pe-tasks 0.1.0

Task management for Potential Expectations — structured work items, dependency DAG, lifecycle hooks, and agent tools
Documentation
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//! SurrealDB-backed task registry.
//!
//! This backend stores tasks and dependency edges in SurrealDB while preserving
//! the same [`TaskRegistry`] semantics as the in-memory and
//! file registries.

use std::collections::HashMap;
use std::path::Path;

use chrono::Utc;
use pe_core::PeError;
use pe_core::scope::ExecutionScope;
use surrealdb::Surreal;
use surrealdb::engine::any::Any;
use surrealdb::types::SurrealValue;

use crate::dependency::{self, DependencyType, TaskDependency};
use crate::lifecycle::{DefaultLifecycle, TaskLifecycle};
use crate::registry::{TaskFilter, TaskRegistry};
use crate::task::{Task, TaskId, TaskPriority, TaskStatus, TaskType};

const TASKS_SCHEMA: &str = "
DEFINE TABLE IF NOT EXISTS tasks SCHEMALESS;
DEFINE INDEX IF NOT EXISTS idx_tasks_task_id ON tasks FIELDS task_id UNIQUE;
DEFINE INDEX IF NOT EXISTS idx_tasks_status ON tasks FIELDS status;
DEFINE INDEX IF NOT EXISTS idx_tasks_type ON tasks FIELDS task_type;
DEFINE INDEX IF NOT EXISTS idx_tasks_agent ON tasks FIELDS agent_id;
DEFINE INDEX IF NOT EXISTS idx_tasks_assignee ON tasks FIELDS assignee;
DEFINE INDEX IF NOT EXISTS idx_tasks_parent ON tasks FIELDS parent_task_id;
DEFINE INDEX IF NOT EXISTS idx_tasks_deleted ON tasks FIELDS is_deleted;
";

const DEPENDENCIES_SCHEMA: &str = "
DEFINE TABLE IF NOT EXISTS task_dependencies SCHEMALESS;
DEFINE INDEX IF NOT EXISTS idx_task_deps_task ON task_dependencies FIELDS task_id;
DEFINE INDEX IF NOT EXISTS idx_task_deps_depends_on ON task_dependencies FIELDS depends_on_id;
DEFINE INDEX IF NOT EXISTS idx_task_deps_pair ON task_dependencies FIELDS task_id, depends_on_id;
";

/// SurrealDB-backed [`TaskRegistry`].
///
/// Scope is captured at construction time. Each operation reapplies the
/// captured namespace/database before querying so one shared SurrealDB
/// connection can serve multiple tenants without leaking task data.
pub struct SurrealTaskRegistry {
    db: Surreal<Any>,
    namespace: String,
    database: String,
    lifecycle: Box<dyn TaskLifecycle>,
}

impl SurrealTaskRegistry {
    /// Connect to any SurrealDB URL and initialize the task schema.
    ///
    /// Supported URL schemes follow SurrealDB's `Any` engine, for example:
    /// `mem://`, `surrealkv://path`, and server URLs enabled by the host
    /// feature set.
    pub async fn connect(url: &str, scope: &ExecutionScope) -> Result<Self, PeError> {
        let db = surrealdb::engine::any::connect(url)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("SurrealDB task registry connect to '{url}' failed: {error}"),
            })?;
        Self::from_existing(db, scope).await
    }

    /// Connect to an in-process memory-only SurrealDB instance.
    pub async fn connect_memory(scope: &ExecutionScope) -> Result<Self, PeError> {
        Self::connect("mem://", scope).await
    }

    /// Connect to an embedded SurrealKV database.
    pub async fn connect_embedded(
        path: impl AsRef<Path>,
        scope: &ExecutionScope,
    ) -> Result<Self, PeError> {
        let endpoint = format!("surrealkv://{}", path.as_ref().to_string_lossy());
        Self::connect(&endpoint, scope).await
    }

