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https://github.com/cloud-hypervisor/cloud-hypervisor.git
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Import the modules used in the crate instead of spelling the fully-qualified paths at every use site, and collapse Result<T, io::Error> into io::Result<T>. This covers the feature-gated modules (fw_cfg, ivshmem, pvmemcontrol) as well, leaving the whole crate free of clippy::absolute_paths warnings. Signed-off-by: Henry Hrvoje Tonkovac <htonkovac@gmail.com> Assisted-by: Claude:Opus-4.8
270 lines
7.6 KiB
Rust
270 lines
7.6 KiB
Rust
// Copyright © 2023 Tencent Corporation
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//
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// SPDX-License-Identifier: Apache-2.0
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//
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use std::any::Any;
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use std::sync::{Arc, Barrier};
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use std::{io, result};
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use anyhow::anyhow;
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use event_monitor::event;
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use log::{debug, info};
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use pci::{
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BarReprogrammingParams, PCI_CONFIGURATION_ID, PciBarConfiguration, PciBarPrefetchable,
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PciBarRegionType, PciClassCode, PciConfiguration, PciDevice, PciDeviceError, PciHeaderType,
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PciSubclass,
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};
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use serde::{Deserialize, Serialize};
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use thiserror::Error;
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use vm_allocator::{AddressAllocator, SystemAllocator};
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use vm_device::{BusDevice, Resource};
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use vm_memory::{Address, GuestAddress};
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use vm_migration::{Migratable, MigratableError, Pausable, Snapshot, Snapshottable, Transportable};
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const PVPANIC_VENDOR_ID: u16 = 0x1b36;
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const PVPANIC_DEVICE_ID: u16 = 0x0011;
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pub const PVPANIC_DEVICE_MMIO_SIZE: u64 = 0x2;
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pub const PVPANIC_DEVICE_MMIO_ALIGNMENT: u64 = 0x10;
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const PVPANIC_PANICKED: u8 = 1 << 0;
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const PVPANIC_CRASH_LOADED: u8 = 1 << 1;
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#[derive(Debug, Error)]
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pub enum PvPanicError {
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#[error("Failed creating PvPanicDevice")]
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CreatePvPanicDevice(#[source] anyhow::Error),
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#[error("Failed to retrieve PciConfigurationState")]
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RetrievePciConfigurationState(#[source] anyhow::Error),
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}
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#[derive(Copy, Clone)]
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enum PvPanicSubclass {
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Other = 0x80,
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}
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impl PciSubclass for PvPanicSubclass {
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fn get_register_value(&self) -> u8 {
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*self as u8
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}
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}
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/// A device for handling guest panic event
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pub struct PvPanicDevice {
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id: String,
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events: u8,
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// PCI configuration registers.
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configuration: PciConfiguration,
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bar_regions: Vec<PciBarConfiguration>,
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}
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#[derive(Serialize, Deserialize)]
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pub struct PvPanicDeviceState {
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events: u8,
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}
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impl PvPanicDevice {
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pub fn new(id: String, snapshot: Option<&Snapshot>) -> Result<Self, PvPanicError> {
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let pci_configuration_state = vm_migration::state_from_id(snapshot, PCI_CONFIGURATION_ID)
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.map_err(|e| {
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PvPanicError::RetrievePciConfigurationState(anyhow!(
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"Failed to get PciConfigurationState from Snapshot: {e}"
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))
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})?;
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let mut configuration = PciConfiguration::new(
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PVPANIC_VENDOR_ID,
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PVPANIC_DEVICE_ID,
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0x1, // modern pci devices
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PciClassCode::BaseSystemPeripheral,
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&PvPanicSubclass::Other,
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None,
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PciHeaderType::Device,
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0,
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0,
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None,
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pci_configuration_state,
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);
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let command: [u8; 2] = [0x03, 0x01];
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let bar_reprogram = configuration.write_config_register(1, 0, &command);
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assert!(
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bar_reprogram.is_empty(),
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"No bar reprogrammig is expected from writing to the COMMAND register"
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);
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let state: Option<PvPanicDeviceState> = snapshot
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.as_ref()
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.map(|s| s.to_state())
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.transpose()
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.map_err(|e| {
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PvPanicError::CreatePvPanicDevice(anyhow!(
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"Failed to get PvPanicDeviceState from Snapshot: {e}"
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))
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})?;
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let events = if let Some(state) = state {
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state.events
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} else {
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PVPANIC_PANICKED | PVPANIC_CRASH_LOADED
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};
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let pvpanic_device = PvPanicDevice {
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id,
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events,
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configuration,
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bar_regions: vec![],
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};
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Ok(pvpanic_device)
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}
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pub fn event_to_string(&self, event: u8) -> String {
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if event == PVPANIC_PANICKED {
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"panic".to_string()
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} else if event == PVPANIC_CRASH_LOADED {
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"crash_loaded".to_string()
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} else {
