1use std::fmt;
7
8pub const PAGE_FILE_MAGIC: [u8; 4] = [0x52, 0x44, 0x44, 0x42];
10
11pub const PAGE_FILE_VERSION: u32 = 0x0001_0001;
16
17pub const PAGED_PAGE_SIZE: usize = 16_384;
19
20pub const PAGED_PAGE_HEADER_SIZE: usize = 32;
22
23pub const PAGED_CELL_POINTER_SIZE: usize = 2;
24pub const PAGED_CELL_HEADER_SIZE: usize = 6;
25
26#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
28pub struct PagedPageHeader {
29 pub page_type: u8,
30 pub flags: u8,
31 pub cell_count: u16,
32 pub free_start: u16,
33 pub free_end: u16,
34 pub page_id: u32,
35 pub parent_id: u32,
36 pub right_child: u32,
37 pub lsn: u64,
38 pub checksum: u32,
39}
40
41pub fn encode_paged_page_header(header: &PagedPageHeader) -> [u8; PAGED_PAGE_HEADER_SIZE] {
42 let mut buf = [0u8; PAGED_PAGE_HEADER_SIZE];
43 buf[0] = header.page_type;
44 buf[1] = header.flags;
45 buf[2..4].copy_from_slice(&header.cell_count.to_le_bytes());
46 buf[4..6].copy_from_slice(&header.free_start.to_le_bytes());
47 buf[6..8].copy_from_slice(&header.free_end.to_le_bytes());
48 buf[8..12].copy_from_slice(&header.page_id.to_le_bytes());
49 buf[12..16].copy_from_slice(&header.parent_id.to_le_bytes());
50 buf[16..20].copy_from_slice(&header.right_child.to_le_bytes());
51 buf[20..28].copy_from_slice(&header.lsn.to_le_bytes());
52 buf[28..32].copy_from_slice(&header.checksum.to_le_bytes());
53 buf
54}
55
56pub fn decode_paged_page_header(buf: &[u8; PAGED_PAGE_HEADER_SIZE]) -> PagedPageHeader {
57 PagedPageHeader {
58 page_type: buf[0],
59 flags: buf[1],
60 cell_count: u16::from_le_bytes([buf[2], buf[3]]),
61 free_start: u16::from_le_bytes([buf[4], buf[5]]),
62 free_end: u16::from_le_bytes([buf[6], buf[7]]),
63 page_id: u32::from_le_bytes([buf[8], buf[9], buf[10], buf[11]]),
64 parent_id: u32::from_le_bytes([buf[12], buf[13], buf[14], buf[15]]),
65 right_child: u32::from_le_bytes([buf[16], buf[17], buf[18], buf[19]]),
66 lsn: u64::from_le_bytes([
67 buf[20], buf[21], buf[22], buf[23], buf[24], buf[25], buf[26], buf[27],
68 ]),
69 checksum: u32::from_le_bytes([buf[28], buf[29], buf[30], buf[31]]),
70 }
71}
72
73pub fn paged_page_type(page: &[u8; PAGED_PAGE_SIZE]) -> u8 {
74 page[0]
75}
76
77pub fn paged_page_id(page: &[u8; PAGED_PAGE_SIZE]) -> u32 {
78 read_u32(page, 8).expect("paged page has header")
79}
80
81pub fn paged_page_lsn(page: &[u8; PAGED_PAGE_SIZE]) -> u64 {
82 read_u64(page, 20).expect("paged page has header")
83}
84
85pub fn set_paged_page_lsn(page: &mut [u8; PAGED_PAGE_SIZE], lsn: u64) {
86 write_u64(page, 20, lsn).expect("paged page has header");
87}
88
89pub fn paged_page_cell_count(page: &[u8; PAGED_PAGE_SIZE]) -> u16 {
90 read_u16(page, 2).expect("paged page has header")
91}
92
93pub fn set_paged_page_cell_count(page: &mut [u8; PAGED_PAGE_SIZE], count: u16) {
94 write_u16(page, 2, count).expect("paged page has header");
95}
96
97pub fn paged_page_parent_id(page: &[u8; PAGED_PAGE_SIZE]) -> u32 {
98 read_u32(page, 12).expect("paged page has header")
99}
100
101pub fn set_paged_page_parent_id(page: &mut [u8; PAGED_PAGE_SIZE], parent_id: u32) {
102 write_u32(page, 12, parent_id).expect("paged page has header");
103}
104
105pub fn paged_page_right_child(page: &[u8; PAGED_PAGE_SIZE]) -> u32 {
106 read_u32(page, 16).expect("paged page has header")
107}
108
109pub fn set_paged_page_right_child(page: &mut [u8; PAGED_PAGE_SIZE], child_id: u32) {
110 write_u32(page, 16, child_id).expect("paged page has header");
111}
112
113pub fn paged_page_free_start(page: &[u8; PAGED_PAGE_SIZE]) -> u16 {
114 read_u16(page, 4).expect("paged page has header")
115}
116
117pub fn set_paged_page_free_start(page: &mut [u8; PAGED_PAGE_SIZE], offset: u16) {
118 write_u16(page, 4, offset).expect("paged page has header");
119}
120
121pub fn paged_page_free_end(page: &[u8; PAGED_PAGE_SIZE]) -> u16 {
122 read_u16(page, 6).expect("paged page has header")
123}
124
125pub fn set_paged_page_free_end(page: &mut [u8; PAGED_PAGE_SIZE], offset: u16) {
126 write_u16(page, 6, offset).expect("paged page has header");
127}
128
129pub fn paged_page_checksum(page: &[u8; PAGED_PAGE_SIZE]) -> u32 {
130 read_u32(page, 28).expect("paged page has header")
131}
132
133pub fn clear_paged_page_checksum(page: &mut [u8; PAGED_PAGE_SIZE]) {
134 write_u32(page, 28, 0).expect("paged page has header");
135}
136
137pub fn set_paged_page_checksum(page: &mut [u8; PAGED_PAGE_SIZE], checksum: u32) {
138 write_u32(page, 28, checksum).expect("paged page has header");
139}
140
141pub fn paged_cell_pointer_offset(index: usize) -> Option<usize> {
142 let offset = PAGED_PAGE_HEADER_SIZE.checked_add(index.checked_mul(PAGED_CELL_POINTER_SIZE)?)?;
143 (offset + PAGED_CELL_POINTER_SIZE <= PAGED_PAGE_SIZE).then_some(offset)
144}
145
146pub fn paged_cell_pointer(page: &[u8; PAGED_PAGE_SIZE], index: usize) -> Option<u16> {
147 read_u16(page, paged_cell_pointer_offset(index)?).ok()
148}
149
150pub fn set_paged_cell_pointer(
151 page: &mut [u8; PAGED_PAGE_SIZE],
152 index: usize,
153 pointer: u16,
154) -> bool {
155 let Some(offset) = paged_cell_pointer_offset(index) else {
156 return false;
157 };
158 if !paged_cell_pointer_is_valid(pointer) {
159 return false;
160 }
161 write_u16(page, offset, pointer).is_ok()
162}
163
164pub fn paged_cell_pointer_is_valid(pointer: u16) -> bool {
165 let pointer = pointer as usize;
166 (PAGED_PAGE_HEADER_SIZE..PAGED_PAGE_SIZE).contains(&pointer)
167}
168
169pub fn paged_cell_len(key_len: usize, value_len: usize) -> Option<usize> {
170 PAGED_CELL_HEADER_SIZE
171 .checked_add(key_len)?
