client_integration.rs 15 KB

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  1. use std::collections::HashMap;
  2. use std::sync::Arc;
  3. use std::time::Duration;
  4. use api::{
  5. AnthropicClient, ApiError, ContentBlockDelta, ContentBlockDeltaEvent, ContentBlockStartEvent,
  6. InputContentBlock, InputMessage, MessageDeltaEvent, MessageRequest, OutputContentBlock,
  7. StreamEvent, ToolChoice, ToolDefinition,
  8. };
  9. use serde_json::json;
  10. use tokio::io::{AsyncReadExt, AsyncWriteExt};
  11. use tokio::net::TcpListener;
  12. use tokio::sync::Mutex;
  13. #[tokio::test]
  14. async fn send_message_posts_json_and_parses_response() {
  15. let state = Arc::new(Mutex::new(Vec::<CapturedRequest>::new()));
  16. let body = concat!(
  17. "{",
  18. "\"id\":\"msg_test\",",
  19. "\"type\":\"message\",",
  20. "\"role\":\"assistant\",",
  21. "\"content\":[{\"type\":\"text\",\"text\":\"Hello from Claude\"}],",
  22. "\"model\":\"claude-3-7-sonnet-latest\",",
  23. "\"stop_reason\":\"end_turn\",",
  24. "\"stop_sequence\":null,",
  25. "\"usage\":{\"input_tokens\":12,\"output_tokens\":4},",
  26. "\"request_id\":\"req_body_123\"",
  27. "}"
  28. );
  29. let server = spawn_server(
  30. state.clone(),
  31. vec![http_response("200 OK", "application/json", body)],
  32. )
  33. .await;
  34. let client = AnthropicClient::new("test-key")
  35. .with_auth_token(Some("proxy-token".to_string()))
  36. .with_base_url(server.base_url());
  37. let response = client
  38. .send_message(&sample_request(false))
  39. .await
  40. .expect("request should succeed");
  41. assert_eq!(response.id, "msg_test");
  42. assert_eq!(response.total_tokens(), 16);
  43. assert_eq!(response.request_id.as_deref(), Some("req_body_123"));
  44. assert_eq!(
  45. response.content,
  46. vec![OutputContentBlock::Text {
  47. text: "Hello from Claude".to_string(),
  48. }]
  49. );
  50. let captured = state.lock().await;
  51. let request = captured.first().expect("server should capture request");
  52. assert_eq!(request.method, "POST");
  53. assert_eq!(request.path, "/v1/messages");
  54. assert_eq!(
  55. request.headers.get("x-api-key").map(String::as_str),
  56. Some("test-key")
  57. );
  58. assert_eq!(
  59. request.headers.get("authorization").map(String::as_str),
  60. Some("Bearer proxy-token")
  61. );
  62. let body: serde_json::Value =
  63. serde_json::from_str(&request.body).expect("request body should be json");
  64. assert_eq!(
  65. body.get("model").and_then(serde_json::Value::as_str),
  66. Some("claude-3-7-sonnet-latest")
  67. );
  68. assert!(body.get("stream").is_none());
  69. assert_eq!(body["tools"][0]["name"], json!("get_weather"));
  70. assert_eq!(body["tool_choice"]["type"], json!("auto"));
  71. }
  72. #[tokio::test]
  73. async fn stream_message_parses_sse_events_with_tool_use() {
  74. let state = Arc::new(Mutex::new(Vec::<CapturedRequest>::new()));
  75. let sse = concat!(
  76. "event: message_start\n",
  77. "data: {\"type\":\"message_start\",\"message\":{\"id\":\"msg_stream\",\"type\":\"message\",\"role\":\"assistant\",\"content\":[],\"model\":\"claude-3-7-sonnet-latest\",\"stop_reason\":null,\"stop_sequence\":null,\"usage\":{\"input_tokens\":8,\"output_tokens\":0}}}\n\n",
  78. "event: content_block_start\n",
  79. "data: {\"type\":\"content_block_start\",\"index\":0,\"content_block\":{\"type\":\"tool_use\",\"id\":\"toolu_123\",\"name\":\"get_weather\",\"input\":{}}}\n\n",
  80. "event: content_block_delta\n",
  81. "data: {\"type\":\"content_block_delta\",\"index\":0,\"delta\":{\"type\":\"input_json_delta\",\"partial_json\":\"{\\\"city\\\":\\\"Paris\\\"}\"}}\n\n",
  82. "event: content_block_stop\n",
