drep/analysis/result.rs
1//! What one analysis pass produced.
2//!
3//! A single pass over a file can produce findings AND fail to fully analyze
4//! the file (a truncated response gives a partial list, an unknown severity
5//! in one record fails the file, a transport error produces zero findings but
6//! still surfaces as a failure). Reporting the findings while forgetting the
7//! failure is the exact bug this type exists to prevent — the gate would
8//! green-light a commit whenever the LLM endpoint was unreachable, which is
9//! worse than having no gate at all.
10//!
11//! `failed_files` is a [`BTreeMap`] rather than a `Vec` because two passes
12//! over the same file set must UNION, never sum. Summing counts one
13//! unreachable endpoint twice, drifting the failure count up without any
14//! matching file to investigate. The map's value carries the reason so the
15//! caller can render something a user can act on, not just a path.
16//!
17//! `dropped_out_of_range` counts rather than silently drops out-of-range
18//! findings so that a model which consistently reports wrong lines is
19//! observable to the caller — not invisible.
20
21use std::collections::BTreeMap;
22use std::fmt;
23use std::path::PathBuf;
24
25use crate::analysis::findings::Finding;
26use crate::llm::error::BackendErrorKind;
27
28/// Why one file went unanalyzed.
29///
30/// A bare set of paths cannot tell a dead endpoint from a rate limit from a
31/// truncated response, and the caller needs that to print something a user can
32/// act on. `LlmError` already carries the detail; it used to be discarded at
33/// the analyzer boundary.
34#[derive(Debug, Clone, PartialEq, Eq)]
35pub enum FailureReason {
36 /// The endpoint was unreachable, or returned a retryable status too many
37 /// times. `status` is the HTTP code when there was one.
38 Transport {
39 status: Option<u16>,
40 message: String,
41 },
42 /// A non-HTTP backend failed with a structured routing class.
43 Backend {
44 kind: BackendErrorKind,
45 message: String,
46 },
47 /// A response arrived and no JSON could be extracted from it.
48 Unparseable(String),
49 /// Cache-only review found no response for this exact prompt and provider.
50 CacheMiss,
51 /// A fresh semantic review was required after the configured remediation
52 /// budget had already been consumed. This is fail-closed: cached reviews
53 /// remain usable, but uncached code is never waved through unseen.
54 ReviewLimit { completed: u32, limit: u32 },
55 /// The model stopped before producing JSON, and the server said why.
56 ///
57 /// Distinct from [`Self::Unparseable`] because the cause is known and
58 /// deterministic - an output-token cap or a content filter - so the answer
59 /// is not "ask again" but "this request cannot be served as sent". `finish`
60 /// is the server's own word for it, kept as a machine tag beside the human
61 /// message exactly as [`Self::Transport`] keeps its status.
62 ModelStopped { finish: String, message: String },
63 /// The response parsed only after closing unbalanced delimiters, so it is
64 /// a prefix of what the model meant to say.
65 Truncated,
66 /// A record in the response could not be understood - unknown severity,
67 /// missing field, unusable line number.
68 MalformedFinding(String),
69 /// A deterministic tool that should have run could not.
70 ToolUnavailable { tool: String, detail: String },
71 /// Machine site policy refuses to have this repository's source reviewed by
72 /// a model, because a marker file is present at its root.
73 ///
74 /// A `FailureReason` rather than a run-level field because this is the type
75 /// the whole exit-2 contract already rests on: putting the refusal in
76 /// `failed_files` makes `gate`, the text failure block, the JSON `unanalyzed`
77 /// array and the clean-cycle reset guard treat it correctly with no second
78 /// mechanism to keep in agreement. A consumer asking "did semantic review
79 /// happen" is then told no, rather than handed an empty `unanalyzed` beside
80 /// exit 2.
81 ///
82 /// Both paths are carried because a developer meeting this for the first time
83 /// reads it as a broken install unless it names the file that caused it and
84 /// the policy that asked for it.
