//! Common utilities for load testing Trading Service //! //! Shared infrastructure for metrics, client connections, and order generation. use std::sync::atomic::{AtomicU64, Ordering}; use std::time::Duration; use tonic::transport::Channel; // gRPC generated code pub mod trading { tonic::include_proto!("trading"); } pub use trading::trading_service_client::TradingServiceClient; pub use trading::{OrderSide, OrderType, SubmitOrderRequest}; /// Safe float division with edge case handling fn safe_div(numerator: f64, denominator: f64) -> f64 { if denominator == 0.0 || !denominator.is_finite() || !numerator.is_finite() { 0.0 } else { #[allow(clippy::float_arithmetic)] let result = numerator / denominator; if result.is_finite() { result } else { 0.0 } } } /// Safe float multiplication with edge case handling fn safe_mul(a: f64, b: f64) -> f64 { if !a.is_finite() || !b.is_finite() { 0.0 } else { #[allow(clippy::float_arithmetic)] let result = a * b; if result.is_finite() { result } else { 0.0 } } } /// Safe float addition with edge case handling fn safe_add(a: f64, b: f64) -> f64 { if !a.is_finite() || !b.is_finite() { 0.0 } else { #[allow(clippy::float_arithmetic)] let result = a + b; if result.is_finite() { result } else { 0.0 } } } /// Performance metrics aggregator #[derive(Debug)] pub struct PerformanceMetrics { pub latencies_ns: Vec, pub successful_orders: AtomicU64, pub failed_orders: AtomicU64, pub total_orders: AtomicU64, pub test_duration: Duration, } impl PerformanceMetrics { pub fn new() -> Self { Self { latencies_ns: Vec::new(), successful_orders: AtomicU64::new(0), failed_orders: AtomicU64::new(0), total_orders: AtomicU64::new(0), test_duration: Duration::ZERO, } } pub fn record_success(&self, _latency_ns: u64) { self.successful_orders.fetch_add(1, Ordering::Relaxed); self.total_orders.fetch_add(1, Ordering::Relaxed); } pub fn record_failure(&self) { self.failed_orders.fetch_add(1, Ordering::Relaxed); self.total_orders.fetch_add(1, Ordering::Relaxed); } pub fn calculate_percentiles(mut latencies: Vec) -> (u64, u64, u64, u64, u64) { if latencies.is_empty() { return (0, 0, 0, 0, 0); } latencies.sort_unstable(); let len = latencies.len(); let min = latencies[0]; let p50 = latencies[len / 2]; let p95_idx = safe_mul(len as f64, 0.95) as usize; let p95 = latencies[p95_idx.min(len - 1)]; let p99_idx = safe_mul(len as f64, 0.99) as usize; let p99 = latencies[p99_idx.min(len - 1)]; let max = latencies[len - 1]; (min, p50, p95, p99, max) } pub fn print_summary(&self, latencies: &[u64]) { let successful = self.successful_orders.load(Ordering::Relaxed); let failed = self.failed_orders.load(Ordering::Relaxed); let total = self.total_orders.load(Ordering::Relaxed); let success_rate = if total > 0 { safe_mul(safe_div(successful as f64, total as f64), 100.0) } else { 0.0 }; let throughput = if self.test_duration.as_secs_f64() > 0.0 { safe_div(successful as f64, self.test_duration.as_secs_f64()) } else { 0.0 }; let (min, p50, p95, p99, max) = Self::calculate_percentiles(latencies.to_vec()); println!("\n╔═══════════════════════════════════════════════════════════╗"); println!("║ TRADING SERVICE LOAD TEST RESULTS ║"); println!("╠═══════════════════════════════════════════════════════════╣"); println!( "║ Test Duration: {:.2}s", self.test_duration.as_secs_f64() ); println!("║ Total Orders: {}", total); println!( "║ Successful Orders: {} ({:.2}%)", successful, success_rate ); println!("║ Failed Orders: {}", failed); println!("║ Throughput: {:.0} orders/sec", throughput); println!("╠═══════════════════════════════════════════════════════════╣"); println!("║ LATENCY METRICS ║"); println!("╠═══════════════════════════════════════════════════════════╣"); println!( "║ Min Latency: {:.2}ms ({:.2}μs)", safe_div(min as f64, 1_000_000.0), safe_div(min as f64, 1_000.0) ); println!( "║ P50 Latency: {:.2}ms ({:.2}μs)", safe_div(p50 as f64, 1_000_000.0), safe_div(p50 as f64, 1_000.0) ); println!( "║ P95 Latency: {:.2}ms ({:.2}μs)", safe_div(p95 as f64, 1_000_000.0), safe_div(p95 as f64, 1_000.0) ); println!( "║ P99 Latency: {:.2}ms ({:.2}μs)", safe_div(p99 as f64, 1_000_000.0), safe_div(p99 as f64, 1_000.0) ); println!( "║ Max Latency: {:.2}ms ({:.2}μs)", safe_div(max as f64, 1_000_000.0), safe_div(max as f64, 1_000.0) ); println!("╚═══════════════════════════════════════════════════════════╝"); // Performance assessment println!("\n📊 PERFORMANCE ASSESSMENT:"); if throughput >= 10_000.0 { println!( "✅ Throughput target ACHIEVED: {:.0} orders/sec (target: 10K orders/sec)", throughput ); } else { println!( "⚠️ Throughput BELOW target: {:.0} orders/sec (target: 10K orders/sec)", throughput ); } if p99 < 100_000_000 { // 100ms in nanoseconds println!( "✅ P99 latency GOOD: {:.2}ms (< 100ms)", safe_div(p99 as f64, 1_000_000.0) ); } else { println!( "⚠️ P99 latency HIGH: {:.2}ms (> 100ms)", safe_div(p99 as f64, 1_000_000.0) ); } if success_rate >= 99.0 { println!("✅ Success rate EXCELLENT: {:.2}%", success_rate); } else if success_rate >= 95.0 { println!("⚠️ Success rate ACCEPTABLE: {:.2}%", success_rate); } else { println!("❌ Success rate POOR: {:.2}%", success_rate); } } } impl Default for PerformanceMetrics { fn default() -> Self { Self::new() } } /// Create a test order request pub fn create_order_request(index: u64) -> SubmitOrderRequest { let symbols = ["BTC/USD", "ETH/USD", "SOL/USD", "AVAX/USD", "MATIC/USD"]; let symbol = symbols[(index % symbols.len() as u64) as usize].to_string(); SubmitOrderRequest { symbol, side: if index % 2 == 0 { OrderSide::Buy.into() } else { OrderSide::Sell.into() }, order_type: OrderType::Limit.into(), quantity: safe_add(1.0, safe_mul((index % 10) as f64, 0.1)), price: Some(safe_add(50000.0, (index % 1000) as f64)), stop_price: None, account_id: format!("test_account_{}", index % 10), metadata: std::collections::HashMap::new(), } } /// Connect to Trading Service pub async fn connect_trading_service( ) -> Result, Box> { let endpoint = "http://localhost:50052"; println!("🔌 Connecting to Trading Service at {}", endpoint); let channel = Channel::from_static("http://localhost:50052") .connect_timeout(Duration::from_secs(10)) .timeout(Duration::from_secs(30)) .connect() .await?; let client = TradingServiceClient::new(channel); println!("✅ Connected successfully"); Ok(client) }