172 .checked_add(value_len)
173}
174
175pub fn paged_cell_total_len(page: &[u8; PAGED_PAGE_SIZE], pointer: u16) -> Option<usize> {
176 let pointer = pointer as usize;
177 if pointer + PAGED_CELL_HEADER_SIZE > PAGED_PAGE_SIZE {
178 return None;
179 }
180 let key_len = read_u16(page, pointer).ok()? as usize;
181 let value_len = read_u32(page, pointer + 2).ok()? as usize;
182 let total_len = paged_cell_len(key_len, value_len)?;
183 (pointer + total_len <= PAGED_PAGE_SIZE).then_some(total_len)
184}
185
186pub fn paged_cell_bytes(page: &[u8; PAGED_PAGE_SIZE], pointer: u16) -> Option<&[u8]> {
187 let total_len = paged_cell_total_len(page, pointer)?;
188 let pointer = pointer as usize;
189 Some(&page[pointer..pointer + total_len])
190}
191
192pub fn paged_cell_key_value(cell: &[u8]) -> Option<(&[u8], &[u8])> {
193 if cell.len() < PAGED_CELL_HEADER_SIZE {
194 return None;
195 }
196 let key_len = u16::from_le_bytes(cell[0..2].try_into().ok()?) as usize;
197 let value_len = u32::from_le_bytes(cell[2..6].try_into().ok()?) as usize;
198 let total_len = paged_cell_len(key_len, value_len)?;
199 if total_len > cell.len() {
200 return None;
201 }
202 let key_start = PAGED_CELL_HEADER_SIZE;
203 let value_start = key_start + key_len;
204 Some((
205 &cell[key_start..value_start],
206 &cell[value_start..value_start + value_len],
207 ))
208}
209
210pub fn write_paged_cell(
211 page: &mut [u8; PAGED_PAGE_SIZE],
212 offset: u16,
213 key: &[u8],
214 value: &[u8],
215) -> bool {
216 let Ok(key_len) = u16::try_from(key.len()) else {
217 return false;
218 };
219 let Ok(value_len) = u32::try_from(value.len()) else {
220 return false;
221 };
222 let Some(total_len) = paged_cell_len(key.len(), value.len()) else {
223 return false;
224 };
225 let offset = offset as usize;
226 if offset + total_len > PAGED_PAGE_SIZE {
227 return false;
228 }
229
230 page[offset..offset + 2].copy_from_slice(&key_len.to_le_bytes());
231 page[offset + 2..offset + 6].copy_from_slice(&value_len.to_le_bytes());
232 page[offset + PAGED_CELL_HEADER_SIZE..offset + PAGED_CELL_HEADER_SIZE + key.len()]
233 .copy_from_slice(key);
234 page[offset + PAGED_CELL_HEADER_SIZE + key.len()..offset + total_len].copy_from_slice(value);
235 true
236}
237
238pub const PAGED_ENCRYPTION_MARKER: [u8; 4] = *b"RDBE";
240
241pub const PAGED_ENCRYPTION_MARKER_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 32;
247
248pub const PAGED_ENCRYPTION_SALT_SIZE: usize = 32;
249pub const PAGED_ENCRYPTION_KEY_CHECK_PLAINTEXT_SIZE: usize = 32;
250pub const PAGED_ENCRYPTION_KEY_CHECK_BLOB_SIZE: usize = 60;
251pub const PAGED_ENCRYPTION_HEADER_SIZE: usize =
252 PAGED_ENCRYPTION_SALT_SIZE + PAGED_ENCRYPTION_KEY_CHECK_BLOB_SIZE;
253
254#[derive(Debug, Clone, PartialEq, Eq)]
255pub struct PagedEncryptionHeader {
256 pub salt: [u8; PAGED_ENCRYPTION_SALT_SIZE],
257 pub key_check: Vec<u8>,
258}
259
260pub fn encode_paged_encryption_header(header: &PagedEncryptionHeader) -> Vec<u8> {
261 let mut out = Vec::with_capacity(PAGED_ENCRYPTION_HEADER_SIZE);
262 out.extend_from_slice(&header.salt);
263 out.extend_from_slice(&header.key_check);
264 out
265}
266
267pub fn decode_paged_encryption_header(
268 data: &[u8],
269) -> Result<PagedEncryptionHeader, DatabaseHeaderError> {
270 ensure_len(data, PAGED_ENCRYPTION_HEADER_SIZE)?;
271 let mut salt = [0u8; PAGED_ENCRYPTION_SALT_SIZE];
272 salt.copy_from_slice(&data[..PAGED_ENCRYPTION_SALT_SIZE]);
273 let key_check = data[PAGED_ENCRYPTION_SALT_SIZE..PAGED_ENCRYPTION_HEADER_SIZE].to_vec();
274 Ok(PagedEncryptionHeader { salt, key_check })
275}
276
277pub fn paged_encryption_marker_present(page: &[u8]) -> bool {
278 page.get(PAGED_ENCRYPTION_MARKER_OFFSET..PAGED_ENCRYPTION_MARKER_OFFSET + 4)
279 == Some(&PAGED_ENCRYPTION_MARKER)
280}
281
282pub fn paged_encryption_header_bytes(page: &[u8]) -> Option<&[u8]> {
283 let start = PAGED_ENCRYPTION_MARKER_OFFSET + PAGED_ENCRYPTION_MARKER.len();
284 page.get(start..start + PAGED_ENCRYPTION_HEADER_SIZE)
285}
286
287pub fn write_paged_encryption_marker_and_header(
288 page: &mut [u8],
289 header_bytes: &[u8],
290) -> Result<(), DatabaseHeaderError> {
291 let marker_end = PAGED_ENCRYPTION_MARKER_OFFSET + PAGED_ENCRYPTION_MARKER.len();
292 let header_end = marker_end + header_bytes.len();
293 ensure_len(page, header_end)?;
294 page[PAGED_ENCRYPTION_MARKER_OFFSET..marker_end].copy_from_slice(&PAGED_ENCRYPTION_MARKER);
295 page[marker_end..header_end].copy_from_slice(header_bytes);
296 Ok(())
297}
298
299const DB_MAGIC_OFFSET: usize = PAGED_PAGE_HEADER_SIZE;
300const DB_VERSION_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 4;
301const DB_PAGE_SIZE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 8;
302const DB_PAGE_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 12;
303const DB_FREELIST_HEAD_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 16;
304const DB_SCHEMA_VERSION_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 20;
305const DB_CHECKPOINT_LSN_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 24;
306const DB_PHYSICAL_FORMAT_VERSION_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 32;
307const DB_PHYSICAL_SEQUENCE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 36;
308const DB_MANIFEST_ROOT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 44;
309const DB_MANIFEST_OLDEST_ROOT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 52;
