1use std::path::Path;
4
5use crate::{
6 CoverageIntelligenceRecommendation, CoverageIntelligenceReport, CoverageIntelligenceVerdict,
7 ExceededThreshold, FindingSeverity, HealthReport, RuntimeCoverageReport,
8 RuntimeCoverageVerdict, SarifDocumentInput, SarifSourceSnippetCache as SourceSnippetCache,
9 StylingFindingSeverity, build_sarif_document,
10 build_sarif_result_with_snippet as sarif_result_with_snippet, normalize_uri,
11};
12use fallow_types::duplicates::{CloneGroup, DuplicationReport};
13use fallow_types::output_dead_code::EffectiveSeverity;
14
15type SarifRuleBuilder<'a> = dyn Fn(&str, &str, &str) -> serde_json::Value + 'a;
16
17#[must_use]
19pub fn build_duplication_sarif(
20 report: &DuplicationReport,
21 root: &Path,
22 rule_builder: &SarifRuleBuilder<'_>,
23) -> serde_json::Value {
24 build_duplication_sarif_with_group(report, root, rule_builder, |_| None)
25}
26
27#[must_use]
29pub fn build_grouped_duplication_sarif(
30 report: &DuplicationReport,
31 root: &Path,
32 rule_builder: &SarifRuleBuilder<'_>,
33 group_for_clone: impl Fn(&CloneGroup) -> String,
34) -> serde_json::Value {
35 build_duplication_sarif_with_group(report, root, rule_builder, |group| {
36 Some(group_for_clone(group))
37 })
38}
39
40#[expect(
41 clippy::cast_possible_truncation,
42 reason = "line and column values are bounded by source size"
43)]
44fn build_duplication_sarif_with_group(
45 report: &DuplicationReport,
46 root: &Path,
47 rule_builder: &SarifRuleBuilder<'_>,
48 group_for_clone: impl Fn(&CloneGroup) -> Option<String>,
49) -> serde_json::Value {
50 let mut sarif_results = Vec::new();
51 let mut snippets = SourceSnippetCache::with_root(root);
52
53 for (i, group) in report.clone_groups.iter().enumerate() {
54 let group_value = group_for_clone(group);
55 for instance in &group.instances {
56 let uri = relative_uri(&instance.file, root);
57 let source_snippet = snippets.line(&instance.file, instance.start_line as u32);
58 let mut result = sarif_result_with_snippet(
59 "fallow/code-duplication",
60 "warning",
61 &format!(
62 "Code clone group {} ({} lines, {} instances)",
63 i + 1,
64 group.line_count,
65 group.instances.len()
66 ),
67 &uri,
68 Some((instance.start_line as u32, (instance.start_col + 1) as u32)),
69 source_snippet.as_deref(),
70 );
71 if let Some(group) = &group_value {
72 set_sarif_result_property(&mut result, "group", group.clone());
73 }
74 sarif_results.push(result);
75 }
76 }
77
78 let rules = vec![rule_builder(
79 "fallow/code-duplication",
80 "Duplicated code block",
81 "warning",
82 )];
83 sarif_document(&sarif_results, &rules)
84}
85
86#[must_use]
88pub fn build_health_sarif(
89 report: &HealthReport,
90 root: &Path,
91 rule_builder: &SarifRuleBuilder<'_>,
92) -> serde_json::Value {
93 let mut sarif_results = Vec::new();
94 let mut snippets = SourceSnippetCache::with_root(root);
95
96 append_health_sarif_results(report, root, &mut sarif_results, &mut snippets);
97 let health_rules = health_sarif_rules(rule_builder, report);
98 sarif_document(&sarif_results, &health_rules)
99}
100
101pub fn annotate_sarif_results(
103 sarif: &mut serde_json::Value,
104 property: &str,
105 mut value_for_uri: impl FnMut(&str) -> String,
106) {
107 if let Some(runs) = sarif
108 .get_mut("runs")
109 .and_then(serde_json::Value::as_array_mut)
110 {
111 for run in runs {
112 if let Some(results) = run
113 .get_mut("results")
114 .and_then(serde_json::Value::as_array_mut)
115 {
116 for result in results {
117 let uri = result
118 .pointer("/locations/0/physicalLocation/artifactLocation/uri")
119 .and_then(serde_json::Value::as_str)
120 .unwrap_or("");
121 let value = value_for_uri(uri);
122 set_sarif_result_property(result, property, value);
123 }
124 }
125 }
126 }
127}
128
