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Oxicloud/src/application/services/file_management_service.rs
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use std::sync::Arc;
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use crate::application::dtos::file_dto::FileDto;
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use crate::application::ports::file_ports::FileManagementUseCase;
use crate::application::ports::storage_ports::{CopyFolderTreeResult, FileReadPort, FileWritePort};
use crate::application::ports::trash_ports::TrashUseCase;
use crate::application::services::trash_service::TrashService;
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use crate::common::errors::DomainError;
use crate::domain::services::path_service::validate_storage_name;
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::services::file_content_cache::FileContentCache;
use crate::infrastructure::services::thumbnail_service::ThumbnailService;
use tracing::{error, info, warn};
use uuid::Uuid;
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/// Service for file management operations (move, delete).
///
/// Blob ref_count bookkeeping on deletion is handled by the PG trigger
/// `trg_files_decrement_blob_ref` (fires on DELETE FROM storage.files).
/// This service only orchestrates trash vs. permanent delete — it never
/// touches ref_count directly.
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pub struct FileManagementService {
file_repository: Arc<FileBlobWriteRepository>,
file_read: Option<Arc<FileBlobReadRepository>>,
folder_repo: Option<Arc<FolderDbRepository>>,
trash_service: Option<Arc<TrashService>>,
thumbnail_service: Option<Arc<ThumbnailService>>,
content_cache: Option<Arc<FileContentCache>>,
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}
impl FileManagementService {
/// Creates a new FileManagementService.
pub fn new(file_repository: Arc<FileBlobWriteRepository>) -> Self {
Self {
file_repository,
file_read: None,
folder_repo: None,
trash_service: None,
thumbnail_service: None,
content_cache: None,
}
}
/// Creates a FileManagementService with a trash service, read repo, and folder repo for ownership checks.
pub fn with_trash(
file_repository: Arc<FileBlobWriteRepository>,
trash_service: Option<Arc<TrashService>>,
file_read: Option<Arc<FileBlobReadRepository>>,
folder_repo: Option<Arc<FolderDbRepository>>,
thumbnail_service: Option<Arc<ThumbnailService>>,
content_cache: Option<Arc<FileContentCache>>,
) -> Self {
Self {
file_repository,
file_read,
folder_repo,
trash_service,
thumbnail_service,
content_cache,
}
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}
/// Verifies ownership via the read repository.
async fn verify_owner(&self, file_id: &str, caller_id: Uuid) -> Result<(), DomainError> {
if let Some(read) = &self.file_read {
read.verify_file_owner(file_id, caller_id).await
} else {
// Fallback: no read repo injected — deny by default (fail-closed)
Err(DomainError::internal_error(
"FileManagement",
"Ownership verification unavailable",
))
}
}
/// Verifies that the target folder is owned by the caller.
/// If folder_id is None (root), ownership is implicitly granted.
async fn verify_target_folder_owner(
&self,
folder_id: &Option<String>,
caller_id: Uuid,
) -> Result<(), DomainError> {
let folder_id = match folder_id {
Some(id) => id,
None => return Ok(()), // Moving to root is always allowed
};
if let Some(folder_repo) = &self.folder_repo {
let folder_owner = folder_repo.get_folder_user_id(folder_id).await?;
if folder_owner != caller_id {
return Err(DomainError::not_found(
"Folder",
"Target folder not found or access denied",
));
}
Ok(())
} else {
// Fallback: no folder repo injected — deny by default (fail-closed)
Err(DomainError::internal_error(
"FileManagement",
"Folder ownership verification unavailable",
))
}
}
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}
impl FileManagementUseCase for FileManagementService {
async fn move_file(
&self,
file_id: &str,
folder_id: Option<String>,
) -> Result<FileDto, DomainError> {
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info!(
"Moving file with ID: {} to folder: {:?}",
file_id, folder_id
);
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let moved_file = self
.file_repository
.move_file(file_id, folder_id)
.await
.map_err(|e| {
error!("Error moving file (ID: {}): {}", file_id, e);
e
})?;
info!(
"File moved successfully: {} (ID: {}) to folder: {:?}",
moved_file.name(),
moved_file.id(),
moved_file.folder_id()
);
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Ok(FileDto::from(moved_file))
}
async fn move_file_owned(
&self,
file_id: &str,
caller_id: Uuid,
folder_id: Option<String>,
) -> Result<FileDto, DomainError> {
// Verify file ownership first
self.verify_owner(file_id, caller_id).await?;
// Verify target folder ownership (prevents file from "disappearing")
self.verify_target_folder_owner(&folder_id, caller_id)
.await?;
self.move_file(file_id, folder_id).await
}
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async fn copy_file(
&self,
file_id: &str,
target_folder_id: Option<String>,
) -> Result<FileDto, DomainError> {
info!(
"Copying file with ID: {} to folder: {:?}",
file_id, target_folder_id
);
let copied_file = self
.file_repository
.copy_file(file_id, target_folder_id)
.await
.map_err(|e| {
error!("Error copying file (ID: {}): {}", file_id, e);
e
})?;
info!(
"File copied successfully: {} (ID: {}) to folder: {:?}",
copied_file.name(),
copied_file.id(),
copied_file.folder_id()
);
Ok(FileDto::from(copied_file))
}
async fn copy_file_owned(
&self,
file_id: &str,
caller_id: Uuid,
target_folder_id: Option<String>,
) -> Result<FileDto, DomainError> {
self.verify_owner(file_id, caller_id).await?;
self.verify_target_folder_owner(&target_folder_id, caller_id)
.await?;
self.copy_file(file_id, target_folder_id).await
}
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async fn rename_file(&self, file_id: &str, new_name: &str) -> Result<FileDto, DomainError> {
if let Err(reason) = validate_storage_name(new_name) {
return Err(DomainError::validation_error(format!(
"Invalid file name '{new_name}': {reason}"
)));
}
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info!("Renaming file with ID: {} to \"{}\"", file_id, new_name);
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let renamed_file = self
.file_repository
.rename_file(file_id, new_name)
.await
.map_err(|e| {
error!("Error renaming file (ID: {}): {}", file_id, e);
e
})?;
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info!(
"File renamed successfully: {} (ID: {})",
renamed_file.name(),
renamed_file.id()
);
Ok(FileDto::from(renamed_file))
}
async fn rename_file_owned(
&self,
file_id: &str,
caller_id: Uuid,
new_name: &str,
) -> Result<FileDto, DomainError> {
self.verify_owner(file_id, caller_id).await?;
self.rename_file(file_id, new_name).await
}
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async fn delete_file(&self, id: &str) -> Result<(), DomainError> {
self.file_repository.delete_file(id).await?;
// Invalidate content cache — file no longer exists.