  83. "data: {\"type\":\"content_block_stop\",\"index\":0}\n\n",
  84. "event: message_delta\n",
  85. "data: {\"type\":\"message_delta\",\"delta\":{\"stop_reason\":\"tool_use\",\"stop_sequence\":null},\"usage\":{\"input_tokens\":8,\"output_tokens\":1}}\n\n",
  86. "event: message_stop\n",
  87. "data: {\"type\":\"message_stop\"}\n\n",
  88. "data: [DONE]\n\n"
  89. );
  90. let server = spawn_server(
  91. state.clone(),
  92. vec![http_response_with_headers(
  93. "200 OK",
  94. "text/event-stream",
  95. sse,
  96. &[("request-id", "req_stream_456")],
  97. )],
  98. )
  99. .await;
  100. let client = AnthropicClient::new("test-key")
  101. .with_auth_token(Some("proxy-token".to_string()))
  102. .with_base_url(server.base_url());
  103. let mut stream = client
  104. .stream_message(&sample_request(false))
  105. .await
  106. .expect("stream should start");
  107. assert_eq!(stream.request_id(), Some("req_stream_456"));
  108. let mut events = Vec::new();
  109. while let Some(event) = stream
  110. .next_event()
  111. .await
  112. .expect("stream event should parse")
  113. {
  114. events.push(event);
  115. }
  116. assert_eq!(events.len(), 6);
  117. assert!(matches!(events[0], StreamEvent::MessageStart(_)));
  118. assert!(matches!(
  119. events[1],
  120. StreamEvent::ContentBlockStart(ContentBlockStartEvent {
  121. content_block: OutputContentBlock::ToolUse { .. },
  122. ..
  123. })
  124. ));
  125. assert!(matches!(
  126. events[2],
  127. StreamEvent::ContentBlockDelta(ContentBlockDeltaEvent {
  128. delta: ContentBlockDelta::InputJsonDelta { .. },
  129. ..
  130. })
  131. ));
  132. assert!(matches!(events[3], StreamEvent::ContentBlockStop(_)));
  133. assert!(matches!(
  134. events[4],
  135. StreamEvent::MessageDelta(MessageDeltaEvent { .. })
  136. ));
  137. assert!(matches!(events[5], StreamEvent::MessageStop(_)));
  138. match &events[1] {
  139. StreamEvent::ContentBlockStart(ContentBlockStartEvent {
  140. content_block: OutputContentBlock::ToolUse { name, input, .. },
  141. ..
  142. }) => {
  143. assert_eq!(name, "get_weather");
  144. assert_eq!(input, &json!({}));
  145. }
  146. other => panic!("expected tool_use block, got {other:?}"),
  147. }
  148. let captured = state.lock().await;
  149. let request = captured.first().expect("server should capture request");
  150. assert!(request.body.contains("\"stream\":true"));
  151. }
  152. #[tokio::test]
  153. async fn retries_retryable_failures_before_succeeding() {
  154. let state = Arc::new(Mutex::new(Vec::<CapturedRequest>::new()));
  155. let server = spawn_server(
  156. state.clone(),
  157. vec![
  158. http_response(
  159. "429 Too Many Requests",
  160. "application/json",
  161. "{\"type\":\"error\",\"error\":{\"type\":\"rate_limit_error\",\"message\":\"slow down\"}}",
  162. ),
  163. http_response(
  164. "200 OK",
  165. "application/json",
  166. "{\"id\":\"msg_retry\",\"type\":\"message\",\"role\":\"assistant\",\"content\":[{\"type\":\"text\",\"text\":\"Recovered\"}],\"model\":\"claude-3-7-sonnet-latest\",\"stop_reason\":\"end_turn\",\"stop_sequence\":null,\"usage\":{\"input_tokens\":3,\"output_tokens\":2}}",
  167. ),
  168. ],
  169. )
  170. .await;
  171. let client = AnthropicClient::new("test-key")
  172. .with_base_url(server.base_url())
  173. .with_retry_policy(2, Duration::from_millis(1), Duration::from_millis(2));
  174. let response = client
  175. .send_message(&sample_request(false))
  176. .await
  177. .expect("retry should eventually succeed");
  178. assert_eq!(response.total_tokens(), 5);
  179. assert_eq!(state.lock().await.len(), 2);
  180. }
  181. #[tokio::test]