129fn set_sarif_result_property(result: &mut serde_json::Value, key: &str, value: String) {
130 let Some(result) = result.as_object_mut() else {
131 return;
132 };
133 let props = result
134 .entry("properties")
135 .or_insert_with(|| serde_json::json!({}));
136 let Some(props) = props.as_object_mut() else {
137 return;
138 };
139 props.insert(key.to_string(), serde_json::Value::String(value));
140}
141
142fn append_health_sarif_results(
143 report: &HealthReport,
144 root: &Path,
145 sarif_results: &mut Vec<serde_json::Value>,
146 snippets: &mut SourceSnippetCache,
147) {
148 append_complexity_sarif_results(sarif_results, report, root, snippets);
149
150 if let Some(ref production) = report.runtime_coverage {
151 append_runtime_coverage_sarif_results(sarif_results, production, root, snippets);
152 }
153 if let Some(ref intelligence) = report.coverage_intelligence {
154 append_coverage_intelligence_sarif_results(sarif_results, intelligence, root, snippets);
155 }
156
157 append_refactoring_target_sarif_results(sarif_results, report, root);
158 append_coverage_gap_sarif_results(sarif_results, report, root, snippets);
159 append_styling_sarif_results(sarif_results, report, root);
160}
161
162fn append_styling_sarif_results(
166 sarif_results: &mut Vec<serde_json::Value>,
167 report: &HealthReport,
168 root: &Path,
169) {
170 for finding in &report.styling_findings {
171 let uri = relative_uri(std::path::Path::new(&finding.path), root);
172 let message = format!(
173 "[{}] {}: `{}`",
174 finding.code, finding.sub_kind, finding.value
175 );
176 sarif_results.push(sarif_result(
177 &format!("fallow/{}", finding.code),
178 styling_sarif_level(finding.effective_severity),
179 &message,
180 &uri,
181 Some((finding.line, 1)),
182 ));
183 }
184}
185
186fn health_styling_sarif_rules(
187 rule_builder: &SarifRuleBuilder<'_>,
188 report: &HealthReport,
189) -> Vec<serde_json::Value> {
190 vec![
191 rule_builder(
192 "fallow/css-token-drift",
193 "CSS / CSS-in-JS design-token drift (a hardcoded value where a token exists)",
194 styling_rule_default_level(report, "css-token-drift"),
195 ),
196 rule_builder(
197 "fallow/css-duplicate-block",
198 "CSS / CSS-in-JS duplicate declaration block",
199 styling_rule_default_level(report, "css-duplicate-block"),
200 ),
201 rule_builder(
202 "fallow/css-selector-complexity",
203 "CSS selector complexity, deep nesting, or important density",
204 styling_rule_default_level(report, "css-selector-complexity"),
205 ),
206 rule_builder(
207 "fallow/css-dead-surface",
208 "CSS / CSS-in-JS dead styling surface",
209 styling_rule_default_level(report, "css-dead-surface"),
210 ),
211 rule_builder(
212 "fallow/css-broken-reference",
213 "CSS / CSS-in-JS reference resolves to no known styling definition",
214 styling_rule_default_level(report, "css-broken-reference"),
215 ),
216 ]
217}
218
219fn health_sarif_rules(
220 rule_builder: &SarifRuleBuilder<'_>,
221 report: &HealthReport,
222) -> Vec<serde_json::Value> {
223 let mut rules = health_complexity_sarif_rules(rule_builder);
224 rules.extend(health_runtime_sarif_rules(rule_builder));
225 rules.extend(health_coverage_intelligence_sarif_rules(rule_builder));
226 rules.extend(health_styling_sarif_rules(rule_builder, report));
227 rules
228}
229
230fn styling_rule_default_level(report: &HealthReport, code: &str) -> &'static str {
231 if report.styling_findings.iter().any(|finding| {
232 finding.code == code && finding.effective_severity == StylingFindingSeverity::Error
233 }) {
234 "error"
235 } else {
236 "warning"
237 }
238}
239
240const fn styling_sarif_level(severity: StylingFindingSeverity) -> &'static str {
241 match severity {
242 StylingFindingSeverity::Error => "error",
243 StylingFindingSeverity::Warn => "warning",
