manager.rs 8.8 KB

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  1. use crate::services::block_revision_editor::GridBlockRevisionCompactor;
  2. use crate::services::grid_editor::{GridRevisionCompactor, GridRevisionEditor};
  3. use crate::services::persistence::block_index::BlockIndexCache;
  4. use crate::services::persistence::kv::GridKVPersistence;
  5. use crate::services::persistence::migration::GridMigration;
  6. use crate::services::persistence::GridDatabase;
  7. use crate::services::tasks::GridTaskScheduler;
  8. use bytes::Bytes;
  9. use dashmap::DashMap;
  10. use flowy_database::ConnectionPool;
  11. use flowy_error::{FlowyError, FlowyResult};
  12. use flowy_grid_data_model::revision::{BuildGridContext, GridRevision};
  13. use flowy_revision::disk::{SQLiteGridBlockRevisionPersistence, SQLiteGridRevisionPersistence};
  14. use flowy_revision::{RevisionManager, RevisionPersistence, RevisionWebSocket, SQLiteRevisionSnapshotPersistence};
  15. use flowy_sync::client_grid::{make_grid_block_delta, make_grid_delta};
  16. use flowy_sync::entities::revision::{RepeatedRevision, Revision};
  17. use std::sync::Arc;
  18. use tokio::sync::RwLock;
  19. pub trait GridUser: Send + Sync {
  20. fn user_id(&self) -> Result<String, FlowyError>;
  21. fn token(&self) -> Result<String, FlowyError>;
  22. fn db_pool(&self) -> Result<Arc<ConnectionPool>, FlowyError>;
  23. }
  24. pub type GridTaskSchedulerRwLock = Arc<RwLock<GridTaskScheduler>>;
  25. pub struct GridManager {
  26. grid_editors: Arc<DashMap<String, Arc<GridRevisionEditor>>>,
  27. grid_user: Arc<dyn GridUser>,
  28. block_index_cache: Arc<BlockIndexCache>,
  29. #[allow(dead_code)]
  30. kv_persistence: Arc<GridKVPersistence>,
  31. task_scheduler: GridTaskSchedulerRwLock,
  32. migration: GridMigration,
  33. }
  34. impl GridManager {
  35. pub fn new(
  36. grid_user: Arc<dyn GridUser>,
  37. _rev_web_socket: Arc<dyn RevisionWebSocket>,
  38. database: Arc<dyn GridDatabase>,
  39. ) -> Self {
  40. let grid_editors = Arc::new(DashMap::new());
  41. let kv_persistence = Arc::new(GridKVPersistence::new(database.clone()));
  42. let block_index_cache = Arc::new(BlockIndexCache::new(database.clone()));
  43. let task_scheduler = GridTaskScheduler::new();
  44. let migration = GridMigration::new(grid_user.clone(), database);
  45. Self {
  46. grid_editors,
  47. grid_user,
  48. kv_persistence,
  49. block_index_cache,
  50. task_scheduler,
  51. migration,
  52. }
  53. }
  54. pub async fn initialize_with_new_user(&self, _user_id: &str, _token: &str) -> FlowyResult<()> {
  55. Ok(())
  56. }
  57. pub async fn initialize(&self, _user_id: &str, _token: &str) -> FlowyResult<()> {
  58. Ok(())
  59. }
  60. #[tracing::instrument(level = "debug", skip_all, err)]
  61. pub async fn create_grid<T: AsRef<str>>(&self, grid_id: T, revisions: RepeatedRevision) -> FlowyResult<()> {
  62. let grid_id = grid_id.as_ref();
  63. let db_pool = self.grid_user.db_pool()?;
  64. let rev_manager = self.make_grid_rev_manager(grid_id, db_pool)?;
  65. let _ = rev_manager.reset_object(revisions).await?;
  66. Ok(())
  67. }
  68. #[tracing::instrument(level = "debug", skip_all, err)]
  69. pub async fn create_grid_block<T: AsRef<str>>(&self, block_id: T, revisions: RepeatedRevision) -> FlowyResult<()> {
  70. let block_id = block_id.as_ref();
  71. let db_pool = self.grid_user.db_pool()?;
  72. let rev_manager = self.make_grid_block_rev_manager(block_id, db_pool)?;
  73. let _ = rev_manager.reset_object(revisions).await?;
  74. Ok(())
  75. }
  76. #[tracing::instrument(level = "debug", skip_all, fields(grid_id), err)]
  77. pub async fn open_grid<T: AsRef<str>>(&self, grid_id: T) -> FlowyResult<Arc<GridRevisionEditor>> {
  78. let grid_id = grid_id.as_ref();
  79. tracing::Span::current().record("grid_id", &grid_id);
  80. let _ = self.migration.migration_grid_if_need(grid_id).await;
  81. self.get_or_create_grid_editor(grid_id).await
  82. }
  83. #[tracing::instrument(level = "debug", skip_all, fields(grid_id), err)]
  84. pub async fn close_grid<T: AsRef<str>>(&self, grid_id: T) -> FlowyResult<()> {
  85. let grid_id = grid_id.as_ref();
  86. tracing::Span::current().record("grid_id", &grid_id);
  87. self.grid_editors.remove(grid_id);
  88. self.task_scheduler.write().await.unregister_handler(grid_id);
  89. Ok(())
  90. }
  91. #[tracing::instrument(level = "debug", skip(self, grid_id), fields(doc_id), err)]
  92. pub async fn delete_grid<T: AsRef<str>>(&self, grid_id: T) -> FlowyResult<()> {
