// Copyright © 2021 Intel Corporation // // Copyright (c) Meta Platforms, Inc. and affiliates. // // SPDX-License-Identifier: Apache-2.0 use std::collections::VecDeque; use std::io::{self, Read, Seek, SeekFrom, Write}; use std::sync::{Arc, Mutex}; use vmm_sys_util::eventfd::EventFd; use crate::async_io::{AsyncIo, AsyncIoCompletion, AsyncIoError, AsyncIoOperation, AsyncIoResult}; use crate::formats::vhdx::internal::Vhdx; pub struct VhdxSync { vhdx_file: Arc>, eventfd: EventFd, completion_list: VecDeque, size: u64, } impl VhdxSync { pub fn new(vhdx_file: Arc>, size: u64) -> Self { VhdxSync { vhdx_file, eventfd: EventFd::new(libc::EFD_NONBLOCK) .expect("Failed creating EventFd for VhdxSync"), completion_list: VecDeque::new(), size, } } fn read_operation(&mut self, op: &mut AsyncIoOperation) -> AsyncIoResult { let offset = op.offset(); let mut buf = vec![0u8; op.total_len()]; let mut vhdx = self.vhdx_file.lock().unwrap(); vhdx.seek(SeekFrom::Start(offset as u64)) .map_err(AsyncIoError::ReadVectored)?; let result = vhdx.read(&mut buf).map_err(AsyncIoError::ReadVectored)?; drop(vhdx); op.write_bytes_at(0, &buf[..result]) .map_err(AsyncIoError::ReadVectored)?; Ok(result) } fn write_operation(&mut self, op: &AsyncIoOperation) -> AsyncIoResult { let offset = op.offset(); let mut buf = vec![0u8; op.total_len()]; op.read_bytes_at(0, &mut buf) .map_err(AsyncIoError::WriteVectored)?; let mut vhdx = self.vhdx_file.lock().unwrap(); vhdx.seek(SeekFrom::Start(offset as u64)) .map_err(AsyncIoError::WriteVectored)?; let result = vhdx.write(&buf).map_err(AsyncIoError::WriteVectored)?; Ok(result) } } impl AsyncIo for VhdxSync { fn notifier(&self) -> &EventFd { &self.eventfd } fn submit_data_operation(&mut self, op: AsyncIoOperation) -> AsyncIoResult<()> { op.validate_bounds(self.size)?; let is_read = op.is_read(); let mut op = op; let result = if is_read { self.read_operation(&mut op)? } else { self.write_operation(&op)? }; self.completion_list .push_back(AsyncIoCompletion::from_operation(op, result as i32)); self.eventfd.write(1).unwrap(); Ok(()) } fn fsync(&mut self, user_data: Option) -> AsyncIoResult<()> { self.vhdx_file .lock() .unwrap() .flush() .map_err(AsyncIoError::Fsync)?; if let Some(user_data) = user_data { self.completion_list .push_back(AsyncIoCompletion::new(user_data, 0, None)); self.eventfd.write(1).unwrap(); } Ok(()) } fn next_completed_request(&mut self) -> Option { self.completion_list.pop_front() } fn punch_hole(&mut self, _offset: u64, _length: u64, _user_data: u64) -> AsyncIoResult<()> { Err(AsyncIoError::PunchHole(io::Error::other( "punch_hole not supported for VHDX", ))) } fn write_zeroes(&mut self, _offset: u64, _length: u64, _user_data: u64) -> AsyncIoResult<()> { Err(AsyncIoError::WriteZeroes(io::Error::other( "write_zeroes not supported for VHDX", ))) } } #[cfg(test)] mod tests { use std::fs; use std::sync::{Arc, Mutex}; use vmm_sys_util::tempfile::TempFile; use super::*; use crate::async_io::{AsyncIo, AsyncIoError, AsyncIoOperation, OwnedIoBuffer}; use crate::formats::vhdx::internal::Vhdx; use crate::formats::vhdx::test_util::create_dynamic_vhdx; fn make_vhdx_sync(tf: &TempFile) -> (VhdxSync, u64) { let file = fs::OpenOptions::new() .read(true) .write(true) .open(tf.as_path()) .unwrap(); let vhdx = Vhdx::new(file, false).unwrap(); let size = vhdx.virtual_disk_size(); let sync = VhdxSync::new(Arc::new(Mutex::new(vhdx)), size); (sync, size) } /// Builds a `VhdxSync` from a fresh 1 MiB dynamic VHDX, or `None` /// if `qemu-img` is unavailable to generate one. fn setup() -> Option<(VhdxSync, u64)> { let tf = create_dynamic_vhdx(1)?; Some(make_vhdx_sync(&tf)) } #[test] fn sync_rejects_read_straddling_logical_size() { let Some((mut sync, size)) = setup() else { eprintln!("skipping: qemu-img unavailable"); return; }; let op = AsyncIoOperation::read_to_vec( (size - 512) as i64, OwnedIoBuffer::from_vec(vec![0u8; 1024]), 1, ); assert!(matches!( sync.submit_data_operation(op), Err(AsyncIoError::ReadVectored(_)) )); } #[test] fn sync_rejects_write_straddling_logical_size() { let Some((mut sync, size)) = setup() else { eprintln!("skipping: qemu-img unavailable"); return; }; let op = AsyncIoOperation::write_from_vec( (size - 512) as i64, OwnedIoBuffer::from_vec(vec![0u8; 1024]), 1, ); assert!(matches!( sync.submit_data_operation(op), Err(AsyncIoError::WriteVectored(_)) )); } #[test] fn sync_accepts_operation_exactly_filling_logical_size() { let Some((mut sync, size)) = setup() else { eprintln!("skipping: qemu-img unavailable"); return; }; let op = AsyncIoOperation::read_to_vec(0, OwnedIoBuffer::from_vec(vec![0u8; size as usize]), 1); sync.submit_data_operation(op).unwrap(); } #[test] fn sync_accepts_operation_at_last_sector() { let Some((mut sync, size)) = setup() else { eprintln!("skipping: qemu-img unavailable"); return; }; // VHDX operates in 512-byte sectors; read exactly the last sector. let op = AsyncIoOperation::read_to_vec( (size - 512) as i64, OwnedIoBuffer::from_vec(vec![0u8; 512]), 1, ); sync.submit_data_operation(op).unwrap(); } }