244 }
245}
246
247fn health_complexity_sarif_rules(rule_builder: &SarifRuleBuilder<'_>) -> Vec<serde_json::Value> {
248 vec![
249 rule_builder(
250 "fallow/high-cyclomatic-complexity",
251 "Function has high cyclomatic complexity",
252 "note",
253 ),
254 rule_builder(
255 "fallow/high-cognitive-complexity",
256 "Function has high cognitive complexity",
257 "note",
258 ),
259 rule_builder(
260 "fallow/high-complexity",
261 "Function exceeds both complexity thresholds",
262 "note",
263 ),
264 rule_builder(
265 "fallow/high-crap-score",
266 "Function has a high CRAP score (high complexity combined with low coverage)",
267 "warning",
268 ),
269 rule_builder(
270 "fallow/refactoring-target",
271 "File identified as a high-priority refactoring candidate",
272 "warning",
273 ),
274 ]
275}
276
277fn health_runtime_sarif_rules(rule_builder: &SarifRuleBuilder<'_>) -> Vec<serde_json::Value> {
278 vec![
279 rule_builder(
280 "fallow/untested-file",
281 "Runtime-reachable file has no test dependency path",
282 "warning",
283 ),
284 rule_builder(
285 "fallow/untested-export",
286 "Runtime-reachable export has no test dependency path",
287 "warning",
288 ),
289 rule_builder(
290 "fallow/runtime-safe-to-delete",
291 "Function is statically unused and was never invoked in production",
292 "warning",
293 ),
294 rule_builder(
295 "fallow/runtime-review-required",
296 "Function is statically used but was never invoked in production",
297 "warning",
298 ),
299 rule_builder(
300 "fallow/runtime-low-traffic",
301 "Function was invoked below the low-traffic threshold relative to total trace count",
302 "note",
303 ),
304 rule_builder(
305 "fallow/runtime-coverage-unavailable",
306 "Runtime coverage could not be resolved for this function",
307 "note",
308 ),
309 rule_builder(
310 "fallow/runtime-coverage",
311 "Runtime coverage finding",
312 "note",
313 ),
314 ]
315}
316
317fn health_coverage_intelligence_sarif_rules(
318 rule_builder: &SarifRuleBuilder<'_>,
319) -> Vec<serde_json::Value> {
320 vec![
321 rule_builder(
322 "fallow/coverage-intelligence-risky-change",
323 "Changed hot path combines high CRAP and low test coverage",
324 "warning",
325 ),
326 rule_builder(
327 "fallow/coverage-intelligence-delete",
328 "Static and runtime evidence indicate code can be deleted",
329 "warning",
330 ),
331 rule_builder(
332 "fallow/coverage-intelligence-review",
333 "Cold reachable uncovered code needs owner review",
334 "warning",
335 ),
336 rule_builder(
337 "fallow/coverage-intelligence-refactor",
338 "Hot covered code has high CRAP and should be refactored carefully",
339 "warning",
340 ),
341 ]
342}
343
344fn append_complexity_sarif_results(
345 sarif_results: &mut Vec<serde_json::Value>,
346 report: &HealthReport,
347 root: &Path,
348 snippets: &mut SourceSnippetCache,
349) {
350 for finding in &report.findings {
351 let uri = relative_uri(&finding.path, root);
352 let (rule_id, message) = health_complexity_sarif_message(finding, report);
353 let level = complexity_sarif_level(finding);
354 let source_snippet = snippets.line(&finding.path, finding.line);
355 sarif_results.push(sarif_result_with_snippet(
356 rule_id,
357 level,
358 &message,
359 &uri,
360 Some((finding.line, finding.col + 1)),
361 source_snippet.as_deref(),
362 ));
363 }
364}
365
366const fn complexity_sarif_level(finding: &crate::ComplexityViolation) -> &'static str {
372 match finding.effective_severity {
373 Some(EffectiveSeverity::Error) => "error",
374 Some(EffectiveSeverity::Warn) => "warning",
375 None => match finding.severity {
376 FindingSeverity::Critical => "error",
377 FindingSeverity::High => "warning",
378 FindingSeverity::Moderate => "note",
379 },
380 }
381}
382
383fn health_complexity_sarif_message(