310const DB_FREE_SET_ROOT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 60;
311const DB_MANIFEST_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 68;
312const DB_MANIFEST_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 72;
313const DB_COLLECTION_ROOTS_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 80;
314const DB_COLLECTION_ROOTS_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 84;
315const DB_COLLECTION_ROOT_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 92;
316const DB_SNAPSHOT_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 96;
317const DB_INDEX_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 100;
318const DB_CATALOG_COLLECTION_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 104;
319const DB_CATALOG_TOTAL_ENTITIES_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 108;
320const DB_EXPORT_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 116;
321const DB_GRAPH_PROJECTION_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 120;
322const DB_ANALYTICS_JOB_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 124;
323const DB_MANIFEST_EVENT_COUNT_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 128;
324const DB_REGISTRY_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 132;
325const DB_REGISTRY_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 136;
326const DB_RECOVERY_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 144;
327const DB_RECOVERY_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 148;
328const DB_CATALOG_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 156;
329const DB_CATALOG_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 160;
330const DB_METADATA_STATE_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 168;
331const DB_METADATA_STATE_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 172;
332const DB_VECTOR_ARTIFACT_PAGE_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 180;
333const DB_VECTOR_ARTIFACT_CHECKSUM_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 184;
334const DB_CHECKPOINT_IN_PROGRESS_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 192;
335const DB_CHECKPOINT_TARGET_LSN_OFFSET: usize = PAGED_PAGE_HEADER_SIZE + 193;
336const DB_HEADER_MIN_LEN: usize = DB_CHECKPOINT_TARGET_LSN_OFFSET + 8;
337
338pub const DWB_MAGIC: [u8; 4] = [0x52, 0x44, 0x44, 0x57];
340pub const PAGED_DWB_HEADER_SIZE: usize = 12;
341pub const PAGED_DWB_ENTRY_HEADER_SIZE: usize = 4;
342pub const PAGED_DWB_ENTRY_SIZE: usize = PAGED_DWB_ENTRY_HEADER_SIZE + PAGED_PAGE_SIZE;
343
344#[derive(Debug, Clone, PartialEq, Eq)]
345pub struct PagedDwbEntry {
346 pub page_id: u32,
347 pub page: [u8; PAGED_PAGE_SIZE],
348}
349
350#[derive(Debug, Clone, PartialEq, Eq)]
351pub enum PagedDwbFrameError {
352 ShortHeader { got: usize },
353 InvalidMagic,
354 IncompleteFrame { expected: usize, got: usize },
355 ChecksumMismatch { expected: u32, actual: u32 },
356}
357
358impl fmt::Display for PagedDwbFrameError {
359 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
360 match self {
361 Self::ShortHeader { got } => write!(f, "DWB frame too short: got {got} bytes"),
362 Self::InvalidMagic => write!(f, "invalid DWB frame magic"),
363 Self::IncompleteFrame { expected, got } => {
364 write!(
365 f,
366 "incomplete DWB frame: expected {expected} bytes, got {got}"
367 )
368 }
369 Self::ChecksumMismatch { expected, actual } => write!(
370 f,
371 "DWB frame checksum mismatch: expected {expected}, actual {actual}"
372 ),
373 }
374 }
375}
376
377impl std::error::Error for PagedDwbFrameError {}
378
379pub fn encode_paged_dwb_frame<'a>(
380 pages: impl IntoIterator<Item = (u32, &'a [u8; PAGED_PAGE_SIZE])>,
381) -> Vec<u8> {
382 let pages: Vec<_> = pages.into_iter().collect();
383 let total = PAGED_DWB_HEADER_SIZE + pages.len() * PAGED_DWB_ENTRY_SIZE;
384 let mut out = Vec::with_capacity(total);
385
386 out.extend_from_slice(&DWB_MAGIC);
387 out.extend_from_slice(&(pages.len() as u32).to_le_bytes());
388 out.extend_from_slice(&[0u8; 4]);
389
390 for (page_id, page) in pages {
391 out.extend_from_slice(&page_id.to_le_bytes());
392 out.extend_from_slice(page);
393 }
394
395 let checksum = crc32(&out[PAGED_DWB_HEADER_SIZE..]);
396 out[8..12].copy_from_slice(&checksum.to_le_bytes());
397 out
398}
399
400pub fn decode_paged_dwb_frame(bytes: &[u8]) -> Result<Vec<PagedDwbEntry>, PagedDwbFrameError> {
401 if bytes.len() < PAGED_DWB_HEADER_SIZE {
402 return Err(PagedDwbFrameError::ShortHeader { got: bytes.len() });
403 }
404 if bytes[0..4] != DWB_MAGIC {
405 return Err(PagedDwbFrameError::InvalidMagic);
406 }
407
408 let count = u32::from_le_bytes(bytes[4..8].try_into().expect("len checked")) as usize;
409 let stored_checksum = u32::from_le_bytes(bytes[8..12].try_into().expect("len checked"));
410 let expected_len = PAGED_DWB_HEADER_SIZE + count * PAGED_DWB_ENTRY_SIZE;
411 if bytes.len() < expected_len {
412 return Err(PagedDwbFrameError::IncompleteFrame {
413 expected: expected_len,
414 got: bytes.len(),
415 });
416 }
417
418 let actual_checksum = crc32(&bytes[PAGED_DWB_HEADER_SIZE..expected_len]);
419 if actual_checksum != stored_checksum {
420 return Err(PagedDwbFrameError::ChecksumMismatch {
421 expected: stored_checksum,
422 actual: actual_checksum,
423 });
424 }
425
426 let mut offset = PAGED_DWB_HEADER_SIZE;
427 let mut entries = Vec::with_capacity(count);
428 for _ in 0..count {
429 let page_id =
