1use std::path::Path;
13
14use rustc_hash::FxHashMap;
15use serde::Serialize;
16use serde_json::Value;
17
18use fallow_config::{ResolvedConfig, WorkspaceInfo};
19use fallow_output::HealthReport;
20use fallow_types::discover::DiscoveredFile;
21use fallow_types::duplicates::{CloneInstance, DuplicationReport};
22use fallow_types::extract::{FunctionComplexity, ModuleInfo};
23use fallow_types::results::{AnalysisResults, FeatureFlag, SecurityFinding};
24
25use crate::module_graph::RetainedModuleGraph;
26
27const HOTSPOT_CYCLOMATIC_FLOOR: u16 = 10;
29const CLONE_PREVIEW_MAX_BYTES: usize = 2000;
33const CLONE_PREVIEW_MAX_LINES: usize = 32;
37const CLONE_PREVIEW_CONTEXT: usize = 4;
42const MAX_CLONE_GROUPS: usize = 500;
46const MAX_ANALYSIS_FINDINGS: usize = 1000;
48const MAX_SECURITY_BLIND_SPOT_SAMPLES: usize = 100;
50const MAX_HEALTH_FILES: usize = 2000;
52const EDGE_FLAG_TYPE_ONLY: u32 = 1;
54const EDGE_FLAG_DYNAMIC: u32 = 2;
58const NO_RUNTIME_COVERAGE_REASON: &str = "No runtime coverage input was provided";
62
63pub struct VizBuildInput<'a> {
65 pub results: &'a AnalysisResults,
67 pub graph: &'a RetainedModuleGraph,
69 pub modules: Option<&'a [ModuleInfo]>,
71 pub files: &'a [DiscoveredFile],
73 pub duplication: &'a DuplicationReport,
75 pub workspaces: &'a [WorkspaceInfo],
77 pub config: &'a ResolvedConfig,
79 pub feature_flags: &'a [FeatureFlag],
81 pub include_analysis_details: bool,
83}
84
85#[derive(Serialize)]
87pub struct VizData {
88 pub root: String,
90 pub files: Vec<VizFile>,
92 pub edges: Vec<[u32; 3]>,
97 pub summary: VizSummary,
99 pub workspaces: Vec<VizWorkspace>,
101 pub zones: Vec<VizZone>,
103 pub cycles: Vec<Vec<u32>>,
105 pub clones: Vec<VizCloneGroup>,
107 pub violations: Vec<VizViolation>,
109 pub architecture: VizFindingAnalysis,
111 pub dependencies: VizFindingAnalysis,
113 pub health: VizHealthData,
115 pub security: VizSecurityData,
117 pub frameworks: VizFrameworkData,
119 pub styling: VizStylingData,
121 pub feature_flags: VizFindingAnalysis,
123}
124
125#[derive(Serialize, Clone, Copy, PartialEq, Eq)]
127#[serde(rename_all = "camelCase")]
128pub enum VizAvailabilityState {
129 Complete,
131 Disabled,
133 NotApplicable,
135 Unavailable,
137}
138
139#[derive(Serialize)]
146pub struct VizAvailability {
147 pub state: VizAvailabilityState,
149 pub count: usize,
151 pub unit: &'static str,
153 #[serde(skip_serializing_if = "Option::is_none")]
155 pub reason: Option<String>,
156 #[serde(skip_serializing_if = "Option::is_none")]
159 pub truncated: Option<usize>,
160}
161
162impl VizAvailability {
163 const fn complete(count: usize, unit: &'static str, truncated: Option<usize>) -> Self {
164 Self {
165 state: VizAvailabilityState::Complete,
166 count,
167 unit,
168 reason: None,
169 truncated,
170 }
171 }
172
173 fn unavailable(unit: &'static str, reason: impl Into<String>) -> Self {
174 Self {
175 state: VizAvailabilityState::Unavailable,
176 count: 0,
177 unit,
178 reason: Some(reason.into()),
179 truncated: None,
180 }
181 }
182
183 fn disabled(unit: &'static str, reason: impl Into<String>) -> Self {
184 Self {
185 state: VizAvailabilityState::Disabled,
186 count: 0,
187 unit,
188 reason: Some(reason.into()),
189 truncated: None,
190 }
191 }
192}
193
194#[derive(Serialize)]
196pub struct VizFinding {
197 kind: String,
198 title: String,
199 #[serde(skip_serializing_if = "Option::is_none")]
200 file: Option<u32>,
201 #[serde(skip_serializing_if = "Option::is_none")]
202 path: Option<String>,
203 #[serde(skip_serializing_if = "Option::is_none")]
204 line: Option<u32>,
205 #[serde(skip_serializing_if = "Vec::is_empty")]
206 files: Vec<u32>,
207 #[serde(skip_serializing_if = "Vec::is_empty")]
208 paths: Vec<String>,
209 #[serde(skip_serializing_if = "Option::is_none")]
210 description: Option<String>,
211 #[serde(skip_serializing_if = "Option::is_none")]
212 severity: Option<String>,
213 #[serde(skip_serializing_if = "Vec::is_empty")]
214 facts: Vec<VizFindingFact>,
215 actions: Vec<VizFindingAction>,
216}
217
218#[derive(Serialize)]
220pub struct VizFindingFact {
221 label: String,
222 value: String,
223}
224
225#[derive(Serialize)]
227pub struct VizFindingAction {
228 label: String,
229 #[serde(skip_serializing_if = "Option::is_none")]
230 kind: Option<String>,
231 auto_fixable: bool,
232 #[serde(skip_serializing_if = "Option::is_none")]
233 command: Option<String>,
234 #[serde(skip_serializing_if = "Option::is_none")]
235 comment: Option<String>,
236 #[serde(skip_serializing_if = "Option::is_none")]
237 config_key: Option<String>,
238 #[serde(skip_serializing_if = "Option::is_none")]
239 value: Option<Value>,
240 #[serde(skip_serializing_if = "Option::is_none")]
241 description: Option<String>,
242}
243
244#[derive(Serialize)]
246pub struct VizFindingAnalysis {
247 pub availability: VizAvailability,
249 #[serde(skip_serializing_if = "Option::is_none")]
251 pub findings_truncated: Option<usize>,
252 pub findings: Vec<VizFinding>,
254}
255
256#[derive(Serialize)]
258pub struct VizFrameworkData {
259 pub availability: VizAvailability,
261 pub detector_availability: VizAvailability,
264 #[serde(skip_serializing_if = "Option::is_none")]
266 pub findings_truncated: Option<usize>,
267 pub findings: Vec<VizFinding>,
269 pub detected_frameworks: Vec<String>,
271 pub detectors: Vec<VizFrameworkDetector>,
274}
275
276#[derive(Serialize)]
278pub struct VizFrameworkDetector {
279 id: String,
280 framework: String,
281 status: String,
282 #[serde(skip_serializing_if = "Option::is_none")]
283 reason: Option<String>,
284}
285
286#[derive(Serialize)]
288pub struct VizHealthCapabilities {
289 pub complexity: VizAvailability,
291 pub maintainability: VizAvailability,
293 pub crap: VizAvailability,
295 pub coverage: VizAvailability,
297 pub runtime: VizAvailability,
299 pub churn: VizAvailability,
301 pub hotspots: VizAvailability,
303 pub ownership: VizAvailability,
305}
306
307#[derive(Serialize)]
309pub struct VizHealthFile {
310 file: u32,
311 path: String,
312 maintainability_index: f64,
313 crap_max: f64,
314 complexity_density: f64,
315 fan_in: usize,
316 fan_out: usize,
317 #[serde(skip_serializing_if = "Option::is_none")]
318 hotspot_score: Option<f64>,
319 #[serde(skip_serializing_if = "Option::is_none")]
320 commits: Option<u32>,
321 #[serde(skip_serializing_if = "Option::is_none")]
322 ownership: Option<Value>,
323}
324
325#[derive(Serialize)]
327pub struct VizHealthData {
328 pub availability: VizAvailability,
330 pub capabilities: VizHealthCapabilities,
332 #[serde(skip_serializing_if = "Option::is_none")]
334 pub shared_parse: Option<bool>,
335 #[serde(skip_serializing_if = "Option::is_none")]
337 pub score: Option<f64>,
338 #[serde(skip_serializing_if = "Option::is_none")]
340 pub grade: Option<String>,
341 #[serde(skip_serializing_if = "Option::is_none")]
343 pub average_maintainability: Option<f64>,
344 pub files: Vec<VizHealthFile>,
346 #[serde(skip_serializing_if = "Option::is_none")]
348 pub files_truncated: Option<usize>,
349 #[serde(skip_serializing_if = "Option::is_none")]
351 pub findings_truncated: Option<usize>,
352 pub findings: Vec<VizFinding>,
354}
355
356#[derive(Serialize)]
358pub struct VizStylingData {
359 pub availability: VizAvailability,
361 #[serde(skip_serializing_if = "Option::is_none")]
363 pub findings_truncated: Option<usize>,
364 pub findings: Vec<VizFinding>,
366 #[serde(skip_serializing_if = "Option::is_none")]
368 pub score: Option<f64>,
369 #[serde(skip_serializing_if = "Option::is_none")]
371 pub grade: Option<String>,
372 #[serde(skip_serializing_if = "Option::is_none")]
374 pub confidence: Option<String>,
375 #[serde(skip_serializing_if = "Option::is_none")]
377 pub summary: Option<Value>,
378}
379
380#[derive(Serialize)]
382pub struct VizSecurityTraceHop {
383 #[serde(skip_serializing_if = "Option::is_none")]
384 file: Option<u32>,
385 path: String,
386 line: u32,
387 col: u32,
388 role: String,
389}
390
391#[derive(Serialize)]
393pub struct VizSecurityEndpoint {
394 #[serde(skip_serializing_if = "Option::is_none")]
395 file: Option<u32>,
396 path: String,
397 line: u32,
398 col: u32,
399}
400
401#[derive(Serialize)]
403pub struct VizSecurityTaintFlow {
404 source: VizSecurityEndpoint,
405 sink: VizSecurityEndpoint,
406 intra_module: bool,
407 cross_module_hops: u32,
408}
409
410#[derive(Serialize)]
413pub struct VizSecurityCandidate {
414 id: String,
415 kind: String,
416 #[serde(skip_serializing_if = "Option::is_none")]
417 category: Option<String>,
418 #[serde(skip_serializing_if = "Option::is_none")]
419 cwe: Option<u32>,
420 #[serde(skip_serializing_if = "Option::is_none")]
421 file: Option<u32>,
422 path: String,
423 line: u32,
424 col: u32,
425 evidence: String,
426 severity: String,
427 #[serde(skip_serializing_if = "Option::is_none")]
428 taint_confidence: Option<String>,
429 #[serde(skip_serializing_if = "Option::is_none")]
430 source_kind: Option<String>,
431 #[serde(skip_serializing_if = "Option::is_none")]
432 sink: Option<String>,
433 #[serde(skip_serializing_if = "Option::is_none")]
434 url_shape: Option<String>,
435 #[serde(skip_serializing_if = "Option::is_none")]
436 network_destination: Option<String>,
437 #[serde(skip_serializing_if = "Option::is_none")]
438 reachable_from_entry: Option<bool>,
439 #[serde(skip_serializing_if = "Option::is_none")]
440 reachable_from_untrusted_source: Option<bool>,
441 #[serde(skip_serializing_if = "Option::is_none")]
442 blast_radius: Option<u32>,
443 crosses_boundary: bool,
444 client_server_boundary: bool,
445 cross_module_boundary: bool,
446 #[serde(skip_serializing_if = "Option::is_none")]
447 architecture_zone: Option<String>,
448 #[serde(skip_serializing_if = "Option::is_none")]
449 dead_code: Option<Value>,
450 #[serde(skip_serializing_if = "Option::is_none")]
451 runtime: Option<Value>,
452 #[serde(skip_serializing_if = "Option::is_none")]
453 taint_flow: Option<VizSecurityTaintFlow>,
454 #[serde(skip_serializing_if = "Vec::is_empty")]
455 observed_controls: Vec<Value>,
456 #[serde(skip_serializing_if = "Option::is_none")]
457 control_verification_prompt: Option<String>,
458 trace: Vec<VizSecurityTraceHop>,
459 #[serde(skip_serializing_if = "Vec::is_empty")]
460 taint_trace: Vec<VizSecurityTraceHop>,
461 actions: Value,
462}
463
464#[derive(Serialize)]
466pub struct VizSecurityBlindSpot {
467 kind: String,
468 count: usize,
469 #[serde(skip_serializing_if = "Option::is_none")]
470 path: Option<String>,
471 #[serde(skip_serializing_if = "Option::is_none")]
472 file: Option<u32>,
473 #[serde(skip_serializing_if = "Option::is_none")]
474 line: Option<u32>,
475 #[serde(skip_serializing_if = "Option::is_none")]
476 reason: Option<String>,
477}
478
479#[derive(Serialize)]
482pub struct VizSecurityData {
483 pub availability: VizAvailability,
486 pub runtime_availability: VizAvailability,
489 pub candidates: Vec<VizSecurityCandidate>,
491 pub blind_spot_count: usize,
493 #[serde(skip_serializing_if = "Option::is_none")]
495 pub blind_spots_truncated: Option<usize>,
496 pub blind_spots: Vec<VizSecurityBlindSpot>,
498}