85 SitePolicyRefused { marker: PathBuf, policy: PathBuf },
86 /// The file on disk exceeded the read guard, so drep never read it.
87 ///
88 /// Distinct from [`Self::PayloadTooLarge`] because the two measure
89 /// different things: this is the file's own size, checked before any I/O,
90 /// and that one is the size of the text the model would have been sent.
91 /// They were one variant sharing one limit, which meant `bytes` held the
92 /// file size on one code path and the rendered-payload size on another -
93 /// so "file is too large (330102 bytes)" could name a file that `ls`
94 /// reports as 261900 bytes.
95 FileTooLarge { bytes: u64, limit: u64 },
96 /// The rendered LLM payload exceeded the ceiling. See [`Self::FileTooLarge`].
97 PayloadTooLarge { bytes: u64, limit: u64 },
98 /// The file could not be read from disk.
99 Unreadable(String),
100 /// The user named a file that the running command has no analyzer for.
101 ///
102 /// Only ever produced for an **explicitly named** path. A walk that turns
103 /// up nothing analyzable is legitimately empty - `drep check .` in a
104 /// documentation repository has correctly found no code. A path the user
105 /// typed is different: reporting "No issues found." for a file drep
106 /// declined to look at is the single failure this codebase is built to
107 /// prevent, and it is the same distinction `resolve_paths` already draws
108 /// for an argument that does not exist at all.
109 ///
110 /// `hint` names the command that *does* handle the type, when there is
111 /// one. Markdown has `drep lint-docs`, so the error is a redirection
112 /// rather than a dead end.
113 Unsupported {
114 /// The extension as written, with its dot. `None` when the file has
115 /// none, which reads differently in the message.
116 extension: Option<String>,
117 /// What to run instead, phrased as an imperative.
118 hint: Option<String>,
119 },
120 /// A failover chain produced no answer, with what each provider
121 /// contributed.
122 ///
123 /// Only produced for a chain of **two or more** providers. A one-provider
124 /// config - what `drep init` writes, and what almost every run uses -
125 /// collapses to that provider's own reason, so it reports exactly what it
126 /// did before failover existed, JSON `kind` included. The trigger is the
127 /// chain's length, not the number of providers that failed: a two-provider
128 /// chain stopped dead at the head by a 401 has one failure and is exactly
129 /// the case where "which provider, and why did my fallback not run" is the
130 /// user's live question.
131 ///
132 /// Keeping only the last reason would hide a dead local endpoint behind
133 /// the cloud fallback's 401; keeping only the first would hide the broken
134 /// fallback. A user fixing the run needs both.
135 ///
136 /// The list can be shorter than the chain - a 401 at the head stops it, and
137 /// the providers below were never consulted.
138 ChainFailed(Vec<ProviderFailure>),
139}
140
141/// One provider's contribution to a file that no provider could analyze.
142///
143/// `reason` is always a non-chain LLM-layer variant. That is a property of the
144/// only thing that builds these: the conversion runs over one provider's
145/// `LlmError`, so a nested `ChainFailed` is not merely absent but unreachable.
146#[derive(Debug, Clone, PartialEq, Eq)]
147pub struct ProviderFailure {
148 /// Zero-based position in the chain. Rendered one-based, matching how
149 /// `doctor` numbers the same list.
150 pub provider: usize,
151 /// The model that provider asks for.
152 pub model: String,
153 /// Why it did not produce an answer.
154 pub reason: FailureReason,
155 /// True when the provider was already demoted and was not contacted for
156 /// this file. Worth reporting: a user needs to know the local endpoint has
157 /// been dead since the third file, not just that the fallback then failed.
158 pub skipped: bool,
159}
160
161impl FailureReason {
162 /// Build an [`Self::Unsupported`] for `path`.
163 ///
164 /// The extension convention (leading dot, `None` when there is none) is
165 /// stated here, beside the variant whose `one_line` renders it, rather than
166 /// at each command that raises one. It was written out twice, which is one
167 /// copy per command pointing at the other.
