1use async_trait::async_trait;
7use regex::Regex;
8use schemars::JsonSchema;
9use serde::{Deserialize, Serialize};
10
11use crate::ssrf::guarded_get;
12use lc_core::tools::{BaseTool, Tool, ToolError};
13
14static SCRIPT_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
15 Regex::new(r"<script[^>]*>.*?</script>").expect("static regex literal must compile")
16});
17
18static STYLE_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
19 Regex::new(r"<style[^>]*>.*?</style>").expect("static regex literal must compile")
20});
21
22static TAG_REGEX: std::sync::LazyLock<Regex> =
23 std::sync::LazyLock::new(|| Regex::new(r"<[^>]+>").expect("static regex literal must compile"));
24
25static WHITESPACE_REGEX: std::sync::LazyLock<Regex> =
26 std::sync::LazyLock::new(|| Regex::new(r"\s+").expect("static regex literal must compile"));
27
28static LINK_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
29 Regex::new(r#"<a[^>]+href\s*=\s*['"]([^'"]+)['"][^>]*>"#)
30 .expect("static regex literal must compile")
31});
32
33static IMG_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
34 Regex::new(r#"<img[^>]+src\s*=\s*['"]([^'"]+)['"][^>]*>"#)
35 .expect("static regex literal must compile")
36});
37
38static TITLE_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
39 Regex::new(r"<title[^>]*>(.*?)</title>").expect("static regex literal must compile")
40});
41
42static DESC_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
43 Regex::new(r#"<meta[^>]+name\s*=\s*['"]description['"][^>]+content\s*=\s*['"]([^'"]+)['"]"#)
44 .expect("static regex literal must compile")
45});
46
47static KW_REGEX: std::sync::LazyLock<Regex> = std::sync::LazyLock::new(|| {
48 Regex::new(r#"<meta[^>]+name\s*=\s*['"]keywords['"][^>]+content\s*=\s*['"]([^'"]+)['"]"#)
49 .expect("static regex literal must compile")
50});
51
52fn extract_unique_links(html: &str) -> (Vec<String>, usize) {
58 let raw: Vec<String> = LINK_REGEX
59 .captures_iter(html)
60 .map(|cap| cap[1].to_string())
61 .collect();
62 let raw_count = raw.len();
63 let mut seen = std::collections::HashSet::new();
64 let unique: Vec<String> = raw
65 .into_iter()
66 .filter(|link| seen.insert(link.clone()))
67 .collect();
68 (unique, raw_count)
69}
70
71#[derive(Debug, Deserialize, JsonSchema)]
73pub struct URLFetchInput {
74 pub operation: String,
76
77 pub url: String,
79
80 pub include_headers: Option<bool>,
82
83 pub max_length: Option<usize>,
85}
86
87#[derive(Debug, Serialize)]
89pub struct URLFetchOutput {
90 pub result: String,
92
93 pub operation: String,
95
96 pub url: String,
98
99 pub content_length: usize,
101
102 pub details: Option<String>,
104}
105
106pub struct URLFetchTool {
108 allow_private_ips: bool,
110}
111
112impl URLFetchTool {
113 pub fn new() -> Self {
118 Self {
119 allow_private_ips: false,
120 }
121 }
122
123 pub fn with_allow_private_ips(mut self, allow: bool) -> Self {
125 self.allow_private_ips = allow;
126 self
127 }
128
129 async fn fetch_url(
131 &self,
132 url: &str,
133 max_length: Option<usize>,
134 include_headers: Option<bool>,
135 ) -> Result<URLFetchOutput, ToolError> {
136 if !url.starts_with("http://") && !url.starts_with("https://") {
137 return Err(ToolError::InvalidInput(
138 "URL must start with http:// or https://".to_string(),
139 ));
140 }
141
142 let response = guarded_get(
146 url,
147 !self.allow_private_ips,
148 Some(std::time::Duration::from_secs(30)),
149 )
150 .await?;
151
152 let status = response.status();
153 if !status.is_success() {
154 return Err(ToolError::ExecutionFailed(format!(
155 "HTTP error: {} - {}",
156 status.as_u16(),
