cd3733b459
Implement 4-phase external storage backends architecture: Phase 1 - Foundation: - BlobStorageBackend trait (application/ports/blob_storage_ports.rs) - LocalBlobBackend: extracted all tokio::fs ops from DedupService - S3BlobBackend: AWS SDK with custom endpoint support (MinIO, R2, B2) - DedupService refactored to use Arc<dyn BlobStorageBackend> Phase 2 - Admin Panel: - StorageSettingsService with DB persistence + env override - Storage tab in admin panel (backend selector, S3 form, provider presets) - GET/PUT/POST endpoints for storage settings + connection test - i18n keys (en/es) and BEM CSS Phase 3 - Migration: - MigrationBlobBackend decorator (dual-read: target-first + source fallback) - Background migration job with parallel transfers + progress tracking - Migration UI (progress bar, ETA, pause/resume/verify/complete) - 6 admin API endpoints for migration lifecycle Phase 4 - Enterprise Extras: - CachedBlobBackend: LRU disk cache for remote backends - EncryptedBlobBackend: AES-256-GCM at-rest encryption - AzureBlobBackend: Azure Blob Storage support - RetryBlobBackend: exponential backoff for transient errors - Decorator composition in DI: retry → encryption → cache All 223 tests passing, clippy clean, fmt verified.
345 lines
11 KiB
Rust
345 lines
11 KiB
Rust
//! S3-Compatible Blob Backend — stores blobs in any S3-compatible object store.
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//!
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//! Supports AWS S3, Backblaze B2, Cloudflare R2, MinIO, DigitalOcean Spaces,
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//! Wasabi, and any other service that implements the S3 API.
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use aws_sdk_s3::primitives::ByteStream;
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use std::path::{Path, PathBuf};
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use std::pin::Pin;
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use tokio::fs;
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use tokio_util::io::ReaderStream;
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use crate::application::ports::blob_storage_ports::{
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BlobStorageBackend, BlobStream, StorageHealthStatus,
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};
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use crate::common::config::S3StorageConfig;
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use crate::domain::errors::{DomainError, ErrorKind};
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/// S3-compatible blob storage backend.
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///
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/// Blobs are stored as objects with key `{2-char-prefix}/{hash}.blob`,
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/// mirroring the local filesystem layout for consistency.
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pub struct S3BlobBackend {
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client: aws_sdk_s3::Client,
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bucket: String,
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}
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impl S3BlobBackend {
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/// Build a new S3 backend from configuration.
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///
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/// Supports custom endpoints for non-AWS providers (Backblaze B2,
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/// MinIO, Cloudflare R2, etc.).
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pub fn new(config: &S3StorageConfig) -> Self {
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let credentials = aws_sdk_s3::config::Credentials::new(
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&config.access_key,
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&config.secret_key,
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None,
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None,
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"oxicloud",
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);
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let mut builder = aws_sdk_s3::config::Builder::new()
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.region(aws_sdk_s3::config::Region::new(config.region.clone()))
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.credentials_provider(credentials)
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.behavior_version_latest();
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if let Some(ref endpoint) = config.endpoint_url {
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builder = builder.endpoint_url(endpoint);
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}
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if config.force_path_style {
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builder = builder.force_path_style(true);
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}
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let client = aws_sdk_s3::Client::from_conf(builder.build());
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Self {
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client,
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bucket: config.bucket.clone(),
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}
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}
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/// Compute the S3 object key for a given hash.
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fn object_key(hash: &str) -> String {
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let prefix = &hash[0..2];
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format!("{}/{}.blob", prefix, hash)
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}
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}
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impl BlobStorageBackend for S3BlobBackend {
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fn initialize(
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&self,
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) -> Pin<Box<dyn std::future::Future<Output = Result<(), DomainError>> + Send + '_>> {
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Box::pin(async move {
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// Verify bucket exists and is accessible
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self.client
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.head_bucket()
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.bucket(&self.bucket)
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.send()
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.await
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.map_err(|e| {
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DomainError::internal_error(
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"S3",
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format!("Cannot access bucket '{}': {}", self.bucket, e),
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)
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})?;
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tracing::info!("S3 blob backend initialized: bucket={}", self.bucket);
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Ok(())
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})
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}
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fn put_blob(
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&self,
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hash: &str,
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source_path: &Path,
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) -> Pin<Box<dyn std::future::Future<Output = Result<u64, DomainError>> + Send + '_>> {
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let hash = hash.to_owned();
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let source_path = source_path.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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// Check if object already exists (idempotent)
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let exists = self
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.client
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.head_object()
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.bucket(&self.bucket)
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.key(&key)
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.send()
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.await
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.is_ok();
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if exists {
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// Blob already in S3 — remove local source and return size
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let file_size = fs::metadata(&source_path)
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.await
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.map_err(|e| {
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DomainError::internal_error(
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"S3",
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format!("Failed to stat source file: {}", e),
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)
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})?
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.len();
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let _ = fs::remove_file(&source_path).await;
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return Ok(file_size);
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}
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// Upload from local file
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let body = ByteStream::from_path(&source_path).await.map_err(|e| {
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DomainError::internal_error("S3", format!("Failed to read source file: {}", e))
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})?;
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let file_size = fs::metadata(&source_path)
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.await
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.map_err(|e| {
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DomainError::internal_error("S3", format!("Failed to stat source file: {}", e))
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})?
