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fallow_types/
extract.rs

1//! Module extraction types.
2
3use std::path::PathBuf;
4use std::sync::Arc;
5
6use oxc_span::Span;
7
8use crate::discover::FileId;
9use crate::suppress::{Suppression, UnknownSuppressionKind};
10
11/// Extracted module information from a single file.
12///
13/// The `Arc<[T]>` fields are immutable after extraction and are shared by
14/// refcount with the resolver's per-file output, so the resolve/graph path
15/// does not deep-copy per-file extraction payloads.
16#[derive(Debug, Clone)]
17pub struct ModuleInfo {
18    /// Unique identifier for this file.
19    pub file_id: FileId,
20    /// All export declarations in this module.
21    pub exports: Arc<[ExportInfo]>,
22    /// All import declarations in this module.
23    pub imports: Vec<ImportInfo>,
24    /// All re-export declarations (e.g., `export { foo } from './bar'`).
25    pub re_exports: Vec<ReExportInfo>,
26    /// All dynamic `import()` calls with string literal sources.
27    pub dynamic_imports: Vec<DynamicImportInfo>,
28    /// Dynamic import patterns.
29    pub dynamic_import_patterns: Vec<DynamicImportPattern>,
30    /// All `require()` calls.
31    pub require_calls: Vec<RequireCallInfo>,
32    /// Package names statically referenced through package path resolution.
33    pub package_path_references: Box<[String]>,
34    /// Static member access expressions (e.g., `Status.Active`).
35    pub member_accesses: Arc<[MemberAccess]>,
36    /// Typed semantic facts produced by extraction for cross-layer analysis.
37    ///
38    /// This carries facts that were previously encoded as synthetic
39    /// `member_accesses` strings. Extraction and analysis now use typed facts.
40    pub semantic_facts: Arc<[SemanticFact]>,
41    /// Identifiers used in whole-object access patterns.
42    pub whole_object_uses: Arc<[String]>,
43    /// Whether this module uses CommonJS exports.
44    pub has_cjs_exports: bool,
45    /// Whether this module declares an Angular component `templateUrl`.
46    pub has_angular_component_template_url: bool,
47    /// xxh3 hash of the file content for incremental caching.
48    pub content_hash: u64,
49    /// Inline suppression directives parsed from comments.
50    pub suppressions: Vec<Suppression>,
51    /// Suppression tokens that did not parse to any known `IssueKind`.
52    /// Surfaced as `StaleSuppression` findings via `find_stale` so users see
53    /// typos or obsolete kind names instead of having the entire marker
54    /// silently discarded. See issue #449.
55    pub unknown_suppression_kinds: Vec<UnknownSuppressionKind>,
56    /// Local names of import bindings that are never referenced in this file.
57    /// Populated via `oxc_semantic` scope analysis. Used at graph-build time
58    /// to skip adding references for imports whose binding is never read,
59    /// improving unused-export detection precision.
60    pub unused_import_bindings: Vec<String>,
61    /// Local import bindings that are referenced from TypeScript type positions.
62    /// Used to distinguish value-namespace and type-namespace references when a
63    /// module exports both `const X` and `type X`.
64    pub type_referenced_import_bindings: Vec<String>,
65    /// Local import bindings referenced from runtime/value positions.
66    pub value_referenced_import_bindings: Vec<String>,
67    /// Pre-computed byte offsets where each line starts.
68    pub line_offsets: Vec<u32>,
69    /// Per-function complexity metrics.
70    pub complexity: Vec<FunctionComplexity>,
71    /// Feature flag use sites.
72    pub flag_uses: Vec<FlagUse>,
73    /// Heritage metadata for exported classes that declare `implements`.
74    pub class_heritage: Vec<ClassHeritageInfo>,
75    /// Exported free-function factories that provably return one class instance
76    /// (`export function useApi() { return new RESTApi() }`). Origin-module proof
77    /// that an exported function returns a class instance, so a cross-module
78    /// `const x = useApi(); x.member` consumer can credit the returned class.
79    /// See issue #1441 (Part A).
80    pub exported_factory_returns: Arc<[FactoryReturnExport]>,
81    /// Exported factories that return an OBJECT LITERAL whose property values are
82    /// class instances (`export function createUi() { return { orders: factory.ordersPage } }`).
83    /// Each entry maps a dotted property path (`orders`, `invoke.dashboard`) to the
84    /// returned class's local name within the factory module, so a cross-module
85    /// `const ui = createUi(); ui.orders.member` consumer can credit the class. Names
86    /// are local to this module; resolution is deferred to analyze time. See issue #1858.
87    pub exported_factory_return_object_shapes: Arc<[FactoryReturnObjectShapeExport]>,
88    /// Named-type property types declared by this module's top-level interfaces
89    /// and type-literal aliases (`interface Opts { c: OptDep }`). Names are
90    /// local to this module; resolution is deferred to analyze time. Consumed
91    /// by the `unused-class-member` typed-property-hop join and the Playwright
92    /// fixture-type resolution. See issue #1785.
93    pub type_member_types: Arc<[TypeMemberTypeEntry]>,
94    /// Angular `InjectionToken<Interface>` declarations, as
95    /// `(token_export_name, interface_name)` pairs. Recorded only for
96    /// `new InjectionToken<I>(...)` initializers whose `InjectionToken` is
97    /// imported from `@angular/core`. The analyze layer follows the token's
98    /// interface type argument to the classes that `implement` it so a template
99    /// member call through `inject(TOKEN)` credits the concrete implementation.
100    /// See issue #920 (follow-up to #911 / #913).
101    pub injection_tokens: Vec<(String, String)>,
102    /// Local type-capable declarations.
103    pub local_type_declarations: Vec<LocalTypeDeclaration>,
104    /// Type references in exported public signatures.
105    pub public_signature_type_references: Vec<PublicSignatureTypeReference>,
106    /// Aliases of namespace imports re-exported through an object literal.
107    pub namespace_object_aliases: Vec<NamespaceObjectAlias>,
108    /// Deduped Iconify collection prefixes found in static icon props.
109    pub iconify_prefixes: Vec<String>,
110    /// Deduped Nuxt UI `i-<collection>-<icon>` icon class suffixes found in
111    /// static script-side icon properties.
112    pub iconify_icon_names: Vec<String>,
113    /// Bare identifiers that may be resolved by framework auto-imports.
114    pub auto_import_candidates: Vec<String>,
115    /// File-level string directives in source order (e.g. `"use client"`,
116    /// `"use server"`, `"use strict"`). Captured from `Program::directives`.
117    /// Consumed by the security `client-server-leak` detector to identify
118    /// React Server Component client boundaries.
119    pub directives: Vec<String>,
120    /// Byte-offset starts of dynamic `import()` expressions wrapped in
121    /// `next/dynamic(() => import('./X'), { ssr: false })`. The ssr:false option
122    /// is Next.js's sanctioned way to pull a client-only module, so a server-only
123    /// module reached ONLY through such an import is NOT a client-server leak. The
124    /// security `client-server-leak` BFS resolves each dynamic import to a graph
125    /// edge; these span starts let the BFS exclude exactly those edges (matched
126    /// against the edge's `import_span`). Empty for files with no ssr:false
127    /// dynamic import. Captured only by JS/TS extraction.
128    pub client_only_dynamic_import_spans: Vec<u32>,
129    /// Captured security sink sites (category-blind). Consumed by the
130    /// catalogue-driven `tainted_sink` detector. Captured only by JS/TS
131    /// extraction; empty for CSS/MDX/etc. See `security_matchers.toml`.
132    pub security_sinks: Vec<SinkSite>,
133    /// Count of sink-shaped nodes whose callee could not be flattened to a
134    /// static path (dynamic dispatch, computed members, aliased bindings).
135    /// Surfaced in-band so an empty catalogue result with a non-zero count is
136    /// not a clean bill.
137    pub security_sinks_skipped: u32,
138    /// Compact span-level diagnostics for skipped security sink callees. Kept
139    /// next to `security_sinks_skipped` so warm-cache and cold-cache security
140    /// output can explain where the blind spots are concentrated without source
141    /// snippets.
142    pub security_unresolved_callee_sites: Vec<SkippedSecurityCalleeSite>,
143    /// Local bindings whose initializer (or destructured object) is a flattened
144    /// member-access path. Used by the security `tainted_sink` detector to
145    /// back-trace a sink argument to a known untrusted source: the analyze layer
146    /// matches each binding's `source_path` against the data-driven source
147    /// catalogue (`security_matchers.toml` `[[source]]` rows) and treats the
148    /// matching `local` names as source-tainted. Intra-module and name-based
149    /// (no scope analysis); a conservative association, never a taint proof.
150    pub tainted_bindings: Vec<TaintedBinding>,
151    /// Sink arguments that were recognized as sanitizer calls at extraction
152    /// time. Used for direct sink calls such as
153    /// `el.innerHTML = DOMPurify.sanitize(input)`.
154    pub sanitized_sink_args: Vec<SanitizedSinkArg>,
155    /// Known defensive control call sites found in this module. Consumed only by
156    /// the `fallow security --surface` agent JSON path.
157    pub security_control_sites: Vec<SecurityControlSite>,
158    /// Statically flattenable callee paths invoked in this module, deduped per
159    /// unique path (first occurrence wins). Consumed by the
160    /// `boundaries.calls.forbidden` detector. Captured unconditionally because
161    /// extraction is config-blind; the per-module cost is bounded by the
162    /// unique-callee count.
163    pub callee_uses: Vec<CalleeUse>,
164    /// `"use client"` / `"use server"` directive strings written as expression
165    /// statements in `program.body` (misplaced, NOT in the leading
166    /// prologue), so the RSC bundler silently ignores them. One entry per
167    /// occurrence. Consumed by the `misplaced-directive` detector. Captured
168    /// only by JS/TS extraction.
169    pub misplaced_directives: Vec<MisplacedDirectiveSite>,
170    /// Export LOCAL NAMES of exported functions / const-arrows whose body has an
171    /// inline `"use server"` directive (`export async function f() { "use server"
172    /// }`), captured in a NON-`"use server"` file. Consumed by the
173    /// `unused-server-action` detector to reclassify an unused inline Server
174    /// Action export out of `unused-export`. Captured only by JS/TS extraction.
175    pub inline_server_action_exports: Vec<String>,
176    /// Vue `provide`/`inject` and Svelte `setContext`/`getContext` call sites
177    /// keyed by an identifier symbol. Consumed by the `unprovided-inject`
178    /// detector to find an inject/getContext whose key is provided nowhere
179    /// project-wide. Only identifier-keyed sites are recorded (string-literal
180    /// and computed keys abstain). Captured by JS/TS and SFC extraction.
181    pub di_key_sites: Vec<DiKeySite>,
182    /// `true` when this module contains a `provide(...)` / `*.provide(...)` /
183    /// `setContext(...)` call whose key argument is NOT a plain identifier
184    /// (spread, computed, member, loop variable). Such a call can provide an
185    /// unknowable key, so the `unprovided-inject` detector abstains on ALL
186    /// inject findings project-wide when any reachable module sets this flag.
187    /// Mirrors the spread-return whole-object abstain used for Pinia stores.
188    pub has_dynamic_provide: bool,
189    /// Local names of import bindings that ARE referenced somewhere in this file
190    /// (script value/type position OR template/markup). The complement of
191    /// `unused_import_bindings` among `imports`. Derived by
192    /// `prepare_analysis_facts` while both source vectors are still present, so
193    /// it remains readable after the owned release path clears them. It is never
194    /// cached and is recomputed on every cache load. Consumed by the
195    /// `unrendered-component` detector to credit a
196    /// Vue/Svelte SFC that some file actually imports-and-uses, distinguishing it
197    /// from a component reachable only through a barrel re-export.
198    pub referenced_import_bindings: Vec<String>,
199    /// Vue `<script setup>` `defineProps` and Svelte 5 `$props()` declared
200    /// props. Consumed by the `unused-component-prop` detector to flag a prop
201    /// referenced nowhere in its own SFC. Each entry carries `used_in_script` /
202    /// `used_in_template`.
203    pub component_props: Vec<ComponentProp>,
204    /// `true` when the template spreads the whole props/attrs object
205    /// (`v-bind="$attrs"` / `v-bind="$props"` / `v-bind="props"`) or the props
206    /// return is destructured with a rest element. Either form can consume a prop
207    /// indirectly, so the detector abstains on the whole file.
208    pub has_props_attrs_fallthrough: bool,
209    /// `true` when the SFC calls `defineExpose(...)`. A prop may be re-exposed,
210    /// so the detector conservatively abstains on the whole file.
211    pub has_define_expose: bool,
212    /// `true` when the SFC calls `defineModel(...)`. Two-way model props are out
213    /// of scope for v1, so the detector abstains on the whole file.
214    pub has_define_model: bool,
215    /// `true` when props were declared through an unharvestable shape, such as a
216    /// Vue type-reference argument or an opaque Svelte `$props()` destructure.
217    /// The detector abstains on the whole file so a prop is never falsely
218    /// flagged.
219    pub has_unharvestable_props: bool,
220    /// Vue `<script setup>` `defineEmits` declared events. Consumed by the
221    /// `unused-component-emit` detector to flag an event emitted nowhere in its
222    /// own SFC. Each entry carries `used`.
223    pub component_emits: Vec<ComponentEmit>,
224    /// Angular component/directive inputs declared via `@Input()` decorators or
225    /// signal `input()` / `input.required()` / `model()` initializers. Consumed
226    /// by the `unused-component-input` detector to flag an input read nowhere in
227    /// its own component. Empty for every non-Angular class.
228    pub angular_inputs: Vec<AngularInputMember>,
229    /// Angular component/directive outputs declared via `@Output()` decorators or
230    /// signal `output()` / `outputFromObservable()` initializers. Consumed by the
231    /// `unused-component-output` detector to flag an output emitted nowhere in its
232    /// own component. A `model()` is recorded as an input only (see
233    /// `AngularOutputMember`). Empty for every non-Angular class.
234    pub angular_outputs: Vec<AngularOutputMember>,
235    /// Angular `@Component` declarations with their `selector` value(s), harvested
236    /// from `@Component({ selector: '...' })` decorators. Consumed by the Angular
237    /// arm of the `unrendered-component` detector. Empty for every non-Angular
238    /// class and for `@Directive`. See `AngularComponentSelector`.
239    pub angular_component_selectors: Vec<AngularComponentSelector>,
240    /// Lit / web-component custom elements REGISTERED in this file via
241    /// `@customElement('x-foo')` or `customElements.define('x-foo', C)`. Consumed
242    /// by the Lit arm of the `unrendered-component` detector, which flags a
243    /// registered element whose tag is rendered in NO `html` template
244    /// project-wide. Empty for non-Lit / non-web-component files. See
245    /// `RegisteredCustomElement`.
246    pub registered_custom_elements: Vec<RegisteredCustomElement>,
247    /// Custom-element tag names USED (rendered) in this file's `html` tagged
248    /// templates, e.g. `` html`<x-foo></x-foo>` `` -> `x-foo`. Only hyphenated
249    /// (custom-element) tags are recorded; native HTML tags are excluded by the
250    /// hyphen requirement. The detector unions these project-wide into the
251    /// rendered-tag set. Empty for files with no `html` templates.
252    pub used_custom_element_tags: Vec<String>,
253    /// Custom element selector tag names referenced in this file's Angular
254    /// templates (inline `@Component({ template })` and the linked external
255    /// `templateUrl` `.html` module), e.g. `<app-foo>` -> `app-foo`. Native HTML
256    /// tag names are excluded at harvest. The detector unions these project-wide
257    /// into the used-selector set. Empty for non-Angular files.
258    pub angular_used_selectors: Vec<String>,
259    /// Angular component class names referenced as a route entry or bootstrap
260    /// target: a route `component: Foo` / `loadComponent: () => import().then(m =>
261    /// m.Foo)` value, a `bootstrapApplication(Foo)` argument, or a
262    /// `bootstrap: [Foo]` NgModule entry. These are render-equivalent entry points
263    /// (Angular instantiates them without a template `<tag>`), so the Angular
264    /// `unrendered-component` detector abstains on a component whose class name is
265    /// in the project-wide union. A plain `declarations: [...]` / `imports: [...]`
266    /// registration is intentionally NOT harvested here (that is the dead case the
267    /// rule catches). Empty for non-Angular files.
268    pub angular_entry_component_refs: Vec<String>,
269    /// `true` when this file dynamically renders an Angular component fallow
270    /// cannot attribute to a literal class reference: a
271    /// `ViewContainerRef.createComponent(...)` / `*.createComponent(<ident>)`
272    /// call, or an `*ngComponentOutlet` template binding. The Angular
273    /// `unrendered-component` detector abstains project-wide when ANY reachable
274    /// module sets this (mirroring `unprovided-inject`'s `has_dynamic_provide`),
275    /// since a component could be rendered by a non-literal class reference.
276    pub has_dynamic_component_render: bool,
277    /// `true` when `defineEmits` was called with an unharvestable argument (a
278    /// type-reference type argument such as `defineEmits<MyEmits>()`, a
279    /// non-literal runtime form, or an unbound `defineEmits([...])`). The
280    /// detector abstains on the whole file so an emit is never falsely flagged.
281    pub has_unharvestable_emits: bool,
282    /// `true` when an `emit(<nonLiteral>)` call was seen (the emitted event name
283    /// cannot be known statically). The detector abstains on the whole file.
284    pub has_dynamic_emit: bool,
285    /// `true` when the `defineEmits` return binding was used as a WHOLE value
286    /// (passed to a function, returned, or spread), which can emit any event
287    /// opaquely. The detector abstains on the whole file.
288    pub has_emit_whole_object_use: bool,
289    /// SvelteKit `load()` return-object keys harvested from a
290    /// `+page.{ts,server.ts,js,server.js}` file's terminal return literal.
291    /// Consumed by the `unused-load-data-key` detector. Empty for every file
292    /// that is not a page-load producer (gated by basename at harvest time).
293    pub load_return_keys: Vec<LoadReturnKey>,
294    /// `true` when this file's `load()` body could not be harvested safely (a
295    /// spread return, a non-object/non-literal return, more than one top-level
296    /// `return`, a computed key, or a wrapped/re-exported `load`). The detector
297    /// abstains on the whole file so a key is never falsely flagged.
298    pub has_unharvestable_load: bool,
299    /// `true` when this file passes the whole `data` object opaquely (script
300    /// `const X = data`, `fn(data)` / `fn(...data)`, or template `data={data}` /
301    /// `{...data}` in a route component), so a child can read arbitrary keys the
302    /// detector cannot see. Name-gated on the `data` binding. Read ONLY by the
303    /// `unused-load-data-key` detector, so capturing it for all files is
304    /// byte-identity-safe. See FP-1 in the plan.
