1#![expect(missing_docs)]
8#![forbid(unsafe_code)]
9
10mod cli_args;
11mod crash_dump;
12mod kvp;
13mod meshworker;
14mod pidfile;
15mod repl;
16mod serial_io;
17mod storage_builder;
18mod tracing_init;
19mod ttrpc;
20mod vm_controller;
21
22pub use cli_args::Options;
25use console_relay::ConsoleLaunchOptions;
26
27use crate::cli_args::SecureBootTemplateCli;
28use anyhow::Context;
29use anyhow::bail;
30use chipset_resources::battery::HostBatteryUpdate;
31use cli_args::DiskCliKind;
32use cli_args::EfiDiagnosticsLogLevelCli;
33use cli_args::EndpointConfigCli;
34use cli_args::GuestPowerAction;
35use cli_args::NicConfigCli;
36use cli_args::ProvisionVmgs;
37use cli_args::SerialConfigCli;
38use cli_args::UefiConsoleModeCli;
39use cli_args::VirtioBusCli;
40use cli_args::VmgsCli;
41use crash_dump::spawn_dump_handler;
42use cxl_spec::test::CxlTestDeviceHandle;
43use disk_backend_resources::DelayDiskHandle;
44use disk_backend_resources::DiskLayerDescription;
45use disk_backend_resources::layer::DiskLayerHandle;
46use disk_backend_resources::layer::RamDiskLayerHandle;
47use disk_backend_resources::layer::SqliteAutoCacheDiskLayerHandle;
48use disk_backend_resources::layer::SqliteDiskLayerHandle;
49use floppy_resources::FloppyDiskConfig;
50use framebuffer::FRAMEBUFFER_SIZE;
51use framebuffer::FramebufferAccess;
52use futures::AsyncReadExt;
53use futures::AsyncWrite;
54use futures::StreamExt;
55use futures::executor::block_on;
56use futures::io::AllowStdIo;
57use gdma_resources::GdmaDeviceHandle;
58use gdma_resources::VportDefinition;
59use guid::Guid;
60use input_core::MultiplexedInputHandle;
61use inspect::InspectMut;
62use mesh::CancelContext;
63use mesh::CellUpdater;
64use mesh::rpc::RpcSend;
65use meshworker::VmmMesh;
66use net_backend_resources::mac_address::MacAddress;
67use nvme_resources::NvmeControllerRequest;
68use openvmm_defs::config::Config;
69use openvmm_defs::config::DEFAULT_PCAT_BOOT_ORDER;
70use openvmm_defs::config::DeviceVtl;
71use openvmm_defs::config::EfiDiagnosticsLogLevelType;
72use openvmm_defs::config::HypervisorConfig;
73use openvmm_defs::config::LateMapVtl0MemoryPolicy;
74use openvmm_defs::config::LoadMode;
75use openvmm_defs::config::MemoryConfig;
76use openvmm_defs::config::NumaDistance;
77use openvmm_defs::config::NumaNode;
78use openvmm_defs::config::NumaTopology;
79use openvmm_defs::config::PcieDeviceConfig;
80use openvmm_defs::config::PcieMmioRangeConfig;
81use openvmm_defs::config::PciePortConfig;
82use openvmm_defs::config::PcieRootComplexConfig;
83use openvmm_defs::config::PcieSwitchConfig;
84use openvmm_defs::config::ProcessorTopologyConfig;
85use openvmm_defs::config::RootComplexCxlConfig;
86use openvmm_defs::config::SerialInformation;
87use openvmm_defs::config::VirtioBus;
88use openvmm_defs::config::VmbusConfig;
89use openvmm_defs::config::VpAssignment;
90use openvmm_defs::config::VpciDeviceConfig;
91use openvmm_defs::config::Vtl2Config;
92use openvmm_defs::rpc::VmRpc;
93use openvmm_defs::worker::VM_WORKER;
94use openvmm_defs::worker::VmWorkerParameters;
95use openvmm_helpers::disk::OpenDiskOptions;
96use openvmm_helpers::disk::create_disk_type;
97use openvmm_helpers::disk::open_disk_type;
98use pal_async::DefaultDriver;
99use pal_async::DefaultPool;
100use pal_async::socket::PolledSocket;
101use pal_async::task::Spawn;
102use pal_async::task::Task;
103use serial_16550_resources::ComPort;
104use serial_core::resources::DisconnectedSerialBackendHandle;
105use sparse_mmap::alloc_shared_memory;
106use std::cell::RefCell;
107use std::collections::BTreeMap;
108use std::fmt::Write as _;
109use std::io;
110#[cfg(unix)]
111use std::io::IsTerminal;
112use std::io::Write;
113use std::net::TcpListener;
114use std::path::Path;
115use std::path::PathBuf;
116use std::sync::Arc;
117use std::thread;
118use std::time::Duration;
119use storvsp_resources::ScsiControllerRequest;
120use tpm_resources::TpmDeviceHandle;
121use tpm_resources::TpmRegisterLayout;
122use uidevices_resources::SynthKeyboardHandle;
123use uidevices_resources::SynthMouseHandle;
124use uidevices_resources::SynthVideoHandle;
125use video_core::SharedFramebufferHandle;
126use virtio_resources::VirtioPciDeviceHandle;
127use vm_manifest_builder::BaseChipsetType;
128use vm_manifest_builder::MachineArch;
129use vm_manifest_builder::VmChipsetResult;
130use vm_manifest_builder::VmManifestBuilder;
131use vm_resource::IntoResource;
132use vm_resource::Resource;
133use vm_resource::kind::DiskHandleKind;
134use vm_resource::kind::DiskLayerHandleKind;
135use vm_resource::kind::NetEndpointHandleKind;
136use vm_resource::kind::VirtioDeviceHandle;
137use vm_resource::kind::VmbusDeviceHandleKind;
138use vmbus_serial_resources::VmbusSerialDeviceHandle;
139use vmbus_serial_resources::VmbusSerialPort;
140use vmcore::non_volatile_store::resources::EphemeralNonVolatileStoreHandle;
141use vmgs_resources::GuestStateEncryptionPolicy;
142use vmgs_resources::VmgsDisk;
143use vmgs_resources::VmgsFileHandle;
144use vmgs_resources::VmgsResource;
145use vmotherboard::ChipsetDeviceHandle;
146use vnc_worker_defs::VncParameters;
147
148pub fn openvmm_main() {
149 #[cfg(unix)]
152 let orig_termios = io::stderr().is_terminal().then(term::get_termios);
153
154 let mut pidfile_guard: Option<pidfile::Pidfile> = None;
155 let exit_code = match do_main(&mut pidfile_guard) {
156 Ok(code) => code,
157 Err(err) => {
158 eprintln!("fatal error: {:?}", err);
159 1
160 }
161 };
162
163 #[cfg(unix)]
165 if let Some(orig_termios) = orig_termios {
166 term::set_termios(orig_termios);
167 }
168
169 drop(pidfile_guard);
172
173 let _ = io::stdout().flush();
179 pal::process::terminate(exit_code);
180}
181
182#[derive(Default)]
183struct VmResources {
184 console_in: Option<Box<dyn AsyncWrite + Send + Unpin>>,
185 serial_driver: Option<DefaultDriver>,
187 framebuffer_access: Option<FramebufferAccess>,
188 shutdown_ic: Option<mesh::Sender<hyperv_ic_resources::shutdown::ShutdownRpc>>,
189 kvp_ic: Option<mesh::Sender<hyperv_ic_resources::kvp::KvpConnectRpc>>,
190 scsi_rpc: Option<mesh::Sender<ScsiControllerRequest>>,
191 nvme_vtl2_rpc: Option<mesh::Sender<NvmeControllerRequest>>,
192 consomme_rpc: Option<mesh::Sender<net_backend_resources::consomme::ConsommeRequest>>,
193 ged_rpc: Option<mesh::Sender<get_resources::ged::GuestEmulationRequest>>,
194 vtl2_settings: Option<vtl2_settings_proto::Vtl2Settings>,
195 dirty_rect_recv: Option<mesh::Receiver<Vec<video_core::DirtyRect>>>,
197 #[cfg(windows)]
198 switch_ports: Vec<vmswitch::kernel::SwitchPort>,
199}
200
201struct ConsoleState<'a> {
202 device: &'a str,
203 input: Box<dyn AsyncWrite + Unpin + Send>,
204}
205
206fn build_switch_list(all_switches: &[cli_args::GenericPcieSwitchCli]) -> Vec<PcieSwitchConfig> {
211 all_switches
212 .iter()
213 .map(|switch_cli| PcieSwitchConfig {
214 name: switch_cli.name.clone(),
215 parent_port: switch_cli.port_name.clone(),
216 ports: (0..switch_cli.num_downstream_ports)
217 .map(|i| PciePortConfig {
218 name: format!("{}-downstream-{}", switch_cli.name, i),
219 devfn: None,
220 hotplug: switch_cli.hotplug,
221 acs_capabilities_supported: switch_cli.acs_capabilities_supported,
222 cxl: false,
223 })
224 .collect(),
225 })
226 .collect()
227}
228
229async fn vm_config_from_command_line(
230 spawner: impl Spawn,
231 mesh: &VmmMesh,
232 opt: &Options,
233) -> anyhow::Result<(Config, VmResources)> {
234 let (_, serial_driver) = DefaultPool::spawn_on_thread("serial");
235
236 let openhcl_vtl = if opt.vtl2 {
237 DeviceVtl::Vtl2
238 } else {
239 DeviceVtl::Vtl0
240 };
241
242 let console_state: RefCell<Option<ConsoleState<'_>>> = RefCell::new(None);
243 let setup_serial = |name: &str, cli_cfg, device| -> anyhow::Result<_> {
244 Ok(match cli_cfg {
245 SerialConfigCli::Console => {
246 if let Some(console_state) = console_state.borrow().as_ref() {
247 bail!("console already set by {}", console_state.device);
248 }
249 let (config, serial) = serial_io::anonymous_serial_pair(&serial_driver)?;
250 let (serial_read, serial_write) = AsyncReadExt::split(serial);
251 *console_state.borrow_mut() = Some(ConsoleState {
252 device,
253 input: Box::new(serial_write),
254 });
255 thread::Builder::new()
256 .name(name.to_owned())
257 .spawn(move || {
258 let _ = block_on(futures::io::copy(
259 serial_read,
260 &mut AllowStdIo::new(term::raw_stdout()),
261 ));
262 })
263 .unwrap();
264 Some(config)
265 }
266 SerialConfigCli::Stderr => {
267 let (config, serial) = serial_io::anonymous_serial_pair(&serial_driver)?;
268 thread::Builder::new()
269 .name(name.to_owned())
270 .spawn(move || {
271 let _ = block_on(futures::io::copy(
272 serial,
273 &mut AllowStdIo::new(term::raw_stderr()),
274 ));
275 })
276 .unwrap();
277 Some(config)
278 }
279 SerialConfigCli::File(path) => {
280 let (config, serial) = serial_io::anonymous_serial_pair(&serial_driver)?;
281 let file = fs_err::File::create(path).context("failed to create file")?;
282
283 thread::Builder::new()
284 .name(name.to_owned())
285 .spawn(move || {
286 let _ = block_on(futures::io::copy(serial, &mut AllowStdIo::new(file)));
287 })
288 .unwrap();
