(Mutex::new(devices::Serial::new_sink(com_evt_2_4 |
| .try_clone() |
| .map_err(Error::CloneEventFd)?))), |
| 0x2e8, |
| 0x8) |
| .unwrap(); |
| io_bus |
| .insert(Arc::new(Mutex::new(devices::Cmos::new())), 0x70, 0x2) |
| .unwrap(); |
| io_bus |
| .insert(Arc::new(Mutex::new(devices::I8042Device::new(exit_evt |
| .try_clone() |
| .map_err(Error::CloneEventFd)?))), |
| 0x061, |
| 0x4) |
| .unwrap(); |
| io_bus.insert(nul_device.clone(), 0x040, 0x8).unwrap(); // ignore pit |
| io_bus.insert(nul_device.clone(), 0x0ed, 0x1).unwrap(); // most likely this one does nothing |
| io_bus.insert(nul_device.clone(), 0x0f0, 0x2).unwrap(); // ignore fpu |
| io_bus.insert(nul_device.clone(), 0xcf8, 0x8).unwrap(); // ignore pci |
| |
| vm.register_irqfd(&com_evt_1_3, 4) |
| .map_err(Error::RegisterIrqfd)?; |
| vm.register_irqfd(&com_evt_2_4, 3) |
| .map_err(Error::RegisterIrqfd)?; |
| |
| Ok((io_bus, stdio_serial)) |
| } |
| |
| fn setup_mmio_bus(cfg: &Config, |
| vm: &mut Vm, |
| mem: &GuestMemory, |
| cmdline: &mut kernel_cmdline::Cmdline, |
| control_sockets: &mut Vec<UnlinkUnixDatagram>, |
| balloon_device_socket: UnixDatagram) |
| -> Result<devices::Bus> { |
| static DEFAULT_PIVOT_ROOT: &'static str = "/var/empty"; |
| let mut device_manager = |
| device_manager::DeviceManager::new(vm, mem.clone(), 0x1000, 0xd0000000, 5); |
| |
| // An empty directory for jailed device's pivot root. |
| let empty_root_path = Path::new(DEFAULT_PIVOT_ROOT); |
| if cfg.multiprocess && !empty_root_path.exists() { |
| return Err(Error::NoVarEmpty); |
| } |
| |
| for disk in &cfg.disks { |
| let mut raw_image = OpenOptions::new() |
| .read(true) |
| .write(disk.writable) |
| .open(&disk.path) |
| .map_err(|e| Error::Disk(e))?; |
| // Lock the disk image to prevent other crosvm instances from using it. |
| let lock_op = if disk.writable { |
| FlockOperation::LockExclusive |
| } else { |
| FlockOperation::LockShared |
| }; |
| flock(&raw_image, lock_op, true).map_err(Error::DiskImageLock)?; |
| |
| let block_box: Box<devices::virtio::VirtioDevice> = match disk.disk_type { |
| DiskType::FlatFile => { // Access as a raw block device. |
| Box::new(devices::virtio::Block::new(raw_image) |
| .map_err(|e| Error::BlockDeviceNew(e))?) |
| } |
| DiskType::Qcow => { // Valid qcow header present |
| let qcow_image = QcowFile::from(raw_image) |
| .map_err(|e| Error::QcowDeviceCreate(e))?; |
| Box::new(devices::virtio::Block::new(qcow_image) |
| .map_err(|e| Error::BlockDeviceNew(e))?) |
| } |
| }; |
| let jail = if cfg.multiprocess { |
| let policy_path: PathBuf = cfg.seccomp_policy_dir.join("block_device.policy"); |
| Some(create_base_minijail(empty_root_path, &policy_path)?) |
| } |
| else { |
| None |
| }; |
| |
| device_manager |
| .register_mmio(block_box, jail, cmdline) |
| .map_err(Error::RegisterBlock)?; |
| } |
| |
| let rng_box = Box::new(devices::virtio::Rng::new().map_err(Error::RngDeviceNew)?); |
| let rng_jail = if cfg.multiprocess { |
| let policy_path: PathBuf = cfg.seccomp_policy_dir.join("rng_device.policy"); |
| Some(create_base_minijail(empty_root_path, &policy_path)?) |
| } else { |
| None |
| }; |
| device_manager |
| .register_mmio(rng_box, rng_jail, cmdline) |
| .map_err(Error::RegisterRng)?; |
| |
| let balloon_box = Box::new(devices::virtio::Balloon::new(balloon_device_socket) |
| .map_err(Error::BalloonDeviceNew)?); |
| let balloon_jail = if cfg.multiprocess { |