499
500#[derive(Serialize)]
502pub struct VizFile {
503 pub path: String,
505 pub size: u64,
507 pub status: VizFileStatus,
509 pub export_count: u16,
511 pub unused_export_count: u16,
513 pub is_entry: bool,
515 pub importer_count: u16,
517 pub import_count: u16,
519 #[serde(skip_serializing_if = "Option::is_none")]
521 pub workspace: Option<u16>,
522 #[serde(skip_serializing_if = "Option::is_none")]
524 pub zone: Option<u16>,
525 #[serde(skip_serializing_if = "Vec::is_empty")]
527 pub unused_exports: Vec<String>,
528 pub fn_count: u16,
530 pub max_cyclomatic: u16,
532 pub max_cognitive: u16,
534 pub react_hooks: u16,
536 pub jsx_depth: u16,
538 #[serde(skip_serializing_if = "Vec::is_empty")]
540 pub functions: Vec<VizFunction>,
541 pub dup_lines: u32,
543 #[serde(skip_serializing_if = "Vec::is_empty")]
545 pub clone_groups: Vec<u32>,
546 pub in_cycle: bool,
548}
549
550#[derive(Serialize, Clone, Copy, PartialEq, Eq)]
552#[serde(rename_all = "camelCase")]
553pub enum VizFileStatus {
554 Clean,
556 HasUnusedExports,
558 Unused,
560 EntryPoint,
562}
563
564#[derive(Serialize)]
566pub struct VizFunction {
567 name: String,
569 line: u32,
571 cyclomatic: u16,
573 cognitive: u16,
575 lines: u32,
577 hooks: u16,
579 jsx_depth: u16,
581 props: u16,
583}
584
585#[derive(Serialize)]
587pub struct VizSummary {
588 pub total_files: usize,
590 pub total_size: u64,
592 pub total_edges: usize,
594 pub unused_files: usize,
596 pub unused_exports: usize,
598 pub unused_types: usize,
600 pub unused_deps: usize,
602 pub unresolved_imports: usize,
604 pub circular_deps: usize,
606 pub clone_groups: usize,
608 pub duplicated_lines: usize,
610 pub boundary_violations: usize,
612 pub hotspot_files: usize,
614 #[serde(skip_serializing_if = "Option::is_none")]
617 pub clone_groups_truncated: Option<u32>,
618}
619
620#[derive(Serialize)]
622pub struct VizWorkspace {
623 name: String,
625 root: String,
627}
628
629#[derive(Serialize)]
631pub struct VizZone {
632 name: String,
634 files: u32,
636}
637
638#[derive(Serialize)]
640pub struct VizCloneGroup {
641 lines: usize,
643 tokens: usize,
645 instances: Vec<VizCloneInstance>,
647 preview: String,
651 highlight_start: u32,
654 highlight_lines: u32,
658}
659
660#[derive(Serialize)]
662pub struct VizCloneInstance {
663 file: u32,
665 start_line: u32,
667 end_line: u32,
669}
670
671#[derive(Serialize)]
673pub struct VizViolation {
674 from: u32,
676 to: u32,
678 from_zone: u16,
680 to_zone: u16,
682 line: u32,
684 specifier: String,
686}
687
688#[must_use]
690pub fn build_viz_data(input: &VizBuildInput<'_>) -> VizData {
691 let root = &input.config.root;
692 let index = FileIndex::new(input.files);
693 let workspaces = build_workspaces(input.workspaces, root);
694 let (zones, zone_by_file) = classify_zones(input, &index);
695 let (clones, clone_groups_by_file, dup_lines_by_file, clone_groups_truncated) =
696 build_clones(input.duplication, &index, MAX_CLONE_GROUPS);
697 let cycles = build_cycles(input.results, &index);
698 let violations = build_violations(input.results, &zones, &index);
699 let (architecture, dependencies, security, frameworks, feature_flags) =
700 if input.include_analysis_details {
701 (
702 build_architecture(input.results, &index, root),
703 build_dependencies(input.results, &index, root),
704 build_security(input.results, &index, root),
705 build_frameworks(input.results, &index, root),
706 build_feature_flags(input.feature_flags, &index, root),
707 )
708 } else {
709 skipped_analysis_details()
710 };
711
712 let files = build_files(
713 input,
714 &index,
715 &FilePropertyMaps {
716 zone_by_file: &zone_by_file,
717 clone_groups_by_file: &clone_groups_by_file,
718 dup_lines_by_file: &dup_lines_by_file,
719 cycles: &cycles,
720 },
721 );
722
723 let summary = build_summary(
724 input,
725 &files,
726 &clones,
727 &cycles,
728 &violations,
729 clone_groups_truncated,
730 );
731
732 VizData {
733 root: display_root(root),
734 files,
735 edges: build_edges(input.graph, &index),
736 summary,
737 workspaces,
738 zones,
739 cycles,
740 clones,
741 violations,
742 architecture,
743 dependencies,
744 health: VizHealthData {
745 availability: VizAvailability::unavailable("files", "Health analysis did not complete"),
746 capabilities: unavailable_health_capabilities("Health analysis did not complete"),
747 shared_parse: None,
748 score: None,
749 grade: None,
750 average_maintainability: None,
751 files: Vec::new(),
752 files_truncated: None,
753 findings_truncated: None,
754 findings: Vec::new(),
755 },
756 security,
757 frameworks,
758 styling: VizStylingData {
759 availability: VizAvailability::unavailable(
760 "findings",
761 "Styling analysis did not complete",
762 ),
763 findings_truncated: None,
764 findings: Vec::new(),
765 score: None,
766 grade: None,
767 confidence: None,
768 summary: None,
769 },
770 feature_flags,
771 }
772}
773
774fn skipped_analysis_details() -> (
775 VizFindingAnalysis,
776 VizFindingAnalysis,
777 VizSecurityData,
778 VizFrameworkData,
779 VizFindingAnalysis,
780) {
781 let skipped = |unit| VizFindingAnalysis {
782 availability: VizAvailability::disabled(unit, "Not needed for this Viz output format"),
783 findings_truncated: None,
784 findings: Vec::new(),
785 };
786 (
787 skipped("violations"),
788 skipped("findings"),
789 VizSecurityData {
790 availability: VizAvailability::disabled(
791 "candidates",
792 "Not needed for this Viz output format",
793 ),
794 runtime_availability: VizAvailability::disabled(
795 "observations",
796 "Not needed for this Viz output format",
797 ),
798 candidates: Vec::new(),
799 blind_spot_count: 0,
800 blind_spots_truncated: None,
801 blind_spots: Vec::new(),
802 },
803 VizFrameworkData {
804 availability: VizAvailability::disabled(
805 "findings",
806 "Not needed for this Viz output format",
807 ),
808 detector_availability: VizAvailability::disabled(
809 "detectors",
810 "Not needed for this Viz output format",
811 ),
812 findings_truncated: None,
813 findings: Vec::new(),
814 detected_frameworks: Vec::new(),
815 detectors: Vec::new(),
816 },
817 skipped("flags"),
818 )
819}
820
821struct FileIndex<'a> {
823 ordered: Vec<&'a DiscoveredFile>,
824 by_path: FxHashMap<&'a Path, u32>,
825 by_file_id: FxHashMap<u32, u32>,
826}
827
828impl<'a> FileIndex<'a> {
829 fn new(files: &'a [DiscoveredFile]) -> Self {
830 let mut ordered: Vec<&DiscoveredFile> = files.iter().collect();
831 ordered.sort_by_key(|f| f.id.0);
832 let mut by_path = FxHashMap::default();
833 let mut by_file_id = FxHashMap::default();
834 for (i, f) in ordered.iter().enumerate() {
835 let idx = clamp_u32(i);
836 by_path.insert(f.path.as_path(), idx);
837 by_file_id.insert(f.id.0, idx);
838 }
839 Self {
840 ordered,
841 by_path,
842 by_file_id,
843 }
844 }
845
846 fn index_of_path(&self, path: &Path) -> Option<u32> {
847 self.by_path.get(path).copied()
848 }
849
850 fn index_of_file_id(&self, file_id: u32) -> Option<u32> {
851 self.by_file_id.get(&file_id).copied()
852 }
853}
854
855fn analysis_from_records(
856 mut findings: Vec<VizFinding>,
857 total_findings: usize,
858 primary_count: usize,
859 unit: &'static str,
860) -> VizFindingAnalysis {
861 let findings_truncated = (total_findings > MAX_ANALYSIS_FINDINGS)
862 .then_some(total_findings.saturating_sub(MAX_ANALYSIS_FINDINGS));
863 let primary_truncated = (primary_count > MAX_ANALYSIS_FINDINGS)
864 .then_some(primary_count.saturating_sub(MAX_ANALYSIS_FINDINGS));
865 findings.truncate(MAX_ANALYSIS_FINDINGS);
866 VizFindingAnalysis {
867 availability: VizAvailability::complete(primary_count, unit, primary_truncated),
868 findings_truncated,
869 findings,
870 }
871}
872
873fn push_findings<T: Serialize>(
874 out: &mut Vec<VizFinding>,
875 kind: &str,
876 title: &str,
877 values: &[T],
878 root: &Path,
879 index: &FileIndex<'_>,
880) {
881 let remaining = MAX_ANALYSIS_FINDINGS.saturating_sub(out.len());
882 out.extend(values.iter().take(remaining).filter_map(|value| {
883 serde_json::to_value(value).ok().map(|detail| {
884 finding_from_value(kind, title, detail, root, &|path| index.index_of_path(path))
885 })
886 }));
887}
888
889fn finding_from_value(
890 kind: &str,
891 title: &str,
892 mut detail: Value,
893 root: &Path,
894 resolve_file: &dyn Fn(&Path) -> Option<u32>,
895) -> VizFinding {
896 let raw_path = find_string_key(&detail, &["path", "from_path", "consumer_path", "file"])
897 .map(str::to_owned);
898 let mut raw_paths = Vec::new();
899 collect_path_values(&detail, &mut raw_paths);
900 let mut paths = Vec::new();
901 let mut files = Vec::new();
902 for raw in raw_paths {
903 let raw_path = Path::new(&raw);
904 let absolute_path = if raw_path.has_root() {
908 raw_path.to_path_buf()
909 } else {
910 root.join(raw_path)
911 };
912 let display = relative_path(&absolute_path, root);
913 if !paths.contains(&display) {
914 paths.push(display);
915 }
916 if let Some(file) = resolve_file(&absolute_path)
917 && !files.contains(&file)
918 {
919 files.push(file);
920 }
921 }
922 let absolute = raw_path.as_deref().map(Path::new).map(|path| {
923 if path.has_root() {
924 path.to_path_buf()
925 } else {
926 root.join(path)
927 }
928 });
929 let file = absolute.as_deref().and_then(resolve_file);
930 let path = absolute.as_deref().map(|path| relative_path(path, root));
931 let line = find_u64_key(&detail, &["line", "start_line"])
932 .map(|value| u32::try_from(value).unwrap_or(u32::MAX));
933 relativize_value_paths(&mut detail, root);
934 let description =
935 find_string_key(&detail, &["message", "evidence", "reason"]).map(str::to_owned);
936 let severity = find_string_key(&detail, &["severity"]).map(str::to_owned);
937 let facts = finding_facts(&detail);
938 let actions = finding_actions(&detail);
939 VizFinding {
940 kind: kind.to_string(),
941 title: title.to_string(),
942 file,
943 path,
944 line,
945 files,
946 paths,
947 description,
948 severity,
949 facts,
950 actions,
951 }
952}
953
954fn finding_facts(detail: &Value) -> Vec<VizFindingFact> {
955 const EXCLUDED: &[&str] = &[
956 "path",
957 "from_path",
958 "to_path",
959 "consumer_path",
960 "file",
961 "files",
962 "paths",
963 "line",
964 "start_line",
965 "message",
966 "evidence",
967 "reason",
968 "severity",
969 "actions",
970 ];
971 let Some(fields) = detail.as_object() else {
972 return Vec::new();
973 };
974 fields
975 .iter()
976 .filter(|(label, _)| !EXCLUDED.contains(&label.as_str()))
977 .filter_map(|(label, value)| {
978 scalar_fact_value(value).map(|value| VizFindingFact {
979 label: label.clone(),
980 value,
981 })
982 })
983 .take(12)
984 .collect()
985}
986
987fn scalar_fact_value(value: &Value) -> Option<String> {
988 match value {
989 Value::String(value) => Some(value.clone()),
990 Value::Number(value) => Some(value.to_string()),
991 Value::Bool(value) => Some(value.to_string()),
992 Value::Array(values) if values.iter().all(Value::is_string) => Some(
993 values
994 .iter()
995 .filter_map(Value::as_str)
996 .collect::<Vec<_>>()
997 .join(", "),
998 ),
999 Value::Null | Value::Array(_) | Value::Object(_) => None,
1000 }
1001}
1002