  182. async fn surfaces_retry_exhaustion_for_persistent_retryable_errors() {
  183. let state = Arc::new(Mutex::new(Vec::<CapturedRequest>::new()));
  184. let server = spawn_server(
  185. state.clone(),
  186. vec![
  187. http_response(
  188. "503 Service Unavailable",
  189. "application/json",
  190. "{\"type\":\"error\",\"error\":{\"type\":\"overloaded_error\",\"message\":\"busy\"}}",
  191. ),
  192. http_response(
  193. "503 Service Unavailable",
  194. "application/json",
  195. "{\"type\":\"error\",\"error\":{\"type\":\"overloaded_error\",\"message\":\"still busy\"}}",
  196. ),
  197. ],
  198. )
  199. .await;
  200. let client = AnthropicClient::new("test-key")
  201. .with_base_url(server.base_url())
  202. .with_retry_policy(1, Duration::from_millis(1), Duration::from_millis(2));
  203. let error = client
  204. .send_message(&sample_request(false))
  205. .await
  206. .expect_err("persistent 503 should fail");
  207. match error {
  208. ApiError::RetriesExhausted {
  209. attempts,
  210. last_error,
  211. } => {
  212. assert_eq!(attempts, 2);
  213. assert!(matches!(
  214. *last_error,
  215. ApiError::Api {
  216. status: reqwest::StatusCode::SERVICE_UNAVAILABLE,
  217. retryable: true,
  218. ..
  219. }
  220. ));
  221. }
  222. other => panic!("expected retries exhausted, got {other:?}"),
  223. }
  224. }
  225. #[tokio::test]
  226. #[ignore = "requires ANTHROPIC_API_KEY and network access"]
  227. async fn live_stream_smoke_test() {
  228. let client = AnthropicClient::from_env().expect("ANTHROPIC_API_KEY must be set");
  229. let mut stream = client
  230. .stream_message(&MessageRequest {
  231. model: std::env::var("ANTHROPIC_MODEL")
  232. .unwrap_or_else(|_| "claude-3-7-sonnet-latest".to_string()),
  233. max_tokens: 32,
  234. messages: vec![InputMessage::user_text(
  235. "Reply with exactly: hello from rust",
  236. )],
  237. system: None,
  238. tools: None,
  239. tool_choice: None,
  240. stream: false,
  241. })
  242. .await
  243. .expect("live stream should start");
  244. while let Some(_event) = stream
  245. .next_event()
  246. .await
  247. .expect("live stream should yield events")
  248. {}
  249. }
  250. #[derive(Debug, Clone, PartialEq, Eq)]
  251. struct CapturedRequest {
  252. method: String,
  253. path: String,
  254. headers: HashMap<String, String>,
  255. body: String,
  256. }
  257. struct TestServer {
  258. base_url: String,
  259. join_handle: tokio::task::JoinHandle<()>,
  260. }
  261. impl TestServer {
  262. fn base_url(&self) -> String {
  263. self.base_url.clone()
  264. }
  265. }
  266. impl Drop for TestServer {
  267. fn drop(&mut self) {
  268. self.join_handle.abort();
  269. }
  270. }
  271. async fn spawn_server(
  272. state: Arc<Mutex<Vec<CapturedRequest>>>,
  273. responses: Vec<String>,
  274. ) -> TestServer {
  275. let listener = TcpListener::bind("127.0.0.1:0")
  276. .await
  277. .expect("listener should bind");
  278. let address = listener
  279. .local_addr()
  280. .expect("listener should have local addr");
  281. let join_handle = tokio::spawn(async move {
  282. for response in responses {
  283. let (mut socket, _) = listener.accept().await.expect("server should accept");
  284. let mut buffer = Vec::new();
  285. let mut header_end = None;
  286. loop {
  287. let mut chunk = [0_u8; 1024];
  288. let read = socket
  289. .read(&mut chunk)
  290. .await
  291. .expect("request read should succeed");
  292. if read == 0 {
  293. break;
  294. }
  295. buffer.extend_from_slice(&chunk[..read]);
  296. if let Some(position) = find_header_end(&buffer) {
  297. header_end = Some(position);
  298. break;
  299. }
  300. }