| let policy_path: PathBuf = cfg.seccomp_policy_dir.join("balloon_device.policy"); |
| Some(create_base_minijail(empty_root_path, &policy_path)?) |
| } else { |
| None |
| }; |
| device_manager.register_mmio(balloon_box, balloon_jail, cmdline) |
| .map_err(Error::RegisterBalloon)?; |
| |
| // We checked above that if the IP is defined, then the netmask is, too. |
| if let Some(host_ip) = cfg.host_ip { |
| if let Some(netmask) = cfg.netmask { |
| if let Some(mac_address) = cfg.mac_address { |
| let net_box: Box<devices::virtio::VirtioDevice> = if cfg.vhost_net { |
| Box::new(devices::virtio::vhost::Net::<Tap, vhost::Net<Tap>>::new(host_ip, |
| netmask, |
| mac_address, |
| &mem) |
| .map_err(|e| Error::VhostNetDeviceNew(e))?) |
| } else { |
| Box::new(devices::virtio::Net::<Tap>::new(host_ip, netmask, mac_address) |
| .map_err(|e| Error::NetDeviceNew(e))?) |
| }; |
| |
| let jail = if cfg.multiprocess { |
| let policy_path: PathBuf = if cfg.vhost_net { |
| cfg.seccomp_policy_dir.join("vhost_net_device.policy") |
| } else { |
| cfg.seccomp_policy_dir.join("net_device.policy") |
| }; |
| |
| Some(create_base_minijail(empty_root_path, &policy_path)?) |
| } else { |
| None |
| }; |
| |
| device_manager |
| .register_mmio(net_box, jail, cmdline) |
| .map_err(Error::RegisterNet)?; |
| } |
| } |
| } |
| |
| if let Some(wayland_socket_path) = cfg.wayland_socket_path.as_ref() { |
| let jailed_wayland_path = Path::new("/wayland-0"); |
| |
| let (host_socket, device_socket) = UnixDatagram::pair().map_err(Error::CreateSocket)?; |
| control_sockets.push(UnlinkUnixDatagram(host_socket)); |
| let wl_box = Box::new(devices::virtio::Wl::new(if cfg.multiprocess { |
| &jailed_wayland_path |
| } else { |
| wayland_socket_path.as_path() |
| }, |
| device_socket) |
| .map_err(Error::WaylandDeviceNew)?); |
| |
| let jail = if cfg.multiprocess { |
| let policy_path: PathBuf = cfg.seccomp_policy_dir.join("wl_device.policy"); |
| let mut jail = create_base_minijail(empty_root_path, &policy_path)?; |
| |
| // Create a tmpfs in the device's root directory so that we can bind mount the |
| // wayland socket into it. The size=67108864 is size=64*1024*1024 or size=64MB. |
| jail.mount_with_data(Path::new("none"), Path::new("/"), "tmpfs", |
| (libc::MS_NOSUID | libc::MS_NODEV | libc::MS_NOEXEC) as usize, |
| "size=67108864") |
| .unwrap(); |
| |
| // Bind mount the wayland socket into jail's root. This is necessary since each |
| // new wayland context must open() the socket. |
| jail.mount_bind(wayland_socket_path.as_path(), jailed_wayland_path, true) |
| .unwrap(); |
| |
| // Set the uid/gid for the jailed process, and give a basic id map. This |
| // is required for the above bind mount to work. |
| let crosvm_user_group = CStr::from_bytes_with_nul(b"crosvm\0").unwrap(); |
| let crosvm_uid = match get_user_id(&crosvm_user_group) { |
| Ok(u) => u, |
| Err(e) => { |
| warn!("falling back to current user id for Wayland: {:?}", e); |
| geteuid() |
| } |
| }; |
| let crosvm_gid = match get_group_id(&crosvm_user_group) { |
| Ok(u) => u, |
| Err(e) => { |
| warn!("falling back to current group id for Wayland: {:?}", e); |
| getegid() |
| } |
| }; |
| jail.change_uid(crosvm_uid); |
| jail.change_gid(crosvm_gid); |
| jail.uidmap(&format!("{0} {0} 1", crosvm_uid)) |
| .map_err(Error::SettingUidMap)?; |
| jail.gidmap(&format!("{0} {0} 1", crosvm_gid)) |
