1use serde_json::Value;
4use sha2::{Digest, Sha256};
5use std::sync::LazyLock;
6
7use regex::Regex;
8
9use crate::error::{Result, SparError};
10
11static FENCE: LazyLock<Regex> = LazyLock::new(|| {
12 Regex::new(r"(?s)```(?:json)?\s*(\{.*?\}|\[.*?\])\s*```").expect("fence pattern")
13});
14
15pub fn extract_json(text: &str) -> Result<Value> {
21 if text.trim().is_empty() {
22 return Err(SparError::new("empty response, expected JSON"));
23 }
24 candidates(text)
25 .into_iter()
26 .next()
27 .ok_or_else(|| SparError::new(format!("no JSON found in response:\n{}", head(text, 800))))
28}
29
30pub fn candidates(text: &str) -> Vec<Value> {
35 let mut out = Vec::new();
36 let mut push = |value: Value| {
37 if !out.contains(&value) {
38 out.push(value);
39 }
40 };
41
42 let fenced: Vec<&str> = FENCE
43 .captures_iter(text)
44 .filter_map(|c| c.get(1).map(|m| m.as_str()))
45 .collect();
46 for blob in fenced.iter().rev() {
47 if let Ok(value) = serde_json::from_str::<Value>(blob) {
48 push(value);
49 }
50 }
51
52 let bytes = text.as_bytes();
53 for (opener, closer) in [(b'{', b'}'), (b'[', b']')] {
54 let mut end = rfind_byte(bytes, closer, bytes.len());
55 while let Some(e) = end {
56 let mut depth = 0i32;
57 let mut start = None;
58 for i in (0..=e).rev() {
59 if bytes[i] == closer {
60 depth += 1;
61 } else if bytes[i] == opener {
62 depth -= 1;
63 if depth == 0 {
64 start = Some(i);
65 break;
66 }
67 }
68 }
69 if let Some(s) = start {
70 if let Ok(value) = serde_json::from_str::<Value>(&text[s..=e]) {
71 push(value);
72 }
73 }
74 end = rfind_byte(bytes, closer, e);
75 }
76 }
77 out
78}
79
80pub fn looks_truncated(text: &str) -> bool {
86 let mut opened = 0i64;
87 let mut in_string = false;
88 let mut escaped = false;
89 for c in text.chars() {
90 if escaped {
91 escaped = false;
92 continue;
93 }
94 match c {
95 '\\' if in_string => escaped = true,
96 '"' => in_string = !in_string,
97 '{' if !in_string => opened += 1,
98 '}' if !in_string => opened -= 1,
99 _ => {}
100 }
101 }
102 opened > 0
103}
104
105pub fn extract_into<T: serde::de::DeserializeOwned>(text: &str) -> Result<T> {
112 let found = candidates(text);
113 if found.is_empty() {
114 return Err(SparError::new(if looks_truncated(text) {
115 format!(
116 "the response was cut off before any complete JSON:\n{}",
117 head(text, 400)
118 )
119 } else {
120 format!("no JSON found in response:\n{}", head(text, 800))
121 }));
122 }
123
124 let mut failures: Vec<(serde_json::Error, &Value)> = Vec::new();
136 for value in &found {
137 match serde_json::from_value::<T>(value.clone()) {
138 Ok(parsed) => return Ok(parsed),
139 Err(e) => failures.push((e, value)),
140 }
141 }
142 let (error, value) = failures
143 .into_iter()
144 .max_by_key(|(_, value)| value.to_string().len())
145 .expect("non-empty");
146 if looks_truncated(text) {
147 return Err(SparError::new(format!(
148 "the response was cut off before the answer was complete, so only fragments of it \
149 parsed ({error}). Ask for less in one go, or give this agent a CLI flag for native \
150 structured output."
151 )));
152 }
153 Err(SparError::new(format!(
154 "response did not match the expected shape ({error}).{}\nGot: {}",
155 envelope_hint(value),
156 head(&value.to_string(), 600)
157 )))
158}
159
160fn envelope_hint(value: &Value) -> &'static str {
170 if value.is_array() {
171 " The answer was a JSON array, and the schema asks for a single object: \
172 the array belongs in a field of it."
