210 lines
6.5 KiB
Rust
210 lines
6.5 KiB
Rust
use crate::application::dtos::cursor::PageCursor;
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use crate::application::dtos::recent_dto::{RecentCursor, RecentItemDto, RecentResourceRow};
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use crate::application::ports::recent_ports::{RecentItemsRepositoryPort, RecentItemsUseCase};
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use crate::common::errors::{DomainError, ErrorKind, Result};
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use crate::domain::services::authorization::ResourceKind;
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use crate::infrastructure::repositories::pg::RecentItemsPgRepository;
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use std::sync::Arc;
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use tracing::info;
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use uuid::Uuid;
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/// Implementation of the use case for managing recent items.
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///
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/// Depends on `RecentItemsRepositoryPort` (outbound port) instead
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/// of accessing `PgPool` directly, following the hexagonal architecture.
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pub struct RecentService {
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repo: Arc<RecentItemsPgRepository>,
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max_recent_items: i32,
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}
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impl RecentService {
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/// Create a new recent items service
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pub fn new(repo: Arc<RecentItemsPgRepository>, max_recent_items: i32) -> Self {
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Self {
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repo,
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max_recent_items: max_recent_items.clamp(1, 100),
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}
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}
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}
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impl RecentItemsUseCase for RecentService {
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/// Get recent items for a user
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async fn get_recent_items(
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&self,
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user_id: Uuid,
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limit: Option<i32>,
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) -> Result<Vec<RecentItemDto>> {
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info!("Getting recent items for user: {}", user_id);
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let limit_value = limit
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.unwrap_or(self.max_recent_items)
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.min(self.max_recent_items);
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let items = self.repo.get_recent_items(user_id, limit_value).await?;
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info!(
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"Retrieved {} recent items for user {}",
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items.len(),
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user_id
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);
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Ok(items)
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}
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/// Record access to an item
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async fn record_item_access(
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&self,
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user_id: Uuid,
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item_id: &str,
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item_type: &str,
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) -> Result<()> {
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info!(
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"Recording access to {} '{}' for user {}",
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item_type, item_id, user_id
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);
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if item_type != "file" && item_type != "folder" {
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return Err(DomainError::new(
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ErrorKind::InvalidInput,
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"RecentItems",
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"Item type must be 'file' or 'folder'",
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));
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}
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self.repo.upsert_access(user_id, item_id, item_type).await?;
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self.repo.prune(user_id, self.max_recent_items).await?;
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info!(
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"Successfully recorded access to {} '{}' for user {}",
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item_type, item_id, user_id
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);
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Ok(())
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}
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/// Remove an item from recent
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async fn remove_from_recent(
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&self,
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user_id: Uuid,
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item_id: &str,
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item_type: &str,
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) -> Result<bool> {
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info!(
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"Removing {} '{}' from recent for user {}",
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item_type, item_id, user_id
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);
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let removed = self.repo.remove_item(user_id, item_id, item_type).await?;
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info!(
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"{} {} '{}' from recent items for user {}",
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if removed {
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"Successfully removed"
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} else {
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"Not found"
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},
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item_type,
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item_id,
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user_id
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);
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Ok(removed)
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}
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/// Clear all recent items
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async fn clear_recent_items(&self, user_id: Uuid) -> Result<()> {
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info!("Clearing all recent items for user {}", user_id);
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self.repo.clear_all(user_id).await?;
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info!("Cleared all recent items for user {}", user_id);
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Ok(())
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}
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}
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impl RecentService {
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/// No authz needed — recent items are strictly user-scoped; the repository
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/// enforces `WHERE user_id = $1` so users can only see their own entries.
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///
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/// Returns `(rows, next_cursor_encoded)`.
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pub async fn list_resources_paged(
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&self,
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user_id: Uuid,
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limit: usize,
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cursor: Option<RecentCursor>,
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order_by: &str,
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kinds: Option<&[ResourceKind]>,
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reverse: bool,
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) -> Result<(Vec<RecentResourceRow>, Option<String>)> {
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// Fetch one extra row to detect whether a next page exists.
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let mut rows = self
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.repo
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.list_resources_paged(
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user_id,
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limit + 1,
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cursor.as_ref(),
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order_by,
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kinds,
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reverse,
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)
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.await?;
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let next_cursor = if rows.len() > limit {
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let last = &rows[limit - 1];
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let c = build_recent_cursor(last, order_by, reverse);
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rows.truncate(limit);
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Some(c.encode())
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} else {
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None
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};
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Ok((rows, next_cursor))
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}
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}
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/// Build the next-page cursor from the last row of the current page.
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/// `reverse` is stored in the cursor so subsequent pages use the same direction.
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fn build_recent_cursor(row: &RecentResourceRow, order_by: &str, reverse: bool) -> RecentCursor {
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match order_by {
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"name" => RecentCursor {
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order_by: "name".to_owned(),
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resource_id: row.resource_id,
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sort_str: row.sort_str.clone(), // LOWER(name)
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sort_int: row.sort_int, // folder_first
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sort_ts: None,
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reverse,
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},
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"type" => RecentCursor {
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order_by: "type".to_owned(),
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resource_id: row.resource_id,
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sort_str: row.sort_str.clone(), // LOWER(name)
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sort_int: row.sort_int, // type_order
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sort_ts: None,
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reverse,
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},
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"modified_at" => RecentCursor {
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order_by: "modified_at".to_owned(),
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resource_id: row.resource_id,
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sort_str: None,
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sort_int: None,
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sort_ts: row.sort_ts, // modified_at timestamp
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reverse,
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},
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"size" => RecentCursor {
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order_by: "size".to_owned(),
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resource_id: row.resource_id,
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sort_str: None,
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sort_int: row.sort_int, // size in bytes
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sort_ts: None,
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reverse,
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},
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"owner" => RecentCursor {
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order_by: "owner".to_owned(),
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resource_id: row.resource_id,
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sort_str: row.sort_str.clone(), // LOWER(username)
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sort_int: None,
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sort_ts: row.sort_ts, // accessed_at timestamp (secondary)
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reverse,
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},
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_ => RecentCursor {
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// default: accessed_at DESC
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order_by: "accessed_at".to_owned(),
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resource_id: row.resource_id,
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sort_str: None,
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sort_int: None,
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sort_ts: row.sort_ts, // accessed_at timestamp
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reverse,
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},
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}
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}
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