Files
rustfs/crates/io-metrics
Zhengchao An ddf197ba57 fix(lock): refresh object write locks with a heartbeat (#4388)
fix(lock): renew distributed locks via heartbeat; wire server refresh (backlog#899)

A held distributed write lock had a fixed 30s TTL and was never renewed, so
any operation exceeding it got its per-node lease reclaimed and stolen by a
contender, causing split-brain writes. This implements Phase 0 + Phase 1 of the
#899 design (Phase 2 abort-on-loss is deferred and tracked in code comments).

Phase 0 (server refresh wiring, P0):
- node_service handle_refresh was a no-op stub that parsed args then always
  returned success=true. Extract a testable `refresh_lock` free function that
  actually delegates to the node's lock backend. Not-found maps to
  success=false with no error_info, so RemoteClient::refresh keeps its
  Ok(resp.success) semantics and yields a real not_found signal to the
  coordinator heartbeat. Without this, client heartbeats were silently no-ops.

Phase 1 (client heartbeat + safe interval + observability):
- DistributedLockGuard spawns a heartbeat that refreshes every per-client lease
  on a derived interval; interval is derived without Duration::clamp
  (entries<=1 or interval>=ttl => no spawn), fixing the sub-second-ttl panic.
- Add LockLostSignal: declare the lock lost when not_found exceeds
  entries.len() - refresh_quorum; RPC errors are not counted (absorbed by the
  ttl > interval margin). Expose is_lock_lost()/lock_lost() for observers.
- disarm(), release(), and Drop now abort the heartbeat before releasing so no
  refresh races the unlock (refresh only extends, never creates, a lease).
- Reclaim path stays behaviorally unchanged but now warns with owner/resource/
  lease age and records a metric (#698 scavenger preserved).
- Add DEFAULT_LOCK_REFRESH_INTERVAL, LockRequest.refresh_interval (serde default
  for RPC back-compat) + builder, and lock lifecycle metrics.

Open questions adopt the design's documented defaults (marked TODO in code):
refresh not-found -> Ok(false)/error_info=None; lost-quorum base entries.len();
DEFAULT_LOCK_REFRESH_INTERVAL=10s.

Tests: heartbeat keepalive/quorum-loss/jitter/boundary/disarm (lock crate),
server refresh delegation (rustfs), and end-to-end survives-past-ttl plus
crashed-owner-reclaim regressions (namespace).
2026-07-08 06:01:45 +08:00
..

rustfs-io-metrics

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Overview

rustfs-io-metrics is the metrics and configuration module for RustFS, a distributed object storage system. It provides:

  • Cache Configuration: L1/L2 tiered cache configuration management
  • Adaptive TTL: Dynamic TTL adjustment based on access frequency
  • Metrics Collection: Unified metrics recording and reporting
  • Bandwidth Monitoring: Real-time bandwidth observation and analysis
  • Performance Metrics: I/O performance metrics collection
  • Unified Configuration: Centralized configuration management
  • Exporter Boundary: Emit via metrics, export via rustfs-obs, no Prometheus HTTP endpoint

Features

Cache Configuration

Tiered cache configuration management:

use rustfs_io_metrics::{CacheConfig, CacheConfigError};

// Create configuration
let config = CacheConfig::new();

// Validate configuration
if let Err(e) = config.validate() {
    println!("Invalid configuration: {}", e);
}

// Custom configuration
let config = CacheConfig {
    max_capacity: 10_000,
    default_ttl_seconds: 300,
    max_memory_bytes: 100 * 1024 * 1024,  // 100 MB
    ..Default::default()
};

Adaptive TTL

Dynamic TTL adjustment based on access frequency:

use rustfs_io_metrics::{AdaptiveTTL, AdaptiveTTLStats};
use std::time::Duration;

let config = CacheConfig::new().with_ttl_range(60, 300, 3600);
let ttl = AdaptiveTTL::new(config);

// Cold object (few accesses)
let cold_ttl = ttl.calculate_ttl(Duration::from_secs(60), 1, 0.8);
println!("Cold object TTL: {:?}", cold_ttl);

// Hot object (many accesses)
let hot_ttl = ttl.calculate_ttl(Duration::from_secs(60), 100, 0.8);
println!("Hot object TTL: {:?}", hot_ttl);

Access Tracking

Track cache item access patterns:

use rustfs_io_metrics::{AccessTracker, AccessRecord};
use std::time::Duration;

let mut tracker = AccessTracker::new(1000, Duration::from_secs(300));

// Record accesses
tracker.record_access("object-key-1", 1024);
tracker.record_access("object-key-1", 1024);
tracker.record_access("object-key-2", 2048);

// Get access count
let count = tracker.get_access_count("object-key-1");
println!("Access count: {}", count);

// Detect hot/cold
if tracker.is_hot("object-key-1", 1) {
    println!("Hot object");
}

// Get top keys
let top_keys = tracker.top_keys(10);
for (key, count) in top_keys {
    println!("{}: {} accesses", key, count);
}

Metrics Recording

Unified metrics recording functions:

use rustfs_io_metrics::{
    // I/O scheduler metrics
    record_io_scheduler_decision,
    record_io_strategy_change,
    record_io_load_level,
    
    // Cache metrics
    record_cache_size,
    
    // Backpressure metrics
    record_backpressure_event,
    record_backpressure_state,
    
    // Timeout metrics
    record_timeout_event,
    record_operation_duration,
};

