1use crate::error::{ChkpttError, Result};
2use crate::store::blob::hex_to_bytes;
3use bitcode::{Decode, Encode};
4use memmap2::Mmap;
5use std::io::{BufWriter, Seek, SeekFrom, Write};
6use std::path::PathBuf;
7use tempfile::NamedTempFile;
8
9const TREE_PACK_MAGIC: &[u8; 4] = b"CKTL";
10const TREE_IDX_ENTRY_SIZE: usize = 16 + 8 + 8; const TREE_HEADER_SIZE: u64 = 8;
12
13#[derive(Debug, Clone, Copy, PartialEq, Eq, Encode, Decode)]
14pub enum EntryType {
15 File,
16 Dir,
17 Symlink,
18}
19
20#[derive(Debug, Clone, PartialEq, Eq, Encode, Decode)]
21pub struct TreeEntry {
22 pub name: String,
23 pub entry_type: EntryType,
24 pub hash: [u8; 16],
25 pub size: u64,
26 pub mode: u32,
27}
28
29#[derive(Debug, Clone)]
31struct TreeIdxEntry {
32 hash: [u8; 16],
33 offset: u64,
34 size: u64,
35}
36
37pub struct TreeStore {
38 base_dir: PathBuf,
39 pack_dat: Option<Mmap>,
41 pack_idx: Option<Mmap>,
43 pack_entry_count: usize,
44}
45
46impl TreeStore {
47 pub fn new(base_dir: PathBuf) -> Self {
48 let dat_path = base_dir.join("trees.dat");
49 let idx_path = base_dir.join("trees.idx");
50
51 let (pack_dat, pack_idx, pack_entry_count) = match (
52 std::fs::File::open(&dat_path),
53 std::fs::File::open(&idx_path),
54 ) {
55 (Ok(dat_file), Ok(idx_file)) => match (unsafe { Mmap::map(&dat_file) }, unsafe {
57 Mmap::map(&idx_file)
58 }) {
59 (Ok(dat), Ok(idx)) => {
60 #[cfg(unix)]
61 {
62 let _ = dat.advise(memmap2::Advice::Sequential);
63 let _ = idx.advise(memmap2::Advice::Random);
64 }
65 let count = idx.len() / TREE_IDX_ENTRY_SIZE;
66 (Some(dat), Some(idx), count)
67 }
68 _ => (None, None, 0),
69 },
70 (Err(dat_error), _) if dat_error.kind() == std::io::ErrorKind::NotFound => {
71 (None, None, 0)
72 }
73 (_, Err(idx_error)) if idx_error.kind() == std::io::ErrorKind::NotFound => {
74 (None, None, 0)
75 }
76 _ => (None, None, 0),
77 };
78
79 Self {
80 base_dir,
81 pack_dat,
82 pack_idx,
83 pack_entry_count,
84 }
85 }
86
87 pub fn write(&self, entries: &[TreeEntry]) -> Result<String> {
89 let mut sorted = entries.to_vec();
90 sorted.sort_unstable_by(|a, b| a.name.cmp(&b.name));
91 let encoded = bitcode::encode(&sorted);
92 let hash_bytes = xxhash_rust::xxh3::xxh3_128(&encoded).to_le_bytes();
93 let hash_hex = crate::store::blob::bytes_to_hex(&hash_bytes);
94 self.write_pack(&[(hash_hex.clone(), encoded)])?;
95 Ok(hash_hex)
96 }
97
98 pub fn write_pack(&self, entries: &[(String, Vec<u8>)]) -> Result<()> {
101 if entries.is_empty() {
102 return Ok(());
103 }
104
105 std::fs::create_dir_all(&self.base_dir)?;
106
107 let dat_path = self.base_dir.join("trees.dat");
108 let idx_path = self.base_dir.join("trees.idx");
109
110 let mut all_idx_entries: Vec<TreeIdxEntry> = Vec::new();
112 let mut existing_hashes: std::collections::HashSet<[u8; 16]> =
113 std::collections::HashSet::new();
114
115 let existing_dat_len = if let (Some(dat), Some(idx)) = (&self.pack_dat, &self.pack_idx) {
116 for i in 0..self.pack_entry_count {
117 let pos = i * TREE_IDX_ENTRY_SIZE;
118 let mut hash = [0u8; 16];
119 hash.copy_from_slice(&idx[pos..pos + 16]);
120 let offset = u64::from_le_bytes(idx[pos + 16..pos + 24].try_into().unwrap());
121 let size = u64::from_le_bytes(idx[pos + 24..pos + 32].try_into().unwrap());
122 existing_hashes.insert(hash);
123 all_idx_entries.push(TreeIdxEntry { hash, offset, size });
124 }
125 dat.len() as u64
126 } else {
127 TREE_HEADER_SIZE
128 };
129
130 let mut dat_tmp = NamedTempFile::new_in(&self.base_dir)?;