289 Some(config)
290 }
291 SerialConfigCli::None => None,
292 SerialConfigCli::Pipe(path) => {
293 Some(serial_io::bind_serial(&path).context("failed to bind serial")?)
294 }
295 SerialConfigCli::Tcp(addr) => {
296 Some(serial_io::bind_tcp_serial(&addr).context("failed to bind serial")?)
297 }
298 SerialConfigCli::NewConsole(app, window_title) => {
299 let path = console_relay::random_console_path();
300 let config =
301 serial_io::bind_serial(&path).context("failed to bind console serial")?;
302 let window_title =
303 window_title.unwrap_or_else(|| name.to_uppercase() + " [OpenVMM]");
304
305 console_relay::launch_console(
306 app.or_else(openvmm_terminal_app).as_deref(),
307 &path,
308 ConsoleLaunchOptions {
309 window_title: Some(window_title),
310 },
311 )
312 .context("failed to launch console")?;
313
314 Some(config)
315 }
316 })
317 };
318
319 let mut vmbus_devices = Vec::new();
320
321 let com_debugger_mode = [
322 opt.com1.as_ref().is_some_and(|c| c.debugger_mode),
323 opt.com2.as_ref().is_some_and(|c| c.debugger_mode),
324 opt.com3.as_ref().is_some_and(|c| c.debugger_mode),
325 opt.com4.as_ref().is_some_and(|c| c.debugger_mode),
326 ];
327
328 let serial0_cfg = setup_serial(
329 "com1",
330 opt.com1
331 .clone()
332 .map_or(SerialConfigCli::Console, |c| c.backend),
333 if cfg!(guest_arch = "x86_64") {
334 "ttyS0"
335 } else {
336 "ttyAMA0"
337 },
338 )?;
339 let serial1_cfg = setup_serial(
340 "com2",
341 opt.com2
342 .clone()
343 .map_or(SerialConfigCli::None, |c| c.backend),
344 if cfg!(guest_arch = "x86_64") {
345 "ttyS1"
346 } else {
347 "ttyAMA1"
348 },
349 )?;
350 let serial2_cfg = setup_serial(
351 "com3",
352 opt.com3
353 .clone()
354 .map_or(SerialConfigCli::None, |c| c.backend),
355 if cfg!(guest_arch = "x86_64") {
356 "ttyS2"
357 } else {
358 "ttyAMA2"
359 },
360 )?;
361 let serial3_cfg = setup_serial(
362 "com4",
363 opt.com4
364 .clone()
365 .map_or(SerialConfigCli::None, |c| c.backend),
366 if cfg!(guest_arch = "x86_64") {
367 "ttyS3"
368 } else {
369 "ttyAMA3"
370 },
371 )?;
372 let with_vmbus_com1_serial = if let Some(vmbus_com1_cfg) = setup_serial(
373 "vmbus_com1",
374 opt.vmbus_com1_serial
375 .clone()
376 .unwrap_or(SerialConfigCli::None),
377 "vmbus_com1",
378 )? {
379 vmbus_devices.push((
380 openhcl_vtl,
381 VmbusSerialDeviceHandle {
382 port: VmbusSerialPort::Com1,
383 backend: vmbus_com1_cfg,
384 }
385 .into_resource(),
386 ));
387 true
388 } else {
389 false
390 };
391 let with_vmbus_com2_serial = if let Some(vmbus_com2_cfg) = setup_serial(
392 "vmbus_com2",
393 opt.vmbus_com2_serial
394 .clone()
395 .unwrap_or(SerialConfigCli::None),
396 "vmbus_com2",
397 )? {
398 vmbus_devices.push((
399 openhcl_vtl,
400 VmbusSerialDeviceHandle {
401 port: VmbusSerialPort::Com2,
402 backend: vmbus_com2_cfg,
403 }
404 .into_resource(),
405 ));
406 true
407 } else {
408 false
409 };
410 let debugcon_cfg = setup_serial(
411 "debugcon",
412 opt.debugcon
413 .clone()
414 .map(|cfg| cfg.serial)
415 .unwrap_or(SerialConfigCli::None),
416 "debugcon",
417 )?;
418
419 let virtio_console_backend = if let Some(serial_cfg) = opt.virtio_console.clone() {
420 setup_serial("virtio-console", serial_cfg, "hvc0")?
421 } else {
422 None
423 };
424
425 let mut resources = VmResources::default();
426 let mut console_str = "";
427 if let Some(ConsoleState { device, input }) = console_state.into_inner() {
428 resources.console_in = Some(input);
429 console_str = device;
430 }
431
432 if opt.shared_memory {
433 tracing::warn!("--shared-memory/-M flag has no effect and will be removed");
434 }
435 if opt.deprecated_prefetch {
436 tracing::warn!("--prefetch is deprecated; use --memory prefetch=on");
437 }
438 if opt.deprecated_private_memory {
439 tracing::warn!("--private-memory is deprecated; use --memory shared=off");
440 }
441 if opt.deprecated_thp {
442 tracing::warn!("--thp is deprecated; use --memory shared=off,thp=on");
443 }
444 if opt.deprecated_memory_backing_file.is_some() {
445 tracing::warn!("--memory-backing-file is deprecated; use --memory file=<path>");
446 }
447
448 opt.validate_memory_options()?;
449
450 const MAX_PROCESSOR_COUNT: u32 = 1024;
451
452 if opt.processors == 0 || opt.processors > MAX_PROCESSOR_COUNT {
453 bail!("invalid proc count: {}", opt.processors);
454 }
455
456 if opt.scsi_sub_channels > (MAX_PROCESSOR_COUNT - 1) as u16 {
459 bail!(
460 "invalid SCSI sub-channel count: requested {}, max {}",
461 opt.scsi_sub_channels,
462 MAX_PROCESSOR_COUNT - 1
463 );
464 }
465
466 let with_get = opt.get || (opt.vtl2 && !opt.no_get);
467
468 let mut storage = storage_builder::StorageBuilder::new(with_get.then_some(openhcl_vtl));
469
470 for ctrl in &opt.nvme_pci {
473 let transport = match &ctrl.transport {
474 cli_args::NvmeControllerTransport::Pcie(port) => {
475 storage_builder::NvmeControllerTransport::Pcie(port.clone())
476 }
477 cli_args::NvmeControllerTransport::Vpci(guid) => {
478 let guid = guid.unwrap_or_else(|| storage_builder::deterministic_guid(&ctrl.id));
479 storage_builder::NvmeControllerTransport::Vpci(guid)
480 }
481 };
482 storage.add_nvme_controller(ctrl.id.clone(), ctrl.vtl, transport, None)?;
483 }
484
485 for ctrl in &opt.vmbus_scsi {
486 let instance_id = storage_builder::deterministic_guid(&ctrl.id);
487 storage.add_scsi_controller(ctrl.id.clone(), ctrl.vtl, instance_id, ctrl.sub_channels)?;
488 }
489
490 for ctrl in &opt.openhcl_controller {
491 let controller_type = match ctrl.controller_type {
492 cli_args::OpenhclControllerType::Scsi => storage_builder::OpenhclControllerType::Scsi,
493 cli_args::OpenhclControllerType::Nvme => storage_builder::OpenhclControllerType::Nvme,
494 };
495 let instance_id = ctrl
496 .guid
497 .unwrap_or_else(|| storage_builder::deterministic_guid(&ctrl.id));
498 storage.add_openhcl_controller(ctrl.id.clone(), controller_type, instance_id)?;
499 }
500
501 for &cli_args::DiskCli {
502 vtl,
503 ref kind,
504 read_only,
505 is_dvd,
506 underhill,
507 ref pcie_port,
508 ref controller,
509 nsid,
510 lun,
511 ref relay,
512 } in &opt.disk
513 {
514 if controller.is_none() && underhill.is_none() && relay.is_none() {
515 tracing::warn!(
516 "--disk without `on` is deprecated; \
517 use --vmbus-scsi and --disk on=<name> instead"
518 );
519 }
520
521 let relay_target = relay
522 .as_ref()
523 .map(|(name, loc)| storage_builder::RelayTarget {
524 controller: name.clone(),
525 location: *loc,
526 });
527
528 let target = if let Some(name) = controller {
529 if pcie_port.is_some() {
530 anyhow::bail!("`on` is incompatible with `pcie_port` on `--disk`");
531 }
532 storage_builder::DiskLocation::Named {
533 controller: name.clone(),
534 nsid,
535 lun,
536 }
537 } else if pcie_port.is_some() {
538 anyhow::bail!("`--disk` is incompatible with `pcie_port` without `controller`");
539 } else {
540 if opt.no_vmbus {
541 anyhow::bail!(
542 "`--disk` without `on=` attaches to the default VMBus SCSI controller and \
543 cannot be used with `--no-vmbus`; use `on=<name>` to attach to a named controller"
544 );
545 }
546 storage_builder::DiskLocation::Scsi(None)
547 };
548
549 storage
550 .add(
551 vtl,
552 underhill,
553 relay_target,
554 target,
555 kind,
556 is_dvd,
557 read_only,
558 )
559 .await?;
560 }
561
562 for &cli_args::IdeDiskCli {
563 ref kind,
564 read_only,
565 channel,
566 device,
567 is_dvd,
568 } in &opt.ide
569 {
570 storage
571 .add(
572 DeviceVtl::Vtl0,
573 None,
574 None,
575 storage_builder::DiskLocation::Ide(channel, device),
576 kind,
577 is_dvd,
578 read_only,
579 )
580 .await?;
581 }
582
583 if !opt.nvme.is_empty() {
584 tracing::warn!("--nvme is deprecated; use --nvme-pci and --disk on=<name> instead");
585
586 let mut registered_ports = std::collections::BTreeSet::new();
588 for disk in &opt.nvme {
589 if let Some(port) = &disk.pcie_port {
590 if registered_ports.insert(port.clone()) {
591 storage.add_nvme_controller(
592 port.clone(),
593 DeviceVtl::Vtl0,
594 storage_builder::NvmeControllerTransport::Pcie(port.clone()),
595 None,
596 ).with_context(|| format!(
597 "legacy --nvme flag conflicts with an explicit controller named '{port}'; \
598 use --nvme-pci and --disk on=<name> instead"
599 ))?;
600 }
601 }
602 }
603 }
604
605 for &cli_args::DiskCli {
606 vtl,
607 ref kind,
608 read_only,
609 is_dvd,
610 underhill,
611 ref pcie_port,
612 controller: _,
613 nsid: _,
614 lun: _,
615 relay: _,
616 } in &opt.nvme
617 {
618 let target = if let Some(port) = pcie_port {
619 storage_builder::DiskLocation::Named {
620 controller: port.clone(),
621 nsid: None,
622 lun: None,
623 }
624 } else {
625 storage_builder::DiskLocation::Nvme(None)
626 };
627 storage
628 .add(vtl, underhill, None, target, kind, is_dvd, read_only)
629 .await?;
630 }
631
632 for &cli_args::DiskCli {
633 vtl,
634 ref kind,
635 read_only,
636 is_dvd,
637 ref underhill,
638 ref pcie_port,
639 controller: _,
640 nsid: _,
641 lun: _,
642 relay: _,
643 } in &opt.virtio_blk
644 {
645 if underhill.is_some() {
646 anyhow::bail!("underhill not supported with virtio-blk");
647 }
648 storage
649 .add(
650 vtl,
651 None,
652 None,
653 storage_builder::DiskLocation::VirtioBlk(pcie_port.clone()),
654 kind,
655 is_dvd,
656 read_only,
657 )
658 .await?;
659 }
660
661 let mut floppy_disks = Vec::new();
662 for disk in &opt.floppy {
663 let &cli_args::FloppyDiskCli {
664 ref kind,
665 read_only,
666 } = disk;
667 floppy_disks.push(FloppyDiskConfig {
668 disk_type: disk_open(kind, read_only).await?,
669 read_only,
670 });
671 }
672
673 let mut vpci_mana_nics = [(); 3].map(|()| None);
674 let mut pcie_mana_nics = BTreeMap::<String, GdmaDeviceHandle>::new();
675 let mut underhill_nics = Vec::new();
676 let mut vpci_devices = Vec::new();
677
678 let mut nic_index = 0;
679 for cli_cfg in &opt.net {
680 if cli_cfg.pcie_port.is_some() {
681 anyhow::bail!("`--net` does not support PCIe");
682 }
683 let vport = parse_endpoint(cli_cfg, &mut nic_index, &mut resources)?;
684 if cli_cfg.underhill {
685 if !opt.no_alias_map {
686 anyhow::bail!("must specify --no-alias-map to offer NICs to VTL2");
687 }
688 let mana = vpci_mana_nics[openhcl_vtl as usize].get_or_insert_with(|| {
689 let vpci_instance_id = Guid::new_random();
690 underhill_nics.push(vtl2_settings_proto::NicDeviceLegacy {
691 instance_id: vpci_instance_id.to_string(),
692 subordinate_instance_id: None,
693 max_sub_channels: None,
694 });
695 (vpci_instance_id, GdmaDeviceHandle { vports: Vec::new() })
696 });
697 mana.1.vports.push(VportDefinition {
698 mac_address: vport.mac_address,
699 endpoint: vport.endpoint,
700 });
701 } else {
702 vmbus_devices.push(vport.into_netvsp_handle());
703 }
704 }
705
706 if opt.nic {
707 let nic_config = parse_endpoint(
708 &NicConfigCli {
709 vtl: DeviceVtl::Vtl0,
710 endpoint: EndpointConfigCli::Consomme {