168 pub fn unsupported(path: &std::path::Path, hint: Option<String>) -> Self {
169 FailureReason::Unsupported {
170 extension: path
171 .extension()
172 .map(|ext| format!(".{}", ext.to_string_lossy())),
173 hint,
174 }
175 }
176
177 /// A single line suitable for a terminal, derived from the variant.
178 ///
179 /// The HTTP status is rendered next to the message so a 429 is visible
180 /// without the user having to match the message against a status code
181 /// list. This is the load-bearing reason the `Transport` variant carries
182 /// the status as a number rather than only inside the string.
183 pub fn one_line(&self) -> String {
184 match self {
185 FailureReason::Transport {
186 status: Some(code),
187 message,
188 } => {
189 format!("LLM transport failed (HTTP {code}): {message}")
190 }
191 FailureReason::Transport {
192 status: None,
193 message,
194 } => {
195 format!("LLM transport failed: {message}")
196 }
197 FailureReason::Unparseable(message) => {
198 format!("LLM response was unparseable: {message}")
199 }
200 FailureReason::CacheMiss => {
201 "LLM review is not cached; run a normal check to warm it".to_owned()
202 }
203 FailureReason::ReviewLimit { completed, limit } if completed < limit => format!(
204 "fresh LLM review capacity is currently reserved ({completed} completed of \
205 {limit}); wait for the in-flight review, pass `--max-review-rounds N`, or pass \
206 `--unlimited-reviews` to authorize another round"
207 ),
208 FailureReason::ReviewLimit { completed, limit } => format!(
209 "fresh LLM review limit reached ({completed} of {limit}); raise \
210 `max_review_rounds`, pass `--max-review-rounds N`, or pass \
211 `--unlimited-reviews` to authorize another round"
212 ),
213 FailureReason::Backend { kind, message } => {
214 format!("LLM backend {kind}: {message}")
215 }
216 // Deliberately says nothing about *which* command is running: both
217 // `check` and `lint-docs` produce this, pointing at each other.
218 FailureReason::Unsupported { extension, hint } => {
219 let what = match extension {
220 Some(ext) => format!("`{ext}` files"),
221 None => "files with no extension".to_owned(),
222 };
223 match hint {
224 Some(hint) => format!("no analyzer for {what}: {hint}"),
225 None => format!("no analyzer for {what}"),
226 }
227 }
228 // The message is already a sentence a user can act on; prefixing it
229 // with a category would bury the actionable half.
230 FailureReason::ModelStopped { message, .. } => message.clone(),
231 FailureReason::Truncated => "response was truncated".to_owned(),
232 FailureReason::MalformedFinding(detail) => format!("malformed finding: {detail}"),
233 FailureReason::ToolUnavailable { tool, detail } => {
234 format!("{tool} could not run: {detail}")
235 }
236 FailureReason::SitePolicyRefused { marker, policy } => format!(
237 "semantic review is refused by site policy: {} is present (policy: {})",
238 marker.display(),
239 policy.display()
240 ),
241 FailureReason::FileTooLarge { bytes, limit } => {
242 format!("file is too large to read ({bytes} bytes; limit is {limit})")
243 }
244 FailureReason::PayloadTooLarge { bytes, limit } => {
245 format!("the code sent for review is too large ({bytes} bytes; limit is {limit})")
246 }
247 FailureReason::Unreadable(detail) => format!("file could not be read: {detail}"),
248 FailureReason::ChainFailed(failures) => {
249 let each: Vec<String> = failures.iter().map(ProviderFailure::one_line).collect();
250 // Phrased by what happened, not by a count. "All N providers
251 // failed" is wrong for the case that matters most - a chain
252 // stopped at the head by a 401 has one entry and more
253 // providers behind it that were deliberately not asked.
254 if each.is_empty() {
255 "no LLM provider analyzed this file".to_owned()
256 } else {
257 format!("no LLM provider analyzed this file: {}", each.join("; "))
258 }
259 }
260 }
261 }
262
263 /// The HTTP status, when the failure had one.
