script.rs 12 KB

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  1. use crate::grid::block_test::script::RowScript::{AssertCell, CreateRow};
  2. use crate::grid::block_test::util::GridRowTestBuilder;
  3. use crate::grid::grid_editor::GridEditorTest;
  4. use flowy_grid::entities::{GridCellIdParams, FieldType, GridRowPB};
  5. use flowy_grid::services::field::*;
  6. use flowy_grid_data_model::revision::{
  7. GridBlockMetaRevision, GridBlockMetaRevisionChangeset, RowMetaChangeset, RowRevision,
  8. };
  9. use std::collections::HashMap;
  10. use std::sync::Arc;
  11. use strum::IntoEnumIterator;
  12. pub enum RowScript {
  13. CreateEmptyRow,
  14. CreateRow {
  15. row_rev: RowRevision,
  16. },
  17. UpdateRow {
  18. changeset: RowMetaChangeset,
  19. },
  20. AssertRow {
  21. expected_row: RowRevision,
  22. },
  23. DeleteRows {
  24. row_ids: Vec<String>,
  25. },
  26. AssertCell {
  27. row_id: String,
  28. field_id: String,
  29. field_type: FieldType,
  30. expected: String,
  31. },
  32. AssertRowCount(usize),
  33. CreateBlock {
  34. block: GridBlockMetaRevision,
  35. },
  36. UpdateBlock {
  37. changeset: GridBlockMetaRevisionChangeset,
  38. },
  39. AssertBlockCount(usize),
  40. AssertBlock {
  41. block_index: usize,
  42. row_count: i32,
  43. start_row_index: i32,
  44. },
  45. AssertBlockEqual {
  46. block_index: usize,
  47. block: GridBlockMetaRevision,
  48. },
  49. }
  50. pub struct GridRowTest {
  51. inner: GridEditorTest,
  52. }
  53. impl GridRowTest {
  54. pub async fn new() -> Self {
  55. let editor_test = GridEditorTest::new().await;
  56. Self { inner: editor_test }
  57. }
  58. pub fn last_row(&self) -> Option<RowRevision> {
  59. self.row_revs.last().map(|a| a.clone().as_ref().clone())
  60. }
  61. pub async fn run_scripts(&mut self, scripts: Vec<RowScript>) {
  62. for script in scripts {
  63. self.run_script(script).await;
  64. }
  65. }
  66. pub fn row_builder(&self) -> GridRowTestBuilder {
  67. GridRowTestBuilder::new(self.block_id(), &self.field_revs)
  68. }
  69. pub async fn run_script(&mut self, script: RowScript) {
  70. match script {
  71. RowScript::CreateEmptyRow => {
  72. let row_order = self.editor.create_row(None).await.unwrap();
  73. self.row_order_by_row_id
  74. .insert(row_order.row_id().to_owned(), row_order);
  75. self.row_revs = self.get_row_revs().await;
  76. self.block_meta_revs = self.editor.get_block_meta_revs().await.unwrap();
  77. }
  78. RowScript::CreateRow { row_rev } => {
  79. let row_orders = self.editor.insert_rows(vec![row_rev]).await.unwrap();
  80. for row_order in row_orders {
  81. self.row_order_by_row_id
  82. .insert(row_order.row_id().to_owned(), row_order);
  83. }
  84. self.row_revs = self.get_row_revs().await;
  85. self.block_meta_revs = self.editor.get_block_meta_revs().await.unwrap();
  86. }
  87. RowScript::UpdateRow { changeset: change } => self.editor.update_row(change).await.unwrap(),
  88. RowScript::DeleteRows { row_ids } => {
  89. let row_orders = row_ids
  90. .into_iter()
  91. .map(|row_id| self.row_order_by_row_id.get(&row_id).unwrap().clone())
  92. .collect::<Vec<GridRowPB>>();
  93. self.editor.delete_rows(row_orders).await.unwrap();
  94. self.row_revs = self.get_row_revs().await;
  95. self.block_meta_revs = self.editor.get_block_meta_revs().await.unwrap();
  96. }
  97. RowScript::AssertCell {
  98. row_id,
  99. field_id,
  100. field_type,
  101. expected,
  102. } => {
  103. let id = GridCellIdParams {
  104. grid_id: self.grid_id.clone(),
  105. field_id,
  106. row_id,
  107. };
  108. self.compare_cell_content(id, field_type, expected).await;
  109. }