157 status.canonical_reason().unwrap_or("unknown")
158 )));
159 }
160
161 let header_block: String = if include_headers.unwrap_or(false) {
165 let mut lines: Vec<String> = response
166 .headers()
167 .iter()
168 .map(|(name, value)| format!("{}: {}", name, value.to_str().unwrap_or("<非UTF-8>")))
169 .collect();
170 lines.sort();
171 let mut block = String::from("响应头:\n");
172 for line in lines {
173 block.push_str(&line);
174 block.push('\n');
175 }
176 block
177 } else {
178 String::new()
179 };
180
181 let content = response
182 .text()
183 .await
184 .map_err(|e| ToolError::ExecutionFailed(format!("failed to read response: {}", e)))?;
185
186 let max_len = max_length.unwrap_or(50000);
187 let content_len = content.len();
188 let truncated = content_len > max_len;
189 let result = if truncated {
190 content.chars().take(max_len).collect::<String>() + "\n... [内容已截断]"
191 } else {
192 content
193 };
194
195 let mut details = format!(
196 "状态码: {}, 内容长度: {} 字节{}",
197 status.as_u16(),
198 content_len,
199 if truncated { " (已截断)" } else { "" }
200 );
201 if !header_block.is_empty() {
202 details.push('\n');
203 details.push_str(&header_block);
204 }
205
206 Ok(URLFetchOutput {
207 result,
208 operation: "fetch".to_string(),
209 url: url.to_string(),
210 content_length: content_len,
211 details: Some(details),
212 })
213 }
214
215 async fn extract_text(&self, url: &str) -> Result<URLFetchOutput, ToolError> {
217 let fetch_result = self.fetch_url(url, Some(100000), None).await?;
218 let html = &fetch_result.result;
219
220 let html = SCRIPT_REGEX.replace_all(html, "");
221 let html = STYLE_REGEX.replace_all(&html, "");
222
223 let text = TAG_REGEX.replace_all(&html, "");
224
225 let clean_text = WHITESPACE_REGEX.replace_all(&text, " ").trim().to_string();
226
227 let max_len = 5000;
228 let clean_len = clean_text.len();
229 let result = if clean_len > max_len {
230 clean_text.chars().take(max_len).collect::<String>() + "..."
231 } else {
232 clean_text
233 };
234
235 Ok(URLFetchOutput {
236 result,
237 operation: "extract_text".to_string(),
238 url: url.to_string(),
239 content_length: clean_len,
240 details: Some(format!("提取了 {} 字符的纯文本", clean_len)),
241 })
242 }
243
244 async fn extract_links(&self, url: &str) -> Result<URLFetchOutput, ToolError> {
246 let fetch_result = self.fetch_url(url, Some(100000), None).await?;
247 let html = &fetch_result.result;
248
249 let (unique_links, raw_count) = extract_unique_links(html);
250 let result = unique_links.join("\n");
251
252 Ok(URLFetchOutput {
253 result,
254 operation: "extract_links".to_string(),
255 url: url.to_string(),
256 content_length: html.len(), details: Some(format!(
258 "找到 {} 个唯一链接(原始 {} 个)",
259 unique_links.len(),
260 raw_count
261 )),
262 })
263 }
264
265 async fn extract_images(&self, url: &str) -> Result<URLFetchOutput, ToolError> {
267 let fetch_result = self.fetch_url(url, Some(100000), None).await?;
268 let html = &fetch_result.result;
269
270 let images: Vec<String> = IMG_REGEX
271 .captures_iter(html)
272 .map(|cap| cap[1].to_string())
273 .collect();
274
275 let result = images.join("\n");
276
277 Ok(URLFetchOutput {
278 result,
279 operation: "extract_images".to_string(),
280 url: url.to_string(),
281 content_length: images.len(),
282 details: Some(format!("找到 {} 张图片", images.len())),
283 })
284 }
285
286 async fn extract_metadata(&self, url: &str) -> Result<URLFetchOutput, ToolError> {
288 let fetch_result = self.fetch_url(url, Some(50000), None).await?;
289 let html = &fetch_result.result;
290
291 let title = TITLE_REGEX
292 .captures(html)
293 .map(|cap| cap[1].trim().to_string())
294 .unwrap_or_default();