264 ///
265 /// Only `Transport` ever carries one. Exposed as a number rather than
266 /// left inside the message because a caller has to distinguish a 429 from
267 /// a 401 - the message is prose and prose gets reworded.
268 pub fn status(&self) -> Option<u16> {
269 match self {
270 FailureReason::Transport { status, .. } => *status,
271 // Deliberately not "the first attempt's status". A chain failure
272 // has one status *per provider*, and flattening them to one number
273 // would tell a consumer a 401 was the whole story when a 500 came
274 // first. The JSON renderer exposes the per-provider list instead.
275 _ => None,
276 }
277 }
278}
279
280impl ProviderFailure {
281 /// One line naming the provider, its model, and what it said.
282 pub fn one_line(&self) -> String {
283 let skipped = if self.skipped {
284 " (already down earlier in this run)"
285 } else {
286 ""
287 };
288 format!(
289 "[{}] {}: {}{}",
290 self.provider + 1,
291 self.model,
292 self.reason.one_line(),
293 skipped
294 )
295 }
296}
297
298impl fmt::Display for FailureReason {
299 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
300 f.pad(&self.one_line())
301 }
302}
303
304/// What one analysis pass produced.
305///
306/// `findings` and `failed_files` are independent axes: a file can contribute
307/// findings AND be unanalyzed (a truncated response gives a partial list).
308/// Reporting the findings while forgetting the failure is the exact bug this
309/// type exists to prevent.
310#[derive(Debug, Default, Clone, PartialEq, Eq)]
311pub struct AnalysisResult {
312 /// Findings the analyzer could attribute to a real line of code.
313 pub findings: Vec<Finding>,
314 /// Files that could not be fully analyzed, with the reason. A `BTreeMap`
315 /// because two passes over the same file set must UNION, never sum —
316 /// summing counts one unreachable endpoint twice.
317 pub failed_files: BTreeMap<PathBuf, FailureReason>,
318 /// Findings discarded because their line was not in the payload's
319 /// `valid_lines`. Counted rather than silently dropped, so the drop is
320 /// observable.
321 pub dropped_out_of_range: usize,
322}
323
324/// Fold `src` into `dst`, keeping the reason already present on a collision.
325///
326/// The one statement of the failure-union rule. It was written out longhand as
327/// `entry().or_insert()` at four sites - `merge` here plus three in the CLI -
328/// each with its own comment re-explaining it. The two analysis layers cover
329/// the same files, so the sets union rather than sum: one unreachable endpoint
330/// is one failure, not two. First-wins because the reasons cannot be
331/// meaningfully combined and the earlier layer saw the file first.
332pub fn union_failures(
333 dst: &mut BTreeMap<PathBuf, FailureReason>,
334 src: BTreeMap<PathBuf, FailureReason>,
335) {
336 for (path, reason) in src {
337 dst.entry(path).or_insert(reason);
338 }
339}
340
341impl AnalysisResult {
342 /// One file, one failure, no findings.
343 ///
344 /// The shape was hand-assembled at four call sites - `default()`, insert,
345 /// return - each of which independently had to know that `findings` and
346 /// `dropped_out_of_range` stay at their defaults. Forgetting the insert at
347 /// any one of them reports an unanalyzed file as clean, which is the single
348 /// failure this whole type exists to prevent, so it gets a constructor.
349 pub fn failed(path: PathBuf, reason: FailureReason) -> Self {
350 let mut result = Self::default();
351 result.failed_files.insert(path, reason);
352 result
353 }
354
355 /// Fold `other` into `self`: findings concatenate, `failed_files`
356 /// unions, `dropped_out_of_range` sums.
357 ///
358 /// The merge semantics let a caller combine per-file and per-layer results
359 /// without losing the failure signal.
360 ///
361 /// On a key collision in `failed_files`, the **first** reason wins. A
362 /// file failing twice is still one failure, and the two reasons are not
363 /// meaningfully combinable - the first one is at least specific to the
364 /// file, while a hypothetical last-wins policy would let a later
365 /// analyzer overwrite a more informative first reason with a generic
366 /// one.