430 u32::from_le_bytes(bytes[offset..offset + 4].try_into().expect("len checked"));
431 offset += PAGED_DWB_ENTRY_HEADER_SIZE;
432 let mut page = [0u8; PAGED_PAGE_SIZE];
433 page.copy_from_slice(&bytes[offset..offset + PAGED_PAGE_SIZE]);
434 offset += PAGED_PAGE_SIZE;
435 entries.push(PagedDwbEntry { page_id, page });
436 }
437 Ok(entries)
438}
439
440fn crc32(data: &[u8]) -> u32 {
441 crc32fast::hash(data)
442}
443
444pub const COLUMN_BLOCK_MAGIC: [u8; 4] = *b"RDCC";
446
447pub const COLUMN_BLOCK_VERSION_V1: u16 = 1;
449
450pub const BLOOM_SEGMENT_V2_MAGIC: u8 = 0xC0;
452
453pub const VECTOR_BTREE_FORMAT_VERSION_V1: u16 = 1;
455
456pub const VECTOR_BTREE_FORMAT_VERSION_V2: u16 = 2;
458
459pub const VECTOR_BTREE_FORMAT_VERSION: u16 = VECTOR_BTREE_FORMAT_VERSION_V2;
461
462#[derive(Debug, Clone, PartialEq, Eq)]
464pub struct DatabaseHeader {
465 pub version: u32,
466 pub page_size: u32,
467 pub page_count: u32,
468 pub freelist_head: u32,
469 pub schema_version: u32,
470 pub checkpoint_lsn: u64,
471 pub checkpoint_in_progress: bool,
472 pub checkpoint_target_lsn: u64,
473 pub physical: PhysicalFileHeader,
474}
475
476impl Default for DatabaseHeader {
477 fn default() -> Self {
478 Self {
479 version: PAGE_FILE_VERSION,
480 page_size: PAGED_PAGE_SIZE as u32,
481 page_count: 1,
482 freelist_head: 0,
483 schema_version: 0,
484 checkpoint_lsn: 0,
485 checkpoint_in_progress: false,
486 checkpoint_target_lsn: 0,
487 physical: PhysicalFileHeader::default(),
488 }
489 }
490}
491
492#[derive(Debug, Clone, Copy, Default, PartialEq, Eq)]
497pub struct PhysicalFileHeader {
498 pub format_version: u32,
499 pub sequence: u64,
500 pub manifest_oldest_root: u64,
501 pub manifest_root: u64,
502 pub free_set_root: u64,
503 pub manifest_page: u32,
504 pub manifest_checksum: u64,
505 pub collection_roots_page: u32,
506 pub collection_roots_checksum: u64,
507 pub collection_root_count: u32,
508 pub snapshot_count: u32,
509 pub index_count: u32,
510 pub catalog_collection_count: u32,
511 pub catalog_total_entities: u64,
512 pub export_count: u32,
513 pub graph_projection_count: u32,
514 pub analytics_job_count: u32,
515 pub manifest_event_count: u32,
516 pub registry_page: u32,
517 pub registry_checksum: u64,
518 pub recovery_page: u32,
519 pub recovery_checksum: u64,
520 pub catalog_page: u32,
521 pub catalog_checksum: u64,
522 pub metadata_state_page: u32,
523 pub metadata_state_checksum: u64,
524 pub vector_artifact_page: u32,
525 pub vector_artifact_checksum: u64,
526}
527
528#[derive(Debug, Clone, PartialEq, Eq)]
529pub enum DatabaseHeaderError {
530 ShortPage { need: usize, got: usize },
531 InvalidMagic,
532 UnsupportedPageSize(u32),
533 UnsupportedDatabaseVersion { file_version: u32, supported: u32 },
534}
535
536impl fmt::Display for DatabaseHeaderError {
537 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
538 match self {
539 Self::ShortPage { need, got } => {
540 write!(f, "database header page too short: need {need} bytes, got {got}")
541 }
542 Self::InvalidMagic => write!(f, "invalid database header magic"),
543 Self::UnsupportedPageSize(size) => write!(f, "Unsupported page size: {size}"),
544 Self::UnsupportedDatabaseVersion {
545 file_version,
546 supported,
547 } => write!(
548 f,
549 "Unsupported database version: file version {file_version} is newer than supported {supported}"
550 ),
551 }
552 }
553}
554
555impl std::error::Error for DatabaseHeaderError {}
556
557pub fn database_header_magic_matches(page: &[u8]) -> bool {
558 page.get(DB_MAGIC_OFFSET..DB_MAGIC_OFFSET + PAGE_FILE_MAGIC.len()) == Some(&PAGE_FILE_MAGIC)
559}
560
561pub fn init_database_header_page(
562 page: &mut [u8],
563 page_count: u32,
564) -> Result<(), DatabaseHeaderError> {
565 encode_database_header(
566 page,
567 &DatabaseHeader {
568 page_count,
569 ..DatabaseHeader::default()
570 },
571 )
572}
573
574pub fn database_header_page_count(page: &[u8]) -> Result<u32, DatabaseHeaderError> {
575 read_u32(page, DB_PAGE_COUNT_OFFSET)
576}
577
578pub fn set_database_header_version(
579 page: &mut [u8],
580 version: u32,
581) -> Result<(), DatabaseHeaderError> {
582 write_u32(page, DB_VERSION_OFFSET, version)
583}
584
585pub fn set_database_header_page_count(
586 page: &mut [u8],
587 page_count: u32,
588) -> Result<(), DatabaseHeaderError> {
589 write_u32(page, DB_PAGE_COUNT_OFFSET, page_count)
590}
591
592pub fn database_header_freelist_head(page: &[u8]) -> Result<u32, DatabaseHeaderError> {
593 read_u32(page, DB_FREELIST_HEAD_OFFSET)
594}
595
596pub fn set_database_header_freelist_head(
597 page: &mut [u8],
598 page_id: u32,
599) -> Result<(), DatabaseHeaderError> {
600 write_u32(page, DB_FREELIST_HEAD_OFFSET, page_id)
601}
602
603pub fn database_header_page_size(page: &[u8]) -> Result<u32, DatabaseHeaderError> {
604 read_u32(page, DB_PAGE_SIZE_OFFSET)
605}
606
607pub fn decode_database_header(page: &[u8]) -> Result<DatabaseHeader, DatabaseHeaderError> {
608 ensure_len(page, DB_HEADER_MIN_LEN)?;
609 if !database_header_magic_matches(page) {
610 return Err(DatabaseHeaderError::InvalidMagic);
611 }
612
613 let version = read_u32(page, DB_VERSION_OFFSET)?;
614 let page_size = read_u32(page, DB_PAGE_SIZE_OFFSET)?;
615 if page_size != PAGED_PAGE_SIZE as u32 {
616 return Err(DatabaseHeaderError::UnsupportedPageSize(page_size));
617 }
618 if version > PAGE_FILE_VERSION {
619 return Err(DatabaseHeaderError::UnsupportedDatabaseVersion {