  110. RowScript::AssertRow { expected_row } => {
  111. let row = &*self
  112. .row_revs
  113. .iter()
  114. .find(|row| row.id == expected_row.id)
  115. .cloned()
  116. .unwrap();
  117. assert_eq!(&expected_row, row);
  118. }
  119. RowScript::AssertRowCount(expected_row_count) => {
  120. assert_eq!(expected_row_count, self.row_revs.len());
  121. }
  122. RowScript::CreateBlock { block } => {
  123. self.editor.create_block(block).await.unwrap();
  124. self.block_meta_revs = self.editor.get_block_meta_revs().await.unwrap();
  125. }
  126. RowScript::UpdateBlock { changeset: change } => {
  127. self.editor.update_block(change).await.unwrap();
  128. }
  129. RowScript::AssertBlockCount(count) => {
  130. assert_eq!(self.editor.get_block_meta_revs().await.unwrap().len(), count);
  131. }
  132. RowScript::AssertBlock {
  133. block_index,
  134. row_count,
  135. start_row_index,
  136. } => {
  137. assert_eq!(self.block_meta_revs[block_index].row_count, row_count);
  138. assert_eq!(self.block_meta_revs[block_index].start_row_index, start_row_index);
  139. }
  140. RowScript::AssertBlockEqual { block_index, block } => {
  141. let blocks = self.editor.get_block_meta_revs().await.unwrap();
  142. let compared_block = blocks[block_index].clone();
  143. assert_eq!(compared_block, Arc::new(block));
  144. }
  145. }
  146. }
  147. async fn compare_cell_content(&self, cell_id: GridCellIdParams, field_type: FieldType, expected: String) {
  148. match field_type {
  149. FieldType::RichText => {
  150. let cell_data = self
  151. .editor
  152. .get_cell_bytes(&cell_id)
  153. .await
  154. .unwrap()
  155. .with_parser(TextCellDataParser())
  156. .unwrap();
  157. assert_eq!(cell_data.as_ref(), &expected);
  158. }
  159. FieldType::Number => {
  160. let field_rev = self.editor.get_field_rev(&cell_id.field_id).await.unwrap();
  161. let number_type_option = field_rev
  162. .get_type_option_entry::<NumberTypeOption>(FieldType::Number.into())
  163. .unwrap();
  164. let cell_data = self
  165. .editor
  166. .get_cell_bytes(&cell_id)
  167. .await
  168. .unwrap()
  169. .with_parser(NumberCellDataParser(number_type_option.format))
  170. .unwrap();
  171. assert_eq!(cell_data.to_string(), expected);
  172. }
  173. FieldType::DateTime => {
  174. let cell_data = self
  175. .editor
  176. .get_cell_bytes(&cell_id)
  177. .await
  178. .unwrap()
  179. .with_parser(DateCellDataParser())
  180. .unwrap();
  181. assert_eq!(cell_data.date, expected);
  182. }
  183. FieldType::SingleSelect => {
  184. let cell_data = self
  185. .editor
  186. .get_cell_bytes(&cell_id)
  187. .await
  188. .unwrap()
  189. .with_parser(SelectOptionCellDataParser())
  190. .unwrap();
  191. let select_option = cell_data.select_options.first().unwrap();
  192. assert_eq!(select_option.name, expected);
  193. }
  194. FieldType::MultiSelect => {
  195. let cell_data = self
  196. .editor
  197. .get_cell_bytes(&cell_id)
  198. .await
  199. .unwrap()
  200. .with_parser(SelectOptionCellDataParser())
  201. .unwrap();
  202. let s = cell_data
  203. .select_options
  204. .into_iter()
  205. .map(|option| option.name)
  206. .collect::<Vec<String>>()
  207. .join(SELECTION_IDS_SEPARATOR);
  208. assert_eq!(s, expected);
  209. }
  210. FieldType::Checkbox => {
  211. let cell_data = self
  212. .editor
  213. .get_cell_bytes(&cell_id)
  214. .await
  215. .unwrap()
  216. .with_parser(CheckboxCellDataParser())
  217. .unwrap();
  218. assert_eq!(cell_data.to_string(), expected);
  219. }
  220. FieldType::URL => {
  221. let cell_data = self
  222. .editor
  223. .get_cell_bytes(&cell_id)
  224. .await
  225. .unwrap()
