Files
foxhunt/services/api/tests/regime_routing_integration_test.rs
jgrusewski e50ea55064 feat: create services/api/ — unified gRPC gateway with tonic-web
Copied from api_gateway, removed REST handlers (port 8080),
added tonic-web + CORS for grpc-web browser access.
Binary renamed: api-gateway → api

Changes:
- Package name: api-gateway → api
- Deleted src/handlers/ (REST ML endpoints on port 8080)
- Added tonic-web 0.13 + tower-http CORS layer
- Server::builder().accept_http1(true) for grpc-web
- CORS_ORIGINS env var (default http://localhost:5173)
- Metrics server on port 9091 (axum) preserved
- All 95 lib tests pass, 0 clippy warnings
- Added services/api to workspace members

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-03-04 23:32:46 +01:00

607 lines
20 KiB
Rust

//! Agent F8: Regime Endpoint Routing Integration Tests
//!
//! Comprehensive validation of API Gateway routing, authentication, rate limiting,
//! and performance for regime detection endpoints.
//!
//! Tests:
//! 1. Routing validation (GetRegimeState, GetRegimeTransitions)
//! 2. Authentication enforcement (valid JWT required)
//! 3. Rate limiting operational (requests within quota)
//! 4. Proxy latency (target: < 1ms)
//! 5. Concurrent requests (10 parallel)
//!
//! Requirements:
//! - API Gateway running on port 50051
//! - Trading Service running on port 50052
//! - Redis running on port 6379
//! - PostgreSQL running on port 5432
//!
//! Run with:
//! ```
//! cargo test -p api --test regime_routing_integration_test --ignored -- --nocapture
//! ```
#[path = "common/mod.rs"]
mod common;
use anyhow::Result;
use std::time::Instant;
use tonic::{metadata::MetadataValue, Request};
use api::foxhunt::tli::{
trading_service_client::TradingServiceClient, GetRegimeStateRequest,
GetRegimeTransitionsRequest,
};
/// Test 1: Basic Routing - GetRegimeState
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_get_regime_state_routing() -> Result<()> {
println!("\n=== Test 1: GetRegimeState Routing ===");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"regime-test-user",
vec!["trader".to_string()],
vec!["trading.regime_state".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let start = Instant::now();
let response = client.get_regime_state(request).await;
let elapsed = start.elapsed();
println!(" Response time: {:?}", elapsed);
match response {
Ok(resp) => {
let regime = resp.into_inner();
println!(" ✓ Routing successful");
println!(" Symbol: {}", regime.symbol);
println!(" Regime: {}", regime.current_regime);
println!(" Confidence: {:.2}", regime.confidence);
println!(" ADX: {:.2}", regime.adx);
println!(" Latency: {:?}", elapsed);
// Validate latency target
if elapsed.as_millis() < 1 {
println!(" ✅ PASS: Latency {} μs < 1ms target", elapsed.as_micros());
} else {
println!(
" ⚠️ WARNING: Latency {} ms >= 1ms target",
elapsed.as_millis()
);
}
Ok(())
},
Err(e) => {
println!(" ❌ Routing failed: {:?}", e);
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
Err(anyhow::anyhow!("GetRegimeState routing failed: {}", e))
},
}
}
/// Test 2: Basic Routing - GetRegimeTransitions
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_get_regime_transitions_routing() -> Result<()> {
println!("\n=== Test 2: GetRegimeTransitions Routing ===");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"regime-test-user",
vec!["trader".to_string()],
vec!["trading.regime_transitions".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeTransitionsRequest {
symbol: "ES.FUT".to_string(),
limit: 10,
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let start = Instant::now();
let response = client.get_regime_transitions(request).await;
let elapsed = start.elapsed();
println!(" Response time: {:?}", elapsed);
match response {
Ok(resp) => {
let transitions = resp.into_inner();
println!(" ✓ Routing successful");
println!(" Transitions count: {}", transitions.transitions.len());
if !transitions.transitions.is_empty() {
let first = &transitions.transitions[0];
println!(
" First transition: {}{}",
first.from_regime, first.to_regime
);
println!(" Duration: {} bars", first.duration_bars);
println!(" Probability: {:.2}", first.transition_probability);
}
println!(" Latency: {:?}", elapsed);
// Validate latency target
if elapsed.as_millis() < 1 {
println!(" ✅ PASS: Latency {} μs < 1ms target", elapsed.as_micros());
} else {
println!(
" ⚠️ WARNING: Latency {} ms >= 1ms target",
elapsed.as_millis()
);
}
Ok(())
},
Err(e) => {
println!(" ❌ Routing failed: {:?}", e);
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
Err(anyhow::anyhow!(
"GetRegimeTransitions routing failed: {}",
e
))
},
}
}
/// Test 3: Authentication Enforcement - No Token
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_authentication_no_token() -> Result<()> {
println!("\n=== Test 3: Authentication Enforcement (No Token) ===");
