Files
Oxicloud/src/application/services/trash_service.rs
T
Claude e0efaed549 Harden blob GC and supervise the content-index worker
Deduplication GC (garbage_collect, Phase 2):
- Add an orphan grace period before a ref_count=0 blob's backing file is
  physically deleted, mirroring git's gc.pruneExpire. New
  storage.blobs.orphaned_at records when a blob last reached ref_count 0;
  the delete trigger and every decrement / 0-ref insert path stamp it,
  every re-reference clears it.
- Cross-check that no manifest lists the chunk and no file points at the
  blob before deleting it (mirrors Phase 1's file check), so a stale
  ref_count can only delay collection, never delete live content.
- Unlink the backing files with bounded parallel fan-out.

Together these close a TOCTOU where a concurrent upload of identical
content could re-reference a chunk in the window between the GC row
delete committing and the backing file being unlinked. Individual file
deletes still reclaim eagerly; only bulk empty-trash and the periodic
sweep observe the grace window.

Trash: match ErrorKind::NotFound instead of substring-matching the error
message when treating an already-deleted item as success.

Content-index worker: supervise the drain loop and restart it with
backoff after a panic, instead of letting a panic silently freeze the
search index while the dirty queue grows unbounded.

Adds migration 20260802000000_blob_gc_grace.sql and an integration test
covering the grace window and reference cross-checks.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0172rsVwzTwD216R9HXT2aU4
2026-06-19 09:37:51 +00:00

879 lines
36 KiB
Rust

use std::sync::Arc;
use tracing::{debug, error, info, instrument, warn};
use uuid::Uuid;
use crate::application::dtos::cursor::PageCursor;
use crate::application::dtos::display_helpers::{
category_for, format_file_size, icon_class_for, icon_special_class_for,
};
use crate::application::dtos::file_dto::FileDto;
use crate::application::dtos::folder_dto::FolderDto;
use crate::application::dtos::grant_dto::{ResourceContentDto, ResourceTypeDto};
use crate::application::dtos::trash_dto::{
TrashCursor, TrashResourceItemDto, TrashResourceRow, TrashedItemDto,
};
use crate::application::ports::authorization_ports::AuthorizationEngine;
use crate::application::ports::file_lifecycle::FileLifecycleHook;
use crate::application::ports::storage_ports::{FileReadPort, FileWritePort};
use crate::application::ports::trash_ports::TrashUseCase;
use crate::common::errors::{DomainError, ErrorKind, Result};
use crate::domain::entities::file::File;
use crate::domain::entities::trashed_item::{TrashedItem, TrashedItemType};
use crate::domain::repositories::folder_repository::FolderRepository;
use crate::domain::repositories::trash_repository::TrashRepository;
use crate::domain::services::authorization::ResourceKind;
use crate::domain::services::authorization::{Permission, Resource, Subject};
use crate::infrastructure::repositories::pg::file_blob_read_repository::FileBlobReadRepository;
use crate::infrastructure::repositories::pg::file_blob_write_repository::FileBlobWriteRepository;
use crate::infrastructure::repositories::pg::folder_db_repository::FolderDbRepository;
use crate::infrastructure::repositories::pg::trash_db_repository::TrashDbRepository;
use crate::infrastructure::services::dedup_service::DedupService;
use crate::infrastructure::services::file_content_cache::FileContentCache;
use crate::infrastructure::services::pg_acl_engine::PgAclEngine;
/**
* Application service for trash operations.
*
* The TrashService implements the trash management functionality in the application layer,
* handling movement of files and folders to trash, restoration from trash, and permanent
* deletion. It orchestrates interactions between the domain entities and infrastructure
* repositories while enforcing business rules like retention policies.
*
* This service follows the Clean Architecture pattern by:
* - Depending on application ports rather than domain/infrastructure traits
* - Orchestrating domain operations without containing domain logic
* - Exposing its functionality through the TrashUseCase port
*/
pub struct TrashService {
/// Repository for trash-specific operations like listing and retrieving trashed items
trash_repository: Arc<TrashDbRepository>,
/// Port for file read operations (get file metadata)
file_read_port: Arc<FileBlobReadRepository>,
/// Port for file write operations (trash, restore, delete)
file_write_port: Arc<FileBlobWriteRepository>,
/// Port for folder operations (get folder, trash, restore, delete)
folder_storage_port: Arc<FolderDbRepository>,
/// Dedup service — garbage-collected after bulk trash empty to clean up
/// orphaned blob files and thumbnails that the PG trigger cannot reach.