  226. .with_parser(URLCellDataParser())
  227. .unwrap();
  228. assert_eq!(cell_data.content, expected);
  229. // assert_eq!(cell_data.url, expected);
  230. }
  231. }
  232. }
  233. }
  234. impl std::ops::Deref for GridRowTest {
  235. type Target = GridEditorTest;
  236. fn deref(&self) -> &Self::Target {
  237. &self.inner
  238. }
  239. }
  240. impl std::ops::DerefMut for GridRowTest {
  241. fn deref_mut(&mut self) -> &mut Self::Target {
  242. &mut self.inner
  243. }
  244. }
  245. pub struct CreateRowScriptBuilder<'a> {
  246. builder: GridRowTestBuilder<'a>,
  247. data_by_field_type: HashMap<FieldType, CellTestData>,
  248. output_by_field_type: HashMap<FieldType, CellTestOutput>,
  249. }
  250. impl<'a> CreateRowScriptBuilder<'a> {
  251. pub fn new(test: &'a GridRowTest) -> Self {
  252. Self {
  253. builder: test.row_builder(),
  254. data_by_field_type: HashMap::new(),
  255. output_by_field_type: HashMap::new(),
  256. }
  257. }
  258. pub fn insert(&mut self, field_type: FieldType, input: &str, expected: &str) {
  259. self.data_by_field_type.insert(
  260. field_type,
  261. CellTestData {
  262. input: input.to_string(),
  263. expected: expected.to_owned(),
  264. },
  265. );
  266. }
  267. pub fn insert_single_select_cell<F>(&mut self, f: F, expected: &str)
  268. where
  269. F: Fn(Vec<SelectOptionPB>) -> SelectOptionPB,
  270. {
  271. let field_id = self.builder.insert_single_select_cell(f);
  272. self.output_by_field_type.insert(
  273. FieldType::SingleSelect,
  274. CellTestOutput {
  275. field_id,
  276. expected: expected.to_owned(),
  277. },
  278. );
  279. }
  280. pub fn insert_multi_select_cell<F>(&mut self, f: F, expected: &str)
  281. where
  282. F: Fn(Vec<SelectOptionPB>) -> Vec<SelectOptionPB>,
  283. {
  284. let field_id = self.builder.insert_multi_select_cell(f);
  285. self.output_by_field_type.insert(
  286. FieldType::MultiSelect,
  287. CellTestOutput {
  288. field_id,
  289. expected: expected.to_owned(),
  290. },
  291. );
  292. }
  293. pub fn build(mut self) -> Vec<RowScript> {
  294. let mut scripts = vec![];
  295. let output_by_field_type = &mut self.output_by_field_type;
  296. for field_type in FieldType::iter() {
  297. let field_type: FieldType = field_type;
  298. if let Some(data) = self.data_by_field_type.get(&field_type) {
  299. let field_id = match field_type {
  300. FieldType::RichText => self.builder.insert_text_cell(&data.input),
  301. FieldType::Number => self.builder.insert_number_cell(&data.input),
  302. FieldType::DateTime => self.builder.insert_date_cell(&data.input),
  303. FieldType::Checkbox => self.builder.insert_checkbox_cell(&data.input),
  304. FieldType::URL => self.builder.insert_url_cell(&data.input),
  305. _ => "".to_owned(),
  306. };
  307. if !field_id.is_empty() {
  308. output_by_field_type.insert(
  309. field_type,
  310. CellTestOutput {
  311. field_id,
  312. expected: data.expected.clone(),
  313. },
  314. );
  315. }
  316. }
  317. }
  318. let row_rev = self.builder.build();
  319. let row_id = row_rev.id.clone();
  320. scripts.push(CreateRow { row_rev });
  321. for field_type in FieldType::iter() {
  322. if let Some(data) = output_by_field_type.get(&field_type) {
  323. let script = AssertCell {
  324. row_id: row_id.clone(),
  325. field_id: data.field_id.clone(),
  326. field_type,
  327. expected: data.expected.clone(),
  328. };
  329. scripts.push(script);
  330. }
  331. }
  332. scripts
  333. }
  334. }
  335. pub struct CellTestData {
  336. pub input: String,
  337. pub expected: String,
  338. }
  339. struct CellTestOutput {
  340. field_id: String,
  341. expected: String,
  342. }