use bichon_blob::{Codec, Config, Engine}; use tempfile::TempDir; #[test] fn test_write_and_read() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xAA; 32]; let value = b"Hello, this is a test email!".to_vec(); engine.put(key, &value, Codec::Zstd).unwrap(); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value)); } #[test] fn test_read_missing_key() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xFF; 32]; let result = engine.get(&key).unwrap(); assert_eq!(result, None); } #[test] fn test_delete() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xBB; 32]; let value = b"Some email content".to_vec(); engine.put(key, &value, Codec::Zstd).unwrap(); engine.delete(&key).unwrap(); let result = engine.get(&key).unwrap(); assert_eq!(result, None); } #[test] fn test_exists() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xCC; 32]; assert!(!engine.exists(&key).unwrap()); engine.put(key, b"data", Codec::None).unwrap(); assert!(engine.exists(&key).unwrap()); engine.delete(&key).unwrap(); assert!(!engine.exists(&key).unwrap()); } #[test] fn test_small_value_not_compressed() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xCC; 32]; let value = b"hi"; // Smaller than 4KB threshold engine.put(key, value, Codec::Zstd).unwrap(); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value.to_vec())); } #[test] fn test_large_value() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0xDD; 32]; let value = vec![b'X'; 100_000]; // 100KB engine.put(key, &value, Codec::Zstd).unwrap(); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value)); } #[test] fn test_multiple_keys() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let n = 100; for i in 0..n { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); let value = format!("email number {}", i).into_bytes(); engine.put(key, &value, Codec::Zstd).unwrap(); } for i in 0..n { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(format!("email number {}", i).into_bytes())); } } #[test] fn test_gc() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); // Write many entries let value = vec![b'Y'; 5000]; let n = 100; for i in 0..n { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); engine.put(key, &value, Codec::None).unwrap(); } // Delete even-numbered keys for i in (0..n).step_by(2) { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); engine.delete(&key).unwrap(); } // Run GC let _result = engine.gc().unwrap(); // Verify remaining keys still readable for i in (1..n).step_by(2) { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value.clone())); } // Deleted keys should not exist for i in (0..n).step_by(2) { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); let result = engine.get(&key).unwrap(); assert_eq!(result, None); } } #[test] fn test_reopen_persistence() { let dir = TempDir::new().unwrap(); let key = [0xEE; 32]; let value = b"persistent data".to_vec(); { let engine = Engine::open(dir.path(), Config::default()).unwrap(); engine.put(key, &value, Codec::Zstd).unwrap(); } // Reopen { let engine = Engine::open(dir.path(), Config::default()).unwrap(); let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value)); } } #[test] fn test_stats() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); engine.put([1u8; 32], b"hello", Codec::None).unwrap(); let stats = engine.stats().unwrap(); assert!(stats.total_bytes > 0); assert!(stats.total_keys > 0); } #[test] fn test_batch_write() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let n = 50; let entries: Vec<_> = (0..n) .map(|i: u64| { let mut key = [0u8; 32]; key[0..8].copy_from_slice(&i.to_le_bytes()); let value = format!("batch email {}", i).into_bytes(); (key, value, Codec::Zstd) }) .collect(); engine.put_batch(&entries).unwrap(); for (key, value, _) in &entries { let result = engine.get(key).unwrap(); assert_eq!(result.as_ref(), Some(value)); } } #[test] fn test_batch_write_persistence() { let dir = TempDir::new().unwrap(); let entries: Vec<_> = (0..30u64) .map(|i| { let mut key = [0u8; 32]; key[0..8].copy_from_slice(&i.to_le_bytes()); (key, format!