rev_persistence.rs 12 KB

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  1. use crate::cache::{
  2. disk::{RevisionChangeset, RevisionDiskCache, SQLiteDocumentRevisionPersistence},
  3. memory::RevisionMemoryCacheDelegate,
  4. };
  5. use crate::disk::{RevisionRecord, RevisionState, SQLiteGridBlockRevisionPersistence};
  6. use crate::memory::RevisionMemoryCache;
  7. use crate::RevisionCompress;
  8. use flowy_database::ConnectionPool;
  9. use flowy_error::{internal_error, FlowyError, FlowyResult};
  10. use flowy_sync::entities::revision::{Revision, RevisionRange};
  11. use std::collections::VecDeque;
  12. use std::{borrow::Cow, sync::Arc};
  13. use tokio::sync::RwLock;
  14. use tokio::task::spawn_blocking;
  15. pub const REVISION_WRITE_INTERVAL_IN_MILLIS: u64 = 600;
  16. pub struct RevisionPersistence {
  17. user_id: String,
  18. object_id: String,
  19. disk_cache: Arc<dyn RevisionDiskCache<Error = FlowyError>>,
  20. memory_cache: Arc<RevisionMemoryCache>,
  21. sync_seq: RwLock<RevisionSyncSequence>,
  22. }
  23. impl RevisionPersistence {
  24. pub fn new<C>(user_id: &str, object_id: &str, disk_cache: C) -> RevisionPersistence
  25. where
  26. C: 'static + RevisionDiskCache<Error = FlowyError>,
  27. {
  28. let disk_cache = Arc::new(disk_cache) as Arc<dyn RevisionDiskCache<Error = FlowyError>>;
  29. Self::from_disk_cache(user_id, object_id, disk_cache)
  30. }
  31. pub fn from_disk_cache(
  32. user_id: &str,
  33. object_id: &str,
  34. disk_cache: Arc<dyn RevisionDiskCache<Error = FlowyError>>,
  35. ) -> RevisionPersistence {
  36. let object_id = object_id.to_owned();
  37. let user_id = user_id.to_owned();
  38. let sync_seq = RwLock::new(RevisionSyncSequence::new());
  39. let memory_cache = Arc::new(RevisionMemoryCache::new(&object_id, Arc::new(disk_cache.clone())));
  40. Self {
  41. user_id,
  42. object_id,
  43. disk_cache,
  44. memory_cache,
  45. sync_seq,
  46. }
  47. }
  48. /// Save the revision that comes from remote to disk.
  49. #[tracing::instrument(level = "trace", skip(self, revision), fields(rev_id, object_id=%self.object_id), err)]
  50. pub(crate) async fn add_ack_revision(&self, revision: &Revision) -> FlowyResult<()> {
  51. tracing::Span::current().record("rev_id", &revision.rev_id);
  52. self.add(revision.clone(), RevisionState::Ack, true).await
  53. }
  54. /// Append the revision that already existed in the local DB state to sync sequence
  55. #[tracing::instrument(level = "trace", skip(self), fields(rev_id, object_id=%self.object_id), err)]
  56. pub(crate) async fn sync_revision(&self, revision: &Revision) -> FlowyResult<()> {
  57. tracing::Span::current().record("rev_id", &revision.rev_id);
  58. self.add(revision.clone(), RevisionState::Sync, false).await?;
  59. self.sync_seq.write().await.add(revision.rev_id)?;
  60. Ok(())
  61. }
  62. /// Save the revision to disk and append it to the end of the sync sequence.
  63. #[tracing::instrument(level = "trace", skip_all, fields(rev_id, compact_range, object_id=%self.object_id), err)]
  64. pub(crate) async fn add_sync_revision<'a>(
  65. &'a self,
  66. revision: &'a Revision,
  67. rev_compress: &Arc<dyn RevisionCompress + 'a>,
  68. ) -> FlowyResult<i64> {
  69. let mut sync_seq_write_guard = self.sync_seq.write().await;
  70. let result = sync_seq_write_guard.compact();
  71. match result {
  72. None => {
  73. tracing::Span::current().record("rev_id", &revision.rev_id);
  74. self.add(revision.clone(), RevisionState::Sync, true).await?;
  75. sync_seq_write_guard.add(revision.rev_id)?;
  76. Ok(revision.rev_id)
  77. }
  78. Some((range, mut compact_seq)) => {
  79. tracing::Span::current().record("compact_range", &format!("{}", range).as_str());
  80. let mut revisions = self.revisions_in_range(&range).await?;
  81. if range.to_rev_ids().len() != revisions.len() {
  82. debug_assert_eq!(range.to_rev_ids().len(), revisions.len());
  83. }
  84. // append the new revision
  85. revisions.push(revision.clone());
  86. // compact multiple revisions into one
  87. let compact_revision = rev_compress.compress_revisions(&self.user_id, &self.object_id, revisions)?;
  88. let rev_id = compact_revision.rev_id;
  89. tracing::Span::current().record("rev_id", &rev_id);
  90. // insert new revision
  91. compact_seq.push_back(rev_id);
  92. // replace the revisions in range with compact revision
  93. self.compact(&range, compact_revision).await?;
  94. //
  95. debug_assert_eq!(compact_seq.len(), 2);
  96. debug_assert_eq!(sync_seq_write_guard.len(), compact_seq.len());
  97. sync_seq_write_guard.reset(compact_seq);
  98. Ok(rev_id)
  99. }
  100. }
  101. }
  102. /// Remove the revision with rev_id from the sync sequence.