// Record I/O scheduler decision
record_io_scheduler_decision("sequential", "high_priority");

// Record cache size
record_cache_size("L1", 1024, 1);

// Record backpressure event
record_backpressure_event("warning", 0.85);

// Record operation timeout
record_timeout_event("GetObject", Duration::from_secs(30));

Internode Transport Metrics

Internode metrics are recorded by src/internode_metrics.rs. Aggregate metrics remain unlabeled for compatibility with existing dashboards:

Metric Meaning
rustfs_system_network_internode_sent_bytes_total Total internode bytes sent by this node.
rustfs_system_network_internode_recv_bytes_total Total internode bytes received by this node.
rustfs_system_network_internode_requests_outgoing_total Total outgoing internode requests.
rustfs_system_network_internode_requests_incoming_total Total incoming internode requests.
rustfs_system_network_internode_errors_total Total internode errors.
rustfs_system_network_internode_dial_errors_total Failed internode connection attempts.
rustfs_system_network_internode_dial_avg_time_nanos Average internode dial duration.

Operation-level metrics use the same low-cardinality label set:

Metric Labels Meaning
rustfs_system_network_internode_operation_sent_bytes_total operation, backend Bytes sent for an internode operation.
rustfs_system_network_internode_operation_recv_bytes_total operation, backend Bytes received for an internode operation.
rustfs_system_network_internode_operation_requests_outgoing_total operation, backend Outgoing request attempts for an internode operation.
rustfs_system_network_internode_operation_requests_incoming_total operation, backend Incoming request attempts for an internode operation.
rustfs_system_network_internode_operation_errors_total operation, backend Failed internode operation attempts.
rustfs_system_network_internode_operation_classified_errors_total operation, backend, classification Classified internode transport failures.
rustfs_system_network_internode_operation_retries_total operation, backend, classification Retry attempts for retryable internode transport failures.
rustfs_system_network_internode_operation_retry_successes_total operation, backend, classification Successful recoveries after retryable internode transport failures.
rustfs_system_storage_erasure_write_quorum_failures_total stage, dominant_error Erasure write quorum failures grouped by failure stage and dominant error class.

Current operation values are read_file_stream, put_file_stream, walk_dir, grpc_read_all, and grpc_write_all. Current backend values are tcp-http for the InternodeDataTransport TCP/HTTP path and grpc for the remaining gRPC byte paths. The compatibility wrapper uses unknown only for callers that have not been classified yet.

Success/failure is intentionally not a high-cardinality label today. Failures are represented by rustfs_system_network_internode_operation_errors_total; successful completions are not emitted as a dedicated result-labeled metric. Adding completion/result labels is a follow-up once stream completion semantics are defined consistently for request setup, body transfer, and shutdown.

Current low-cardinality classification values come from the TCP/HTTP internode path and include:

  • connect_timeout
  • connection_refused
  • dns_resolution_failed
  • connection_reset
  • body_stream_aborted
  • http_429
  • http_502
  • http_503
  • http_504
  • http_status_other
  • unknown

scripts/run_internode_transport_baseline.sh --metrics-url ... records metric deltas with operation and backend columns, so the TCP baseline can attribute bytes and request/error counts to tcp-http transport operations.

Unified Configuration

Centralized configuration management:

use rustfs_io_metrics::{
    IoConfig, CacheSettings, IoSchedulerSettings,
    BackpressureSettings, TimeoutSettings,
};

let config = IoConfig::new()
    .with_cache(CacheSettings::new()
        .with_max_capacity(10_000)
        .with_ttl(std::time::Duration::from_secs(300)))
    .with_scheduler(IoSchedulerSettings::new()
        .with_max_concurrent_reads(64))
    .with_backpressure(BackpressureSettings::new())
    .with_timeout(TimeoutSettings::new());

// Access configuration
println!("Cache capacity: {}", config.cache.max_capacity);
println!("Max concurrent reads: {}", config.scheduler.max_concurrent_reads);

Module Structure

rustfs-io-metrics/
├── src/
│   ├── lib.rs               # Module entry
│   ├── cache_config.rs      # Cache configuration
│   ├── adaptive_ttl.rs      # Adaptive TTL
│   ├── config.rs            # Unified configuration
│   ├── io_metrics.rs        # I/O metrics
│   ├── backpressure_metrics.rs # Backpressure metrics
│   ├── deadlock_metrics.rs  # Deadlock metrics
│   ├── lock_metrics.rs      # Lock metrics
│   ├── timeout_metrics.rs   # Timeout metrics
│   ├── internode_metrics.rs # Internode transport metrics
│   ├── bandwidth.rs         # Bandwidth monitoring
│   ├── global_metrics.rs    # Global metrics
│   └── performance.rs       # Performance metrics
└── Cargo.toml

Testing

# Run all tests
cargo test --package rustfs-io-metrics

# Run specific tests
cargo test --package rustfs-io-metrics --lib adaptive_ttl

# Run benchmarks
cargo bench --package rustfs-io-metrics --bench metrics_pipeline

Documentation

This crate records metrics through the Rust metrics crate and leaves exporting to rustfs-obs or the application-level observability pipeline. It does not expose Prometheus-compatible HTTP endpoints such as /rustfs/v2/metrics/cluster or /rustfs/v2/metrics/node.

API documentation can be generated locally:

cargo doc --package rustfs-io-metrics --no-deps --open

Useful source references:

  • rustfs-io-core: Core I/O scheduling
  • rustfs: Main storage service

License

Apache License 2.0