    /// Wrap an existing SurrealDB connection and initialize the task schema.
    pub async fn from_existing(db: Surreal<Any>, scope: &ExecutionScope) -> Result<Self, PeError> {
        Self::from_existing_with_lifecycle(db, scope, DefaultLifecycle).await
    }

    /// Wrap an existing SurrealDB connection with a custom lifecycle.
    pub async fn from_existing_with_lifecycle(
        db: Surreal<Any>,
        scope: &ExecutionScope,
        lifecycle: impl TaskLifecycle + 'static,
    ) -> Result<Self, PeError> {
        let registry = Self {
            db,
            namespace: scope.namespace().to_string(),
            database: scope.database().to_string(),
            lifecycle: Box::new(lifecycle),
        };
        registry.apply_scope().await?;
        registry.init_schema().await?;
        Ok(registry)
    }

    async fn apply_scope(&self) -> Result<(), PeError> {
        self.db
            .use_ns(&self.namespace)
            .use_db(&self.database)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task registry scope application failed: {error}"),
            })?;
        Ok(())
    }

    async fn init_schema(&self) -> Result<(), PeError> {
        self.db
            .query(TASKS_SCHEMA)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task schema init failed: {error}"),
            })?;
        self.db
            .query(DEPENDENCIES_SCHEMA)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task dependency schema init failed: {error}"),
            })?;
        Ok(())
    }

    async fn write_task(&self, task: &Task) -> Result<Task, PeError> {
        self.apply_scope().await?;
        let params = TaskWriteParams::from_task(task)?;
        let task_id = task.id.clone();

        self.db
            .query("DELETE FROM tasks WHERE task_id = $task_id")
            .bind(TaskIdParams {
                task_id: task_id.clone(),
            })
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task update delete failed: {error}"),
            })?;

        self.db
            .query(
                "CREATE tasks SET \
                    task_id = $task_id, \
                    task = $task, \
                    status = $status, \
                    task_type = $task_type, \
                    priority = $priority, \
                    agent_id = $agent_id, \
                    assignee = $assignee, \
                    parent_task_id = $parent_task_id, \
                    tags = $tags, \
                    is_deleted = $is_deleted, \
                    created_at = $created_at, \
                    updated_at = $updated_at, \
                    completed_at = $completed_at, \
                    deleted_at = $deleted_at",
            )
            .bind(params)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task update create failed: {error}"),
            })?;

        Ok(task.clone())
    }

    async fn fetch_task(
        &self,
        task_id: &TaskId,
        include_deleted: bool,
    ) -> Result<Option<Task>, PeError> {
        self.apply_scope().await?;
        let mut result = self
            .db
            .query("SELECT task FROM tasks WHERE task_id = $task_id LIMIT 1")
            .bind(TaskIdParams {
                task_id: task_id.clone(),
            })
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task get failed: {error}"),
            })?;

        let row: Option<TaskRow> = result.take(0).map_err(|error| PeError::Storage {
            details: format!("Task get deserialize failed: {error}"),
        })?;

        let Some(task) = row.map(|row| decode_task(row.task)).transpose()? else {
            return Ok(None);
        };

        if !include_deleted && task.deleted_at.is_some() {
            return Ok(None);
        }
        Ok(Some(task))
    }

    async fn fetch_all_tasks(&self, include_deleted: bool) -> Result<Vec<Task>, PeError> {
        self.apply_scope().await?;
        let query = if include_deleted {
            "SELECT task FROM tasks"
        } else {
            "SELECT task FROM tasks WHERE is_deleted = false"
        };
        let mut result = self
            .db
            .query(query)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task list failed: {error}"),
            })?;

        let rows: Vec<TaskRow> = result.take(0).map_err(|error| PeError::Storage {
            details: format!("Task list deserialize failed: {error}"),
        })?;

        rows.into_iter().map(|row| decode_task(row.task)).collect()
    }

    async fn fetch_all_dependencies(&self) -> Result<Vec<TaskDependency>, PeError> {
        self.apply_scope().await?;
        let mut result = self
            .db
            .query("SELECT dependency FROM task_dependencies")
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task dependency list failed: {error}"),
            })?;