305    pub has_load_data_whole_use: bool,
306    /// `true` when this file uses the whole `page.data` / `$page.data` store
307    /// object opaquely (e.g. `Object.values(page.data)`, `{...$page.data}`), so a
308    /// reflective read could consume any route's key. Drives the
309    /// `unused-load-data-key` detector's project-wide abstain. Derived by
310    /// `prepare_analysis_facts` from `whole_object_uses` before the owned release
311    /// path clears that vector. It is never cached and is recomputed each run from
312    /// the cached `whole_object_uses`. Reassignment forms
313    /// (`const all = $page.data`) are not whole-object-tracked and stay out of
314    /// scope, matching the syntactic analyzer's conservative posture.
315    pub has_page_data_store_whole_use: bool,
316    /// `true` when a React Router or Remix route consumes the whole
317    /// `useLoaderData()` result opaquely. Derived by `prepare_analysis_facts`
318    /// from the synthetic route-loader marker before the owned release path
319    /// clears `whole_object_uses`. It is recomputed from cached extraction data.
320    pub has_route_loader_data_whole_use: bool,
321    /// React/JSX component definitions: functions/arrows whose body returns JSX.
322    /// Captured only for `.jsx`/`.tsx` files when a React/Preact dependency is
323    /// plausible. Consumed by the React `unused-component-prop` arm and the
324    /// complexity-fold phase. Empty for non-React files.
325    pub component_functions: Vec<ComponentFunction>,
326    /// React component props (reuses the shared `ComponentProp` struct). For
327    /// React, `used_in_template` is always false and `used_in_script` means
328    /// used-in-body. Empty for non-React files.
329    pub react_props: Vec<ComponentProp>,
330    /// React hook call sites (`useState` / `useEffect` / `useMemo` /
331    /// `useCallback` / custom `use*`). Drives hook-density complexity context.
332    /// Empty for non-React files.
333    pub hook_uses: Vec<HookUse>,
334    /// React render edges: one component rendering another. Captured with the
335    /// child's written name; child-to-`FileId` resolution is deferred to graph
336    /// build. Empty for non-React files.
337    pub render_edges: Vec<RenderEdge>,
338    /// Svelte custom events dispatched via `dispatch('<name>')` where `dispatch`
339    /// is the binding from `const dispatch = createEventDispatcher()`. Consumed
340    /// by the `unused-svelte-event` detector to flag an event dispatched here but
341    /// listened to nowhere project-wide. Each entry carries the literal event
342    /// name and its span. Empty for every non-Svelte file.
343    pub svelte_dispatched_events: Vec<DispatchedEvent>,
344    /// Svelte custom-event listener names harvested from template `on:<name>`
345    /// bindings on COMPONENT tags (PascalCase tag names). Lowercase DOM-element
346    /// `on:click` is a DOM event, not a custom event, and is excluded. Unioned
347    /// project-wide by the `unused-svelte-event` detector to build the liberal
348    /// "listened" set. Empty for every non-Svelte file.
349    pub svelte_listened_events: Vec<String>,
350    /// `true` when a `dispatch(<nonLiteral>)` call was seen (the dispatched event
351    /// name cannot be known statically), or the `dispatch` binding was used as a
352    /// whole value (passed / returned). The `unused-svelte-event` detector
353    /// abstains on the whole component so an event is never falsely flagged.
354    pub has_dynamic_dispatch: bool,
355}
356
357impl ModuleInfo {
358    /// A fully-zeroed `ModuleInfo` for the given file.
359    ///
360    /// Fixture builders and non-JS extraction paths start from this and set
361    /// only the fields they care about via struct-update syntax:
362    /// `ModuleInfo { exports: vec![..], ..ModuleInfo::empty(file_id) }`.
363    #[must_use]
364    pub fn empty(file_id: FileId) -> Self {
365        Self {
366            file_id,
367            exports: Arc::default(),
368            imports: Vec::new(),
369            re_exports: Vec::new(),
370            dynamic_imports: Vec::new(),
371            dynamic_import_patterns: Vec::new(),
372            require_calls: Vec::new(),
373            package_path_references: Box::default(),
374            member_accesses: Arc::default(),
375            semantic_facts: Arc::default(),
376            whole_object_uses: Arc::default(),
377            has_cjs_exports: false,
378            has_angular_component_template_url: false,
379            content_hash: 0,
380            suppressions: Vec::new(),
381            unknown_suppression_kinds: Vec::new(),
382            unused_import_bindings: Vec::new(),
383            type_referenced_import_bindings: Vec::new(),
384            value_referenced_import_bindings: Vec::new(),
385            line_offsets: Vec::new(),
386            complexity: Vec::new(),
387            flag_uses: Vec::new(),
388            class_heritage: Vec::new(),
389            exported_factory_returns: Arc::default(),
390            exported_factory_return_object_shapes: Arc::default(),
391            type_member_types: Arc::default(),
392            injection_tokens: Vec::new(),
393            local_type_declarations: Vec::new(),
394            public_signature_type_references: Vec::new(),
395            namespace_object_aliases: Vec::new(),
396            iconify_prefixes: Vec::new(),
397            iconify_icon_names: Vec::new(),
398            auto_import_candidates: Vec::new(),
399            directives: Vec::new(),
400            client_only_dynamic_import_spans: Vec::new(),
401            security_sinks: Vec::new(),
402            security_sinks_skipped: 0,
403            security_unresolved_callee_sites: Vec::new(),
404            tainted_bindings: Vec::new(),
405            sanitized_sink_args: Vec::new(),
406            security_control_sites: Vec::new(),
407            callee_uses: Vec::new(),
408            misplaced_directives: Vec::new(),
409            inline_server_action_exports: Vec::new(),
410            di_key_sites: Vec::new(),
411            has_dynamic_provide: false,
412            referenced_import_bindings: Vec::new(),
413            component_props: Vec::new(),
414            has_props_attrs_fallthrough: false,
415            has_define_expose: false,
416            has_define_model: false,
417            has_unharvestable_props: false,
418            component_emits: Vec::new(),
419            angular_inputs: Vec::new(),
420            angular_outputs: Vec::new(),
421            has_unharvestable_emits: false,
422            has_dynamic_emit: false,
423            has_emit_whole_object_use: false,
424            load_return_keys: Vec::new(),
425            has_unharvestable_load: false,
426            has_load_data_whole_use: false,
427            has_page_data_store_whole_use: false,
428            has_route_loader_data_whole_use: false,
429            component_functions: Vec::new(),
430            react_props: Vec::new(),
431            hook_uses: Vec::new(),
432            render_edges: Vec::new(),
433            svelte_dispatched_events: Vec::new(),
434            svelte_listened_events: Vec::new(),
435            angular_component_selectors: Vec::new(),
436            registered_custom_elements: Vec::new(),
437            used_custom_element_tags: Vec::new(),
438            angular_used_selectors: Vec::new(),
439            angular_entry_component_refs: Vec::new(),
440            has_dynamic_component_render: false,
441            has_dynamic_dispatch: false,
442        }
443    }
444
445    /// Derive compact detector facts from resolution payload before sharing.
446    ///
447    /// Shared analysis sessions keep the source payload for later graph runs,
448    /// but detectors still require the same derived facts that the owned
449    /// release path computes before clearing that payload.
450    #[doc(hidden)]
451    pub fn prepare_analysis_facts(&mut self) {
452        // The analyze-layer `unrendered-component` detector needs the compact
453        // complement of imports and unused bindings after resolution.
454        self.referenced_import_bindings = self
455            .imports
456            .iter()
457            .map(|import| import.local_name.clone())
458            .filter(|name| !name.is_empty() && !self.unused_import_bindings.contains(name))
459            .collect();
460        self.referenced_import_bindings.sort_unstable();
461        self.referenced_import_bindings.dedup();
462
463        // The `unused-load-data-key` detector needs the project-wide signal
464        // after `whole_object_uses` is released from owned artifacts.
465        self.has_page_data_store_whole_use = self
466            .whole_object_uses
467            .iter()
468            .any(|name| name == "page.data" || name == "$page.data");
469        self.has_route_loader_data_whole_use = self
470            .whole_object_uses
471            .iter()
472            .any(|name| name == "$fallow.routeLoaderData");
473    }
474
475    /// Release extraction payload that resolution has already copied into the graph.
476    ///
477    /// This keeps fields needed by analysis, health, security, LSP, coverage,
478    /// and hash drift checks, while dropping vectors that otherwise duplicate
479    /// data owned by `ResolvedModule` or already credited into the module graph.
480    pub fn release_resolution_payload(&mut self) {
481        self.prepare_analysis_facts();
482        Self::release_vec(&mut self.dynamic_imports);
483        Self::release_vec(&mut self.require_calls);
484        Self::release_boxed_slice(&mut self.package_path_references);
485        Self::release_arc_slice(&mut self.whole_object_uses);
486        Self::release_vec(&mut self.unused_import_bindings);
487        Self::release_vec(&mut self.type_referenced_import_bindings);
488        Self::release_vec(&mut self.value_referenced_import_bindings);
489        Self::release_vec(&mut self.namespace_object_aliases);
490        Self::release_vec(&mut self.auto_import_candidates);
491    }
492
493    fn release_vec<T>(values: &mut Vec<T>) {
494        *values = Vec::new();
495    }
496
497    fn release_boxed_slice<T>(values: &mut Box<[T]>) {
498        *values = Box::default();
499    }
500
501    /// Drop this module's refcount; the allocation itself is freed only once
502    /// the sharing `ResolvedModule` releases its clone too.
503    fn release_arc_slice<T>(values: &mut Arc<[T]>) {
504        *values = Arc::default();
505    }
506}
507
508/// Defensive control family detected on a source to sink path.
509#[derive(
510    Debug,
511    Clone,
512    Copy,
513    PartialEq,
514    Eq,
515    PartialOrd,
516    Ord,
517    serde::Serialize,
518    serde::Deserialize,
519    bitcode::Encode,
520    bitcode::Decode,
521)]
522#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
523#[serde(rename_all = "kebab-case")]
524pub enum SecurityControlKind {
525    /// Sanitization or escaping before a sink.
526    Sanitization,
527    /// Input validation or schema parsing.
528    Validation,
529    /// Authentication check or middleware.
530    Authentication,
531    /// Authorization or permission check.
532    Authorization,
533}
534
535/// A known defensive control call site.
536#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
537pub struct SecurityControlSite {
538    /// Control family.
539    pub kind: SecurityControlKind,
540    /// Flattened callee path or a stable synthetic name for guard-derived
541    /// controls.
542    pub callee_path: String,
543    /// Byte offset of the control span start.
544    pub span_start: u32,
545    /// Byte offset of the control span end.
546    pub span_end: u32,
547}
548
549/// Sanitizer output domain. Kept intentionally narrow so a sanitizer for one
550/// domain cannot suppress a different sink family.
551#[derive(
552    Debug,
553    Clone,
554    Copy,
555    PartialEq,
556    Eq,
557    PartialOrd,
558    Ord,
559    serde::Serialize,
560    serde::Deserialize,
561    bitcode::Encode,
562    bitcode::Decode,
563)]
564pub enum SanitizerScope {
565    /// HTML markup sanitized by DOMPurify-compatible APIs.
566    Html,
567    /// URL or redirect target checked against a literal-backed allowlist.
568    Url,
569    /// Path value checked against a high-confidence containment guard.
570    Path,
571    /// SQL identifier quoted with a helper that doubles embedded identifier quotes.
572    SqlIdentifier,
573}
574
575/// A captured sink argument that is itself a recognized sanitizer call.
576#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
577pub struct SanitizedSinkArg {
578    /// Byte offset of the owning sink span start.
579    pub span_start: u32,
580    /// The positional argument index on the owning sink.
581    pub arg_index: u32,
582    /// The sanitizer output domain for this argument.
583    pub scope: SanitizerScope,
584}
585
586/// A local binding tied to the flattened member-access path it was initialized
587/// from. The analyze layer matches `source_path` against the data-driven source
588/// catalogue; when it matches, `local` is treated as carrying untrusted input.
589///
590/// Captured for two shapes: a direct assignment (`const id = req.query.id` ->
591/// `{ local: "id", source_path: "req.query" }`, the literal-key tail dropped so
592/// the path matches a catalogue prefix) and an object destructure
593/// (`const { id } = req.query` -> `{ local: "id", source_path: "req.query" }`).
594#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
595pub struct TaintedBinding {
596    /// The local binding name introduced by the declarator.
597    pub local: String,
598    /// The flattened object member-access path the binding was sourced from.
599    pub source_path: String,
600    /// Byte offset of the source read (the member-access expression the binding
601    /// was sourced from), so the analyze layer can anchor a taint trace's source
602    /// node at the real read line instead of the module import line. Stored as a
603    /// `u32` (not `Span`) to stay bitcode-encodable for the cache. `0` when no
604    /// concrete read expression is available (synthetic framework-param /
605    /// helper-return bindings), in which case the analyze layer falls back to the
606    /// sink site rather than claiming a spurious line.
607    pub source_span_start: u32,
608}
609
610/// Why a sink-shaped callee could not be flattened into a static catalogue
611/// path.
612#[derive(
613    Debug,
614    Clone,
615    Copy,
616    PartialEq,
617    Eq,
618    PartialOrd,
619    Ord,
620    serde::Serialize,
621    serde::Deserialize,
622    bitcode::Encode,
623    bitcode::Decode,
624)]
625#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
626#[serde(rename_all = "kebab-case")]
627pub enum SkippedSecurityCalleeReason {
628    /// A computed member access such as `client[method](input)`.
629    ComputedMember,
630    /// A dynamic non-member callee such as `(factory())(input)`.
631    DynamicDispatch,
632    /// An assignment target whose object could not be flattened.
633    UnsupportedAssignmentObject,
634}
635
636/// Syntactic expression shape for a skipped security callee.
637#[derive(
638    Debug,
639    Clone,
640    Copy,
641    PartialEq,
642    Eq,
643    PartialOrd,
644    Ord,
645    serde::Serialize,
646    serde::Deserialize,
647    bitcode::Encode,
648    bitcode::Decode,
649)]
650#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
651#[serde(rename_all = "kebab-case")]
652pub enum SkippedSecurityCalleeExpressionKind {
653    /// `obj.prop(...)`.
654    StaticMemberExpression,
655    /// `obj[prop](...)`.
656    ComputedMemberExpression,
657    /// A bare identifier or private identifier callee.
658    Identifier,
659    /// Any other call-like expression that cannot be represented compactly.
660    Other,
661}
662
663/// Span-only diagnostic for a skipped security callee inside one module.
664#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
665pub struct SkippedSecurityCalleeSite {
666    /// Why the callee was skipped.
667    pub reason: SkippedSecurityCalleeReason,
668    /// Compact expression shape of the skipped callee.
669    pub expression_kind: SkippedSecurityCalleeExpressionKind,
670    /// Start byte offset of the skipped callee expression.
671    pub span_start: u32,
672    /// End byte offset of the skipped callee expression.
673    pub span_end: u32,
674}
675
676/// The syntactic shape of a captured security sink site. Category-blind: the
677/// extractor records the shape and the dotted/bare callee path; the analyze
678/// layer matches it against the data-driven catalogue. See
679/// `crates/security/data/security_matchers.toml`.
680#[derive(
681    Debug,
682    Clone,
683    Copy,
684    PartialEq,
685    Eq,
686    serde::Serialize,
687    serde::Deserialize,
688    bitcode::Encode,
689    bitcode::Decode,
690)]
691pub enum SinkShape {
692    /// A call to a bare identifier (e.g. `eval(x)`).
693    Call,
694    /// A call to a dotted member path (e.g. `child_process.exec(x)`).
695    MemberCall,
696    /// An assignment to a member target (e.g. `el.innerHTML = x`).
697    MemberAssign,
698    /// A tagged template expression (e.g. ``sql`...${x}...` ``).
699    TaggedTemplate,
700    /// A JSX attribute value (e.g. `dangerouslySetInnerHTML={x}`).
701    JsxAttr,
702    /// A constructor call (e.g. `new Function("return x")`).
703    NewExpression,
704    /// A static string literal assigned to a secret-shaped identifier or known
705    /// provider credential prefix.
706    SecretLiteral,
707}
708
709/// The shape of the argument captured at a sink site. Category-blind like
710/// [`SinkShape`], but finer-grained: it lets the catalogue matcher require or
711/// exclude specific argument shapes. The discriminator is what distinguishes an
712/// unsafe SQL string concatenation or template-into-`.execute()` from a
713/// safely-parameterized `` sql`${x}` `` tagged template, an object-literal
714/// `.execute({ sql, args })` argument, or a literal-aware sink argument.
715#[derive(
716    Debug,
717    Clone,
718    Copy,
719    PartialEq,
720    Eq,
721    serde::Serialize,
722    serde::Deserialize,
723    bitcode::Encode,
724    bitcode::Decode,
725)]
726pub enum SinkArgKind {
727    /// A template literal with at least one `${...}` substitution (e.g.
728    /// `` `SELECT ${x}` ``). On a `tagged-template` shape this is the tag's
729    /// quasi; on a `call`/`member-call` shape it is the positional argument.
730    TemplateWithSubst,
731    /// A binary `+` string concatenation (e.g. `"SELECT " + x`).
732    Concat,
733    /// An object literal (e.g. `.execute({ sql, args })`, the parameterized form).
734    Object,
735    /// A call expression argument (e.g. `query(buildSql())`).
736    Call,
737    /// A literal argument admitted by a literal-aware security matcher.
738    Literal,
739    /// A zero-argument sink captured because the callee itself is the signal.
740    NoArg,
741    /// Any other non-literal expression (bare identifier, member access, etc.).
742    Other,
743}
744
745/// Static URL construction shape captured for URL-shaped security sinks.
746#[derive(
747    Debug,
748    Clone,
749    Copy,
750    PartialEq,
751    Eq,
752    serde::Serialize,
753    serde::Deserialize,
754    bitcode::Encode,
755    bitcode::Decode,
756)]
757#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
758#[serde(rename_all = "kebab-case")]
759pub enum SecurityUrlShape {
760    /// The sink target has a fixed origin, scheme, or relative root while only
761    /// path or query components are dynamic.
762    FixedOriginDynamicPath,
763    /// The sink target's scheme or origin is dynamic or opaque.
764    DynamicOrigin,
765}
766
767/// Literal values attached to literal-aware security sink captures.
768#[derive(
769    Debug,
770    Clone,
771    PartialEq,
772    Eq,
773    serde::Serialize,
774    serde::Deserialize,
775    bitcode::Encode,
776    bitcode::Decode,
777)]
778pub enum SinkLiteralValue {
779    /// A string literal value.
780    String(String),
781    /// An integer numeric literal value.
782    Integer(i64),
783    /// A boolean literal value.
784    Boolean(bool),
785    /// A null literal value.
786    Null,
787}
788
789/// Static object-literal property metadata attached to a captured sink
790/// argument. Nested object paths are flattened with dot-separated keys.
791#[derive(
792    Debug,
793    Clone,
794    PartialEq,
795    Eq,
796    serde::Serialize,
797    serde::Deserialize,
798    bitcode::Encode,
799    bitcode::Decode,
800)]
801pub struct SinkObjectProperty {
802    /// Static property name. Nested object properties use dot-separated paths.