620 file_version: version,
621 supported: PAGE_FILE_VERSION,
622 });
623 }
624
625 Ok(DatabaseHeader {
626 version,
627 page_size,
628 page_count: read_u32(page, DB_PAGE_COUNT_OFFSET)?,
629 freelist_head: read_u32(page, DB_FREELIST_HEAD_OFFSET)?,
630 schema_version: read_u32(page, DB_SCHEMA_VERSION_OFFSET)?,
631 checkpoint_lsn: read_u64(page, DB_CHECKPOINT_LSN_OFFSET)?,
632 checkpoint_in_progress: page[DB_CHECKPOINT_IN_PROGRESS_OFFSET] != 0,
633 checkpoint_target_lsn: read_u64(page, DB_CHECKPOINT_TARGET_LSN_OFFSET)?,
634 physical: PhysicalFileHeader {
635 format_version: read_u32(page, DB_PHYSICAL_FORMAT_VERSION_OFFSET)?,
636 sequence: read_u64(page, DB_PHYSICAL_SEQUENCE_OFFSET)?,
637 manifest_oldest_root: read_u64(page, DB_MANIFEST_OLDEST_ROOT_OFFSET)?,
638 manifest_root: read_u64(page, DB_MANIFEST_ROOT_OFFSET)?,
639 free_set_root: read_u64(page, DB_FREE_SET_ROOT_OFFSET)?,
640 manifest_page: read_u32(page, DB_MANIFEST_PAGE_OFFSET)?,
641 manifest_checksum: read_u64(page, DB_MANIFEST_CHECKSUM_OFFSET)?,
642 collection_roots_page: read_u32(page, DB_COLLECTION_ROOTS_PAGE_OFFSET)?,
643 collection_roots_checksum: read_u64(page, DB_COLLECTION_ROOTS_CHECKSUM_OFFSET)?,
644 collection_root_count: read_u32(page, DB_COLLECTION_ROOT_COUNT_OFFSET)?,
645 snapshot_count: read_u32(page, DB_SNAPSHOT_COUNT_OFFSET)?,
646 index_count: read_u32(page, DB_INDEX_COUNT_OFFSET)?,
647 catalog_collection_count: read_u32(page, DB_CATALOG_COLLECTION_COUNT_OFFSET)?,
648 catalog_total_entities: read_u64(page, DB_CATALOG_TOTAL_ENTITIES_OFFSET)?,
649 export_count: read_u32(page, DB_EXPORT_COUNT_OFFSET)?,
650 graph_projection_count: read_u32(page, DB_GRAPH_PROJECTION_COUNT_OFFSET)?,
651 analytics_job_count: read_u32(page, DB_ANALYTICS_JOB_COUNT_OFFSET)?,
652 manifest_event_count: read_u32(page, DB_MANIFEST_EVENT_COUNT_OFFSET)?,
653 registry_page: read_u32(page, DB_REGISTRY_PAGE_OFFSET)?,
654 registry_checksum: read_u64(page, DB_REGISTRY_CHECKSUM_OFFSET)?,
655 recovery_page: read_u32(page, DB_RECOVERY_PAGE_OFFSET)?,
656 recovery_checksum: read_u64(page, DB_RECOVERY_CHECKSUM_OFFSET)?,
657 catalog_page: read_u32(page, DB_CATALOG_PAGE_OFFSET)?,
658 catalog_checksum: read_u64(page, DB_CATALOG_CHECKSUM_OFFSET)?,
659 metadata_state_page: read_u32(page, DB_METADATA_STATE_PAGE_OFFSET)?,
660 metadata_state_checksum: read_u64(page, DB_METADATA_STATE_CHECKSUM_OFFSET)?,
661 vector_artifact_page: read_u32(page, DB_VECTOR_ARTIFACT_PAGE_OFFSET)?,
662 vector_artifact_checksum: read_u64(page, DB_VECTOR_ARTIFACT_CHECKSUM_OFFSET)?,
663 },
664 })
665}
666
667pub fn encode_database_header(
668 page: &mut [u8],
669 header: &DatabaseHeader,
670) -> Result<(), DatabaseHeaderError> {
671 ensure_len(page, DB_HEADER_MIN_LEN)?;
672 page[DB_MAGIC_OFFSET..DB_MAGIC_OFFSET + PAGE_FILE_MAGIC.len()]
673 .copy_from_slice(&PAGE_FILE_MAGIC);
674 write_u32(page, DB_VERSION_OFFSET, header.version)?;
675 write_u32(page, DB_PAGE_SIZE_OFFSET, header.page_size)?;
676 write_u32(page, DB_PAGE_COUNT_OFFSET, header.page_count)?;
677 write_u32(page, DB_FREELIST_HEAD_OFFSET, header.freelist_head)?;
678 write_u32(page, DB_SCHEMA_VERSION_OFFSET, header.schema_version)?;
679 write_u64(page, DB_CHECKPOINT_LSN_OFFSET, header.checkpoint_lsn)?;
680 write_u32(
681 page,
682 DB_PHYSICAL_FORMAT_VERSION_OFFSET,
683 header.physical.format_version,
684 )?;
685 write_u64(page, DB_PHYSICAL_SEQUENCE_OFFSET, header.physical.sequence)?;
686 write_u64(page, DB_MANIFEST_ROOT_OFFSET, header.physical.manifest_root)?;
687 write_u64(
688 page,
689 DB_MANIFEST_OLDEST_ROOT_OFFSET,
690 header.physical.manifest_oldest_root,
691 )?;
692 write_u64(page, DB_FREE_SET_ROOT_OFFSET, header.physical.free_set_root)?;
693 write_u32(page, DB_MANIFEST_PAGE_OFFSET, header.physical.manifest_page)?;
694 write_u64(
695 page,
696 DB_MANIFEST_CHECKSUM_OFFSET,
697 header.physical.manifest_checksum,
698 )?;
699 write_u32(
700 page,
701 DB_COLLECTION_ROOTS_PAGE_OFFSET,
702 header.physical.collection_roots_page,
703 )?;
704 write_u64(
705 page,
706 DB_COLLECTION_ROOTS_CHECKSUM_OFFSET,
707 header.physical.collection_roots_checksum,
708 )?;
709 write_u32(
710 page,
711 DB_COLLECTION_ROOT_COUNT_OFFSET,
712 header.physical.collection_root_count,
713 )?;
714 write_u32(
715 page,
716 DB_SNAPSHOT_COUNT_OFFSET,
717 header.physical.snapshot_count,
718 )?;
719 write_u32(page, DB_INDEX_COUNT_OFFSET, header.physical.index_count)?;
720 write_u32(
721 page,
722 DB_CATALOG_COLLECTION_COUNT_OFFSET,
723 header.physical.catalog_collection_count,
724 )?;
725 write_u64(
726 page,
727 DB_CATALOG_TOTAL_ENTITIES_OFFSET,
728 header.physical.catalog_total_entities,
729 )?;
730 write_u32(page, DB_EXPORT_COUNT_OFFSET, header.physical.export_count)?;
731 write_u32(
732 page,
733 DB_GRAPH_PROJECTION_COUNT_OFFSET,
734 header.physical.graph_projection_count,
735 )?;
736 write_u32(
737 page,
738 DB_ANALYTICS_JOB_COUNT_OFFSET,
739 header.physical.analytics_job_count,
740 )?;
741 write_u32(
742 page,
743 DB_MANIFEST_EVENT_COUNT_OFFSET,
744 header.physical.manifest_event_count,
745 )?;
746 write_u32(page, DB_REGISTRY_PAGE_OFFSET, header.physical.registry_page)?;
747 write_u64(
748 page,
749 DB_REGISTRY_CHECKSUM_OFFSET,
750 header.physical.registry_checksum,
751 )?;
752 write_u32(page, DB_RECOVERY_PAGE_OFFSET, header.physical.recovery_page)?;
753 write_u64(
754 page,
755 DB_RECOVERY_CHECKSUM_OFFSET,
756 header.physical.recovery_checksum,
757 )?;
