grid_editor.rs 18 KB

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  1. use crate::dart_notification::{send_dart_notification, GridNotification};
  2. use crate::manager::GridUser;
  3. use crate::services::block_meta_manager::GridBlockMetaEditorManager;
  4. use crate::services::cell::CellIdentifier;
  5. use crate::services::field::{default_type_option_builder_from_type, type_option_builder_from_bytes, FieldBuilder};
  6. use crate::services::persistence::block_index::BlockIndexPersistence;
  7. use crate::services::row::*;
  8. use bytes::Bytes;
  9. use flowy_error::{ErrorCode, FlowyError, FlowyResult};
  10. use flowy_grid_data_model::entities::*;
  11. use flowy_revision::{RevisionCloudService, RevisionCompactor, RevisionManager, RevisionObjectBuilder};
  12. use flowy_sync::client_grid::{GridChangeset, GridMetaPad, JsonDeserializer};
  13. use flowy_sync::entities::revision::Revision;
  14. use flowy_sync::errors::CollaborateResult;
  15. use flowy_sync::util::make_delta_from_revisions;
  16. use lib_infra::future::FutureResult;
  17. use lib_ot::core::PlainTextAttributes;
  18. use std::collections::HashMap;
  19. use std::sync::Arc;
  20. use tokio::sync::RwLock;
  21. pub struct ClientGridEditor {
  22. grid_id: String,
  23. user: Arc<dyn GridUser>,
  24. pad: Arc<RwLock<GridMetaPad>>,
  25. rev_manager: Arc<RevisionManager>,
  26. block_meta_manager: Arc<GridBlockMetaEditorManager>,
  27. }
  28. impl ClientGridEditor {
  29. pub async fn new(
  30. grid_id: &str,
  31. user: Arc<dyn GridUser>,
  32. mut rev_manager: RevisionManager,
  33. persistence: Arc<BlockIndexPersistence>,
  34. ) -> FlowyResult<Arc<Self>> {
  35. let token = user.token()?;
  36. let cloud = Arc::new(GridRevisionCloudService { token });
  37. let grid_pad = rev_manager.load::<GridPadBuilder>(Some(cloud)).await?;
  38. let rev_manager = Arc::new(rev_manager);
  39. let pad = Arc::new(RwLock::new(grid_pad));
  40. let blocks = pad.read().await.get_block_metas();
  41. let block_meta_manager = Arc::new(GridBlockMetaEditorManager::new(grid_id, &user, blocks, persistence).await?);
  42. Ok(Arc::new(Self {
  43. grid_id: grid_id.to_owned(),
  44. user,
  45. pad,
  46. rev_manager,
  47. block_meta_manager,
  48. }))
  49. }
  50. pub async fn create_field(&self, params: CreateFieldParams) -> FlowyResult<()> {
  51. let CreateFieldParams {
  52. field,
  53. type_option_data,
  54. start_field_id,
  55. grid_id,
  56. } = params;
  57. let _ = self
  58. .modify(|grid| {
  59. if grid.contain_field(&field.id) {
  60. let deserializer = TypeOptionJsonDeserializer(field.field_type.clone());
  61. let changeset = FieldChangesetParams {
  62. field_id: field.id,
  63. grid_id,
  64. name: Some(field.name),
  65. desc: Some(field.desc),
  66. field_type: Some(field.field_type),
  67. frozen: Some(field.frozen),
  68. visibility: Some(field.visibility),
  69. width: Some(field.width),
  70. type_option_data: Some(type_option_data),
  71. };
  72. Ok(grid.update_field(changeset, deserializer)?)
  73. } else {
  74. // let type_option_json = type_option_json_str_from_bytes(type_option_data, &field.field_type);
  75. let builder = type_option_builder_from_bytes(type_option_data, &field.field_type);
  76. let field_meta = FieldBuilder::from_field(field, builder).build();