803    pub key: String,
804    /// Literal property value when statically knowable.
805    pub value: SinkLiteralValue,
806}
807
808/// A captured sink site. The visitor records every existing non-literal call /
809/// member-assign / member-call / tagged-template / jsx-attr sink site, and a
810/// small allowlist of literal-aware sites where the literal value is the signal.
811/// It knows nothing about CWE categories.
812#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
813pub struct SinkSite {
814    /// The syntactic shape of the sink site.
815    pub sink_shape: SinkShape,
816    /// The flattened dotted/bare callee or member path.
817    pub callee_path: String,
818    /// The positional argument index. For zero-argument captures this is 0.
819    pub arg_index: u32,
820    /// Whether the relevant argument is non-literal. Existing non-literal
821    /// catalogue rows require this to remain true.
822    pub arg_is_non_literal: bool,
823    /// The finer-grained shape of the captured argument. Lets the catalogue
824    /// require unsafe shapes (concat / template-with-substitution / literal /
825    /// no-arg) and exclude safe ones (object literal, the parameterized form).
826    /// See [`SinkArgKind`].
827    pub arg_kind: SinkArgKind,
828    /// Literal argument value for literal-aware rows.
829    pub arg_literal: Option<SinkLiteralValue>,
830    /// Risky regex fragment for structural ReDoS candidates.
831    pub regex_pattern: Option<String>,
832    /// Static object-literal properties for option-object rows.
833    pub object_properties: Vec<SinkObjectProperty>,
834    /// Static top-level object-literal keys, including keys whose values are not
835    /// literal. Used by missing-option rows that only need key presence.
836    pub object_property_keys: Vec<String>,
837    /// Whether [`object_property_keys`](Self::object_property_keys) is complete.
838    /// False for non-object arguments and object literals with spread or
839    /// non-static keys, where a missing-key claim would be speculative.
840    pub object_property_keys_complete: bool,
841    /// Identifier names referenced anywhere inside the captured non-literal sink
842    /// argument, or contextual names for zero-argument captures such as a
843    /// token-like `Math.random()` assignment target. Deduped in source order.
844    /// Used by the analyze layer to back-trace the sink argument to a known
845    /// untrusted source or to apply narrow context gates. Intra-module,
846    /// name-based, conservative; it is never a taint proof.
847    pub arg_idents: Vec<String>,
848    /// Flattened static member paths referenced inside the captured non-literal
849    /// sink argument. Includes both the full path and source-object path for
850    /// leaf reads (`process.env.SECRET` records `process.env.SECRET` and
851    /// `process.env`) so direct source expressions can be matched without an
852    /// intermediate local binding.
853    pub arg_source_paths: Vec<String>,
854    /// Byte offset of the sink span start. Stored as `u32` (not `Span`) so the
855    /// struct is bitcode-encodable and can be persisted directly in the cache.
856    pub span_start: u32,
857    /// Byte offset of the sink span end.
858    pub span_end: u32,
859    /// The arg-0 URL string literal of a network-shaped call (`fetch`, `axios.*`,
860    /// `got`, ...), captured so the `secret-to-network` category (#890) can carry
861    /// a destination-host signal on its candidate: `Some(literal)` when the
862    /// destination is a static string literal (almost always intended auth, e.g.
863    /// the credential's own provider), `None` when it is dynamic (the suspicious
864    /// case). `None` for non-call sinks and calls with no arg 0.
865    pub url_arg_literal: Option<String>,
866    /// URL construction shape for URL-like sink arguments when the extractor can
867    /// classify it syntactically. `None` for non-URL sinks and URL expressions
868    /// whose shape is not visible at the sink.
869    pub url_shape: Option<SecurityUrlShape>,
870}
871
872impl SinkSite {
873    /// Reconstruct the source span from the stored byte offsets.
874    #[must_use]
875    pub fn span(&self) -> Span {
876        Span::new(self.span_start, self.span_end)
877    }
878}
879
880/// Env var-name prefixes that frameworks inline into the client bundle by
881/// convention. A read of one of these is normal and safe, so it does NOT count
882/// as a secret source (issue #890). Shared by the extract layer (so public env
883/// vars never become source signals) and the bespoke `client-server-leak` rule.
884pub const PUBLIC_ENV_PREFIXES: &[&str] = &[
885    "NEXT_PUBLIC_",
886    "VITE_",
887    "NUXT_PUBLIC_",
888    "REACT_APP_",
889    "PUBLIC_",
890    "GATSBY_",
891    "EXPO_PUBLIC_",
892    "STORYBOOK_",
893];
894
895/// Exact env var names that are public by convention (no prefix).
896pub const PUBLIC_ENV_EXACT: &[&str] = &["NODE_ENV"];
897
898/// Env var-name tokens that usually describe public build or deployment
899/// metadata rather than secrets. Secret-shaped names win over these tokens.
900pub const PUBLIC_ENV_METADATA_TOKENS: &[&str] =
901    &["BRANCH", "ENVIRONMENT", "MODE", "REF", "SHA", "TAG"];
902
903/// Env var-name tokens that should keep a variable source-backed even when the
904/// name also contains public metadata tokens such as `REF` or `SHA`.
905pub const SECRET_ENV_TOKENS: &[&str] = &[
906    "AUTH",
907    "CREDENTIAL",
908    "CREDENTIALS",
909    "KEY",
910    "PASS",
911    "PASSWORD",
912    "PRIVATE",
913    "SECRET",
914    "TOKEN",
915];
916
917fn env_name_has_token(name: &str, tokens: &[&str]) -> bool {
918    name.split(|ch: char| !ch.is_ascii_alphanumeric())
919        .filter(|part| !part.is_empty())
920        .any(|part| tokens.contains(&part))
921}
922
923/// Whether an env var name is public-by-convention (build-inlined into the
924/// client bundle), and therefore not a secret.
925#[must_use]
926pub fn is_public_env_var(name: &str) -> bool {
927    if PUBLIC_ENV_EXACT.contains(&name) || PUBLIC_ENV_PREFIXES.iter().any(|p| name.starts_with(p)) {
928        return true;
929    }
930    env_name_has_token(name, PUBLIC_ENV_METADATA_TOKENS)
931        && !env_name_has_token(name, SECRET_ENV_TOKENS)
932}
933
934/// Whether a flattened member path is a PUBLIC env-secret read
935/// (`process.env.NEXT_PUBLIC_X`, `import.meta.env.VITE_Y`), which must not be
936/// recorded as a secret source. Non-env paths (`req.query.id`) are never public.
937#[must_use]
938pub fn is_public_env_path(path: &str) -> bool {
939    for object in ["process.env.", "import.meta.env."] {
940        if let Some(var) = path.strip_prefix(object) {
941            return is_public_env_var(var);
942        }
943    }
944    false
945}
946
947/// One alias entry tying an exported object's dotted property path to a namespace import.
948#[derive(Debug, Clone)]
949pub struct NamespaceObjectAlias {
950    /// Canonical export name.
951    pub via_export_name: String,
952    /// Dotted suffix of the property path relative to the export.
953    pub suffix: String,
954    /// Local name of the namespace import.
955    pub namespace_local: String,
956}
957
958/// Compute a table of line-start byte offsets from source text.
959#[must_use]
960#[expect(
961    clippy::cast_possible_truncation,
962    reason = "source files are practically < 4GB"
963)]
964pub fn compute_line_offsets(source: &str) -> Vec<u32> {
965    let mut offsets = vec![0u32];
966    for (i, byte) in source.bytes().enumerate() {
967        if byte == b'\n' {
968            debug_assert!(
969                u32::try_from(i + 1).is_ok(),
970                "source file exceeds u32::MAX bytes: line offsets would overflow"
971            );
972            offsets.push((i + 1) as u32);
973        }
974    }
975    offsets
976}
977
978/// Convert a byte offset to a 1-based line number and 0-based byte column.
979#[must_use]
980#[expect(
981    clippy::cast_possible_truncation,
982    reason = "line count is bounded by source size"
983)]
984pub fn byte_offset_to_line_col(line_offsets: &[u32], byte_offset: u32) -> (u32, u32) {
985    let line_idx = match line_offsets.binary_search(&byte_offset) {
986        Ok(idx) => idx,
987        Err(idx) => idx.saturating_sub(1),
988    };
989    let line = line_idx as u32 + 1;
990    let col = byte_offset - line_offsets[line_idx];
991    (line, col)
992}
993
994/// True when `name` identifies a synthetic template-family complexity unit:
995/// the per-file `<template>` unit every framework template scanner emits, or a
996/// Svelte `<snippet:NAME>` unit. These units are exercised only through their
997/// component, carry no directly measurable test coverage, and are therefore
998/// excluded from the CRAP dimension. The `<component>` rollup is NOT part of
999/// this family: it is an aggregate over class + template findings, not an
1000/// extracted unit.
1001#[must_use]
1002pub fn is_synthetic_template_unit(name: &str) -> bool {
1003    name == "<template>" || name.starts_with("<snippet:")
1004}
1005
1006/// Complexity metrics for a single function/method/arrow.
1007#[derive(Debug, Clone, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1008pub struct FunctionComplexity {
1009    /// Function name (or `"<anonymous>"` for unnamed functions/arrows).
1010    pub name: String,
1011    /// Whether this function is an ECMAScript `#`-private class member.
1012    ///
1013    /// Kept separately from `name` because a public string-named method may
1014    /// legally begin with `#` and remains eligible for runtime coverage.
1015    pub is_private_member: bool,
1016    /// 1-based line number where the function starts.
1017    pub line: u32,
1018    /// 0-based byte column where the function starts.
1019    pub col: u32,
1020    /// `McCabe` cyclomatic complexity (1 + decision points).
1021    pub cyclomatic: u16,
1022    /// `SonarSource` cognitive complexity (structural + nesting penalty).
1023    pub cognitive: u16,
1024    /// Number of lines in the function body.
1025    pub line_count: u32,
1026    /// Number of parameters (excluding TypeScript's `this` parameter).
1027    pub param_count: u8,
1028    /// Number of React hook calls (`useState` / `useEffect` / `useMemo` /
1029    /// `useCallback` / custom `use*`) made directly in this function's body.
1030    /// Non-zero only for React components/hooks; descriptive context surfaced in
1031    /// the hotspot drill-down, never a tunable threshold (anti-numerology).
1032    pub react_hook_count: u16,
1033    /// Maximum JSX element nesting depth reached in this function's body (the
1034    /// deepest chain of element-inside-element). `0` when the function renders
1035    /// no JSX. Descriptive context surfaced in the hotspot drill-down, never a
1036    /// tunable threshold (anti-numerology).
1037    pub react_jsx_max_depth: u16,
1038    /// Number of props destructured from this component's first parameter (the
1039    /// `{ a, b, c }` props object). `0` for non-component functions and for
1040    /// components taking a bare `props` identifier (not statically countable).
1041    /// Descriptive context surfaced in the hotspot drill-down, never a tunable
1042    /// threshold (anti-numerology).
1043    pub react_prop_count: u16,
1044    /// Content digest of the function's full-span source slice.
1045    pub source_hash: Option<String>,
1046    /// Per-decision-point breakdown explaining WHICH constructs drove the
1047    /// cyclomatic and cognitive scores. One entry per increment event (an `if`
1048    /// emits one cyclomatic and one cognitive entry at the same line, because
1049    /// the two metrics accrue at different granularities). Always computed and
1050    /// cached; surfaced in JSON only behind `health --complexity-breakdown`.
1051    pub contributions: Vec<ComplexityContribution>,
1052}
1053
1054/// Structural CSS metrics for a single style rule, computed from the parsed CSS
1055/// syntax tree. A rule is recorded only when it crosses a structural floor (an
1056/// id selector, a complex selector, a `!important` declaration, or deep
1057/// nesting), so the vector stays bounded on normal stylesheets.
1058///
1059/// Not persisted in the extraction cache: `fallow health` computes these
1060/// on demand from the CSS source, so there is no `bitcode` derive.
1061#[derive(Debug, Clone, serde::Serialize)]
1062#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1063pub struct CssRuleMetric {
1064    /// 1-based line of the rule's first selector.
1065    pub line: u32,
1066    /// 1-based column of the rule's first selector.
1067    pub col: u32,
1068    /// Specificity component `a` (id selectors), max across the rule's selectors.
1069    pub specificity_a: u16,
1070    /// Specificity component `b` (class / attribute / pseudo-class selectors).
1071    pub specificity_b: u16,
1072    /// Specificity component `c` (type / pseudo-element selectors).
1073    pub specificity_c: u16,
1074    /// Largest selector component count across the rule's selector list.
1075    pub complexity: u16,
1076    /// Declaration count in the rule (normal plus `!important`).
1077    pub declaration_count: u16,
1078    /// `!important` declaration count in the rule.
1079    pub important_count: u16,
1080    /// Style-rule nesting depth (0 = top level).
1081    pub nesting_depth: u8,
1082}
1083
1084/// A style rule's declaration-block fingerprint and location, for cross-file
1085/// duplicate-block detection. Only rules with a meaningful number of
1086/// declarations are recorded (small blocks repeat legitimately). Internal
1087/// staging only: this is consumed in-process by the health layer to build the
1088/// grouped `duplicate_declaration_blocks` output and is never serialized.
1089#[derive(Debug, Clone)]
1090pub struct CssDeclarationBlock {
1091    /// xxh3 fingerprint over the rule's normalized (sorted, `!important`-tagged)
1092    /// declaration set.
1093    pub fingerprint: u64,
1094    /// 1-based line of the rule's first selector.
1095    pub line: u32,
1096    /// Declaration count in the rule (normal plus `!important`).
1097    pub declaration_count: u16,
1098}
1099
1100/// Located raw styling value authored directly in CSS rather than via a
1101/// custom property or design-token helper. Internal staging for the health
1102/// layer; public output adds actions and confidence.
1103#[derive(Debug, Clone, PartialEq, Eq)]
1104pub struct CssRawStyleValue {
1105    /// Value axis, e.g. `color`, `font-size`, `line-height`, `radius`, or `shadow`.
1106    pub axis: String,
1107    /// CSS property where the value appears.
1108    pub property: String,
1109    /// Rendered declaration value.
1110    pub value: String,
1111    /// 1-based line of the containing style rule.
1112    pub line: u32,
1113}
1114
1115/// Located CSS custom-property definition with its rendered value. Internal
1116/// staging for design-token reuse suggestions in the health layer.
1117#[derive(Debug, Clone, PartialEq, Eq)]
1118pub struct CssCustomPropertyDefinition {
1119    /// Custom property name, including the leading `--`.
1120    pub name: String,
1121    /// Rendered custom property value.
1122    pub value: String,
1123    /// 1-based line of the containing style rule.
1124    pub line: u32,
1125}
1126
1127/// Stylesheet-level structural CSS analytics, computed from the parsed CSS
1128/// syntax tree. Feeds `fallow health` penalty weights and located findings,
1129/// never a standalone CSS score.
1130#[derive(Debug, Clone, Default, serde::Serialize)]
1131#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1132pub struct CssAnalytics {
1133    /// Total declarations across every style rule (normal plus `!important`).
1134    pub total_declarations: u32,
1135    /// Total `!important` declarations across every style rule.
1136    pub important_declarations: u32,
1137    /// Number of style rules.
1138    pub rule_count: u32,
1139    /// Number of style rules with no declarations.
1140    pub empty_rule_count: u32,
1141    /// Deepest style-rule nesting depth observed (0 = no nesting).
1142    pub max_nesting_depth: u8,
1143    /// Rules that crossed the structural floor, in source order. Bounded; see
1144    /// [`Self::notable_truncated`]. The scalar aggregates above always reflect
1145    /// the full stylesheet regardless of truncation.
1146    pub notable_rules: Vec<CssRuleMetric>,
1147    /// `true` when more rules crossed the structural floor than `notable_rules`
1148    /// retains (compiled utility CSS can emit thousands of `!important` rules),
1149    /// so consumers can note that per-rule findings were capped.
1150    pub notable_truncated: bool,
1151    /// Distinct color VALUES in the stylesheet, sorted (a palette-size /
1152    /// design-token-sprawl signal). The parser canonicalizes notation, so the
1153    /// authored format is NOT preserved: `red`, `#f00`, `#ff0000`, and
1154    /// `rgb(255,0,0)` all collapse to one entry, and every legacy sRGB notation
1155    /// renders as hex. Notation-MIXING (hex vs rgb vs hsl) is therefore not
1156    /// detectable from this set; it would need a separate raw-token pass.
1157    pub colors: Vec<String>,
1158    /// Distinct `font-size` declaration values in the stylesheet, sorted.
1159    pub font_sizes: Vec<String>,
1160    /// Distinct `z-index` declaration values in the stylesheet, sorted.
1161    pub z_indexes: Vec<String>,
1162    /// Distinct `box-shadow` declaration values in the stylesheet, sorted. A
1163    /// high count signals an uncontrolled shadow scale (design-token sprawl).
1164    pub box_shadows: Vec<String>,
1165    /// Distinct `border-radius` declaration values in the stylesheet, sorted.
1166    pub border_radii: Vec<String>,
1167    /// Distinct `line-height` declaration values in the stylesheet, sorted.
1168    pub line_heights: Vec<String>,
1169    /// Bounded located raw styling values that bypass custom properties or
1170    /// token helpers. These are conservative declaration-level candidates for
1171    /// audit introduced-vs-base gating.
1172    #[serde(skip)]
1173    #[cfg_attr(feature = "schema", schemars(skip))]
1174    pub raw_style_values: Vec<CssRawStyleValue>,
1175    /// Located custom-property definitions with values. Internal staging
1176    /// consumed by the health layer for nearest-token suggestions.
1177    #[serde(skip)]
1178    #[cfg_attr(feature = "schema", schemars(skip))]
1179    pub custom_property_definitions: Vec<CssCustomPropertyDefinition>,
1180    /// Distinct custom properties (`--x`) DEFINED in the stylesheet, sorted.
1181    pub defined_custom_properties: Vec<String>,
1182    /// Distinct custom properties REFERENCED via `var()` in the stylesheet.
1183    pub referenced_custom_properties: Vec<String>,
1184    /// Distinct `@keyframes` names DEFINED in the stylesheet, sorted.
1185    pub defined_keyframes: Vec<String>,
1186    /// Distinct `@keyframes` names REFERENCED via `animation` / `animation-name`.
1187    pub referenced_keyframes: Vec<String>,
1188    /// Distinct custom properties REGISTERED via an `@property` rule, sorted.
1189    pub registered_custom_properties: Vec<String>,
1190    /// Distinct cascade layers DECLARED (via `@layer a, b;` statements or named
1191    /// `@layer a { }` blocks), sorted.
1192    pub declared_layers: Vec<String>,
1193    /// Distinct cascade layers POPULATED by a named `@layer a { }` block, sorted.
1194    /// A layer declared but never populated (and not imported into) is a
1195    /// cleanup candidate.
1196    pub populated_layers: Vec<String>,
1197    /// Distinct font families DECLARED by an `@font-face` rule in the stylesheet,
1198    /// sorted. A declared family referenced by no `font-family` anywhere is a
1199    /// dead web-font payload (cleanup candidate).