  103. pub(crate) async fn ack_revision(&self, rev_id: i64) -> FlowyResult<()> {
  104. if self.sync_seq.write().await.ack(&rev_id).is_ok() {
  105. self.memory_cache.ack(&rev_id).await;
  106. }
  107. Ok(())
  108. }
  109. pub(crate) async fn next_sync_revision(&self) -> FlowyResult<Option<Revision>> {
  110. match self.sync_seq.read().await.next_rev_id() {
  111. None => Ok(None),
  112. Some(rev_id) => Ok(self.get(rev_id).await.map(|record| record.revision)),
  113. }
  114. }
  115. /// The cache gets reset while it conflicts with the remote revisions.
  116. #[tracing::instrument(level = "trace", skip(self, revisions), err)]
  117. pub(crate) async fn reset(&self, revisions: Vec<Revision>) -> FlowyResult<()> {
  118. let records = revisions
  119. .into_iter()
  120. .map(|revision| RevisionRecord {
  121. revision,
  122. state: RevisionState::Sync,
  123. write_to_disk: false,
  124. })
  125. .collect::<Vec<_>>();
  126. let _ = self
  127. .disk_cache
  128. .delete_and_insert_records(&self.object_id, None, records.clone())?;
  129. let _ = self.memory_cache.reset_with_revisions(records).await;
  130. self.sync_seq.write().await.clear();
  131. Ok(())
  132. }
  133. async fn add(&self, revision: Revision, state: RevisionState, write_to_disk: bool) -> FlowyResult<()> {
  134. if self.memory_cache.contains(&revision.rev_id) {
  135. tracing::warn!("Duplicate revision: {}:{}-{:?}", self.object_id, revision.rev_id, state);
  136. return Ok(());
  137. }
  138. let record = RevisionRecord {
  139. revision,
  140. state,
  141. write_to_disk,
  142. };
  143. self.memory_cache.add(Cow::Owned(record)).await;
  144. Ok(())
  145. }
  146. async fn compact(&self, range: &RevisionRange, new_revision: Revision) -> FlowyResult<()> {
  147. self.memory_cache.remove_with_range(range);
  148. let rev_ids = range.to_rev_ids();
  149. let _ = self
  150. .disk_cache
  151. .delete_revision_records(&self.object_id, Some(rev_ids))?;
  152. self.add(new_revision, RevisionState::Sync, true).await?;
  153. Ok(())
  154. }
  155. pub async fn get(&self, rev_id: i64) -> Option<RevisionRecord> {
  156. match self.memory_cache.get(&rev_id).await {
  157. None => match self
  158. .disk_cache
  159. .read_revision_records(&self.object_id, Some(vec![rev_id]))
  160. {
  161. Ok(mut records) => {
  162. let record = records.pop()?;
  163. assert!(records.is_empty());
  164. Some(record)
  165. }
  166. Err(e) => {
  167. tracing::error!("{}", e);
  168. None
  169. }
  170. },
  171. Some(revision) => Some(revision),
  172. }
  173. }
  174. pub fn batch_get(&self, doc_id: &str) -> FlowyResult<Vec<RevisionRecord>> {
  175. self.disk_cache.read_revision_records(doc_id, None)
  176. }
  177. // Read the revision which rev_id >= range.start && rev_id <= range.end
  178. pub async fn revisions_in_range(&self, range: &RevisionRange) -> FlowyResult<Vec<Revision>> {
  179. let range = range.clone();
  180. let mut records = self.memory_cache.get_with_range(&range).await?;
  181. let range_len = range.len() as usize;
  182. if records.len() != range_len {
  183. let disk_cache = self.disk_cache.clone();
  184. let object_id = self.object_id.clone();
  185. records = spawn_blocking(move || disk_cache.read_revision_records_with_range(&object_id, &range))
  186. .await
  187. .map_err(internal_error)??;
  188. if records.len() != range_len {
  189. // #[cfg(debug_assertions)]
  190. // records.iter().for_each(|record| {
  191. // let delta = PlainDelta::from_bytes(&record.revision.delta_data).unwrap();
  192. // tracing::trace!("{}", delta.to_string());