711 cidr: None,
712 host_fwd: Vec::new(),
713 },
714 max_queues: None,
715 underhill: false,
716 pcie_port: None,
717 },
718 &mut nic_index,
719 &mut resources,
720 )?;
721 vmbus_devices.push(nic_config.into_netvsp_handle());
722 }
723
724 let mut pcie_devices = Vec::new();
727 for (index, cli_cfg) in opt.pcie_remote.iter().enumerate() {
728 tracing::info!(
729 port_name = %cli_cfg.port_name,
730 socket_addr = ?cli_cfg.socket_addr,
731 "instantiating PCIe remote device"
732 );
733
734 const PCIE_REMOTE_BASE_INSTANCE_ID: Guid =
736 guid::guid!("28ed784d-c059-429f-9d9a-46bea02562c0");
737 let instance_id = Guid {
738 data1: index as u32,
739 ..PCIE_REMOTE_BASE_INSTANCE_ID
740 };
741
742 pcie_devices.push(PcieDeviceConfig {
743 port_name: cli_cfg.port_name.clone(),
744 resource: pcie_remote_resources::PcieRemoteHandle {
745 instance_id,
746 socket_addr: cli_cfg.socket_addr.clone(),
747 hu: cli_cfg.hu,
748 controller: cli_cfg.controller,
749 }
750 .into_resource(),
751 });
752 }
753
754 #[cfg(windows)]
755 let mut kernel_vmnics = Vec::new();
756 #[cfg(windows)]
757 for (index, switch_id) in opt.kernel_vmnic.iter().enumerate() {
758 let mut mac_address = [0x00, 0x15, 0x5D, 0, 0, 0];
760 getrandom::fill(&mut mac_address[3..]).expect("rng failure");
761
762 const BASE_INSTANCE_ID: Guid = guid::guid!("00000000-435d-11ee-9f59-00155d5016fc");
764 let instance_id = Guid {
765 data1: index as u32,
766 ..BASE_INSTANCE_ID
767 };
768
769 let switch_id = if switch_id == "default" {
770 None
771 } else {
772 Some(switch_id.as_str())
773 };
774 let (port_id, port) = new_switch_port(switch_id)?;
775 resources.switch_ports.push(port);
776
777 kernel_vmnics.push(openvmm_defs::config::KernelVmNicConfig {
778 instance_id,
779 mac_address: mac_address.into(),
780 switch_port_id: port_id,
781 });
782 }
783
784 for vport in &opt.mana {
785 let vport = parse_endpoint(vport, &mut nic_index, &mut resources)?;
786 let vport_array = match (vport.vtl as usize, vport.pcie_port) {
787 (vtl, None) => {
788 &mut vpci_mana_nics[vtl]
789 .get_or_insert_with(|| {
790 (Guid::new_random(), GdmaDeviceHandle { vports: Vec::new() })
791 })
792 .1
793 .vports
794 }
795 (0, Some(pcie_port)) => {
796 &mut pcie_mana_nics
797 .entry(pcie_port)
798 .or_insert(GdmaDeviceHandle { vports: Vec::new() })
799 .vports
800 }
801 _ => anyhow::bail!("PCIe NICs only supported to VTL0"),
802 };
803 vport_array.push(VportDefinition {
804 mac_address: vport.mac_address,
805 endpoint: vport.endpoint,
806 });
807 }
808
809 vpci_devices.extend(
810 vpci_mana_nics
811 .into_iter()
812 .enumerate()
813 .filter_map(|(vtl, nic)| {
814 nic.map(|(instance_id, handle)| VpciDeviceConfig {
815 vtl: match vtl {
816 0 => DeviceVtl::Vtl0,
817 1 => DeviceVtl::Vtl1,
818 2 => DeviceVtl::Vtl2,
819 _ => unreachable!(),
820 },
821 instance_id,
822 resource: handle.into_resource(),
823 vnode: None,
824 })
825 }),
826 );
827
828 pcie_devices.extend(
829 pcie_mana_nics
830 .into_iter()
831 .map(|(pcie_port, handle)| PcieDeviceConfig {
832 port_name: pcie_port,
833 resource: handle.into_resource(),
834 }),
835 );
836
837 for cxl_test in &opt.cxl_test {
838 pcie_devices.push(PcieDeviceConfig {
839 port_name: cxl_test.pcie_port.clone(),
840 resource: CxlTestDeviceHandle {
841 hdm_size_bytes: cxl_test.hdm_size,
842 }
843 .into_resource(),
844 });
845 }
846
847 #[cfg(guest_arch = "aarch64")]
848 let arch = MachineArch::Aarch64;
849 #[cfg(guest_arch = "x86_64")]
850 let arch = MachineArch::X86_64;
851
852 #[cfg(guest_arch = "x86_64")]
853 anyhow::ensure!(
854 opt.amd_iommu.is_empty() || opt.intel_vtd.is_empty(),
855 "--amd-iommu and --intel-vtd cannot both be used in the same VM"
856 );
857
858 #[cfg(guest_arch = "x86_64")]
859 let mut amd_iommu_names: std::collections::HashSet<&str> =
860 opt.amd_iommu.iter().map(|s| s.as_str()).collect();
861 #[cfg(guest_arch = "x86_64")]
862 let mut vtd_names: std::collections::HashSet<&str> =
863 opt.intel_vtd.iter().map(|s| s.as_str()).collect();
864
865 #[cfg(guest_arch = "aarch64")]
869 let mut smmu_names: std::collections::HashMap<&str, &cli_args::SmmuCli> = {
870 let mut map = std::collections::HashMap::new();
871 for s in &opt.smmu {
872 if map.insert(s.rc_name.as_str(), s).is_some() {
873 anyhow::bail!(
874 "--smmu specified multiple times for root complex '{}'",
875 s.rc_name
876 );
877 }
878 }
879 map
880 };
881
882 let mut pcie_root_complexes = Vec::new();
883 for (i, rc_cli) in opt.pcie_root_complex.iter().enumerate() {
884 let ports: Vec<PciePortConfig> = opt
885 .pcie_root_port
886 .iter()
887 .filter(|port_cli| port_cli.root_complex_name == rc_cli.name)
888 .map(|port_cli| PciePortConfig {
889 name: port_cli.name.clone(),
890 devfn: port_cli.devfn,
891 hotplug: port_cli.hotplug,
892 acs_capabilities_supported: port_cli.acs_capabilities_supported,
893 cxl: port_cli.cxl,
894 })
895 .collect();
896
897 const ONE_MB: u64 = 1024 * 1024;
898 let low_mmio_size = (rc_cli.low_mmio as u64).next_multiple_of(ONE_MB);
900 let high_mmio_size = rc_cli
901 .high_mmio
902 .checked_next_multiple_of(ONE_MB)
903 .context("high mmio rounding error")?;
904
905 let cxl_port_count = ports.iter().filter(|port| port.cxl).count() as u64;
907
908 let cxl = if cxl_port_count != 0 {
909 Some(RootComplexCxlConfig {
910 hdm_size: rc_cli.hdm,
911 hdm_window_restrictions: rc_cli.hdm_window_restrictions.bits(),
912 })
913 } else {
914 None
915 };
916 pcie_root_complexes.push(PcieRootComplexConfig {
917 index: i as u32,
918 name: rc_cli.name.clone(),
919 segment: rc_cli.segment,
920 start_bus: rc_cli.start_bus,
921 end_bus: rc_cli.end_bus,
922 low_mmio: if let Some(base) = rc_cli.low_mmio_base {
923 PcieMmioRangeConfig::Fixed(
924 memory_range::MemoryRange::try_new(base..base.wrapping_add(low_mmio_size))
925 .context("invalid low MMIO range")?,
926 )
927 } else {
928 PcieMmioRangeConfig::Dynamic {
929 size: low_mmio_size,
930 }
931 },
932 high_mmio: if let Some(base) = rc_cli.high_mmio_base {
933 PcieMmioRangeConfig::Fixed(
934 memory_range::MemoryRange::try_new(base..base.wrapping_add(high_mmio_size))
935 .context("invalid high MMIO range")?,
936 )
937 } else {
938 PcieMmioRangeConfig::Dynamic {
939 size: high_mmio_size,
940 }
941 },
942 cxl,
943 ports,
944 #[cfg(guest_arch = "aarch64")]
945 iommu: smmu_names.remove(rc_cli.name.as_str()).map(|s| {
946 openvmm_defs::config::PcieIommuConfig::Smmu {
947 accel: s.accel,
948 oas: match s.oas {
949 cli_args::SmmuOasCli::Auto => openvmm_defs::config::SmmuOas::Auto,
950 cli_args::SmmuOasCli::Fixed(bits) => {
951 openvmm_defs::config::SmmuOas::Fixed(bits)
952 }
953 },
954 }
955 }),
956 #[cfg(guest_arch = "x86_64")]
957 iommu: if amd_iommu_names.remove(rc_cli.name.as_str()) {
958 Some(openvmm_defs::config::PcieIommuConfig::AmdVi)
959 } else if vtd_names.remove(rc_cli.name.as_str()) {
960 Some(openvmm_defs::config::PcieIommuConfig::IntelVtd)
961 } else {
962 None
963 },
964 vnode: rc_cli.vnode,
965 preserve_bars: rc_cli.preserve_bars,
966 });
967 }
968
969 #[cfg(guest_arch = "aarch64")]
970 if let Some(name) = smmu_names.into_keys().next() {
971 anyhow::bail!("--smmu refers to unknown root complex '{name}'");
972 }
973 #[cfg(guest_arch = "x86_64")]
974 if let Some(name) = amd_iommu_names.into_iter().next() {
975 anyhow::bail!("--amd-iommu refers to unknown root complex '{name}'");
976 }
977 #[cfg(guest_arch = "x86_64")]
978 if let Some(name) = vtd_names.into_iter().next() {
979 anyhow::bail!("--intel-vtd refers to unknown root complex '{name}'");
980 }
981
982 let pcie_switches = build_switch_list(&opt.pcie_switch);
983 let pcie_generic_initiators = opt
984 .pcie_generic_initiator
985 .iter()
986 .map(|gi| openvmm_defs::config::PcieGenericInitiatorConfig {
987 port_name: gi.port_name.clone(),
988 node: gi.node,
989 })
990 .collect();
991 #[cfg(target_os = "linux")]
992 let vfio_pcie_devices: Vec<PcieDeviceConfig> = {
993 use std::collections::HashMap;
994 use vm_resource::IntoResource;
995
996 let mut iommu_map: HashMap<String, std::fs::File> = HashMap::new();
998 for iommu_cli in &opt.iommu {
999 anyhow::ensure!(
1000 !iommu_map.contains_key(&iommu_cli.id),
1001 "duplicate --iommu id={}",
1002 iommu_cli.id
1003 );
1004 let file = std::fs::OpenOptions::new()
1005 .read(true)
1006 .write(true)
1007 .open("/dev/iommu")
1008 .context("failed to open /dev/iommu (is iommufd available?)")?;
1009 iommu_map.insert(iommu_cli.id.clone(), file);
1010 }
1011
1012 opt.vfio
1013 .iter()
1014 .map(|cli_cfg| {
1015 let sysfs_path = Path::new("/sys/bus/pci/devices").join(&cli_cfg.pci_id);
1016
1017 if let Some(iommu_id) = &cli_cfg.iommu {
1018 let iommufd = iommu_map.get(iommu_id).with_context(|| {
1020 format!(
1021 "--vfio device {} references iommu={iommu_id}, \
1022 but no --iommu id={iommu_id} was specified",
1023 cli_cfg.pci_id
1024 )
1025 })?;
1026 let iommufd = iommufd.try_clone().with_context(|| {
1031 format!("failed to dup iommufd fd for iommu={iommu_id}")
1032 })?;
1033
1034 let vfio_dev_dir = sysfs_path.join("vfio-dev");
1036 let entry = std::fs::read_dir(&vfio_dev_dir)
1037 .with_context(|| {
1038 format!(
1039 "failed to read {}: is {} bound to vfio-pci?",
1040 vfio_dev_dir.display(),
1041 cli_cfg.pci_id
1042 )
1043 })?
1044 .next()
1045 .context("no vfio-dev entry found")?
1046 .context("failed to read vfio-dev entry")?;
1047 let dev_path = Path::new("/dev/vfio/devices").join(entry.file_name());
1048 let cdev = std::fs::OpenOptions::new()
1049 .read(true)
1050 .write(true)
1051 .open(&dev_path)
1052 .with_context(|| format!("failed to open {}", dev_path.display()))?;
1053
1054 Ok(PcieDeviceConfig {
1055 port_name: cli_cfg.port_name.clone(),
1056 resource: vfio_assigned_device_resources::VfioCdevDeviceHandle {
1057 pci_id: cli_cfg.pci_id.clone(),
1058 cdev,
1059 iommufd,
1060 iommu_id: iommu_id.clone(),
1061 bar_pt: cli_cfg.bar_pt,
1062 }
1063 .into_resource(),
1064 })
1065 } else {
1066 let iommu_group_link = std::fs::read_link(sysfs_path.join("iommu_group"))
1068 .with_context(|| {
1069 format!("failed to read IOMMU group for {}", cli_cfg.pci_id)
1070 })?;
1071 let group_id: u64 = iommu_group_link
1072 .file_name()
1073 .and_then(|s| s.to_str())
1074 .context("invalid iommu_group symlink")?
1075 .parse()
1076 .context("failed to parse IOMMU group ID")?;
1077 let group = std::fs::OpenOptions::new()
1078 .read(true)
1079 .write(true)
1080 .open(format!("/dev/vfio/{group_id}"))
1081 .with_context(|| format!("failed to open /dev/vfio/{group_id}"))?;
1082
1083 Ok(PcieDeviceConfig {
1084 port_name: cli_cfg.port_name.clone(),
1085 resource: vfio_assigned_device_resources::VfioDeviceHandle {
1086 pci_id: cli_cfg.pci_id.clone(),
1087 group,
1088 bar_pt: cli_cfg.bar_pt,
1089 }
1090 .into_resource(),
1091 })
1092 }
1093 })
1094 .collect::<anyhow::Result<Vec<_>>>()?