1200    pub defined_font_faces: Vec<String>,
1201    /// Distinct font families REFERENCED via `font-family` / `font` in the
1202    /// stylesheet, sorted (generic keywords like `serif` excluded).
1203    pub referenced_font_families: Vec<String>,
1204    /// Per-rule declaration-block fingerprints for rules at or above the minimum
1205    /// block size, used to detect duplicate declaration blocks across the
1206    /// project. Internal staging consumed by the health layer; never serialized
1207    /// (the public output is the grouped `duplicate_declaration_blocks`).
1208    #[serde(skip)]
1209    #[cfg_attr(feature = "schema", schemars(skip))]
1210    pub declaration_blocks: Vec<CssDeclarationBlock>,
1211}
1212
1213/// Which complexity metric a [`ComplexityContribution`] adds to.
1214#[derive(Debug, Clone, Copy, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1215#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1216#[serde(rename_all = "kebab-case")]
1217pub enum ComplexityMetric {
1218    /// `McCabe` cyclomatic complexity (independent execution paths).
1219    Cyclomatic,
1220    /// `SonarSource` cognitive complexity (structural + nesting penalty).
1221    Cognitive,
1222}
1223
1224/// The syntactic construct that produced a single complexity increment.
1225///
1226/// Mirrors `SonarSource` cognitive-complexity vocabulary where it overlaps.
1227/// `Case` means a `case` label carrying a test; a bare `default` adds nothing
1228/// to cyclomatic complexity and so produces no contribution.
1229#[derive(Debug, Clone, Copy, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1230#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1231#[serde(rename_all = "kebab-case")]
1232#[non_exhaustive]
1233pub enum ComplexityContributionKind {
1234    /// An `if` condition.
1235    If,
1236    /// A bare `else` branch (cognitive only).
1237    Else,
1238    /// An `else if` continuation (both metrics: cyclomatic +1, cognitive flat
1239    /// +1 with no nesting penalty).
1240    ElseIf,
1241    /// A `?:` conditional (ternary) expression.
1242    Ternary,
1243    /// A logical `&&` operator.
1244    LogicalAnd,
1245    /// A logical `||` operator.
1246    LogicalOr,
1247    /// A `??` nullish-coalescing operator.
1248    NullishCoalescing,
1249    /// A logical assignment operator (`&&=`, `||=`, `??=`); cyclomatic only.
1250    LogicalAssignment,
1251    /// An optional-chaining link (`?.`); cyclomatic only.
1252    OptionalChain,
1253    /// A `for` loop.
1254    For,
1255    /// A `for...in` loop.
1256    ForIn,
1257    /// A `for...of` loop.
1258    ForOf,
1259    /// A `while` loop.
1260    While,
1261    /// A `do...while` loop.
1262    DoWhile,
1263    /// A `switch` statement (cognitive only; each `case` adds cyclomatic).
1264    Switch,
1265    /// A `case` label carrying a test (cyclomatic only).
1266    Case,
1267    /// A `catch` clause.
1268    Catch,
1269    /// A labeled `break` (cognitive only).
1270    LabeledBreak,
1271    /// A labeled `continue` (cognitive only).
1272    LabeledContinue,
1273    /// Legacy JSX-depth contribution kind kept for schema compatibility. Current
1274    /// extraction records JSX nesting as descriptive `react_jsx_max_depth`
1275    /// context and does not emit this kind for layout depth.
1276    JsxDepth,
1277    /// React hook density (cognitive only). One contribution per hook call in a
1278    /// component body (`useState` / `useEffect` / `useMemo` / `useCallback` /
1279    /// custom `use*`); a hook-heavy component accrues cognitive load the same way
1280    /// branching does.
1281    HookDensity,
1282    /// React prop count past the comfortable floor (cognitive only). A component
1283    /// destructuring many props is doing many things; the props beyond the floor
1284    /// fold into cognitive so a wide-interface component surfaces as a hotspot.
1285    PropCount,
1286    /// A Svelte `{#await}` block.
1287    Await,
1288    /// A Svelte `{:then}` continuation.
1289    Then,
1290}
1291
1292/// A single complexity increment, located at its source line/column.
1293///
1294/// `weight` is the amount this construct added to `metric`; for nested
1295/// cognitive increments `weight == 1 + nesting`. Consumers that render inline
1296/// (the VS Code editor breakdown) group contributions by `line` and sum the
1297/// weights, deferring the per-kind list to a hover.
1298#[derive(Debug, Clone, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1299#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1300pub struct ComplexityContribution {
1301    /// 1-based line number where the construct begins.
1302    pub line: u32,
1303    /// 0-based byte column where the construct begins.
1304    pub col: u32,
1305    /// Which metric this increment contributes to.
1306    pub metric: ComplexityMetric,
1307    /// The syntactic construct responsible for the increment.
1308    pub kind: ComplexityContributionKind,
1309    /// The amount added to `metric` at this site (`1 + nesting` for nested
1310    /// cognitive increments, otherwise `1`).
1311    pub weight: u16,
1312    /// The nesting depth at the increment site (`0` when not nested). Lets a
1313    /// consumer explain a cognitive `+3` as "+1 base, +2 nesting".
1314    pub nesting: u16,
1315}
1316
1317/// The kind of feature flag pattern detected.
1318#[derive(Debug, Clone, Copy, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
1319pub enum FlagUseKind {
1320    /// `process.env.FEATURE_X` pattern.
1321    EnvVar,
1322    /// SDK function call like `useFlag('name')`.
1323    SdkCall,
1324    /// Config object access like `config.features.x`.
1325    ConfigObject,
1326}
1327
1328/// A feature flag use site.
1329#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
1330pub struct FlagUse {
1331    /// Flag identifier.
1332    pub flag_name: String,
1333    /// Detection kind.
1334    pub kind: FlagUseKind,
1335    /// 1-based line number.
1336    pub line: u32,
1337    /// 0-based byte column offset.
1338    pub col: u32,
1339    /// Start byte offset of the guarded block.
1340    pub guard_span_start: Option<u32>,
1341    /// End byte offset of the guarded block.
1342    pub guard_span_end: Option<u32>,
1343    /// SDK/provider name.
1344    pub sdk_name: Option<String>,
1345}
1346
1347const _: () = assert!(std::mem::size_of::<FlagUse>() <= 96);
1348
1349/// The runtime mechanism used to load a module.
1350#[derive(
1351    Debug,
1352    Clone,
1353    Copy,
1354    PartialEq,
1355    Eq,
1356    Hash,
1357    serde::Serialize,
1358    serde::Deserialize,
1359    bitcode::Encode,
1360    bitcode::Decode,
1361)]
1362#[repr(u8)]
1363pub enum ModuleLoadMechanism {
1364    /// ECMAScript module loading through imports, re-exports, or import globs.
1365    EsModule = 0,
1366    /// CommonJS module loading through `require()` or `require.context`.
1367    CommonJsRequire = 1,
1368}
1369
1370/// A dynamic import with a partially resolved pattern.
1371#[derive(Debug, Clone)]
1372pub struct DynamicImportPattern {
1373    /// Static prefix of the import path (e.g., "./locales/"). May contain glob characters.
1374    pub prefix: String,
1375    /// Static suffix of the import path (e.g., ".json"), if any.
1376    pub suffix: Option<String>,
1377    /// Source span in the original file.
1378    pub span: Span,
1379    /// Runtime mechanism used to load modules matching this pattern.
1380    pub mechanism: ModuleLoadMechanism,
1381}
1382
1383/// Visibility tag from JSDoc/TSDoc comments that suppresses unused-export detection.
1384#[derive(Debug, Clone, Copy, Default, PartialEq, Eq, serde::Serialize, serde::Deserialize)]
1385#[serde(rename_all = "lowercase")]
1386#[repr(u8)]
1387pub enum VisibilityTag {
1388    /// No visibility tag present.
1389    #[default]
1390    None = 0,
1391    /// `@public` or `@api public` -- part of the public API surface.
1392    Public = 1,
1393    /// `@internal` -- exported for internal use (sister packages, build tools).
1394    Internal = 2,
1395    /// `@beta` -- public but unstable, may change without notice.
1396    Beta = 3,
1397    /// `@alpha` -- early preview, may change drastically without notice.
1398    Alpha = 4,
1399    /// `@expected-unused` -- intentionally unused, should warn when it becomes used.
1400    ExpectedUnused = 5,
1401}
1402
1403impl VisibilityTag {
1404    /// Whether this tag permanently suppresses unused-export detection.
1405    /// `ExpectedUnused` is handled separately (conditionally suppresses,
1406    /// reports stale when the export becomes used).
1407    pub const fn suppresses_unused(self) -> bool {
1408        matches!(
1409            self,
1410            Self::Public | Self::Internal | Self::Beta | Self::Alpha
1411        )
1412    }
1413
1414    /// For serde `skip_serializing_if`.
1415    pub fn is_none(&self) -> bool {
1416        matches!(self, Self::None)
1417    }
1418}
1419
1420/// An export declaration.
1421#[derive(Debug, Clone, serde::Serialize)]
1422pub struct ExportInfo {
1423    /// The exported name (named or default).
1424    pub name: ExportName,
1425    /// The local binding name, if different from the exported name.
1426    pub local_name: Option<String>,
1427    /// Whether this is a type-only export (`export type`).
1428    pub is_type_only: bool,
1429    /// Whether this export is registered through a runtime side effect at module load time.
1430    #[serde(default, skip_serializing_if = "std::ops::Not::not")]
1431    pub is_side_effect_used: bool,
1432    /// Visibility tag from JSDoc/TSDoc comment.
1433    #[serde(default, skip_serializing_if = "VisibilityTag::is_none")]
1434    pub visibility: VisibilityTag,
1435    /// Human-authored reason on `@expected-unused -- <reason>`, when present.
1436    #[serde(default, skip_serializing_if = "Option::is_none")]
1437    pub expected_unused_reason: Option<String>,
1438    /// Source span of the export declaration.
1439    #[serde(serialize_with = "serialize_span")]
1440    pub span: Span,
1441    /// Members of this export (for enums, classes, and namespaces).
1442    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1443    pub members: Vec<MemberInfo>,
1444    /// The local name of the parent class from `extends` clause, if any.
1445    #[serde(default, skip_serializing_if = "Option::is_none")]
1446    pub super_class: Option<String>,
1447}
1448
1449/// Additional heritage metadata for an exported class.
1450#[derive(
1451    Debug,
1452    Clone,
1453    serde::Serialize,
1454    serde::Deserialize,
1455    bitcode::Encode,
1456    bitcode::Decode,
1457    PartialEq,
1458    Eq,
1459)]
1460pub struct ClassHeritageInfo {
1461    /// Export name (`default` for default-exported classes).
1462    pub export_name: String,
1463    /// Parent class name from the `extends` clause, if any.
1464    pub super_class: Option<String>,
1465    /// Interface names from the class `implements` clause.
1466    pub implements: Vec<String>,
1467    /// Ordered class type-parameter names used to compose concrete arguments
1468    /// through multi-hop inheritance.
1469    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1470    pub type_parameters: Vec<String>,
1471    /// Typed instance bindings used to resolve member-access chains in external templates.
1472    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1473    pub instance_bindings: Vec<(String, String)>,
1474    /// Positional type arguments on the `extends` clause (the `<DerivedClient>`
1475    /// in `extends BaseService<DerivedClient>`); an empty string marks a
1476    /// positional arg that is not a plain type reference. Lets the analyze layer
1477    /// substitute a base class's generic instance-binding field type with the
1478    /// subclass's concrete type argument (issue #1910).
1479    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1480    pub super_class_type_args: Vec<String>,
1481    /// Instance-binding fields whose annotation is exactly a class type
1482    /// parameter, as `(field_name, type_param_index)`. Lets an inherited generic
1483    /// property resolve to the subclass's concrete type argument rather than the
1484    /// constraint (issue #1910).
1485    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1486    pub generic_instance_bindings: Vec<(String, usize)>,
1487}
1488
1489/// An exported free-function factory proven to return one class instance.
1490///
1491/// `export function useApi() { return new RESTApi() }` records
1492/// `FactoryReturnExport { export_name: "useApi", class_local_name: "RESTApi" }`.
1493/// The `class_local_name` is the factory module's own LOCAL name, resolved at
1494/// analyze time through that module's imports/exports to the real class export,
1495/// so a cross-module `const x = useApi(); x.member` consumer credits the class
1496/// across the boundary. See issue #1441 (Part A).
1497#[derive(
1498    Debug,
1499    Clone,
1500    serde::Serialize,
1501    serde::Deserialize,
1502    bitcode::Encode,
1503    bitcode::Decode,
1504    PartialEq,
1505    Eq,
1506)]
1507pub struct FactoryReturnExport {
1508    /// Public export name (honors `export { useApi as useRestApi }`).
1509    pub export_name: String,
1510    /// The returned class's local name within the factory module.
1511    pub class_local_name: String,
1512}
1513
1514/// One resolved property of an object-literal factory return: a dotted property
1515/// path mapped to the class the value at that path is an instance of.
1516///
1517/// `return { invoke: { orders: factory.ordersPage } }` records
1518/// `{ property_path: "invoke.orders", class_local_name: "OrdersPage" }`. The class
1519/// name is the factory module's own LOCAL name, resolved at analyze time through the
1520/// factory module's imports to the real class export. See issue #1858.
1521#[derive(
1522    Debug,
1523    Clone,
1524    serde::Serialize,
1525    serde::Deserialize,
1526    bitcode::Encode,
1527    bitcode::Decode,
1528    PartialEq,
1529    Eq,
1530)]
1531pub struct FactoryReturnObjectProperty {
1532    /// Dotted property path from the returned object literal (`orders`, `invoke.orders`).
1533    pub property_path: String,
1534    /// The property value's class local name within the factory module.
1535    pub class_local_name: String,
1536}
1537
1538/// An exported factory function that returns an object literal whose property
1539/// values are class instances, joined to its public export name.
1540///
1541/// A cross-module `const ui = createUi(); ui.orders.member` consumer emits a
1542/// `FactoryReturnObjectPropertyAccess` fact; the analyze layer resolves `export_name`
1543/// through the consumer's imports to this module, matches `property_path`, and credits
1544/// `member` on the resolved class (gated on it being a class with members). See issue #1858.
1545#[derive(
1546    Debug,
1547    Clone,
1548    serde::Serialize,
1549    serde::Deserialize,
1550    bitcode::Encode,
1551    bitcode::Decode,
1552    PartialEq,
1553    Eq,
1554)]
1555pub struct FactoryReturnObjectShapeExport {
1556    /// Public export name (honors `export { createUi as createOrdersUi }`).
1557    pub export_name: String,
1558    /// Resolved `(property_path -> class_local_name)` entries for the returned literal.
1559    pub properties: Box<[FactoryReturnObjectProperty]>,
1560}
1561
1562/// A named-type property whose declared type is a named type reference.
1563///
1564/// `interface Opts { c: OptDep }` (or `type Opts = { c: OptDep }`) records
1565/// `TypeMemberTypeEntry { type_name: "Opts", property: "c", property_type: "OptDep" }`.
1566/// Both `type_name` and `property_type` are the DECLARING module's own local
1567/// names; resolution through that module's imports/exports is deferred to
1568/// analyze time, mirroring `FactoryReturnExport.class_local_name`. Consumed by
1569/// the `unused-class-member` typed-property-hop join so a consumer's
1570/// `this.opts.c.optM()` credits `OptDep.optM` across module boundaries.
1571/// See issue #1785.
1572#[derive(
1573    Debug,
1574    Clone,
1575    serde::Serialize,
1576    serde::Deserialize,
1577    bitcode::Encode,
1578    bitcode::Decode,
1579    PartialEq,
1580    Eq,
1581)]
1582pub struct TypeMemberTypeEntry {
1583    /// Local interface or type-alias name declaring the property.
1584    pub type_name: String,
1585    /// Property name declared on the type.
1586    pub property: String,
1587    /// The property's declared type name (local to the declaring module).
1588    pub property_type: String,
1589}
1590
1591/// A module-scope declaration that can be used as a TypeScript type.
1592#[derive(Debug, Clone, serde::Serialize, PartialEq, Eq)]
1593pub struct LocalTypeDeclaration {
1594    /// Local declaration name.
1595    pub name: String,
1596    /// Declaration identifier span.
1597    #[serde(serialize_with = "serialize_span")]
1598    pub span: Span,
1599}
1600
1601/// A reference from an exported symbol's public signature to a type name.
1602#[derive(Debug, Clone, serde::Serialize, PartialEq, Eq)]
1603pub struct PublicSignatureTypeReference {
1604    /// Exported symbol whose signature contains the reference.
1605    pub export_name: String,
1606    /// Referenced type name. Qualified names are reduced to their root identifier.
1607    pub type_name: String,
1608    /// Reference span.
1609    #[serde(serialize_with = "serialize_span")]
1610    pub span: Span,
1611}
1612
1613/// A member of an enum, class, or namespace.
1614#[derive(Debug, Clone, serde::Serialize)]
1615pub struct MemberInfo {
1616    /// Member name.
1617    pub name: String,
1618    /// The kind of member (enum, class method/property, or namespace member).
1619    pub kind: MemberKind,
1620    /// Source span of the member declaration.
1621    #[serde(serialize_with = "serialize_span")]
1622    pub span: Span,
1623    /// Whether this member has decorators (e.g., `@Column()`, `@Inject()`).
1624    /// Decorated members are used by frameworks at runtime and should not be
1625    /// flagged as unused class members, unless every decorator on the member
1626    /// is opted out via `FallowConfig.ignore_decorators`.
1627    #[serde(default, skip_serializing_if = "std::ops::Not::not")]
1628    pub has_decorator: bool,
1629    /// Full dotted path of each decorator on this member, in source order.
1630    /// `@step("x")` stores `"step"`; `@ns.foo` stores `"ns.foo"`. Empty for
1631    /// undecorated members, Angular signal-initializer properties (which set
1632    /// `has_decorator` without a literal decorator AST node), and decorators
1633    /// whose expression is not an identifier ladder (the entry is the empty
1634    /// string in that case, treated as never-matching by the predicate).
1635    #[serde(default, skip_serializing_if = "Vec::is_empty")]
1636    pub decorator_names: Vec<String>,
1637    /// True when this is a static class method that returns a fresh instance
1638    /// of the same class: either via `return new this()` / `return new
1639    /// <SameClassName>()` in the body's last statement, or via a declared
1640    /// return type matching the class name. Consumers calling such a static
1641    /// method receive an instance, so the call result's member accesses are
1642    /// credited against the class. See issues #346, #387.
1643    #[serde(default, skip_serializing_if = "std::ops::Not::not")]
1644    pub is_instance_returning_static: bool,
1645    /// True when this is an instance class method whose call result is an
1646    /// instance of the same class. Qualifies when the declared return type
1647    /// matches the class name (`setX(): EventBuilder { ... }`) or when the
1648    /// body's last statement is `return this`. The analyze layer walks fluent
1649    /// chains (`Class.factory().setX().setY()`) only through methods carrying
1650    /// this flag, so the chain stops at a non-self-returning method like
1651    /// `.build()`. See issue #387.