        let rows: Vec<DependencyRow> = result.take(0).map_err(|error| PeError::Storage {
            details: format!("Task dependency list deserialize failed: {error}"),
        })?;

        rows.into_iter()
            .map(|row| decode_dependency(row.dependency))
            .collect()
    }

    fn collect_tree(root_id: &str, tasks: &[Task]) -> Vec<Task> {
        let mut result = Vec::new();
        let mut stack = vec![root_id.to_string()];
        while let Some(id) = stack.pop() {
            for task in tasks {
                if task.parent_task_id.as_deref() == Some(&id) && task.deleted_at.is_none() {
                    stack.push(task.id.clone());
                    result.push(task.clone());
                }
            }
        }
        result
    }
}

#[async_trait::async_trait]
impl TaskRegistry for SurrealTaskRegistry {
    async fn create(&self, task: Task) -> Result<Task, PeError> {
        let tasks = self.fetch_all_tasks(false).await?;
        dependency::validate_parent_link(&task, &tasks)?;
        let created = self.write_task(&task).await?;
        self.lifecycle.on_create(&created);
        Ok(created)
    }

    async fn get(&self, id: &TaskId) -> Result<Option<Task>, PeError> {
        self.fetch_task(id, false).await
    }

    async fn update(&self, task: &Task) -> Result<Task, PeError> {
        let mut updated = task.clone();
        updated.updated_at = Some(Utc::now());
        let tasks = self.fetch_all_tasks(false).await?;
        dependency::validate_parent_link(&updated, &tasks)?;
        self.write_task(&updated).await
    }

    async fn delete(&self, id: &TaskId) -> Result<bool, PeError> {
        let Some(mut task) = self.fetch_task(id, true).await? else {
            return Ok(false);
        };
        task.deleted_at = Some(Utc::now());
        task.updated_at = Some(Utc::now());
        self.write_task(&task).await?;
        Ok(true)
    }

    async fn restore(&self, id: &TaskId) -> Result<bool, PeError> {
        let Some(mut task) = self.fetch_task(id, true).await? else {
            return Ok(false);
        };
        if task.deleted_at.is_none() {
            return Ok(false);
        }
        task.deleted_at = None;
        task.updated_at = Some(Utc::now());
        self.write_task(&task).await?;
        Ok(true)
    }

    async fn update_status(
        &self,
        id: &TaskId,
        status: TaskStatus,
        result: Option<serde_json::Value>,
        error: Option<String>,
    ) -> Result<Task, PeError> {
        let mut task = self
            .fetch_task(id, false)
            .await?
            .ok_or_else(|| PeError::NodeNotFound { node: id.clone() })?;
        self.lifecycle.validate_transition(&task, &status)?;

        let old_status = task.status.clone();
        task.status = status.clone();
        task.updated_at = Some(Utc::now());
        if let Some(result) = result {
            task.result = Some(result);
        }
        if let Some(error) = error {
            task.error = Some(error);
        }
        if status == TaskStatus::Completed {
            task.completed_at = Some(Utc::now());
        }

        let updated = self.write_task(&task).await?;
        self.lifecycle.on_transition(&updated, &old_status);
        match &status {
            TaskStatus::Completed => self.lifecycle.on_complete(&updated),
            TaskStatus::Failed => self
                .lifecycle
                .on_fail(&updated, updated.error.as_deref().unwrap_or("")),
            TaskStatus::Cancelled => self.lifecycle.on_cancel(&updated),
            _ => {}
        }
        Ok(updated)
    }