389 finding: &crate::ComplexityViolation,
390 report: &HealthReport,
391) -> (&'static str, String) {
392 let thresholds = finding.resolved_thresholds(&report.summary);
393 match finding.exceeded {
394 ExceededThreshold::Cyclomatic => (
395 "fallow/high-cyclomatic-complexity",
396 format!(
397 "'{}' has cyclomatic complexity {} (threshold: {})",
398 finding.name, finding.cyclomatic, thresholds.max_cyclomatic,
399 ),
400 ),
401 ExceededThreshold::Cognitive => (
402 "fallow/high-cognitive-complexity",
403 format!(
404 "'{}' has cognitive complexity {} (threshold: {})",
405 finding.name, finding.cognitive, thresholds.max_cognitive,
406 ),
407 ),
408 ExceededThreshold::Both => (
409 "fallow/high-complexity",
410 format!(
411 "'{}' has cyclomatic complexity {} (threshold: {}) and cognitive complexity {} (threshold: {})",
412 finding.name,
413 finding.cyclomatic,
414 thresholds.max_cyclomatic,
415 finding.cognitive,
416 thresholds.max_cognitive,
417 ),
418 ),
419 ExceededThreshold::Crap
420 | ExceededThreshold::CyclomaticCrap
421 | ExceededThreshold::CognitiveCrap
422 | ExceededThreshold::All => {
423 let crap = finding.crap.unwrap_or(0.0);
424 let coverage = finding
425 .coverage_pct
426 .map(|pct| format!(", coverage {pct:.0}%"))
427 .unwrap_or_default();
428 (
429 "fallow/high-crap-score",
430 format!(
431 "'{}' has CRAP score {:.1} (threshold: {:.1}, cyclomatic {}{})",
432 finding.name, crap, thresholds.max_crap, finding.cyclomatic, coverage,
433 ),
434 )
435 }
436 }
437}
438
439fn append_refactoring_target_sarif_results(
440 sarif_results: &mut Vec<serde_json::Value>,
441 report: &HealthReport,
442 root: &Path,
443) {
444 for target in &report.targets {
445 let uri = relative_uri(&target.path, root);
446 let message = format!(
447 "[{}] {} (priority: {:.1}, efficiency: {:.1}, effort: {}, confidence: {})",
448 target.category.label(),
449 target.recommendation,
450 target.priority,
451 target.efficiency,
452 target.effort.label(),
453 target.confidence.label(),
454 );
455 sarif_results.push(sarif_result(
456 "fallow/refactoring-target",
457 "warning",
458 &message,
459 &uri,
460 None,
461 ));
462 }
463}
464
465fn append_coverage_gap_sarif_results(
466 sarif_results: &mut Vec<serde_json::Value>,
467 report: &HealthReport,
468 root: &Path,
469 snippets: &mut SourceSnippetCache,
470) {
471 let Some(ref gaps) = report.coverage_gaps else {
472 return;
473 };
474 for item in &gaps.files {
475 let uri = relative_uri(&item.file.path, root);
476 let message = format!(
477 "File is runtime-reachable but has no test dependency path ({} value export{})",
478 item.file.value_export_count,
479 if item.file.value_export_count == 1 {
480 ""
481 } else {
482 "s"
483 },
484 );
485 sarif_results.push(sarif_result(
486 "fallow/untested-file",
487 "warning",
488 &message,
489 &uri,
490 None,
491 ));
492 }
493
494 for item in &gaps.exports {
495 let uri = relative_uri(&item.export.path, root);
496 let message = format!(
497 "Export '{}' is runtime-reachable but never referenced by test-reachable modules",
498 item.export.export_name
499 );
500 let source_snippet = snippets.line(&item.export.path, item.export.line);
501 sarif_results.push(sarif_result_with_snippet(
502 "fallow/untested-export",
503 "warning",
504 &message,
505 &uri,
506 Some((item.export.line, item.export.col + 1)),
507 source_snippet.as_deref(),
508 ));
509 }
510}
511
512fn append_runtime_coverage_sarif_results(
513 sarif_results: &mut Vec<serde_json::Value>,
514 production: &RuntimeCoverageReport,
515 root: &Path,
516 snippets: &mut SourceSnippetCache,
517) {
518 for finding in &production.findings {
519 let uri = relative_uri(&finding.path, root);
520 let rule_id = match finding.verdict {