1095 };
1096
1097 #[cfg(windows)]
1098 let vpci_resources: Vec<_> = opt
1099 .device
1100 .iter()
1101 .map(|path| -> anyhow::Result<_> {
1102 Ok(virt_whp::device::DeviceHandle(
1103 whp::VpciResource::new(
1104 None,
1105 Default::default(),
1106 &whp::VpciResourceDescriptor::Sriov(path, 0, 0),
1107 )
1108 .with_context(|| format!("opening PCI device {}", path))?,
1109 ))
1110 })
1111 .collect::<Result<_, _>>()?;
1112
1113 #[cfg(windows)]
1115 let vmbusproxy_handle = if !kernel_vmnics.is_empty() {
1116 Some(vmbus_proxy::ProxyHandle::new().context("failed to open vmbusproxy handle")?)
1117 } else {
1118 None
1119 };
1120
1121 let framebuffer = if opt.gfx || opt.vtl2_gfx || opt.vnc.vnc || opt.pcat {
1122 let vram = alloc_shared_memory(FRAMEBUFFER_SIZE, "vram")?;
1123 let (fb, fba) =
1124 framebuffer::framebuffer(vram, FRAMEBUFFER_SIZE, 0).context("creating framebuffer")?;
1125 resources.framebuffer_access = Some(fba);
1126 Some(fb)
1127 } else {
1128 None
1129 };
1130
1131 let load_mode;
1132 let with_hv;
1133
1134 let any_serial_configured = serial0_cfg.is_some()
1135 || serial1_cfg.is_some()
1136 || serial2_cfg.is_some()
1137 || serial3_cfg.is_some();
1138
1139 let has_com3 = serial2_cfg.is_some();
1140
1141 let mut chipset = VmManifestBuilder::new(
1142 if opt.igvm.is_some() {
1143 BaseChipsetType::HclHost
1144 } else if opt.pcat {
1145 BaseChipsetType::HypervGen1
1146 } else if opt.uefi {
1147 BaseChipsetType::HypervGen2Uefi
1148 } else if opt.hv {
1149 BaseChipsetType::HyperVGen2LinuxDirect
1150 } else {
1151 BaseChipsetType::UnenlightenedLinuxDirect
1152 },
1153 arch,
1154 );
1155
1156 if framebuffer.is_some() {
1157 chipset = chipset.with_framebuffer();
1158 }
1159 if opt.guest_watchdog {
1160 chipset = chipset.with_guest_watchdog();
1161 }
1162 if any_serial_configured {
1163 chipset = chipset.with_serial([serial0_cfg, serial1_cfg, serial2_cfg, serial3_cfg]);
1164 }
1165 chipset = chipset.with_serial_debugger_mode(com_debugger_mode);
1166 if opt.battery {
1167 let (tx, rx) = mesh::channel();
1168 tx.send(HostBatteryUpdate::default_present());
1169 chipset = chipset.with_battery(rx);
1170 }
1171 if opt.no_vmbus {
1172 chipset = chipset.without_vmbus();
1173 }
1174 if let Some(cfg) = &opt.debugcon {
1175 chipset = chipset.with_debugcon(
1176 debugcon_cfg.unwrap_or_else(|| DisconnectedSerialBackendHandle.into_resource()),
1177 cfg.port,
1178 );
1179 }
1180
1181 let custom_uefi_vars = {
1182 use firmware_uefi_custom_vars::CustomVars;
1183
1184 let base_vars = match opt.secure_boot_template {
1187 Some(template) => match (arch, template) {
1188 (MachineArch::X86_64, SecureBootTemplateCli::Windows) => {
1189 hyperv_secure_boot_templates::x64::microsoft_windows()
1190 }
1191 (MachineArch::X86_64, SecureBootTemplateCli::UefiCa) => {
1192 hyperv_secure_boot_templates::x64::microsoft_uefi_ca()
1193 }
1194 (MachineArch::Aarch64, SecureBootTemplateCli::Windows) => {
1195 hyperv_secure_boot_templates::aarch64::microsoft_windows()
1196 }
1197 (MachineArch::Aarch64, SecureBootTemplateCli::UefiCa) => {
1198 hyperv_secure_boot_templates::aarch64::microsoft_uefi_ca()
1199 }
1200 },
1201 None => CustomVars::default(),
1202 };
1203
1204 let custom_uefi_json_data = match &opt.custom_uefi_json {
1207 Some(file) => Some(fs_err::read(file).context("opening custom uefi json file")?),
1208 None => None,
1209 };
1210
1211 match custom_uefi_json_data {
1213 Some(data) => {
1214 let delta = hyperv_uefi_custom_vars_json::load_delta_from_json(&data)?;
1215 base_vars.apply_delta(delta)?
1216 }
1217 None => base_vars,
1218 }
1219 };
1220
1221 let efi_diagnostics_log_level = match opt.efi_diagnostics_log_level.unwrap_or_default() {
1222 EfiDiagnosticsLogLevelCli::Default => EfiDiagnosticsLogLevelType::Default,
1223 EfiDiagnosticsLogLevelCli::Info => EfiDiagnosticsLogLevelType::Info,
1224 EfiDiagnosticsLogLevelCli::Full => EfiDiagnosticsLogLevelType::Full,
1225 };
1226
1227 if opt.uefi {
1228 let log_level = match efi_diagnostics_log_level {
1229 EfiDiagnosticsLogLevelType::Default => {
1230 firmware_uefi_resources::LogLevel::make_default()
1231 }
1232 EfiDiagnosticsLogLevelType::Info => firmware_uefi_resources::LogLevel::make_info(),
1233 EfiDiagnosticsLogLevelType::Full => firmware_uefi_resources::LogLevel::make_full(),
1234 };
1235 let nvram_storage = if opt.vmgs.is_some() {
1236 VmgsFileHandle::new(vmgs_format::FileId::BIOS_NVRAM, true).into_resource()
1237 } else {
1238 EphemeralNonVolatileStoreHandle.into_resource()
1239 };
1240 chipset = chipset.with_uefi(vm_manifest_builder::UefiManifest::new(
1241 arch,
1242 custom_uefi_vars.clone(),
1243 opt.secure_boot,
1244 log_level,
1245 None,
1246 nvram_storage,
1247 None,
1248 ));
1249 }
1250
1251 let bios_guid = Guid::new_random();
1253
1254 let layout_config = chipset.layout_config();
1255 let VmChipsetResult {
1256 chipset,
1257 mut chipset_devices,
1258 pci_chipset_devices,
1259 isa_dma_controller,
1260 capabilities,
1261 } = chipset
1262 .build()
1263 .context("failed to build chipset configuration")?;
1264
1265 if opt.restore_snapshot.is_some() {
1266 load_mode = LoadMode::None;
1269 with_hv = true;
1270 } else if let Some(path) = &opt.igvm {
1271 let file = fs_err::File::open(path)
1272 .context("failed to open igvm file")?
1273 .into();
1274 let cmdline = opt.cmdline.join(" ");
1275 with_hv = true;
1276
1277 load_mode = LoadMode::Igvm {
1278 file,
1279 cmdline,
1280 vtl2_base_address: opt.igvm_vtl2_relocation_type,
1281 com_serial: has_com3.then(|| SerialInformation {
1282 io_port: ComPort::Com3.io_port(),
1283 irq: ComPort::Com3.irq().into(),
1284 }),
1285 };
1286 } else if opt.pcat {
1287 if arch != MachineArch::X86_64 {
1289 anyhow::bail!("pcat not supported on this architecture");
1290 }
1291 with_hv = true;
1292
1293 let firmware = openvmm_pcat_locator::find_pcat_bios(opt.pcat_firmware.as_deref())?;
1294 load_mode = LoadMode::Pcat {
1295 firmware,
1296 boot_order: opt
1297 .pcat_boot_order
1298 .map(|x| x.0)
1299 .unwrap_or(DEFAULT_PCAT_BOOT_ORDER),
1300 };
1301 } else if opt.uefi {
1302 use openvmm_defs::config::UefiConsoleMode;
1303
1304 with_hv = true;
1305
1306 let firmware = fs_err::File::open(
1307 (opt.uefi_firmware.0)
1308 .as_ref()
1309 .context("must provide uefi firmware when booting with uefi")?,
1310 )
1311 .context("failed to open uefi firmware")?;
1312
1313 load_mode = LoadMode::Uefi {
1316 firmware: firmware.into(),
1317 enable_debugging: opt.uefi_debug,
1318 enable_memory_protections: opt.uefi_enable_memory_protections,
1319 disable_frontpage: opt.disable_frontpage,
1320 enable_tpm: opt.tpm,
1321 enable_battery: opt.battery,
1322 enable_serial: any_serial_configured,
1323 enable_vpci_boot: false,
1324 uefi_console_mode: opt.uefi_console_mode.map(|m| match m {
1325 UefiConsoleModeCli::Default => UefiConsoleMode::Default,
1326 UefiConsoleModeCli::Com1 => UefiConsoleMode::Com1,
1327 UefiConsoleModeCli::Com2 => UefiConsoleMode::Com2,
1328 UefiConsoleModeCli::None => UefiConsoleMode::None,
1329 }),
1330 default_boot_always_attempt: opt.default_boot_always_attempt,
1331 bios_guid,
1332 enable_vmbus: !opt.no_vmbus,
1333 force_dma_bounce: opt.uefi_force_dma_bounce,
1334 };
1335 } else {
1336 let mut cmdline = "panic=-1 debug".to_string();
1338
1339 with_hv = opt.hv;
1340 if with_hv && opt.pcie_root_complex.is_empty() {
1341 cmdline += " pci=off";
1342 }
1343
1344 if !console_str.is_empty() {
1345 let _ = write!(&mut cmdline, " console={}", console_str);
1346 }
1347
1348 if opt.gfx {
1349 cmdline += " console=tty";
1350 }
1351 for extra in &opt.cmdline {
1352 let _ = write!(&mut cmdline, " {}", extra);
1353 }
1354
1355 let kernel = fs_err::File::open(
1356 (opt.kernel.0)
1357 .as_ref()
1358 .context("must provide kernel when booting with linux direct")?,
1359 )
1360 .context("failed to open kernel")?;
1361 let initrd = (opt.initrd.0)
1362 .as_ref()
1363 .map(fs_err::File::open)
1364 .transpose()
1365 .context("failed to open initrd")?;
1366
1367 load_mode = LoadMode::Linux {
1368 kernel: kernel.into(),
1369 initrd: initrd.map(Into::into),
1370 cmdline,
1371 enable_serial: any_serial_configured,
1372 boot_mode: if opt.device_tree {
1373 openvmm_defs::config::LinuxDirectBootMode::DeviceTree
1374 } else {
1375 openvmm_defs::config::LinuxDirectBootMode::Acpi
1376 },
1377 };
1378 }
1379
1380 let mut vmgs = Some(if let Some(VmgsCli { kind, provision }) = &opt.vmgs {
1381 let disk = VmgsDisk {
1382 disk: disk_open(kind, false)
1383 .await
1384 .context("failed to open vmgs disk")?,
1385 encryption_policy: if opt.test_gsp_by_id {
1386 GuestStateEncryptionPolicy::GspById(true)
1387 } else {
1388 GuestStateEncryptionPolicy::None(true)
1389 },
1390 };
1391 match provision {
1392 ProvisionVmgs::OnEmpty => VmgsResource::Disk(disk),
1393 ProvisionVmgs::OnFailure => VmgsResource::ReprovisionOnFailure(disk),
1394 ProvisionVmgs::True => VmgsResource::Reprovision(disk),
1395 }
1396 } else {
1397 VmgsResource::Ephemeral
1398 });
1399
1400 if with_get && with_hv {
1401 let has_vtl0_nvme = storage.has_vtl0_nvme();
1402 let vtl2_settings = vtl2_settings_proto::Vtl2Settings {
1403 version: vtl2_settings_proto::vtl2_settings_base::Version::V1.into(),
1404 fixed: Some(Default::default()),
1405 dynamic: Some(vtl2_settings_proto::Vtl2SettingsDynamic {
1406 storage_controllers: storage.build_openhcl_settings(opt.vmbus_redirect),
1407 nic_devices: underhill_nics,
1408 }),
1409 namespace_settings: Vec::default(),
1410 };
1411
1412 resources.vtl2_settings = Some(vtl2_settings.clone());
1414
1415 let (send, guest_request_recv) = mesh::channel();
1416 resources.ged_rpc = Some(send);
1417
1418 let vmgs = vmgs.take().unwrap();
1419
1420 vmbus_devices.extend([
1421 (
1422 openhcl_vtl,
1423 get_resources::gel::GuestEmulationLogHandle.into_resource(),
1424 ),
1425 (
1426 openhcl_vtl,
1427 get_resources::ged::GuestEmulationDeviceHandle {
1428 firmware: if opt.pcat {
1429 get_resources::ged::GuestFirmwareConfig::Pcat {
1430 boot_order: opt
1431 .pcat_boot_order
1432 .map_or(DEFAULT_PCAT_BOOT_ORDER, |x| x.0)
1433 .map(|x| match x {
1434 openvmm_defs::config::PcatBootDevice::Floppy => {
1435 get_resources::ged::PcatBootDevice::Floppy
1436 }
1437 openvmm_defs::config::PcatBootDevice::HardDrive => {
1438 get_resources::ged::PcatBootDevice::HardDrive
1439 }
1440 openvmm_defs::config::PcatBootDevice::Optical => {
1441 get_resources::ged::PcatBootDevice::Optical
1442 }
1443 openvmm_defs::config::PcatBootDevice::Network => {
1444 get_resources::ged::PcatBootDevice::Network
1445 }
1446 }),
1447 }
1448 } else {
1449 use get_resources::ged::UefiConsoleMode;
1450
1451 get_resources::ged::GuestFirmwareConfig::Uefi {
1452 enable_vpci_boot: has_vtl0_nvme,
1453 firmware_debug: opt.uefi_debug,
1454 disable_frontpage: opt.disable_frontpage,
1455 console_mode: match opt.uefi_console_mode.unwrap_or(UefiConsoleModeCli::Default) {
1456 UefiConsoleModeCli::Default => UefiConsoleMode::Default,
1457 UefiConsoleModeCli::Com1 => UefiConsoleMode::COM1,
1458 UefiConsoleModeCli::Com2 => UefiConsoleMode::COM2,
1459 UefiConsoleModeCli::None => UefiConsoleMode::None,
1460 },
1461 default_boot_always_attempt: opt.default_boot_always_attempt,
1462 }
1463 },
1464 com1: with_vmbus_com1_serial,
1465 com2: with_vmbus_com2_serial,
1466 serial_tx_only: opt.serial_tx_only,
1467 vtl2_settings: Some(prost::Message::encode_to_vec(&vtl2_settings)),
1468 vmbus_redirection: opt.vmbus_redirect,
1469 vmgs,
1470 framebuffer: opt
1471 .vtl2_gfx
1472 .then(|| SharedFramebufferHandle.into_resource()),
1473 guest_request_recv,
1474 enable_tpm: opt.tpm,
1475 firmware_event_send: None,
1476 secure_boot_enabled: opt.secure_boot,
1477 secure_boot_template: match opt.secure_boot_template {
1478 Some(SecureBootTemplateCli::Windows) => {
1479 get_resources::ged::GuestSecureBootTemplateType::MicrosoftWindows
1480 },
1481 Some(SecureBootTemplateCli::UefiCa) => {
1482 get_resources::ged::GuestSecureBootTemplateType::MicrosoftUefiCertificateAuthority
1483 }
1484 None => {
1485 get_resources::ged::GuestSecureBootTemplateType::None
1486 },
1487 },
1488 enable_battery: opt.battery,
1489 no_persistent_secrets: true,
1490 igvm_attest_test_config: None,
1491 test_gsp_by_id: opt.test_gsp_by_id,
1492 efi_diagnostics_log_level: {
1493 match opt.efi_diagnostics_log_level.unwrap_or_default() {
1494 EfiDiagnosticsLogLevelCli::Default => get_resources::ged::EfiDiagnosticsLogLevelType::Default,
1495 EfiDiagnosticsLogLevelCli::Info => get_resources::ged::EfiDiagnosticsLogLevelType::Info,
1496 EfiDiagnosticsLogLevelCli::Full => get_resources::ged::EfiDiagnosticsLogLevelType::Full,
1497 }
1498 },
1499 force_dma_bounce_enabled: opt.uefi_force_dma_bounce,
1500 }
1501 .into_resource(),
1502 ),
1503 ]);
1504 }
1505
1506 if opt.tpm && !opt.vtl2 {
1507 let register_layout = if cfg!(guest_arch = "x86_64") {
1508 TpmRegisterLayout::IoPort
1509 } else {
1510 TpmRegisterLayout::Mmio
1511 };
1512
1513 let (ppi_store, nvram_store) = if opt.vmgs.is_some() {
1514 (
1515 VmgsFileHandle::new(vmgs_format::FileId::TPM_PPI, true).into_resource(),
1516 VmgsFileHandle::new(vmgs_format::FileId::TPM_NVRAM, true).into_resource(),
1517 )
1518 } else {
1519 (
1520 EphemeralNonVolatileStoreHandle.into_resource(),
1521 EphemeralNonVolatileStoreHandle.into_resource(),
1522 )
1523 };
1524
1525 chipset_devices.push(ChipsetDeviceHandle {
1526 name: "tpm".to_string(),
1527 resource: chipset_device_worker_defs::RemoteChipsetDeviceHandle {
1528 device: TpmDeviceHandle {
1529 ppi_store,
1530 nvram_store,
1531 nvram_size: None,
1532 refresh_tpm_seeds: false,
1533 ak_cert_type: tpm_resources::TpmAkCertTypeResource::None,
1534 register_layout,
1535 guest_secret_key: None,
1536 logger: None,
1537 is_confidential_vm: false,
1538 bios_guid,
1539 }
1540 .into_resource(),
1541 worker_host: mesh.make_host("tpm", None).await?,
1542 }
1543 .into_resource(),
1544 });
1545 }
1546
1547 let vga_firmware = if opt.pcat {
1548 Some(openvmm_pcat_locator::find_svga_bios(
1549 opt.vga_firmware.as_deref(),
1550 )?)