295
296 let description = DESC_REGEX
297 .captures(html)
298 .map(|cap| cap[1].to_string())
299 .unwrap_or_default();
300
301 let keywords = KW_REGEX
302 .captures(html)
303 .map(|cap| cap[1].to_string())
304 .unwrap_or_default();
305
306 let result = format!(
307 "标题: {}\n描述: {}\n关键词: {}",
308 title, description, keywords
309 );
310
311 Ok(URLFetchOutput {
312 result,
313 operation: "metadata".to_string(),
314 url: url.to_string(),
315 content_length: title.len() + description.len() + keywords.len(),
316 details: Some("提取了网页元数据".to_string()),
317 })
318 }
319}
320
321impl Default for URLFetchTool {
322 fn default() -> Self {
323 Self::new()
324 }
325}
326
327#[async_trait]
328impl Tool for URLFetchTool {
329 type Input = URLFetchInput;
330 type Output = URLFetchOutput;
331
332 async fn invoke(&self, input: Self::Input) -> Result<Self::Output, ToolError> {
333 match input.operation.as_str() {
334 "fetch" => {
335 self.fetch_url(&input.url, input.max_length, input.include_headers)
336 .await
337 }
338 "extract_text" => self.extract_text(&input.url).await,
339 "extract_links" => self.extract_links(&input.url).await,
340 "extract_images" => self.extract_images(&input.url).await,
341 "metadata" => self.extract_metadata(&input.url).await,
342 _ => Err(ToolError::InvalidInput(
343 format!("unsupported operation: {}, use: fetch, extract_text, extract_links, extract_images, metadata", input.operation)
344 )),
345 }
346 }
347}
348
349#[async_trait]
350impl BaseTool for URLFetchTool {
351 fn name(&self) -> &str {
352 "url_fetch"
353 }
354
355 fn description(&self) -> &str {
356 "网页抓取工具。支持多种操作:
357
358操作类型:
359- fetch: 抓取完整网页内容
360- extract_text: 提取纯文本内容(去除HTML标签)
361- extract_links: 提取所有链接
362- extract_images: 提取所有图片链接
363- metadata: 提取网页元数据(标题、描述、关键词)
364
365参数:
366- url: 网页地址(必须以 http:// 或 https:// 开头)
367- max_length: 最大内容长度(可选,默认50KB)
368- include_headers: 是否包含头部信息(可选)
369
370示例:
371- 抓取网页: {\"operation\": \"fetch\", \"url\": \"https://example.com\"}
372- 提取文本: {\"operation\": \"extract_text\", \"url\": \"https://example.com\"}
373- 提取链接: {\"operation\": \"extract_links\", \"url\": \"https://example.com\"}"
374 }
375
376 async fn run(&self, input: String) -> Result<String, ToolError> {
377 let parsed: URLFetchInput = serde_json::from_str(&input)
378 .map_err(|e| ToolError::InvalidInput(format!("JSON parse failed: {}", e)))?;
379
380 let output = self.invoke(parsed).await?;
381
382 Ok(format!(
383 "URL: {}\n操作: {}\n内容长度: {} 字节\n\n{}\n详细信息: {}",
384 output.url,
385 output.operation,
386 output.content_length,
387 output.result,
388 output.details.unwrap_or_default()
389 ))
390 }
391
392 fn args_schema(&self) -> Option<serde_json::Value> {
393 use schemars::schema_for;
394 serde_json::to_value(schema_for!(URLFetchInput)).ok()
395 }
396}
397
398#[cfg(test)]
399mod tests {
400 use super::*;
401
402 #[test]
403 fn test_url_validation() {
404 let valid_url = "https://example.com";
405 assert!(valid_url.starts_with("http://") || valid_url.starts_with("https://"));
406
407 let valid_url2 = "http://example.org";
408 assert!(valid_url2.starts_with("http://") || valid_url2.starts_with("https://"));
409 }
410
411 #[tokio::test]
412 async fn test_url_fetch_invalid_url() {
413 let tool = URLFetchTool::new();
414
415 let input = URLFetchInput {
416 operation: "fetch".to_string(),
417 url: "invalid-url".to_string(),
418 include_headers: None,
419 max_length: None,
420 };
421
422 let result = tool.invoke(input).await;
423 assert!(result.is_err());
424 assert!(result.unwrap_err().to_string().contains("http://"));
425 }
426
427 #[test]
429 fn test_extract_unique_links_dedups() {
