282 lines
10 KiB
Rust
282 lines
10 KiB
Rust
//! ProjectRepo 软删回收站 + 级联清理 的集成测试。
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//!
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//! 覆盖三类行为:
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//! 1. purge_with_descendants — 事务级联删 branches→releases→tasks→projects。
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//! 2. soft_delete / list_active / list_deleted / restore — 回收站生命周期。
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//! 3. allowed_columns_for 按表隔离 — update_field 误传跨表列名在白名单阶段被拒。
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use df_storage::crud::{BranchRepo, ProjectRepo, ReleaseRepo, TaskRepo};
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use df_storage::db::Database;
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use df_storage::models::{BranchRecord, ProjectRecord, ReleaseRecord, TaskRecord};
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// ---------- fixtures ----------
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fn now_ts() -> String {
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"1700000000000".to_string()
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}
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fn project(id: &str) -> ProjectRecord {
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ProjectRecord {
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id: id.to_string(),
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name: format!("proj-{id}"),
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description: "desc".to_string(),
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status: "active".to_string(),
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idea_id: None,
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path: None,
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stack: None,
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created_at: now_ts(),
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updated_at: now_ts(),
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}
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}
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fn task(id: &str, project_id: &str) -> TaskRecord {
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TaskRecord {
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id: id.to_string(),
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project_id: project_id.to_string(),
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title: format!("task-{id}"),
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description: "desc".to_string(),
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status: "todo".to_string(),
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priority: 1,
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branch_name: None,
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assignee: None,
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workflow_def_id: None,
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base_branch: None,
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review_rounds: 0,
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output_json: None,
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created_at: now_ts(),
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updated_at: now_ts(),
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}
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}
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fn release(id: &str, project_id: &str) -> ReleaseRecord {
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ReleaseRecord {
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id: id.to_string(),
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project_id: project_id.to_string(),
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version: "0.1.0".to_string(),
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status: "draft".to_string(),
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task_ids: "[]".to_string(),
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changelog: None,
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created_at: now_ts(),
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released_at: None,
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}
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}
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fn branch(id: &str, project_id: &str) -> BranchRecord {
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BranchRecord {
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id: id.to_string(),
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project_id: project_id.to_string(),
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task_id: None,
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name: format!("br-{id}"),
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base: "main".to_string(),
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status: "open".to_string(),
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created_at: now_ts(),
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updated_at: now_ts(),
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merged_at: None,
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}
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}
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async fn setup() -> (ProjectRepo, TaskRepo, ReleaseRepo, BranchRepo) {
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let db = Database::open_in_memory().await.expect("open_in_memory");
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(
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ProjectRepo::new(&db),
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TaskRepo::new(&db),
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ReleaseRepo::new(&db),
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BranchRepo::new(&db),
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)
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}
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// ============================================================
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// 1. purge_with_descendants — 级联删除
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// ============================================================
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#[tokio::test]
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async fn purge_with_descendants_removes_project_and_all_children() {
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let (projects, tasks, releases, branches) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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tasks.insert(task("t1", "p1")).await.unwrap();
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tasks.insert(task("t2", "p1")).await.unwrap();
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releases.insert(release("r1", "p1")).await.unwrap();
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branches.insert(branch("b1", "p1")).await.unwrap();
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branches.insert(branch("b2", "p1")).await.unwrap();
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// 另一个项目的子记录不应被波及(只删 p1 的)
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projects.insert(project("p2")).await.unwrap();
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tasks.insert(task("t3", "p2")).await.unwrap();
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let affected = projects.purge_with_descendants("p1").await.unwrap();
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assert!(affected, "应命中 p1");
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// 四表对应记录全消失
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assert!(projects.get_by_id("p1").await.unwrap().is_none());
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assert!(tasks.get_by_id("t1").await.unwrap().is_none());
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assert!(tasks.get_by_id("t2").await.unwrap().is_none());
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assert!(releases.get_by_id("r1").await.unwrap().is_none());
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assert!(branches.get_by_id("b1").await.unwrap().is_none());
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assert!(branches.get_by_id("b2").await.unwrap().is_none());
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// 邻居项目 p2 完好
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assert!(projects.get_by_id("p2").await.unwrap().is_some());
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assert!(tasks.get_by_id("t3").await.unwrap().is_some());
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}
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#[tokio::test]
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async fn purge_with_descendants_unknown_id_returns_false() {
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let (projects, _t, _r, _b) = setup().await;
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let affected = projects.purge_with_descendants("ghost").await.unwrap();
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assert!(!affected, "不存在的 id 不命中");
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}
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#[tokio::test]
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async fn purge_with_descendants_is_atomic_on_missing_child_table_row() {
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// 事务性验证:即使 project 存在但被删语句之间无冲突,purge 应整体成功或整体不变。
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// 这里验证 commit 成功路径下子表清空、父表删除;反向证明未部分提交(若部分提交,
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// projects 会在事务中途被删但 branches 残留 —— 通过重新 purge 验证幂等空操作)。
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let (projects, tasks, _releases, branches) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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tasks.insert(task("t1", "p1")).await.unwrap();
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branches.insert(branch("b1", "p1")).await.unwrap();
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assert!(projects.purge_with_descendants("p1").await.unwrap());