1551 } else {
1552 None
1553 };
1554
1555 if opt.gfx {
1556 let (dirt_send, dirt_recv) = mesh::channel();
1558 resources.dirty_rect_recv = Some(dirt_recv);
1559
1560 vmbus_devices.extend([
1561 (
1562 DeviceVtl::Vtl0,
1563 SynthVideoHandle {
1564 framebuffer: SharedFramebufferHandle.into_resource(),
1565 dirt_send: Some(dirt_send),
1566 }
1567 .into_resource(),
1568 ),
1569 (
1570 DeviceVtl::Vtl0,
1571 SynthKeyboardHandle {
1572 source: MultiplexedInputHandle {
1573 elevation: 1,
1575 }
1576 .into_resource(),
1577 }
1578 .into_resource(),
1579 ),
1580 (
1581 DeviceVtl::Vtl0,
1582 SynthMouseHandle {
1583 source: MultiplexedInputHandle {
1584 elevation: 1,
1586 }
1587 .into_resource(),
1588 }
1589 .into_resource(),
1590 ),
1591 ]);
1592 }
1593
1594 let vsock_listener = |path: Option<&str>| -> anyhow::Result<_> {
1595 if let Some(path) = path {
1596 cleanup_socket(path.as_ref());
1597 let listener = unix_socket::UnixListener::bind(path)
1598 .with_context(|| format!("failed to bind to hybrid vsock path: {}", path))?;
1599 Ok(Some(listener))
1600 } else {
1601 Ok(None)
1602 }
1603 };
1604
1605 let vtl0_vsock_listener = vsock_listener(opt.vmbus_vsock_path.as_deref())?;
1606 let vtl2_vsock_listener = vsock_listener(opt.vmbus_vtl2_vsock_path.as_deref())?;
1607
1608 if let Some(path) = &opt.openhcl_dump_path {
1609 let (resource, task) = spawn_dump_handler(&spawner, path.clone(), None);
1610 task.detach();
1611 vmbus_devices.push((openhcl_vtl, resource));
1612 }
1613
1614 #[cfg(guest_arch = "aarch64")]
1615 let topology_arch = openvmm_defs::config::ArchTopologyConfig::Aarch64(
1616 openvmm_defs::config::Aarch64TopologyConfig {
1617 gic_config: None,
1619 pmu_gsiv: openvmm_defs::config::PmuGsivConfig::Platform,
1620 gic_msi: match opt.gic_msi {
1621 cli_args::GicMsiCli::Auto => openvmm_defs::config::GicMsiConfig::Auto,
1622 cli_args::GicMsiCli::Its => openvmm_defs::config::GicMsiConfig::Its,
1623 cli_args::GicMsiCli::V2m => {
1624 openvmm_defs::config::GicMsiConfig::V2m { spi_count: None }
1625 }
1626 },
1627 },
1628 );
1629 #[cfg(guest_arch = "x86_64")]
1630 let topology_arch =
1631 openvmm_defs::config::ArchTopologyConfig::X86(openvmm_defs::config::X86TopologyConfig {
1632 apic_id_offset: opt.apic_id_offset,
1633 x2apic: opt.x2apic,
1634 });
1635
1636 let with_isolation = if let Some(isolation) = &opt.isolation {
1637 if !opt.vtl2 {
1639 anyhow::bail!("isolation is only currently supported with vtl2");
1640 }
1641
1642 if !opt.no_alias_map {
1644 anyhow::bail!("alias map not supported with isolation");
1645 }
1646
1647 match isolation {
1648 cli_args::IsolationCli::Vbs => Some(openvmm_defs::config::IsolationType::Vbs),
1649 }
1650 } else {
1651 None
1652 };
1653
1654 if with_hv && !opt.no_vmbus {
1655 let (shutdown_send, shutdown_recv) = mesh::channel();
1656 resources.shutdown_ic = Some(shutdown_send);
1657 let (kvp_send, kvp_recv) = mesh::channel();
1658 resources.kvp_ic = Some(kvp_send);
1659 vmbus_devices.extend(
1660 [
1661 hyperv_ic_resources::shutdown::ShutdownIcHandle {
1662 recv: shutdown_recv,
1663 }
1664 .into_resource(),
1665 hyperv_ic_resources::kvp::KvpIcHandle { recv: kvp_recv }.into_resource(),
1666 hyperv_ic_resources::timesync::TimesyncIcHandle.into_resource(),
1667 ]
1668 .map(|r| (DeviceVtl::Vtl0, r)),
1669 );
1670 }
1671
1672 if let Some(hive_path) = &opt.imc {
1673 let file = fs_err::File::open(hive_path).context("failed to open imc hive")?;
1674 vmbus_devices.push((
1675 DeviceVtl::Vtl0,
1676 vmbfs_resources::VmbfsImcDeviceHandle { file: file.into() }.into_resource(),
1677 ));
1678 }
1679
1680 let mut virtio_devices = Vec::new();
1681 let mut add_virtio_device = |bus, resource: Resource<VirtioDeviceHandle>| {
1682 let bus = match bus {
1683 VirtioBusCli::Auto => {
1684 if with_hv && (cfg!(windows) || cfg!(target_os = "macos")) {
1687 None
1688 } else {
1689 Some(VirtioBus::Pci)
1690 }
1691 }
1692 VirtioBusCli::Mmio => Some(VirtioBus::Mmio),
1693 VirtioBusCli::Pci => Some(VirtioBus::Pci),
1694 VirtioBusCli::Vpci => None,
1695 };
1696 if let Some(bus) = bus {
1697 virtio_devices.push((bus, resource));
1698 } else {
1699 vpci_devices.push(VpciDeviceConfig {
1700 vtl: DeviceVtl::Vtl0,
1701 instance_id: Guid::new_random(),
1702 resource: VirtioPciDeviceHandle(resource).into_resource(),
1703 vnode: None,
1704 });
1705 }
1706 };
1707
1708 for cli_cfg in &opt.virtio_net {
1709 if cli_cfg.underhill {
1710 anyhow::bail!("use --net uh:[...] to add underhill NICs")
1711 }
1712 let vport = parse_endpoint(cli_cfg, &mut nic_index, &mut resources)?;
1713 let resource = virtio_resources::net::VirtioNetHandle {
1714 max_queues: vport.max_queues,
1715 mac_address: vport.mac_address,
1716 endpoint: vport.endpoint,
1717 }
1718 .into_resource();
1719 if let Some(pcie_port) = &cli_cfg.pcie_port {
1720 pcie_devices.push(PcieDeviceConfig {
1721 port_name: pcie_port.clone(),
1722 resource: VirtioPciDeviceHandle(resource).into_resource(),
1723 });
1724 } else {
1725 add_virtio_device(VirtioBusCli::Auto, resource);
1726 }
1727 }
1728
1729 for args in &opt.virtio_fs {
1730 let resource: Resource<VirtioDeviceHandle> = virtio_resources::fs::VirtioFsHandle {
1731 tag: args.tag.clone(),
1732 fs: virtio_resources::fs::VirtioFsBackend::HostFs {
1733 root_path: args.path.clone(),
1734 mount_options: args.options.clone(),
1735 },
1736 }
1737 .into_resource();
1738 if let Some(pcie_port) = &args.pcie_port {
1739 pcie_devices.push(PcieDeviceConfig {
1740 port_name: pcie_port.clone(),
1741 resource: VirtioPciDeviceHandle(resource).into_resource(),
1742 });
1743 } else {
1744 add_virtio_device(opt.virtio_fs_bus, resource);
1745 }
1746 }
1747
1748 for args in &opt.virtio_fs_shmem {
1749 let resource: Resource<VirtioDeviceHandle> = virtio_resources::fs::VirtioFsHandle {
1750 tag: args.tag.clone(),
1751 fs: virtio_resources::fs::VirtioFsBackend::SectionFs {
1752 root_path: args.path.clone(),
1753 },
1754 }
1755 .into_resource();
1756 if let Some(pcie_port) = &args.pcie_port {
1757 pcie_devices.push(PcieDeviceConfig {
1758 port_name: pcie_port.clone(),
1759 resource: VirtioPciDeviceHandle(resource).into_resource(),
1760 });
1761 } else {
1762 add_virtio_device(opt.virtio_fs_bus, resource);
1763 }
1764 }
1765
1766 for args in &opt.virtio_9p {
1767 let resource: Resource<VirtioDeviceHandle> = virtio_resources::p9::VirtioPlan9Handle {
1768 tag: args.tag.clone(),
1769 root_path: args.path.clone(),
1770 debug: opt.virtio_9p_debug,
1771 }
1772 .into_resource();
1773 if let Some(pcie_port) = &args.pcie_port {
1774 pcie_devices.push(PcieDeviceConfig {
1775 port_name: pcie_port.clone(),
1776 resource: VirtioPciDeviceHandle(resource).into_resource(),
1777 });
1778 } else {
1779 add_virtio_device(VirtioBusCli::Auto, resource);
1780 }
1781 }
1782
1783 if let Some(pmem_args) = &opt.virtio_pmem {
1784 let resource: Resource<VirtioDeviceHandle> = virtio_resources::pmem::VirtioPmemHandle {
1785 path: pmem_args.path.clone(),
1786 }
1787 .into_resource();
1788 if let Some(pcie_port) = &pmem_args.pcie_port {
1789 pcie_devices.push(PcieDeviceConfig {
1790 port_name: pcie_port.clone(),
1791 resource: VirtioPciDeviceHandle(resource).into_resource(),
1792 });
1793 } else {
1794 add_virtio_device(VirtioBusCli::Auto, resource);
1795 }
1796 }
1797
1798 if opt.virtio_rng {
1799 let resource: Resource<VirtioDeviceHandle> =
1800 virtio_resources::rng::VirtioRngHandle.into_resource();
1801 if let Some(pcie_port) = &opt.virtio_rng_pcie_port {
1802 pcie_devices.push(PcieDeviceConfig {
1803 port_name: pcie_port.clone(),
1804 resource: VirtioPciDeviceHandle(resource).into_resource(),
1805 });
1806 } else {
1807 add_virtio_device(opt.virtio_rng_bus, resource);
1808 }
1809 }
1810
1811 if let Some(backend) = virtio_console_backend {
1812 let resource: Resource<VirtioDeviceHandle> =
1813 virtio_resources::console::VirtioConsoleHandle { backend }.into_resource();
1814 if let Some(pcie_port) = &opt.virtio_console_pcie_port {
1815 pcie_devices.push(PcieDeviceConfig {
1816 port_name: pcie_port.clone(),
1817 resource: VirtioPciDeviceHandle(resource).into_resource(),
1818 });
1819 } else {
1820 add_virtio_device(VirtioBusCli::Auto, resource);
1821 }
1822 }
1823
1824 #[cfg(target_os = "linux")]
1826 for vhost_cli in &opt.vhost_user {
1827 let stream =
1828 unix_socket::UnixStream::connect(&vhost_cli.socket_path).with_context(|| {
1829 format!(
1830 "failed to connect to vhost-user socket: {}",
1831 vhost_cli.socket_path
1832 )
1833 })?;
1834
1835 use crate::cli_args::VhostUserDeviceTypeCli;
1836 let resource: Resource<VirtioDeviceHandle> = match vhost_cli.device_type {
1837 VhostUserDeviceTypeCli::Fs {
1838 ref tag,
1839 num_queues,
1840 queue_size,
1841 } => virtio_resources::vhost_user::VhostUserFsHandle {
1842 socket: stream.into(),
1843 tag: tag.clone(),
1844 num_queues,
1845 queue_size,
1846 }
1847 .into_resource(),
1848 VhostUserDeviceTypeCli::Blk {
1849 num_queues,
1850 queue_size,
1851 } => virtio_resources::vhost_user::VhostUserBlkHandle {
1852 socket: stream.into(),
1853 num_queues,
1854 queue_size,
1855 }
1856 .into_resource(),
1857 VhostUserDeviceTypeCli::Other {
1858 device_id,
1859 ref queue_sizes,
1860 } => virtio_resources::vhost_user::VhostUserGenericHandle {
1861 socket: stream.into(),
1862 device_id,
1863 queue_sizes: queue_sizes.clone(),
1864 }
1865 .into_resource(),
1866 };
1867 if let Some(pcie_port) = &vhost_cli.pcie_port {
1868 pcie_devices.push(PcieDeviceConfig {
1869 port_name: pcie_port.clone(),
1870 resource: VirtioPciDeviceHandle(resource).into_resource(),
1871 });
1872 } else {
