Files
foxhunt/tests/helpers.rs
jgrusewski 6bd5b18465 🔧 Wave 33: Test Compilation Improvements - 57 errors remaining
**Progress: 1,178 → 57 test errors (95% reduction)**

## Status Summary
-  Production code: Compiles cleanly (0 errors)
- ⚠️  Test code: 57 errors remain (massive improvement)
- ⚙️  All services build successfully
- 📊 Warning count: 253 (target: <20) - AGENTS WILL FIX

## Remaining Test Errors (57 total)
### Primary Issues:
1. 23× E0308 mismatched types
2. 17× E0433 undeclared Decimal
3. 15× E0433 compliance module not found
4. 6× E0624 private method access
5. Various import and type issues

## Next Phase: Wave 33-2
Launch 10+ parallel agents to:
- Fix remaining 57 test compilation errors
- Reduce 253 warnings to <20
- Achieve 95% test coverage
- Ensure all tests pass

🤖 Generated with [Claude Code](https://claude.com/claude-code)

Co-Authored-By: Claude <noreply@anthropic.com>
2025-10-01 21:24:28 +02:00

212 lines
6.5 KiB
Rust

//! Test helper utilities and common functions
use chrono::Utc;
use common::{OrderSide, OrderStatus, OrderType, TimeInForce};
use rust_decimal::Decimal;
use std::collections::HashMap;
use trading_engine::trading_operations::TradingOrder;
/// Generate a simple test ID instead of using uuid
#[allow(dead_code)]
fn generate_test_id() -> String {
use std::sync::atomic::{AtomicU64, Ordering};
static COUNTER: AtomicU64 = AtomicU64::new(1);
format!("TEST_{}", COUNTER.fetch_add(1, Ordering::SeqCst))
}
/// Create a test TradingOrder with all required fields
#[allow(dead_code)]
pub fn create_test_order(
symbol: &str,
side: OrderSide,
quantity: Decimal,
price: Decimal,
) -> TradingOrder {
TradingOrder {
id: generate_test_id().into(),
symbol: symbol.to_string(),
side,
order_type: OrderType::Limit,
quantity,
price,
time_in_force: TimeInForce::Day,
metadata: HashMap::new(),
created_at: Utc::now(),
submitted_at: None,
executed_at: None,
status: OrderStatus::Created,
fill_quantity: Decimal::ZERO,
average_fill_price: None,
}
}
/// Create test configuration with sensible defaults
#[allow(dead_code)]
pub fn create_test_config() -> TestConfig {
TestConfig {
initial_capital: Decimal::from(100_000),
risk_free_rate: Decimal::new(2, 2), // 2%
enable_logging: false,
}
}
/// Test configuration structure
#[allow(dead_code)]
#[derive(Debug, Clone)]
pub struct TestConfig {
/// Initial trading capital
pub initial_capital: Decimal,
/// Risk-free rate for calculations
pub risk_free_rate: Decimal,
/// Enable logging output
pub enable_logging: bool,
}
impl Default for TestConfig {
fn default() -> Self {
create_test_config()
}
}
/// Mock implementations for testing
pub mod mock_implementations {
use std::collections::HashMap;
use std::sync::{Arc, Mutex};
use std::time::Duration;
/// Mock performance monitor for testing
#[derive(Debug, Clone)]
pub struct MockPerformanceMonitor {
stats: Arc<Mutex<PerformanceStats>>,
}
impl MockPerformanceMonitor {
/// Create a new mock performance monitor
pub fn new() -> Self {
Self {
stats: Arc::new(Mutex::new(PerformanceStats::default())),
}
}
/// Record a single operation with its duration
pub fn record_operation(&self, operation: &str, duration: Duration) {
if let Ok(mut stats) = self.stats.lock() {
stats.operations_count += 1;
stats.total_duration += duration;
stats.average_latency = stats.total_duration / stats.operations_count as u32;
if duration > stats.max_latency {
stats.max_latency = duration;
}
if duration < stats.min_latency || stats.min_latency == Duration::ZERO {
stats.min_latency = duration;
}
stats
.operation_latencies
.insert(operation.to_string(), duration);
}
}
/// Record a metric with a value and unit
pub fn record_metric(
&self,
metric_name: &str,
value: f64,
unit: &str,
) -> Result<(), &'static str> {
// Convert the metric value to a duration based on the unit
let duration = match unit {
"ns" => Duration::from_nanos(value as u64),
"us" | "μs" => Duration::from_micros(value as u64),
"ms" => Duration::from_millis(value as u64),
"s" => Duration::from_secs(value as u64),
// Non-time units - convert to a mock duration representation
"ops/sec" | "orders/sec" | "ratio" | "ns/item" => {
// For non-time units, store as microseconds for simplicity
Duration::from_micros((value * 1000.0) as u64)
},
_ => Duration::from_nanos(1000), // Default fallback
};
self.record_operation(metric_name, duration);
Ok(())
}
/// Get current performance statistics
pub fn get_stats(&self) -> PerformanceStats {
self.stats.lock().expect("Failed to lock stats").clone()
}
/// Reset all statistics to default values
#[allow(dead_code)]
pub fn reset(&self) {
if let Ok(mut stats) = self.stats.lock() {
*stats = PerformanceStats::default();
}
}
}
impl Default for MockPerformanceMonitor {
fn default() -> Self {
Self::new()
}
}
/// Performance statistics for testing
#[derive(Debug, Clone)]
pub struct PerformanceStats {
/// Total number of operations recorded
pub operations_count: u64,
/// Total duration of all operations
pub total_duration: Duration,
/// Average operation latency
pub average_latency: Duration,
/// Minimum operation latency
pub min_latency: Duration,
/// Maximum operation latency
pub max_latency: Duration,
/// Individual operation latencies by name
pub operation_latencies: HashMap<String, Duration>,
}
impl Default for PerformanceStats {
fn default() -> Self {
Self {
operations_count: 0,
total_duration: Duration::ZERO,
average_latency: Duration::ZERO,
min_latency: Duration::ZERO,
max_latency: Duration::ZERO,
operation_latencies: HashMap::new(),
}
}
}
impl PerformanceStats {
/// Calculate throughput in operations per second
pub fn throughput_per_second(&self) -> f64 {
if self.total_duration.as_secs_f64() > 0.0 {
self.operations_count as f64 / self.total_duration.as_secs_f64()
} else {
0.0
}
}
/// Get average latency in microseconds
pub fn average_latency_micros(&self) -> u64 {
self.average_latency.as_micros() as u64
}
/// Get maximum latency in microseconds
pub fn max_latency_micros(&self) -> u64 {
self.max_latency.as_micros() as u64
}
/// Get minimum latency in microseconds
pub fn min_latency_micros(&self) -> u64 {
self.min_latency.as_micros() as u64
}
}
}