758 write_u32(page, DB_CATALOG_PAGE_OFFSET, header.physical.catalog_page)?;
759 write_u64(
760 page,
761 DB_CATALOG_CHECKSUM_OFFSET,
762 header.physical.catalog_checksum,
763 )?;
764 write_u32(
765 page,
766 DB_METADATA_STATE_PAGE_OFFSET,
767 header.physical.metadata_state_page,
768 )?;
769 write_u64(
770 page,
771 DB_METADATA_STATE_CHECKSUM_OFFSET,
772 header.physical.metadata_state_checksum,
773 )?;
774 write_u32(
775 page,
776 DB_VECTOR_ARTIFACT_PAGE_OFFSET,
777 header.physical.vector_artifact_page,
778 )?;
779 write_u64(
780 page,
781 DB_VECTOR_ARTIFACT_CHECKSUM_OFFSET,
782 header.physical.vector_artifact_checksum,
783 )?;
784 page[DB_CHECKPOINT_IN_PROGRESS_OFFSET] = if header.checkpoint_in_progress { 1 } else { 0 };
785 write_u64(
786 page,
787 DB_CHECKPOINT_TARGET_LSN_OFFSET,
788 header.checkpoint_target_lsn,
789 )
790}
791
792pub const PAGED_SUPERBLOCK_SLOT_SIZE: usize = 4096;
811
812pub const PAGED_SUPERBLOCK_SLOT_COUNT: usize = 2;
814
815pub const PAGED_SUPERBLOCK_ZONE_SIZE: usize =
817 PAGED_SUPERBLOCK_SLOT_SIZE * PAGED_SUPERBLOCK_SLOT_COUNT;
818
819const PAGED_SUPERBLOCK_MAGIC: [u8; 8] = *b"RDBPSBK1";
820const PAGED_SUPERBLOCK_SLOT_VERSION: u32 = 1;
821
822pub const PAGED_SUPERBLOCK_TRAILER_OFFSET: usize = PAGED_SUPERBLOCK_SLOT_SIZE - 32;
827const PAGED_SUPERBLOCK_VERSION_OFFSET: usize = PAGED_SUPERBLOCK_TRAILER_OFFSET + 8;
828const PAGED_SUPERBLOCK_COPY_OFFSET: usize = PAGED_SUPERBLOCK_TRAILER_OFFSET + 12;
829const PAGED_SUPERBLOCK_GENERATION_OFFSET: usize = PAGED_SUPERBLOCK_TRAILER_OFFSET + 16;
830const PAGED_SUPERBLOCK_CRC_OFFSET: usize = PAGED_SUPERBLOCK_TRAILER_OFFSET + 24;
831
832#[derive(Debug, Clone, Copy, PartialEq, Eq)]
834pub struct PagedSuperblockSelection {
835 pub copy_index: usize,
836 pub generation: u64,
837}
838
839pub fn paged_superblock_slot_offset(copy_index: usize) -> u64 {
841 (copy_index % PAGED_SUPERBLOCK_SLOT_COUNT) as u64 * PAGED_SUPERBLOCK_SLOT_SIZE as u64
842}
843
844pub fn paged_superblock_next_copy(newest: Option<PagedSuperblockSelection>) -> usize {
847 match newest {
848 Some(selection) => (selection.copy_index + 1) % PAGED_SUPERBLOCK_SLOT_COUNT,
849 None => 0,
850 }
851}
852
853pub fn seal_paged_superblock_slot(
856 slot: &mut [u8],
857 copy_index: usize,
858 generation: u64,
859) -> Result<(), DatabaseHeaderError> {
860 ensure_len(slot, PAGED_SUPERBLOCK_SLOT_SIZE)?;
861 slot[PAGED_SUPERBLOCK_TRAILER_OFFSET..PAGED_SUPERBLOCK_TRAILER_OFFSET + 8]
862 .copy_from_slice(&PAGED_SUPERBLOCK_MAGIC);
863 write_u32(
864 slot,
865 PAGED_SUPERBLOCK_VERSION_OFFSET,
866 PAGED_SUPERBLOCK_SLOT_VERSION,
867 )?;
868 write_u32(
869 slot,
870 PAGED_SUPERBLOCK_COPY_OFFSET,
871 u32::try_from(copy_index).unwrap_or(u32::MAX),
872 )?;
873 write_u64(slot, PAGED_SUPERBLOCK_GENERATION_OFFSET, generation)?;
874 let crc = paged_superblock_crc(&slot[..PAGED_SUPERBLOCK_CRC_OFFSET]);
875 write_u32(slot, PAGED_SUPERBLOCK_CRC_OFFSET, crc)?;
876 write_u32(slot, PAGED_SUPERBLOCK_CRC_OFFSET + 4, 0)
878}
879
880pub fn paged_superblock_slot_generation(slot: &[u8], copy_index: usize) -> Option<u64> {
883 if slot.len() < PAGED_SUPERBLOCK_SLOT_SIZE {
884 return None;
885 }
886 if slot[PAGED_SUPERBLOCK_TRAILER_OFFSET..PAGED_SUPERBLOCK_TRAILER_OFFSET + 8]
887 != PAGED_SUPERBLOCK_MAGIC
888 {
889 return None;
890 }
891 if read_u32(slot, PAGED_SUPERBLOCK_VERSION_OFFSET).ok()? != PAGED_SUPERBLOCK_SLOT_VERSION {
892 return None;
893 }
894 if read_u32(slot, PAGED_SUPERBLOCK_COPY_OFFSET).ok()? != u32::try_from(copy_index).ok()? {
897 return None;
898 }
899 let stored = read_u32(slot, PAGED_SUPERBLOCK_CRC_OFFSET).ok()?;
900 if paged_superblock_crc(&slot[..PAGED_SUPERBLOCK_CRC_OFFSET]) != stored {
901 return None;
902 }
903 read_u64(slot, PAGED_SUPERBLOCK_GENERATION_OFFSET).ok()
904}
905
906pub fn select_paged_superblock(zone: &[u8]) -> Option<PagedSuperblockSelection> {
909 (0..PAGED_SUPERBLOCK_SLOT_COUNT)
910 .filter_map(|copy_index| {
911 let start = copy_index * PAGED_SUPERBLOCK_SLOT_SIZE;
912 let slot = zone.get(start..start + PAGED_SUPERBLOCK_SLOT_SIZE)?;
913 Some(PagedSuperblockSelection {
914 copy_index,
915 generation: paged_superblock_slot_generation(slot, copy_index)?,
916 })
917 })
918 .max_by_key(|selection| selection.generation)
919}
920
921fn paged_superblock_crc(bytes: &[u8]) -> u32 {
922 let mut hasher = crc32fast::Hasher::new();
923 hasher.update(bytes);
924 hasher.finalize()
925}
926
927fn ensure_len(bytes: &[u8], need: usize) -> Result<(), DatabaseHeaderError> {
928 if bytes.len() < need {
929 return Err(DatabaseHeaderError::ShortPage {
930 need,
931 got: bytes.len(),
932 });
933 }
934 Ok(())
935}
936
937fn read_u32(bytes: &[u8], offset: usize) -> Result<u32, DatabaseHeaderError> {
938 ensure_len(bytes, offset + 4)?;
939 Ok(u32::from_le_bytes(
940 bytes[offset..offset + 4].try_into().expect("len checked"),
941 ))
942}
943
944fn read_u16(bytes: &[u8], offset: usize) -> Result<u16, DatabaseHeaderError> {
945 ensure_len(bytes, offset + 2)?;
946 Ok(u16::from_le_bytes(
947 bytes[offset..offset + 2].try_into().expect("len checked"),
948 ))
949}
950
951fn read_u64(bytes: &[u8], offset: usize) -> Result<u64, DatabaseHeaderError> {
952 ensure_len(bytes, offset + 8)?;
953 Ok(u64::from_le_bytes(
954 bytes[offset..offset + 8].try_into().expect("len checked"),
955 ))
956}
957
958fn write_u32(bytes: &mut [u8], offset: usize, value: u32) -> Result<(), DatabaseHeaderError> {
959 ensure_len(bytes, offset + 4)?;