1873 add_virtio_device(VirtioBusCli::Auto, resource);
1874 }
1875 }
1876
1877 if let Some(vsock_path) = &opt.virtio_vsock_path {
1878 let listener = vsock_listener(Some(vsock_path))?.unwrap();
1879 add_virtio_device(
1880 VirtioBusCli::Auto,
1881 virtio_resources::vsock::VirtioVsockHandle {
1882 guest_cid: 0x3,
1885 base_path: vsock_path.clone(),
1886 listener,
1887 }
1888 .into_resource(),
1889 );
1890 }
1891
1892 let mut cfg = Config {
1893 chipset,
1894 load_mode,
1895 floppy_disks,
1896 pcie_root_complexes,
1897 #[cfg(target_os = "linux")]
1898 pcie_devices: {
1899 let mut devs = pcie_devices;
1900 devs.extend(vfio_pcie_devices);
1901 devs
1902 },
1903 #[cfg(not(target_os = "linux"))]
1904 pcie_devices,
1905 pcie_switches,
1906 pcie_generic_initiators,
1907 vpci_devices,
1908 ide_disks: Vec::new(),
1909 numa: {
1910 if let Some(ref nodes) = opt.numa {
1911 NumaTopology {
1913 nodes: nodes
1914 .iter()
1915 .map(|n| NumaNode {
1916 mem: Some(MemoryConfig {
1917 mem_size: n.memory.mem_size,
1918 prefetch_memory: n.memory.prefetch,
1919 private_memory: n.memory.shared == Some(false),
1920 transparent_hugepages: n.memory.transparent_hugepages,
1921 hugepages: n.memory.hugepages,
1922 hugepage_size: n.memory.hugepage_size,
1923 host_numa_node: n.host_numa_node,
1924 }),
1925 vps: match &n.vps {
1926 Some(vps) if vps.is_empty() => VpAssignment::Empty,
1927 Some(vps) => VpAssignment::Explicit(vps.clone()),
1928 None => VpAssignment::FromTopology,
1929 },
1930 })
1931 .collect(),
1932 distances: opt
1933 .numa_distance
1934 .as_deref()
1935 .unwrap_or(&[])
1936 .iter()
1937 .map(|d| NumaDistance {
1938 src: d.src,
1939 dst: d.dst,
1940 distance: d.distance,
1941 })
1942 .collect(),
1943 }
1944 } else {
1945 NumaTopology {
1947 nodes: vec![NumaNode {
1948 mem: Some(MemoryConfig {
1949 mem_size: opt.memory_size(),
1950 prefetch_memory: opt.prefetch_memory(),
1951 private_memory: opt.private_memory(),
1952 transparent_hugepages: opt.transparent_hugepages(),
1953 hugepages: opt.memory.hugepages,
1954 hugepage_size: opt.memory.hugepage_size,
1955 host_numa_node: None,
1956 }),
1957 vps: VpAssignment::FromTopology,
1958 }],
1959 distances: vec![],
1960 }
1961 }
1962 },
1963 processor_topology: ProcessorTopologyConfig {
1964 proc_count: opt.processors,
1965 vps_per_socket: opt.vps_per_socket,
1966 enable_smt: match opt.smt {
1967 cli_args::SmtConfigCli::Auto => None,
1968 cli_args::SmtConfigCli::Force => Some(true),
1969 cli_args::SmtConfigCli::Off => Some(false),
1970 },
1971 arch: Some(topology_arch),
1972 },
1973 hypervisor: HypervisorConfig {
1974 with_hv,
1975 with_vtl2: opt.vtl2.then_some(Vtl2Config {
1976 vtl0_alias_map: !opt.no_alias_map,
1977 late_map_vtl0_memory: match opt.late_map_vtl0_policy {
1978 cli_args::Vtl0LateMapPolicyCli::Off => None,
1979 cli_args::Vtl0LateMapPolicyCli::Log => Some(LateMapVtl0MemoryPolicy::Log),
1980 cli_args::Vtl0LateMapPolicyCli::Halt => Some(LateMapVtl0MemoryPolicy::Halt),
1981 cli_args::Vtl0LateMapPolicyCli::Exception => {
1982 Some(LateMapVtl0MemoryPolicy::InjectException)
1983 }
1984 },
1985 }),
1986 with_isolation,
1987 nested_virt: opt.nested_virt,
1988 },
1989 #[cfg(windows)]
1990 kernel_vmnics,
1991 input: mesh::Receiver::new(),
1992 framebuffer,
1993 vga_firmware,
1994 vtl2_gfx: opt.vtl2_gfx,
1995 virtio_devices,
1996 vmbus: (with_hv && !opt.no_vmbus).then_some(VmbusConfig {
1997 vsock_listener: vtl0_vsock_listener,
1998 vsock_path: opt.vmbus_vsock_path.clone(),
1999 vtl2_redirect: opt.vmbus_redirect,
2000 vmbus_max_version: opt.vmbus_max_version,
2001 #[cfg(windows)]
2002 vmbusproxy_handle,
2003 }),
2004 vtl2_vmbus: (with_hv && opt.vtl2).then_some(VmbusConfig {
2005 vsock_listener: vtl2_vsock_listener,
2006 vsock_path: opt.vmbus_vtl2_vsock_path.clone(),
2007 ..Default::default()
2008 }),
2009 vmbus_devices,
2010 chipset_devices,
2011 pci_chipset_devices,
2012 isa_dma_controller,
2013 chipset_capabilities: capabilities,
2014 layout: layout_config,
2015 #[cfg(windows)]
2016 vpci_resources,
2017 vmgs,
2018 secure_boot_enabled: opt.secure_boot,
2019 custom_uefi_vars,
2020 firmware_event_send: None,
2021 debugger_rpc: None,
2022 rtc_delta_milliseconds: 0,
2023 automatic_guest_reset: matches!(opt.guest_reset_action, GuestPowerAction::Reset),
2027 efi_diagnostics_log_level: {
2028 match opt.efi_diagnostics_log_level.unwrap_or_default() {
2029 EfiDiagnosticsLogLevelCli::Default => EfiDiagnosticsLogLevelType::Default,
2030 EfiDiagnosticsLogLevelCli::Info => EfiDiagnosticsLogLevelType::Info,
2031 EfiDiagnosticsLogLevelCli::Full => EfiDiagnosticsLogLevelType::Full,
2032 }
2033 },
2034 };
2035
2036 storage.build_config(&mut cfg, &mut resources, opt.scsi_sub_channels)?;
2037 resources.serial_driver = Some(serial_driver);
2038 Ok((cfg, resources))
2039}
2040
2041pub(crate) fn openvmm_terminal_app() -> Option<PathBuf> {
2043 std::env::var_os("OPENVMM_TERM")
2044 .or_else(|| std::env::var_os("HVLITE_TERM"))
2045 .map(Into::into)
2046}
2047
2048fn cleanup_socket(path: &Path) {
2050 #[cfg(windows)]
2051 let is_socket = pal::windows::fs::is_unix_socket(path).unwrap_or(false);
2052 #[cfg(not(windows))]
2053 let is_socket = path
2054 .metadata()
2055 .is_ok_and(|meta| std::os::unix::fs::FileTypeExt::is_socket(&meta.file_type()));
2056
2057 if is_socket {
2058 let _ = std::fs::remove_file(path);
2059 }
2060}
2061
2062#[cfg(windows)]
2063fn new_switch_port(
2064 switch_id: Option<&str>,
2065) -> anyhow::Result<(
2066 openvmm_defs::config::SwitchPortId,
2067 vmswitch::kernel::SwitchPort,
2068)> {
2069 let id = vmswitch::kernel::SwitchPortId {
2070 switch: match switch_id {
2071 Some(s) => s.parse().context("invalid switch id")?,
2072 None => vmswitch::hcn::DEFAULT_SWITCH,
2073 },
2074 port: Guid::new_random(),
2075 };
2076 let _ = vmswitch::hcn::Network::open(&id.switch)
2077 .with_context(|| format!("could not find switch {}", id.switch))?;
2078
2079 let port = vmswitch::kernel::SwitchPort::new(&id).context("failed to create switch port")?;
2080
2081 let id = openvmm_defs::config::SwitchPortId {
2082 switch: id.switch,
2083 port: id.port,
2084 };
2085 Ok((id, port))
2086}
2087
2088fn parse_endpoint(
2089 cli_cfg: &NicConfigCli,
2090 index: &mut usize,
2091 resources: &mut VmResources,
2092) -> anyhow::Result<NicConfig> {
2093 let _ = resources;
2094 let endpoint = match &cli_cfg.endpoint {
2095 EndpointConfigCli::Consomme { cidr, host_fwd } => {
2096 let ports = host_fwd
2097 .iter()
2098 .map(|fwd| {
2099 use net_backend_resources::consomme::HostPortProtocol;
2100 net_backend_resources::consomme::HostPortConfig {
2101 protocol: match fwd.protocol {
2102 cli_args::HostPortProtocolCli::Tcp => HostPortProtocol::Tcp,
2103 cli_args::HostPortProtocolCli::Udp => HostPortProtocol::Udp,
2104 },
2105 host_address: fwd
2106 .host_address
2107 .map(net_backend_resources::consomme::HostIpAddress::from),
2108 host_port: net_backend_resources::consomme::HostPort::Fixed(fwd.host_port),
2109 guest_port: fwd.guest_port,
2110 }
2111 })
2112 .collect();
2113 let recv = if resources.consomme_rpc.is_none() {
2117 let (send, recv) = mesh::channel();
2118 resources.consomme_rpc = Some(send);
2119 Some(recv)
2120 } else {
2121 None
2122 };
2123 net_backend_resources::consomme::ConsommeHandle {
2124 cidr: cidr.clone(),
2125 ports,
2126 recv,
2127 }
2128 .into_resource()
2129 }
2130 EndpointConfigCli::None => net_backend_resources::null::NullHandle.into_resource(),
2131 EndpointConfigCli::Dio { id } => {
2132 #[cfg(windows)]
2133 {
2134 let (port_id, port) = new_switch_port(id.as_deref())?;
2135 resources.switch_ports.push(port);
2136 net_backend_resources::dio::WindowsDirectIoHandle {
2137 switch_port_id: net_backend_resources::dio::SwitchPortId {
2138 switch: port_id.switch,
2139 port: port_id.port,
2140 },
2141 }
2142 .into_resource()
2143 }
2144
2145 #[cfg(not(windows))]
2146 {
2147 let _ = id;
2148 bail!("cannot use dio on non-windows platforms")
2149 }
2150 }
2151 EndpointConfigCli::Tap { name } => {
2152 #[cfg(target_os = "linux")]
2153 {
2154 let fd = net_tap::tap::open_tap(name)
2155 .with_context(|| format!("failed to open TAP device '{name}'"))?;
2156 net_backend_resources::tap::TapHandle { fd }.into_resource()
2157 }
2158
2159 #[cfg(not(target_os = "linux"))]
2160 {
2161 let _ = name;
2162 bail!("TAP backend is only supported on Linux")
2163 }
2164 }
2165 };
2166
2167 let mut mac_address = [0x00, 0x15, 0x5D, 0, 0, 0];
2169 getrandom::fill(&mut mac_address[3..]).expect("rng failure");
2170
2171 const BASE_INSTANCE_ID: Guid = guid::guid!("00000000-da43-11ed-936a-00155d6db52f");
2173 let instance_id = Guid {
2174 data1: *index as u32,
2175 ..BASE_INSTANCE_ID
2176 };
2177 *index += 1;
2178
2179 Ok(NicConfig {
2180 vtl: cli_cfg.vtl,
2181 instance_id,
2182 endpoint,
2183 mac_address: mac_address.into(),
2184 max_queues: cli_cfg.max_queues,
2185 pcie_port: cli_cfg.pcie_port.clone(),
2186 })
2187}
2188
2189#[derive(Debug)]
2190struct NicConfig {
2191 vtl: DeviceVtl,
2192 instance_id: Guid,
2193 mac_address: MacAddress,
2194 endpoint: Resource<NetEndpointHandleKind>,
2195 max_queues: Option<u16>,
2196 pcie_port: Option<String>,
2197}
2198
2199impl NicConfig {
2200 fn into_netvsp_handle(self) -> (DeviceVtl, Resource<VmbusDeviceHandleKind>) {
2201 (
2202 self.vtl,
2203 netvsp_resources::NetvspHandle {
2204 instance_id: self.instance_id,
2205 mac_address: self.mac_address,
2206 endpoint: self.endpoint,
2207 max_queues: self.max_queues,
2208 }
2209 .into_resource(),
2210 )
2211 }
2212}
2213
2214enum LayerOrDisk {
2215 Layer(DiskLayerDescription),