dedup_service: Arc<DedupService>,
/// Lifecycle hook dispatcher — fired on file permanently deleted.
file_deleted_hook: Option<Arc<dyn FileLifecycleHook>>,
/// Content cache — invalidated when files are permanently deleted from trash.
content_cache: Option<Arc<FileContentCache>>,
/// Authz engine
authz: Arc<PgAclEngine>,
/// Number of days items should be kept in trash before automatic cleanup
retention_days: u32,
}
impl TrashService {
#[allow(clippy::too_many_arguments)]
pub fn new(
trash_repository: Arc<TrashDbRepository>,
file_read_port: Arc<FileBlobReadRepository>,
file_write_port: Arc<FileBlobWriteRepository>,
folder_storage_port: Arc<FolderDbRepository>,
retention_days: u32,
dedup_service: Arc<DedupService>,
content_cache: Option<Arc<FileContentCache>>,
authz: Arc<PgAclEngine>,
) -> Self {
Self {
trash_repository,
file_read_port,
file_write_port,
folder_storage_port,
dedup_service,
file_deleted_hook: None,
content_cache,
authz,
retention_days,
}
}
/// Sets the lifecycle hook dispatcher (thumbnails, audio metadata, …).
pub fn with_file_deleted_hook(mut self, hook: Arc<dyn FileLifecycleHook>) -> Self {
self.file_deleted_hook = Some(hook);
self
}
/// Converts a TrashedItem entity to a DTO
fn to_dto(&self, item: TrashedItem) -> TrashedItemDto {
// Calculate days_until_deletion before moving item fields
let days_until_deletion = item.days_until_deletion();
// Determine display fields based on item type
let (category, icon_class, icon_special_class) = match item.item_type() {
TrashedItemType::Folder => (
"Folder".to_string(),
"fas fa-folder".to_string(),
"folder-icon".to_string(),
),
TrashedItemType::File => {
let name = item.name();
// Use empty MIME type to leverage extension fallback
let category = category_for(name, "").to_string();
let icon_class = icon_class_for(name, "").to_string();
let icon_special_class = icon_special_class_for(name, "").to_string();
(category, icon_class, icon_special_class)
}
};
TrashedItemDto {
id: item.id().to_string(),
original_id: item.original_id().to_string(),
item_type: match item.item_type() {
TrashedItemType::File => "file".to_string(),
TrashedItemType::Folder => "folder".to_string(),
},
name: item.name().to_string(),
original_path: item.original_path().to_string(),
trashed_at: item.trashed_at(),
days_until_deletion,
category,
icon_class,
icon_special_class,
}
}
}
impl TrashUseCase for TrashService {
#[instrument(skip(self))]
async fn get_trash_items(&self, user_id: Uuid) -> Result<Vec<TrashedItemDto>> {
debug!("Getting trash items for user: {}", user_id);
let items = self.trash_repository.get_trash_items(&user_id).await?;
let dtos = items.into_iter().map(|item| self.to_dto(item)).collect();
Ok(dtos)
}
// TODO: change item_type into Resource enum
#[instrument(skip(self))]
async fn move_to_trash(&self, item_id: &str, item_type: &str, user_id: Uuid) -> Result<()> {
info!(
"Moving to trash: type={}, id={}, user={}",
item_type, item_id, user_id
);
debug!("User UUID validation: {}", user_id);
// Note: We now verify file/folder ownership BEFORE moving to trash.
// This prevents users from trashing items they do not own (IDOR).
// Parse UUIDs with detailed error handling
debug!("Validating item UUID: {}", item_id);
let item_uuid = match Uuid::parse_str(item_id) {
Ok(uuid) => {
debug!("Valid item UUID: {}", uuid);
uuid
}
Err(e) => {
error!("Invalid item UUID: {} - Error: {}", item_id, e);
return Err(DomainError::validation_error(format!(
"Invalid item ID: {}",
e
)));
}
};
let user_uuid = user_id;
match item_type {
"file" => {
info!("Processing file to move to trash: {}", item_id);
let file_id = Uuid::parse_str(item_id)
.map_err(|_| DomainError::not_found("File", item_id))?;
self.authz
.require(
Subject::User(user_id),
Permission::Delete,
Resource::File(file_id),
)
.await?;
// Authz already passed — use the non-owner-scoped read so that
// grantees with Delete permission can trash files they don't own.