  77. Ok(grid.create_field(field_meta, start_field_id)?)
  78. }
  79. })
  80. .await?;
  81. let _ = self.notify_did_update_grid().await?;
  82. Ok(())
  83. }
  84. pub async fn create_next_field_meta(&self, field_type: &FieldType) -> FlowyResult<FieldMeta> {
  85. let name = format!("Property {}", self.pad.read().await.fields().len() + 1);
  86. let field_meta = FieldBuilder::from_field_type(field_type).name(&name).build();
  87. Ok(field_meta)
  88. }
  89. pub async fn contain_field(&self, field_id: &str) -> bool {
  90. self.pad.read().await.contain_field(field_id)
  91. }
  92. pub async fn update_field(&self, params: FieldChangesetParams) -> FlowyResult<()> {
  93. let field_id = params.field_id.clone();
  94. let json_deserializer = match self.pad.read().await.get_field(params.field_id.as_str()) {
  95. None => return Err(ErrorCode::FieldDoesNotExist.into()),
  96. Some(field_meta) => TypeOptionJsonDeserializer(field_meta.field_type.clone()),
  97. };
  98. let _ = self
  99. .modify(|grid| Ok(grid.update_field(params, json_deserializer)?))
  100. .await?;
  101. let _ = self.notify_did_update_grid().await?;
  102. let _ = self.notify_did_update_field(&field_id).await?;
  103. Ok(())
  104. }
  105. pub async fn replace_field(&self, field_meta: FieldMeta) -> FlowyResult<()> {
  106. let _ = self.modify(|pad| Ok(pad.replace_field(field_meta)?)).await?;
  107. Ok(())
  108. }
  109. pub async fn delete_field(&self, field_id: &str) -> FlowyResult<()> {
  110. let _ = self.modify(|grid| Ok(grid.delete_field(field_id)?)).await?;
  111. let _ = self.notify_did_update_grid().await?;
  112. Ok(())
  113. }
  114. pub async fn switch_to_field_type(&self, field_id: &str, field_type: &FieldType) -> FlowyResult<()> {
  115. // let block_ids = self
  116. // .get_block_metas()
  117. // .await?
  118. // .into_iter()
  119. // .map(|block_meta| block_meta.block_id)
  120. // .collect();
  121. // let cell_metas = self
  122. // .block_meta_manager
  123. // .get_cell_metas(block_ids, field_id, None)
  124. // .await?;
  125. let type_option_json_builder = |field_type: &FieldType| -> String {
  126. return default_type_option_builder_from_type(field_type).entry().json_str();
  127. };
  128. let _ = self
  129. .modify(|grid| Ok(grid.switch_to_field(field_id, field_type.clone(), type_option_json_builder)?))
  130. .await?;
  131. let _ = self.notify_did_update_grid().await?;
  132. let _ = self.notify_did_update_field(field_id).await?;
  133. Ok(())
  134. }
  135. pub async fn duplicate_field(&self, field_id: &str) -> FlowyResult<()> {
  136. let _ = self.modify(|grid| Ok(grid.duplicate_field(field_id)?)).await?;
  137. let _ = self.notify_did_update_grid().await?;
  138. Ok(())
  139. }
  140. pub async fn get_field_meta(&self, field_id: &str) -> Option<FieldMeta> {
  141. let field_meta = self.pad.read().await.get_field(field_id)?.clone();
  142. Some(field_meta)
  143. }
  144. pub async fn get_field_metas<T>(&self, field_ids: Option<Vec<T>>) -> FlowyResult<Vec<FieldMeta>>
  145. where
  146. T: Into<FieldOrder>,
  147. {
  148. if field_ids.is_none() {
  149. let field_metas = self.pad.read().await.get_field_metas(None)?;
