// Copyright 2018 The Chromium OS Authors. All rights reserved. // Use of this source code is governed by a BSD-style license that can be // found in the LICENSE-BSD-3-Clause file. // // SPDX-License-Identifier: Apache-2.0 AND BSD-3-Clause #![no_main] use std::ffi; use std::fs::File; use std::io::{self, Cursor, Read, Seek, SeekFrom, Write}; use std::os::unix::io::{FromRawFd, RawFd}; use std::sync::Arc; use block::async_io::GuestMemoryTarget; use block::disk_file::AsyncDiskFile; use block::formats::qcow::QcowDisk; use libfuzzer_sys::{fuzz_target, Corpus}; use vm_memory::{Bytes, GuestAddress, GuestMemoryMmap}; // Take the first 64 bits of data as an address and the next 64 bits as data to // store there. The rest of the data is used as a qcow image. fuzz_target!(|bytes: &[u8]| -> Corpus { if bytes.len() < 16 { // Need an address and data, each are 8 bytes. return Corpus::Reject; } let mut disk_image = Cursor::new(bytes); let addr = read_u64(&mut disk_image); let value = read_u64(&mut disk_image); let shm = memfd_create(&ffi::CString::new("fuzz").unwrap(), 0).unwrap(); let mut disk_file: File = unsafe { File::from_raw_fd(shm) }; disk_file.write_all(&bytes[16..]).unwrap(); disk_file.seek(SeekFrom::Start(0)).unwrap(); let Ok(disk) = QcowDisk::new(disk_file, false, false, true, false) else { return Corpus::Keep; }; let Ok(mut async_io) = disk.create_async_io(1) else { return Corpus::Keep; }; let len = size_of::(); let Ok(mem) = GuestMemoryMmap::<()>::from_ranges(&[(GuestAddress(0), len)]) else { return Corpus::Keep; }; let mem = Arc::new(mem); let _ = mem.write_slice(&value.to_le_bytes(), GuestAddress(0)); let range = [(GuestAddress(0), len as u32)]; let off = addr as libc::off_t; if let Ok(target) = GuestMemoryTarget::new(Arc::clone(&mem), &range) { let _ = async_io.write_from_memory(off, target, 0); while async_io.next_completed_request().is_some() {} } if let Ok(target) = GuestMemoryTarget::new(Arc::clone(&mem), &range) { let _ = async_io.read_to_memory(off, target, 1); while async_io.next_completed_request().is_some() {} } let _ = async_io.write_zeroes(addr, len as u64, 2); while async_io.next_completed_request().is_some() {} let _ = async_io.punch_hole(addr, len as u64, 3); while async_io.next_completed_request().is_some() {} let _ = async_io.fsync(Some(4)); while async_io.next_completed_request().is_some() {} Corpus::Keep }); fn read_u64(readable: &mut T) -> u64 { let mut buf = [0u8; size_of::()]; readable.read_exact(&mut buf[..]).unwrap(); u64::from_le_bytes(buf) } fn memfd_create(name: &ffi::CStr, flags: u32) -> Result { let res = unsafe { libc::syscall(libc::SYS_memfd_create, name.as_ptr(), flags) }; if res < 0 { Err(io::Error::last_os_error()) } else { Ok(res as RawFd) } }