1003fn finding_actions(detail: &Value) -> Vec<VizFindingAction> {
1004 let mut actions = Vec::new();
1005 if let Some(record) = detail.as_object() {
1006 for key in ["verify_command", "trace_command", "command"] {
1007 if let Some(command) = record.get(key).and_then(Value::as_str) {
1008 actions.push(VizFindingAction {
1009 label: "Verify".to_string(),
1010 kind: None,
1011 auto_fixable: false,
1012 command: Some(command.to_string()),
1013 comment: None,
1014 config_key: None,
1015 value: None,
1016 description: None,
1017 });
1018 }
1019 }
1020 if let Some(value) = record.get("actions") {
1021 append_projected_actions(&mut actions, value);
1022 }
1023 }
1024 actions
1025}
1026
1027fn append_projected_actions(actions: &mut Vec<VizFindingAction>, value: &Value) {
1028 match value {
1029 Value::Array(values) => {
1030 for value in values {
1031 if let Some(action) = projected_action(value) {
1032 actions.push(action);
1033 }
1034 }
1035 }
1036 Value::Object(values) => {
1037 for (label, value) in values {
1038 if let Some(command) = value.as_str() {
1039 actions.push(VizFindingAction {
1040 label: label.clone(),
1041 kind: Some(label.clone()),
1042 auto_fixable: false,
1043 command: Some(command.to_string()),
1044 comment: None,
1045 config_key: None,
1046 value: None,
1047 description: None,
1048 });
1049 }
1050 }
1051 }
1052 Value::Null | Value::Bool(_) | Value::Number(_) | Value::String(_) => {}
1053 }
1054}
1055
1056fn projected_action(value: &Value) -> Option<VizFindingAction> {
1057 let action = value.as_object()?;
1058 let kind = ["kind", "type"]
1059 .iter()
1060 .find_map(|key| action.get(*key).and_then(Value::as_str))
1061 .map(str::to_owned);
1062 let label = ["label", "title"]
1063 .iter()
1064 .find_map(|key| action.get(*key).and_then(Value::as_str))
1065 .map(str::to_owned)
1066 .or_else(|| kind.clone())
1067 .unwrap_or_else(|| "Review".to_string());
1068 let command = action
1069 .get("command")
1070 .and_then(Value::as_str)
1071 .map(str::to_owned);
1072 let comment = action
1073 .get("comment")
1074 .and_then(Value::as_str)
1075 .map(str::to_owned);
1076 let auto_fixable = action
1077 .get("auto_fixable")
1078 .and_then(Value::as_bool)
1079 .unwrap_or(false);
1080 let config_key = action
1081 .get("config_key")
1082 .and_then(Value::as_str)
1083 .map(str::to_owned);
1084 let projected_value = action.get("value").cloned();
1085 let description = ["description", "note"]
1086 .iter()
1087 .find_map(|key| action.get(*key).and_then(Value::as_str))
1088 .map(str::to_owned);
1089 (command.is_some()
1090 || comment.is_some()
1091 || description.is_some()
1092 || config_key.is_some()
1093 || projected_value.is_some())
1094 .then_some(VizFindingAction {
1095 label,
1096 kind,
1097 auto_fixable,
1098 command,
1099 comment,
1100 config_key,
1101 value: projected_value,
1102 description,
1103 })
1104}
1105
1106fn collect_path_values(value: &Value, out: &mut Vec<String>) {
1107 match value {
1108 Value::Object(map) => {
1109 for (key, value) in map {
1110 if is_path_key(key)
1111 && let Some(path) = value.as_str()
1112 {
1113 out.push(path.to_string());
1114 }
1115 if is_path_collection_key(key)
1116 && let Some(values) = value.as_array()
1117 {
1118 out.extend(values.iter().filter_map(Value::as_str).map(str::to_string));
1119 }
1120 collect_path_values(value, out);
1121 }
1122 }
1123 Value::Array(values) => {
1124 for value in values {
1125 collect_path_values(value, out);
1126 }
1127 }
1128 Value::Null | Value::Bool(_) | Value::Number(_) | Value::String(_) => {}
1129 }
1130}
1131
1132fn find_string_key<'a>(value: &'a Value, keys: &[&str]) -> Option<&'a str> {
1133 match value {
1134 Value::Object(map) => {
1135 for key in keys {
1136 if let Some(value) = map.get(*key).and_then(Value::as_str) {
1137 return Some(value);
1138 }
1139 }
1140 map.values().find_map(|value| find_string_key(value, keys))
1141 }
1142 Value::Array(values) => values.iter().find_map(|value| find_string_key(value, keys)),
1143 _ => None,
1144 }
1145}
1146
1147fn find_u64_key(value: &Value, keys: &[&str]) -> Option<u64> {
1148 match value {
1149 Value::Object(map) => {
1150 for key in keys {
1151 if let Some(value) = map.get(*key).and_then(Value::as_u64) {
1152 return Some(value);
1153 }
1154 }
1155 map.values().find_map(|value| find_u64_key(value, keys))
1156 }
1157 Value::Array(values) => values.iter().find_map(|value| find_u64_key(value, keys)),
1158 _ => None,
1159 }
1160}
1161
1162fn relativize_value_paths(value: &mut Value, root: &Path) {
1163 relativize_keyed_paths(value, root, false);
1164}
1165
1166fn relativize_keyed_paths(value: &mut Value, root: &Path, is_path: bool) {
1167 match value {
1168 Value::String(text) if is_path => {
1169 let path = Path::new(text);
1170 if path.has_root() {
1176 *text = relative_path(path, root);
1177 }
1178 }
1179 Value::Array(values) => {
1180 for value in values {
1181 relativize_keyed_paths(value, root, is_path);
1182 }
1183 }
1184 Value::Object(map) => {
1185 for (key, value) in map {
1186 let is_path = is_path_key(key) || is_path_collection_key(key);
1187 relativize_keyed_paths(value, root, is_path);
1188 }
1189 }
1190 Value::Null | Value::Bool(_) | Value::Number(_) | Value::String(_) => {}
1191 }
1192}
1193
1194fn is_path_key(key: &str) -> bool {
1195 matches!(
1196 key,
1197 "path"
1198 | "file"
1199 | "from_path"
1200 | "to_path"
1201 | "consumer_path"
1202 | "source_path"
1203 | "definition_path"
1204 | "template_path"
1205 | "inherited_from"
1206 | "reachable_via"
1207 | "new_path"
1208 | "old_path"
1209 | "cycle_path"
1210 | "docs_path"
1211 | "meta_docs_path"
1212 | "full_report_path"
1213 )
1214}
1215
1216fn is_path_collection_key(key: &str) -> bool {
1217 matches!(
1218 key,
1219 "files"
1220 | "paths"
1221 | "conflicting_paths"
1222 | "used_in_workspaces"
1223 | "hardcoded_consumers"
1224 | "hot_paths"
1225 )
1226}
1227
1228fn serialized_label<T: Serialize>(value: &T) -> String {
1229 serde_json::to_value(value)
1230 .ok()
1231 .and_then(|value| value.as_str().map(str::to_owned))
1232 .unwrap_or_else(|| "unknown".to_string())
1233}
1234
1235fn build_architecture(
1236 results: &AnalysisResults,
1237 index: &FileIndex<'_>,
1238 root: &Path,
1239) -> VizFindingAnalysis {
1240 let mut findings = Vec::new();
1241 push_findings(
1242 &mut findings,
1243 "boundary-violation",
1244 "Forbidden import",
1245 &results.boundary_violations,
1246 root,
1247 index,
1248 );
1249 push_findings(
1250 &mut findings,
1251 "boundary-coverage",
1252 "File outside architecture zones",
1253 &results.boundary_coverage_violations,
1254 root,
1255 index,
1256 );
1257 push_findings(
1258 &mut findings,
1259 "boundary-call",
1260 "Forbidden call",
1261 &results.boundary_call_violations,
1262 root,
1263 index,
1264 );
1265 push_findings(
1266 &mut findings,
1267 "policy-violation",
1268 "Policy violation",
1269 &results.policy_violations,
1270 root,
1271 index,
1272 );
1273 push_findings(
1274 &mut findings,
1275 "circular-dependency",
1276 "Import cycle",
1277 &results.circular_dependencies,
1278 root,
1279 index,
1280 );
1281 push_findings(
1282 &mut findings,
1283 "re-export-cycle",
1284 "Re-export cycle",
1285 &results.re_export_cycles,
1286 root,
1287 index,
1288 );
1289 let violation_count = results.boundary_violations.len()
1290 + results.boundary_coverage_violations.len()
1291 + results.boundary_call_violations.len()
1292 + results.policy_violations.len();
1293 let total_findings =
1294 violation_count + results.circular_dependencies.len() + results.re_export_cycles.len();
1295 analysis_from_records(findings, total_findings, violation_count, "violations")
1296}
1297
1298fn build_dependencies(
1299 results: &AnalysisResults,
1300 index: &FileIndex<'_>,
1301 root: &Path,
1302) -> VizFindingAnalysis {
1303 let mut findings = Vec::new();
1304 let mut count = 0;
1305 macro_rules! add {
1306 ($field:ident, $kind:literal, $title:literal) => {
1307 count += results.$field.len();
1308 push_findings(&mut findings, $kind, $title, &results.$field, root, index);
1309 };
1310 }
1311 add!(unresolved_imports, "unresolved-import", "Unresolved import");
1312 add!(
1313 unlisted_dependencies,
1314 "unlisted-dependency",
1315 "Unlisted dependency"
1316 );
1317 add!(
1318 type_only_dependencies,
1319 "type-only-dependency",
1320 "Type-only dependency"
1321 );
1322 add!(
1323 test_only_dependencies,
1324 "test-only-dependency",
1325 "Test-only dependency"
1326 );
1327 add!(
1328 dev_dependencies_in_production,
1329 "dev-dependency-in-production",
1330 "Development dependency used in production"
1331 );
1332 add!(
1333 duplicate_exports,
1334 "duplicate-export",
1335 "Duplicate public export"
1336 );
1337 add!(
1338 private_type_leaks,
1339 "private-type-leak",
1340 "Private type leaked by public API"
1341 );
1342 add!(
1343 deprecated_exports_in_use,
1344 "deprecated-export-in-use",
1345 "Deprecated export still in use"
1346 );
1347 add!(
1348 unused_catalog_entries,
1349 "unused-catalog-entry",
1350 "Unused catalog entry"
1351 );
1352 add!(
1353 empty_catalog_groups,
1354 "empty-catalog-group",
1355 "Empty catalog group"
1356 );
1357 add!(
1358 unresolved_catalog_references,
1359 "unresolved-catalog-reference",
1360 "Unresolved catalog reference"
1361 );
1362 add!(
1363 unused_dependency_overrides,
1364 "unused-dependency-override",
1365 "Unused dependency override"
1366 );
1367 add!(
1368 misconfigured_dependency_overrides,
1369 "misconfigured-dependency-override",
1370 "Misconfigured dependency override"
1371 );
1372 analysis_from_records(findings, count, count, "findings")
1373}
1374
1375fn build_frameworks(
1376 results: &AnalysisResults,
1377 index: &FileIndex<'_>,
1378 root: &Path,
1379) -> VizFrameworkData {
1380 let mut findings = Vec::new();
1381 let mut count = 0;
1382 macro_rules! add {
1383 ($field:ident, $kind:literal, $title:literal) => {
1384 count += results.$field.len();
1385 push_findings(&mut findings, $kind, $title, &results.$field, root, index);
1386 };
1387 }
1388 add!(
1389 invalid_client_exports,
1390 "invalid-client-export",
1391 "Invalid client export"
1392 );
1393 add!(
1394 mixed_client_server_barrels,
1395 "mixed-client-server-barrel",
1396 "Mixed client/server barrel"
1397 );
1398 add!(
1399 misplaced_directives,
1400 "misplaced-directive",
1401 "Misplaced framework directive"
1402 );
1403 add!(
1404 unprovided_injects,
1405 "unprovided-inject",
1406 "Injected value is never provided"
1407 );
1408 add!(
1409 unrendered_components,
1410 "unrendered-component",
1411 "Component is never rendered"
1412 );
1413 add!(route_collisions, "route-collision", "Route collision");
1414 add!(
1415 dynamic_segment_name_conflicts,
1416 "dynamic-segment-conflict",
1417 "Dynamic segment conflict"
1418 );
1419 add!(
1420 unused_component_props,
1421 "unused-component-prop",
1422 "Unused component prop"
1423 );
1424 add!(
1425 unused_component_emits,
1426 "unused-component-emit",
1427 "Unused component event"
1428 );
1429 add!(
1430 unused_component_inputs,
1431 "unused-component-input",
1432 "Unused component input"
1433 );
1434 add!(
