exfat/cluster_heap/directory/
mod.rs1mod entry_iter;
2
3use core::fmt::Debug;
4use core::mem::{self, MaybeUninit};
5use core::slice;
6
7use alloc::rc::Rc;
8
9use super::entryset::{EntryRef, EntrySet};
10use super::file::File;
11use super::meta::MetaFileDirectory;
12use super::metadata::Metadata;
13use crate::error::{DataError, Error, ImplementationError, InputError, OperationError};
14use crate::file::{FileOptions, MAX_FILENAME_SIZE, TouchOptions};
15use crate::fs::SectorRef;
16use crate::region::data::entry_type::{EntryType, RawEntryType};
17use crate::region::data::entryset::primary::{DateTime, FileDirectory, name_hash};
18use crate::region::data::entryset::secondary::{Filename, Secondary, StreamExtension};
19use crate::region::data::entryset::{ENTRY_SIZE, RawEntry, checksum};
20use crate::sync::acquire;
21use crate::types::ClusterID;
22use crate::upcase_table::UpcaseTable;
23use entry_iter::EntryIter;
24
25pub struct Directory<E: Debug, IO: crate::io::IO<Error = E>> {
26 pub(crate) meta: MetaFileDirectory<IO>,
27 pub(crate) upcase_table: Rc<UpcaseTable>,
28 #[cfg(feature = "async")]
29 closed: bool,
30}
31
32impl<E: Debug, IO: crate::io::IO<Error = E>> Directory<E, IO> {
33 pub(crate) fn new(meta: MetaFileDirectory<IO>, upcase_table: Rc<UpcaseTable>) -> Self {
34 match () {
35 #[cfg(not(feature = "async"))]
36 _ => Self { meta, upcase_table },
37 #[cfg(feature = "async")]
38 _ => Self { meta, upcase_table, closed: false },
39 }
40 }
41}
42
43pub enum FileOrDirectory<E: Debug, IO: crate::io::IO<Error = E>> {
44 File(File<E, IO>),
45 Directory(Directory<E, IO>),
46}
47
48#[cfg_attr(not(feature = "async"), deasync::deasync)]
49impl<E: Debug, IO: crate::io::IO<Error = E>> Directory<E, IO> {
50 async fn walk_matches<F, H, R>(&mut self, f: F, mut h: H) -> Result<Option<R>, Error<E>>
51 where
52 F: Fn(&FileDirectory, &Secondary<StreamExtension>) -> bool,
53 H: FnMut(&EntrySet) -> Option<R>,
54 {
55 let mut iter = EntryIter::new(&mut self.meta).await?;
56 let mut file_directory: FileDirectory;
57 let mut stream_extension: Secondary<StreamExtension>;
58 loop {
59 let entry = match iter.next().await? {
60 Some(entry) => entry,
61 None => break,
62 };
63 let entry_type: RawEntryType = entry[0].into();
64 match entry_type.entry_type() {
65 Ok(EntryType::FileDirectory) => (),
66 Ok(_) => {
67 continue;
68 }
69 Err(t) => {
70 warn!("Unexpected entry type {}", t);
71 return Err(DataError::Metadata.into());
72 }
73 };
74 file_directory = unsafe { mem::transmute(*entry) };
75 if file_directory.secondary_count < 2 {
76 return Err(DataError::Metadata.into());
77 }
78 let entryset_sector_ref = iter.sector_ref;
79 let entryset_index = iter.index;
80 let entry = iter.next().await?.unwrap();
81 stream_extension = unsafe { mem::transmute(*entry) };
82 if !f(&file_directory, &stream_extension) {
83 iter.skip(file_directory.secondary_count - 2).await?;
84 continue;
85 }
86 let array: MaybeUninit<[u16; MAX_FILENAME_SIZE / 2]> = MaybeUninit::uninit();
87 let mut array: [u16; MAX_FILENAME_SIZE / 2] = unsafe { array.assume_init() };
88 for i in 0..(file_directory.secondary_count - 1) as usize {
89 if cfg!(feature = "limit-filename-size") && (i + 1) * 15 > array.len() {
90 continue;
91 }
92 let entry: &Filename = unsafe { mem::transmute(iter.next().await?.unwrap()) };
93 let slice = &unsafe { entry.filename.assume_init_ref() }[..];
94 array[i * 15..(i + 1) * 15].copy_from_slice(slice);
95 }