  150. return Ok(field_metas);
  151. }
  152. let to_field_orders = |item: Vec<T>| item.into_iter().map(|data| data.into()).collect();
  153. let field_orders = field_ids.map_or(vec![], to_field_orders);
  154. let expected_len = field_orders.len();
  155. let field_metas = self.pad.read().await.get_field_metas(Some(field_orders))?;
  156. if expected_len != 0 && field_metas.len() != expected_len {
  157. tracing::error!(
  158. "This is a bug. The len of the field_metas should equal to {}",
  159. expected_len
  160. );
  161. debug_assert!(field_metas.len() == expected_len);
  162. }
  163. Ok(field_metas)
  164. }
  165. pub async fn create_block(&self, grid_block: GridBlockMeta) -> FlowyResult<()> {
  166. let _ = self.modify(|grid| Ok(grid.create_block_meta(grid_block)?)).await?;
  167. Ok(())
  168. }
  169. pub async fn update_block(&self, changeset: GridBlockMetaChangeset) -> FlowyResult<()> {
  170. let _ = self.modify(|grid| Ok(grid.update_block_meta(changeset)?)).await?;
  171. Ok(())
  172. }
  173. pub async fn create_row(&self, start_row_id: Option<String>) -> FlowyResult<RowOrder> {
  174. let field_metas = self.pad.read().await.get_field_metas(None)?;
  175. let block_id = self.block_id().await?;
  176. // insert empty row below the row whose id is upper_row_id
  177. let row_meta_ctx = CreateRowMetaBuilder::new(&field_metas).build();
  178. let row_meta = make_row_meta_from_context(&block_id, row_meta_ctx);
  179. let row_order = RowOrder::from(&row_meta);
  180. // insert the row
  181. let row_count = self
  182. .block_meta_manager
  183. .create_row(&block_id, row_meta, start_row_id)
  184. .await?;
  185. // update block row count
  186. let changeset = GridBlockMetaChangeset::from_row_count(&block_id, row_count);
  187. let _ = self.update_block(changeset).await?;
  188. Ok(row_order)
  189. }
  190. pub async fn insert_rows(&self, contexts: Vec<CreateRowMetaPayload>) -> FlowyResult<Vec<RowOrder>> {
  191. let block_id = self.block_id().await?;
  192. let mut rows_by_block_id: HashMap<String, Vec<RowMeta>> = HashMap::new();
  193. let mut row_orders = vec![];
  194. for ctx in contexts {
  195. let row_meta = make_row_meta_from_context(&block_id, ctx);
  196. row_orders.push(RowOrder::from(&row_meta));
  197. rows_by_block_id
  198. .entry(block_id.clone())
  199. .or_insert_with(Vec::new)
  200. .push(row_meta);
  201. }
  202. let changesets = self.block_meta_manager.insert_row(rows_by_block_id).await?;
  203. for changeset in changesets {
  204. let _ = self.update_block(changeset).await?;
  205. }
  206. Ok(row_orders)
  207. }
  208. pub async fn update_row(&self, changeset: RowMetaChangeset) -> FlowyResult<()> {
  209. self.block_meta_manager.update_row(changeset).await
  210. }
  211. pub async fn get_rows(&self, block_id: &str) -> FlowyResult<RepeatedRow> {
  212. let block_ids = vec![block_id.to_owned()];
  213. let mut grid_block_snapshot = self.grid_block_snapshots(Some(block_ids)).await?;
  214. // For the moment, we only support one block.
  215. // We can save the rows into multiple blocks and load them asynchronously in the future.