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.len();
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self.client
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.put_object()
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.bucket(&self.bucket)
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.key(&key)
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.body(body)
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.send()
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.await
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.map_err(|e| {
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DomainError::internal_error(
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"S3",
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format!("Failed to upload blob {}: {}", hash, e),
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)
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})?;
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// Clean up local source after successful upload
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let _ = fs::remove_file(&source_path).await;
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Ok(file_size)
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})
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}
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fn get_blob_stream(
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&self,
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hash: &str,
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) -> Pin<Box<dyn std::future::Future<Output = Result<BlobStream, DomainError>> + Send + '_>>
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{
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let hash = hash.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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let output = self
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.client
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.get_object()
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.bucket(&self.bucket)
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.key(&key)
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.send()
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.await
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.map_err(|e| {
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DomainError::new(
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ErrorKind::NotFound,
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"S3",
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format!("Failed to get blob {}: {}", hash, e),
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)
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})?;
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// Convert S3 ByteStream into a Stream<Item = Result<Bytes, io::Error>>
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// via AsyncRead adapter
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let reader = output.body.into_async_read();
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Ok(Box::pin(ReaderStream::with_capacity(reader, 256 * 1024)) as BlobStream)
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})
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}
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fn get_blob_range_stream(
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&self,
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hash: &str,
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start: u64,
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end: Option<u64>,
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) -> Pin<Box<dyn std::future::Future<Output = Result<BlobStream, DomainError>> + Send + '_>>
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{
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let hash = hash.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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let range = match end {
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Some(end_pos) => format!("bytes={}-{}", start, end_pos.saturating_sub(1)),
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None => format!("bytes={}-", start),
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};
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let output = self
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.client
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.get_object()
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.bucket(&self.bucket)
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.key(&key)
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.range(range)
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.send()
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.await
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.map_err(|e| {
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DomainError::new(
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ErrorKind::NotFound,
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"S3",
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format!("Failed to get blob range {}: {}", hash, e),
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)
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})?;
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let reader = output.body.into_async_read();
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Ok(Box::pin(ReaderStream::with_capacity(reader, 256 * 1024)) as BlobStream)
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})
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}
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fn delete_blob(
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&self,
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hash: &str,
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) -> Pin<Box<dyn std::future::Future<Output = Result<(), DomainError>> + Send + '_>> {
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let hash = hash.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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// S3 DeleteObject is already idempotent (returns 204 even if not found)
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self.client
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.delete_object()
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.bucket(&self.bucket)
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.key(&key)
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.send()
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.await
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.map_err(|e| {
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DomainError::internal_error(
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"S3",
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format!("Failed to delete blob {}: {}", hash, e),
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)
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})?;
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Ok(())
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})
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}
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fn blob_exists(
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&self,
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hash: &str,
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) -> Pin<Box<dyn std::future::Future<Output = Result<bool, DomainError>> + Send + '_>> {
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let hash = hash.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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match self
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.client
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.head_object()
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.bucket(&self.bucket)
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.key(&key)
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.send()
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.await
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{
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Ok(_) => Ok(true),
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Err(e) => {
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// Check if it's a 404 (not found) vs an actual error
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let service_err = e.into_service_error();
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if service_err.is_not_found() {
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Ok(false)
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} else {
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Err(DomainError::internal_error(
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"S3",
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format!("Failed to check blob {}: {}", hash, service_err),
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))
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}
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}
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}
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})
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}
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fn blob_size(
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&self,
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hash: &str,
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) -> Pin<Box<dyn std::future::Future<Output = Result<u64, DomainError>> + Send + '_>> {
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let hash = hash.to_owned();
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Box::pin(async move {
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let key = Self::object_key(&hash);
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let output = self
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.client
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.head_object()
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.bucket(&self.bucket)
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.key(&key)
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.send()
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.await
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.map_err(|e| {
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DomainError::new(
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ErrorKind::NotFound,
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"S3",
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format!("Failed to stat blob {}: {}", hash, e),
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)
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})?;
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Ok(output.content_length().unwrap_or(0) as u64)
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})
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}
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fn health_check(
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&self,
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) -> Pin<
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Box<dyn std::future::Future<Output = Result<StorageHealthStatus, DomainError>> + Send + '_>,
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> {
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Box::pin(async move {
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match self.client.head_bucket().bucket(&self.bucket).send().await {
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Ok(_) => Ok(StorageHealthStatus {
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connected: true,
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backend_type: "s3".to_string(),
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message: format!("S3 bucket '{}' is accessible", self.bucket),
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available_bytes: None,
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}),
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Err(e) => Ok(StorageHealthStatus {
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connected: false,
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backend_type: "s3".to_string(),
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message: format!("S3 bucket '{}' is not accessible: {}", self.bucket, e),
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available_bytes: None,
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}),
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}
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})
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}
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fn backend_type(&self) -> &'static str {
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"s3"
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}
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fn local_blob_path(&self, _hash: &str) -> Option<PathBuf> {
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None // Remote backend — no local path
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}
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}
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