173 } else {
174 ""
175 }
176}
177
178fn rfind_byte(haystack: &[u8], needle: u8, before: usize) -> Option<usize> {
179 haystack[..before.min(haystack.len())]
180 .iter()
181 .rposition(|b| *b == needle)
182}
183
184fn head(text: &str, max: usize) -> String {
185 text.chars().take(max).collect()
186}
187
188pub fn finding_key(title: &str, file: &str) -> String {
194 let basis: String = format!("{} {}", title.trim(), file.trim())
195 .to_lowercase()
196 .chars()
197 .filter(|c| c.is_ascii_alphanumeric() || matches!(c, ' ' | '/' | '.' | '_' | '-'))
198 .collect();
199 let basis = basis.split_whitespace().collect::<Vec<_>>().join(" ");
200
201 let digest = Sha256::digest(basis.as_bytes());
202 let hex: String = digest.iter().map(|b| format!("{b:02x}")).collect();
203 hex[..12].to_string()
204}
205
206#[cfg(test)]
207mod tests {
208 use super::*;
209
210 #[test]
211 fn bare_object() {
212 assert_eq!(
213 serde_json::json!({"a": 1}),
214 extract_json(r#"{"a": 1}"#).unwrap()
215 );
216 }
217
218 #[test]
219 fn fenced_block() {
220 let out = extract_json("here you go:\n```json\n{\"a\": 1}\n```\n").unwrap();
221 assert_eq!(serde_json::json!({"a": 1}), out);
222 }
223
224 #[test]
225 fn trailing_prose() {
226 let out = extract_json("Thoughts...\n{\"verdict\": \"approve\"}\nDone.").unwrap();
227 assert_eq!(serde_json::json!({"verdict": "approve"}), out);
228 }
229
230 #[test]
231 fn picks_the_last_fenced_block() {
232 let text = "```json\n{\"n\": 1}\n```\nrevised:\n```json\n{\"n\": 2}\n```";
233 assert_eq!(serde_json::json!({"n": 2}), extract_json(text).unwrap());
234 }
235
236 #[test]
237 fn nested_braces() {
238 let payload = r#"{"findings": [{"severity": "nit", "d": {"x": [1, 2]}}]}"#;
239 let out = extract_json(&format!("blah {payload} blah")).unwrap();
240 assert_eq!(1, out["findings"].as_array().unwrap().len());
241 }
242
243 #[test]
244 fn top_level_array() {
245 let out = extract_json("result: [1, 2, 3]").unwrap();
246 assert_eq!(3, out.as_array().unwrap().len());
247 }
248
249 #[test]
250 fn multibyte_prose_around_the_payload_does_not_panic() {
251 let out = extract_json("\u{1f600}\u{1f600} {\"a\": 1} \u{1f600}").unwrap();
252 assert_eq!(serde_json::json!({"a": 1}), out);
253 }
254
255 #[test]
256 fn raises_when_there_is_none() {
257 assert!(extract_json("no json here at all").is_err());
258 }
259
260 #[test]
261 fn raises_on_empty() {
262 assert!(extract_json(" ").is_err());
263 }
264
265 #[test]
266 fn malformed_trailing_object_falls_back_to_an_earlier_one() {
267 let text = "{\"good\": true}\nthen: {\"bad\": ,}";
268 assert_eq!(
269 serde_json::json!({"good": true}),
270 extract_json(text).unwrap()
271 );
272 }
273
274 #[test]
277 fn key_is_stable_across_wording_noise() {
278 assert_eq!(
279 finding_key("Unbounded loop!", "src/x.rs"),
280 finding_key("unbounded loop", "src/x.rs")
281 );
282 }
283
284 #[test]
285 fn key_differs_by_file() {
286 assert_ne!(finding_key("t", "a.rs"), finding_key("t", "b.rs"));
287 }
288
289 #[test]
290 fn key_is_case_insensitive_in_the_path_too() {
291 assert_eq!(
292 finding_key("t", "src/Main.rs"),
293 finding_key("t", "src/main.rs")
294 );
295 }
296
297 #[test]
298 fn key_is_stable_across_whitespace() {
299 assert_eq!(finding_key("a b", "x.rs"), finding_key(" a b ", "x.rs"));
300 }
301
302 #[test]
303 fn key_is_twelve_hex_characters() {
304 let key = finding_key("anything", "file.rs");
305 assert_eq!(12, key.len());
306 assert!(key.chars().all(|c| c.is_ascii_hexdigit()));
307 }
308}
309
310#[cfg(test)]
311mod truncation_tests {
312 use super::*;
313 use serde::Deserialize;
314
315 #[derive(Debug, Deserialize)]
316 struct Review {
317 verdict: String,
318 findings: Vec<Finding>,
319 }
320 #[derive(Debug, Deserialize)]
321 struct Finding {
322 title: String,
323 }
324
325 const TRUNCATED: &str = r#"Here is my review.