367 pub fn merge(&mut self, other: AnalysisResult) {
368 self.findings.extend(other.findings);
369 // `union_failures` rather than the loop written out again: the
370 // first-writer-wins rule is one decision, and two copies of it are two
371 // places for it to change independently.
372 union_failures(&mut self.failed_files, other.failed_files);
373 self.dropped_out_of_range = self
374 .dropped_out_of_range
375 .saturating_add(other.dropped_out_of_range);
376 }
377
378 /// True when any file went unanalyzed.
379 ///
380 /// The caller maps this to process exit 2: "could not analyze" is
381 /// distinct from both "clean" (exit 0) and "found issues" (exit 1),
382 /// because a gate that cannot distinguish them rubber-stamps the day
383 /// the LLM endpoint goes down.
384 pub fn has_failures(&self) -> bool {
385 !self.failed_files.is_empty()
386 }
387}
388
389#[cfg(test)]
390mod tests {
391 use super::*;
392
393 /// `merge` keeps the first reason on a key collision - the documented
394 /// first-writer-wins rule. A last-wins policy would silently overwrite
395 /// the more informative first reason with a generic later one.
396 #[test]
397 fn merge_keeps_first_reason_on_key_collision() {
398 let mut a = AnalysisResult::default();
399 a.failed_files.insert(
400 PathBuf::from("src/lib.rs"),
401 FailureReason::Transport {
402 status: Some(429),
403 message: "rate limited".to_owned(),
404 },
405 );
406
407 let mut b = AnalysisResult::default();
408 b.failed_files.insert(
409 PathBuf::from("src/lib.rs"),
410 FailureReason::Transport {
411 status: Some(500),
412 message: "internal".to_owned(),
413 },
414 );
415
416 a.merge(b);
417
418 assert_eq!(a.failed_files.len(), 1);
419 let reason = a.failed_files.get(&PathBuf::from("src/lib.rs")).unwrap();
420 assert_eq!(
421 reason,
422 &FailureReason::Transport {
423 status: Some(429),
424 message: "rate limited".to_owned(),
425 },
426 "first reason wins on collision"
427 );
428 }
429
430 /// A `Transport` failure with a status surfaces the code in the rendered
431 /// line. The whole point of keeping the status as a number is that it
432 /// reaches the user; this pins that the rendering preserves it.
433 #[test]
434 fn transport_render_includes_the_http_status() {
435 let reason = FailureReason::Transport {
436 status: Some(429),
437 message: "rate limited".to_owned(),
438 };
439 let rendered = reason.one_line();
440 assert!(
441 rendered.contains("429"),
442 "rendered line must contain 429, got {rendered:?}"
443 );
444 }
445
446 /// A refusal names both the marker and the policy that asked for it.
447 ///
448 /// Pinned at the type that owns the wording, beside the `Transport`-status
449 /// test, and for the same reason: the paths are carried as fields precisely so
450 /// they reach the user. A developer meeting this line for the first time reads
451 /// it as a broken install unless it says which file caused it and where the
452 /// decision came from.
453 #[test]
454 fn site_policy_refusal_names_the_marker_and_the_policy_file() {
455 let reason = FailureReason::SitePolicyRefused {
456 marker: PathBuf::from("/work/repo/.drep-no-llm"),
457 policy: PathBuf::from("/etc/drep/site.toml"),
458 };
459 let rendered = reason.one_line();
460 assert!(
461 rendered.contains("/work/repo/.drep-no-llm"),
462 "must name the marker, got {rendered:?}"
463 );
464 assert!(
465 rendered.contains("/etc/drep/site.toml"),
466 "must name the policy, got {rendered:?}"
467 );
468 }
469
470 #[test]
471 fn display_honours_formatter_width_and_alignment() {
472 let reason = FailureReason::Truncated;
473 assert_eq!(
474 format!("{reason:>30}"),
475 format!("{:>30}", reason.one_line())
476 );
477 }
478}