521 RuntimeCoverageVerdict::SafeToDelete => "fallow/runtime-safe-to-delete",
522 RuntimeCoverageVerdict::ReviewRequired => "fallow/runtime-review-required",
523 RuntimeCoverageVerdict::LowTraffic => "fallow/runtime-low-traffic",
524 RuntimeCoverageVerdict::CoverageUnavailable => "fallow/runtime-coverage-unavailable",
525 RuntimeCoverageVerdict::Active | RuntimeCoverageVerdict::Unknown => {
526 "fallow/runtime-coverage"
527 }
528 };
529 let level = match finding.verdict {
530 RuntimeCoverageVerdict::SafeToDelete | RuntimeCoverageVerdict::ReviewRequired => {
531 "warning"
532 }
533 _ => "note",
534 };
535 let invocations_hint = finding.invocations.map_or_else(
536 || "untracked".to_owned(),
537 |hits| format!("{hits} invocations"),
538 );
539 let message = format!(
540 "'{}' runtime coverage verdict: {} ({})",
541 finding.function,
542 finding.verdict.human_label(),
543 invocations_hint,
544 );
545 let source_snippet = snippets.line(&finding.path, finding.line);
546 sarif_results.push(sarif_result_with_snippet(
547 rule_id,
548 level,
549 &message,
550 &uri,
551 Some((finding.line, 1)),
552 source_snippet.as_deref(),
553 ));
554 }
555}
556
557fn append_coverage_intelligence_sarif_results(
558 sarif_results: &mut Vec<serde_json::Value>,
559 intelligence: &CoverageIntelligenceReport,
560 root: &Path,
561 snippets: &mut SourceSnippetCache,
562) {
563 for finding in &intelligence.findings {
564 let rule_id = coverage_intelligence_rule_id(finding.recommendation);
565 let level = match finding.verdict {
566 CoverageIntelligenceVerdict::Clean | CoverageIntelligenceVerdict::Unknown => continue,
567 _ => "warning",
568 };
569 let uri = relative_uri(&finding.path, root);
570 let identity = finding.identity.as_deref().unwrap_or("code");
571 let signals = finding
572 .signals
573 .iter()
574 .map(ToString::to_string)
575 .collect::<Vec<_>>()
576 .join(", ");
577 let message = format!(
578 "'{}' coverage intelligence verdict: {} ({}, signals: {})",
579 identity, finding.verdict, finding.recommendation, signals,
580 );
581 let source_snippet = snippets.line(&finding.path, finding.line);
582 let mut result = sarif_result_with_snippet(
583 rule_id,
584 level,
585 &message,
586 &uri,
587 Some((finding.line, 1)),
588 source_snippet.as_deref(),
589 );
590 result["properties"] = serde_json::json!({
591 "coverage_intelligence_id": &finding.id,
592 "verdict": finding.verdict,
593 "recommendation": finding.recommendation,
594 "confidence": finding.confidence,
595 "signals": &finding.signals,
596 "related_ids": &finding.related_ids,
597 });
598 sarif_results.push(result);
599 }
600}
601
602fn coverage_intelligence_rule_id(
603 recommendation: CoverageIntelligenceRecommendation,
604) -> &'static str {
605 match recommendation {
606 CoverageIntelligenceRecommendation::AddTestOrSplitBeforeMerge => {
607 "fallow/coverage-intelligence-risky-change"
608 }
609 CoverageIntelligenceRecommendation::DeleteAfterConfirmingOwner => {
610 "fallow/coverage-intelligence-delete"
611 }
612 CoverageIntelligenceRecommendation::ReviewBeforeChanging => {
613 "fallow/coverage-intelligence-review"
614 }
615 CoverageIntelligenceRecommendation::RefactorCarefullyKeepBehavior => {
616 "fallow/coverage-intelligence-refactor"
617 }
618 }
619}
620
621fn sarif_document(
622 sarif_results: &[serde_json::Value],
623 sarif_rules: &[serde_json::Value],
624) -> serde_json::Value {
625 build_sarif_document(SarifDocumentInput {
626 results: sarif_results,
627 rules: sarif_rules,
628 tool_version: env!("CARGO_PKG_VERSION"),
629 })
630}
631
632fn sarif_result(
633 rule_id: &str,
634 level: &str,
635 message: &str,
636 uri: &str,
637 region: Option<(u32, u32)>,
638) -> serde_json::Value {
639 sarif_result_with_snippet(rule_id, level, message, uri, region, None)