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let request = Request::new(req); // No authorization header
let response = client.get_regime_state(request).await;
match response {
Ok(_) => {
println!(" ❌ FAIL: Request succeeded without authentication");
Err(anyhow::anyhow!("Authentication not enforced"))
},
Err(e) => {
println!(" ✓ Request rejected (expected)");
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
if e.code() == tonic::Code::Unauthenticated {
println!(" ✅ PASS: Correct error code (Unauthenticated)");
Ok(())
} else {
println!(
" ⚠️ WARNING: Expected Unauthenticated, got {:?}",
e.code()
);
Ok(())
}
},
}
}
/// Test 4: Authentication Enforcement - Invalid Token
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_authentication_invalid_token() -> Result<()> {
println!("\n=== Test 4: Authentication Enforcement (Invalid Token) ===");
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from("Bearer invalid.token.signature")?;
request.metadata_mut().insert("authorization", auth_value);
let response = client.get_regime_state(request).await;
match response {
Ok(_) => {
println!(" ❌ FAIL: Request succeeded with invalid token");
Err(anyhow::anyhow!("Invalid token not rejected"))
},
Err(e) => {
println!(" ✓ Request rejected (expected)");
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
if e.code() == tonic::Code::Unauthenticated {
println!(" ✅ PASS: Correct error code (Unauthenticated)");
Ok(())
} else {
println!(
" ⚠️ WARNING: Expected Unauthenticated, got {:?}",
e.code()
);
Ok(())
}
},
}
}
/// Test 5: Authentication Enforcement - Expired Token
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_authentication_expired_token() -> Result<()> {
println!("\n=== Test 5: Authentication Enforcement (Expired Token) ===");
let token = common::generate_expired_token("expired-user")?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let response = client.get_regime_state(request).await;
match response {
Ok(_) => {
println!(" ❌ FAIL: Request succeeded with expired token");
Err(anyhow::anyhow!("Expired token not rejected"))
},
Err(e) => {
println!(" ✓ Request rejected (expected)");
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
if e.code() == tonic::Code::Unauthenticated {
println!(" ✅ PASS: Correct error code (Unauthenticated)");
Ok(())
} else {
println!(
" ⚠️ WARNING: Expected Unauthenticated, got {:?}",
e.code()
);
Ok(())
}
},
}
}
/// Test 6: Rate Limiting - Within Quota
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_rate_limiting_within_quota() -> Result<()> {
println!("\n=== Test 6: Rate Limiting (Within Quota) ===");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"rate-limit-test-user",
vec!["trader".to_string()],
vec!["trading.regime_state".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
// Send 10 requests (default rate limit is 100 req/s)
let mut success_count = 0;
let mut failed_count = 0;
for i in 0..10 {
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let response = client.get_regime_state(request).await;
match response {
Ok(_) => success_count += 1,
Err(e) => {
if e.code() == tonic::Code::ResourceExhausted {
failed_count += 1;
println!(" ⚠️ Request {} rate limited (unexpected)", i + 1);
}
},
}
}
println!(" Successful requests: {}/10", success_count);
println!(" Rate limited: {}/10", failed_count);
if success_count == 10 {
println!(" ✅ PASS: All requests within quota succeeded");
Ok(())
} else {
println!(" ⚠️ WARNING: {} requests rate limited", failed_count);
Ok(())
}
}
/// Test 7: Proxy Latency Measurement
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_proxy_latency_measurement() -> Result<()> {
println!("\n=== Test 7: Proxy Latency Measurement ===");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"latency-test-user",
vec!["trader".to_string()],
vec!["trading.regime_state".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
// Warmup: 100 requests
println!(" Warming up with 100 requests...");
for _ in 0..100 {
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let _ = client.get_regime_state(request).await;
}
// Measure 1000 warm requests
let mut latencies = Vec::new();
println!(" Measuring 1000 warm requests...");
for _ in 0..1000 {
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let start = Instant::now();
let _ = client.get_regime_state(request).await;
latencies.push(start.elapsed());
}
latencies.sort();
let p50 = latencies[latencies.len() / 2];
let p95 = latencies[(latencies.len() as f64 * 0.95) as usize];
let p99 = latencies[(latencies.len() as f64 * 0.99) as usize];
let min = latencies[0];
let max = latencies[latencies.len() - 1];
println!("\n 📊 Proxy Latency Statistics:");
println!(" Min: {:>8} μs", min.as_micros());
println!(" P50: {:>8} μs", p50.as_micros());
println!(" P95: {:>8} μs", p95.as_micros());
println!(" P99: {:>8} μs", p99.as_micros());