// The file's user_id in storage.files is unchanged, so the item
// will appear in the original owner's trash view.
let file = match self.file_read_port.get_file(item_id).await {
Ok(file) => {
debug!("File found: {} ({})", file.name(), item_id);
file
}
Err(e) => {
error!("Error getting file: {} - {}", item_id, e);
return Err(DomainError::new(
ErrorKind::NotFound,
"File",
format!("Error retrieving file {}: {}", item_id, e),
));
}
};
let original_path = file.storage_path().to_string();
debug!("Original file path: {}", original_path);
debug!("Creating TrashedItem object for the file");
let trashed_item = TrashedItem::new(
item_uuid,
user_uuid,
TrashedItemType::File,
file.name().to_string(),
original_path,
self.retention_days,
);
debug!(
"TrashedItem created successfully: {} -> {}",
file.name(),
trashed_item.id()
);
// First add to trash index to register the item
info!("Adding file {} to trash index", item_id);
match self.trash_repository.add_to_trash(&trashed_item).await {
Ok(_) => {
debug!("File added to trash index successfully");
}
Err(e) => {
error!("Error adding file to trash index: {}", e);
return Err(DomainError::internal_error(
"TrashRepository",
format!("Failed to add file to trash: {}", e),
));
}
};
// Then physically move the file to trash
info!("Physically moving file to trash: {}", item_id);
match self.file_write_port.move_to_trash(item_id).await {
Ok(_) => {
debug!("File physically moved to trash successfully: {}", item_id);
}
Err(e) => {
error!("Error physically moving file to trash: {} - {}", item_id, e);
return Err(DomainError::new(
ErrorKind::InternalError,
"File",
format!("Error moving file {} to trash: {}", item_id, e),
));
}
}
info!("File completely moved to trash: {}", item_id);
Ok(())
}
"folder" => {
// check deletion permition
let folder_id = Uuid::parse_str(item_id)
.map_err(|_| DomainError::not_found("Folder", item_id))?;
self.authz
.require(
Subject::User(user_id),
Permission::Delete,
Resource::Folder(folder_id),
)
.await?;
let folder = self
.folder_storage_port
.get_folder(item_id)
.await
.map_err(|e| {
DomainError::new(
ErrorKind::NotFound,
"Folder",
format!("Error retrieving folder {}: {}", item_id, e),
)
})?;
let original_path = folder.storage_path().to_string();
let trashed_item = TrashedItem::new(
item_uuid,
user_uuid,
TrashedItemType::Folder,
folder.name().to_string(),
original_path,
self.retention_days,
);
// First add to trash index to register the item
debug!("Adding folder {} to trash repository", item_id);
match self.trash_repository.add_to_trash(&trashed_item).await {
Ok(_) => debug!("Successfully added folder to trash repository"),
Err(e) => {
error!("Failed to add folder to trash repository: {}", e);
return Err(DomainError::internal_error(
"TrashRepository",
format!("Failed to add folder to trash: {}", e),
));
}
};
// Then physically move the folder to trash
self.folder_storage_port
.move_to_trash(item_id)
.await
.map_err(|e| {
DomainError::new(
ErrorKind::InternalError,
"Folder",
format!("Error moving folder {} to trash: {}", item_id, e),
)
})?;
debug!("Folder moved to trash: {}", item_id);
Ok(())
}
_ => Err(DomainError::validation_error(format!(
"Invalid item type: {}",
item_type
))),
}
}
#[instrument(skip(self))]
async fn restore_item(&self, trash_id: &str, user_id: Uuid) -> Result<()> {
info!("Restoring item {} for user {}", trash_id, user_id);
let trash_uuid = match Uuid::parse_str(trash_id) {
Ok(id) => {
info!("Trash UUID parsed successfully: {}", id);
id
}
Err(e) => {
error!("Invalid trash ID format: {} - {}", trash_id, e);
return Err(DomainError::validation_error(format!(
"Invalid trash ID: {}",
e
)));
}
};
let user_uuid = user_id;
// Get the trash item
info!("Retrieving trash item from repository: ID={}", trash_id);
let item_result = self
.trash_repository
.get_trash_item(&trash_uuid, &user_uuid)
.await;
match item_result {
Ok(Some(item)) => {
info!(
"Found item in trash: ID={}, Type={:?}, OriginalID={}",
trash_id,
item.item_type(),
item.original_id()
);
// Restore based on type
match item.item_type() {
TrashedItemType::File => {
// Restore the file to its original location
let file_id = item.original_id().to_string();