    async fn list(&self, filter: &TaskFilter) -> Result<Vec<Task>, PeError> {
        let limit = if filter.limit == 0 { 100 } else { filter.limit };
        let tasks = self.fetch_all_tasks(filter.include_deleted).await?;
        Ok(tasks
            .into_iter()
            .filter(|task| filter.include_deleted || task.deleted_at.is_none())
            .filter(|task| filter.status.as_ref().is_none_or(|s| task.status == *s))
            .filter(|task| {
                filter
                    .task_type
                    .as_ref()
                    .is_none_or(|task_type| task.task_type == *task_type)
            })
            .filter(|task| {
                filter
                    .priority
                    .as_ref()
                    .is_none_or(|priority| task.priority == *priority)
            })
            .filter(|task| {
                filter
                    .agent_id
                    .as_ref()
                    .is_none_or(|agent| task.agent_id.as_ref() == Some(agent))
            })
            .filter(|task| {
                filter
                    .assignee
                    .as_ref()
                    .is_none_or(|assignee| task.assignee == *assignee)
            })
            .filter(|task| {
                filter
                    .parent_id
                    .as_ref()
                    .is_none_or(|parent| task.parent_task_id.as_ref() == Some(parent))
            })
            .filter(|task| {
                filter
                    .tag
                    .as_ref()
                    .is_none_or(|tag| task.tags.contains(tag))
            })
            .take(limit)
            .collect())
    }

    async fn get_subtasks(&self, parent_id: &TaskId) -> Result<Vec<Task>, PeError> {
        Ok(self
            .fetch_all_tasks(false)
            .await?
            .into_iter()
            .filter(|task| task.parent_task_id.as_ref() == Some(parent_id))
            .collect())
    }

    async fn get_tree(&self, root_id: &TaskId) -> Result<Vec<Task>, PeError> {
        let tasks = self.fetch_all_tasks(false).await?;
        Ok(Self::collect_tree(root_id, &tasks))
    }

    async fn add_dependency(&self, dep: TaskDependency) -> Result<(), PeError> {
        let tasks = self.fetch_all_tasks(false).await?;
        let deps = self.fetch_all_dependencies().await?;
        dependency::validate_dependency_endpoints(&dep, &tasks)?;
        dependency::validate_dependency_unique(&dep, &deps)?;
        if dependency::would_create_cycle(&dep.task_id, &dep.depends_on_id, &deps) {
            return Err(PeError::InvalidUpdate {
                details: format!(
                    "Adding dependency {} -> {} would create a cycle",
                    dep.task_id, dep.depends_on_id
                ),
            });
        }

        self.apply_scope().await?;
        self.db
            .query(
                "CREATE task_dependencies SET \
                    task_id = $task_id, \
                    depends_on_id = $depends_on_id, \
                    dependency_type = $dependency_type, \
                    dependency = $dependency, \
                    created_at = $created_at",
            )
            .bind(DependencyWriteParams::from_dependency(&dep)?)
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task dependency create failed: {error}"),
            })?;
        Ok(())
    }

    async fn remove_dependency(
        &self,
        task_id: &TaskId,
        depends_on_id: &TaskId,
    ) -> Result<(), PeError> {
        self.apply_scope().await?;
        self.db
            .query("DELETE FROM task_dependencies WHERE task_id = $task_id AND depends_on_id = $depends_on_id")
            .bind(DependencyPairParams {
                task_id: task_id.clone(),
                depends_on_id: depends_on_id.clone(),
            })
            .await
            .map_err(|error| PeError::Storage {
                details: format!("Task dependency delete failed: {error}"),
            })?;
        Ok(())
    }

    async fn get_dependencies(&self, task_id: &TaskId) -> Result<Vec<TaskDependency>, PeError> {
        Ok(self
            .fetch_all_dependencies()
            .await?
            .into_iter()
            .filter(|dep| dep.task_id == *task_id)
            .collect())
    }

    async fn get_dependents(&self, task_id: &TaskId) -> Result<Vec<TaskDependency>, PeError> {
        Ok(self
            .fetch_all_dependencies()
            .await?
            .into_iter()
            .filter(|dep| dep.depends_on_id == *task_id)
            .collect())
    }