| .map_err(Error::SettingGidMap)?; |
| |
| Some(jail) |
| } else { |
| None |
| }; |
| device_manager |
| .register_mmio(wl_box, jail, cmdline) |
| .map_err(Error::RegisterWayland)?; |
| } |
| |
| if let Some(cid) = cfg.cid { |
| let vsock_box = Box::new(devices::virtio::vhost::Vsock::new(cid, &mem) |
| .map_err(Error::VhostVsockDeviceNew)?); |
| |
| let jail = if cfg.multiprocess { |
| let policy_path: PathBuf = cfg.seccomp_policy_dir.join("vhost_vsock_device.policy"); |
| |
| Some(create_base_minijail(empty_root_path, &policy_path)?) |
| } else { |
| None |
| }; |
| |
| device_manager |
| .register_mmio(vsock_box, jail, cmdline) |
| .map_err(Error::RegisterVsock)?; |
| } |
| |
| Ok(device_manager.bus) |
| } |
| |
| fn setup_system_memory(mem: &GuestMemory, |
| vcpu_count: u32, |
| mut kernel_image: File, |
| cmdline: &CStr) |
| -> Result<()> { |
| let kernel_start_addr = GuestAddress(KERNEL_START_OFFSET); |
| let cmdline_addr = GuestAddress(CMDLINE_OFFSET); |
| kernel_loader::load_kernel(mem, kernel_start_addr, &mut kernel_image) |
| .map_err(Error::LoadKernel)?; |
| kernel_loader::load_cmdline(mem, cmdline_addr, cmdline) |
| .map_err(Error::LoadCmdline)?; |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| x86_64::configure_system(mem, |
| kernel_start_addr, |
| cmdline_addr, |
| cmdline.to_bytes().len() + 1, |
| vcpu_count as u8) |
| .map_err(Error::ConfigureSystem)?; |
| Ok(()) |
| } |
| |
| fn setup_vm(kvm: &Kvm, mem: GuestMemory) -> Result<Vm> { |
| let vm = Vm::new(&kvm, mem).map_err(Error::CreateVm)?; |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| { |
| let tss_addr = GuestAddress(0xfffbd000); |
| vm.set_tss_addr(tss_addr).expect("set tss addr failed"); |
| vm.create_pit().expect("create pit failed"); |
| } |
| vm.create_irq_chip().map_err(Error::CreateIrqChip)?; |
| Ok(vm) |
| } |
| |
| fn setup_vcpu(kvm: &Kvm, |
| vm: &Vm, |
| cpu_id: u32, |
| vcpu_count: u32, |
| start_barrier: Arc<Barrier>, |
| exit_evt: EventFd, |
| kill_signaled: Arc<AtomicBool>, |
| io_bus: devices::Bus, |
| mmio_bus: devices::Bus) |
| -> Result<JoinHandle<()>> { |
| let kernel_start_addr = GuestAddress(KERNEL_START_OFFSET); |
| let vcpu = Vcpu::new(cpu_id as libc::c_ulong, &kvm, &vm) |
| .map_err(Error::CreateVcpu)?; |
| #[cfg(any(target_arch = "x86", target_arch = "x86_64"))] |
| x86_64::configure_vcpu(vm.get_memory(), |
| kernel_start_addr, |
| &kvm, |
| &vcpu, |
| cpu_id as u64, |
| vcpu_count as u64) |
| .map_err(Error::ConfigureVcpu)?; |
| thread::Builder::new() |
| .name(format!("crosvm_vcpu{}", cpu_id)) |
| .spawn(move || { |
| unsafe { |
| extern "C" fn handle_signal() {} |
| // Our signal handler does nothing and is trivially async signal safe. |
| register_signal_handler(SIGRTMIN() + 0, handle_signal) |
| .expect("failed to register vcpu signal handler"); |
| } |
| |
| start_barrier.wait(); |
| loop { |
| let run_res = vcpu.run(); |
| match run_res { |
| Ok(run) => { |
| match run { |
| VcpuExit::IoIn(addr, data) => { |
| io_bus.read(addr as u64, data); |
| } |
| VcpuExit::IoOut(addr, data) => { |
| io_bus.write(addr as u64, data); |
| } |
| VcpuExit::MmioRead(addr, data) => { |
| mmio_bus.read(addr, data); |
| } |
| VcpuExit::MmioWrite(addr, data) => { |
| mmio_bus.write(addr, data); |
| } |
| VcpuExit::Hlt => break, |
| VcpuExit::Shutdown => break, |
| r => warn!("unexpected vcpu exit: {:?}", r), |
| } |