1652    #[serde(default, skip_serializing_if = "std::ops::Not::not")]
1653    pub is_self_returning: bool,
1654}
1655
1656/// The kind of member.
1657#[derive(
1658    Debug,
1659    Clone,
1660    Copy,
1661    PartialEq,
1662    Eq,
1663    serde::Serialize,
1664    serde::Deserialize,
1665    bitcode::Encode,
1666    bitcode::Decode,
1667)]
1668#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1669#[serde(rename_all = "snake_case")]
1670pub enum MemberKind {
1671    /// A TypeScript enum member.
1672    EnumMember,
1673    /// A class method.
1674    ClassMethod,
1675    /// A class property.
1676    ClassProperty,
1677    /// A member exported from a TypeScript namespace.
1678    NamespaceMember,
1679    /// A member declared by a store object (Pinia `state` / `getters` /
1680    /// `actions` key, or a setup-store returned key). Cross-graph dead-member
1681    /// detection: a store member never accessed by any consumer project-wide.
1682    StoreMember,
1683}
1684
1685/// A static member access expression (e.g., `Status.Active`, `MyClass.create()`).
1686#[derive(Debug, Clone, serde::Serialize, serde::Deserialize, bitcode::Encode, bitcode::Decode)]
1687pub struct MemberAccess {
1688    /// The identifier being accessed (the import name).
1689    pub object: String,
1690    /// The member being accessed.
1691    pub member: String,
1692}
1693
1694/// Direct export declarations that TypeScript treats as one merged symbol.
1695///
1696/// Spans identify the exact declaration slots without conflating unrelated
1697/// type/value declarations that happen to share a name.
1698#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1699#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1700pub struct DeclarationMergeFact {
1701    /// Identifier spans for the declarations in this merge group.
1702    pub export_spans: Vec<(u32, u32)>,
1703}
1704
1705/// A default import binding consumed outside a statically known member access.
1706///
1707/// Resolution decides whether the target is an object-shaped module such as a
1708/// CSS Module or a proven static CommonJS object map. Keeping this fact
1709/// target-agnostic lets aliases and extensionless specifiers use the resolved
1710/// target path without broadening ordinary default-import behavior.
1711#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1712#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1713pub struct DefaultImportWholeObjectUseFact {
1714    /// Local binding name in the importing module.
1715    pub local_name: String,
1716}
1717
1718/// A typed extraction fact for cross-layer analysis.
1719#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
1720#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
1721#[serde(tag = "kind", rename_all = "snake_case")]
1722pub enum SemanticFact {
1723    /// A class member referenced from an Angular template, host binding, or
1724    /// component metadata entry.
1725    AngularTemplateMemberAccess(AngularTemplateMemberAccessFact),
1726    /// An Angular component field whose value is an array of a class.
1727    AngularComponentFieldArrayType(AngularComponentFieldArrayTypeFact),
1728    /// An Angular component spreads `this` into an object literal, so component
1729    /// input/output usage is opaque.
1730    AngularThisSpread(AngularThisSpreadFact),
1731    /// A member access on a value returned by an imported static factory call.
1732    FactoryCallMemberAccess(FactoryCallMemberAccessFact),
1733    /// A member access on a value returned by an imported free-function factory
1734    /// (`const x = importedFactory(); x.member`). See issue #1441 (Part A).
1735    FactoryFnMemberAccess(FactoryFnMemberAccessFact),
1736    /// A member access reached through a property of a value whose declared
1737    /// type is an imported named type (`this.opts.c.optM()` where `opts` is
1738    /// typed by an imported interface). See issue #1785.
1739    TypedPropertyMemberAccess(TypedPropertyMemberAccessFact),
1740    /// A member access on a fluent chain rooted at an imported static factory.
1741    FluentChainMemberAccess(FluentChainMemberAccessFact),
1742    /// A member access on a fluent chain rooted at a `new` expression.
1743    FluentChainNewMemberAccess(FluentChainNewMemberAccessFact),
1744    /// A member access on a Playwright fixture object inside a test callback.
1745    PlaywrightFixtureUse(PlaywrightFixtureUseFact),
1746    /// A Playwright fixture definition declared by a typed `test.extend<T>()`.
1747    PlaywrightFixtureDefinition(PlaywrightFixtureDefinitionFact),
1748    /// A Playwright fixture wrapper alias declared by `mergeTests` or `.extend`.
1749    PlaywrightFixtureAlias(PlaywrightFixtureAliasFact),
1750    /// A nested Playwright fixture binding declared by a fixture type alias.
1751    PlaywrightFixtureType(PlaywrightFixtureTypeFact),
1752    /// An exported value whose runtime instance targets a local class or interface.
1753    InstanceExportBinding(InstanceExportBindingFact),
1754    /// A dynamic custom-element tag render that makes static Lit tag credit opaque.
1755    DynamicCustomElementRender(DynamicCustomElementRenderFact),
1756    /// A factory-returned value consumed in a way that can expose ANY property
1757    /// (`const { a, ...rest } = importedFactory()`, a computed destructure key).
1758    /// The returned class must be treated as wholly used: crediting only the
1759    /// visible keys would leave a live member reported as dead.
1760    ///
1761    /// Appended, never inserted: `bitcode` encodes an enum by ordinal, so moving an
1762    /// existing variant would make an old cache decode one fact as another.
1763    FactoryFnWholeObject(FactoryFnWholeObjectFact),
1764    /// A member access reached through a property of a value returned by an
1765    /// imported factory that returns an object literal (`const ui = createUi();
1766    /// ui.orders.member`). Appended after `FactoryFnWholeObject`, never inserted
1767    /// (bitcode encodes by ordinal). See issue #1858.
1768    FactoryReturnObjectPropertyAccess(FactoryReturnObjectPropertyAccessFact),
1769    /// A `this.<field>.<member>` access tied to its exact enclosing class.
1770    /// Appended because bitcode encodes enum variants by ordinal.
1771    ClassThisMemberAccess(ClassThisMemberAccessFact),
1772    /// A whole-object use of `this.<field>...` tied to its exact enclosing class.
1773    /// Appended because bitcode encodes enum variants by ordinal.
1774    ClassThisWholeObjectUse(ClassThisWholeObjectUseFact),
1775    /// An ordered Vitest module-mock operation with direct imported-`vi`
1776    /// provenance.
1777    ///
1778    /// Appended because bitcode encodes enum variants by ordinal. The ordinary
1779    /// dynamic-import fact for the same source remains authoritative for graph
1780    /// reachability and unresolved-import diagnostics.
1781    VitestModuleMockOperation(VitestModuleMockOperationFact),
1782    /// Direct declarations that form one legal TypeScript declaration merge.
1783    /// Appended because bitcode encodes enum variants by ordinal.
1784    DeclarationMerge(DeclarationMergeFact),
1785    /// A named type whose direct receiver surface is contributed by another
1786    /// named type (for example `Pick<Base, ...>` or a union constituent).
1787    /// Appended because bitcode encodes enum variants by ordinal.
1788    TypeAliasSurfaceTarget(TypeAliasSurfaceTargetFact),
1789    /// A string-valued TypeScript enum member available as a static property key.
1790    /// Appended because bitcode encodes enum variants by ordinal.
1791    StringEnumMemberValue(StringEnumMemberValueFact),
1792    /// A computed property access keyed by a static enum member.
1793    /// Appended because bitcode encodes enum variants by ordinal.
1794    ComputedEnumKeyUse(ComputedEnumKeyUseFact),
1795    /// A directly declared non-optional member required by a named interface
1796    /// or object type.
1797    /// Appended because bitcode encodes enum variants by ordinal.
1798    RequiredTypeMember(RequiredTypeMemberFact),
1799    /// The file's complete CommonJS assignment surface is exactly one
1800    /// top-level `module.exports = { ... }` object literal whose keys are all
1801    /// static and which has no transpilation marker or competing assignment.
1802    /// Appended because bitcode encodes enum variants by ordinal.
1803    CjsSingleStaticObjectMap,
1804    /// A default import binding was handed on as a whole object.
1805    /// Appended because bitcode encodes enum variants by ordinal.
1806    DefaultImportWholeObjectUse(DefaultImportWholeObjectUseFact),
1807}
1808
1809/// Iterate Angular template member names from typed semantic facts.
1810fn angular_template_member_names_from_parts(
1811    semantic_facts: &[SemanticFact],
1812) -> impl Iterator<Item = &str> {
1813    semantic_facts.iter().filter_map(|fact| {
1814        if let SemanticFact::AngularTemplateMemberAccess(access) = fact {
1815            Some(access.member.as_str())
1816        } else {
1817            None
1818        }
1819    })
1820}
1821
1822/// Iterate Angular template member names from a module's typed facts.
1823pub fn angular_template_member_names(module: &ModuleInfo) -> impl Iterator<Item = &str> {
1824    angular_template_member_names_from_parts(&module.semantic_facts)
1825}
1826
1827/// Return true when the fact slice contains any Angular template member
1828/// reference.
1829#[must_use]
1830fn has_angular_template_members_from_parts(semantic_facts: &[SemanticFact]) -> bool {
1831    angular_template_member_names_from_parts(semantic_facts)
1832        .next()
1833        .is_some()
1834}
1835
1836/// Return true when the module contains any Angular template member reference.
1837#[must_use]
1838pub fn has_angular_template_members(module: &ModuleInfo) -> bool {
1839    has_angular_template_members_from_parts(&module.semantic_facts)
1840}
1841
1842/// Return true when a module spreads `this` in Angular template context.
1843#[must_use]
1844pub fn has_angular_this_spread(module: &ModuleInfo) -> bool {
1845    SemanticFactView::new(&module.semantic_facts, &module.member_accesses).has_angular_this_spread()
1846}
1847
1848/// Return true when a module contains a dynamic custom-element render.
1849#[must_use]
1850pub fn has_dynamic_custom_element_render(module: &ModuleInfo) -> bool {
1851    module
1852        .semantic_facts
1853        .iter()
1854        .any(|fact| matches!(fact, SemanticFact::DynamicCustomElementRender(_)))
1855}
1856
1857/// Typed-first view over semantic extraction facts.
1858///
1859/// Extraction populates `semantic_facts` directly. The `member_accesses` slice
1860/// remains available for consumers that need ordinary source member accesses,
1861/// but it is no longer decoded as a string protocol for semantic facts.
1862#[derive(Debug, Clone, Copy)]
1863pub struct SemanticFactView<'a> {
1864    semantic_facts: &'a [SemanticFact],
1865    member_accesses: &'a [MemberAccess],
1866}
1867
1868impl<'a> SemanticFactView<'a> {
1869    /// Create a typed semantic fact view from current semantic facts plus
1870    /// ordinary source member accesses.
1871    #[must_use]
1872    pub const fn new(
1873        semantic_facts: &'a [SemanticFact],
1874        member_accesses: &'a [MemberAccess],
1875    ) -> Self {
1876        Self {
1877            semantic_facts,
1878            member_accesses,
1879        }
1880    }
1881
1882    /// Iterate typed semantic facts.
1883    pub fn facts(self) -> impl Iterator<Item = &'a SemanticFact> + 'a {
1884        self.semantic_facts.iter()
1885    }
1886
1887    /// Iterate Angular template member references.
1888    pub fn angular_template_member_names(self) -> impl Iterator<Item = &'a str> + 'a {
1889        angular_template_member_names_from_parts(self.semantic_facts)
1890    }
1891
1892    /// Collect Angular component field array-type facts.
1893    pub fn angular_component_field_array_types(self) -> Vec<AngularComponentFieldArrayTypeFact> {
1894        angular_component_field_array_type_facts(self.semantic_facts)
1895            .cloned()
1896            .collect()
1897    }
1898
1899    /// Return true when any Angular template member reference exists.
1900    #[must_use]
1901    pub fn has_angular_template_members(self) -> bool {
1902        self.angular_template_member_names().next().is_some()
1903    }
1904
1905    /// Return true when a module spreads `this` in Angular template context.
1906    #[must_use]
1907    pub fn has_angular_this_spread(self) -> bool {
1908        self.semantic_facts
1909            .iter()
1910            .any(|fact| matches!(fact, SemanticFact::AngularThisSpread(_)))
1911    }
1912
1913    /// Iterate ordinary source member accesses.
1914    pub fn ordinary_member_accesses(self) -> impl Iterator<Item = &'a MemberAccess> + 'a {
1915        self.member_accesses.iter()
1916    }
1917
1918    /// Collect class-scoped `this` member-access facts.
1919    pub fn class_this_member_accesses(self) -> Vec<ClassThisMemberAccessFact> {
1920        class_this_member_access_facts(self.semantic_facts)
1921            .cloned()
1922            .collect()
1923    }
1924
1925    /// Collect class-scoped `this` whole-object-use facts.
1926    pub fn class_this_whole_object_uses(self) -> Vec<ClassThisWholeObjectUseFact> {
1927        class_this_whole_object_use_facts(self.semantic_facts)
1928            .cloned()
1929            .collect()
1930    }
1931
1932    /// Collect instance-export binding facts.
1933    pub fn instance_export_bindings(self) -> Vec<InstanceExportBindingFact> {
1934        instance_export_binding_facts(self.semantic_facts)
1935            .cloned()
1936            .collect()
1937    }
1938
1939    /// Collect static factory call member facts.
1940    pub fn factory_call_member_accesses(self) -> Vec<FactoryCallMemberAccessFact> {
1941        factory_call_member_access_facts(self.semantic_facts)
1942            .cloned()
1943            .collect()
1944    }
1945
1946    /// Collect free-function factory-return member facts.
1947    pub fn factory_fn_member_accesses(self) -> Vec<FactoryFnMemberAccessFact> {
1948        factory_fn_member_access_facts(self.semantic_facts)
1949            .cloned()
1950            .collect()
1951    }
1952
1953    /// Collect factory-return whole-object consumption facts.
1954    pub fn factory_fn_whole_objects(self) -> Vec<FactoryFnWholeObjectFact> {
1955        factory_fn_whole_object_facts(self.semantic_facts)
1956            .cloned()
1957            .collect()
1958    }
1959
1960    /// Collect object-literal factory-return property member facts.
1961    pub fn factory_return_object_property_accesses(
1962        self,
1963    ) -> Vec<FactoryReturnObjectPropertyAccessFact> {
1964        factory_return_object_property_access_facts(self.semantic_facts)
1965            .cloned()
1966            .collect()
1967    }
1968
1969    /// Collect typed-property-hop member facts.
1970    pub fn typed_property_member_accesses(self) -> Vec<TypedPropertyMemberAccessFact> {
1971        typed_property_member_access_facts(self.semantic_facts)
1972            .cloned()
1973            .collect()
1974    }
1975
1976    /// Collect members whose presence is required by a named structural type.
1977    pub fn required_type_members(self) -> impl Iterator<Item = &'a RequiredTypeMemberFact> + 'a {
1978        required_type_member_facts(self.semantic_facts)
1979    }
1980
1981    /// Collect type-alias receiver-surface edges.
1982    pub fn type_alias_surface_targets(self) -> Vec<TypeAliasSurfaceTargetFact> {
1983        type_alias_surface_target_facts(self.semantic_facts)
1984            .cloned()
1985            .collect()
1986    }
1987
1988    /// Collect string-valued enum member definitions.
1989    pub fn string_enum_member_values(self) -> Vec<StringEnumMemberValueFact> {
1990        string_enum_member_value_facts(self.semantic_facts)
1991            .cloned()
1992            .collect()
1993    }
1994
1995    /// Collect computed property accesses keyed by enum members.
1996    pub fn computed_enum_key_uses(self) -> Vec<ComputedEnumKeyUseFact> {
1997        computed_enum_key_use_facts(self.semantic_facts)
1998            .cloned()
1999            .collect()
2000    }
2001
2002    /// Collect static factory fluent-chain member facts.
2003    pub fn fluent_chain_member_accesses(self) -> Vec<FluentChainMemberAccessFact> {
2004        fluent_chain_member_access_facts(self.semantic_facts)
2005            .cloned()
2006            .collect()
2007    }
2008
2009    /// Collect constructor-rooted fluent-chain member facts.
2010    pub fn fluent_chain_new_member_accesses(self) -> Vec<FluentChainNewMemberAccessFact> {
2011        fluent_chain_new_member_access_facts(self.semantic_facts)
2012            .cloned()
2013            .collect()
2014    }
2015
2016    /// Collect Playwright fixture-use facts.
2017    pub fn playwright_fixture_uses(self) -> Vec<PlaywrightFixtureUseFact> {
2018        playwright_fixture_use_facts(self.semantic_facts)
2019            .cloned()
2020            .collect()
2021    }
2022
2023    /// Collect Playwright fixture-definition facts.
2024    pub fn playwright_fixture_definitions(self) -> Vec<PlaywrightFixtureDefinitionFact> {
2025        playwright_fixture_definition_facts(self.semantic_facts)
2026            .cloned()
2027            .collect()
2028    }
2029
2030    /// Collect Playwright fixture-alias facts.
2031    pub fn playwright_fixture_aliases(self) -> Vec<PlaywrightFixtureAliasFact> {
2032        playwright_fixture_alias_facts(self.semantic_facts)
2033            .cloned()
2034            .collect()
2035    }
2036
2037    /// Collect Playwright fixture-type facts.
2038    pub fn playwright_fixture_types(self) -> Vec<PlaywrightFixtureTypeFact> {
2039        playwright_fixture_type_facts(self.semantic_facts)
2040            .cloned()
2041            .collect()
2042    }
2043}
2044
2045/// Iterate ordinary whole-object uses.
2046pub fn ordinary_whole_object_uses(whole_object_uses: &[String]) -> impl Iterator<Item = &str> {
2047    whole_object_uses.iter().map(String::as_str)
2048}
2049
2050/// Iterate typed instance-export binding facts.
2051fn instance_export_binding_facts(
2052    semantic_facts: &[SemanticFact],
2053) -> impl Iterator<Item = &InstanceExportBindingFact> {
2054    semantic_facts.iter().filter_map(|fact| {
2055        if let SemanticFact::InstanceExportBinding(access) = fact {
2056            Some(access)
2057        } else {
2058            None
2059        }
2060    })
2061}
2062
2063fn class_this_member_access_facts(
2064    semantic_facts: &[SemanticFact],
2065) -> impl Iterator<Item = &ClassThisMemberAccessFact> {
2066    semantic_facts.iter().filter_map(|fact| {
2067        if let SemanticFact::ClassThisMemberAccess(access) = fact {
2068            Some(access)
2069        } else {
2070            None
2071        }
2072    })
2073}
2074
2075fn class_this_whole_object_use_facts(
2076    semantic_facts: &[SemanticFact],
2077) -> impl Iterator<Item = &ClassThisWholeObjectUseFact> {
2078    semantic_facts.iter().filter_map(|fact| {
2079        if let SemanticFact::ClassThisWholeObjectUse(access) = fact {
2080            Some(access)
2081        } else {
2082            None
2083        }
2084    })
2085}
2086
2087fn angular_component_field_array_type_facts(
2088    semantic_facts: &[SemanticFact],
2089) -> impl Iterator<Item = &AngularComponentFieldArrayTypeFact> {
2090    semantic_facts.iter().filter_map(|fact| {
2091        if let SemanticFact::AngularComponentFieldArrayType(access) = fact {
2092            Some(access)
2093        } else {
2094            None
2095        }
2096    })
2097}
2098
2099/// Iterate typed factory-call member facts.