96 let name_length = stream_extension.custom_defined.name_length as usize;
97 for i in 0..name_length {
98 array[i] = u16::from_le(array[i]);
99 }
100 let slice = unsafe { slice::from_raw_parts(&array[0], name_length) };
101 let mut buf: [u8; MAX_FILENAME_SIZE] = unsafe { mem::transmute(array) };
102 let mut cursor = 0;
103 for &ch in slice {
104 let ch = unsafe { char::from_u32_unchecked(ch as u32) };
105 ch.encode_utf8(&mut buf[cursor..]);
106 cursor += ch.len_utf8();
107 }
108 let entryset = EntrySet {
109 name_bytes: buf,
110 name_length: cursor as u8,
111 file_directory,
112 stream_extension,
113 entry_ref: EntryRef::new(entryset_sector_ref, entryset_index as u8),
114 };
115 if let Some(retval) = h(&entryset) {
116 return Ok(Some(retval));
117 }
118 }
119 Ok(None)
120 }
121
122 pub async fn walk<H>(&mut self, mut h: H) -> Result<Option<EntrySet>, Error<E>>
124 where
125 H: FnMut(&EntrySet) -> bool,
126 {
127 self.walk_matches(
128 |_, _| true,
129 |entryset| if h(entryset) { Some(entryset.clone()) } else { None },
130 )
131 .await
132 }
133
134 pub async fn find(&mut self, name: &str) -> Result<Option<EntrySet>, Error<E>> {
136 let name_length = name.chars().count();
137 let upcase_table = self.upcase_table.clone();
138 let hash = name_hash(&self.upcase_table.to_upper(name));
139 self.walk_matches(
140 |file_directory, stream_extension| -> bool {
141 let entry_type = file_directory.entry_type;
142 if !entry_type.in_use() {
143 return false;
144 }
145 let length = stream_extension.custom_defined.name_length;
146 let name_hash = stream_extension.custom_defined.name_hash.to_ne();
147 length as usize == name_length && name_hash == hash
148 },
149 |entryset| match upcase_table.equals(name, &entryset.name()) {
150 true => Some(entryset.clone()),
151 false => None,
152 },
153 )
154 .await
155 }
156
157 pub async fn touch(&mut self, datetime: DateTime, opts: TouchOptions) -> Result<(), Error<E>> {
159 self.meta.touch(datetime, opts).await?;
160 acquire!(self.meta.io).flush().await
161 }
162
163 pub async fn open(&mut self, entryset: &EntrySet) -> Result<FileOrDirectory<E, IO>, Error<E>> {
165 trace!("Open {} on entry-ref {}", entryset.name(), entryset.entry_ref);
166 let mut context = acquire!(self.meta.context);
167 if !context.opened_entries.add(entryset.id(&self.meta.fs_info)) {
168 return Err(OperationError::AlreadyOpen.into());
169 }
170 let cluster_id = entryset.stream_extension.first_cluster.to_ne();
171 let file_attributes = entryset.file_directory.file_attributes();
172 let sector_ref = SectorRef::new(cluster_id.into(), 0);
173 let meta = MetaFileDirectory {
174 io: self.meta.io.clone(),
175 context: self.meta.context.clone(),
176 metadata: Metadata::new(entryset.clone()),
177 options: FileOptions::default(),
178 sector_ref,
179 ..self.meta
180 };
181 let (length, capacity) = (meta.metadata.length(), meta.metadata.capacity());
182 trace!("Cluster id {} length {} capacity {}", cluster_id, length, capacity);
183 if file_attributes.directory() > 0 {
184 let upcase_table = self.upcase_table.clone();
185 Ok(FileOrDirectory::Directory(Directory::new(meta, upcase_table)))
186 } else {
187 Ok(FileOrDirectory::File(File::new(meta, sector_ref)))
188 }
189 }
190
191 async fn lookup_free(&mut self, size: u8) -> Result<(EntryRef, bool), Error<E>> {
192 let mut best: Option<EntryRef> = None;
193 let mut best_count = u8::MAX;
194
195 let mut candidate = EntryRef::default();
196 let mut free_count = 0;
197