    async fn get_ready_tasks(&self) -> Result<Vec<Task>, PeError> {
        let tasks = self.fetch_all_tasks(false).await?;
        let deps = self.fetch_all_dependencies().await?;
        let pending = tasks
            .iter()
            .filter(|task| task.status == TaskStatus::Pending)
            .map(|task| task.id.clone())
            .collect::<Vec<_>>();
        let statuses: HashMap<TaskId, TaskStatus> = tasks
            .iter()
            .map(|task| (task.id.clone(), task.status.clone()))
            .collect();
        let ready_ids = dependency::find_ready_tasks(&pending, &deps, &statuses);
        Ok(ready_ids
            .iter()
            .filter_map(|id| tasks.iter().find(|task| task.id == *id).cloned())
            .collect())
    }
}

#[derive(Debug, SurrealValue)]
struct TaskRow {
    task: serde_json::Value,
}

#[derive(Debug, SurrealValue)]
struct DependencyRow {
    dependency: serde_json::Value,
}

#[derive(SurrealValue)]
struct TaskIdParams {
    task_id: String,
}

#[derive(SurrealValue)]
struct DependencyPairParams {
    task_id: String,
    depends_on_id: String,
}

#[derive(SurrealValue)]
struct TaskWriteParams {
    task_id: String,
    task: serde_json::Value,
    status: String,
    task_type: String,
    priority: String,
    agent_id: Option<String>,
    assignee: String,
    parent_task_id: Option<String>,
    tags: Vec<String>,
    is_deleted: bool,
    created_at: String,
    updated_at: Option<String>,
    completed_at: Option<String>,
    deleted_at: Option<String>,
}

impl TaskWriteParams {
    fn from_task(task: &Task) -> Result<Self, PeError> {
        Ok(Self {
            task_id: task.id.clone(),
            task: serde_json::to_value(task).map_err(|error| PeError::Storage {
                details: format!("Task serialize failed: {error}"),
            })?,
            status: task_status_label(&task.status),
            task_type: task_type_label(&task.task_type),
            priority: task_priority_label(&task.priority),
            agent_id: task.agent_id.clone(),
            assignee: task.assignee.clone(),
            parent_task_id: task.parent_task_id.clone(),
            tags: task.tags.clone(),
            is_deleted: task.deleted_at.is_some(),
            created_at: task.created_at.to_rfc3339(),
            updated_at: task.updated_at.map(|dt| dt.to_rfc3339()),
            completed_at: task.completed_at.map(|dt| dt.to_rfc3339()),
            deleted_at: task.deleted_at.map(|dt| dt.to_rfc3339()),
        })
    }
}

#[derive(SurrealValue)]
struct DependencyWriteParams {
    task_id: String,
    depends_on_id: String,
    dependency_type: String,
    dependency: serde_json::Value,
    created_at: String,
}

impl DependencyWriteParams {
    fn from_dependency(dep: &TaskDependency) -> Result<Self, PeError> {
        Ok(Self {
            task_id: dep.task_id.clone(),
            depends_on_id: dep.depends_on_id.clone(),
            dependency_type: dependency_type_label(&dep.dependency_type),
            dependency: serde_json::to_value(dep).map_err(|error| PeError::Storage {
                details: format!("Task dependency serialize failed: {error}"),
            })?,
            created_at: dep.created_at.to_rfc3339(),
        })
    }
}

fn decode_task(value: serde_json::Value) -> Result<Task, PeError> {
    serde_json::from_value(value).map_err(|error| PeError::Storage {
        details: format!("Task deserialize failed: {error}"),
    })
}

fn decode_dependency(value: serde_json::Value) -> Result<TaskDependency, PeError> {
    serde_json::from_value(value).map_err(|error| PeError::Storage {
        details: format!("Task dependency deserialize failed: {error}"),
    })
}