430 let html = r#"
431 <a href="https://a.com/1">first</a>
432 <a href="https://a.com/1">dup</a>
433 <a href="https://a.com/2">second</a>
434 <a href="https://a.com/1">dup2</a>
435 "#;
436 let (unique, raw) = extract_unique_links(html);
437 assert_eq!(raw, 4, "原始链接数应为 4");
438 assert_eq!(
439 unique,
440 vec!["https://a.com/1".to_string(), "https://a.com/2".to_string()],
441 "应去重且保持首次出现顺序"
442 );
443 }
444
445 #[tokio::test]
447 async fn test_url_fetch_blocks_localhost_by_default() {
448 let tool = URLFetchTool::new();
449 let input = URLFetchInput {
450 operation: "fetch".to_string(),
451 url: "http://127.0.0.1:6379/".to_string(),
452 include_headers: None,
453 max_length: None,
454 };
455 let result = tool.invoke(input).await;
456 assert!(result.is_err());
457 let err = result.unwrap_err().to_string();
458 assert!(err.contains("SSRF"), "expected SSRF error, got: {}", err);
459 }
460
461 #[tokio::test]
463 async fn test_fetch_include_headers() {
464 use tokio::io::{AsyncReadExt, AsyncWriteExt};
465 use tokio::net::TcpListener;
466
467 let listener = TcpListener::bind("127.0.0.1:0").await.unwrap();
468 let addr = listener.local_addr().unwrap();
469
470 let server = tokio::spawn(async move {
471 let (mut socket, _) = listener.accept().await.unwrap();
472 let mut buf = [0u8; 4096];
473 let _ = socket.read(&mut buf).await;
474 let body = "hello world";
475 let resp = format!(
476 "HTTP/1.1 200 OK\r\nContent-Length: {}\r\nContent-Type: text/plain\r\nX-Test-Header: hello\r\n\r\n{}",
477 body.len(),
478 body
479 );
480 socket.write_all(resp.as_bytes()).await.unwrap();
481 drop(socket);
482 });
483
484 let tool = URLFetchTool::new().with_allow_private_ips(true);
485 let input = URLFetchInput {
486 operation: "fetch".to_string(),
487 url: format!("http://{}/", addr),
488 include_headers: Some(true),
489 max_length: None,
490 };
491
492 let output = tool.invoke(input).await.unwrap();
493 let details = output.details.unwrap();
494 assert!(details.contains("响应头:"), "details: {}", details);
495 assert!(
497 details.contains("x-test-header: hello"),
498 "details: {}",
499 details
500 );
501 assert!(output.result.contains("hello world"));
502 server.await.unwrap();
503 }
504
505 #[tokio::test]
507 async fn test_fetch_without_include_headers() {
508 use tokio::io::{AsyncReadExt, AsyncWriteExt};
509 use tokio::net::TcpListener;
510
511 let listener = TcpListener::bind("127.0.0.1:0").await.unwrap();
512 let addr = listener.local_addr().unwrap();
513
514 let server = tokio::spawn(async move {
515 let (mut socket, _) = listener.accept().await.unwrap();
516 let mut buf = [0u8; 4096];
517 let _ = socket.read(&mut buf).await;
518 let body = "hello world";
519 let resp = format!(
520 "HTTP/1.1 200 OK\r\nContent-Length: {}\r\nX-Test-Header: hello\r\n\r\n{}",
521 body.len(),
522 body
523 );
524 socket.write_all(resp.as_bytes()).await.unwrap();
525 drop(socket);
526 });
527
528 let tool = URLFetchTool::new().with_allow_private_ips(true);
529 let input = URLFetchInput {
530 operation: "fetch".to_string(),
531 url: format!("http://{}/", addr),
532 include_headers: Some(false),
533 max_length: None,
534 };
535
536 let output = tool.invoke(input).await.unwrap();
537 let details = output.details.unwrap();
538 assert!(
539 !details.contains("X-Test-Header"),
540 "不应包含响应头, got: {}",
541 details
542 );
543 server.await.unwrap();
544 }
545
546 #[test]
547 fn test_tool_properties() {
548 let tool = URLFetchTool::new();
549
550 assert_eq!(tool.name(), "url_fetch");
551 assert!(tool.description().contains("fetch"));
552 assert!(BaseTool::args_schema(&tool).is_some());
553 }
554}