960 bytes[offset..offset + 4].copy_from_slice(&value.to_le_bytes());
961 Ok(())
962}
963
964fn write_u16(bytes: &mut [u8], offset: usize, value: u16) -> Result<(), DatabaseHeaderError> {
965 ensure_len(bytes, offset + 2)?;
966 bytes[offset..offset + 2].copy_from_slice(&value.to_le_bytes());
967 Ok(())
968}
969
970fn write_u64(bytes: &mut [u8], offset: usize, value: u64) -> Result<(), DatabaseHeaderError> {
971 ensure_len(bytes, offset + 8)?;
972 bytes[offset..offset + 8].copy_from_slice(&value.to_le_bytes());
973 Ok(())
974}
975
976#[cfg(test)]
977mod tests {
978 use super::*;
979
980 fn sealed_zone(gen_a: Option<u64>, gen_b: Option<u64>) -> Vec<u8> {
981 let mut zone = vec![0u8; PAGED_SUPERBLOCK_ZONE_SIZE];
982 for (copy_index, generation) in [gen_a, gen_b].into_iter().enumerate() {
983 let Some(generation) = generation else {
984 continue;
985 };
986 let start = copy_index * PAGED_SUPERBLOCK_SLOT_SIZE;
987 let slot = &mut zone[start..start + PAGED_SUPERBLOCK_SLOT_SIZE];
988 init_database_header_page(slot, 3).expect("init header");
989 seal_paged_superblock_slot(slot, copy_index, generation).expect("seal slot");
990 }
991 zone
992 }
993
994 #[test]
995 fn superblock_zone_fits_two_sector_aligned_slots_before_page_one() {
996 assert_eq!(PAGED_SUPERBLOCK_SLOT_SIZE, 4096);
997 assert_eq!(PAGED_SUPERBLOCK_ZONE_SIZE, 8192);
998 assert!(PAGED_SUPERBLOCK_ZONE_SIZE <= PAGED_PAGE_SIZE);
1001 assert!(DB_HEADER_MIN_LEN < PAGED_SUPERBLOCK_TRAILER_OFFSET);
1003 assert_eq!(paged_superblock_slot_offset(0), 0);
1004 assert_eq!(paged_superblock_slot_offset(1), 4096);
1005 }
1006
1007 #[test]
1008 fn sealed_slot_round_trips_generation_and_keeps_the_header_readable() {
1009 let mut slot = vec![0u8; PAGED_SUPERBLOCK_SLOT_SIZE];
1010 init_database_header_page(&mut slot, 7).expect("init header");
1011 seal_paged_superblock_slot(&mut slot, 1, 42).expect("seal slot");
1012
1013 assert_eq!(paged_superblock_slot_generation(&slot, 1), Some(42));
1014 assert_eq!(
1015 database_header_page_count(&slot).expect("database_header_page_count() should succeed"),
1016 7
1017 );
1018 }
1019
1020 #[test]
1021 fn selection_prefers_the_newest_valid_copy_and_survives_one_torn_slot() {
1022 let zone = sealed_zone(Some(4), Some(5));
1023 assert_eq!(
1024 select_paged_superblock(&zone),
1025 Some(PagedSuperblockSelection {
1026 copy_index: 1,
1027 generation: 5
1028 })
1029 );
1030
1031 let mut torn = zone.clone();
1033 torn[PAGED_SUPERBLOCK_SLOT_SIZE + 64] ^= 0xFF;
1034 assert_eq!(
1035 select_paged_superblock(&torn),
1036 Some(PagedSuperblockSelection {
1037 copy_index: 0,
1038 generation: 4
1039 })
1040 );
1041 }
1042
1043 #[test]
1044 fn a_misdirected_slot_copy_is_rejected_not_read_as_an_older_generation() {
1045 let zone = sealed_zone(Some(9), None);
1047 let (slot_zero, _) = zone.split_at(PAGED_SUPERBLOCK_SLOT_SIZE);
1048 assert_eq!(paged_superblock_slot_generation(slot_zero, 1), None);
1049 }
1050
1051 #[test]
1052 fn both_copies_invalid_yields_no_selection() {
1053 assert_eq!(
1054 select_paged_superblock(&vec![0u8; PAGED_SUPERBLOCK_ZONE_SIZE]),
1055 None
1056 );
1057 assert_eq!(select_paged_superblock(&[]), None);
1058
1059 let mut zone = sealed_zone(Some(1), Some(2));
1060 zone[64] ^= 0xFF;
1061 zone[PAGED_SUPERBLOCK_SLOT_SIZE + 64] ^= 0xFF;
1062 assert_eq!(select_paged_superblock(&zone), None);
1063 }
1064
1065 #[test]
1066 fn the_next_copy_to_write_is_always_the_stale_one() {
1067 assert_eq!(paged_superblock_next_copy(None), 0);
1068 assert_eq!(
1069 paged_superblock_next_copy(Some(PagedSuperblockSelection {
1070 copy_index: 0,
1071 generation: 3
1072 })),
1073 1
1074 );
1075 assert_eq!(
1076 paged_superblock_next_copy(Some(PagedSuperblockSelection {
1077 copy_index: 1,
1078 generation: 3
1079 })),
1080 0
1081 );
1082 }
1083
1084 #[test]
1085 fn bit_rot_anywhere_in_the_slot_payload_fails_the_crc() {
1086 let mut slot = vec![0u8; PAGED_SUPERBLOCK_SLOT_SIZE];
1087 init_database_header_page(&mut slot, 3).expect("init header");
1088 seal_paged_superblock_slot(&mut slot, 0, 1).expect("seal slot");
1089
1090 for offset in [
1091 0,
1092 40,
1093 DB_HEADER_MIN_LEN - 1,
1094 PAGED_SUPERBLOCK_SLOT_SIZE - 33,
1095 ] {
1096 let mut rotted = slot.clone();
1097 rotted[offset] ^= 0x01;
1098 assert_eq!(
1099 paged_superblock_slot_generation(&rotted, 0),
1100 None,
1101 "bit rot at offset {offset} must fail the slot CRC"
1102 );
1103 }
1104 }
1105
1106 #[test]
1107 fn paged_page_header_round_trips_raw_layout() {
1108 let header = PagedPageHeader {
1109 page_type: 13,
1110 flags: 0b1010_0001,
1111 cell_count: 42,
1112 free_start: 44,
1113 free_end: 16_000,
1114 page_id: 99,
1115 parent_id: 88,
1116 right_child: 77,
1117 lsn: 66,
1118 checksum: 55,
1119 };
1120
1121 let encoded = encode_paged_page_header(&header);
1122
1123 assert_eq!(encoded.len(), PAGED_PAGE_HEADER_SIZE);
1124 assert_eq!(decode_paged_page_header(&encoded), header);
1125 }
1126
1127 #[test]
1128 fn paged_page_header_accessors_update_expected_offsets() {
1129 let mut page = [0u8; PAGED_PAGE_SIZE];
1130 page[0] = 13;
1131
1132 set_paged_page_cell_count(&mut page, 2);
1133 set_paged_page_free_start(&mut page, 34);
1134 set_paged_page_free_end(&mut page, 4096);
1135 set_paged_page_parent_id(&mut page, 7);
1136 set_paged_page_right_child(&mut page, 8);
1137 set_paged_page_lsn(&mut page, 9);
1138 set_paged_page_checksum(&mut page, 10);
1139