fn task_status_label(status: &TaskStatus) -> String {
    match status {
        TaskStatus::Pending => "Pending",
        TaskStatus::InProgress => "InProgress",
        TaskStatus::Completed => "Completed",
        TaskStatus::Failed => "Failed",
        TaskStatus::Blocked => "Blocked",
        TaskStatus::Cancelled => "Cancelled",
    }
    .into()
}

fn task_type_label(task_type: &TaskType) -> String {
    match task_type {
        TaskType::System => "System",
        TaskType::Agent => "Agent",
        TaskType::Human => "Human",
        TaskType::Plan => "Plan",
    }
    .into()
}

fn task_priority_label(priority: &TaskPriority) -> String {
    match priority {
        TaskPriority::Urgent => "Urgent",
        TaskPriority::High => "High",
        TaskPriority::Medium => "Medium",
        TaskPriority::Low => "Low",
    }
    .into()
}

fn dependency_type_label(dependency_type: &DependencyType) -> String {
    match dependency_type {
        DependencyType::Blocks => "Blocks",
        DependencyType::Requires => "Requires",
        DependencyType::Related => "Related",
    }
    .into()
}

#[cfg(test)]
mod tests {
    use super::*;

    fn scope(tenant: &str) -> ExecutionScope {
        ExecutionScope::new(tenant, "user-1", "session-1", "thread-1")
    }

    #[tokio::test]
    async fn creates_lists_and_completes_tasks() {
        let registry = SurrealTaskRegistry::connect_memory(&scope("tasks-crud"))
            .await
            .unwrap();
        let task = registry
            .create(Task::agent_task("Persist task", "agent-1"))
            .await
            .unwrap();

        let listed = registry
            .list(&TaskFilter::default().with_agent("agent-1"))
            .await
            .unwrap();
        assert_eq!(listed.len(), 1);
        assert_eq!(listed[0].title, "Persist task");

        registry
            .update_status(&task.id, TaskStatus::InProgress, None, None)
            .await
            .unwrap();
        let completed = registry
            .update_status(
                &task.id,
                TaskStatus::Completed,
                Some(serde_json::json!({ "ok": true })),
                None,
            )
            .await
            .unwrap();
        assert_eq!(completed.status, TaskStatus::Completed);
        assert!(completed.completed_at.is_some());
    }

    #[tokio::test]
    async fn preserves_tasks_across_registry_instances_on_same_database() {
        let db = surrealdb::engine::any::connect("mem://").await.unwrap();
        let scope = scope("tasks-same-db");
        let first = SurrealTaskRegistry::from_existing(db.clone(), &scope)
            .await
            .unwrap();
        let created = first
            .create(Task::new("Stored in SurrealDB"))
            .await
            .unwrap();
        drop(first);

        let second = SurrealTaskRegistry::from_existing(db, &scope)
            .await
            .unwrap();
        let fetched = second.get(&created.id).await.unwrap().unwrap();
        assert_eq!(fetched.title, "Stored in SurrealDB");
    }

    #[tokio::test]
    async fn isolates_tasks_by_execution_scope_namespace() {
        let db = surrealdb::engine::any::connect("mem://").await.unwrap();
        let tenant_a = SurrealTaskRegistry::from_existing(db.clone(), &scope("tenant-a"))
            .await
            .unwrap();
        let tenant_b = SurrealTaskRegistry::from_existing(db, &scope("tenant-b"))
            .await
            .unwrap();

        tenant_a
            .create(Task::new("Only tenant A can see this"))
            .await
            .unwrap();

        assert_eq!(
            tenant_a.list(&TaskFilter::default()).await.unwrap().len(),
            1
        );
        assert_eq!(
            tenant_b.list(&TaskFilter::default()).await.unwrap().len(),
            0
        );
    }