1435 unused_component_outputs,
1436 "unused-component-output",
1437 "Unused component output"
1438 );
1439 add!(
1440 unused_svelte_events,
1441 "unused-svelte-event",
1442 "Unused Svelte event"
1443 );
1444 add!(
1445 unused_server_actions,
1446 "unused-server-action",
1447 "Unused server action"
1448 );
1449 add!(
1450 unused_load_data_keys,
1451 "unused-load-data-key",
1452 "Unused load-data key"
1453 );
1454 add!(prop_drilling_chains, "prop-drilling", "Prop-drilling chain");
1455 add!(thin_wrappers, "thin-wrapper", "Thin component wrapper");
1456 add!(
1457 duplicate_prop_shapes,
1458 "duplicate-prop-shape",
1459 "Duplicate prop shape"
1460 );
1461 let mut analysis = analysis_from_records(findings, count, count, "findings");
1462 if results.unused_load_data_keys_global_abstain {
1463 analysis.availability.reason = Some(
1464 "Load-data-key analysis abstained because whole-object page data usage was detected"
1465 .to_string(),
1466 );
1467 }
1468 VizFrameworkData {
1469 availability: analysis.availability,
1470 detector_availability: VizAvailability::unavailable(
1471 "detectors",
1472 "Framework detector coverage did not complete",
1473 ),
1474 findings_truncated: analysis.findings_truncated,
1475 findings: analysis.findings,
1476 detected_frameworks: Vec::new(),
1477 detectors: Vec::new(),
1478 }
1479}
1480
1481fn build_feature_flags(
1482 flags: &[FeatureFlag],
1483 index: &FileIndex<'_>,
1484 root: &Path,
1485) -> VizFindingAnalysis {
1486 let mut findings = Vec::new();
1487 push_findings(
1488 &mut findings,
1489 "feature-flag",
1490 "Feature flag use",
1491 flags,
1492 root,
1493 index,
1494 );
1495 analysis_from_records(findings, flags.len(), flags.len(), "flags")
1496}
1497
1498fn build_security(
1499 results: &AnalysisResults,
1500 index: &FileIndex<'_>,
1501 root: &Path,
1502) -> VizSecurityData {
1503 let total = results.security_findings.len();
1504 let truncated =
1505 (total > MAX_ANALYSIS_FINDINGS).then_some(total.saturating_sub(MAX_ANALYSIS_FINDINGS));
1506 let mut sorted_findings: Vec<&SecurityFinding> = results.security_findings.iter().collect();
1507 sorted_findings.sort_by_key(|finding| {
1508 let severity = serialized_label(&crate::security::derive_security_severity(finding));
1509 let priority = match severity.as_str() {
1510 "high" => 0,
1511 "medium" => 1,
1512 _ => 2,
1513 };
1514 (priority, relative_path(&finding.path, root), finding.line)
1515 });
1516 let candidates = sorted_findings
1517 .into_iter()
1518 .take(MAX_ANALYSIS_FINDINGS)
1519 .map(|finding| build_security_candidate(finding, index, root))
1520 .collect();
1521
1522 let mut blind_spots = Vec::new();
1523 if results.security_unresolved_edge_files > 0 {
1524 blind_spots.push(VizSecurityBlindSpot {
1525 kind: "unresolved-dynamic-imports".to_string(),
1526 count: results.security_unresolved_edge_files,
1527 path: None,
1528 file: None,
1529 line: None,
1530 reason: Some("Dynamic imports prevent complete client/server reachability".to_string()),
1531 });
1532 }
1533 if results.security_unresolved_callee_sites > 0 {
1534 blind_spots.push(VizSecurityBlindSpot {
1535 kind: "unresolved-callee-sites".to_string(),
1536 count: results.security_unresolved_callee_sites,
1537 path: None,
1538 file: None,
1539 line: None,
1540 reason: Some(
1541 "Dynamic or computed callees could not be matched to the sink catalogue"
1542 .to_string(),
1543 ),
1544 });
1545 }
1546 let diagnostic_count = results.security_unresolved_callee_diagnostics.len();
1547 for diagnostic in results
1548 .security_unresolved_callee_diagnostics
1549 .iter()
1550 .take(MAX_SECURITY_BLIND_SPOT_SAMPLES)
1551 {
1552 blind_spots.push(VizSecurityBlindSpot {
1553 kind: "unresolved-callee-sample".to_string(),
1554 count: 1,
1555 path: Some(relative_path(&diagnostic.path, root)),
1556 file: index.index_of_path(&diagnostic.path),
1557 line: Some(diagnostic.line),
1558 reason: Some(serialized_label(&diagnostic.reason)),
1559 });
1560 }
1561
1562 VizSecurityData {
1563 availability: VizAvailability::complete(total, "candidates", truncated),
1564 runtime_availability: VizAvailability::unavailable(
1565 "observations",
1566 NO_RUNTIME_COVERAGE_REASON,
1567 ),
1568 candidates,
1569 blind_spot_count: results.security_unresolved_edge_files
1570 + results.security_unresolved_callee_sites,
1571 blind_spots_truncated: (diagnostic_count > MAX_SECURITY_BLIND_SPOT_SAMPLES)
1572 .then_some(diagnostic_count.saturating_sub(MAX_SECURITY_BLIND_SPOT_SAMPLES)),
1573 blind_spots,
1574 }
1575}
1576
1577fn build_security_candidate(
1578 finding: &SecurityFinding,
1579 index: &FileIndex<'_>,
1580 root: &Path,
1581) -> VizSecurityCandidate {
1582 let kind = serialized_label(&finding.kind);
1583 let path = relative_path(&finding.path, root);
1584 let severity = serialized_label(&crate::security::derive_security_severity(finding));
1585 let id = crate::security::security_finding_id(finding, Path::new(&path));
1586 let reachability = finding.reachability.as_ref();
1587 let architecture_zone = finding
1588 .candidate
1589 .boundary
1590 .architecture_zone
1591 .as_ref()
1592 .map(|zone| format!("{} -> {}", zone.from, zone.to));
1593 let dead_code = serialize_relative(finding.dead_code.as_ref(), root);
1594 let runtime = serialize_relative(finding.runtime.as_ref(), root);
1595 let taint_flow = security_taint_flow(finding, index, root);
1596 let observed_controls = security_controls(finding, root);
1597 let actions = serialize_relative_value(&finding.actions, root)
1598 .unwrap_or_else(|| Value::Array(Vec::new()));
1599 let trace = security_trace(finding, index, root);
1600 let taint_trace = finding
1601 .reachability
1602 .as_ref()
1603 .map_or_else(Vec::new, |reachability| {
1604 trace_hops(&reachability.untrusted_source_trace, index, root)
1605 });
1606 VizSecurityCandidate {
1607 id,
1608 kind,
1609 category: finding.category.clone(),
1610 cwe: finding.cwe,
1611 file: index.index_of_path(&finding.path),
1612 path,
1613 line: finding.line,
1614 col: finding.col,
1615 evidence: finding.evidence.clone(),
1616 severity,
1617 taint_confidence: reachability
1618 .and_then(|reachability| reachability.taint_confidence.as_ref())
1619 .map(serialized_label),
1620 source_kind: finding.candidate.source_kind.clone(),
1621 sink: finding.candidate.sink.callee.clone(),
1622 url_shape: finding
1623 .candidate
1624 .sink
1625 .url_shape
1626 .as_ref()
1627 .map(serialized_label),
1628 network_destination: finding
1629 .candidate
1630 .network
1631 .as_ref()
1632 .and_then(|network| network.destination.clone()),
1633 reachable_from_entry: reachability.map(|value| value.reachable_from_entry),
1634 reachable_from_untrusted_source: reachability
1635 .map(|value| value.reachable_from_untrusted_source),
1636 blast_radius: reachability.map(|value| value.blast_radius),
1637 crosses_boundary: reachability.is_some_and(|value| value.crosses_boundary)
1638 || finding.candidate.boundary.client_server
1639 || finding.candidate.boundary.cross_module
1640 || architecture_zone.is_some(),
1641 client_server_boundary: finding.candidate.boundary.client_server,
1642 cross_module_boundary: finding.candidate.boundary.cross_module,
1643 architecture_zone,
1644 dead_code,
1645 runtime,
1646 taint_flow,
1647 observed_controls,
1648 control_verification_prompt: finding
1649 .attack_surface
1650 .as_ref()
1651 .map(|surface| surface.defensive_boundary.verification_prompt.clone()),
1652 trace,
1653 taint_trace,
1654 actions,
1655 }
1656}
1657
1658fn serialize_relative<T: Serialize>(value: Option<&T>, root: &Path) -> Option<Value> {
1659 value.and_then(|value| serialize_relative_value(value, root))
1660}
1661
1662fn serialize_relative_value<T: Serialize>(value: &T, root: &Path) -> Option<Value> {
1663 let mut serialized = serde_json::to_value(value).ok()?;
1664 relativize_value_paths(&mut serialized, root);
1665 Some(serialized)
1666}
1667
1668fn security_controls(finding: &SecurityFinding, root: &Path) -> Vec<Value> {
1669 finding
1670 .attack_surface
1671 .as_ref()
1672 .map_or_else(Vec::new, |surface| {
1673 surface
1674 .defensive_boundary
1675 .controls
1676 .iter()
1677 .filter_map(|control| serialize_relative_value(control, root))
1678 .collect()
1679 })
1680}
1681
1682fn security_trace(
1683 finding: &SecurityFinding,
1684 index: &FileIndex<'_>,
1685 root: &Path,
1686) -> Vec<VizSecurityTraceHop> {
1687 trace_hops(&finding.trace, index, root)
1688}
1689
1690fn trace_hops(
1691 hops: &[fallow_types::results::TraceHop],
1692 index: &FileIndex<'_>,
1693 root: &Path,
1694) -> Vec<VizSecurityTraceHop> {
1695 hops.iter()
1696 .map(|hop| VizSecurityTraceHop {
1697 file: index.index_of_path(&hop.path),
1698 path: relative_path(&hop.path, root),
1699 line: hop.line,
1700 col: hop.col,
1701 role: serialized_label(&hop.role),
1702 })
1703 .collect()
1704}
1705
1706fn security_taint_flow(
1707 finding: &SecurityFinding,
1708 index: &FileIndex<'_>,
1709 root: &Path,
1710) -> Option<VizSecurityTaintFlow> {
1711 let flow = finding.taint_flow.as_ref()?;
1712 let endpoint = |value: &fallow_types::results::TaintEndpoint| VizSecurityEndpoint {
1713 file: index.index_of_path(&value.path),
1714 path: relative_path(&value.path, root),
1715 line: value.line,
1716 col: value.col,
1717 };
1718 Some(VizSecurityTaintFlow {
1719 source: endpoint(&flow.source),
1720 sink: endpoint(&flow.sink),
1721 intra_module: flow.path.intra_module,
1722 cross_module_hops: flow.path.cross_module_hops,
1723 })
1724}
1725
1726pub fn apply_health_report(data: &mut VizData, report: &HealthReport, root: &Path) {
1729 let by_path: FxHashMap<String, u32> = data
1730 .files
1731 .iter()
1732 .enumerate()
1733 .map(|(index, file)| (file.path.clone(), clamp_u32(index)))
1734 .collect();
1735 apply_health_data(data, report, root, &by_path);
1736 apply_framework_data(data, report);
1737 apply_styling_data(data, report, root, &by_path);
1738}
1739
1740fn apply_health_data(
1741 data: &mut VizData,
1742 report: &HealthReport,
1743 root: &Path,
1744 by_path: &FxHashMap<String, u32>,
1745) {
1746 let resolve = |path: &Path| by_path.get(&relative_path(path, root)).copied();
1747 let hotspot_by_path: FxHashMap<String, &fallow_output::HotspotFinding> = report
1748 .hotspots
1749 .iter()
1750 .map(|hotspot| (relative_path(&hotspot.path, root), hotspot))
1751 .collect();
1752 let files = health_files(report, root, by_path, &hotspot_by_path);
1753 let (findings, total_findings) = health_findings(report, root, &resolve);
1754 let concern_count = health_concern_count(report, root, by_path);
1755 data.health = VizHealthData {
1756 availability: VizAvailability::complete(concern_count, "files", None),
1757 capabilities: health_capabilities(report),
1758 shared_parse: data.health.shared_parse,
1759 score: report.health_score.as_ref().map(|score| score.score),
1760 grade: report
1761 .health_score
1762 .as_ref()
1763 .map(|score| score.grade.to_string()),
1764 average_maintainability: report.summary.average_maintainability,
1765 files_truncated: report
1766 .file_scores
1767 .len()
1768 .checked_sub(MAX_HEALTH_FILES)