2100fn factory_call_member_access_facts(
2101    semantic_facts: &[SemanticFact],
2102) -> impl Iterator<Item = &FactoryCallMemberAccessFact> {
2103    semantic_facts.iter().filter_map(|fact| {
2104        if let SemanticFact::FactoryCallMemberAccess(access) = fact {
2105            Some(access)
2106        } else {
2107            None
2108        }
2109    })
2110}
2111
2112/// Iterate typed free-function factory-return member facts.
2113fn factory_fn_member_access_facts(
2114    semantic_facts: &[SemanticFact],
2115) -> impl Iterator<Item = &FactoryFnMemberAccessFact> {
2116    semantic_facts.iter().filter_map(|fact| {
2117        if let SemanticFact::FactoryFnMemberAccess(access) = fact {
2118            Some(access)
2119        } else {
2120            None
2121        }
2122    })
2123}
2124
2125fn factory_fn_whole_object_facts(
2126    semantic_facts: &[SemanticFact],
2127) -> impl Iterator<Item = &FactoryFnWholeObjectFact> {
2128    semantic_facts.iter().filter_map(|fact| {
2129        if let SemanticFact::FactoryFnWholeObject(fact) = fact {
2130            Some(fact)
2131        } else {
2132            None
2133        }
2134    })
2135}
2136
2137/// Iterate object-literal factory-return property member facts.
2138fn factory_return_object_property_access_facts(
2139    semantic_facts: &[SemanticFact],
2140) -> impl Iterator<Item = &FactoryReturnObjectPropertyAccessFact> {
2141    semantic_facts.iter().filter_map(|fact| {
2142        if let SemanticFact::FactoryReturnObjectPropertyAccess(access) = fact {
2143            Some(access)
2144        } else {
2145            None
2146        }
2147    })
2148}
2149
2150/// Iterate typed fluent-chain member facts.
2151fn fluent_chain_member_access_facts(
2152    semantic_facts: &[SemanticFact],
2153) -> impl Iterator<Item = &FluentChainMemberAccessFact> {
2154    semantic_facts.iter().filter_map(|fact| {
2155        if let SemanticFact::FluentChainMemberAccess(access) = fact {
2156            Some(access)
2157        } else {
2158            None
2159        }
2160    })
2161}
2162
2163/// Iterate typed-property-hop member facts.
2164fn typed_property_member_access_facts(
2165    semantic_facts: &[SemanticFact],
2166) -> impl Iterator<Item = &TypedPropertyMemberAccessFact> {
2167    semantic_facts.iter().filter_map(|fact| {
2168        if let SemanticFact::TypedPropertyMemberAccess(access) = fact {
2169            Some(access)
2170        } else {
2171            None
2172        }
2173    })
2174}
2175
2176fn required_type_member_facts(
2177    semantic_facts: &[SemanticFact],
2178) -> impl Iterator<Item = &RequiredTypeMemberFact> {
2179    semantic_facts.iter().filter_map(|fact| {
2180        if let SemanticFact::RequiredTypeMember(required) = fact {
2181            Some(required)
2182        } else {
2183            None
2184        }
2185    })
2186}
2187
2188fn type_alias_surface_target_facts(
2189    semantic_facts: &[SemanticFact],
2190) -> impl Iterator<Item = &TypeAliasSurfaceTargetFact> {
2191    semantic_facts.iter().filter_map(|fact| {
2192        if let SemanticFact::TypeAliasSurfaceTarget(fact) = fact {
2193            Some(fact)
2194        } else {
2195            None
2196        }
2197    })
2198}
2199
2200fn string_enum_member_value_facts(
2201    semantic_facts: &[SemanticFact],
2202) -> impl Iterator<Item = &StringEnumMemberValueFact> {
2203    semantic_facts.iter().filter_map(|fact| {
2204        if let SemanticFact::StringEnumMemberValue(fact) = fact {
2205            Some(fact)
2206        } else {
2207            None
2208        }
2209    })
2210}
2211
2212fn computed_enum_key_use_facts(
2213    semantic_facts: &[SemanticFact],
2214) -> impl Iterator<Item = &ComputedEnumKeyUseFact> {
2215    semantic_facts.iter().filter_map(|fact| {
2216        if let SemanticFact::ComputedEnumKeyUse(fact) = fact {
2217            Some(fact)
2218        } else {
2219            None
2220        }
2221    })
2222}
2223
2224/// Iterate typed constructor-rooted fluent-chain member facts.
2225fn fluent_chain_new_member_access_facts(
2226    semantic_facts: &[SemanticFact],
2227) -> impl Iterator<Item = &FluentChainNewMemberAccessFact> {
2228    semantic_facts.iter().filter_map(|fact| {
2229        if let SemanticFact::FluentChainNewMemberAccess(access) = fact {
2230            Some(access)
2231        } else {
2232            None
2233        }
2234    })
2235}
2236
2237/// Iterate typed Playwright fixture-use facts.
2238fn playwright_fixture_use_facts(
2239    semantic_facts: &[SemanticFact],
2240) -> impl Iterator<Item = &PlaywrightFixtureUseFact> {
2241    semantic_facts.iter().filter_map(|fact| {
2242        if let SemanticFact::PlaywrightFixtureUse(access) = fact {
2243            Some(access)
2244        } else {
2245            None
2246        }
2247    })
2248}
2249
2250/// Iterate typed Playwright fixture-definition facts.
2251fn playwright_fixture_definition_facts(
2252    semantic_facts: &[SemanticFact],
2253) -> impl Iterator<Item = &PlaywrightFixtureDefinitionFact> {
2254    semantic_facts.iter().filter_map(|fact| {
2255        if let SemanticFact::PlaywrightFixtureDefinition(access) = fact {
2256            Some(access)
2257        } else {
2258            None
2259        }
2260    })
2261}
2262
2263/// Iterate typed Playwright fixture-alias facts.
2264fn playwright_fixture_alias_facts(
2265    semantic_facts: &[SemanticFact],
2266) -> impl Iterator<Item = &PlaywrightFixtureAliasFact> {
2267    semantic_facts.iter().filter_map(|fact| {
2268        if let SemanticFact::PlaywrightFixtureAlias(access) = fact {
2269            Some(access)
2270        } else {
2271            None
2272        }
2273    })
2274}
2275
2276/// Iterate typed Playwright fixture-type facts.
2277fn playwright_fixture_type_facts(
2278    semantic_facts: &[SemanticFact],
2279) -> impl Iterator<Item = &PlaywrightFixtureTypeFact> {
2280    semantic_facts.iter().filter_map(|fact| {
2281        if let SemanticFact::PlaywrightFixtureType(access) = fact {
2282            Some(access)
2283        } else {
2284            None
2285        }
2286    })
2287}
2288
2289/// A member name referenced from an Angular template surface.
2290#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2291#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2292pub struct AngularTemplateMemberAccessFact {
2293    /// Referenced class member name.
2294    pub member: String,
2295}
2296
2297/// A typed Angular component field that exposes array elements to templates.
2298#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2299#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2300pub struct AngularComponentFieldArrayTypeFact {
2301    /// Component field name used as the template iterable.
2302    pub field: String,
2303    /// Array element class name.
2304    pub element_class: String,
2305}
2306
2307/// Opaque Angular `{ ...this }` forwarding marker.
2308#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2309#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2310pub struct AngularThisSpreadFact;
2311
2312/// A member access on a static factory call result.
2313#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2314#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2315pub struct FactoryCallMemberAccessFact {
2316    /// Local imported class or namespace object used as the factory callee.
2317    pub callee_object: String,
2318    /// Static factory method invoked on the callee object.
2319    pub callee_method: String,
2320    /// Member accessed on the returned instance-like object.
2321    pub member: String,
2322}
2323
2324/// A member access on a value returned by an imported free-function factory.
2325///
2326/// `const x = importedFactory(); x.member` emits one fact per first-level read
2327/// on `x`. The analyze layer resolves `callee_name` through the consumer's
2328/// imports to the factory's origin module, reads that module's
2329/// `exported_factory_returns` to learn the returned class's local name, resolves
2330/// THAT through the factory module's own imports to the class export, and
2331/// credits `member` on the class. See issue #1441 (Part A).
2332#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2333#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2334pub struct FactoryFnMemberAccessFact {
2335    /// Local imported function used as the factory callee.
2336    pub callee_name: String,
2337    /// Member accessed on the returned instance-like object.
2338    pub member: String,
2339}
2340
2341/// A factory-returned value consumed opaquely, so every member of the class it
2342/// returns must be treated as used.
2343#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2344#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2345pub struct FactoryFnWholeObjectFact {
2346    /// Local imported function used as the factory callee.
2347    pub callee_name: String,
2348}
2349
2350/// A member access reached through a property of a value returned by an imported
2351/// factory that returns an object literal.
2352///
2353/// `const ui = createUi(); ui.orders.member` emits one fact per member read on a
2354/// factory-result property. The analyze layer resolves `callee_name` through the
2355/// consumer's imports to the factory's origin module, reads that module's
2356/// `exported_factory_return_object_shapes` to find the property whose path equals
2357/// `property_path` and its class local name, resolves THAT through the factory
2358/// module's own imports to the class export, and credits `member` on the class
2359/// (gated on the export actually being a class with members). See issue #1858.
2360#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2361#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2362pub struct FactoryReturnObjectPropertyAccessFact {
2363    /// Local imported function used as the factory callee.
2364    pub callee_name: String,
2365    /// Dotted property path between the factory-result local and the final member
2366    /// (e.g. `"orders"` for `ui.orders.member`, `"invoke.orders"` for `ui.invoke.orders.member`).
2367    pub property_path: String,
2368    /// Member accessed on the terminal property's instance.
2369    pub member: String,
2370}
2371
2372/// A member access reached through a typed property hop that the extraction
2373/// layer could not resolve locally.
2374///
2375/// `constructor(private opts: Opts) { ... this.opts.c.optM() }` where `Opts`
2376/// is NOT declared in this file emits
2377/// `TypedPropertyMemberAccessFact { type_name: "Opts", property_path: "c", member: "optM" }`.
2378/// The analyze layer resolves `type_name` through the consumer's imports to the
2379/// declaring module, walks `property_path` through that module's
2380/// `type_member_types`, resolves the terminal type name through the declaring
2381/// module's own imports, and credits `member` on the resolved class (gated on
2382/// the export actually being a class with members). See issue #1785.
2383#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2384#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2385pub struct TypedPropertyMemberAccessFact {
2386    /// Local (usually imported) named-type symbol the receiver is typed by.
2387    pub type_name: String,
2388    /// Remaining dotted property segments between the typed binding and the
2389    /// final member (e.g. `"c"` for `this.opts.c.optM()`).
2390    pub property_path: String,
2391    /// Member accessed on the terminal property's instance.
2392    pub member: String,
2393}
2394
2395/// A class member directly required by a named structural type.
2396///
2397/// Optional properties and methods are excluded: removing an optional
2398/// implementation can preserve assignability, while removing a required one
2399/// from an explicit `implements` contract cannot.
2400#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2401#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2402pub struct RequiredTypeMemberFact {
2403    /// Module-local interface or object-type alias name.
2404    pub type_name: String,
2405    /// Static required property or method name.
2406    pub member: String,
2407}
2408
2409/// One direct contributor to a named type alias's receiver surface.
2410///
2411/// Nested property types are deliberately excluded: in
2412/// `{ nested: Nested }`, `Alias.member` does not access `Nested.member`.
2413#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2414#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2415pub struct TypeAliasSurfaceTargetFact {
2416    /// Module-local alias declaration name.
2417    pub alias_name: String,
2418    /// Module-local or imported named type contributing the direct surface.
2419    pub target_name: String,
2420}
2421
2422/// A statically known string value of a TypeScript enum member.
2423#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2424#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2425pub struct StringEnumMemberValueFact {
2426    /// Module-local enum declaration name.
2427    pub enum_name: String,
2428    /// Static enum member name.
2429    pub member_name: String,
2430    /// Exact string initializer value.
2431    pub value: String,
2432}
2433
2434/// A computed property access whose key is a static enum member.
2435#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2436#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2437pub struct ComputedEnumKeyUseFact {
2438    /// Local enum object used as the key source.
2439    pub key_object: String,
2440    /// Static member selected from the enum object.
2441    pub key_member: String,
2442}
2443
2444/// A member access on a fluent chain rooted at a static factory call.
2445#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2446#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2447pub struct FluentChainMemberAccessFact {
2448    /// Local imported class or namespace object used as the chain root.
2449    pub root_object: String,
2450    /// Static factory method that starts the fluent chain.
2451    pub root_method: String,
2452    /// Intermediate fluent methods between the root method and final member.
2453    pub chain: Vec<String>,
2454    /// Member accessed at this chain step.
2455    pub member: String,
2456}
2457
2458/// A member access on a fluent chain rooted at a `new` expression.
2459#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2460#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2461pub struct FluentChainNewMemberAccessFact {
2462    /// Local imported class constructed by the `new` expression.
2463    pub class_name: String,
2464    /// Intermediate fluent methods between construction and final member.
2465    pub chain: Vec<String>,
2466    /// Member accessed at this chain step.
2467    pub member: String,
2468}
2469
2470/// A member access on a Playwright fixture object inside a test callback.
2471#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2472#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2473pub struct PlaywrightFixtureUseFact {
2474    /// Local test function or wrapper used as the callback callee.
2475    pub test_name: String,
2476    /// Fixture name or dotted fixture path referenced in the callback.
2477    pub fixture_name: String,
2478    /// Member accessed on the fixture target.
2479    pub member: String,
2480}
2481
2482/// A Playwright fixture definition declared by a typed `test.extend<T>()`.
2483#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2484#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2485pub struct PlaywrightFixtureDefinitionFact {
2486    /// Local test function or wrapper receiving the fixture definition.
2487    pub test_name: String,
2488    /// Fixture name or dotted fixture path declared by the fixture type.
2489    pub fixture_name: String,
2490    /// Local type symbol used as the fixture target.
2491    pub type_name: String,
2492}
2493
2494/// A Playwright fixture wrapper alias declared by `mergeTests` or `.extend`.
2495#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2496#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2497pub struct PlaywrightFixtureAliasFact {
2498    /// Local test function or wrapper that inherits fixture definitions.
2499    pub test_name: String,
2500    /// Local test function or wrapper inherited by `test_name`.
2501    pub base_name: String,
2502}
2503
2504/// A nested Playwright fixture binding declared by a fixture type alias.
2505#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2506#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2507pub struct PlaywrightFixtureTypeFact {
2508    /// Local type alias containing the nested fixture binding.
2509    pub alias_name: String,
2510    /// Fixture name or dotted fixture path declared inside the type alias.
2511    pub fixture_name: String,
2512    /// Local type symbol used as the nested fixture target.
2513    pub type_name: String,
2514}
2515
2516/// An exported value whose runtime instance targets a local class or interface.
2517#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2518#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2519pub struct InstanceExportBindingFact {
2520    /// Exported binding name.
2521    pub export_name: String,
2522    /// Local class or interface symbol used as the instance target.
2523    pub target_name: String,
2524}
2525
2526/// Opaque marker for a dynamic custom-element render site.
2527#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2528#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2529pub struct DynamicCustomElementRenderFact;
2530
2531/// The action performed by a Vitest module-mock operation.
2532#[derive(Debug, Clone, Copy, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2533#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2534#[serde(rename_all = "snake_case")]
2535pub enum VitestModuleMockAction {
2536    /// Register a mock. `factory_replaces_original` is true only when the
2537    /// factory is structurally closed and cannot load the original module.
2538    ///
2539    /// Automock (`vi.mock` / `jest.mock` without a factory) is always
2540    /// `factory_replaces_original: false` by decision (issue #2082). For
2541    /// Vitest, the runner derives the mocked shape by importing the original
2542    /// module, so its top-level code executes at collection time, and
2543    /// file-level masking cannot express "module evaluated but exports
2544    /// stubbed". For Jest, a `__mocks__` sibling takes precedence and the
2545    /// original is genuinely not required, but the manual mock itself may
2546    /// load the original (`jest.requireActual`), and proving it never does
2547    /// would need a cross-file factory proof. Both runners therefore keep
2548    /// coverage credit for the automock form.
2549    Mock {
2550        /// Whether the factory provably replaces the original module.
2551        factory_replaces_original: bool,
2552    },
2553    /// Remove a registered mock and restore the original module.
2554    Unmock,
2555}
2556
2557impl VitestModuleMockAction {
2558    /// Whether this operation registers a proven complete replacement.
2559    #[must_use]
2560    pub const fn replaces_original(self) -> bool {
2561        matches!(
2562            self,
2563            Self::Mock {
2564                factory_replaces_original: true
2565            }
2566        )
2567    }
2568}
2569
2570/// Ordered Vitest module-mock operation with a static source target.
2571///
2572/// The declaring [`ModuleInfo::file_id`] owns the test-root provenance. The
2573/// resolver consumes `source` through its canonical specifier pipeline; this
2574/// fact deliberately carries no resolved path or duplicate diagnostic span.
2575#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2576#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2577pub struct VitestModuleMockOperationFact {
2578    /// Static module specifier passed to `vi.mock` or `vi.unmock`.
2579    pub source: String,
2580    /// Source-order position of the call within the declaring module.
2581    pub call_start: u32,
2582    /// Typed mock or unmock action.
2583    pub action: VitestModuleMockAction,
2584}
2585
2586/// A `this`-rooted member access with exact enclosing-class provenance.
2587#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2588#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2589pub struct ClassThisMemberAccessFact {
2590    /// Enclosing class local name, or `default` for an anonymous default class.
2591    pub class_local_name: String,
2592    /// Dotted receiver spelling beginning with `this.`.
2593    pub object: String,
2594    /// Terminal member being accessed.
2595    pub member: String,
2596}
2597
2598/// A whole-object use of a `this`-rooted chain with enclosing-class provenance.
2599#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, bitcode::Encode, bitcode::Decode)]
2600#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
2601pub struct ClassThisWholeObjectUseFact {
2602    /// Enclosing class local name, or `default` for an anonymous default class.
2603    pub class_local_name: String,
2604    /// Dotted receiver spelling beginning with `this.`.
2605    pub object: String,
2606}
2607
2608/// A statically flattenable callee path invoked in a module (e.g. `execSync`,
2609/// `child_process.exec`, `console.log`). One entry per unique `callee_path`
2610/// per module; the span anchors the first occurrence. Consumed by the
2611/// `boundaries.calls.forbidden` detector.
