1 /*
2 * Copyright (C) 2021 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 //! This program is a constrained file/FD server to serve file requests through a remote[1] binder
18 //! service. The file server is not designed to serve arbitrary file paths in the filesystem. On
19 //! the contrary, the server should be configured to start with already opened FDs, and serve the
20 //! client's request against the FDs
21 //!
22 //! For example, `exec 9</path/to/file fd_server --ro-fds 9` starts the binder service. A client
23 //! client can then request the content of file 9 by offset and size.
24 //!
25 //! [1] Since the remote binder is not ready, this currently implementation uses local binder
26 //! first.
27
28 mod fsverity;
29
30 use std::cmp::min;
31 use std::collections::BTreeMap;
32 use std::convert::TryInto;
33 use std::ffi::CString;
34 use std::fs::File;
35 use std::io;
36 use std::os::unix::fs::FileExt;
37 use std::os::unix::io::{AsRawFd, FromRawFd};
38
39 use anyhow::{bail, Context, Result};
40 use log::{debug, error};
41
42 use authfs_aidl_interface::aidl::com::android::virt::fs::IVirtFdService::{
43 BnVirtFdService, IVirtFdService, ERROR_IO, ERROR_UNKNOWN_FD, MAX_REQUESTING_DATA,
44 };
45 use authfs_aidl_interface::binder::{
46 add_service, BinderFeatures, ExceptionCode, Interface, ProcessState, Result as BinderResult,
47 Status, StatusCode, Strong,
48 };
49
50 const SERVICE_NAME: &str = "authfs_fd_server";
51
new_binder_exception<T: AsRef<str>>(exception: ExceptionCode, message: T) -> Status52 fn new_binder_exception<T: AsRef<str>>(exception: ExceptionCode, message: T) -> Status {
53 Status::new_exception(exception, CString::new(message.as_ref()).as_deref().ok())
54 }
55
validate_and_cast_offset(offset: i64) -> Result<u64, Status>56 fn validate_and_cast_offset(offset: i64) -> Result<u64, Status> {
57 offset.try_into().map_err(|_| {
58 new_binder_exception(ExceptionCode::ILLEGAL_ARGUMENT, format!("Invalid offset: {}", offset))
59 })
60 }
61
validate_and_cast_size(size: i32) -> Result<usize, Status>62 fn validate_and_cast_size(size: i32) -> Result<usize, Status> {
63 if size > MAX_REQUESTING_DATA {
64 Err(new_binder_exception(
65 ExceptionCode::ILLEGAL_ARGUMENT,
66 format!("Unexpectedly large size: {}", size),
67 ))
68 } else {
69 size.try_into().map_err(|_| {
70 new_binder_exception(ExceptionCode::ILLEGAL_ARGUMENT, format!("Invalid size: {}", size))
71 })
72 }
73 }
74
75 /// Configuration of a file descriptor to be served/exposed/shared.
76 enum FdConfig {
77 /// A read-only file to serve by this server. The file is supposed to be verifiable with the
78 /// associated fs-verity metadata.
79 Readonly {
80 /// The file to read from. fs-verity metadata can be retrieved from this file's FD.
81 file: File,
82
83 /// Alternative Merkle tree stored in another file.
84 alt_merkle_tree: Option<File>,
85
86 /// Alternative signature stored in another file.
87 alt_signature: Option<File>,
88 },
89
90 /// A readable/writable file to serve by this server. This backing file should just be a
91 /// regular file and does not have any specific property.
92 ReadWrite(File),
93 }
94
95 struct FdService {
96 /// A pool of opened files, may be readonly or read-writable.