1769 .filter(|count| *count > 0),
1770 findings_truncated: total_findings
1771 .checked_sub(findings.len())
1772 .filter(|count| *count > 0),
1773 files,
1774 findings,
1775 };
1776}
1777
1778fn health_concern_count(
1779 report: &HealthReport,
1780 root: &Path,
1781 by_path: &FxHashMap<String, u32>,
1782) -> usize {
1783 let mut files = rustc_hash::FxHashSet::default();
1784 let mut add = |path: &Path| {
1785 if let Some(file) = by_path.get(&relative_path(path, root)) {
1786 files.insert(*file);
1787 }
1788 };
1789 for finding in &report.findings {
1790 add(&finding.path);
1791 }
1792 for hotspot in &report.hotspots {
1793 add(&hotspot.path);
1794 }
1795 if let Some(gaps) = &report.coverage_gaps {
1796 for finding in &gaps.files {
1797 add(&finding.file.path);
1798 }
1799 for finding in &gaps.exports {
1800 add(&finding.export.path);
1801 }
1802 }
1803 files.len()
1804}
1805
1806fn health_files(
1807 report: &HealthReport,
1808 root: &Path,
1809 by_path: &FxHashMap<String, u32>,
1810 hotspots: &FxHashMap<String, &fallow_output::HotspotFinding>,
1811) -> Vec<VizHealthFile> {
1812 report
1813 .file_scores
1814 .iter()
1815 .take(MAX_HEALTH_FILES)
1816 .filter_map(|score| {
1817 let path = relative_path(&score.path, root);
1818 let file = by_path.get(&path).copied()?;
1819 let hotspot = hotspots.get(&path).copied();
1820 Some(VizHealthFile {
1821 file,
1822 path,
1823 maintainability_index: score.maintainability_index,
1824 crap_max: score.crap_max,
1825 complexity_density: score.complexity_density,
1826 fan_in: score.fan_in,
1827 fan_out: score.fan_out,
1828 hotspot_score: hotspot.map(|entry| entry.score),
1829 commits: hotspot.map(|entry| entry.commits),
1830 ownership: hotspot
1831 .and_then(|entry| serialize_relative(entry.ownership.as_ref(), root)),
1832 })
1833 })
1834 .collect()
1835}
1836
1837fn health_findings(
1838 report: &HealthReport,
1839 root: &Path,
1840 resolve: &dyn Fn(&Path) -> Option<u32>,
1841) -> (Vec<VizFinding>, usize) {
1842 let coverage_count = report
1843 .coverage_gaps
1844 .as_ref()
1845 .map_or(0, |gaps| gaps.files.len() + gaps.exports.len());
1846 let total = report.findings.len() + report.hotspots.len() + coverage_count;
1847 let mut findings = Vec::with_capacity(total.min(MAX_ANALYSIS_FINDINGS));
1848 append_findings(
1849 &mut findings,
1850 &report.findings,
1851 "health-finding",
1852 "Health threshold exceeded",
1853 root,
1854 resolve,
1855 );
1856 append_findings(
1857 &mut findings,
1858 &report.hotspots,
1859 "git-hotspot",
1860 "Complex and frequently changed file",
1861 root,
1862 resolve,
1863 );
1864 if let Some(gaps) = &report.coverage_gaps {
1865 append_findings(
1866 &mut findings,
1867 &gaps.files,
1868 "coverage-gap-file",
1869 "File has no test path",
1870 root,
1871 resolve,
1872 );
1873 append_findings(
1874 &mut findings,
1875 &gaps.exports,
1876 "coverage-gap-export",
1877 "Export has no test path",
1878 root,
1879 resolve,
1880 );
1881 }
1882 (findings, total)
1883}
1884
1885fn append_findings<T: Serialize>(
1886 out: &mut Vec<VizFinding>,
1887 values: &[T],
1888 kind: &str,
1889 title: &str,
1890 root: &Path,
1891 resolve: &dyn Fn(&Path) -> Option<u32>,
1892) {
1893 let remaining = MAX_ANALYSIS_FINDINGS.saturating_sub(out.len());
1894 out.extend(values.iter().take(remaining).filter_map(|value| {
1895 serde_json::to_value(value)
1896 .ok()
1897 .map(|detail| finding_from_value(kind, title, detail, root, resolve))
1898 }));
1899}
1900
1901fn health_capabilities(report: &HealthReport) -> VizHealthCapabilities {
1902 let file_count = report.file_scores.len();
1903 let coverage = report.coverage_gaps.as_ref().map_or_else(
1904 || VizAvailability::unavailable("gaps", "Coverage gap analysis did not produce a result"),
1905 |gaps| VizAvailability::complete(gaps.files.len() + gaps.exports.len(), "gaps", None),
1906 );
1907 let runtime = report.runtime_coverage.as_ref().map_or_else(
1908 || VizAvailability::unavailable("observations", NO_RUNTIME_COVERAGE_REASON),
1909 |runtime| {
1910 VizAvailability::complete(runtime.summary.functions_tracked, "observations", None)
1911 },
1912 );
1913 VizHealthCapabilities {
1914 complexity: VizAvailability::complete(report.findings.len(), "findings", None),
1915 maintainability: VizAvailability::complete(file_count, "files", None),
1916 crap: VizAvailability::complete(file_count, "files", None),
1917 coverage,
1918 runtime,
1919 churn: VizAvailability::disabled("files", "Git history is not loaded by Viz"),
1920 hotspots: VizAvailability::disabled("files", "Git history is not loaded by Viz"),
1921 ownership: VizAvailability::disabled("files", "Git history is not loaded by Viz"),
1922 }
1923}
1924
1925fn unavailable_health_capabilities(reason: &str) -> VizHealthCapabilities {
1926 VizHealthCapabilities {
1927 complexity: VizAvailability::unavailable("findings", reason),
1928 maintainability: VizAvailability::unavailable("files", reason),
1929 crap: VizAvailability::unavailable("files", reason),
1930 coverage: VizAvailability::unavailable("gaps", reason),
1931 runtime: VizAvailability::unavailable("observations", NO_RUNTIME_COVERAGE_REASON),
1932 churn: VizAvailability::unavailable("files", reason),
1933 hotspots: VizAvailability::unavailable("files", reason),
1934 ownership: VizAvailability::unavailable("files", reason),
1935 }
1936}
1937
1938fn apply_framework_data(data: &mut VizData, report: &HealthReport) {
1939 let count = data.frameworks.availability.count;
1940 let Some(diagnostics) = &report.framework_health else {
1941 if count == 0 {
1942 data.frameworks.detector_availability = VizAvailability {
1943 state: VizAvailabilityState::NotApplicable,
1944 count: 0,
1945 unit: "detectors",
1946 reason: Some("No supported framework was detected".to_string()),
1947 truncated: None,
1948 };
1949 data.frameworks.availability.state = VizAvailabilityState::NotApplicable;
1950 data.frameworks.availability.reason =
1951 Some("No supported framework was detected".to_string());
1952 } else {
1953 data.frameworks.detector_availability = VizAvailability::unavailable(
1954 "detectors",
1955 "Framework detector metadata was not produced",
1956 );
1957 }
1958 return;
1959 };
1960 data.frameworks
1961 .detected_frameworks
1962 .clone_from(&diagnostics.detected_frameworks);
1963 data.frameworks.detectors = diagnostics
1964 .detectors
1965 .iter()
1966 .map(|detector| VizFrameworkDetector {
1967 id: detector.id.clone(),
1968 framework: detector.framework.clone(),
1969 status: serialized_label(&detector.status),
1970 reason: detector.reason.clone(),
1971 })
1972 .collect();
1973 data.frameworks.detector_availability =
1974 VizAvailability::complete(diagnostics.detectors.len(), "detectors", None);
1975 if diagnostics.detected_frameworks.is_empty() && count == 0 {
1976 data.frameworks.availability.state = VizAvailabilityState::NotApplicable;
1977 data.frameworks.availability.reason =
1978 Some("No supported framework was detected".to_string());
1979 data.frameworks.detector_availability.state = VizAvailabilityState::NotApplicable;
1980 data.frameworks.detector_availability.reason =
1981 Some("No supported framework was detected".to_string());
1982 }
1983}
1984
1985fn apply_styling_data(
1986 data: &mut VizData,
1987 report: &HealthReport,
1988 root: &Path,
1989 by_path: &FxHashMap<String, u32>,
1990) {
1991 let resolve = |path: &Path| by_path.get(&relative_path(path, root)).copied();
1992 let count = report.styling_findings.len();
1993 let mut findings = Vec::with_capacity(count.min(MAX_ANALYSIS_FINDINGS));
1994 append_findings(
1995 &mut findings,
1996 &report.styling_findings,
1997 "styling-finding",
1998 "Styling health finding",
1999 root,
2000 &resolve,
2001 );
2002 let truncated = count.checked_sub(findings.len()).filter(|value| *value > 0);
2003 let styling = report.styling_health.as_ref();
2004 data.styling = VizStylingData {
2005 availability: report.css_analytics.as_ref().map_or_else(
2006 || VizAvailability {
2007 state: VizAvailabilityState::NotApplicable,
2008 count: 0,
2009 unit: "findings",
2010 reason: Some("No supported CSS or component styling was detected".to_string()),
2011 truncated: None,
2012 },
2013 |_| VizAvailability::complete(count, "findings", truncated),
2014 ),
2015 findings_truncated: truncated,
2016 findings,
2017 score: styling.map(|health| health.score),
2018 grade: styling.map(|health| health.grade.to_string()),
2019 confidence: styling.map(|health| serialized_label(&health.confidence)),
2020 summary: report
2021 .css_analytics
2022 .as_ref()
2023 .and_then(|analytics| serde_json::to_value(&analytics.summary).ok()),
2024 };
2025}
2026
2027struct FilePropertyMaps<'a> {
2029 zone_by_file: &'a FxHashMap<u32, u16>,
2030 clone_groups_by_file: &'a FxHashMap<u32, Vec<u32>>,
2031 dup_lines_by_file: &'a FxHashMap<u32, u32>,
2032 cycles: &'a [Vec<u32>],
2033}
2034
2035fn display_root(root: &Path) -> String {
2036 root.file_name().map_or_else(
2037 || root.to_string_lossy().into_owned(),
2038 |n| n.to_string_lossy().into_owned(),
2039 )
2040}
2041
2042fn relative_path(path: &Path, root: &Path) -> String {
2043 if let Ok(relative) = path.strip_prefix(root) {
2044 return relative.to_string_lossy().replace('\\', "/");
2045 }
2046 if path.has_root() {
2051 let name = path
2052 .file_name()
2053 .map_or_else(|| "path".into(), |name| name.to_string_lossy());
2054 return format!("<external>/{name}");
2055 }
2056 path.to_string_lossy().replace('\\', "/")
2057}
2058
2059fn build_workspaces(workspaces: &[WorkspaceInfo], root: &Path) -> Vec<VizWorkspace> {
2060 workspaces
2061 .iter()
2062 .map(|ws| VizWorkspace {
2063 name: ws.name.clone(),
2064 root: relative_path(&ws.root, root),
2065 })
2066 .collect()
2067}
2068
2069fn workspace_index_for(path: &Path, workspaces: &[WorkspaceInfo]) -> Option<u16> {
2070 let mut best: Option<(usize, usize)> = None;
2071 for (i, ws) in workspaces.iter().enumerate() {
2072 if path.starts_with(&ws.root) {
2073 let depth = ws.root.components().count();
2074 if best.is_none_or(|(_, d)| depth > d) {
2075 best = Some((i, depth));
2076 }
2077 }
2078 }
2079 best.map(|(i, _)| clamp_u16(i))
2080}
2081
2082fn classify_zones(
2083 input: &VizBuildInput<'_>,
2084 index: &FileIndex<'_>,
2085) -> (Vec<VizZone>, FxHashMap<u32, u16>) {
2086 let boundaries = &input.config.boundaries;
2087 let mut zones: Vec<VizZone> = boundaries
2088 .zones
2089 .iter()
2090 .map(|z| VizZone {
2091 name: z.name.clone(),
2092 files: 0,
2093 })
2094 .collect();
2095 let name_to_index: FxHashMap<&str, u16> = boundaries
2096 .zones
2097 .iter()
2098 .enumerate()
2099 .map(|(i, z)| (z.name.as_str(), clamp_u16(i)))
2100 .collect();
2101
2102 let mut zone_by_file = FxHashMap::default();
2103 if zones.is_empty() {
2104 return (zones, zone_by_file);
2105 }
2106
2107 for (i, file) in index.ordered.iter().enumerate() {
2108 let rel = relative_path(&file.path, &input.config.root);
2109 if let Some(zone_name) = boundaries.classify_zone(&rel)
2110 && let Some(&zone_idx) = name_to_index.get(zone_name)
2111 {
2112 zone_by_file.insert(clamp_u32(i), zone_idx);