| } |
| Err(e) => { |
| match e.errno() { |
| libc::EAGAIN | libc::EINTR => {}, |
| _ => { |
| error!("vcpu hit unknown error: {:?}", e); |
| break; |
| } |
| } |
| } |
| } |
| if kill_signaled.load(Ordering::SeqCst) { |
| break; |
| } |
| } |
| exit_evt |
| .write(1) |
| .expect("failed to signal vcpu exit eventfd"); |
| }) |
| .map_err(Error::SpawnVcpu) |
| } |
| |
| fn run_control(vm: &mut Vm, |
| control_sockets: Vec<UnlinkUnixDatagram>, |
| next_dev_pfn: &mut u64, |
| stdio_serial: Arc<Mutex<devices::Serial>>, |
| exit_evt: EventFd, |
| sigchld_fd: SignalFd, |
| kill_signaled: Arc<AtomicBool>, |
| vcpu_handles: Vec<JoinHandle<()>>, |
| balloon_host_socket: UnixDatagram) |
| -> Result<()> { |
| const MAX_VM_FD_RECV: usize = 1; |
| |
| const EXIT: u32 = 0; |
| const STDIN: u32 = 1; |
| const CHILD_SIGNAL: u32 = 2; |
| const VM_BASE: u32 = 3; |
| |
| let stdin_handle = stdin(); |
| let stdin_lock = stdin_handle.lock(); |
| stdin_lock |
| .set_raw_mode() |
| .expect("failed to set terminal raw mode"); |
| |
| let mut pollables = Vec::new(); |
| pollables.push((EXIT, &exit_evt as &Pollable)); |
| pollables.push((STDIN, &stdin_lock as &Pollable)); |
| pollables.push((CHILD_SIGNAL, &sigchld_fd as &Pollable)); |
| for (i, socket) in control_sockets.iter().enumerate() { |
| pollables.push((VM_BASE + i as u32, socket.as_ref() as &Pollable)); |
| } |
| |
| let mut poller = Poller::new(pollables.len()); |
| let mut scm = Scm::new(MAX_VM_FD_RECV); |
| |
| 'poll: loop { |
| let tokens = { |
| match poller.poll(&pollables[..]) { |
| Ok(v) => v, |
| Err(e) => { |
| error!("failed to poll: {:?}", e); |
| break; |
| } |
| } |
| }; |
| for &token in tokens { |
| match token { |
| EXIT => { |
| info!("vcpu requested shutdown"); |
| break 'poll; |
| } |
| STDIN => { |
| let mut out = [0u8; 64]; |
| match stdin_lock.read_raw(&mut out[..]) { |
| Ok(0) => { |
| // Zero-length read indicates EOF. Remove from pollables. |
| pollables.retain(|&pollable| pollable.0 != STDIN); |
| }, |
| Err(e) => { |
| warn!("error while reading stdin: {:?}", e); |
| pollables.retain(|&pollable| pollable.0 != STDIN); |
| }, |
| Ok(count) => { |
| stdio_serial |
| .lock() |
| .unwrap() |
| .queue_input_bytes(&out[..count]) |
| .expect("failed to queue bytes into serial port"); |
| }, |
| } |
| } |
| CHILD_SIGNAL => { |
| // Print all available siginfo structs, then exit the loop. |
| loop { |
| let result = sigchld_fd.read().map_err(Error::SignalFd)?; |
| if let Some(siginfo) = result { |
| error!("child {} died: signo {}, status {}, code {}", |
| siginfo.ssi_pid, |
| siginfo.ssi_signo, |
| siginfo.ssi_status, |
| siginfo.ssi_code); |
| } |
| break 'poll; |
| } |
| } |
| t if t >= VM_BASE && t < VM_BASE + (control_sockets.len() as u32) => { |
| let socket = &control_sockets[(t - VM_BASE) as usize]; |
| match VmRequest::recv(&mut scm, socket.as_ref()) { |
| Ok(request) => { |
| let mut running = true; |
| let response = |
| request.execute(vm, next_dev_pfn, |
| &mut running, &balloon_host_socket); |
| if let Err(e) = response.send(&mut scm, socket.as_ref()) { |
| error!("failed to send VmResponse: {:?}", e); |
| } |
| if !running { |
| info!("control socket requested exit"); |
| break 'poll; |
| } |
| } |
| Err(e) => error!("failed to recv VmRequest: {:?}", e), |
| } |
| } |
| _ => {} |
| } |
| } |
| } |
| |
| // vcpu threads MUST see the kill signaled flag, otherwise they may |