2612#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2613pub struct CalleeUse {
2614    /// The dotted or bare callee path as written at the call site.
2615    pub callee_path: String,
2616    /// Start byte offset of the first call site using this path.
2617    pub span_start: u32,
2618}
2619
2620/// A `"use client"` / `"use server"` directive string written as an expression
2621/// statement in `program.body` (NOT the leading prologue), so the RSC bundler
2622/// silently ignores it. One entry per offending occurrence. Consumed by the
2623/// `misplaced-directive` detector.
2624#[derive(Debug, Clone, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2625pub struct MisplacedDirectiveSite {
2626    /// `true` for `"use server"`, `false` for `"use client"`.
2627    pub is_server: bool,
2628    /// Start byte offset of the misplaced directive statement.
2629    pub span_start: u32,
2630}
2631
2632/// Which side of a dependency-injection link a call site represents.
2633#[derive(Debug, Clone, Copy, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2634pub enum DiRole {
2635    /// `provide(KEY, value)` / `app.provide(KEY, value)` / `setContext(KEY, value)`.
2636    Provide,
2637    /// `inject(KEY)` / `getContext(KEY)`.
2638    Inject,
2639}
2640
2641/// Which framework's DI API a call site came from (drives the finding message).
2642#[derive(Debug, Clone, Copy, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2643pub enum DiFramework {
2644    /// Vue `provide` / `inject` (from `vue` / `@vue/runtime-core`).
2645    Vue,
2646    /// Svelte `setContext` / `getContext` (from `svelte`).
2647    Svelte,
2648    /// Angular `inject(TOKEN)` / `@Inject(TOKEN)` (from `@angular/core`),
2649    /// matched against `{ provide: TOKEN, ... }` provider objects.
2650    Angular,
2651}
2652
2653/// A Vue `provide`/`inject` or Svelte `setContext`/`getContext` call site keyed
2654/// by an identifier symbol. The `key_local` is resolved at analyze time through
2655/// the consuming module's import/export tables to a canonical defining-site
2656/// export key, so a provide and an inject of the same shared symbol unify even
2657/// across barrel re-exports. Consumed by the `unprovided-inject` detector.
2658#[derive(Debug, Clone, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2659pub struct DiKeySite {
2660    /// The key identifier as written at the call site.
2661    pub key_local: String,
2662    /// Whether this is a provide or an inject.
2663    pub role: DiRole,
2664    /// Which framework's API this came from.
2665    pub framework: DiFramework,
2666    /// Start byte offset of the call expression (anchors the finding).
2667    pub span_start: u32,
2668}
2669
2670/// A component prop declared by Vue `<script setup>` `defineProps` or Svelte 5
2671/// `$props()`. `used_in_script` / `used_in_template` are set during extraction;
2672/// the `unused-component-prop` detector flags a prop where neither is true. See
2673/// `harvest_define_props` and `harvest_svelte_props` in `sfc_props.rs`.
2674#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2675pub struct ComponentProp {
2676    /// The declared prop name.
2677    pub name: String,
2678    /// The template/script-visible local binding name: the destructure alias for
2679    /// `const { name: alias } = defineProps()` or
2680    /// `let { name: alias } = $props()`, otherwise the prop name itself. A
2681    /// renamed prop is read through this local, so usage must be checked against
2682    /// it, not the declared name.
2683    pub local: String,
2684    /// Start byte offset of the prop declaration (anchors the finding).
2685    pub span_start: u32,
2686    /// Whether this prop is referenced in the component's `<script>` (a
2687    /// destructured local binding with a resolved reference, or a `props.<name>`
2688    /// member access). For React, this is set-in-body: a resolved reference to the
2689    /// destructured local anywhere in the component function body.
2690    pub used_in_script: bool,
2691    /// Whether this prop name is referenced in the component's `<template>`.
2692    /// Set by `apply_template_usage` when the template scanner credits the name.
2693    /// Always false for React (no template; React uses `used_in_script`).
2694    pub used_in_template: bool,
2695    /// The enclosing component name. Empty for Vue SFCs (one component per file,
2696    /// the file stem is the component, set by the detector). For React this is the
2697    /// component function/arrow name a prop was declared on, so the detector can
2698    /// emit the right `component_name` and apply the per-component abstain ladder
2699    /// (a file can declare several React components).
2700    pub component: String,
2701    /// React-only: `true` when the destructured prop local is referenced at least
2702    /// once OUTSIDE a child-JSX attribute value expression (a substantive
2703    /// consumption: a hook arg, a host-element child, a non-JSX-attr read). When
2704    /// `used_in_script` is true but this is false, the prop is referenced ONLY as
2705    /// the root of forwarded child attribute values, i.e. a pure pass-through.
2706    /// Always `false` for Vue (no forward-vs-consume distinction is computed).
2707    pub used_outside_forward: bool,
2708}
2709
2710/// A Vue `<script setup>` `defineEmits` declared event, harvested from the type
2711/// tuple-call form (`defineEmits<{ (e: 'foo'): void }>()`), the type object form
2712/// (`defineEmits<{ foo: [x: string] }>()`), or the runtime array form
2713/// (`defineEmits(['foo'])`). `used` is set during extraction when the bound emit
2714/// name is called as `emit('<name>')`. The `unused-component-emit` detector flags
2715/// an event where `used` is false. See `harvest_define_emits` in `sfc_props.rs`.
2716#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2717pub struct ComponentEmit {
2718    /// The declared emit event name.
2719    pub name: String,
2720    /// Start byte offset of the emit declaration (anchors the finding).
2721    pub span_start: u32,
2722    /// Whether this event is emitted via `emit('<name>')` somewhere in the
2723    /// component's `<script>`.
2724    pub used: bool,
2725}
2726
2727/// A Svelte custom event dispatched via `dispatch('<name>')`, where `dispatch`
2728/// is the binding from a `const dispatch = createEventDispatcher()` call. Only
2729/// literal-first-arg dispatches are recorded; a `dispatch(<nonLiteral>)` sets
2730/// `ModuleInfo::has_dynamic_dispatch` instead. Consumed by the
2731/// `unused-svelte-event` detector, which flags an event dispatched here but
2732/// listened to nowhere project-wide (the cross-file dead-output direction). The
2733/// span is a byte offset (not an `oxc_span::Span`) so the type round-trips
2734/// through the bitcode cache directly, mirroring `ComponentEmit::span_start`.
2735#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2736pub struct DispatchedEvent {
2737    /// The dispatched event name (the literal first argument).
2738    pub name: String,
2739    /// Start byte offset of the `dispatch(...)` call (anchors the finding).
2740    pub span_start: u32,
2741}
2742
2743/// A declared Angular component/directive input, harvested from an `@Input()`
2744/// decorator or a signal `input()` / `input.required()` / `model()` initializer
2745/// on an Angular-decorated class. Consumed by the `unused-component-input`
2746/// detector, which flags an input read nowhere in its own component (neither the
2747/// template nor the class body). The span is stored as a byte offset (not an
2748/// `oxc_span::Span`) so the type is cheap to mirror onto the cache, matching
2749/// `ComponentEmit::span_start`. `ModuleInfo` is not serialized, so no serde
2750/// attrs are derived here. `bitcode` derives let the type be mirrored directly
2751/// onto `CachedModule` (the same pattern as `ComponentEmit`).
2752#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2753pub struct AngularInputMember {
2754    /// The declared input name (the property key).
2755    pub name: String,
2756    /// Start byte offset of the property key (anchors the finding).
2757    pub span_start: u32,
2758}
2759
2760/// A declared Angular component/directive output, harvested from an `@Output()`
2761/// decorator or a signal `output()` / `outputFromObservable()` initializer on an
2762/// Angular-decorated class. Consumed by the `unused-component-output` detector,
2763/// which flags an output emitted nowhere in its own component. A `model()` is an
2764/// input and a framework-driven output, so it is recorded ONLY as an input and
2765/// never appears here (the implicit `update:` emit is framework-managed). The
2766/// span is a byte offset for the same reason as `AngularInputMember`.
2767#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2768pub struct AngularOutputMember {
2769    /// The declared output name (the property key).
2770    pub name: String,
2771    /// Start byte offset of the property key (anchors the finding).
2772    pub span_start: u32,
2773}
2774
2775/// A declared Angular `@Component` and its `selector` value(s), harvested from a
2776/// `@Component({ selector: '...' })` decorator. Consumed by the Angular arm of
2777/// the `unrendered-component` detector, which flags a component whose every
2778/// element selector is used in NO template project-wide (and that is not
2779/// referenced by class name anywhere, e.g. routed / bootstrapped / dynamically
2780/// rendered). A multi-selector string (`'app-foo, [appBar]'`) is split into the
2781/// `selectors` list. The span is stored as a byte offset (not an
2782/// `oxc_span::Span`) so the type round-trips through the bitcode cache directly,
2783/// mirroring `AngularInputMember::span_start`. `@Directive` is intentionally NOT
2784/// harvested here (directives have no template render). `ModuleInfo` is not
2785/// serialized, so no serde attrs are derived.
2786#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2787pub struct AngularComponentSelector {
2788    /// The declared selector strings for this component, split on `,`. A purely
2789    /// element-selector component has only `app-foo`-shaped entries; attribute
2790    /// (`[appFoo]`) and class (`.foo`) selectors are retained verbatim so the
2791    /// detector can abstain when ANY non-element selector is present.
2792    pub selectors: Vec<String>,
2793    /// Start byte offset of the component class declaration (anchors the
2794    /// finding).
2795    pub span_start: u32,
2796    /// The component class name (used to credit routed / bootstrapped / dynamic
2797    /// class-name references project-wide).
2798    pub class_name: String,
2799}
2800
2801/// A Lit / web-component custom element registered in a module via
2802/// `@customElement('x-foo')` or `customElements.define('x-foo', C)`. Consumed by
2803/// the Lit arm of the `unrendered-component` detector. The span is stored as a
2804/// byte offset (not an `oxc_span::Span`) so the type round-trips through the
2805/// bitcode cache directly, mirroring `AngularComponentSelector::span_start`.
2806#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2807pub struct RegisteredCustomElement {
2808    /// The registered custom-element tag name (`x-foo`).
2809    pub tag: String,
2810    /// The registering class's local name, used for the public-API / export
2811    /// abstain (an exported / published element is rendered by a downstream
2812    /// consumer the scan cannot see). Empty for an anonymous
2813    /// `export default @customElement('x-foo') class extends LitElement {}`.
2814    pub class_local_name: String,
2815    /// Start byte offset of the registering class declaration (anchors the
2816    /// finding at the element, NOT line 1, since a `.ts` file can register
2817    /// several custom elements).
2818    pub span_start: u32,
2819}
2820
2821/// A key returned from a SvelteKit route `load()` function's terminal return
2822/// object literal. Harvested from `+page.{ts,server.ts,js,server.js}` files
2823/// exporting a `load` function. Consumed by the `unused-load-data-key` detector,
2824/// which flags a key read by no consumer. The span is stored as byte offsets
2825/// (not an `oxc_span::Span`) so the type round-trips through the bitcode cache
2826/// directly, mirroring `DiKeySite::span_start` / `ComponentEmit::span_start`.
2827#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode, PartialEq, Eq)]
2828pub struct LoadReturnKey {
2829    /// The returned-object property key name.
2830    pub name: String,
2831    /// Start byte offset of the key (anchors the finding).
2832    pub span_start: u32,
2833    /// End byte offset of the key.
2834    pub span_end: u32,
2835}
2836
2837/// The syntactic shape of an identified React component definition. Drives the
2838/// abstain ladder later phases apply: a `forwardRef` / `memo` wrapper whose
2839/// props come from an imported interface fallow cannot resolve must abstain
2840/// (ADR-001), not guess.
2841#[derive(Debug, Clone, Copy, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2842pub enum ComponentFunctionKind {
2843    /// A `function Foo() { return <.../> }` declaration.
2844    FnDecl,
2845    /// A `const Foo = () => <.../>` arrow (or function-expression) binding.
2846    Arrow,
2847    /// A `const Foo = forwardRef((props, ref) => <.../>)` wrapper.
2848    ForwardRefWrapper,
2849    /// A `const Foo = memo((props) => <.../>)` wrapper.
2850    MemoWrapper,
2851}
2852
2853/// An identified React component: a function/arrow whose body returns JSX.
2854/// Captured by `visit_jsx_element`'s enclosing-component tracking. The
2855/// `unused-component-prop` (React arm) and complexity-fold phases consume this;
2856/// the abstain flags keep zero-FP on the cases ADR-001 cannot resolve.
2857#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2858pub struct ComponentFunction {
2859    /// The component name (the binding or declaration identifier).
2860    pub name: String,
2861    /// Start byte offset of the component definition (anchors findings).
2862    pub span_start: u32,
2863    /// The syntactic shape of the definition.
2864    pub kind: ComponentFunctionKind,
2865    /// Whether the component is exported from its module (a named export, a
2866    /// `export default`, or re-exported in the same module). Public-API
2867    /// components abstain in the prop phase.
2868    pub is_exported: bool,
2869    /// `true` when the component's props are not statically harvestable: a
2870    /// rest/spread in the signature (`{ ...rest }`), props passed wholesale to a
2871    /// hook/helper, or a `forwardRef` / `memo` wrapper whose props come from an
2872    /// imported interface generic fallow cannot resolve (ADR-001). The prop
2873    /// phase abstains on the whole component when set.
2874    pub has_unharvestable_props: bool,
2875    /// `true` when the component body calls `cloneElement` / `React.cloneElement`.
2876    /// `cloneElement` injects props by reflection, so the static forward-set is
2877    /// incomplete; the prop-drilling phase abstains on any chain through this
2878    /// component (ADR-001, zero-FP).
2879    pub uses_clone_element: bool,
2880    /// `true` when the component renders a `*.Provider` member-expression tag
2881    /// (`<FooContext.Provider>`). A context provider in the subtree means the
2882    /// drilling may be a deliberate non-context choice (or the prop is about to
2883    /// be provided); the prop-drilling phase downgrades/abstains.
2884    pub renders_provider: bool,
2885    /// `true` when the component passes a function as a child render value
2886    /// (render-props / children-as-function: `<Foo>{() => ...}</Foo>` or
2887    /// `<Foo render={() => ...}/>`). The forwarded shape is dynamic; the
2888    /// prop-drilling phase abstains on chains through this component.
2889    pub has_children_as_function: bool,
2890    /// `true` when the component body is pure structural indirection: a single
2891    /// statement returning exactly one capitalized/member-expression JSX element
2892    /// (no host wrapper, no extra children, optionally a fragment wrapping a
2893    /// single element) that forwards props via a bare spread of the component's
2894    /// own props binding / rest local (`<Child {...props}/>`), with NO named
2895    /// attributes alongside the spread and NO self-render. The cross-component
2896    /// `thin-wrapper` phase joins this with hook-density / cyclomatic checks and
2897    /// the resolved single render edge to flag a component that is a candidate
2898    /// for inlining. Computed from the component's own AST only, so it caches
2899    /// byte-identity-safe (ADR-001).
2900    pub is_pure_passthrough: bool,
2901}
2902
2903/// The kind of a React hook call. `Custom` covers any `use*`-named call that is
2904/// not one of the built-in hooks.
2905#[derive(Debug, Clone, Copy, PartialEq, Eq, bitcode::Encode, bitcode::Decode)]
2906pub enum HookUseKind {
2907    /// `useState(...)`.
2908    UseState,
2909    /// `useEffect(...)`.
2910    UseEffect,
2911    /// `useMemo(...)`.
2912    UseMemo,
2913    /// `useCallback(...)`.
2914    UseCallback,
2915    /// Any other `use*`-named call (a custom hook).
2916    Custom,
2917}
2918
2919/// A React hook call site inside a component. Consumed by the complexity-fold
2920/// phase (hook density) and surfaced as descriptive hotspot context.
2921#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2922pub struct HookUse {
2923    /// The hook kind.
2924    pub kind: HookUseKind,
2925    /// The dependency-array arity, recorded ONLY when a literal array is present
2926    /// at the dependency-array position (`[a, b]` -> `Some(2)`, `[]` ->
2927    /// `Some(0)`). `None` when the call has no dependency array argument or the
2928    /// argument is not a literal array (ADR-001: do not guess).
2929    pub dep_array_arity: Option<u32>,
2930    /// Start byte offset of the hook call (anchors findings).
2931    pub span_start: u32,
2932    /// The enclosing component name (the top of the visitor's component stack
2933    /// when the hook call was recorded). Lets the descriptive per-component hook
2934    /// summary attribute hooks exactly even when a file declares several
2935    /// components. A hook recorded outside any component carries an empty string
2936    /// (the visitor only records hooks inside a component, so this is the
2937    /// rare top-level / unattributed case).
2938    pub component: String,
2939}
2940
2941/// A render edge: one component rendering another (a capitalized or
2942/// member-expression JSX tag). Captured at extraction time with the child's
2943/// written name; resolution of `child_component_name` to a `FileId`/export is
2944/// deferred to graph build via the existing import map.
2945#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2946pub struct RenderEdge {
2947    /// The name of the component that renders the child (the enclosing
2948    /// component). Empty when the JSX is not inside an identified component (a
2949    /// top-level render expression).
2950    pub parent_component: String,
2951    /// The rendered child component name as written (`Foo` or the full
2952    /// member-expression path `Foo.Bar`).
2953    pub child_component_name: String,
2954    /// The attribute (prop) names passed at the render site, in source order.
2955    pub attr_names: Vec<String>,
2956    /// `true` when the render site contains a JSX spread (`{...x}`), so the
2957    /// passed-prop set is not statically complete.
2958    pub has_spread: bool,
2959    /// The forwarded attributes at this render site: each pairs the child
2960    /// attribute NAME with the identifier ROOT of its value expression
2961    /// (`userName={user.name}` -> `{ attr: "userName", root: "user" }`;
2962    /// `value={x}` -> `{ attr: "value", root: "x" }`). ONLY plain identifier or
2963    /// member-root access values are recorded (`{x}`, `{x.y}`, `{x.y.z}`); a value
2964    /// that is a call, an arrow/function, a conditional, a JSX element, or any
2965    /// other complex expression is NOT recorded here (its root would not be a pure
2966    /// forward) and sets `has_complex_forward` instead. The prop-drilling chain
2967    /// walk uses this pairing to map "this component forwards prop P" to "the
2968    /// child receives it as attribute A".
2969    pub forward_attrs: Vec<ForwardAttr>,
2970    /// `true` when at least one attribute value at this render site is a complex
2971    /// expression (a call, an arrow/function render-prop, a conditional, a JSX
2972    /// element-as-prop, a template literal, etc.) whose identifier root was NOT
2973    /// recorded in `forward_attrs`. The prop-drilling phase abstains on a chain
2974    /// whose forwarded prop flows through such a value (ADR-001, zero-FP).
2975    pub has_complex_forward: bool,
2976}
2977
2978/// One forwarded JSX attribute: the child attribute name plus the identifier
2979/// root of its value expression. See [`RenderEdge::forward_attrs`].