97 fd_pool: BTreeMap<i32, FdConfig>,
98 }
99
100 impl FdService {
new_binder(fd_pool: BTreeMap<i32, FdConfig>) -> Strong<dyn IVirtFdService>101 pub fn new_binder(fd_pool: BTreeMap<i32, FdConfig>) -> Strong<dyn IVirtFdService> {
102 BnVirtFdService::new_binder(FdService { fd_pool }, BinderFeatures::default())
103 }
104
get_file_config(&self, id: i32) -> BinderResult<&FdConfig>105 fn get_file_config(&self, id: i32) -> BinderResult<&FdConfig> {
106 self.fd_pool.get(&id).ok_or_else(|| Status::from(ERROR_UNKNOWN_FD))
107 }
108 }
109
110 impl Interface for FdService {}
111
112 impl IVirtFdService for FdService {
readFile(&self, id: i32, offset: i64, size: i32) -> BinderResult<Vec<u8>>113 fn readFile(&self, id: i32, offset: i64, size: i32) -> BinderResult<Vec<u8>> {
114 let size: usize = validate_and_cast_size(size)?;
115 let offset: u64 = validate_and_cast_offset(offset)?;
116
117 match self.get_file_config(id)? {
118 FdConfig::Readonly { file, .. } | FdConfig::ReadWrite(file) => {
119 read_into_buf(&file, size, offset).map_err(|e| {
120 error!("readFile: read error: {}", e);
121 Status::from(ERROR_IO)
122 })
123 }
124 }
125 }
126
readFsverityMerkleTree(&self, id: i32, offset: i64, size: i32) -> BinderResult<Vec<u8>>127 fn readFsverityMerkleTree(&self, id: i32, offset: i64, size: i32) -> BinderResult<Vec<u8>> {
128 let size: usize = validate_and_cast_size(size)?;
129 let offset: u64 = validate_and_cast_offset(offset)?;
130
131 match &self.get_file_config(id)? {
132 FdConfig::Readonly { file, alt_merkle_tree, .. } => {
133 if let Some(tree_file) = &alt_merkle_tree {
134 read_into_buf(&tree_file, size, offset).map_err(|e| {
135 error!("readFsverityMerkleTree: read error: {}", e);
136 Status::from(ERROR_IO)
137 })
138 } else {
139 let mut buf = vec![0; size];
140 let s = fsverity::read_merkle_tree(file.as_raw_fd(), offset, &mut buf)
141 .map_err(|e| {
142 error!("readFsverityMerkleTree: failed to retrieve merkle tree: {}", e);
143 Status::from(e.raw_os_error().unwrap_or(ERROR_IO))
144 })?;
145 debug_assert!(s <= buf.len(), "Shouldn't return more bytes than asked");
146 buf.truncate(s);
147 Ok(buf)
148 }
149 }
150 FdConfig::ReadWrite(_file) => {
151 // For a writable file, Merkle tree is not expected to be served since Auth FS
152 // doesn't trust it anyway. Auth FS may keep the Merkle tree privately for its own
153 // use.
154 Err(new_binder_exception(ExceptionCode::UNSUPPORTED_OPERATION, "Unsupported"))
155 }
156 }
157 }
158
readFsveritySignature(&self, id: i32) -> BinderResult<Vec<u8>>159 fn readFsveritySignature(&self, id: i32) -> BinderResult<Vec<u8>> {
160 match &self.get_file_config(id)? {
161 FdConfig::Readonly { file, alt_signature, .. } => {
162 if let Some(sig_file) = &alt_signature {
163 // Supposedly big enough buffer size to store signature.
164 let size = MAX_REQUESTING_DATA as usize;
165 let offset = 0;
166 read_into_buf(&sig_file, size, offset).map_err(|e| {
167 error!("readFsveritySignature: read error: {}", e);
168 Status::from(ERROR_IO)
169 })
170 } else {
171 let mut buf = vec![0; MAX_REQUESTING_DATA as usize];
172 let s = fsverity::read_signature(file.as_raw_fd(), &mut buf).map_err(|e| {
173 error!("readFsverityMerkleTree: failed to retrieve merkle tree: {}", e);
174 Status::from(e.raw_os_error().unwrap_or(ERROR_IO))
175 })?;
176 debug_assert!(s <= buf.len(), "Shouldn't return more bytes than asked");
177 buf.truncate(s);
178 Ok(buf)
179 }
180 }
181 FdConfig::ReadWrite(_file) => {
182 // There is no signature for a writable file.
183 Err(new_binder_exception(ExceptionCode::UNSUPPORTED_OPERATION, "Unsupported"))
184 }
185 }
186 }
187
writeFile(&self, id: i32, buf: &[u8], offset: i64) -> BinderResult<i32>188 fn writeFile(&self, id: i32, buf: &[u8], offset: i64) -> BinderResult<i32> {
189 match &self.get_file_config(id)? {
190 FdConfig::Readonly { .. } => Err(StatusCode::INVALID_OPERATION.into()),
191 FdConfig::ReadWrite(file) => {
192 let offset: u64 = offset.try_into().map_err(|_| {
193 new_binder_exception(ExceptionCode::ILLEGAL_ARGUMENT, "Invalid offset")
194 })?;
195 // Check buffer size just to make `as i32` safe below.