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"unknown_event".to_string()
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}
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}
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fn state(&self) -> PvPanicDeviceState {
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PvPanicDeviceState {
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events: self.events,
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}
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}
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pub fn config_bar_addr(&self) -> u64 {
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self.configuration.get_bar_addr(0)
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}
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}
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impl BusDevice for PvPanicDevice {
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fn read(&mut self, base: u64, offset: u64, data: &mut [u8]) {
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self.read_bar(base, offset, data);
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}
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fn write(&mut self, _base: u64, _offset: u64, data: &[u8]) -> Option<Arc<Barrier>> {
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let event = self.event_to_string(data[0]);
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info!("pvpanic got guest event {event}");
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event!("guest", "panic", "event", &event);
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None
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}
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}
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impl PciDevice for PvPanicDevice {
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fn write_config_register(
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&mut self,
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reg_idx: usize,
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offset: u64,
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data: &[u8],
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) -> (Vec<BarReprogrammingParams>, Option<Arc<Barrier>>) {
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(
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self.configuration
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.write_config_register(reg_idx, offset, data),
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None,
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)
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}
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fn read_config_register(&mut self, reg_idx: usize) -> u32 {
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self.configuration.read_reg(reg_idx)
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}
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fn allocate_bars(
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&mut self,
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_allocator: &mut SystemAllocator,
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mmio32_allocator: &mut AddressAllocator,
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_mmio64_allocator: &mut AddressAllocator,
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resources: Option<Vec<Resource>>,
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) -> result::Result<Vec<PciBarConfiguration>, PciDeviceError> {
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let mut bars = Vec::new();
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let region_type = PciBarRegionType::Memory32BitRegion;
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let bar_id = 0;
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let region_size = PVPANIC_DEVICE_MMIO_SIZE;
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let restoring = resources.is_some();
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let bar_addr = mmio32_allocator
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.allocate(None, region_size, Some(PVPANIC_DEVICE_MMIO_ALIGNMENT))
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.ok_or(PciDeviceError::IoAllocationFailed(region_size))?;
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let bar = PciBarConfiguration::default()
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.set_index(bar_id as usize)
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.set_address(bar_addr.raw_value())
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.set_size(region_size)
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.set_region_type(region_type)
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.set_prefetchable(PciBarPrefetchable::NotPrefetchable);
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debug!("pvpanic bar address 0x{:x}", bar_addr.0);
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if !restoring {
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self.configuration
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.add_pci_bar(&bar)
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.map_err(|e| PciDeviceError::IoRegistrationFailed(bar_addr.raw_value(), e))?;
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}
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bars.push(bar);
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self.bar_regions.clone_from(&bars);
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Ok(bars)
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}
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fn free_bars(
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&mut self,
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_allocator: &mut SystemAllocator,
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mmio32_allocator: &mut AddressAllocator,
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_mmio64_allocator: &mut AddressAllocator,
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) -> result::Result<(), PciDeviceError> {
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for bar in self.bar_regions.drain(..) {
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mmio32_allocator.free(GuestAddress(bar.addr()), bar.size());
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}
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Ok(())
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}
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fn move_bar(&mut self, old_base: u64, new_base: u64) -> io::Result<()> {
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for bar in self.bar_regions.iter_mut() {
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if bar.addr() == old_base {
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*bar = bar.set_address(new_base);
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}
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}
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Ok(())
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}
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fn restore_bar_addr(&mut self, params: &BarReprogrammingParams) {
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self.configuration.restore_bar_addr(params);
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}
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fn read_bar(&mut self, _base: u64, _offset: u64, data: &mut [u8]) {
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data[0] = self.events;
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}
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fn as_any_mut(&mut self) -> &mut dyn Any {
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self
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}
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fn id(&self) -> Option<String> {
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Some(self.id.clone())
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}
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}
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impl Pausable for PvPanicDevice {}
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impl Snapshottable for PvPanicDevice {
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fn id(&self) -> String {
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self.id.clone()
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}
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fn snapshot(&mut self) -> result::Result<Snapshot, MigratableError> {
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let mut snapshot = Snapshot::new_from_state(&self.state())?;
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// Snapshot PciConfiguration
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snapshot.add_snapshot(self.configuration.id(), self.configuration.snapshot()?);
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Ok(snapshot)
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}
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}
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impl Transportable for PvPanicDevice {}
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impl Migratable for PvPanicDevice {}
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