  216. debug_assert_eq!(grid_block_snapshot.len(), 1);
  217. if grid_block_snapshot.len() == 1 {
  218. let snapshot = grid_block_snapshot.pop().unwrap();
  219. let field_metas = self.get_field_metas::<FieldOrder>(None).await?;
  220. let rows = make_rows_from_row_metas(&field_metas, &snapshot.row_metas);
  221. Ok(rows.into())
  222. } else {
  223. Ok(vec![].into())
  224. }
  225. }
  226. pub async fn get_row(&self, row_id: &str) -> FlowyResult<Option<Row>> {
  227. match self.block_meta_manager.get_row_meta(row_id).await? {
  228. None => Ok(None),
  229. Some(row_meta) => {
  230. let field_metas = self.get_field_metas::<FieldOrder>(None).await?;
  231. let row_metas = vec![row_meta];
  232. let mut rows = make_rows_from_row_metas(&field_metas, &row_metas);
  233. debug_assert!(rows.len() == 1);
  234. Ok(rows.pop())
  235. }
  236. }
  237. }
  238. pub async fn get_cell(&self, params: &CellIdentifier) -> Option<Cell> {
  239. let field_meta = self.get_field_meta(&params.field_id).await?;
  240. let row_meta = self.block_meta_manager.get_row_meta(&params.row_id).await.ok()??;
  241. make_cell(&params.field_id, &field_meta, &row_meta)
  242. }
  243. pub async fn get_cell_meta(&self, row_id: &str, field_id: &str) -> FlowyResult<Option<CellMeta>> {
  244. let row_meta = self.block_meta_manager.get_row_meta(row_id).await?;
  245. match row_meta {
  246. None => Ok(None),
  247. Some(row_meta) => {
  248. let cell_meta = row_meta.cell_by_field_id.get(field_id).cloned();
  249. Ok(cell_meta)
  250. }
  251. }
  252. }
  253. pub async fn update_cell(&self, mut changeset: CellMetaChangeset) -> FlowyResult<()> {
  254. if changeset.data.as_ref().is_none() {
  255. return Ok(());
  256. }
  257. let cell_data_changeset = changeset.data.unwrap();
  258. let cell_meta = self.get_cell_meta(&changeset.row_id, &changeset.field_id).await?;
  259. match self.pad.read().await.get_field(&changeset.field_id) {
  260. None => {
  261. let msg = format!("Field not found with id: {}", &changeset.field_id);
  262. Err(FlowyError::internal().context(msg))
  263. }
  264. Some(field_meta) => {
  265. // Update the changeset.data property with the return value.
  266. changeset.data = Some(apply_cell_data_changeset(cell_data_changeset, cell_meta, field_meta)?);
  267. let _ = self.block_meta_manager.update_cell(changeset).await?;
  268. Ok(())
  269. }
  270. }
  271. }
  272. pub async fn get_blocks(&self, block_ids: Option<Vec<String>>) -> FlowyResult<RepeatedGridBlock> {
  273. let block_snapshots = self.grid_block_snapshots(block_ids.clone()).await?;
  274. make_grid_blocks(block_ids, block_snapshots)
  275. }
  276. pub async fn get_block_metas(&self) -> FlowyResult<Vec<GridBlockMeta>> {
  277. let grid_blocks = self.pad.read().await.get_block_metas();
  278. Ok(grid_blocks)
  279. }
  280. pub async fn delete_rows(&self, row_orders: Vec<RowOrder>) -> FlowyResult<()> {
  281. let changesets = self.block_meta_manager.delete_rows(row_orders).await?;
  282. for changeset in changesets {
  283. let _ = self.update_block(changeset).await?;
  284. }
  285. Ok(())
  286. }
  287. pub async fn grid_data(&self) -> FlowyResult<Grid> {
  288. let field_orders = self.pad.read().await.get_field_orders();
  289. let block_orders = self
  290. .pad
  291. .read()
  292. .await
  293. .get_block_metas()
  294. .into_iter()
  295. .map(|grid_block_meta| GridBlockOrder {
  296. block_id: grid_block_meta.block_id,
  297. })
  298. .collect::<Vec<_>>();
  299. Ok(Grid {
  300. id: self.grid_id.clone(),
  301. field_orders,
  302. block_orders,
  303. })
  304. }
  305. pub async fn grid_block_snapshots(&self, block_ids: Option<Vec<String>>) -> FlowyResult<Vec<GridBlockSnapshot>> {
  306. let block_ids = match block_ids {
  307. None => self
  308. .pad
  309. .read()
  310. .await
  311. .get_block_metas()
  312. .into_iter()
  313. .map(|block_meta| block_meta.block_id)
  314. .collect::<Vec<String>>(),
  315. Some(block_ids) => block_ids,
