Files
polyfill-rs/tests/integration_tests.rs
T
2025-09-04 23:25:49 -04:00

465 lines
16 KiB
Rust

//! Integration tests for polyfill-rs
//!
//! These tests verify that our client can actually communicate with the real Polymarket API.
//! They require network connectivity and may take longer to run.
use polyfill_rs::{ClobClient, Result, PolyfillError, Side};
use rust_decimal::Decimal;
use std::str::FromStr;
use std::env;
use tokio::time::{sleep, Duration};
use tracing::{info, error, warn};
const POLYMARKET_HOST: &str = "https://clob.polymarket.com";
const POLYGON_CHAIN_ID: u64 = 137;
/// Test configuration from environment variables
struct TestConfig {
private_key: Option<String>,
api_key: Option<String>,
api_secret: Option<String>,
api_passphrase: Option<String>,
}
impl TestConfig {
fn from_env() -> Self {
Self {
private_key: env::var("POLYMARKET_PRIVATE_KEY").ok(),
api_key: env::var("POLYMARKET_API_KEY").ok(),
api_secret: env::var("POLYMARKET_API_SECRET").ok(),
api_passphrase: env::var("POLYMARKET_API_PASSPHRASE").ok(),
}
}
fn has_auth(&self) -> bool {
self.private_key.is_some()
}
fn has_api_creds(&self) -> bool {
self.api_key.is_some() && self.api_secret.is_some() && self.api_passphrase.is_some()
}
}
/// Test that we can connect to Polymarket's API
#[tokio::test]
async fn test_api_connectivity() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Test basic connectivity
let is_ok = client.get_ok().await;
assert!(is_ok, "Failed to connect to Polymarket API");
// Test server time endpoint
let server_time = client.get_server_time().await?;
assert!(server_time > 0, "Invalid server time received");
println!("API connectivity test passed");
Ok(())
}
/// Test market data endpoints
#[tokio::test]
async fn test_market_data_endpoints() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Get sampling markets to find a valid token_id
let markets_response = client.get_sampling_markets(None).await?;
assert!(!markets_response.data.is_empty(), "No markets returned");
let first_market = &markets_response.data[0];
let token_id = &first_market.tokens[0].token_id;
println!("Testing with token_id: {}", token_id);
// Test order book endpoint
let order_book = client.get_order_book(token_id).await?;
assert_eq!(order_book.asset_id, *token_id);
assert!(!order_book.bids.is_empty() || !order_book.asks.is_empty(), "Empty order book");
// Test midpoint endpoint
let midpoint = client.get_midpoint(token_id).await?;
assert!(midpoint.mid > Decimal::ZERO, "Invalid midpoint");
// Test spread endpoint
let spread = client.get_spread(token_id).await?;
assert!(spread.spread >= Decimal::ZERO, "Invalid spread");
// Test price endpoints
let buy_price = client.get_price(token_id, polyfill_rs::Side::BUY).await?;
let sell_price = client.get_price(token_id, polyfill_rs::Side::SELL).await?;
assert!(buy_price.price > Decimal::ZERO, "Invalid buy price");
assert!(sell_price.price > Decimal::ZERO, "Invalid sell price");
// Test tick size endpoint
let tick_size = client.get_tick_size(token_id).await?;
assert!(tick_size > Decimal::ZERO, "Invalid tick size");
// Test neg risk endpoint
let neg_risk = client.get_neg_risk(token_id).await?;
// neg_risk is a boolean, so just verify it doesn't panic
println!("Market data endpoints test passed");
Ok(())
}
/// Test error handling with invalid requests
#[tokio::test]
async fn test_error_handling() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Test with invalid token_id
let result = client.get_order_book("invalid_token_id").await;
match result {
Ok(_) => {
// Some APIs might return empty data instead of error
println!("Invalid token_id returned data instead of error");
}
Err(e) => {
match e {
PolyfillError::Api { status, .. } => {
assert!(status >= 400, "Expected client/server error for invalid token");
}
_ => {
// Other error types are also acceptable
println!("Received error for invalid token: {:?}", e);
}
}
}
}
println!(" Error handling test passed");
Ok(())
}
/// Test rate limiting behavior
#[tokio::test]
async fn test_rate_limiting() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Make multiple rapid requests to test rate limiting
let mut results = Vec::new();
for _ in 0..5 {
let result = client.get_server_time().await;
results.push(result);
// Small delay between requests
sleep(Duration::from_millis(100)).await;
}
// Most requests should succeed
let success_count = results.iter().filter(|r| r.is_ok()).count();
assert!(success_count >= 3, "Too many requests failed: {}/5", success_count);
println!(" Rate limiting test passed");
Ok(())
}
/// Test compatibility with polymarket-rs-client API
#[tokio::test]
async fn test_api_compatibility() -> Result<()> {
// Test that our client has the same basic structure as polymarket-rs-client