("persist {}", i).into_bytes(), Codec::Zstd) }) .collect(); { let engine = Engine::open(dir.path(), Config::default()).unwrap(); engine.put_batch(&entries).unwrap(); } { let engine = Engine::open(dir.path(), Config::default()).unwrap(); for (key, value, _) in &entries { let result = engine.get(key).unwrap(); assert_eq!(result.as_ref(), Some(value)); } } } #[test] fn test_invalid_config_rejected() { let dir = TempDir::new().unwrap(); let mut config = Config::default(); config.compact_threshold = 0; assert!(Engine::open(dir.path(), config).is_err()); let mut config = Config::default(); config.gc_deleted_ratio = 1.5; assert!(Engine::open(dir.path(), config).is_err()); } #[test] fn test_concurrent_reads() { use std::sync::Arc; use std::thread; let dir = TempDir::new().unwrap(); let engine = Arc::new(Engine::open(dir.path(), Config::default()).unwrap()); // Write some data for i in 0..50u32 { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&i.to_le_bytes()); engine .put(key, &vec![i as u8; 1024], Codec::None) .unwrap(); } // Spawn 4 threads, each reading a different subset let mut handles = vec![]; for t in 0..4 { let engine = engine.clone(); handles.push(thread::spawn(move || { for i in (t * 12)..((t + 1) * 12) { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&(i as u32).to_le_bytes()); let read = engine.get(&key).unwrap(); assert!(read.is_some(), "key {} should exist", i); } })); } for h in handles { h.join().unwrap(); } } #[test] fn test_global_dedup() { let dir = TempDir::new().unwrap(); let engine = Engine::open(dir.path(), Config::default()).unwrap(); let key = [0x42; 32]; let value = b"same content across what would be accounts".to_vec(); // Write same key twice (simulating two accounts ingesting the same email) engine.put(key, &value, Codec::Zstd).unwrap(); engine.put(key, &value, Codec::Zstd).unwrap(); // Should still be readable let result = engine.get(&key).unwrap(); assert_eq!(result, Some(value)); // Stats should reflect dedup (not double count) let stats = engine.stats().unwrap(); // The key appears once in the bucket store assert!(stats.total_keys > 0); } #[test] fn test_crash_recovery() { let dir = TempDir::new().unwrap(); let dir_path = dir.path().to_path_buf(); // Phase 1: write data, then drop without shutdown (simulates crash) { let engine = Engine::open(&dir_path, Config::default()).unwrap(); for i in 0..50u32 { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&i.to_le_bytes()); engine .put(key, &vec![i as u8; 512], Codec::None) .unwrap(); } // Engine dropped here without calling shutdown() } // Phase 2: reopen - recovery should run, data should be intact let engine = Engine::open(&dir_path, Config::default()).unwrap(); let stats = engine.stats().unwrap(); assert!(stats.total_keys > 0, "recovery should preserve data"); // Verify reads work for i in 0..50u32 { let mut key = [0u8; 32]; key[0..4].copy_from_slice(&i.to_le_bytes()); let read = engine.get(&key).unwrap(); assert!(read.is_some(), "key {} should survive crash recovery", i); } } #[test] fn test_meta_bin_durability() { let dir = TempDir::new().unwrap(); let dir_path = dir.path().to_path_buf(); { let engine = Engine::open(&dir_path, Config::default()).unwrap(); let key = [0x42u8; 32]; engine.put(key, b"durable", Codec::None).unwrap(); } // Engine dropped -> shutdown() called -> meta saved // Verify meta.bin exists let meta_path = dir_path.join("meta.bin"); assert!(meta_path.exists(), "meta.bin should exist after clean shutdown"); let data = std::fs::read(&meta_path).unwrap(); assert!( data.len() >= 8, "meta.bin should have at least 8 bytes" ); let stored_crc = u32::from_le_bytes(data[0..4].try_into().unwrap()); assert_ne!(stored_crc, 0, "stored CRC should be non-zero"); // Reopen and verify data is intact let engine = Engine::open(&dir_path, Config::default()).unwrap(); let read = engine.get(&[0x42u8; 32]).unwrap(); assert_eq!(read, Some(b"durable".to_vec())); }