2216 Disk(Resource<DiskHandleKind>),
2217}
2218
2219async fn disk_open(
2220 disk_cli: &DiskCliKind,
2221 read_only: bool,
2222) -> anyhow::Result<Resource<DiskHandleKind>> {
2223 let mut layers = Vec::new();
2224 disk_open_inner(disk_cli, read_only, &mut layers).await?;
2225 if layers.len() == 1 && matches!(layers[0], LayerOrDisk::Disk(_)) {
2226 let LayerOrDisk::Disk(disk) = layers.pop().unwrap() else {
2227 unreachable!()
2228 };
2229 Ok(disk)
2230 } else {
2231 Ok(Resource::new(disk_backend_resources::LayeredDiskHandle {
2232 layers: layers
2233 .into_iter()
2234 .map(|layer| match layer {
2235 LayerOrDisk::Layer(layer) => layer,
2236 LayerOrDisk::Disk(disk) => DiskLayerDescription {
2237 layer: DiskLayerHandle(disk).into_resource(),
2238 read_cache: false,
2239 write_through: false,
2240 },
2241 })
2242 .collect(),
2243 }))
2244 }
2245}
2246
2247fn disk_open_inner<'a>(
2248 disk_cli: &'a DiskCliKind,
2249 read_only: bool,
2250 layers: &'a mut Vec<LayerOrDisk>,
2251) -> futures::future::BoxFuture<'a, anyhow::Result<()>> {
2252 Box::pin(async move {
2253 fn layer<T: IntoResource<DiskLayerHandleKind>>(layer: T) -> LayerOrDisk {
2254 LayerOrDisk::Layer(layer.into_resource().into())
2255 }
2256 fn disk<T: IntoResource<DiskHandleKind>>(disk: T) -> LayerOrDisk {
2257 LayerOrDisk::Disk(disk.into_resource())
2258 }
2259 match disk_cli {
2260 &DiskCliKind::Memory(len) => {
2261 layers.push(layer(RamDiskLayerHandle {
2262 len: Some(len),
2263 sector_size: None,
2264 }));
2265 }
2266 DiskCliKind::File {
2267 path,
2268 create_with_len,
2269 direct,
2270 } => layers.push(LayerOrDisk::Disk(if let Some(size) = create_with_len {
2271 create_disk_type(
2272 path,
2273 *size,
2274 OpenDiskOptions {
2275 read_only: false,
2276 direct: *direct,
2277 },
2278 )
2279 .with_context(|| format!("failed to create {}", path.display()))?
2280 } else {
2281 open_disk_type(
2282 path,
2283 OpenDiskOptions {
2284 read_only,
2285 direct: *direct,
2286 },
2287 )
2288 .await
2289 .with_context(|| format!("failed to open {}", path.display()))?
2290 })),
2291 DiskCliKind::Blob { kind, url } => {
2292 layers.push(disk(disk_backend_resources::BlobDiskHandle {
2293 url: url.to_owned(),
2294 format: match kind {
2295 cli_args::BlobKind::Flat => disk_backend_resources::BlobDiskFormat::Flat,
2296 cli_args::BlobKind::Vhd1 => {
2297 disk_backend_resources::BlobDiskFormat::FixedVhd1
2298 }
2299 },
2300 }))
2301 }
2302 DiskCliKind::MemoryDiff(inner) => {
2303 layers.push(layer(RamDiskLayerHandle {
2304 len: None,
2305 sector_size: None,
2306 }));
2307 disk_open_inner(inner, true, layers).await?;
2308 }
2309 DiskCliKind::PersistentReservationsWrapper(inner) => {
2310 layers.push(disk(disk_backend_resources::DiskWithReservationsHandle(
2311 disk_open(inner, read_only).await?,
2312 )))
2313 }
2314 DiskCliKind::DelayDiskWrapper {
2315 delay_ms,
2316 disk: inner,
2317 } => layers.push(disk(DelayDiskHandle {
2318 delay: CellUpdater::new(Duration::from_millis(*delay_ms)).cell(),
2319 disk: disk_open(inner, read_only).await?,
2320 })),
2321 DiskCliKind::Crypt {
2322 disk: inner,
2323 cipher,
2324 key_file,
2325 } => layers.push(disk(disk_crypt_resources::DiskCryptHandle {
2326 disk: disk_open(inner, read_only).await?,
2327 cipher: match cipher {
2328 cli_args::DiskCipher::XtsAes256 => disk_crypt_resources::Cipher::XtsAes256,
2329 },
2330 key: fs_err::read(key_file).context("failed to read key file")?,
2331 })),
2332 DiskCliKind::Sqlite {
2333 path,
2334 create_with_len,
2335 } => {
2336 match (create_with_len.is_some(), path.exists()) {
2341 (true, true) => anyhow::bail!(
2342 "cannot create new sqlite disk at {} - file already exists",
2343 path.display()
2344 ),
2345 (false, false) => anyhow::bail!(
2346 "cannot open sqlite disk at {} - file not found",
2347 path.display()
2348 ),
2349 _ => {}
2350 }
2351
2352 layers.push(layer(SqliteDiskLayerHandle {
2353 dbhd_path: path.display().to_string(),
2354 format_dbhd: create_with_len.map(|len| {
2355 disk_backend_resources::layer::SqliteDiskLayerFormatParams {
2356 logically_read_only: false,
2357 len: Some(len),
2358 }
2359 }),
2360 }));
2361 }
2362 DiskCliKind::SqliteDiff { path, create, disk } => {
2363 match (create, path.exists()) {
2368 (true, true) => anyhow::bail!(
2369 "cannot create new sqlite disk at {} - file already exists",
2370 path.display()
2371 ),
2372 (false, false) => anyhow::bail!(
2373 "cannot open sqlite disk at {} - file not found",
2374 path.display()
2375 ),
2376 _ => {}
2377 }
2378
2379 layers.push(layer(SqliteDiskLayerHandle {
2380 dbhd_path: path.display().to_string(),
2381 format_dbhd: create.then_some(
2382 disk_backend_resources::layer::SqliteDiskLayerFormatParams {
2383 logically_read_only: false,
2384 len: None,
2385 },
2386 ),
2387 }));
2388 disk_open_inner(disk, true, layers).await?;
2389 }
2390 DiskCliKind::AutoCacheSqlite {
2391 cache_path,
2392 key,
2393 disk,
2394 } => {
2395 layers.push(LayerOrDisk::Layer(DiskLayerDescription {
2396 read_cache: true,
2397 write_through: false,
2398 layer: SqliteAutoCacheDiskLayerHandle {
2399 cache_path: cache_path.clone(),
2400 cache_key: key.clone(),
2401 }
2402 .into_resource(),
2403 }));
2404 disk_open_inner(disk, read_only, layers).await?;
2405 }
2406 }
2407 Ok(())
2408 })
2409}
2410
2411pub(crate) fn system_page_size() -> u32 {
2413 sparse_mmap::SparseMapping::page_size() as u32
2414}
2415
2416pub(crate) const GUEST_ARCH: &str = if cfg!(guest_arch = "x86_64") {
2418 "x86_64"
2419} else {
2420 "aarch64"
2421};
2422
2423fn prepare_snapshot_restore(
2426 snapshot_dir: &Path,
2427 opt: &Options,
2428) -> anyhow::Result<(
2429 openvmm_defs::worker::SharedMemoryFd,
2430 mesh::payload::message::ProtobufMessage,
2431)> {
2432 let (manifest, state_bytes) = openvmm_helpers::snapshot::read_snapshot(snapshot_dir)?;
2433
2434 openvmm_helpers::snapshot::validate_manifest(
2436 &manifest,
2437 GUEST_ARCH,
2438 opt.memory_size(),
2439 opt.processors,
2440 system_page_size(),
2441 )?;
2442
2443 let memory_file = fs_err::OpenOptions::new()
2445 .read(true)
2446 .write(true)
2447 .open(snapshot_dir.join("memory.bin"))?;
2448
2449 let file_size = memory_file.metadata()?.len();
2451 if file_size != manifest.memory_size_bytes {
2452 anyhow::bail!(
2453 "memory.bin size ({file_size} bytes) doesn't match manifest ({} bytes)",
2454 manifest.memory_size_bytes,
2455 );
2456 }
2457
2458 let shared_memory_fd =
2459 openvmm_helpers::shared_memory::file_to_shared_memory_fd(memory_file.into())?;
2460
2461 let state_msg: mesh::payload::message::ProtobufMessage = mesh::payload::decode(&state_bytes)
2465 .context("failed to decode saved state from snapshot")?;
2466
2467 Ok((shared_memory_fd, state_msg))
2468}
2469
2470fn do_main(pidfile_guard: &mut Option<pidfile::Pidfile>) -> anyhow::Result<i32> {
2471 #[cfg(windows)]
2472 pal::windows::disable_hard_error_dialog();
2473
2474 tracing_init::enable_tracing()?;
2475
2476 meshworker::run_vmm_mesh_host()?;
2480
2481 let opt = cli_args::parse_options();
2482 if let Some(path) = &opt.write_saved_state_proto {
2483 mesh::payload::protofile::DescriptorWriter::new(vmcore::save_restore::saved_state_roots())
2484 .write_to_path(path)
2485 .context("failed to write protobuf descriptors")?;
2486 return Ok(0);
2487 }
2488
2489 if let Some(ref path) = opt.pidfile {
2490 *pidfile_guard = Some(pidfile::Pidfile::new(path).context("failed to create pidfile")?);
2491 }
2492
2493 if let Some(path) = opt.relay_console_path {
2494 let console_title = opt.relay_console_title.unwrap_or_default();
2495 return console_relay::relay_console(&path, console_title.as_str()).map(|()| 0);
2496 }
2497
2498 #[cfg(any(feature = "grpc", feature = "ttrpc"))]
2499 {
2500 let rpc = opt
2501 .rpc
2502 .as_ref()
2503 .map(|rpc| {
2504 let transport = match rpc.transport {
2505 cli_args::RpcTransportCli::Auto => ttrpc::RpcTransport::Auto,
2506 cli_args::RpcTransportCli::Ttrpc => ttrpc::RpcTransport::Ttrpc,
2507 cli_args::RpcTransportCli::Grpc => ttrpc::RpcTransport::Grpc,
2508 };
2509 (rpc.path.as_path(), transport)
2510 })
2511 .or_else(|| {
2512 opt.ttrpc
2513 .as_deref()
2514 .map(|p| (p, ttrpc::RpcTransport::Ttrpc))
2515 })
2516 .or_else(|| opt.grpc.as_deref().map(|p| (p, ttrpc::RpcTransport::Grpc)));
2517
2518 if let Some((path, transport)) = rpc {
2519 return block_on(async {
2520 let _ = std::fs::remove_file(path);
2521 let listener =
2522 unix_socket::UnixListener::bind(path).context("failed to bind to socket")?;
2523
2524 let mut handle =
2526 mesh_worker::launch_local_worker::<ttrpc::TtrpcWorker>(ttrpc::Parameters {
2527 listener,
2528 transport,
2529 })
2530 .await?;
2531
2532 tracing::info!(%transport, path = %path.display(), "listening");
2533
2534 pal::close_stdout().context("failed to close stdout")?;
2536
2537 handle.join().await?;
2538
2539 Ok(0)
2540 });
2541 }
2542 }
2543
2544 DefaultPool::run_with(async |driver| run_control(&driver, opt).await)
2545}
2546
2547fn new_hvsock_service_id(port: u32) -> Guid {
2548 Guid {
2551 data1: port,
2552 .."00000000-facb-11e6-bd58-64006a7986d3".parse().unwrap()
2553 }
2554}
2555
2556async fn run_control(driver: &DefaultDriver, opt: Options) -> anyhow::Result<i32> {
2557 let mut mesh = Some(VmmMesh::new(&driver, opt.single_process)?);
2558 let result = run_control_inner(driver, &mut mesh, opt).await;
2559 if let Some(mesh) = mesh {
2562 mesh.shutdown().await;
2563 }
2564 result
2565}
2566
2567async fn run_control_inner(
2568 driver: &DefaultDriver,
2569 mesh_slot: &mut Option<VmmMesh>,
2570 opt: Options,
2571) -> anyhow::Result<i32> {