  316. };
  317. let snapshots = self.block_meta_manager.make_block_snapshots(block_ids).await?;
  318. Ok(snapshots)
  319. }
  320. pub async fn delta_bytes(&self) -> Bytes {
  321. self.pad.read().await.delta_bytes()
  322. }
  323. async fn modify<F>(&self, f: F) -> FlowyResult<()>
  324. where
  325. F: for<'a> FnOnce(&'a mut GridMetaPad) -> FlowyResult<Option<GridChangeset>>,
  326. {
  327. let mut write_guard = self.pad.write().await;
  328. if let Some(changeset) = f(&mut *write_guard)? {
  329. let _ = self.apply_change(changeset).await?;
  330. }
  331. Ok(())
  332. }
  333. async fn apply_change(&self, change: GridChangeset) -> FlowyResult<()> {
  334. let GridChangeset { delta, md5 } = change;
  335. let user_id = self.user.user_id()?;
  336. let (base_rev_id, rev_id) = self.rev_manager.next_rev_id_pair();
  337. let delta_data = delta.to_delta_bytes();
  338. let revision = Revision::new(
  339. &self.rev_manager.object_id,
  340. base_rev_id,
  341. rev_id,
  342. delta_data,
  343. &user_id,
  344. md5,
  345. );
  346. let _ = self
  347. .rev_manager
  348. .add_local_revision(&revision, Box::new(GridRevisionCompactor()))
  349. .await?;
  350. Ok(())
  351. }
  352. async fn block_id(&self) -> FlowyResult<String> {
  353. match self.pad.read().await.get_block_metas().last() {
  354. None => Err(FlowyError::internal().context("There is no grid block in this grid")),
  355. Some(grid_block) => Ok(grid_block.block_id.clone()),
  356. }
  357. }
  358. async fn notify_did_update_grid(&self) -> FlowyResult<()> {
  359. let field_metas = self.get_field_metas::<FieldOrder>(None).await?;
  360. let repeated_field: RepeatedField = field_metas.into_iter().map(Field::from).collect::<Vec<_>>().into();
  361. send_dart_notification(&self.grid_id, GridNotification::DidUpdateGrid)
  362. .payload(repeated_field)
  363. .send();
  364. Ok(())
  365. }
  366. async fn notify_did_update_field(&self, field_id: &str) -> FlowyResult<()> {
  367. let mut field_metas = self.get_field_metas(Some(vec![field_id])).await?;
  368. debug_assert!(field_metas.len() == 1);
  369. if let Some(field_meta) = field_metas.pop() {
  370. send_dart_notification(&self.grid_id, GridNotification::DidUpdateField)
  371. .payload(field_meta)
  372. .send();
  373. }
  374. Ok(())
  375. }
  376. }
  377. #[cfg(feature = "flowy_unit_test")]
  378. impl ClientGridEditor {
  379. pub fn rev_manager(&self) -> Arc<RevisionManager> {
  380. self.rev_manager.clone()
  381. }
  382. }
  383. pub struct GridPadBuilder();
  384. impl RevisionObjectBuilder for GridPadBuilder {
  385. type Output = GridMetaPad;
  386. fn build_object(object_id: &str, revisions: Vec<Revision>) -> FlowyResult<Self::Output> {
  387. let pad = GridMetaPad::from_revisions(object_id, revisions)?;
  388. Ok(pad)
  389. }
  390. }
  391. struct GridRevisionCloudService {
  392. #[allow(dead_code)]
  393. token: String,
  394. }
  395. impl RevisionCloudService for GridRevisionCloudService {
  396. #[tracing::instrument(level = "trace", skip(self))]
  397. fn fetch_object(&self, _user_id: &str, _object_id: &str) -> FutureResult<Vec<Revision>, FlowyError> {
  398. FutureResult::new(async move { Ok(vec![]) })
  399. }
  400. }
  401. struct GridRevisionCompactor();
  402. impl RevisionCompactor for GridRevisionCompactor {
  403. fn bytes_from_revisions(&self, revisions: Vec<Revision>) -> FlowyResult<Bytes> {
  404. let delta = make_delta_from_revisions::<PlainTextAttributes>(revisions)?;
  405. Ok(delta.to_delta_bytes())
  406. }
  407. }
  408. struct TypeOptionJsonDeserializer(FieldType);
  409. impl JsonDeserializer for TypeOptionJsonDeserializer {
  410. fn deserialize(&self, type_option_data: Vec<u8>) -> CollaborateResult<String> {
  411. // The type_option_data sent from Dart is serialized by protobuf.
  412. let builder = type_option_builder_from_bytes(type_option_data, &self.0);
  413. Ok(builder.entry().json_str())
  414. }
  415. }