1140 assert_eq!(paged_page_type(&page), 13);
1141 assert_eq!(paged_page_cell_count(&page), 2);
1142 assert_eq!(paged_page_free_start(&page), 34);
1143 assert_eq!(paged_page_free_end(&page), 4096);
1144 assert_eq!(paged_page_parent_id(&page), 7);
1145 assert_eq!(paged_page_right_child(&page), 8);
1146 assert_eq!(paged_page_lsn(&page), 9);
1147 assert_eq!(paged_page_checksum(&page), 10);
1148 clear_paged_page_checksum(&mut page);
1149 assert_eq!(paged_page_checksum(&page), 0);
1150 }
1151
1152 #[test]
1153 fn paged_cell_helpers_round_trip_pointer_and_payload() {
1154 let mut page = [0u8; PAGED_PAGE_SIZE];
1155 let pointer = (PAGED_PAGE_SIZE - 14) as u16;
1156
1157 assert!(write_paged_cell(&mut page, pointer, b"key", b"value"));
1158 assert!(set_paged_cell_pointer(&mut page, 0, pointer));
1159
1160 assert_eq!(paged_cell_pointer(&page, 0), Some(pointer));
1161 let cell = paged_cell_bytes(&page, pointer).expect("cell bytes");
1162 let (key, value) = paged_cell_key_value(cell).expect("key value");
1163
1164 assert_eq!(key, b"key");
1165 assert_eq!(value, b"value");
1166 assert_eq!(paged_cell_total_len(&page, pointer), Some(14));
1167 }
1168
1169 #[test]
1170 fn database_header_field_helpers_preserve_page_zero_offsets() {
1171 let mut page = vec![0u8; PAGED_PAGE_SIZE];
1172
1173 init_database_header_page(&mut page, 7).expect("init database header page");
1174 set_database_header_version(&mut page, PAGE_FILE_VERSION + 1).expect("set version");
1175 set_database_header_page_count(&mut page, 9).expect("set page count");
1176 set_database_header_freelist_head(&mut page, 4).expect("set freelist head");
1177
1178 assert!(database_header_magic_matches(&page));
1179 assert!(matches!(
1180 decode_database_header(&page),
1181 Err(DatabaseHeaderError::UnsupportedDatabaseVersion { .. })
1182 ));
1183 set_database_header_version(&mut page, PAGE_FILE_VERSION).expect("restore version");
1184 assert_eq!(
1185 database_header_page_size(&page).unwrap(),
1186 PAGED_PAGE_SIZE as u32
1187 );
1188 assert_eq!(database_header_page_count(&page).unwrap(), 9);
1189 assert_eq!(database_header_freelist_head(&page).unwrap(), 4);
1190 }
1191
1192 #[test]
1193 fn paged_dwb_frame_round_trips_entries_and_validates_checksum() {
1194 let mut page = [0u8; PAGED_PAGE_SIZE];
1195 page[0] = 7;
1196 let frame = encode_paged_dwb_frame([(42, &page)]);
1197
1198 let entries = decode_paged_dwb_frame(&frame).expect("decode DWB frame");
1199 assert_eq!(entries.len(), 1);
1200 assert_eq!(entries[0].page_id, 42);
1201 assert_eq!(entries[0].page, page);
1202
1203 let mut corrupted = frame;
1204 let last = corrupted.len() - 1;
1205 corrupted[last] ^= 0xFF;
1206 assert!(matches!(
1207 decode_paged_dwb_frame(&corrupted),
1208 Err(PagedDwbFrameError::ChecksumMismatch { .. })
1209 ));
1210 }
1211
1212 #[test]
1213 fn paged_encryption_header_round_trips_marker_and_raw_bytes() {
1214 let header = PagedEncryptionHeader {
1215 salt: [7u8; PAGED_ENCRYPTION_SALT_SIZE],
1216 key_check: vec![9u8; PAGED_ENCRYPTION_KEY_CHECK_BLOB_SIZE],
1217 };
1218 let mut page = vec![0u8; PAGED_PAGE_SIZE];
1219 let bytes = encode_paged_encryption_header(&header);
1220
1221 write_paged_encryption_marker_and_header(&mut page, &bytes)
1222 .expect("write encryption marker");
1223
1224 assert!(paged_encryption_marker_present(&page));
1225 let raw = paged_encryption_header_bytes(&page).expect("header bytes");
1226 assert_eq!(decode_paged_encryption_header(raw).unwrap(), header);
1227 }
1228
1229 #[test]
1230 fn database_header_round_trips_page_zero_contract() {
1231 let header = DatabaseHeader {
1232 version: PAGE_FILE_VERSION,
1233 page_size: PAGED_PAGE_SIZE as u32,
1234 page_count: 42,
1235 freelist_head: 7,
1236 schema_version: 3,
1237 checkpoint_lsn: 99,
1238 checkpoint_in_progress: true,
1239 checkpoint_target_lsn: 123,
1240 physical: PhysicalFileHeader {
1241 format_version: 11,
1242 sequence: 12,
1243 manifest_oldest_root: 13,
1244 manifest_root: 14,
1245 free_set_root: 15,
1246 manifest_page: 16,
1247 manifest_checksum: 17,
1248 collection_roots_page: 18,
1249 collection_roots_checksum: 19,
1250 collection_root_count: 20,
1251 snapshot_count: 21,
1252 index_count: 22,
1253 catalog_collection_count: 23,
1254 catalog_total_entities: 24,
1255 export_count: 25,
1256 graph_projection_count: 26,
1257 analytics_job_count: 27,
1258 manifest_event_count: 28,
1259 registry_page: 29,
1260 registry_checksum: 30,
1261 recovery_page: 31,
1262 recovery_checksum: 32,
1263 catalog_page: 33,
1264 catalog_checksum: 34,
1265 metadata_state_page: 35,
1266 metadata_state_checksum: 36,
1267 vector_artifact_page: 37,
1268 vector_artifact_checksum: 38,
1269 },
1270 };
1271 let mut page = vec![0u8; PAGED_PAGE_SIZE];
1272
1273 encode_database_header(&mut page, &header).expect("encode header");
1274
1275 assert!(database_header_magic_matches(&page));
1276 let decoded = decode_database_header(&page).expect("decode header");
1277 assert_eq!(decoded, header);
1278 }
1279
1280 #[test]
1281 fn database_header_rejects_newer_versions() {
1282 let mut page = vec![0u8; PAGED_PAGE_SIZE];
1283 let header = DatabaseHeader {
1284 version: PAGE_FILE_VERSION + 1,
1285 ..DatabaseHeader::default()
1286 };
1287 encode_database_header(&mut page, &header).expect("encode header");
1288
1289 assert!(matches!(
1290 decode_database_header(&page),
1291 Err(DatabaseHeaderError::UnsupportedDatabaseVersion { .. })
1292 ));
1293 }
1294}