2113 zones[zone_idx as usize].files += 1;
2114 }
2115 }
2116
2117 (zones, zone_by_file)
2118}
2119
2120type CloneMaps = (
2123 Vec<VizCloneGroup>,
2124 FxHashMap<u32, Vec<u32>>,
2125 FxHashMap<u32, u32>,
2126 u32,
2127);
2128
2129fn build_clones(
2130 duplication: &DuplicationReport,
2131 index: &FileIndex<'_>,
2132 max_groups: usize,
2133) -> CloneMaps {
2134 let mut clones = Vec::new();
2135 let mut groups_by_file: FxHashMap<u32, Vec<u32>> = FxHashMap::default();
2136 let mut dup_lines_by_file: FxHashMap<u32, u32> = FxHashMap::default();
2137 let mut truncated: usize = 0;
2138
2139 for group in &duplication.clone_groups {
2140 let instances: Vec<VizCloneInstance> = group
2141 .instances
2142 .iter()
2143 .filter_map(|inst| {
2144 index
2145 .index_of_path(&inst.file)
2146 .map(|file| VizCloneInstance {
2147 file,
2148 start_line: clamp_u32(inst.start_line),
2149 end_line: clamp_u32(inst.end_line),
2150 })
2151 })
2152 .collect();
2153 if instances.len() < 2 {
2154 continue;
2155 }
2156 if clones.len() >= max_groups {
2157 truncated += 1;
2158 continue;
2159 }
2160
2161 let group_idx = clamp_u32(clones.len());
2162 for inst in &instances {
2163 let entry = groups_by_file.entry(inst.file).or_default();
2164 if entry.last() != Some(&group_idx) {
2165 entry.push(group_idx);
2166 }
2167 *dup_lines_by_file.entry(inst.file).or_default() +=
2168 inst.end_line.saturating_sub(inst.start_line) + 1;
2169 }
2170
2171 let (preview, highlight_start, highlight_lines) = group
2172 .instances
2173 .first()
2174 .map(build_clone_preview)
2175 .unwrap_or_default();
2176
2177 clones.push(VizCloneGroup {
2178 lines: group.line_count,
2179 tokens: group.token_count,
2180 instances,
2181 preview,
2182 highlight_start,
2183 highlight_lines,
2184 });
2185 }
2186
2187 (
2188 clones,
2189 groups_by_file,
2190 dup_lines_by_file,
2191 clamp_u32(truncated),
2192 )
2193}
2194
2195fn truncate_preview(fragment: &str) -> String {
2196 let mut out = String::new();
2197 for (i, line) in fragment.lines().enumerate() {
2198 if i >= CLONE_PREVIEW_MAX_LINES || out.len() + line.len() > CLONE_PREVIEW_MAX_BYTES {
2199 out.push('\u{2026}');
2200 break;
2201 }
2202 if i > 0 {
2203 out.push('\n');
2204 }
2205 out.push_str(line);
2206 }
2207 out
2208}
2209
2210fn build_clone_preview(inst: &CloneInstance) -> (String, u32, u32) {
2220 let Ok(source) = std::fs::read_to_string(&inst.file) else {
2221 return fragment_fallback(&inst.fragment);
2222 };
2223 let lines: Vec<&str> = source.lines().collect();
2224 let total = lines.len();
2225 if total == 0 || inst.start_line == 0 || inst.start_line > total {
2226 return fragment_fallback(&inst.fragment);
2227 }
2228
2229 let block_start = inst.start_line - 1;
2232 let block_end = inst.end_line.min(total).max(inst.start_line);
2233 let mut block_lines = block_end - block_start;
2234 let mut before = block_start.min(CLONE_PREVIEW_CONTEXT);
2235 let mut after = (total - block_end).min(CLONE_PREVIEW_CONTEXT);
2236
2237 if before + block_lines + after > CLONE_PREVIEW_MAX_LINES {
2242 if before + block_lines >= CLONE_PREVIEW_MAX_LINES {
2243 after = 0;
2244 block_lines = CLONE_PREVIEW_MAX_LINES.saturating_sub(before).max(1);
2245 } else {
2246 trim_context(
2247 &mut before,
2248 &mut after,
2249 CLONE_PREVIEW_MAX_LINES - block_lines,
2250 );
2251 }
2252 }
2253
2254 enforce_byte_cap(
2255 &lines,
2256 block_start,
2257 &mut before,
2258 &mut after,
2259 &mut block_lines,
2260 );
2261
2262 let win_start = block_start - before;
2263 let win_end = win_start + before + block_lines + after;
2264 let preview = lines[win_start..win_end].join("\n");
2265 (preview, clamp_u32(before), clamp_u32(block_lines))
2266}
2267
2268fn fragment_fallback(fragment: &str) -> (String, u32, u32) {
2271 let preview = truncate_preview(fragment);
2272 let highlight_lines = if preview.is_empty() {
2273 0
2274 } else {
2275 preview.lines().count()
2276 };
2277 (preview, 0, clamp_u32(highlight_lines))
2278}
2279
2280fn trim_context(before: &mut usize, after: &mut usize, budget: usize) {
2284 while *before + *after > budget {
2285 if *before >= *after {
2286 *before -= 1;
2287 } else {
2288 *after -= 1;
2289 }
2290 }
2291}
2292
2293fn enforce_byte_cap(
2298 lines: &[&str],
2299 block_start: usize,
2300 before: &mut usize,
2301 after: &mut usize,
2302 block_lines: &mut usize,
2303) {
2304 let window_bytes = |before: usize, after: usize, block_lines: usize| -> usize {
2305 let start = block_start - before;
2306 let end = start + before + block_lines + after;
2307 let separators = (end - start).saturating_sub(1);
2308 lines[start..end].iter().map(|l| l.len()).sum::<usize>() + separators
2309 };
2310 while window_bytes(*before, *after, *block_lines) > CLONE_PREVIEW_MAX_BYTES {
2311 if *before + *after > 0 {
2312 if *before >= *after {
2313 *before -= 1;
2314 } else {
2315 *after -= 1;
2316 }
2317 } else if *block_lines > 1 {
2318 *block_lines -= 1;
2319 } else {
2320 break;
2321 }
2322 }
2323}
2324
2325fn build_cycles(results: &AnalysisResults, index: &FileIndex<'_>) -> Vec<Vec<u32>> {
2326 results
2327 .circular_dependencies
2328 .iter()
2329 .filter_map(|cd| {
2330 let ids: Vec<u32> = cd
2331 .cycle
2332 .files
2333 .iter()
2334 .filter_map(|p| index.index_of_path(p))
2335 .collect();
2336 (ids.len() == cd.cycle.files.len()).then_some(ids)
2337 })
2338 .collect()
2339}
2340
2341fn build_violations(
2342 results: &AnalysisResults,
2343 zones: &[VizZone],
2344 index: &FileIndex<'_>,
2345) -> Vec<VizViolation> {
2346 let name_to_index: FxHashMap<&str, u16> = zones
2347 .iter()
2348 .enumerate()
2349 .map(|(i, z)| (z.name.as_str(), clamp_u16(i)))
2350 .collect();
2351
2352 results
2353 .boundary_violations
2354 .iter()
2355 .filter_map(|finding| {
2356 let v = &finding.violation;
2357 let from = index.index_of_path(&v.from_path)?;
2358 let to = index.index_of_path(&v.to_path)?;
2359 let from_zone = *name_to_index.get(v.from_zone.as_str())?;
2360 let to_zone = *name_to_index.get(v.to_zone.as_str())?;
2361 Some(VizViolation {
2362 from,
2363 to,
2364 from_zone,
2365 to_zone,
2366 line: v.line,
2367 specifier: v.import_specifier.clone(),
2368 })
2369 })
2370 .collect()
2371}
2372
2373fn build_edges(graph: &RetainedModuleGraph, index: &FileIndex<'_>) -> Vec<[u32; 3]> {
2374 let graph = graph.as_graph();
2375 let mut edges = Vec::with_capacity(graph.edge_count());
2376 for node in &graph.modules {
2377 let Some(source) = index.index_of_file_id(node.file_id.0) else {
2378 continue;
2379 };
2380 for (target_id, symbols) in graph.outgoing_symbol_edges(node.file_id) {
2381 let Some(target) = index.index_of_file_id(target_id.0) else {
2382 continue;
2383 };
2384 let all_type_only = !symbols.is_empty() && symbols.iter().all(|s| s.is_type_only);
2385 let flags = if all_type_only {
2386 EDGE_FLAG_TYPE_ONLY
2387 } else if symbols.iter().any(|s| s.is_eager_value()) {
2388 0
2389 } else {
2390 EDGE_FLAG_DYNAMIC
2391 };
2392 edges.push([source, target, flags]);
2393 }
2394 }
2395 edges
2396}
2397
2398#[derive(Default)]
2400struct ComplexityRollup {
2401 fn_count: u16,
2402 max_cyclomatic: u16,
2403 max_cognitive: u16,
2404 react_hooks: u16,
2405 jsx_depth: u16,
2406 functions: Vec<VizFunction>,
2407}
2408
2409fn rollup_complexity(functions: &[FunctionComplexity]) -> ComplexityRollup {
2410 let mut rollup = ComplexityRollup {
2411 fn_count: clamp_u16(functions.len()),
2412 ..ComplexityRollup::default()
2413 };
2414 for f in functions {
2415 rollup.max_cyclomatic = rollup.max_cyclomatic.max(f.cyclomatic);
2416 rollup.max_cognitive = rollup.max_cognitive.max(f.cognitive);
2417 rollup.react_hooks = rollup.react_hooks.saturating_add(f.react_hook_count);
2418 rollup.jsx_depth = rollup.jsx_depth.max(f.react_jsx_max_depth);
2419 }
2420
2421 let mut named: Vec<&FunctionComplexity> = functions
2426 .iter()
2427 .filter(|f| !f.name.starts_with('<'))
2428 .collect();
2429 named.sort_by(|a, b| {
2430 b.cyclomatic
2431 .cmp(&a.cyclomatic)
2432 .then(b.cognitive.cmp(&a.cognitive))
2433 });
2434 rollup.functions = named
2435 .into_iter()
2436 .map(|f| VizFunction {
2437 name: f.name.clone(),
2438 line: f.line,
2439 cyclomatic: f.cyclomatic,
2440 cognitive: f.cognitive,
2441 lines: f.line_count,
2442 hooks: f.react_hook_count,
2443 jsx_depth: f.react_jsx_max_depth,
2444 props: f.react_prop_count,
2445 })
2446 .collect();
2447 rollup
2448}
2449
2450fn build_files(
2451 input: &VizBuildInput<'_>,
2452 index: &FileIndex<'_>,
2453 maps: &FilePropertyMaps<'_>,
2454) -> Vec<VizFile> {
2455 let graph = input.graph.as_graph();
2456 let unused_file_paths: rustc_hash::FxHashSet<&Path> = input
2457 .results
2458 .unused_files
2459 .iter()
2460 .map(|f| f.file.path.as_path())
2461 .collect();
2462
2463 let mut unused_exports_by_file: FxHashMap<&Path, Vec<String>> = FxHashMap::default();
2464 for export in &input.results.unused_exports {
2465 unused_exports_by_file
2466 .entry(export.export.path.as_path())
2467 .or_default()
2468 .push(export.export.export_name.clone());
2469 }
2470 for export in &input.results.unused_types {
2471 unused_exports_by_file
2472 .entry(export.export.path.as_path())
2473 .or_default()
2474 .push(export.export.export_name.clone());
2475 }
2476
2477 let mut complexity_by_file_id: FxHashMap<u32, ComplexityRollup> = FxHashMap::default();
2478 if let Some(modules) = input.modules {
2479 for module in modules {
2480 if !module.complexity.is_empty() {
2481 complexity_by_file_id
2482 .insert(module.file_id.0, rollup_complexity(&module.complexity));
2483 }
2484 }
2485 }
2486
2487 let mut in_cycle = vec![false; index.ordered.len()];
2488 for cycle in maps.cycles {
2489 for &idx in cycle {
2490 if let Some(slot) = in_cycle.get_mut(idx as usize) {
2491 *slot = true;
2492 }
2493 }
2494 }
2495
2496 index
2497 .ordered
2498 .iter()
2499 .enumerate()
2500 .map(|(i, file)| {
2501 let viz_idx = clamp_u32(i);
2502 let node_idx = file.id.0 as usize;
2503 let node = graph.modules.get(node_idx);
2504 let is_entry = node.is_some_and(|n| n.is_entry_point());
2505 let export_count = node.map_or(0, |n| clamp_u16(n.exports.len()));
2506 let import_count = clamp_u16(graph.edges_for(file.id).len());
2507 let importer_count = clamp_u16(input.graph.direct_importer_count(file.id));
2508
2509 let unused_export_names = unused_exports_by_file
2510 .remove(file.path.as_path())
2511 .unwrap_or_default();
2512 let unused_export_count = clamp_u16(unused_export_names.len());
2513
2514 let status = if unused_file_paths.contains(file.path.as_path()) {
2515 VizFileStatus::Unused
2516 } else if unused_export_count > 0 {
2517 VizFileStatus::HasUnusedExports
2518 } else if is_entry {
2519 VizFileStatus::EntryPoint
2520 } else {
2521 VizFileStatus::Clean
2522 };
2523
2524 let complexity = complexity_by_file_id.remove(&file.id.0).unwrap_or_default();
2525
2526 VizFile {
2527 path: relative_path(&file.path, &input.config.root),
2528 size: file.size_bytes,
2529 status,
2530 export_count,
2531 unused_export_count,
2532 is_entry,
2533 importer_count,
2534 import_count,
2535 workspace: workspace_index_for(&file.path, input.workspaces),