let client = ClobClient::new(POLYMARKET_HOST);
// Test that we can call the same methods
let _ = client.get_ok().await;
let _ = client.get_server_time().await?;
let _ = client.get_sampling_markets(None).await?;
// Test that our types are compatible
let order_args = polyfill_rs::OrderArgs::new(
"test_token",
Decimal::from_str("0.5").map_err(|e| PolyfillError::parse(format!("Invalid decimal: {}", e), None))?,
Decimal::from_str("1.0").map_err(|e| PolyfillError::parse(format!("Invalid decimal: {}", e), None))?,
polyfill_rs::Side::BUY,
);
assert_eq!(order_args.token_id, "test_token");
assert_eq!(order_args.side, polyfill_rs::Side::BUY);
println!(" API compatibility test passed");
Ok(())
}
/// Test performance characteristics
#[tokio::test]
async fn test_performance() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Test response time for basic operations
let start = std::time::Instant::now();
let _ = client.get_server_time().await?;
let server_time_duration = start.elapsed();
let start = std::time::Instant::now();
let markets = client.get_sampling_markets(None).await?;
let markets_duration = start.elapsed();
// Verify reasonable performance (adjust thresholds as needed)
assert!(server_time_duration < Duration::from_secs(5), "Server time too slow: {:?}", server_time_duration);
assert!(markets_duration < Duration::from_secs(10), "Markets request too slow: {:?}", markets_duration);
println!(" Performance test passed");
println!(" Server time: {:?}", server_time_duration);
println!(" Markets request: {:?}", markets_duration);
println!(" Markets returned: {}", markets.data.len());
Ok(())
}
/// Comprehensive test of all market data endpoints
#[tokio::test]
async fn test_all_market_data_endpoints() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Get a valid token ID first
let markets_response = client.get_sampling_markets(Some(5)).await?;
assert!(!markets_response.data.is_empty(), "No markets returned");
let first_market = &markets_response.data[0];
let token_id = &first_market.tokens[0].token_id;
println!("Testing all endpoints with token_id: {}", token_id);
// Test all endpoints systematically
let endpoints = vec![
("Order Book", Box::new(|| client.get_order_book(token_id)) as Box<dyn Fn() -> _>),
("Midpoint", Box::new(|| client.get_midpoint(token_id))),
("Spread", Box::new(|| client.get_spread(token_id))),
("Buy Price", Box::new(|| client.get_price(token_id, Side::BUY))),
("Sell Price", Box::new(|| client.get_price(token_id, Side::SELL))),
("Tick Size", Box::new(|| client.get_tick_size(token_id))),
("Neg Risk", Box::new(|| client.get_neg_risk(token_id))),
];
let mut success_count = 0;
let mut total_time = Duration::from_secs(0);
for (name, endpoint_test) in endpoints {
let start = std::time::Instant::now();
match endpoint_test().await {
Ok(_) => {
let duration = start.elapsed();
total_time += duration;
success_count += 1;
println!(" {}: {:.2}ms", name, duration.as_secs_f64() * 1000.0);
}
Err(e) => {
let duration = start.elapsed();
total_time += duration;
println!(" {}: {:.2}ms - {}", name, duration.as_secs_f64() * 1000.0, e);
}
}
// Small delay between requests
sleep(Duration::from_millis(100)).await;
}
let avg_time = total_time / endpoints.len() as u32;
let success_rate = (success_count as f64 / endpoints.len() as f64) * 100.0;
println!("Endpoint Test Summary:");
println!(" Success rate: {:.1}%", success_rate);
println!(" Average response time: {:.2}ms", avg_time.as_secs_f64() * 1000.0);
// Require at least 80% success rate
assert!(success_rate >= 80.0, "Success rate too low: {:.1}%", success_rate);
Ok(())
}
/// Test data consistency across endpoints
#[tokio::test]
async fn test_data_consistency() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
// Get a valid token ID
let markets_response = client.get_sampling_markets(Some(5)).await?;
let first_market = &markets_response.data[0];
let token_id = &first_market.tokens[0].token_id;
println!("Testing data consistency with token_id: {}", token_id);
// Get all market data
let order_book = client.get_order_book(token_id).await?;
let midpoint = client.get_midpoint(token_id).await?;
let spread = client.get_spread(token_id).await?;
let buy_price = client.get_price(token_id, Side::BUY).await?;
let sell_price = client.get_price(token_id, Side::SELL).await?;
let tick_size = client.get_tick_size(token_id).await?;
let neg_risk = client.get_neg_risk(token_id).await?;
// Validate data consistency
println!("Data validation:");
// Check that prices are positive
assert!(buy_price.price > Decimal::ZERO, "Buy price should be positive: {}", buy_price.price);
assert!(sell_price.price > Decimal::ZERO, "Sell price should be positive: {}", sell_price.price);
println!(" Prices are positive");
// Check that spread is non-negative