330{"verdict":"changes_requested","next_action":"hand_back","summary":"Two problems.",
331 "findings":[
332 {"severity":"blocking","title":"First","detail":"one","file":"a.ts","in_scope":true},
333 {"severity":"non-blocking","title":"Second","detail":"numbers unnamed keys by position"#;
334
335 #[test]
336 fn a_truncated_review_is_reported_as_truncated_not_as_the_wrong_shape() {
337 let err = extract_into::<Review>(TRUNCATED).unwrap_err().to_string();
338 assert!(err.contains("cut off"), "{err}");
339 assert!(!err.contains("did not match the expected shape"), "{err}");
340 }
341
342 #[test]
343 fn truncation_is_detected_from_the_unclosed_braces() {
344 assert!(looks_truncated(TRUNCATED));
345 assert!(!looks_truncated(r#"{"a":1}"#));
346 assert!(!looks_truncated(r#"{"a":"a { in a string"}"#));
348 assert!(!looks_truncated(r#"{"a":"an escaped \" quote { here"}"#));
349 }
350
351 #[test]
354 fn the_review_is_found_even_with_nested_objects_after_it() {
355 let text = r#"Thinking out loud first.
356{"verdict":"approve","next_action":"merge","summary":"Fine.","findings":[{"severity":"nit","title":"Wording","detail":"d","file":"a.ts","in_scope":true}]}
357And here is a stray object afterwards: {"title":"not the review"}"#;
358 let review: Review = extract_into(text).unwrap();
359 assert_eq!("approve", review.verdict);
360 assert_eq!(1, review.findings.len());
361 assert_eq!("Wording", review.findings[0].title);
362 }
363
364 #[test]
365 fn candidates_are_offered_most_likely_first() {
366 let text = "```json\n{\"verdict\":\"approve\",\"findings\":[]}\n```\ntrailing {\"x\":1}";
367 let review: Review = extract_into(text).unwrap();
368 assert_eq!("approve", review.verdict);
369 }
370
371 #[test]
372 fn a_genuinely_wrong_shape_still_says_so() {
373 let err = extract_into::<Review>(r#"{"colour":"blue"}"#)
374 .unwrap_err()
375 .to_string();
376 assert!(err.contains("did not match the expected shape"), "{err}");
377 assert!(!err.contains("cut off"), "{err}");
378 }
379
380 #[test]
387 fn the_complaint_is_about_the_answer_the_model_meant() {
388 let text = r#"Here is my review.
389{"verdict":"changes_requested","next_action":"hand_back","summary":"Two problems.","findings":"should have been a list"}
390Supporting detail: [{"detail":"The working tree bumps 0.5.9 to 0.5.10."}]"#;
391 let err = extract_into::<Review>(text).unwrap_err().to_string();
392 assert!(err.contains("findings"), "{err}");
394 assert!(
395 err.contains("changes_requested"),
396 "the object is shown:\n{err}"
397 );
398 assert!(
399 !err.contains("The working tree"),
400 "the stray array leaked in:\n{err}"
401 );
402 }
403
404 #[test]
408 fn a_bare_array_is_named_as_the_envelope_problem() {
409 let err = extract_into::<Review>(r#"[{"title":"First"},{"title":"Second"}]"#)
410 .unwrap_err()
411 .to_string();
412 assert!(err.contains("JSON array"), "{err}");
413 assert!(err.contains("single object"), "{err}");
414 }
415
416 #[test]
418 fn a_wrong_object_is_not_told_it_was_an_array() {
419 let err = extract_into::<Review>(r#"{"colour":"blue"}"#)
420 .unwrap_err()
421 .to_string();
422 assert!(!err.contains("JSON array"), "{err}");
423 }
424
425 #[test]
426 fn nothing_parseable_is_still_reported_plainly() {
427 let err = extract_into::<Review>("no json at all")
428 .unwrap_err()
429 .to_string();
430 assert!(err.contains("no JSON found"), "{err}");
431 }
432}