  301. let header_end = header_end.expect("request should include headers");
  302. let (header_bytes, remaining) = buffer.split_at(header_end);
  303. let header_text =
  304. String::from_utf8(header_bytes.to_vec()).expect("headers should be utf8");
  305. let mut lines = header_text.split("\r\n");
  306. let request_line = lines.next().expect("request line should exist");
  307. let mut parts = request_line.split_whitespace();
  308. let method = parts.next().expect("method should exist").to_string();
  309. let path = parts.next().expect("path should exist").to_string();
  310. let mut headers = HashMap::new();
  311. let mut content_length = 0_usize;
  312. for line in lines {
  313. if line.is_empty() {
  314. continue;
  315. }
  316. let (name, value) = line.split_once(':').expect("header should have colon");
  317. let value = value.trim().to_string();
  318. if name.eq_ignore_ascii_case("content-length") {
  319. content_length = value.parse().expect("content length should parse");
  320. }
  321. headers.insert(name.to_ascii_lowercase(), value);
  322. }
  323. let mut body = remaining[4..].to_vec();
  324. while body.len() < content_length {
  325. let mut chunk = vec![0_u8; content_length - body.len()];
  326. let read = socket
  327. .read(&mut chunk)
  328. .await
  329. .expect("body read should succeed");
  330. if read == 0 {
  331. break;
  332. }
  333. body.extend_from_slice(&chunk[..read]);
  334. }
  335. state.lock().await.push(CapturedRequest {
  336. method,
  337. path,
  338. headers,
  339. body: String::from_utf8(body).expect("body should be utf8"),
  340. });
  341. socket
  342. .write_all(response.as_bytes())
  343. .await
  344. .expect("response write should succeed");
  345. }
  346. });
  347. TestServer {
  348. base_url: format!("http://{address}"),
  349. join_handle,
  350. }
  351. }
  352. fn find_header_end(bytes: &[u8]) -> Option<usize> {
  353. bytes.windows(4).position(|window| window == b"\r\n\r\n")
  354. }
  355. fn http_response(status: &str, content_type: &str, body: &str) -> String {
  356. http_response_with_headers(status, content_type, body, &[])
  357. }
  358. fn http_response_with_headers(
  359. status: &str,
  360. content_type: &str,
  361. body: &str,
  362. headers: &[(&str, &str)],
  363. ) -> String {
  364. let mut extra_headers = String::new();
  365. for (name, value) in headers {
  366. use std::fmt::Write as _;
  367. write!(&mut extra_headers, "{name}: {value}\r\n").expect("header write should succeed");
  368. }
  369. format!(
  370. "HTTP/1.1 {status}\r\ncontent-type: {content_type}\r\n{extra_headers}content-length: {}\r\nconnection: close\r\n\r\n{body}",
  371. body.len()
  372. )
  373. }
  374. fn sample_request(stream: bool) -> MessageRequest {
  375. MessageRequest {
  376. model: "claude-3-7-sonnet-latest".to_string(),
  377. max_tokens: 64,
  378. messages: vec![InputMessage {
  379. role: "user".to_string(),
  380. content: vec![
  381. InputContentBlock::Text {
  382. text: "Say hello".to_string(),
  383. },
  384. InputContentBlock::ToolResult {
  385. tool_use_id: "toolu_prev".to_string(),
  386. content: vec![api::ToolResultContentBlock::Json {
  387. value: json!({"forecast": "sunny"}),
  388. }],
  389. is_error: false,
  390. },
  391. ],
  392. }],
  393. system: Some("Use tools when needed".to_string()),
  394. tools: Some(vec![ToolDefinition {
  395. name: "get_weather".to_string(),
  396. description: Some("Fetches the weather".to_string()),
  397. input_schema: json!({
  398. "type": "object",
  399. "properties": {"city": {"type": "string"}},
  400. "required": ["city"]
  401. }),
  402. }]),
  403. tool_choice: Some(ToolChoice::Auto),
  404. stream,
  405. }
  406. }