    #[tokio::test]
    async fn tracks_dependencies_and_ready_tasks() {
        let registry = SurrealTaskRegistry::connect_memory(&scope("tasks-ready"))
            .await
            .unwrap();
        let a = registry.create(Task::new("A")).await.unwrap();
        let b = registry.create(Task::new("B")).await.unwrap();
        let c = registry.create(Task::new("C")).await.unwrap();

        registry
            .add_dependency(TaskDependency::new(&c.id, &a.id, DependencyType::Blocks))
            .await
            .unwrap();

        let ready = registry.get_ready_tasks().await.unwrap();
        let ready_ids = ready
            .iter()
            .map(|task| task.id.as_str())
            .collect::<Vec<_>>();
        assert!(ready_ids.contains(&a.id.as_str()));
        assert!(ready_ids.contains(&b.id.as_str()));
        assert!(!ready_ids.contains(&c.id.as_str()));

        registry
            .update_status(&a.id, TaskStatus::InProgress, None, None)
            .await
            .unwrap();
        registry
            .update_status(&a.id, TaskStatus::Completed, None, None)
            .await
            .unwrap();

        let ready = registry.get_ready_tasks().await.unwrap();
        let ready_ids = ready
            .iter()
            .map(|task| task.id.as_str())
            .collect::<Vec<_>>();
        assert!(ready_ids.contains(&c.id.as_str()));
    }

    #[tokio::test]
    async fn validates_dependency_endpoints_and_duplicates() {
        let registry = SurrealTaskRegistry::connect_memory(&scope("tasks-dep-validation"))
            .await
            .unwrap();
        let blocker = registry.create(Task::new("Blocker")).await.unwrap();
        let blocked = registry.create(Task::new("Blocked")).await.unwrap();

        let err = registry
            .add_dependency(TaskDependency::new(
                &blocked.id,
                "missing",
                DependencyType::Blocks,
            ))
            .await
            .unwrap_err();
        assert!(matches!(err, PeError::NodeNotFound { node } if node == "missing"));

        registry
            .add_dependency(TaskDependency::new(
                &blocked.id,
                &blocker.id,
                DependencyType::Blocks,
            ))
            .await
            .unwrap();

        let err = registry
            .add_dependency(TaskDependency::new(
                &blocked.id,
                &blocker.id,
                DependencyType::Related,
            ))
            .await
            .unwrap_err();
        assert!(
            matches!(err, PeError::InvalidUpdate { details } if details.contains("already exists"))
        );
    }

    #[tokio::test]
    async fn validates_parent_links() {
        let registry = SurrealTaskRegistry::connect_memory(&scope("tasks-parent-validation"))
            .await
            .unwrap();

        let err = registry
            .create(Task::new("Orphan").with_parent("missing-parent"))
            .await
            .unwrap_err();
        assert!(matches!(err, PeError::NodeNotFound { node } if node == "missing-parent"));

        let parent = registry.create(Task::new("Parent")).await.unwrap();
        let child = registry
            .create(Task::new("Child").with_parent(&parent.id))
            .await
            .unwrap();
        let mut updated_parent = parent.clone();
        updated_parent.parent_task_id = Some(child.id.clone());

        let err = registry.update(&updated_parent).await.unwrap_err();
        assert!(matches!(err, PeError::InvalidUpdate { .. }));

        let stored_parent = registry.get(&parent.id).await.unwrap().unwrap();
        assert!(stored_parent.parent_task_id.is_none());
    }

    #[tokio::test]
    async fn soft_deletes_and_restores_tasks() {
        let registry = SurrealTaskRegistry::connect_memory(&scope("tasks-delete"))
            .await
            .unwrap();
        let task = registry.create(Task::new("Temporary")).await.unwrap();

        assert!(registry.delete(&task.id).await.unwrap());
        assert!(registry.get(&task.id).await.unwrap().is_none());
        assert_eq!(
            registry.list(&TaskFilter::default()).await.unwrap().len(),
            0
        );
        assert_eq!(
            registry
                .list(&TaskFilter::default().including_deleted())
                .await
                .unwrap()
                .len(),
            1
        );

        assert!(registry.restore(&task.id).await.unwrap());
        assert!(registry.get(&task.id).await.unwrap().is_some());
    }
}