2536 zone: maps.zone_by_file.get(&viz_idx).copied(),
2537 unused_exports: unused_export_names,
2538 fn_count: complexity.fn_count,
2539 max_cyclomatic: complexity.max_cyclomatic,
2540 max_cognitive: complexity.max_cognitive,
2541 react_hooks: complexity.react_hooks,
2542 jsx_depth: complexity.jsx_depth,
2543 functions: complexity.functions,
2544 dup_lines: maps.dup_lines_by_file.get(&viz_idx).copied().unwrap_or(0),
2545 clone_groups: maps
2546 .clone_groups_by_file
2547 .get(&viz_idx)
2548 .cloned()
2549 .unwrap_or_default(),
2550 in_cycle: in_cycle[i],
2551 }
2552 })
2553 .collect()
2554}
2555
2556fn build_summary(
2557 input: &VizBuildInput<'_>,
2558 files: &[VizFile],
2559 clones: &[VizCloneGroup],
2560 cycles: &[Vec<u32>],
2561 violations: &[VizViolation],
2562 clone_groups_truncated: u32,
2563) -> VizSummary {
2564 let results = input.results;
2565 VizSummary {
2566 total_files: files.len(),
2567 total_size: files.iter().map(|f| f.size).sum(),
2568 total_edges: input.graph.edge_count(),
2569 unused_files: results.unused_files.len(),
2570 unused_exports: results.unused_exports.len() + results.unused_types.len(),
2571 unused_types: results.unused_types.len(),
2572 unused_deps: results.unused_dependencies.len()
2573 + results.unused_dev_dependencies.len()
2574 + results.unused_optional_dependencies.len(),
2575 unresolved_imports: results.unresolved_imports.len(),
2576 circular_deps: cycles.len(),
2577 clone_groups: clones.len(),
2578 duplicated_lines: clones.iter().map(|c| c.lines * c.instances.len()).sum(),
2579 boundary_violations: violations.len(),
2580 hotspot_files: files
2581 .iter()
2582 .filter(|f| f.max_cyclomatic >= HOTSPOT_CYCLOMATIC_FLOOR)
2583 .count(),
2584 clone_groups_truncated: (clone_groups_truncated > 0).then_some(clone_groups_truncated),
2585 }
2586}
2587
2588fn clamp_u16(value: usize) -> u16 {
2589 u16::try_from(value).unwrap_or(u16::MAX)
2590}
2591
2592fn clamp_u32(value: usize) -> u32 {
2593 u32::try_from(value).unwrap_or(u32::MAX)
2594}
2595
2596#[cfg(test)]
2597mod tests {
2598 use std::path::PathBuf;
2599
2600 use fallow_config::{BoundaryConfig, BoundaryZone, FallowConfig};
2601 use fallow_graph::graph::ModuleGraph;
2602 use fallow_graph::resolve::{ResolveResult, ResolvedImport, ResolvedModule};
2603 use fallow_types::duplicates::{CloneGroup, CloneInstance};
2604 use fallow_types::extract::{ImportInfo, ImportedName};
2605 use fallow_types::output_dead_code::{BoundaryViolationFinding, CircularDependencyFinding};
2606 use fallow_types::output_format::OutputFormat;
2607 use fallow_types::results::{BoundaryViolation, CircularDependency};
2608
2609 use super::*;
2610 use crate::discover::{EntryPoint, EntryPointSource, FileId};
2611
2612 struct Fixture {
2614 config: ResolvedConfig,
2615 files: Vec<DiscoveredFile>,
2616 results: AnalysisResults,
2617 graph: crate::module_graph::RetainedModuleGraph,
2618 duplication: DuplicationReport,
2619 workspaces: Vec<WorkspaceInfo>,
2620 }
2621
2622 impl Fixture {
2623 fn input(&self) -> VizBuildInput<'_> {
2624 VizBuildInput {
2625 results: &self.results,
2626 graph: &self.graph,
2627 modules: None,
2628 files: &self.files,
2629 duplication: &self.duplication,
2630 workspaces: &self.workspaces,
2631 config: &self.config,
2632 feature_flags: &[],
2633 include_analysis_details: true,
2634 }
2635 }
2636 }
2637
2638 fn project_root() -> PathBuf {
2639 PathBuf::from("/viz-project")
2640 }
2641
2642 fn discovered(id: u32, path: PathBuf, size_bytes: u64) -> DiscoveredFile {
2643 DiscoveredFile {
2644 id: FileId(id),
2645 path,
2646 size_bytes,
2647 }
2648 }
2649
2650 fn import_of(target: FileId, specifier: &str) -> ResolvedImport {
2651 ResolvedImport {
2652 info: ImportInfo {
2653 source: specifier.to_owned(),
2654 imported_name: ImportedName::Named("value".to_owned()),
2655 local_name: "value".to_owned(),
2656 is_type_only: false,
2657 is_type_only_star: false,
2658 from_style: false,
2659 span: oxc_span::Span::new(0, 0),
2660 source_span: oxc_span::Span::new(0, 0),
2661 },
2662 target: ResolveResult::InternalModule(target),
2663 }
2664 }
2665
2666 fn zone(name: &str, pattern: &str) -> BoundaryZone {
2667 BoundaryZone {
2668 name: name.to_owned(),
2669 patterns: vec![pattern.to_owned()],
2670 auto_discover: Vec::new(),
2671 root: None,
2672 }
2673 }
2674
2675 fn resolved_config(root: &Path) -> ResolvedConfig {
2676 let config = FallowConfig {
2677 boundaries: BoundaryConfig {
2678 zones: vec![zone("app", "src/**"), zone("shared", "lib/**")],
2679 ..BoundaryConfig::default()
2680 },
2681 ..FallowConfig::default()
2682 };
2683 config.resolve(root.to_path_buf(), OutputFormat::Json, 1, false, true, None)
2684 }
2685
2686 fn cycle_finding(files: Vec<PathBuf>) -> CircularDependencyFinding {
2687 let length = files.len();
2688 CircularDependencyFinding::with_actions(CircularDependency {
2689 files,
2690 length,
2691 line: 1,
2692 col: 0,
2693 edges: Vec::new(),
2694 is_cross_package: false,
2695 })
2696 }
2697
2698 fn violation_finding(from_path: PathBuf, to_path: PathBuf) -> BoundaryViolationFinding {
2699 BoundaryViolationFinding::with_actions(BoundaryViolation {
2700 from_path,
2701 to_path,
2702 from_zone: "app".to_owned(),
2703 to_zone: "shared".to_owned(),
2704 import_specifier: "../lib/c".to_owned(),
2705 line: 2,
2706 col: 0,
2707 })
2708 }
2709
2710 fn clone_instance(file: PathBuf, start_line: usize, end_line: usize) -> CloneInstance {
2711 CloneInstance {
2712 file,
2713 start_line,
2714 end_line,
2715 start_col: 0,
2716 end_col: 0,
2717 fragment: "const shared = 1;\nconst repeated = 2;\nconst block = 3;".to_owned(),
2718 }
2719 }
2720
2721 fn clone_group(instances: Vec<CloneInstance>) -> CloneGroup {
2722 CloneGroup {
2723 instances,
2724 token_count: 12,
2725 line_count: 3,
2726 similarity: None,
2727 }
2728 }
2729
2730 fn fixture_with(extra_graph_file: bool) -> Fixture {
2735 let root = project_root();
2736 let a = root.join("src/a.ts");
2737 let b = root.join("src/b.ts");
2738 let c = root.join("lib/c.ts");
2739 let missing = root.join("src/missing.ts");
2740
2741 let files = vec![
2742 discovered(0, a.clone(), 100),
2743 discovered(1, b.clone(), 50),
2744 discovered(2, c.clone(), 25),
2745 ];
2746
2747 let mut graph_files = files.clone();
2748 let mut imports = vec![import_of(FileId(1), "./b")];
2749 if extra_graph_file {
2750 graph_files.push(discovered(3, root.join("src/d.ts"), 10));
2751 imports.push(import_of(FileId(3), "./d"));
2752 }
2753 let resolved = vec![ResolvedModule {
2754 file_id: FileId(0),
2755 path: a.clone(),
2756 resolved_imports: imports,
2757 ..ResolvedModule::default()
2758 }];
2759 let entry_points = vec![EntryPoint {
2760 path: a.clone(),
2761 source: EntryPointSource::PackageJsonMain,
2762 }];
2763 let graph = crate::module_graph::RetainedModuleGraph::from(ModuleGraph::build(
2764 &resolved,
2765 &entry_points,
2766 &graph_files,
2767 ));
2768
2769 let results = AnalysisResults {
2770 circular_dependencies: vec![
2771 cycle_finding(vec![a.clone(), b]),
2772 cycle_finding(vec![a.clone(), missing.clone()]),
2773 ],
2774 boundary_violations: vec![
2775 violation_finding(a.clone(), c.clone()),
2776 violation_finding(a.clone(), missing),
2777 ],
2778 ..AnalysisResults::default()
2779 };
2780
2781 let duplication = DuplicationReport {
2782 clone_groups: vec![
2783 clone_group(vec![
2784 clone_instance(a.clone(), 1, 3),
2785 clone_instance(c, 10, 12),
2786 ]),
2787 clone_group(vec![
2788 clone_instance(a.clone(), 20, 22),
2789 clone_instance(root.join("outside.ts"), 1, 3),
2790 ]),
2791 clone_group(vec![
2792 clone_instance(a.clone(), 30, 32),
2793 clone_instance(a, 40, 42),
2794 ]),
2795 ],
2796 ..DuplicationReport::default()
2797 };
2798
2799 let workspaces = vec![WorkspaceInfo {
2800 root: root.join("lib"),
2801 name: "shared-lib".to_owned(),
2802 is_internal_dependency: false,
2803 }];
2804
2805 Fixture {
2806 config: resolved_config(&root),
2807 files,
2808 results,
2809 graph,
2810 duplication,
2811 workspaces,
2812 }
2813 }
2814
2815 fn fixture() -> Fixture {
2816 fixture_with(false)
2817 }
2818
2819 #[test]
2820 fn files_and_edges_use_stable_indices() {
2821 let fx = fixture();
2822 let data = build_viz_data(&fx.input());
2823
2824 let paths: Vec<&str> = data.files.iter().map(|f| f.path.as_str()).collect();
2825 assert_eq!(paths, ["src/a.ts", "src/b.ts", "lib/c.ts"]);
2826 assert_eq!(data.edges, vec![[0, 1, 0]]);
2827 assert!(data.files[0].is_entry);
2828 assert!(matches!(data.files[0].status, VizFileStatus::EntryPoint));
2829 assert!(matches!(data.files[1].status, VizFileStatus::Clean));
2830 assert_eq!(data.files[0].import_count, 1);
2831 assert_eq!(data.files[1].importer_count, 1);
2832 assert_eq!(data.files[0].workspace, None);
2833 assert_eq!(data.files[2].workspace, Some(0));
2834 assert_eq!(data.workspaces.len(), 1);
2835 assert_eq!(data.workspaces[0].root, "lib");
2836 }
2837
2838 #[test]
2839 fn a_dynamic_import_edge_carries_the_dynamic_flag() {
2840 let root = project_root();
2841 let a = root.join("src/a.ts");
2842 let files = vec![
2843 discovered(0, a.clone(), 100),
2844 discovered(1, root.join("src/b.ts"), 50),
2845 discovered(2, root.join("src/c.ts"), 25),
2846 ];
2847 let resolved = vec![ResolvedModule {
2848 file_id: FileId(0),
2849 path: a.clone(),
2850 resolved_imports: vec![import_of(FileId(1), "./b")],
2851 resolved_dynamic_imports: vec![import_of(FileId(2), "./c")],
2852 ..ResolvedModule::default()
2853 }];
2854 let entry_points = vec![EntryPoint {
2855 path: a,
2856 source: EntryPointSource::PackageJsonMain,
2857 }];
2858 let fx = Fixture {
2859 graph: crate::module_graph::RetainedModuleGraph::from(ModuleGraph::build(
2860 &resolved,
2861 &entry_points,
2862 &files,
2863 )),
2864 files,
2865 ..fixture()
2866 };
2867 let data = build_viz_data(&fx.input());
2868
2869 assert_eq!(data.edges, vec![[0, 1, 0], [0, 2, EDGE_FLAG_DYNAMIC]]);
2870 }
2871
2872 #[test]
2873 fn edges_to_files_missing_from_input_are_dropped() {
2874 let fx = fixture_with(true);
2875 let data = build_viz_data(&fx.input());
2876
2877 assert_eq!(fx.graph.edge_count(), 2);
2881 assert_eq!(data.edges, vec![[0, 1, 0]]);
2882 }
2883
2884 #[test]
2885 fn clone_groups_drop_unresolvable_and_dedup_per_file() {
2886 let fx = fixture();
2887 let data = build_viz_data(&fx.input());
2888
2889 assert_eq!(data.clones.len(), 2);
2892 assert_eq!(data.clones[0].instances.len(), 2);
2893 assert_eq!(data.clones[0].instances[0].file, 0);
2894 assert_eq!(data.clones[0].instances[1].file, 2);
2895 assert_eq!(data.clones[0].lines, 3);
2896 assert_eq!(data.clones[0].tokens, 12);
2897 assert_eq!(data.files[0].clone_groups, vec![0, 1]);
2899 assert_eq!(data.files[2].clone_groups, vec![0]);
2900 assert_eq!(data.files[0].dup_lines, 9);
2902 assert_eq!(data.files[2].dup_lines, 3);
2903 assert_eq!(data.files[1].dup_lines, 0);
2904 }
2905
2906 #[test]
2907 fn truncate_preview_caps_lines_and_bytes() {
2908 let last_kept = CLONE_PREVIEW_MAX_LINES - 1;
2911 let many_lines = (0..CLONE_PREVIEW_MAX_LINES + 5)
2912 .map(|i| format!("line {i}"))
2913 .collect::<Vec<_>>();