  93. let grid_id = grid_id.as_ref();
  94. tracing::Span::current().record("grid_id", &grid_id);
  95. self.grid_editors.remove(grid_id);
  96. self.task_scheduler.write().await.unregister_handler(grid_id);
  97. Ok(())
  98. }
  99. // pub fn update_grid_info()
  100. // #[tracing::instrument(level = "debug", skip(self), err)]
  101. pub fn get_grid_editor(&self, grid_id: &str) -> FlowyResult<Arc<GridRevisionEditor>> {
  102. match self.grid_editors.get(grid_id) {
  103. None => Err(FlowyError::internal().context("Should call open_grid function first")),
  104. Some(editor) => Ok(editor.clone()),
  105. }
  106. }
  107. async fn get_or_create_grid_editor(&self, grid_id: &str) -> FlowyResult<Arc<GridRevisionEditor>> {
  108. match self.grid_editors.get(grid_id) {
  109. None => {
  110. tracing::trace!("Create grid editor with id: {}", grid_id);
  111. let db_pool = self.grid_user.db_pool()?;
  112. let editor = self.make_grid_rev_editor(grid_id, db_pool).await?;
  113. if self.grid_editors.contains_key(grid_id) {
  114. tracing::warn!("Grid:{} already exists in cache", grid_id);
  115. }
  116. self.grid_editors.insert(grid_id.to_string(), editor.clone());
  117. self.task_scheduler.write().await.register_handler(editor.clone());
  118. Ok(editor)
  119. }
  120. Some(editor) => Ok(editor.clone()),
  121. }
  122. }
  123. #[tracing::instrument(level = "trace", skip(self, pool), err)]
  124. async fn make_grid_rev_editor(
  125. &self,
  126. grid_id: &str,
  127. pool: Arc<ConnectionPool>,
  128. ) -> Result<Arc<GridRevisionEditor>, FlowyError> {
  129. let user = self.grid_user.clone();
  130. let rev_manager = self.make_grid_rev_manager(grid_id, pool.clone())?;
  131. let grid_editor = GridRevisionEditor::new(
  132. grid_id,
  133. user,
  134. rev_manager,
  135. self.block_index_cache.clone(),
  136. self.task_scheduler.clone(),
  137. )
  138. .await?;
  139. Ok(grid_editor)
  140. }
  141. pub fn make_grid_rev_manager(&self, grid_id: &str, pool: Arc<ConnectionPool>) -> FlowyResult<RevisionManager> {
  142. let user_id = self.grid_user.user_id()?;
  143. let disk_cache = SQLiteGridRevisionPersistence::new(&user_id, pool.clone());
  144. let rev_persistence = RevisionPersistence::new(&user_id, grid_id, disk_cache);
  145. let snapshot_persistence = SQLiteRevisionSnapshotPersistence::new(grid_id, pool);
  146. let rev_compactor = GridRevisionCompactor();
  147. let rev_manager = RevisionManager::new(&user_id, grid_id, rev_persistence, rev_compactor, snapshot_persistence);
  148. Ok(rev_manager)
  149. }
  150. fn make_grid_block_rev_manager(&self, block_id: &str, pool: Arc<ConnectionPool>) -> FlowyResult<RevisionManager> {
  151. let user_id = self.grid_user.user_id()?;
  152. let disk_cache = SQLiteGridBlockRevisionPersistence::new(&user_id, pool.clone());
  153. let rev_persistence = RevisionPersistence::new(&user_id, block_id, disk_cache);
  154. let rev_compactor = GridBlockRevisionCompactor();
  155. let snapshot_persistence = SQLiteRevisionSnapshotPersistence::new(block_id, pool);
  156. let rev_manager =
  157. RevisionManager::new(&user_id, block_id, rev_persistence, rev_compactor, snapshot_persistence);
  158. Ok(rev_manager)
  159. }
  160. }
  161. pub async fn make_grid_view_data(
  162. user_id: &str,
  163. view_id: &str,
  164. grid_manager: Arc<GridManager>,
  165. build_context: BuildGridContext,
  166. ) -> FlowyResult<Bytes> {
  167. for block_meta_data in &build_context.blocks_meta_data {
  168. let block_id = &block_meta_data.block_id;
  169. // Indexing the block's rows
  170. block_meta_data.rows.iter().for_each(|row| {
  171. let _ = grid_manager.block_index_cache.insert(&row.block_id, &row.id);
  172. });
  173. // Create grid's block
  174. let grid_block_delta = make_grid_block_delta(block_meta_data);
  175. let block_delta_data = grid_block_delta.json_bytes();
  176. let repeated_revision: RepeatedRevision =
  177. Revision::initial_revision(user_id, block_id, block_delta_data).into();
  178. let _ = grid_manager.create_grid_block(&block_id, repeated_revision).await?;
  179. }
  180. let grid_rev = GridRevision::from_build_context(view_id, build_context);
  181. // Create grid
  182. let grid_meta_delta = make_grid_delta(&grid_rev);
  183. let grid_delta_data = grid_meta_delta.json_bytes();
  184. let repeated_revision: RepeatedRevision =
  185. Revision::initial_revision(user_id, view_id, grid_delta_data.clone()).into();
  186. let _ = grid_manager.create_grid(view_id, repeated_revision).await?;
  187. Ok(grid_delta_data)
  188. }