assert!(spread.spread >= Decimal::ZERO, "Spread should be non-negative: {}", spread.spread);
println!(" Spread is non-negative");
// Check that tick size is positive
assert!(tick_size > Decimal::ZERO, "Tick size should be positive: {}", tick_size);
println!(" Tick size is positive");
// Check that midpoint is reasonable (between buy and sell if both exist)
if buy_price.price > Decimal::ZERO && sell_price.price > Decimal::ZERO {
if midpoint.mid < buy_price.price || midpoint.mid > sell_price.price {
println!(" Midpoint {} is not between buy {} and sell {}",
midpoint.mid, buy_price.price, sell_price.price);
} else {
println!(" Midpoint is between buy and sell prices");
}
}
// Check that we have some order book data
if order_book.bids.is_empty() && order_book.asks.is_empty() {
println!(" Order book is empty");
} else {
println!(" Order book has liquidity ({} bids, {} asks)",
order_book.bids.len(), order_book.asks.len());
}
// Check neg risk is a boolean
println!(" Neg risk is boolean: {}", neg_risk);
println!(" Data consistency test passed");
Ok(())
}
/// Test rate limiting behavior more thoroughly
#[tokio::test]
async fn test_comprehensive_rate_limiting() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
println!("Testing rate limiting with rapid requests...");
// Make many rapid requests
let mut results = Vec::new();
let request_count = 20;
for i in 0..request_count {
let start = std::time::Instant::now();
let result = client.get_server_time().await;
let duration = start.elapsed();
results.push((i, result, duration));
// Very small delay to test rate limiting
sleep(Duration::from_millis(50)).await;
}
// Analyze results
let success_count = results.iter().filter(|(_, result, _)| result.is_ok()).count();
let failure_count = results.iter().filter(|(_, result, _)| result.is_err()).count();
let success_rate = (success_count as f64 / request_count as f64) * 100.0;
println!("Rate limiting test results:");
println!(" Total requests: {}", request_count);
println!(" Successful: {}", success_count);
println!(" Failed: {}", failure_count);
println!(" Success rate: {:.1}%", success_rate);
// Show timing for first few requests
for (i, result, duration) in results.iter().take(5) {
let status = if result.is_ok() { "" } else { "" };
println!(" Request {}: {} {:.2}ms", i + 1, status, duration.as_secs_f64() * 1000.0);
}
// We expect some failures due to rate limiting, but not too many
assert!(success_rate >= 50.0, "Success rate too low, possible rate limiting issues: {:.1}%", success_rate);
println!(" Rate limiting test passed");
Ok(())
}
/// Test error handling with various invalid inputs
#[tokio::test]
async fn test_comprehensive_error_handling() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
println!("Testing comprehensive error handling...");
// Test various invalid token IDs
let invalid_tokens = vec![
"",
"invalid",
"12345",
"0x1234567890123456789012345678901234567890",
"very_long_invalid_token_id_that_should_fail",
];
for token_id in invalid_tokens {
println!(" Testing invalid token ID: '{}'", token_id);
let result = client.get_order_book(token_id).await;
match result {
Ok(order_book) => {
if order_book.bids.is_empty() && order_book.asks.is_empty() {
println!(" Empty order book returned (acceptable)");
} else {
println!(" Unexpected data returned for invalid token");
}
}
Err(e) => {
match e {
PolyfillError::Api { status, .. } => {
if status >= 400 {
println!(" Correctly returned API error: {}", status);
} else {
println!(" Unexpected status code: {}", status);
}
}
_ => {
println!(" Correctly returned error: {:?}", e);
}
}
}
}
}
println!(" Error handling test passed");
Ok(())
}
/// Test concurrent requests
#[tokio::test]
async fn test_concurrent_requests() -> Result<()> {
let client = ClobClient::new(POLYMARKET_HOST);
println!("Testing concurrent requests...");
// Get a valid token ID
let markets_response = client.get_sampling_markets(Some(5)).await?;
let token_id = &markets_response.data[0].tokens[0].token_id;
// Make concurrent requests
let start = std::time::Instant::now();
let results = tokio::join!(
client.get_server_time(),
client.get_midpoint(token_id),
client.get_spread(token_id),
client.get_price(token_id, Side::BUY),
client.get_price(token_id, Side::SELL),
);
let duration = start.elapsed();
// Check results
let (server_time, midpoint, spread, buy_price, sell_price) = results;
assert!(server_time.is_ok(), "Server time request failed");
assert!(midpoint.is_ok(), "Midpoint request failed");
assert!(spread.is_ok(), "Spread request failed");
assert!(buy_price.is_ok(), "Buy price request failed");
assert!(sell_price.is_ok(), "Sell price request failed");
println!(" All concurrent requests succeeded");
println!(" Total time: {:.2}ms", duration.as_secs_f64() * 1000.0);
Ok(())
}