2914 let out = truncate_preview(&many_lines.join("\n"));
2915 assert_eq!(out.matches('\n').count(), CLONE_PREVIEW_MAX_LINES - 1);
2916 assert!(out.contains(&format!("line {last_kept}")));
2917 assert!(!out.contains(&format!("line {CLONE_PREVIEW_MAX_LINES}")));
2918 assert!(out.ends_with('\u{2026}'));
2919
2920 let big = CLONE_PREVIEW_MAX_BYTES * 3 / 4;
2923 let two_long_lines = format!("{}\n{}", "a".repeat(big), "b".repeat(big));
2924 let out = truncate_preview(&two_long_lines);
2925 assert_eq!(out, format!("{}\u{2026}", "a".repeat(big)));
2926
2927 let emoji_line = "\u{1f389}".repeat(CLONE_PREVIEW_MAX_BYTES);
2930 let out = truncate_preview(&emoji_line);
2931 assert_eq!(out, "\u{2026}");
2932 }
2933
2934 #[test]
2935 fn clone_preview_windows_context_around_the_block() {
2936 use std::io::Write as _;
2937
2938 let mut file = tempfile::NamedTempFile::new().expect("temp file");
2940 let body = (1..=20)
2941 .map(|i| format!("line {i}"))
2942 .collect::<Vec<_>>()
2943 .join("\n");
2944 file.write_all(body.as_bytes()).expect("write source");
2945 let inst = clone_instance(file.path().to_path_buf(), 8, 11);
2946
2947 let (preview, highlight_start, highlight_lines) = build_clone_preview(&inst);
2948 let preview_lines: Vec<&str> = preview.lines().collect();
2949
2950 assert_eq!(preview_lines.len(), 12);
2953 assert_eq!(highlight_start, 4);
2954 assert_eq!(highlight_lines, 4);
2955 assert_eq!(preview_lines.first(), Some(&"line 4"));
2956 let start = highlight_start as usize;
2957 let end = start + highlight_lines as usize;
2958 assert_eq!(
2959 &preview_lines[start..end],
2960 ["line 8", "line 9", "line 10", "line 11"],
2961 );
2962 assert_eq!(preview_lines[start - 1], "line 7");
2964 }
2965
2966 #[test]
2967 fn clone_preview_keeps_leading_context_when_the_block_fills_the_cap() {
2968 use std::io::Write as _;
2969
2970 let mut file = tempfile::NamedTempFile::new().expect("temp file");
2974 let body = (1..=200)
2975 .map(|i| format!("line {i}"))
2976 .collect::<Vec<_>>()
2977 .join("\n");
2978 file.write_all(body.as_bytes()).expect("write source");
2979 let inst = clone_instance(file.path().to_path_buf(), 50, 150);
2980
2981 let (preview, highlight_start, highlight_lines) = build_clone_preview(&inst);
2982 let preview_lines: Vec<&str> = preview.lines().collect();
2983
2984 assert_eq!(highlight_start, CLONE_PREVIEW_CONTEXT as u32);
2985 assert!(
2986 highlight_start > 0,
2987 "leading context must survive a huge block"
2988 );
2989 assert_eq!(preview_lines.len(), CLONE_PREVIEW_MAX_LINES);
2990 assert_eq!(
2991 highlight_lines as usize,
2992 CLONE_PREVIEW_MAX_LINES - CLONE_PREVIEW_CONTEXT,
2993 );
2994 assert_eq!(preview_lines[highlight_start as usize - 1], "line 49");
2995 assert_eq!(preview_lines[highlight_start as usize], "line 50");
2996 }
2997
2998 #[test]
2999 fn clone_preview_clamps_context_at_file_start() {
3000 use std::io::Write as _;
3001
3002 let mut file = tempfile::NamedTempFile::new().expect("temp file");
3003 file.write_all(b"line 1\nline 2\nline 3\nline 4\nline 5")
3004 .expect("write source");
3005 let inst = clone_instance(file.path().to_path_buf(), 1, 2);
3008
3009 let (preview, highlight_start, highlight_lines) = build_clone_preview(&inst);
3010 assert_eq!(highlight_start, 0);
3011 assert_eq!(highlight_lines, 2);
3012 assert_eq!(preview, "line 1\nline 2\nline 3\nline 4\nline 5");
3013 }
3014
3015 #[test]
3016 fn clone_preview_falls_back_when_source_is_unreadable() {
3017 let inst = clone_instance(project_root().join("does-not-exist.ts"), 1, 3);
3020 let (preview, highlight_start, highlight_lines) = build_clone_preview(&inst);
3021 assert_eq!(preview, inst.fragment);
3022 assert_eq!(highlight_start, 0);
3023 assert_eq!(highlight_lines as usize, preview.lines().count());
3024 }
3025
3026 #[test]
3027 fn cycles_drop_when_any_member_unresolved() {
3028 let fx = fixture();
3029 let data = build_viz_data(&fx.input());
3030
3031 assert_eq!(data.cycles, vec![vec![0, 1]]);
3034 assert!(data.files[0].in_cycle);
3035 assert!(data.files[1].in_cycle);
3036 assert!(!data.files[2].in_cycle);
3037 assert_eq!(data.summary.circular_deps, data.cycles.len());
3040 }
3041
3042 #[test]
3043 fn violations_resolve_zone_and_file_indices() {
3044 let fx = fixture();
3045 let data = build_viz_data(&fx.input());
3046
3047 assert_eq!(data.zones.len(), 2);
3048 assert_eq!(data.zones[0].name, "app");
3049 assert_eq!(data.zones[0].files, 2);
3050 assert_eq!(data.zones[1].name, "shared");
3051 assert_eq!(data.zones[1].files, 1);
3052 assert_eq!(data.files[0].zone, Some(0));
3053 assert_eq!(data.files[1].zone, Some(0));
3054 assert_eq!(data.files[2].zone, Some(1));
3055
3056 assert_eq!(data.violations.len(), 1);
3058 let v = &data.violations[0];
3059 assert_eq!((v.from, v.to), (0, 2));
3060 assert_eq!((v.from_zone, v.to_zone), (0, 1));
3061 assert_eq!(v.line, 2);
3062 assert_eq!(v.specifier, "../lib/c");
3063 }
3064
3065 #[test]
3066 fn clone_group_cap_counts_truncated_groups() {
3067 let fx = fixture();
3068 let index = FileIndex::new(&fx.files);
3069
3070 let (clones, groups_by_file, _dup_lines, truncated) =
3075 build_clones(&fx.duplication, &index, 1);
3076 assert_eq!(clones.len(), 1);
3077 assert_eq!(truncated, 1);
3078 assert!(
3079 groups_by_file
3080 .values()
3081 .all(|ids| ids.iter().all(|&id| (id as usize) < clones.len()))
3082 );
3083
3084 let data = build_viz_data(&fx.input());
3086 assert_eq!(data.clones.len(), 2);
3087 assert_eq!(data.summary.clone_groups_truncated, None);
3088 }
3089
3090 #[test]
3091 fn summary_flags_clone_truncation_only_when_nonzero() {
3092 let fx = fixture();
3093 let data = build_viz_data(&fx.input());
3094
3095 let summary = build_summary(&fx.input(), &data.files, &data.clones, &[], &[], 3);
3096 assert_eq!(summary.clone_groups_truncated, Some(3));
3097 let summary = build_summary(&fx.input(), &data.files, &data.clones, &[], &[], 0);
3098 assert_eq!(summary.clone_groups_truncated, None);
3099 }
3100
3101 #[test]
3102 fn summary_counts_match_rendered_arrays() {
3103 let fx = fixture();
3104 let data = build_viz_data(&fx.input());
3105 let s = &data.summary;
3106
3107 assert_eq!(s.total_files, data.files.len());
3108 assert_eq!(s.total_size, 175);
3109 assert_eq!(s.total_edges, data.edges.len());
3110 assert_eq!(s.clone_groups, data.clones.len());
3111 assert_eq!(s.duplicated_lines, 12);
3112 assert_eq!(s.hotspot_files, 0);
3113 assert_eq!(s.unused_files, 0);
3114 assert_eq!(s.unused_exports, 0);
3115 assert_eq!(s.circular_deps, data.cycles.len());
3118 assert_eq!(s.circular_deps, 1);
3119 assert_eq!(s.boundary_violations, data.violations.len());
3120 assert_eq!(s.boundary_violations, 1);
3121 }
3122
3123 #[test]
3124 fn payload_keeps_counts_and_availability_explicit() {
3125 let fx = fixture();
3126 let data = build_viz_data(&fx.input());
3127 let value = serde_json::to_value(&data).expect("viz data serializes");
3128
3129 assert_eq!(value["architecture"]["availability"]["unit"], "violations");
3130 assert_eq!(value["dependencies"]["availability"]["unit"], "findings");
3131 assert_eq!(value["security"]["availability"]["unit"], "candidates");
3132 assert_eq!(value["security"]["availability"]["state"], "complete");
3133 assert_eq!(
3134 value["security"]["runtime_availability"]["state"],
3135 "unavailable"
3136 );
3137 assert_eq!(value["health"]["availability"]["state"], "unavailable");
3138 assert_eq!(
3139 value["health"]["capabilities"]["coverage"]["state"],
3140 "unavailable"
3141 );
3142 assert!(value["frameworks"]["detectors"].is_array());
3143 assert_eq!(
3144 value["frameworks"]["detector_availability"]["state"],
3145 "unavailable"
3146 );
3147 assert!(value["styling"].get("score").is_none());
3148 }
3149
3150 #[test]
3154 fn health_reports_runtime_evidence_as_unavailable_without_a_runtime_input() {
3155 let fx = fixture();
3156 let mut data = build_viz_data(&fx.input());
3157 apply_health_report(&mut data, &HealthReport::default(), Path::new("/project"));
3158 let value = serde_json::to_value(&data).expect("viz data serializes");
3159
3160 assert_eq!(value["health"]["availability"]["state"], "complete");
3161 let runtime = &value["health"]["capabilities"]["runtime"];
3162 assert_eq!(runtime["state"], "unavailable");
3163 assert_eq!(runtime["unit"], "observations");
3164 assert_eq!(runtime["reason"], NO_RUNTIME_COVERAGE_REASON);
3165 assert_eq!(runtime["count"], 0);
3166 assert_eq!(
3167 value["security"]["runtime_availability"]["reason"],
3168 NO_RUNTIME_COVERAGE_REASON
3169 );
3170 }
3171
3172 #[test]
3176 fn rooted_paths_without_a_drive_are_redacted() {
3177 let root = Path::new("/project");
3178 assert_eq!(
3179 relative_path(Path::new("/Users/private/secret.ts"), root),
3180 "<external>/secret.ts"
3181 );
3182 assert_eq!(
3183 relative_path(Path::new("/etc/passwd"), root),
3184 "<external>/passwd"
3185 );
3186 assert_eq!(relative_path(Path::new("src/a.ts"), root), "src/a.ts");
3188
3189 let mut detail = serde_json::json!({ "path": "/Users/private/secret.ts" });
3191 relativize_value_paths(&mut detail, root);
3192 assert_eq!(detail["path"], "<external>/secret.ts");
3193
3194 let mut route = serde_json::json!({ "specifier": "/api/v1" });
3197 relativize_value_paths(&mut route, root);
3198 assert_eq!(route["specifier"], "/api/v1");
3199 }
3200
3201 #[test]
3202 fn external_absolute_paths_are_redacted() {
3203 let root = Path::new("/project");
3204 assert_eq!(
3205 relative_path(Path::new("/project/src/a.ts"), root),
3206 "src/a.ts"
3207 );
3208 assert_eq!(
3209 relative_path(Path::new("/Users/private/secret.ts"), root),
3210 "<external>/secret.ts"
3211 );
3212
3213 let mut detail = serde_json::json!({ "path": "/Users/private/secret.ts" });
3214 relativize_value_paths(&mut detail, root);
3215 assert_eq!(detail["path"], "<external>/secret.ts");
3216
3217 let mut route = serde_json::json!({ "specifier": "/api/v1" });
3218 relativize_value_paths(&mut route, root);
3219 assert_eq!(route["specifier"], "/api/v1");
3220
3221 let mut conflicts = serde_json::json!({
3222 "conflicting_paths": ["/project/app/a.ts", "/project/app/b.ts"]
3223 });
3224 relativize_value_paths(&mut conflicts, root);
3225 assert_eq!(conflicts["conflicting_paths"][0], "app/a.ts");
3226 assert_eq!(conflicts["conflicting_paths"][1], "app/b.ts");
3227 }
3228
3229 #[test]
3230 fn config_action_values_are_not_rendered_as_commands() {
3231 let finding = finding_from_value(
3232 "dependency",
3233 "Dependency finding",
3234 serde_json::json!({
3235 "actions": [{
3236 "kind": "add-to-config",
3237 "auto_fixable": false,
3238 "config_key": "entry",
3239 "value": "./errors",
3240 "description": "Add the entry to configuration"
3241 }]
3242 }),
3243 Path::new("/project"),
3244 &|_| None,
3245 );
3246 assert_eq!(finding.actions.len(), 1);
3247 let action = &finding.actions[0];
3248 assert_eq!(action.kind.as_deref(), Some("add-to-config"));
3249 assert!(!action.auto_fixable);
3250 assert_eq!(action.config_key.as_deref(), Some("entry"));
3251 assert_eq!(action.value, Some(Value::String("./errors".to_string())));
3252 assert!(action.command.is_none());
3253 }
3254}