let original_path = item.original_path().to_string();
info!(
"Restoring file from trash: ID={}, OriginalPath={}",
file_id, original_path
);
match self
.file_write_port
.restore_from_trash(&file_id, &original_path)
.await
{
Ok(_) => {
info!("Successfully restored file from trash: {}", file_id);
}
Err(e) => {
// Check if the error is because the file is not found
if format!("{}", e).contains("not found") {
info!(
"File not found in trash, may already have been restored: {}",
file_id
);
// We continue so we can clean up the trash entry
} else {
// Return error for other kinds of errors
error!("Error restoring file from trash: {} - {}", file_id, e);
return Err(DomainError::new(
ErrorKind::InternalError,
"File",
format!(
"Error restoring file {} from trash: {}",
file_id, e
),
));
}
}
}
}
TrashedItemType::Folder => {
// Restore the folder to its original location
let folder_id = item.original_id().to_string();
let original_path = item.original_path().to_string();
info!(
"Restoring folder from trash: ID={}, OriginalPath={}",
folder_id, original_path
);
match self
.folder_storage_port
.restore_from_trash(&folder_id, &original_path)
.await
{
Ok(_) => {
info!("Successfully restored folder from trash: {}", folder_id);
}
Err(e) => {
// Check if the error is because the folder is not found
if format!("{}", e).contains("not found") {
info!(
"Folder not found in trash, may already have been restored: {}",
folder_id
);
// We continue so we can clean up the trash entry
} else {
// Return error for other kinds of errors
error!(
"Error restoring folder from trash: {} - {}",
folder_id, e
);
return Err(DomainError::new(
ErrorKind::InternalError,
"Folder",
format!(
"Error restoring folder {} from trash: {}",
folder_id, e
),
));
}
}
}
}
}
// Always remove the item from the trash index to maintain consistency
info!(
"Removing item from trash index after restoration: {}",
trash_id
);
match self
.trash_repository
.restore_from_trash(&trash_uuid, &user_uuid)
.await
{
Ok(_) => {
info!("Successfully removed entry from trash index: {}", trash_id);
}
Err(e) => {
error!(
"Error removing entry from trash index: {} - {}",
trash_id, e
);
return Err(DomainError::new(
ErrorKind::InternalError,
"Trash",
format!("Error removing trash entry after restoration: {}", e),
));
}
}
info!("Item successfully restored from trash: {}", trash_id);
Ok(())
}
Ok(None) => {
// If the item isn't found in trash, we can just return success
info!(
"Item not found in trash index, considering as already restored: {}",
trash_id
);
Ok(())
}
Err(e) => {
// Something went wrong with the repository
error!(
"Error retrieving item from trash repository: {} - {}",
trash_id, e
);
Err(e)
}
}
}
#[instrument(skip(self))]
async fn delete_permanently(&self, trash_id: &str, user_id: Uuid) -> Result<()> {
info!(
"Permanently deleting item {} for user {}",
trash_id, user_id
);
let trash_uuid = match Uuid::parse_str(trash_id) {
Ok(id) => {
info!("Trash UUID parsed successfully: {}", id);
id
}
Err(e) => {
error!("Invalid trash ID format: {} - {}", trash_id, e);
return Err(DomainError::validation_error(format!(
"Invalid trash ID: {}",
e
)));
}
};
let user_uuid = user_id;
// Get the trash item
info!("Retrieving trash item from repository: ID={}", trash_id);
let item_result = self
.trash_repository
.get_trash_item(&trash_uuid, &user_uuid)
.await;
match item_result {
Ok(Some(item)) => {
info!(
"Found item in trash: ID={}, Type={:?}, OriginalID={}",
trash_id,
item.item_type(),
item.original_id()
);
// Permanently delete based on type
match item.item_type() {
TrashedItemType::File => {
// Permanently delete the file
let file_id = item.original_id().to_string();
info!("Permanently deleting file: {}", file_id);
match self.file_write_port.delete_file_permanently(&file_id).await {
Ok(_) => {
info!("Successfully deleted file permanently: {}", file_id);
// Invalidate content cache for the deleted file.
if let Some(cc) = &self.content_cache {
cc.invalidate(&file_id).await;
}
}
Err(e) => {
// File already gone — still remove the trash index
// entry. Match on the typed error kind, not the
// message text, so a reworded message can't
// silently turn this into a hard failure.
