1use crc32fast::Hasher as Crc32;
2use memmap2::{Mmap, MmapOptions};
3use std::fs::{File, OpenOptions};
4use std::io::{BufWriter, Read, Seek, SeekFrom, Write};
5use std::path::Path;
6
7use crate::error::{FileError, Result};
8
9pub const MAGIC: &[u8; 8] = b"MFFILE01";
10pub const HEADER_LEN: usize = 16; pub const REC_HDR: usize = 8; #[inline]
14pub fn crc32(data: &[u8]) -> u32 {
15 let mut h = Crc32::new();
16 h.update(data);
17 h.finalize()
18}
19#[inline]
20pub fn read_u32_le(buf: &[u8]) -> u32 {
21 u32::from_le_bytes(buf.try_into().unwrap())
22}
23#[inline]
24pub fn write_u32_le(
25 out: &mut [u8],
26 v: u32,
27) {
28 out.copy_from_slice(&v.to_le_bytes());
29}
30
31fn write_header(file: &mut File) -> Result<()> {
33 file.seek(SeekFrom::Start(0))?;
34 let mut buf = [0u8; HEADER_LEN];
35 buf[..8].copy_from_slice(MAGIC);
36 file.write_all(&buf)?;
37 Ok(())
38}
39
40fn check_header(file: &mut File) -> Result<()> {
42 file.seek(SeekFrom::Start(0))?;
43 let mut hdr = [0u8; HEADER_LEN];
44 file.read_exact(&mut hdr)?;
45 if &hdr[..8] != MAGIC {
46 return Err(FileError::BadHeader);
47 }
48 Ok(())
49}
50
51#[derive(Debug)]
52pub struct Writer {
53 pub(crate) file: File,
54 buf: BufWriter<File>,
55 pub(crate) logical_end: u64,
56 prealloc_until: u64,
57 prealloc_chunk: u64,
58}
59
60impl Writer {
61 pub fn create<P: AsRef<Path>>(
63 path: P,
64 prealloc_chunk: u64,
65 ) -> Result<Self> {
66 let mut file = OpenOptions::new()
67 .create(true)
68 .truncate(false)
69 .read(true)
70 .write(true)
71 .open(&path)?;
72
73 let meta_len = file.metadata()?.len();
74 if meta_len == 0 {
75 write_header(&mut file)?;
76 } else {
77 check_header(&mut file)?;
78 }
79
80 let (logical_end, file_len) = {
82 let mmap = unsafe { MmapOptions::new().map(&file)? };
83 let l = scan_logical_end(&mmap)?;
84 (l, mmap.len() as u64)
85 };
86
87 let mut prealloc_until = file_len.max(logical_end);
88 if prealloc_chunk > 0 && prealloc_until < logical_end + prealloc_chunk {
89 prealloc_until =
90 (logical_end + prealloc_chunk).max(HEADER_LEN as u64);
91 file.set_len(prealloc_until)?;
92 }
93
94 file.seek(SeekFrom::Start(logical_end))?;
95 let buf = BufWriter::with_capacity(8 * 1024 * 1024, file.try_clone()?);
96
97 Ok(Self { file, buf, logical_end, prealloc_until, prealloc_chunk })
98 }
99
100 pub fn append(
102 &mut self,
103 payload: &[u8],
104 ) -> Result<u64> {
105 if payload.len() > (u32::MAX as usize) {
106 return Err(FileError::RecordTooLarge(payload.len()));
107 }
108 let need = REC_HDR as u64 + payload.len() as u64;
109 self.ensure_capacity(need)?;
110
111 let offset = self.logical_end;
112 let mut hdr = [0u8; REC_HDR];
113 write_u32_le(&mut hdr[0..4], payload.len() as u32);
114 write_u32_le(&mut hdr[4..8], crc32(payload));
115 self.buf.write_all(&hdr)?;
116 self.buf.write_all(payload)?;
117 self.logical_end += need;
118 Ok(offset)
119 }
120
121 pub fn flush(&mut self) -> Result<()> {
123 self.buf.flush()?;
124 self.file.sync_data()?;
125 Ok(())
126 }
127 pub fn len(&self) -> u64 {
129 self.logical_end
130 }
131
132 pub fn is_empty(&self) -> bool {
134 self.logical_end == HEADER_LEN as u64