132 {
133 let mut writer = BufWriter::with_capacity(256 * 1024, &mut dat_tmp);
134
135 if let Some(dat) = &self.pack_dat {
136 writer.write_all(dat)?;
137 } else {
138 writer.write_all(&[0u8; TREE_HEADER_SIZE as usize])?;
139 }
140
141 let mut offset = existing_dat_len;
142
143 for (hash_hex, encoded) in entries {
144 let hash = hex_to_bytes(hash_hex)?;
145 if existing_hashes.contains(&hash) {
146 continue;
147 }
148 let data_len = encoded.len() as u64;
149 writer.write_all(&hash)?;
151 writer.write_all(&data_len.to_le_bytes())?;
152 writer.write_all(encoded)?;
153
154 all_idx_entries.push(TreeIdxEntry {
155 hash,
156 offset,
157 size: data_len,
158 });
159 offset += 16 + 8 + data_len;
160 }
161
162 writer.flush()?;
163 }
164
165 let total_count = all_idx_entries.len() as u32;
167 dat_tmp.seek(SeekFrom::Start(0))?;
168 dat_tmp.write_all(TREE_PACK_MAGIC)?;
169 dat_tmp.write_all(&total_count.to_le_bytes())?;
170 dat_tmp.flush()?;
171
172 dat_tmp
174 .persist(&dat_path)
175 .map_err(|e| ChkpttError::Other(e.error.to_string()))?;
176
177 all_idx_entries.sort_unstable_by(|a, b| a.hash.cmp(&b.hash));
179 let mut idx_buf: Vec<u8> = Vec::with_capacity(all_idx_entries.len() * TREE_IDX_ENTRY_SIZE);
180 for entry in &all_idx_entries {
181 idx_buf.extend_from_slice(&entry.hash);
182 idx_buf.extend_from_slice(&entry.offset.to_le_bytes());
183 idx_buf.extend_from_slice(&entry.size.to_le_bytes());
184 }
185 let idx_tmp_path = idx_path.with_extension("idx.tmp");
186 std::fs::write(&idx_tmp_path, &idx_buf)?;
187 std::fs::rename(&idx_tmp_path, &idx_path)?;
188
189 Ok(())
190 }
191
192 pub fn read(&self, hash_hex: &str) -> Result<Vec<TreeEntry>> {
194 if let Some(data) = self
195 .read_from_pack(hash_hex)
196 .or_else(|| self.read_from_current_pack_files(hash_hex))
197 {
198 let entries: Vec<TreeEntry> = bitcode::decode(&data)?;
199 return Ok(entries);
200 }
201
202 Err(ChkpttError::ObjectNotFound(hash_hex.to_string()))
203 }
204
205 fn read_from_pack(&self, hash_hex: &str) -> Option<Vec<u8>> {
207 let idx = self.pack_idx.as_ref()?;
208 let dat = self.pack_dat.as_ref()?;
209 Self::read_from_pack_bytes(hash_hex, dat, idx, self.pack_entry_count)
210 }
211
212 fn read_from_current_pack_files(&self, hash_hex: &str) -> Option<Vec<u8>> {
213 let dat = std::fs::read(self.base_dir.join("trees.dat")).ok()?;
214 let idx = std::fs::read(self.base_dir.join("trees.idx")).ok()?;
215 let entry_count = idx.len() / TREE_IDX_ENTRY_SIZE;
216 Self::read_from_pack_bytes(hash_hex, &dat, &idx, entry_count)
217 }
218
219 fn read_from_pack_bytes(
220 hash_hex: &str,
221 dat: &[u8],
222 idx: &[u8],
223 entry_count: usize,
224 ) -> Option<Vec<u8>> {
225 let hash_bytes = hex_to_bytes(hash_hex).ok()?;
226
227 let mut lo = 0usize;
229 let mut hi = entry_count;
230 while lo < hi {
231 let mid = lo + (hi - lo) / 2;
232 let pos = mid * TREE_IDX_ENTRY_SIZE;
233 let mid_hash = &idx[pos..pos + 16];
234 match mid_hash.cmp(&hash_bytes) {
235 std::cmp::Ordering::Equal => {
236 let offset = u64::from_le_bytes(idx[pos + 16..pos + 24].try_into().unwrap());
237 let size = u64::from_le_bytes(idx[pos + 24..pos + 32].try_into().unwrap());
238 let data_start = offset as usize + 16 + 8;
239 let data_end = data_start + size as usize;
240 if data_end > dat.len() {
241 return None;
242 }
243 return Some(dat[data_start..data_end].to_vec());
244 }
245 std::cmp::Ordering::Less => lo = mid + 1,
246 std::cmp::Ordering::Greater => hi = mid,
247 }
248 }
249 None
250 }
251}