196 if buf.len() > i32::MAX as usize {
197 return Err(new_binder_exception(
198 ExceptionCode::ILLEGAL_ARGUMENT,
199 "Buffer size is too big",
200 ));
201 }
202 Ok(file.write_at(buf, offset).map_err(|e| {
203 error!("writeFile: write error: {}", e);
204 Status::from(ERROR_IO)
205 })? as i32)
206 }
207 }
208 }
209
resize(&self, id: i32, size: i64) -> BinderResult<()>210 fn resize(&self, id: i32, size: i64) -> BinderResult<()> {
211 match &self.get_file_config(id)? {
212 FdConfig::Readonly { .. } => Err(StatusCode::INVALID_OPERATION.into()),
213 FdConfig::ReadWrite(file) => {
214 if size < 0 {
215 return Err(new_binder_exception(
216 ExceptionCode::ILLEGAL_ARGUMENT,
217 "Invalid size to resize to",
218 ));
219 }
220 file.set_len(size as u64).map_err(|e| {
221 error!("resize: set_len error: {}", e);
222 Status::from(ERROR_IO)
223 })
224 }
225 }
226 }
227 }
228
read_into_buf(file: &File, max_size: usize, offset: u64) -> io::Result<Vec<u8>>229 fn read_into_buf(file: &File, max_size: usize, offset: u64) -> io::Result<Vec<u8>> {
230 let remaining = file.metadata()?.len().saturating_sub(offset);
231 let buf_size = min(remaining, max_size as u64) as usize;
232 let mut buf = vec![0; buf_size];
233 file.read_exact_at(&mut buf, offset)?;
234 Ok(buf)
235 }
236
is_fd_valid(fd: i32) -> bool237 fn is_fd_valid(fd: i32) -> bool {
238 // SAFETY: a query-only syscall
239 let retval = unsafe { libc::fcntl(fd, libc::F_GETFD) };
240 retval >= 0
241 }
242
fd_to_file(fd: i32) -> Result<File>243 fn fd_to_file(fd: i32) -> Result<File> {
244 if !is_fd_valid(fd) {
245 bail!("Bad FD: {}", fd);
246 }
247 // SAFETY: The caller is supposed to provide valid FDs to this process.
248 Ok(unsafe { File::from_raw_fd(fd) })
249 }
250
parse_arg_ro_fds(arg: &str) -> Result<(i32, FdConfig)>251 fn parse_arg_ro_fds(arg: &str) -> Result<(i32, FdConfig)> {
252 let result: Result<Vec<i32>, _> = arg.split(':').map(|x| x.parse::<i32>()).collect();
253 let fds = result?;
254 if fds.len() > 3 {
255 bail!("Too many options: {}", arg);
256 }
257 Ok((
258 fds[0],
259 FdConfig::Readonly {
260 file: fd_to_file(fds[0])?,
261 // Alternative Merkle tree, if provided
262 alt_merkle_tree: fds.get(1).map(|fd| fd_to_file(*fd)).transpose()?,
263 // Alternative signature, if provided
264 alt_signature: fds.get(2).map(|fd| fd_to_file(*fd)).transpose()?,
265 },
266 ))
267 }
268
parse_arg_rw_fds(arg: &str) -> Result<(i32, FdConfig)>269 fn parse_arg_rw_fds(arg: &str) -> Result<(i32, FdConfig)> {
270 let fd = arg.parse::<i32>()?;
271 let file = fd_to_file(fd)?;
272 if file.metadata()?.len() > 0 {
273 bail!("File is expected to be empty");
274 }
275 Ok((fd, FdConfig::ReadWrite(file)))
276 }
277
parse_args() -> Result<BTreeMap<i32, FdConfig>>278 fn parse_args() -> Result<BTreeMap<i32, FdConfig>> {
279 #[rustfmt::skip]
280 let matches = clap::App::new("fd_server")
281 .arg(clap::Arg::with_name("ro-fds")
282 .long("ro-fds")
283 .multiple(true)
284 .number_of_values(1))
285 .arg(clap::Arg::with_name("rw-fds")
286 .long("rw-fds")
287 .multiple(true)
288 .number_of_values(1))
289 .get_matches();
290
291 let mut fd_pool = BTreeMap::new();
292 if let Some(args) = matches.values_of("ro-fds") {
293 for arg in args {
294 let (fd, config) = parse_arg_ro_fds(arg)?;
295 fd_pool.insert(fd, config);
296 }
297 }
298 if let Some(args) = matches.values_of("rw-fds") {
299 for arg in args {
300 let (fd, config) = parse_arg_rw_fds(arg)?;
301 fd_pool.insert(fd, config);
302 }
303 }
304 Ok(fd_pool)
305 }
306
main() -> Result<()>307 fn main() -> Result<()> {
308 android_logger::init_once(
309 android_logger::Config::default().with_tag("fd_server").with_min_level(log::Level::Debug),
310 );
311
312 let fd_pool = parse_args()?;
313
314 ProcessState::start_thread_pool();
315
316 add_service(SERVICE_NAME, FdService::new_binder(fd_pool).as_binder())
317 .with_context(|| format!("Failed to register service {}", SERVICE_NAME))?;
318 debug!("fd_server is running.");
319
320 ProcessState::join_thread_pool();
321 bail!("Unexpected exit after join_thread_pool")
322 }
323