135 }
136
137 fn ensure_capacity(
139 &mut self,
140 need: u64,
141 ) -> Result<()> {
142 if self.prealloc_chunk == 0 {
143 return Ok(());
144 }
145 let want = self.logical_end + need;
146 if want <= self.prealloc_until {
147 return Ok(());
148 }
149 let mut new_size = self.prealloc_until;
150 while new_size < want {
151 new_size += self.prealloc_chunk;
152 }
153 self.buf.flush()?;
154 self.file.set_len(new_size)?;
155 self.prealloc_until = new_size;
156 Ok(())
157 }
158}
159
160#[derive(Debug)]
161pub struct Reader {
162 pub(crate) _file: File, pub(crate) mmap: Mmap,
164 pub(crate) logical_end: u64,
165}
166
167impl Reader {
168 pub fn open<P: AsRef<Path>>(path: P) -> Result<Self> {
170 let mut file = OpenOptions::new().read(true).open(path)?;
171 check_header(&mut file)?;
172 let mmap = unsafe { MmapOptions::new().map(&file)? };
173 let logical_end = scan_logical_end(&mmap)?;
174 Ok(Self { _file: file, mmap, logical_end })
175 }
176 pub fn logical_len(&self) -> u64 {
178 self.logical_end
179 }
180 pub fn get_at(
182 &self,
183 offset: u64,
184 ) -> Result<&[u8]> {
185 let end = self.logical_end as usize;
186 let p = offset as usize;
187 if p + REC_HDR > end {
188 return Err(FileError::BadHeader);
189 }
190 let len: usize = read_u32_le(&self.mmap[p..p + 4]) as usize;
191 let stored_crc = read_u32_le(&self.mmap[p + 4..p + 8]);
192 if len == 0 {
193 return Err(FileError::BadHeader);
194 }
195 let s = p + REC_HDR;
196 let e = s + len;
197 if e > end {
198 return Err(FileError::BadHeader);
199 }
200 let payload = &self.mmap[s..e];
201 if crc32(payload) != stored_crc {
202 return Err(FileError::CrcMismatch(offset));
203 }
204 Ok(payload)
205 }
206 pub fn iter(&self) -> Iter<'_> {
208 Iter { mmap: &self.mmap, p: HEADER_LEN, end: self.logical_end as usize }
209 }
210}
211
212pub struct Iter<'a> {
213 mmap: &'a Mmap,
214 p: usize,
215 end: usize,
216}
217impl<'a> Iterator for Iter<'a> {
218 type Item = &'a [u8];
219 fn next(&mut self) -> Option<Self::Item> {
220 if self.p + REC_HDR > self.end {
221 return None;
222 }
223 let len = read_u32_le(&self.mmap[self.p..self.p + 4]) as usize;
224 let stored_crc = read_u32_le(&self.mmap[self.p + 4..self.p + 8]);
225 if len == 0 {
226 return None;
227 }
228 let s = self.p + REC_HDR;
229 let e = s + len;
230 if e > self.end {
231 return None;
232 }
233 let payload = &self.mmap[s..e];
234 if crc32(payload) != stored_crc {
235 return None;
236 }
237 self.p = e;
238 Some(payload)
239 }
240}
241
242pub fn scan_logical_end(mmap: &Mmap) -> Result<u64> {
244 if mmap.len() < HEADER_LEN {
245 return Err(FileError::BadHeader);
246 }
247 if &mmap[..8] != MAGIC {
248 return Err(FileError::BadHeader);
249 }
250 let mut p = HEADER_LEN;
251 let n = mmap.len();
252 while p + REC_HDR <= n {
253 let len = read_u32_le(&mmap[p..p + 4]) as usize;
254 if len == 0 {
255 break;
256 }
257 let s = p + REC_HDR;
258 let e = s + len;
259 if e > n {
260 break;
261 }
262 let stored_crc = read_u32_le(&mmap[p + 4..p + 8]);
263 if crc32(&mmap[s..e]) != stored_crc {
264 break;
265 }
266 p = e;
267 }
268 Ok(p as u64)
269}