2572 let mesh = mesh_slot.as_ref().unwrap();
2573 let (mut vm_config, mut resources) = vm_config_from_command_line(driver, mesh, &opt).await?;
2574
2575 let mut vnc_worker = None;
2576 if opt.gfx || opt.vnc.vnc {
2577 let addr: std::net::SocketAddr = if let Ok(sa) =
2580 opt.vnc.vnc_listen.parse::<std::net::SocketAddr>()
2581 {
2582 sa
2583 } else {
2584 let ip: std::net::IpAddr = opt.vnc.vnc_listen.parse().with_context(|| {
2585 format!(
2586 "invalid VNC listen address: {} (expected IP address or socket address like [::1]:5900)",
2587 opt.vnc.vnc_listen
2588 )
2589 })?;
2590 std::net::SocketAddr::new(ip, opt.vnc.vnc_port)
2591 };
2592
2593 let socket = socket2::Socket::new(
2594 if addr.is_ipv6() {
2595 socket2::Domain::IPV6
2596 } else {
2597 socket2::Domain::IPV4
2598 },
2599 socket2::Type::STREAM,
2600 None,
2601 )
2602 .with_context(|| format!("creating VNC socket for {}", addr))?;
2603
2604 if addr.is_ipv6() {
2605 if let Err(e) = socket.set_only_v6(false) {
2606 tracing::warn!(
2607 error = %e,
2608 "failed to enable dual-stack on IPv6 VNC socket, IPv4 clients may not be able to connect"
2609 );
2610 }
2611 }
2612 socket.set_reuse_address(true)?;
2613 socket
2614 .bind(&addr.into())
2615 .with_context(|| format!("binding VNC socket to {}", addr))?;
2616 socket
2617 .listen(128)
2618 .with_context(|| format!("listening on VNC socket {}", addr))?;
2619 let listener: TcpListener = socket.into();
2620
2621 if !addr.ip().is_loopback() {
2622 tracing::warn!(
2623 address = %addr,
2624 "VNC server listening on non-localhost address without authentication"
2625 );
2626 }
2627
2628 let input_send = vm_config.input.sender();
2629 let framebuffer = resources
2630 .framebuffer_access
2631 .take()
2632 .expect("synth video enabled");
2633
2634 let vnc_host = mesh
2635 .make_host("vnc", None)
2636 .await
2637 .context("spawning vnc process failed")?;
2638
2639 vnc_worker = Some(
2640 vnc_host
2641 .launch_worker(
2642 vnc_worker_defs::VNC_WORKER_TCP,
2643 VncParameters {
2644 listener,
2645 framebuffer,
2646 input_send,
2647 dirty_recv: resources.dirty_rect_recv.take(),
2648 max_clients: opt.vnc.vnc_max_clients,
2649 evict_oldest: opt.vnc.vnc_evict_oldest,
2650 },
2651 )
2652 .await?,
2653 )
2654 }
2655
2656 let gdb_worker = if let Some(port) = opt.gdb {
2658 let listener = TcpListener::bind(format!("127.0.0.1:{}", port))
2659 .with_context(|| format!("binding to gdb port {}", port))?;
2660
2661 let (req_tx, req_rx) = mesh::channel();
2662 vm_config.debugger_rpc = Some(req_rx);
2663
2664 let gdb_host = mesh
2665 .make_host("gdb", None)
2666 .await
2667 .context("spawning gdbstub process failed")?;
2668
2669 Some(
2670 gdb_host
2671 .launch_worker(
2672 debug_worker_defs::DEBUGGER_WORKER,
2673 debug_worker_defs::DebuggerParameters {
2674 listener,
2675 req_chan: req_tx,
2676 vp_count: vm_config.processor_topology.proc_count,
2677 target_arch: if cfg!(guest_arch = "x86_64") {
2678 debug_worker_defs::TargetArch::X86_64
2679 } else {
2680 debug_worker_defs::TargetArch::Aarch64
2681 },
2682 },
2683 )
2684 .await
2685 .context("failed to launch gdbstub worker")?,
2686 )
2687 } else {
2688 None
2689 };
2690
2691 let (vm_rpc, rpc_recv) = mesh::channel();
2693 let (notify_send, notify_recv) = mesh::channel();
2694 let vm_worker = {
2695 let vm_host = mesh.make_host("vm", opt.log_file.clone()).await?;
2696
2697 let (shared_memory, saved_state) = if let Some(snapshot_dir) = &opt.restore_snapshot {
2698 let (fd, state_msg) = prepare_snapshot_restore(snapshot_dir, &opt)?;
2699 (Some(fd), Some(state_msg))
2700 } else {
2701 let shared_memory = opt
2702 .memory_backing_file()
2703 .map(|path| {
2704 openvmm_helpers::shared_memory::open_memory_backing_file(
2705 path,
2706 opt.memory_size(),
2707 )
2708 })
2709 .transpose()?;
2710 (shared_memory, None)
2711 };
2712
2713 let params = VmWorkerParameters {
2714 hypervisor: match &opt.hypervisor {
2715 Some(name) => openvmm_helpers::hypervisor::hypervisor_resource(name)?,
2716 None => openvmm_helpers::hypervisor::choose_hypervisor()?,
2717 },
2718 cfg: vm_config,
2719 saved_state,
2720 shared_memory,
2721 rpc: rpc_recv,
2722 notify: notify_send,
2723 };
2724 vm_host
2725 .launch_worker(VM_WORKER, params)
2726 .await
2727 .context("failed to launch vm worker")?
2728 };
2729
2730 if opt.restore_snapshot.is_some() {
2731 tracing::info!("restoring VM from snapshot");
2732 }
2733
2734 if !opt.paused {
2735 vm_rpc.call(VmRpc::Resume, ()).await?;
2736 }
2737
2738 let paravisor_diag = Arc::new(diag_client::DiagClient::from_dialer(
2739 driver.clone(),
2740 DiagDialer {
2741 driver: driver.clone(),
2742 vm_rpc: vm_rpc.clone(),
2743 openhcl_vtl: if opt.vtl2 {
2744 DeviceVtl::Vtl2
2745 } else {
2746 DeviceVtl::Vtl0
2747 },
2748 },
2749 ));
2750
2751 let diag_inspector = DiagInspector::new(driver.clone(), paravisor_diag.clone());
2752
2753 let (vm_controller_send, vm_controller_recv) = mesh::channel();
2755 let (vm_controller_event_send, vm_controller_event_recv) = mesh::channel();
2756
2757 let has_vtl2 = resources.vtl2_settings.is_some();
2758 let serial_driver = resources
2759 .serial_driver
2760 .take()
2761 .expect("serial driver must outlive serial resources");
2762
2763 let controller = vm_controller::VmController {
2765 mesh: mesh_slot.take().unwrap(),
2766 vm_worker,
2767 vnc_worker,
2768 gdb_worker,
2769 diag_inspector: Some(diag_inspector),
2770 vtl2_settings: resources.vtl2_settings,
2771 ged_rpc: resources.ged_rpc.clone(),
2772 vm_rpc: vm_rpc.clone(),
2773 paravisor_diag: Some(paravisor_diag),
2774 igvm_path: opt.igvm.clone(),
2775 memory_backing_file: opt.memory_backing_file().cloned(),
2776 memory: opt.memory_size(),
2777 processors: opt.processors,
2778 log_file: opt.log_file.clone(),
2779 guest_power_actions: vm_controller::GuestPowerActions {
2780 shutdown: opt.guest_shutdown_action,
2781 reset: opt.guest_reset_action,
2782 crash: opt.guest_crash_action,
2783 watchdog: opt.guest_watchdog_action,
2784 },
2785 };
2786
2787 let controller_task = driver.spawn(
2789 "vm-controller",
2790 controller.run(vm_controller_recv, vm_controller_event_send, notify_recv),
2791 );
2792
2793 let repl_result = repl::run_repl(
2795 driver,
2796 repl::ReplResources {
2797 vm_rpc,
2798 vm_controller: vm_controller_send,
2799 vm_controller_events: vm_controller_event_recv,
2800 scsi_rpc: resources.scsi_rpc,
2801 nvme_vtl2_rpc: resources.nvme_vtl2_rpc,
2802 consomme_rpc: resources.consomme_rpc,
2803 shutdown_ic: resources.shutdown_ic,
2804 kvp_ic: resources.kvp_ic,
2805 console_in: resources.console_in,
2806 has_vtl2,
2807 },
2808 )
2809 .await;
2810
2811 controller_task.await;
2814 drop(serial_driver);
2815
2816 repl_result
2819}
2820
2821struct DiagDialer {
2822 driver: DefaultDriver,
2823 vm_rpc: mesh::Sender<VmRpc>,
2824 openhcl_vtl: DeviceVtl,
2825}
2826
2827impl mesh_rpc::client::Dial for DiagDialer {
2828 type Stream = PolledSocket<unix_socket::UnixStream>;
2829
2830 async fn dial(&mut self) -> io::Result<Self::Stream> {
2831 let service_id = new_hvsock_service_id(1);
2832 let socket = self
2833 .vm_rpc
2834 .call_failable(
2835 VmRpc::ConnectHvsock,
2836 (
2837 CancelContext::new().with_timeout(Duration::from_secs(2)),
2838 service_id,
2839 self.openhcl_vtl,
2840 ),
2841 )
2842 .await
2843 .map_err(io::Error::other)?;
2844
2845 PolledSocket::new(&self.driver, socket)
2846 }
2847}
2848
2849pub(crate) struct DiagInspector(DiagInspectorInner);
2856
2857enum DiagInspectorInner {
2858 NotStarted(DefaultDriver, Arc<diag_client::DiagClient>),
2859 Started {
2860 send: mesh::Sender<inspect::Deferred>,
2861 _task: Task<()>,
2862 },
2863 Invalid,
2864}
2865
2866impl DiagInspector {
2867 pub fn new(driver: DefaultDriver, diag_client: Arc<diag_client::DiagClient>) -> Self {
2868 Self(DiagInspectorInner::NotStarted(driver, diag_client))
2869 }
2870
2871 fn start(&mut self) -> &mesh::Sender<inspect::Deferred> {
2872 loop {
2873 match self.0 {
2874 DiagInspectorInner::NotStarted { .. } => {
2875 let DiagInspectorInner::NotStarted(driver, client) =
2876 std::mem::replace(&mut self.0, DiagInspectorInner::Invalid)
2877 else {
2878 unreachable!()
2879 };
2880 let (send, recv) = mesh::channel();
2881 let task = driver.clone().spawn("diag-inspect", async move {
2882 Self::run(&client, recv).await
2883 });
2884
2885 self.0 = DiagInspectorInner::Started { send, _task: task };
2886 }
2887 DiagInspectorInner::Started { ref send, .. } => break send,
2888 DiagInspectorInner::Invalid => unreachable!(),
2889 }
2890 }
2891 }
2892
2893 async fn run(
2894 diag_client: &diag_client::DiagClient,
2895 mut recv: mesh::Receiver<inspect::Deferred>,
2896 ) {
2897 while let Some(deferred) = recv.next().await {
2898 let info = deferred.external_request();
2899 let result = match info.request_type {
2900 inspect::ExternalRequestType::Inspect { depth } => {
2901 if depth == 0 {
2902 Ok(inspect::Node::Unevaluated)
2903 } else {
2904 diag_client
2906 .inspect(info.path, Some(depth - 1), Some(Duration::from_secs(1)))
2907 .await
2908 }
2909 }
2910 inspect::ExternalRequestType::Update { value } => {
2911 (diag_client.update(info.path, value).await).map(inspect::Node::Value)
2912 }
2913 };
2914 deferred.complete_external(
2915 result.unwrap_or_else(|err| {
2916 inspect::Node::Failed(inspect::Error::Mesh(format!("{err:#}")))
2917 }),
2918 inspect::SensitivityLevel::Unspecified,
2919 )
2920 }
2921 }
2922}
2923
2924impl InspectMut for DiagInspector {
2925 fn inspect_mut(&mut self, req: inspect::Request<'_>) {
2926 self.start().send(req.defer());
2927 }
2928}