198 let mut sector_ref = self.meta.sector_ref;
199 let mut skip = 0;
200
201 loop {
202 let mut io = acquire!(self.meta.io);
203 let sector = io.read(sector_ref.id(&self.meta.fs_info)).await?;
204 let entries: &[[RawEntry; 16]] = unsafe { mem::transmute(sector) };
205 for (i, entry) in entries.iter().map(|e| e.iter()).flatten().enumerate() {
206 if skip > 0 {
207 skip -= 1;
208 continue;
209 }
210 let entry_type: RawEntryType = entry[0].into();
211 if entry_type.is_end_of_directory() {
212 let tail = best.is_none();
213 return Ok((best.unwrap_or(EntryRef::new(sector_ref, i as u8)), tail));
214 }
215 match (free_count == 0, entry_type.in_use()) {
216 (true, false) => candidate = EntryRef::new(sector_ref, i as u8),
217 (false, false) => free_count += 1,
218 (false, true) => {
219 if free_count >= size && free_count < best_count {
220 best = Some(candidate);
221 best_count = free_count;
222 }
223 free_count = 0;
224 }
225 _ => (),
226 }
227 if !entry_type.in_use() {
228 continue;
229 }
230 skip = match entry_type.entry_type() {
231 Ok(EntryType::FileDirectory) => {
232 let file_directory: &FileDirectory = unsafe { mem::transmute(entry) };
233 file_directory.secondary_count
234 }
235 Ok(_) => 0,
236 Err(_) => return Err(DataError::Metadata.into()),
237 }
238 }
239 drop(io);
240 sector_ref = self.meta.next(sector_ref).await?;
241 }
242 }
243
244 pub async fn create(&mut self, name: &str, directory: bool) -> Result<(), Error<E>> {
246 if directory {
247 return Err(ImplementationError::CreateDirectoryNotSupported.into());
248 }
249 trace!("Create file {}", name);
250 let name_length = name.chars().count();
251 if name_length > 255 {
252 return Err(InputError::NameTooLong.into());
253 }
254 if self.find(name).await?.is_some() {
255 return Err(OperationError::AlreadyExists.into());
256 }
257
258 let num_entries = ((name.len() + 14) / 15) as u8 + 2;
259 let (free_entry_ref, tail) = self.lookup_free(num_entries).await?;
260 let mut write_entry_ref = free_entry_ref;
261 let sector_ref = free_entry_ref.sector_ref;
262 let sector_size = self.meta.fs_info.sector_size() as usize;
263 let capacity = sector_size / ENTRY_SIZE;
264 let out_of_capacity = free_entry_ref.index + num_entries + tail as u8 >= capacity as u8;
265 if out_of_capacity {
266 let sector_ref = match self.meta.next(sector_ref).await {
267 Ok(sector_ref) => sector_ref,
268 Err(Error::Operation(OperationError::EOF)) => {
269 SectorRef::new(self.meta.allocate(sector_ref.cluster_id).await?, 0)
270 }
271 Err(e) => return Err(e),
272 };
273 write_entry_ref = EntryRef::new(sector_ref, 0);
274 }
275
276 debug!("Write entryset at entry-ref {}", write_entry_ref);
277
278 let hash = name_hash(&self.upcase_table.to_upper(name));
279 let stream_extension = Secondary::new(StreamExtension::new(name.len() as u8, hash));
280 let mut file_directory = FileDirectory::new(num_entries - 1, directory);
281 let sum = checksum(&file_directory, &stream_extension, name);
282 file_directory.set_checksum = sum.into();
283
284 let sector_id = write_entry_ref.sector_ref.id(&self.meta.fs_info);
285 let offset = write_entry_ref.index as usize * ENTRY_SIZE;
286 let bytes: &[u8; ENTRY_SIZE] = unsafe { mem::transmute(&file_directory) };
287 let mut io = acquire!(self.meta.io);
288 io.write(sector_id, offset, bytes).await?;
289 let bytes: &[u8; ENTRY_SIZE] = unsafe { mem::transmute(&stream_extension) };
290 io.write(sector_id, offset + ENTRY_SIZE, bytes).await?;
291
292 let mut chars = name.chars();