  193. // });
  194. tracing::error!("Expect revision len {},but receive {}", range_len, records.len());
  195. }
  196. }
  197. Ok(records
  198. .into_iter()
  199. .map(|record| record.revision)
  200. .collect::<Vec<Revision>>())
  201. }
  202. }
  203. pub fn mk_text_block_revision_disk_cache(
  204. user_id: &str,
  205. pool: Arc<ConnectionPool>,
  206. ) -> Arc<dyn RevisionDiskCache<Error = FlowyError>> {
  207. Arc::new(SQLiteDocumentRevisionPersistence::new(user_id, pool))
  208. }
  209. pub fn mk_grid_block_revision_disk_cache(
  210. user_id: &str,
  211. pool: Arc<ConnectionPool>,
  212. ) -> Arc<dyn RevisionDiskCache<Error = FlowyError>> {
  213. Arc::new(SQLiteGridBlockRevisionPersistence::new(user_id, pool))
  214. }
  215. impl RevisionMemoryCacheDelegate for Arc<dyn RevisionDiskCache<Error = FlowyError>> {
  216. fn checkpoint_tick(&self, mut records: Vec<RevisionRecord>) -> FlowyResult<()> {
  217. records.retain(|record| record.write_to_disk);
  218. if !records.is_empty() {
  219. tracing::Span::current().record(
  220. "checkpoint_result",
  221. &format!("{} records were saved", records.len()).as_str(),
  222. );
  223. let _ = self.create_revision_records(records)?;
  224. }
  225. Ok(())
  226. }
  227. fn receive_ack(&self, object_id: &str, rev_id: i64) {
  228. let changeset = RevisionChangeset {
  229. object_id: object_id.to_string(),
  230. rev_id: rev_id.into(),
  231. state: RevisionState::Ack,
  232. };
  233. match self.update_revision_record(vec![changeset]) {
  234. Ok(_) => {}
  235. Err(e) => tracing::error!("{}", e),
  236. }
  237. }
  238. }
  239. #[derive(Default)]
  240. struct RevisionSyncSequence(VecDeque<i64>);
  241. impl RevisionSyncSequence {
  242. fn new() -> Self {
  243. RevisionSyncSequence::default()
  244. }
  245. fn add(&mut self, new_rev_id: i64) -> FlowyResult<()> {
  246. // The last revision's rev_id must be greater than the new one.
  247. if let Some(rev_id) = self.0.back() {
  248. if *rev_id >= new_rev_id {
  249. return Err(
  250. FlowyError::internal().context(format!("The new revision's id must be greater than {}", rev_id))
  251. );
  252. }
  253. }
  254. self.0.push_back(new_rev_id);
  255. Ok(())
  256. }
  257. fn ack(&mut self, rev_id: &i64) -> FlowyResult<()> {
  258. let cur_rev_id = self.0.front().cloned();
  259. if let Some(pop_rev_id) = cur_rev_id {
  260. if &pop_rev_id != rev_id {
  261. let desc = format!(
  262. "The ack rev_id:{} is not equal to the current rev_id:{}",
  263. rev_id, pop_rev_id
  264. );
  265. return Err(FlowyError::internal().context(desc));
  266. }
  267. let _ = self.0.pop_front();
  268. }
  269. Ok(())
  270. }
  271. fn next_rev_id(&self) -> Option<i64> {
  272. self.0.front().cloned()
  273. }
  274. fn reset(&mut self, new_seq: VecDeque<i64>) {
  275. self.0 = new_seq;
  276. }
  277. fn clear(&mut self) {
  278. self.0.clear();
  279. }
  280. fn len(&self) -> usize {
  281. self.0.len()
  282. }
  283. // Compact the rev_ids into one except the current synchronizing rev_id.
  284. fn compact(&self) -> Option<(RevisionRange, VecDeque<i64>)> {
  285. // Make sure there are two rev_id going to sync. No need to compact if there is only
  286. // one rev_id in queue.
  287. self.next_rev_id()?;
  288. let mut new_seq = self.0.clone();
  289. let mut drained = new_seq.drain(1..).collect::<VecDeque<_>>();
  290. let start = drained.pop_front()?;
  291. let end = drained.pop_back().unwrap_or(start);
  292. Some((RevisionRange { start, end }, new_seq))
  293. }
  294. }