| // re-enter the VM. |
| kill_signaled.store(true, Ordering::SeqCst); |
| for handle in vcpu_handles { |
| match handle.kill(SIGRTMIN() + 0) { |
| Ok(_) => { |
| if let Err(e) = handle.join() { |
| error!("failed to join vcpu thread: {:?}", e); |
| } |
| } |
| Err(e) => error!("failed to kill vcpu thread: {:?}", e), |
| } |
| } |
| |
| stdin_lock |
| .set_canon_mode() |
| .expect("failed to restore canonical mode for terminal"); |
| |
| Ok(()) |
| } |
| |
| pub fn run_config(cfg: Config) -> Result<()> { |
| if cfg.multiprocess { |
| // Printing something to the syslog before entering minijail so that libc's syslogger has a |
| // chance to open files necessary for its operation, like `/etc/localtime`. After jailing, |
| // access to those files will not be possible. |
| info!("crosvm entering multiprocess mode"); |
| } |
| |
| |
| // Masking signals is inherently dangerous, since this can persist across clones/execs. Do this |
| // before any jailed devices have been spawned, so that we can catch any of them that fail very |
| // quickly. |
| let sigchld_fd = SignalFd::new(libc::SIGCHLD).map_err(Error::CreateSignalFd)?; |
| |
| let mut control_sockets = Vec::new(); |
| if let Some(ref path) = cfg.socket_path { |
| let path = Path::new(path); |
| let control_socket = UnixDatagram::bind(path).map_err(Error::CreateSocket)?; |
| control_sockets.push(UnlinkUnixDatagram(control_socket)); |
| } |
| |
| let kill_signaled = Arc::new(AtomicBool::new(false)); |
| let exit_evt = EventFd::new().map_err(Error::CreateEventFd)?; |
| |
| let mem = setup_memory(cfg.memory)?; |
| let kvm = Kvm::new().map_err(Error::CreateKvm)?; |
| let mut vm = setup_vm(&kvm, mem.clone())?; |
| |
| let mut cmdline = kernel_cmdline::Cmdline::new(CMDLINE_MAX_SIZE as usize); |
| cmdline |
| .insert_str("console=ttyS0 noacpi reboot=k panic=1 pci=off") |
| .unwrap(); |
| |
| let mut next_dev_pfn = BASE_DEV_MEMORY_PFN; |
| let (io_bus, stdio_serial) = setup_io_bus(&mut vm, |
| exit_evt.try_clone().map_err(Error::CloneEventFd)?)?; |
| |
| let (balloon_host_socket, balloon_device_socket) = UnixDatagram::pair() |
| .map_err(Error::CreateSocket)?; |
| let mmio_bus = setup_mmio_bus(&cfg, |
| &mut vm, |
| &mem, |
| &mut cmdline, |
| &mut control_sockets, |
| balloon_device_socket)?; |
| |
| for param in &cfg.params { |
| cmdline.insert_str(¶m).map_err(Error::Cmdline)?; |
| } |
| |
| let vcpu_count = cfg.vcpu_count.unwrap_or(1); |
| let kernel_image = File::open(cfg.kernel_path.as_path()) |
| .map_err(|e| Error::OpenKernel(cfg.kernel_path.clone(), e))?; |
| setup_system_memory(&mem, |
| vcpu_count, |
| kernel_image, |
| &CString::new(cmdline).unwrap())?; |
| |
| let mut vcpu_handles = Vec::with_capacity(vcpu_count as usize); |
| let vcpu_thread_barrier = Arc::new(Barrier::new((vcpu_count + 1) as usize)); |
| for cpu_id in 0..vcpu_count { |
| let exit_evt = exit_evt.try_clone().map_err(Error::CloneEventFd)?; |
| let vcpu_handle = setup_vcpu(&kvm, |
| &vm, |
| cpu_id, |
| vcpu_count, |
| vcpu_thread_barrier.clone(), |
| exit_evt, |
| kill_signaled.clone(), |
| io_bus.clone(), |
| mmio_bus.clone())?; |
| vcpu_handles.push(vcpu_handle); |
| } |
| vcpu_thread_barrier.wait(); |
| |
| run_control(&mut vm, |
| control_sockets, |
| &mut next_dev_pfn, |
| stdio_serial, |
| exit_evt, |
| sigchld_fd, |
| kill_signaled, |
| vcpu_handles, |
| balloon_host_socket) |
| } |