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// 事务已提交:父表与全部子表一致清空(不会出现父删子留)
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assert!(projects.get_by_id("p1").await.unwrap().is_none());
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assert!(tasks.get_by_id("t1").await.unwrap().is_none());
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assert!(branches.get_by_id("b1").await.unwrap().is_none());
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// 再次 purge 已不存在的 id → false,且无副作用
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assert!(!projects.purge_with_descendants("p1").await.unwrap());
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}
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// ============================================================
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// 2. soft_delete / list_active / list_deleted / restore
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// ============================================================
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#[tokio::test]
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async fn soft_delete_moves_project_out_of_active_into_deleted() {
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let (projects, _t, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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projects.insert(project("p2")).await.unwrap();
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let ok = projects.soft_delete("p1").await.unwrap();
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assert!(ok, "软删 p1 应命中");
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let active = projects.list_active().await.unwrap();
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let active_ids: Vec<_> = active.iter().map(|p| p.id.as_str()).collect();
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assert!(!active_ids.contains(&"p1"), "p1 不应在 active");
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assert!(active_ids.contains(&"p2"), "p2 仍在 active");
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let deleted = projects.list_deleted().await.unwrap();
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let deleted_ids: Vec<_> = deleted.iter().map(|p| p.id.as_str()).collect();
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assert!(deleted_ids.contains(&"p1"), "p1 应在 deleted");
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assert!(!deleted_ids.contains(&"p2"), "p2 不在 deleted");
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}
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#[tokio::test]
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async fn restore_moves_project_back_into_active() {
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let (projects, _t, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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projects.soft_delete("p1").await.unwrap();
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let ok = projects.restore("p1").await.unwrap();
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assert!(ok, "恢复 p1 应命中");
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let active_ids: Vec<_> = projects
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.list_active()
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.await
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.unwrap()
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.into_iter()
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.map(|p| p.id)
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.collect();
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assert!(active_ids.contains(&"p1".to_string()), "p1 恢复后回到 active");
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let deleted_ids: Vec<_> = projects
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.list_deleted()
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.await
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.unwrap()
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.into_iter()
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.map(|p| p.id)
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.collect();
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assert!(!deleted_ids.contains(&"p1".to_string()), "p1 恢复后离开 deleted");
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}
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#[tokio::test]
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async fn soft_delete_on_already_deleted_returns_false() {
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// WHERE deleted_at IS NULL 守卫:已删项二次软删不命中
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let (projects, _t, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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assert!(projects.soft_delete("p1").await.unwrap());
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// 第二次对已删项 → false(守卫生效)
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assert!(
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!projects.soft_delete("p1").await.unwrap(),
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"已删项二次软删应返回 false"
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);
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}
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#[tokio::test]
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async fn soft_delete_unknown_id_returns_false() {
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let (projects, _t, _r, _b) = setup().await;
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assert!(!projects.soft_delete("ghost").await.unwrap());
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}
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#[tokio::test]
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async fn restore_unknown_id_returns_false() {
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let (projects, _t, _r, _b) = setup().await;
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assert!(!projects.restore("ghost").await.unwrap());
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}
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// ============================================================
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// 3. allowed_columns_for — 按表隔离
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// ============================================================
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#[tokio::test]
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async fn update_field_rejects_cross_table_column_tasks_name() {
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// tasks 表白名单无 "name"(那是 projects/branches 的列)→ Err
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let (projects, tasks, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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tasks.insert(task("t1", "p1")).await.unwrap();
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let res = tasks.update_field("t1", "name", "x").await;
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assert!(res.is_err(), "tasks 表无 name 列,应被白名单拒绝");
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// 对照:tasks 的合法列 title 通过
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let ok = tasks.update_field("t1", "title", "renamed").await.unwrap();
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assert!(ok);
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let rec = tasks.get_by_id("t1").await.unwrap().unwrap();
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assert_eq!(rec.title, "renamed");
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}
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#[tokio::test]
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async fn update_field_rejects_tasks_status() {
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// D-260616-04 status 收口:status 已从 tasks 白名单移除,所有 status 改动须走
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// advance_status_atomic(CAS SQL 独立路径,不经通用 update_field)。update_field
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// 改 status 应在白名单阶段被拒(防 update_task IPC / AI 工具旁路绕过状态机与 review_rounds 累加)。
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let (projects, tasks, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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tasks.insert(task("t1", "p1")).await.unwrap();
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let res = tasks.update_field("t1", "status", "done").await;
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assert!(
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res.is_err(),
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"status 不在 tasks 白名单,应被拒(改走 advance_status_atomic)"
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);
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// 对照:status 未被改写,仍为初始值(task fixture 的初始 status)
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let rec = tasks.get_by_id("t1").await.unwrap().unwrap();
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assert_ne!(rec.status, "done", "白名单拒绝后 status 不应被改写");
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}
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#[tokio::test]
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async fn update_field_rejects_projects_deleted_at() {
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// deleted_at 是专用路径列(soft_delete/restore),不进通用白名单 → 拒绝
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let (projects, _t, _r, _b) = setup().await;
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projects.insert(project("p1")).await.unwrap();
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let res = projects.update_field("p1", "deleted_at", "123").await;
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assert!(
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res.is_err(),
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"deleted_at 不在 projects 白名单,应被拒(专用路径才能写)"
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);
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}
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