293 let mut filename = Filename::default();
294 for index in 2..(num_entries as usize) {
295 let buf = unsafe { filename.filename.assume_init_mut() };
296 for i in 0..15 {
297 buf[i] = u16::to_le(chars.next().unwrap_or('\0') as u16)
298 }
299 let bytes: &[u8; ENTRY_SIZE] = unsafe { mem::transmute(&filename) };
300 io.write(sector_id, offset + index * ENTRY_SIZE, bytes).await?;
301 }
302 if tail {
303 let offset = offset + (num_entries as usize + 2) * ENTRY_SIZE;
304 io.write(sector_id, offset, &[0]).await?;
305 };
306 if out_of_capacity {
308 let sector_id = sector_ref.id(&self.meta.fs_info);
309 let byte: u8 = RawEntryType::new(EntryType::Filename, false).into();
310 for i in free_entry_ref.index as usize..(sector_size / ENTRY_SIZE) {
311 io.write(sector_id, i * ENTRY_SIZE, &[byte]).await?;
312 }
313 }
314 io.flush().await
315 }
316
317 pub async fn delete(&mut self, entryset: &EntrySet) -> Result<(), Error<E>> {
319 debug!("Delete file or directory {} entry-ref {}", entryset.name(), entryset.entry_ref);
320 let file_or_directory = self.open(entryset).await?;
321 let meta = match file_or_directory {
322 FileOrDirectory::Directory(mut directory) => {
323 if directory.walk(|_| true).await?.is_some() {
324 #[cfg(all(feature = "async", not(feature = "std")))]
325 directory.close().await?;
326 return Err(OperationError::DirectoryNotEmpty.into());
327 }
328 directory.meta.metadata.clone()
329 }
330 FileOrDirectory::File(file) => file.meta.metadata.clone(),
331 };
332
333 let fs_info = self.meta.fs_info;
334 let mut sector_id = meta.entry_ref.sector_ref.id(&fs_info);
335 let secondary_count = meta.file_directory.secondary_count as usize;
336 let last_index = meta.entry_ref.index as usize + secondary_count;
337 let sector_size = fs_info.sector_size() as usize;
338 let next_sector_id = match last_index * ENTRY_SIZE > sector_size {
339 true => self.meta.next(meta.entry_ref.sector_ref).await?.id(&fs_info),
340 false => sector_id,
341 };
342
343 let mut offset = meta.entry_ref.index as usize * ENTRY_SIZE;
344 let mut io = acquire!(self.meta.io);
345 io.write(sector_id, offset, &[EntryType::FileDirectory.into(); 1]).await?;
346 offset = (offset + ENTRY_SIZE) % sector_size;
347 if offset == 0 {
348 sector_id = next_sector_id;
349 }
350 io.write(sector_id, offset, &[EntryType::StreamExtension.into(); 1]).await?;
351 for _ in 0..(secondary_count - 1) {
352 offset = (offset + ENTRY_SIZE) % sector_size;
353 if offset == 0 {
354 sector_id = next_sector_id;
355 }
356 io.write(sector_id, offset, &[EntryType::Filename.into(); 1]).await?;
357 }
358 drop(io);
359
360 let stream_extension = &meta.stream_extension;
361 let cluster_id: ClusterID = stream_extension.first_cluster.to_ne().into();
362 let fat_chain = meta.stream_extension.general_secondary_flags.fat_chain();
363 if cluster_id.valid() {
364 let mut context = acquire!(self.meta.context);
365 context.allocation_bitmap.release(cluster_id, fat_chain).await?;
366 }
367 acquire!(self.meta.io).flush().await
368 }
369
370 #[cfg(feature = "async")]
371 pub async fn close(mut self) -> Result<(), Error<E>> {
373 self.closed = true;
374 self.meta.close().await
375 }
376}
377
378impl<E: core::fmt::Debug, IO: crate::io::IO<Error = E>> Drop for Directory<E, IO> {
379 fn drop(&mut self) {
380 #[cfg(feature = "async")]
381 if !self.closed {
382 panic!("Close must be explicitly called");
383 }
384 #[cfg(not(feature = "async"))]
385 self.meta.close().unwrap();
386 }
387}