if let Some(cc) = &self.content_cache {
cc.invalidate(id).await;
}
// Best-effort thumbnail cleanup
if let Some(thumb) = &self.thumbnail_service
&& let Err(e) = thumb.delete_thumbnails(id).await
{
warn!("Failed to delete thumbnails for file {}: {}", id, e);
}
Ok(())
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}
async fn delete_file_owned(&self, id: &str, caller_id: Uuid) -> Result<(), DomainError> {
self.verify_owner(id, caller_id).await?;
self.delete_file(id).await
}
/// Smart delete: trash-first with dedup reference cleanup.
///
/// Blob ref_count bookkeeping is handled entirely by the PG trigger
/// `trg_files_decrement_blob_ref` which fires on DELETE FROM storage.files.
/// We do NOT decrement here — trashing is a soft-delete (UPDATE, not DELETE)
/// so the blob must remain referenced until the file is permanently deleted.
async fn delete_with_cleanup(&self, id: &str, user_id: Uuid) -> Result<bool, DomainError> {
// Step 1: Try trash (soft delete — file row stays, blob stays referenced)
if let Some(trash) = &self.trash_service {
info!("Moving file to trash: {}", id);
match trash.move_to_trash(id, "file", user_id).await {
Ok(_) => {
info!("File successfully moved to trash: {}", id);
// Invalidate content cache — trashed files must not be served.
if let Some(cc) = &self.content_cache {
cc.invalidate(id).await;
}
// Do NOT decrement blob ref here — the file row still exists
// (is_trashed = TRUE). The trigger will decrement when the
// row is actually DELETEd during trash emptying.
return Ok(true); // trashed
}
Err(err) => {
error!("Could not move file to trash: {:?}", err);
warn!("Falling back to permanent delete");
// fall through
}
}
} else {
warn!("Trash service not available, using permanent delete");
}
// Step 2: Permanent delete — trigger handles blob ref_count
warn!("Permanently deleting file: {}", id);
self.file_repository.delete_file(id).await?;
// Invalidate content cache — file permanently removed.
if let Some(cc) = &self.content_cache {
cc.invalidate(id).await;
}
// Best-effort thumbnail cleanup
if let Some(thumb) = &self.thumbnail_service
&& let Err(e) = thumb.delete_thumbnails(id).await
{
warn!("Failed to delete thumbnails for file {}: {}", id, e);
}
info!("File permanently deleted: {}", id);
Ok(false) // permanently deleted
}
async fn copy_folder_tree(
&self,
source_folder_id: &str,
target_parent_id: Option<String>,
dest_name: Option<String>,
) -> Result<CopyFolderTreeResult, DomainError> {
info!(
"Copying folder tree: source={}, target_parent={:?}, dest_name={:?}",
source_folder_id, target_parent_id, dest_name
);
let result = self
.file_repository
.copy_folder_tree(source_folder_id, target_parent_id, dest_name)
.await
.map_err(|e| {
error!(
"Error copying folder tree (source: {}): {}",
source_folder_id, e
);
e
})?;
info!(
"Folder tree copied: {} folders, {} files (new root: {})",
result.folders_copied, result.files_copied, result.new_root_folder_id
);
Ok(result)
}
async fn copy_folder_tree_owned(
&self,
source_folder_id: &str,
caller_id: Uuid,
target_parent_id: Option<String>,
dest_name: Option<String>,
) -> Result<CopyFolderTreeResult, DomainError> {
if let Some(folder_repo) = &self.folder_repo {
let owner = folder_repo.get_folder_user_id(source_folder_id).await?;
if owner != caller_id {
return Err(DomainError::not_found(
"Folder",
"Source folder not found or access denied",
));
}
} else {
return Err(DomainError::internal_error(
"FileManagement",
"Folder ownership verification unavailable",
));
}
self.verify_target_folder_owner(&target_parent_id, caller_id)
.await?;
self.copy_folder_tree(source_folder_id, target_parent_id, dest_name)
.await
}
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}