640}
641
642fn relative_uri(path: &Path, root: &Path) -> String {
643 normalize_uri(
644 &path
645 .strip_prefix(root)
646 .unwrap_or(path)
647 .display()
648 .to_string(),
649 )
650}
651
652#[cfg(test)]
653mod tests {
654 use std::path::PathBuf;
655
656 use crate::{SarifRuleInput, build_sarif_rule};
657 use fallow_types::duplicates::{CloneGroup, CloneInstance, DuplicationStats};
658
659 use super::*;
660
661 fn rule(id: &str, short_description: &str, level: &str) -> serde_json::Value {
662 build_sarif_rule(SarifRuleInput {
663 id,
664 short_description,
665 level,
666 full_description: None,
667 help_uri: None,
668 })
669 }
670
671 #[test]
672 fn grouped_duplication_sarif_attaches_group_property() {
673 let root = PathBuf::from("/repo");
674 let report = DuplicationReport {
675 clone_groups: vec![CloneGroup {
676 instances: vec![CloneInstance {
677 file: root.join("src/a.ts"),
678 start_line: 2,
679 end_line: 5,
680 start_col: 0,
681 end_col: 1,
682 fragment: "copy();".to_string(),
683 }],
684 token_count: 10,
685 line_count: 4,
686 similarity: None,
687 }],
688 clone_families: Vec::new(),
689 mirrored_directories: Vec::new(),
690 stats: DuplicationStats::default(),
691 };
692
693 let sarif = build_grouped_duplication_sarif(&report, &root, &rule, |_| "src".to_string());
694
695 assert_eq!(sarif["runs"][0]["results"][0]["properties"]["group"], "src");
696 assert_eq!(
697 sarif["runs"][0]["results"][0]["locations"][0]["physicalLocation"]["artifactLocation"]
698 ["uri"],
699 "src/a.ts"
700 );
701 }
702
703 fn sarif_message_violation(
704 exceeded: ExceededThreshold,
705 effective: Option<crate::HealthEffectiveThresholds>,
706 ) -> crate::ComplexityViolation {
707 crate::ComplexityViolation {
708 path: PathBuf::from("src/Widget.svelte"),
709 name: "<template>".to_string(),
710 line: 5,
711 col: 0,
712 cyclomatic: 25,
713 cognitive: 21,
714 line_count: 13,
715 param_count: 0,
716 react_hook_count: 0,
717 react_jsx_max_depth: 0,
718 react_prop_count: 0,
719 react_hook_profile: None,
720 exceeded,
721 severity: crate::FindingSeverity::High,
722 effective_severity: None,
723 crap: Some(90.0),
724 coverage_pct: None,
725 coverage_tier: None,
726 coverage_source: None,
727 inherited_from: None,
728 component_rollup: None,
729 contributions: Vec::new(),
730 effective_thresholds: effective,
731 threshold_source: effective.map(|_| crate::ThresholdSource::Override),
732 }
733 }
734
735 #[test]
736 fn sarif_message_uses_the_override_ceiling_not_the_global_one() {
737 let report = HealthReport::default();
738 let overridden = crate::HealthEffectiveThresholds {
739 max_cyclomatic: 500,
740 max_cognitive: 500,
741 max_crap: 500.0,
742 max_unit_size: 60,
743 };
744
745 let (global_rule, global_message) = health_complexity_sarif_message(
746 &sarif_message_violation(ExceededThreshold::Cyclomatic, None),
747 &report,
748 );
749 assert_eq!(global_rule, "fallow/high-cyclomatic-complexity");
750 assert!(
751 global_message.contains(&format!(
752 "threshold: {}",
753 report.summary.max_cyclomatic_threshold
754 )),
755 "{global_message}"
756 );
757
758 let (_, override_message) = health_complexity_sarif_message(
759 &sarif_message_violation(ExceededThreshold::Cyclomatic, Some(overridden)),
760 &report,
761 );
762 assert!(
763 override_message.contains("threshold: 500"),
764 "an override-affected finding must not be described against the global ceiling: {override_message}"
765 );
766
767 let (crap_rule, crap_message) = health_complexity_sarif_message(
768 &sarif_message_violation(ExceededThreshold::Crap, Some(overridden)),
769 &report,
770 );
771 assert_eq!(crap_rule, "fallow/high-crap-score");
772 assert!(crap_message.contains("threshold: 500.0"), "{crap_message}");
773 }
774}