println!(" Max: {:>8} μs", max.as_micros());
println!(" Target: < 1,000 μs (1ms)");
if p99.as_micros() < 1000 {
println!(" ✅ PASS: P99 {} μs < 1ms target", p99.as_micros());
Ok(())
} else {
println!(" ⚠️ WARNING: P99 {} μs >= 1ms target", p99.as_micros());
Ok(())
}
}
/// Test 8: Concurrent Requests (10 parallel)
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_concurrent_requests() -> Result<()> {
println!("\n=== Test 8: Concurrent Requests (10 parallel) ===");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"concurrent-test-user",
vec!["trader".to_string()],
vec![
"trading.regime_state".to_string(),
"trading.regime_transitions".to_string(),
],
3600,
)?;
let start = Instant::now();
let mut handles = vec![];
for i in 0..10 {
let token_clone = token.clone();
let handle = tokio::spawn(async move {
let mut client = TradingServiceClient::connect("http://localhost:50051")
.await
.unwrap();
// Alternate between GetRegimeState and GetRegimeTransitions
let result = if i % 2 == 0 {
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value =
MetadataValue::try_from(format!("Bearer {}", token_clone)).unwrap();
request.metadata_mut().insert("authorization", auth_value);
client.get_regime_state(request).await.map(|_| ())
} else {
let req = GetRegimeTransitionsRequest {
symbol: "ES.FUT".to_string(),
limit: 10,
};
let mut request = Request::new(req);
let auth_value =
MetadataValue::try_from(format!("Bearer {}", token_clone)).unwrap();
request.metadata_mut().insert("authorization", auth_value);
client.get_regime_transitions(request).await.map(|_| ())
};
result
});
handles.push(handle);
}
let mut success_count = 0;
let mut error_count = 0;
for handle in handles {
match handle.await {
Ok(Ok(_)) => success_count += 1,
Ok(Err(e)) => {
error_count += 1;
println!(" ⚠️ Request failed: {:?}", e);
},
Err(e) => {
error_count += 1;
println!(" ⚠️ Task panicked: {:?}", e);
},
}
}
let elapsed = start.elapsed();
let avg_per_request = elapsed / 10;
println!(" Total time: {:?}", elapsed);
println!(" Avg/request: {:?}", avg_per_request);
println!(" Successful: {}/10", success_count);
println!(" Failed: {}/10", error_count);
if success_count == 10 {
println!(" ✅ PASS: All concurrent requests succeeded");
Ok(())
} else {
println!(" ⚠️ WARNING: {}/10 requests failed", error_count);
Ok(())
}
}
/// Test 9: Metadata Forwarding
#[tokio::test]
#[ignore = "Run manually with services running"]
async fn test_metadata_forwarding() -> Result<()> {
println!("\n=== Test 9: Metadata Forwarding ===");
// Create authenticated request with custom metadata
let (token, _jti) = common::generate_test_token(
"metadata-test-user",
vec!["trader".to_string()],
vec!["trading.regime_state".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
// Add custom metadata
let user_id_value = MetadataValue::try_from("metadata-test-user")?;
request.metadata_mut().insert("x-user-id", user_id_value);
let response = client.get_regime_state(request).await;
match response {
Ok(resp) => {
println!(" ✓ Request succeeded with custom metadata");
let regime = resp.into_inner();
println!(" Symbol: {}", regime.symbol);
println!(" Regime: {}", regime.current_regime);
println!(" ✅ PASS: Metadata forwarding works");
Ok(())
},
Err(e) => {
println!(" ❌ Request failed: {:?}", e);
Err(anyhow::anyhow!("Metadata forwarding test failed: {}", e))
},
}
}
/// Test 10: Circuit Breaker Behavior (Simulated Backend Failure)
#[tokio::test]
#[ignore = "Run manually with services running - requires stopping Trading Service"]
async fn test_circuit_breaker_backend_failure() -> Result<()> {
println!("\n=== Test 10: Circuit Breaker (Backend Failure) ===");
println!(" NOTE: This test requires stopping the Trading Service to simulate failure");
// Create authenticated request
let (token, _jti) = common::generate_test_token(
"circuit-breaker-test-user",
vec!["trader".to_string()],
vec!["trading.regime_state".to_string()],
3600,
)?;
let mut client = TradingServiceClient::connect("http://localhost:50051").await?;
let req = GetRegimeStateRequest {
symbol: "ES.FUT".to_string(),
};
let mut request = Request::new(req);
let auth_value = MetadataValue::try_from(format!("Bearer {}", token))?;
request.metadata_mut().insert("authorization", auth_value);
let response = client.get_regime_state(request).await;
match response {
Ok(_) => {
println!(" ✓ Backend is available (test requires backend to be down)");
println!(" ⚠️ SKIPPED: Stop Trading Service to test circuit breaker");
Ok(())
},
Err(e) => {
println!(" ✓ Request failed (expected when backend is down)");
println!(" Status code: {:?}", e.code());
println!(" Message: {}", e.message());
if e.code() == tonic::Code::Unavailable {
println!(" ✅ PASS: Circuit breaker opened (Unavailable)");
Ok(())
} else {
println!(" ⚠️ WARNING: Expected Unavailable, got {:?}", e.code());
Ok(())
}
},
}
}