if e.kind == ErrorKind::NotFound {
info!(
"File not found, may already have been deleted: {}",
file_id
);
} else {
// Return error for other types of errors
error!("Error permanently deleting file: {} - {}", file_id, e);
return Err(DomainError::new(
ErrorKind::InternalError,
"File",
format!(
"Error deleting file {} permanently: {}",
file_id, e
),
));
}
}
}
if let Some(hook) = &self.file_deleted_hook {
hook.on_file_deleted(&file_id);
}
}
TrashedItemType::Folder => {
// Permanently delete the folder
let folder_id = item.original_id().to_string();
info!("Permanently deleting folder: {}", folder_id);
match self
.folder_storage_port
.delete_folder_permanently(&folder_id)
.await
{
Ok(_) => {
info!("Successfully deleted folder permanently: {}", folder_id);
}
Err(e) => {
// Folder already gone — still remove the trash
// index entry. Typed-kind match (see file branch).
if e.kind == ErrorKind::NotFound {
info!(
"Folder not found, may already have been deleted: {}",
folder_id
);
} else {
// Return error for other types of errors
error!(
"Error permanently deleting folder: {} - {}",
folder_id, e
);
return Err(DomainError::new(
ErrorKind::InternalError,
"Folder",
format!(
"Error deleting folder {} permanently: {}",
folder_id, e
),
));
}
}
}
}
}
// Always remove the item from trash index to maintain consistency
info!("Removing entry from trash index: {}", trash_id);
match self
.trash_repository
.delete_permanently(&trash_uuid, &user_uuid)
.await
{
Ok(_) => {
info!("Successfully removed entry from trash index: {}", trash_id);
}
Err(e) => {
error!(
"Error removing entry from trash index: {} - {}",
trash_id, e
);
return Err(DomainError::new(
ErrorKind::InternalError,
"Trash",
format!("Error removing trash entry: {}", e),
));
}
};
info!("Item permanently deleted from trash: {}", trash_id);
Ok(())
}
Ok(None) => {
// If the item isn't found in trash, we can just return success
info!(
"Item not found in trash, considering as already deleted: {}",
trash_id
);
Ok(())
}
Err(e) => {
// Something went wrong with the repository
error!(
"Error retrieving item from trash repository: {} - {}",
trash_id, e
);
Err(e)
}
}
}
#[instrument(skip(self))]
async fn empty_trash(&self, user_id: Uuid) -> Result<()> {
info!("Emptying trash for user {}", user_id);
// Collect ALL trashed file IDs BEFORE bulk-deleting so hooks (thumbnail
// cleanup, etc.) can run afterward. We use get_all_trashed_file_ids (not
// get_trash_items) because the trash_items view excludes files inside a
// trashed folder — those files will still be deleted by clear_trash via
// the folder CASCADE, but their hooks would otherwise be missed.
let trashed_file_ids: Vec<String> = if self.file_deleted_hook.is_some() {
match self
.trash_repository
.get_all_trashed_file_ids(&user_id)
.await
{
Ok(ids) => ids,
Err(e) => {
warn!("Could not list trashed files for hook cleanup: {}", e);
Vec::new()
}
}
} else {
Vec::new()
};
// clear_trash() performs bulk SQL DELETEs in 2 queries:
// 1. DELETE FROM storage.files WHERE user_id = $1 AND is_trashed = TRUE
// 2. DELETE FROM storage.folders WHERE user_id = $1 AND is_trashed = TRUE
//
// Folder deletion cascades (FK ON DELETE CASCADE) to child folders and
// their files. The PG trigger `trg_files_decrement_blob_ref` automatically
// decrements blob ref_counts for every deleted file row.
//
// Finally it clears the trash_items index for the user.
self.trash_repository.clear_trash(&user_id).await?;
// The PG trigger decremented ref_counts but cannot delete disk files or
// thumbnails. Run garbage_collect() to remove any blobs whose ref_count
// reached 0, along with their blob-keyed thumbnail files.
if let Err(e) = self.dedup_service.garbage_collect().await {
warn!("empty_trash: garbage_collect failed: {:?}", e);
}
// Invalidate content cache for all permanently deleted files.
if let Some(cc) = &self.content_cache {
for file_id in &trashed_file_ids {
cc.invalidate(file_id).await;
}
}
if let Some(hook) = &self.file_deleted_hook {
for file_id in &trashed_file_ids {
hook.on_file_deleted(file_id);
}
}
info!("Trash emptied for user {}", user_id);
Ok(())
}
}
// ════════════════════════════════════════════════════════════════════════════
// Cursor-paginated trash listing (GET /api/trash/resources)
// ════════════════════════════════════════════════════════════════════════════
impl TrashService {
/// Cursor-paginated list of the user's trashed resources.
///
/// No `authz.require()` here — trashed items are strictly user-scoped and
/// the repository enforces `WHERE user_id = $1`. This matches the pattern
/// used by favorites and recent listing endpoints. Mutations (restore,
/// delete permanently, move to trash) keep their per-item authz checks.
///
/// Returns `(page items, next_cursor_encoded)`.
pub async fn list_resources_paged(
&self,
user_id: Uuid,
limit: usize,
cursor: Option<TrashCursor>,
order_by: &str,
kinds: Option<&[ResourceKind]>,
reverse: bool,
) -> Result<(Vec<TrashResourceItemDto>, Option<String>)> {
// Fetch one extra row to detect whether a next page exists.
let mut rows = self
.trash_repository
.list_resources_paged(
user_id,
limit + 1,
cursor.as_ref(),
order_by,
kinds,
reverse,
)
.await?;
let next_cursor = if rows.len() > limit {
let last = &rows[limit - 1];
let c = build_trash_cursor(last, order_by, reverse);
rows.truncate(limit);
Some(c.encode())
} else {
None
};
let items: Vec<TrashResourceItemDto> = rows.into_iter().map(row_to_item_dto).collect();
Ok((items, next_cursor))
}
}
/// Build the next-page cursor from the last row of the current page.
/// `reverse` is stored in the cursor so subsequent pages use the same direction.
fn build_trash_cursor(row: &TrashResourceRow, order_by: &str, reverse: bool) -> TrashCursor {
let order_by_owned = match order_by {
"deletion_date" | "trashed_at" | "name" | "type" | "size" => order_by.to_owned(),
_ => "deletion_date".to_owned(),
};
TrashCursor {
order_by: order_by_owned,
resource_id: row.resource_id,
sort_str: row.sort_str.clone(),
sort_int: row.sort_int,
sort_ts: row.sort_ts,
reverse,
}
}
/// Convert a raw repository row into the API DTO.
fn row_to_item_dto(row: TrashResourceRow) -> TrashResourceItemDto {
let path = row.path.clone().unwrap_or_default();
if row.resource_type == "folder" {
let resource_id = row.resource_id.to_string();
let dto = FolderDto {
etag: resource_id.clone(),
id: resource_id,
name: row.name.clone(),
path,
parent_id: row.parent_id.map(|u| u.to_string()),
owner_id: Some(row.owner_id.to_string()),
created_at: row.resource_created_at.timestamp() as u64,
modified_at: row.modified_at.timestamp() as u64,
is_root: false,
icon_class: std::sync::Arc::from("fas fa-folder"),
icon_special_class: std::sync::Arc::from("folder-icon"),
category: std::sync::Arc::from("Folder"),
};
TrashResourceItemDto {
resource_type: ResourceTypeDto::Folder,
trashed_at: row.trashed_at,
deletion_date: row.deletion_date,
resource: ResourceContentDto::Folder(dto),
}
} else {
let mime = row
.mime_type
.as_deref()
.unwrap_or("application/octet-stream");
let size_bytes = row.size.max(0) as u64;
// Route ETag through `File::compute_etag` so trash items
// match GET/HEAD/PROPFIND ETags — a client restoring a
// file may conditional-request it immediately after.
let modified_at_u = row.modified_at.timestamp() as u64;
let content_hash = row.blob_hash.clone().unwrap_or_default();
let etag = if content_hash.is_empty() {
String::new()
} else {
File::compute_etag(&content_hash, modified_at_u)
};
let dto = FileDto {
id: row.resource_id.to_string(),
name: row.name.clone(),
path,
size: size_bytes,
mime_type: std::sync::Arc::from(mime),
folder_id: row.parent_id.map(|u| u.to_string()),
created_at: row.resource_created_at.timestamp() as u64,
modified_at: modified_at_u,
icon_class: std::sync::Arc::from(icon_class_for(&row.name, mime)),
icon_special_class: std::sync::Arc::from(icon_special_class_for(&row.name, mime)),
category: std::sync::Arc::from(category_for(&row.name, mime)),
size_formatted: format_file_size(size_bytes),
owner_id: Some(row.owner_id.to_string()),
sort_date: None,
content_hash,
etag,
};
TrashResourceItemDto {
resource_type: ResourceTypeDto::File,
trashed_at: row.trashed_at,
deletion_date: row.deletion_date,
resource: ResourceContentDto::File(dto),
}
}
}