2980#[derive(Debug, Clone, bitcode::Encode, bitcode::Decode)]
2981pub struct ForwardAttr {
2982    /// The child attribute (prop) name as written (`userName`).
2983    pub attr: String,
2984    /// The identifier root of the attribute value expression (`user` for
2985    /// `userName={user.name}`).
2986    pub root: String,
2987}
2988
2989#[expect(
2990    clippy::trivially_copy_pass_by_ref,
2991    reason = "serde serialize_with requires &T"
2992)]
2993fn serialize_span<S: serde::Serializer>(span: &Span, serializer: S) -> Result<S::Ok, S::Error> {
2994    use serde::ser::SerializeMap;
2995    let mut map = serializer.serialize_map(Some(2))?;
2996    map.serialize_entry("start", &span.start)?;
2997    map.serialize_entry("end", &span.end)?;
2998    map.end()
2999}
3000
3001/// Export identifier.
3002#[derive(Debug, Clone, PartialEq, Eq, Hash, serde::Serialize, serde::Deserialize)]
3003pub enum ExportName {
3004    /// A named export (e.g., `export const foo`).
3005    Named(String),
3006    /// The default export.
3007    Default,
3008}
3009
3010impl ExportName {
3011    /// Compare against a string without allocating (avoids `to_string()`).
3012    #[must_use]
3013    pub fn matches_str(&self, s: &str) -> bool {
3014        match self {
3015            Self::Named(n) => n == s,
3016            Self::Default => s == "default",
3017        }
3018    }
3019}
3020
3021impl std::fmt::Display for ExportName {
3022    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3023        match self {
3024            Self::Named(n) => write!(f, "{n}"),
3025            Self::Default => write!(f, "default"),
3026        }
3027    }
3028}
3029
3030/// An import declaration.
3031#[derive(Debug, Clone)]
3032pub struct ImportInfo {
3033    /// The import specifier (e.g., `./utils` or `react`).
3034    pub source: String,
3035    /// How the symbol is imported (named, default, namespace, or side-effect).
3036    pub imported_name: ImportedName,
3037    /// The local binding name in the importing module.
3038    pub local_name: String,
3039    /// Whether this is a type-only import (`import type`).
3040    pub is_type_only: bool,
3041    /// Whether this whole-module import forwards type meanings only.
3042    ///
3043    /// Set for `export type *` and `export type * as ns` inside a
3044    /// `declare module '...'` body (issue #2375). Those forms record the same
3045    /// bindingless whole-module shape the plain ambient star records
3046    /// (issue #2357), but the star they stand for erases every value meaning,
3047    /// so the graph credits the target's star surface in the type namespace
3048    /// alone. Every other import leaves this false: `is_type_only` already
3049    /// decides their namespace on its own.
3050    pub is_type_only_star: bool,
3051    /// Whether this import originated from a CSS-context.
3052    pub from_style: bool,
3053    /// Source span of the import declaration.
3054    pub span: Span,
3055    /// Span of the source string literal used by the LSP to highlight the specifier.
3056    pub source_span: Span,
3057}
3058
3059/// How a symbol is imported.
3060#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, serde::Deserialize)]
3061pub enum ImportedName {
3062    /// A named import (e.g., `import { foo }`).
3063    Named(String),
3064    /// A default import (e.g., `import React`).
3065    Default,
3066    /// A namespace import (e.g., `import * as utils`).
3067    Namespace,
3068    /// A side-effect import (e.g., `import './styles.css'`).
3069    SideEffect,
3070}
3071
3072#[cfg(target_pointer_width = "64")]
3073const _: () = assert!(std::mem::size_of::<ExportInfo>() == 136);
3074#[cfg(target_pointer_width = "64")]
3075const _: () = assert!(std::mem::size_of::<ImportInfo>() == 96);
3076#[cfg(target_pointer_width = "64")]
3077const _: () = assert!(std::mem::size_of::<ExportName>() == 24);
3078#[cfg(target_pointer_width = "64")]
3079const _: () = assert!(std::mem::size_of::<ImportedName>() == 24);
3080#[cfg(target_pointer_width = "64")]
3081const _: () = assert!(std::mem::size_of::<MemberAccess>() == 48);
3082#[cfg(target_pointer_width = "64")]
3083const _: () = assert!(std::mem::size_of::<SemanticFact>() == 96);
3084#[cfg(target_pointer_width = "64")]
3085const _: () = assert!(std::mem::size_of::<SinkSite>() == 216);
3086#[cfg(target_pointer_width = "64")]
3087const _: () = assert!(std::mem::size_of::<ModuleInfo>() == 1336);
3088#[cfg(target_pointer_width = "64")]
3089const _: () = assert!(std::mem::size_of::<TypeMemberTypeEntry>() == 72);
3090
3091/// A re-export declaration.
3092#[derive(Debug, Clone)]
3093pub struct ReExportInfo {
3094    /// The module being re-exported from.
3095    pub source: String,
3096    /// The name imported from the source module (or `*` for star re-exports).
3097    pub imported_name: String,
3098    /// The name exported from this module.
3099    pub exported_name: String,
3100    /// Whether this is a type-only re-export.
3101    pub is_type_only: bool,
3102    /// Source span of the re-export declaration on this module.
3103    pub span: oxc_span::Span,
3104    /// Span of the whole re-export statement. A multi-binding statement
3105    /// yields one `ReExportInfo` per binding, each with a per-binding
3106    /// `span`; this field lets consumers reason about the enclosing
3107    /// statement (e.g. suppression coverage). Empty (`start == end`) for
3108    /// synthesized re-exports that have no single owning statement.
3109    pub statement_span: oxc_span::Span,
3110    /// Span of the source string literal (the specifier in quotes), used to
3111    /// anchor unresolved-import findings on the specifier. Empty
3112    /// (`start == end`) when no literal exists in the statement.
3113    pub source_span: oxc_span::Span,
3114}
3115
3116/// A dynamic `import()` call.
3117#[derive(Debug, Clone)]
3118pub struct DynamicImportInfo {
3119    /// The import specifier.
3120    pub source: String,
3121    /// Source span of the `import()` expression.
3122    pub span: Span,
3123    /// Names destructured from the dynamic import result.
3124    /// Non-empty means `const { a, b } = await import(...)` -> Named imports.
3125    /// Empty means simple `import(...)` or `const x = await import(...)` -> Namespace.
3126    pub destructured_names: Vec<String>,
3127    /// The local variable name for `const x = await import(...)`.
3128    /// Used for namespace import narrowing via member access tracking.
3129    pub local_name: Option<String>,
3130    /// True when this dynamic import was synthesised by fallow rather than appearing in user source.
3131    pub is_speculative: bool,
3132}
3133
3134/// A `require()` call.
3135#[derive(Debug, Clone)]
3136pub struct RequireCallInfo {
3137    /// The require specifier.
3138    pub source: String,
3139    /// Source span of the `require()` call.
3140    pub span: Span,
3141    /// Source span of the specifier string-literal argument (including its
3142    /// quotes), e.g. the `'./x'` in `require('./x')`. Used to anchor an
3143    /// `unresolved-import` diagnostic squiggly under the specifier rather than
3144    /// the `require` keyword. `Span::default()` when the argument is not a
3145    /// plain string literal.
3146    pub source_span: Span,
3147    /// Names destructured from the `require()` result.
3148    pub destructured_names: Vec<String>,
3149    /// The local variable name for `const x = require(...)`.
3150    pub local_name: Option<String>,
3151    /// `true` for `import type X = require('...')`, the one require spelling
3152    /// TypeScript erases entirely: the emitted JavaScript contains no
3153    /// `require` call, so the target is a type-space reference and never a
3154    /// runtime dependency. Always `false` for `const x = require(...)`, which
3155    /// has no type-only spelling. Read by dependency classification so a
3156    /// type-only devDependency is not reported as production usage.
3157    pub is_type_only: bool,
3158}
3159
3160/// Result of parsing all files, including incremental cache statistics.
3161pub struct ParseResult {
3162    /// Extracted module information for all successfully parsed files.
3163    pub modules: Vec<ModuleInfo>,
3164    /// Files discovered with stable IDs but unreadable by the parser.
3165    pub read_failures: Vec<SourceReadFailure>,
3166    /// Number of files whose parse results were loaded from cache (unchanged).
3167    pub cache_hits: usize,
3168    /// Number of files that required a full parse (new or changed).
3169    pub cache_misses: usize,
3170    /// Summed wall-clock time of the actual AST parses across all rayon workers.
3171    pub parse_cpu_ms: f64,
3172}
3173
3174/// A discovered source that could not be read as UTF-8 text.
3175#[derive(Debug, Clone, PartialEq, Eq)]
3176pub struct SourceReadFailure {
3177    /// Stable discovery identity retained even though no module was produced.
3178    pub file_id: FileId,
3179    /// Absolute discovered source path.
3180    pub path: PathBuf,
3181    /// Underlying filesystem or UTF-8 decoding error.
3182    pub error: String,
3183}
3184
3185#[cfg(test)]
3186mod tests {
3187    use super::*;
3188
3189    fn span() -> Span {
3190        Span::new(0, 1)
3191    }
3192
3193    macro_rules! assert_released {
3194        ($values:expr) => {{
3195            assert!($values.is_empty());
3196        }};
3197    }
3198
3199    #[test]
3200    fn public_env_var_includes_public_ci_metadata() {
3201        for name in ["TAG_REF", "GITHUB_SHA", "CI_COMMIT_BRANCH", "APP_MODE"] {
3202            assert!(is_public_env_var(name), "{name} should be public metadata");
3203        }
3204    }
3205
3206    #[test]
3207    fn public_env_var_keeps_secret_shaped_names_source_backed() {
3208        for name in ["GITHUB_TOKEN", "REFRESH_TOKEN", "API_KEY", "SECRET_SHA"] {
3209            assert!(
3210                !is_public_env_var(name),
3211                "{name} should remain secret-shaped"
3212            );
3213        }
3214    }
3215
3216    #[test]
3217    fn ordinary_access_helpers_keep_source_accesses() {
3218        let member_accesses = vec![
3219            MemberAccess {
3220                object: "this".to_string(),
3221                member: "render".to_string(),
3222            },
3223            MemberAccess {
3224                object: "service".to_string(),
3225                member: "run".to_string(),
3226            },
3227        ];
3228        let ordinary = SemanticFactView::new(&[], &member_accesses)
3229            .ordinary_member_accesses()
3230            .map(|access| (access.object.as_str(), access.member.as_str()))
3231            .collect::<Vec<_>>();
3232
3233        assert_eq!(ordinary, vec![("this", "render"), ("service", "run")]);
3234
3235        let whole_object_uses = vec!["model".to_string(), "service".to_string()];
3236
3237        assert_eq!(
3238            ordinary_whole_object_uses(&whole_object_uses).collect::<Vec<_>>(),
3239            vec!["model", "service"]
3240        );
3241    }
3242
3243    #[test]
3244    fn angular_template_member_names_use_typed_facts() {
3245        let mut module = minimal_module_info();
3246        push_semantic_fact(
3247            &mut module,
3248            SemanticFact::AngularTemplateMemberAccess(AngularTemplateMemberAccessFact {
3249                member: "typed".to_string(),
3250            }),
3251        );
3252
3253        let names: Vec<&str> = angular_template_member_names(&module).collect();
3254
3255        assert_eq!(names, vec!["typed"]);
3256        assert!(has_angular_template_members(&module));
3257    }
3258
3259    #[test]
3260    fn angular_this_spread_uses_typed_fact() {
3261        let mut typed = minimal_module_info();
3262        push_semantic_fact(
3263            &mut typed,
3264            SemanticFact::AngularThisSpread(AngularThisSpreadFact),
3265        );
3266
3267        assert!(has_angular_this_spread(&typed));
3268        assert!(!has_angular_this_spread(&minimal_module_info()));
3269    }
3270
3271    #[test]
3272    fn semantic_fact_view_iterates_typed_facts() {
3273        let mut module = minimal_module_info();
3274        push_semantic_fact(
3275            &mut module,
3276            SemanticFact::FactoryCallMemberAccess(FactoryCallMemberAccessFact {
3277                callee_object: "Svc".to_string(),
3278                callee_method: "make".to_string(),
3279                member: "run".to_string(),
3280            }),
3281        );
3282
3283        let facts = SemanticFactView::new(&module.semantic_facts, &module.member_accesses)
3284            .facts()
3285            .collect::<Vec<_>>();
3286
3287        assert_eq!(
3288            facts[0],
3289            &SemanticFact::FactoryCallMemberAccess(FactoryCallMemberAccessFact {
3290                callee_object: "Svc".to_string(),
3291                callee_method: "make".to_string(),
3292                member: "run".to_string(),
3293            })
3294        );
3295    }
3296
3297    #[test]
3298    fn typed_fact_helpers_collect_each_family() {
3299        let mut module = minimal_module_info();
3300        push_semantic_fact(
3301            &mut module,
3302            SemanticFact::InstanceExportBinding(InstanceExportBindingFact {
3303                export_name: "exported".to_string(),
3304                target_name: "target".to_string(),
3305            }),
3306        );
3307        push_semantic_fact(
3308            &mut module,
3309            SemanticFact::FactoryCallMemberAccess(FactoryCallMemberAccessFact {
3310                callee_object: "Svc".to_string(),
3311                callee_method: "create".to_string(),
3312                member: "run".to_string(),
3313            }),
3314        );
3315        push_semantic_fact(
3316            &mut module,
3317            SemanticFact::FluentChainMemberAccess(FluentChainMemberAccessFact {
3318                root_object: "Builder".to_string(),
3319                root_method: "start".to_string(),
3320                chain: vec!["next".to_string()],
3321                member: "value".to_string(),
3322            }),
3323        );
3324        push_semantic_fact(
3325            &mut module,
3326            SemanticFact::FluentChainNewMemberAccess(FluentChainNewMemberAccessFact {
3327                class_name: "Builder".to_string(),
3328                chain: vec!["next".to_string(), "finish".to_string()],
3329                member: "done".to_string(),
3330            }),
3331        );
3332
3333        assert_eq!(
3334            SemanticFactView::new(&module.semantic_facts, &module.member_accesses)
3335                .instance_export_bindings(),
3336            vec![InstanceExportBindingFact {
3337                export_name: "exported".to_string(),
3338                target_name: "target".to_string(),
3339            }]
3340        );
3341        assert_eq!(
3342            SemanticFactView::new(&module.semantic_facts, &module.member_accesses)
3343                .factory_call_member_accesses(),
3344            vec![FactoryCallMemberAccessFact {
3345                callee_object: "Svc".to_string(),
3346                callee_method: "create".to_string(),
3347                member: "run".to_string(),
3348            }]
3349        );
3350        assert_eq!(
3351            SemanticFactView::new(&module.semantic_facts, &module.member_accesses)
3352                .fluent_chain_member_accesses(),
3353            vec![FluentChainMemberAccessFact {
3354                root_object: "Builder".to_string(),
3355                root_method: "start".to_string(),
3356                chain: vec!["next".to_string()],
3357                member: "value".to_string(),
3358            }]
3359        );
3360        assert_eq!(
3361            SemanticFactView::new(&module.semantic_facts, &module.member_accesses)
3362                .fluent_chain_new_member_accesses(),
3363            vec![FluentChainNewMemberAccessFact {
3364                class_name: "Builder".to_string(),
3365                chain: vec!["next".to_string(), "finish".to_string()],
3366                member: "done".to_string(),
3367            }]
3368        );
3369    }
3370
3371    #[test]
3372    fn semantic_fact_view_exposes_typed_first_contract() {
3373        let mut module = minimal_module_info();
3374        push_semantic_fact(
3375            &mut module,
3376            SemanticFact::FactoryCallMemberAccess(FactoryCallMemberAccessFact {
3377                callee_object: "Svc".to_string(),
3378                callee_method: "create".to_string(),
3379                member: "run".to_string(),
3380            }),
3381        );
3382        push_semantic_fact(
3383            &mut module,
3384            SemanticFact::PlaywrightFixtureUse(PlaywrightFixtureUseFact {
3385                test_name: "test".to_string(),
3386                fixture_name: "page".to_string(),
3387                member: "goto".to_string(),
3388            }),
3389        );
3390        push_semantic_fact(
3391            &mut module,
3392            SemanticFact::InstanceExportBinding(InstanceExportBindingFact {
3393                export_name: "exported".to_string(),
3394                target_name: "target".to_string(),
3395            }),
3396        );
3397
3398        let view = SemanticFactView::new(&module.semantic_facts, &module.member_accesses);
3399
3400        assert_eq!(
3401            view.factory_call_member_accesses(),
3402            vec![FactoryCallMemberAccessFact {
3403                callee_object: "Svc".to_string(),
3404                callee_method: "create".to_string(),
3405                member: "run".to_string(),
3406            }]
3407        );
3408        assert_eq!(
3409            view.playwright_fixture_uses(),
3410            vec![PlaywrightFixtureUseFact {
3411                test_name: "test".to_string(),
3412                fixture_name: "page".to_string(),
3413                member: "goto".to_string(),
3414            }]
3415        );
3416        assert_eq!(
3417            view.instance_export_bindings(),
3418            vec![InstanceExportBindingFact {
3419                export_name: "exported".to_string(),
3420                target_name: "target".to_string(),
3421            }]
3422        );
3423    }
3424
3425    #[test]
3426    fn playwright_fixture_fact_helpers_select_each_fact_family() {
3427        let mut module = minimal_module_info();
3428        push_semantic_fact(
3429            &mut module,
3430            SemanticFact::PlaywrightFixtureUse(PlaywrightFixtureUseFact {
3431                test_name: "test".to_string(),
3432                fixture_name: "page".to_string(),
3433                member: "goto".to_string(),
3434            }),
3435        );
3436        push_semantic_fact(
3437            &mut module,
3438            SemanticFact::PlaywrightFixtureDefinition(PlaywrightFixtureDefinitionFact {
3439                test_name: "test".to_string(),
3440                fixture_name: "adminPage".to_string(),
3441                type_name: "AdminPage".to_string(),
3442            }),
3443        );
3444        push_semantic_fact(
3445            &mut module,
3446            SemanticFact::PlaywrightFixtureAlias(PlaywrightFixtureAliasFact {
3447                test_name: "mergedTest".to_string(),
3448                base_name: "test".to_string(),
3449            }),
3450        );
3451        push_semantic_fact(
3452            &mut module,
3453            SemanticFact::PlaywrightFixtureType(PlaywrightFixtureTypeFact {
3454                alias_name: "Pages".to_string(),
3455                fixture_name: "adminPage".to_string(),
3456                type_name: "AdminPage".to_string(),
3457            }),
3458        );
3459
3460        assert_eq!(
3461            playwright_fixture_use_facts(&module.semantic_facts)
3462                .map(|fact| fact.member.as_str())
3463                .collect::<Vec<_>>(),
3464            vec!["goto"]
3465        );
3466        assert_eq!(
3467            playwright_fixture_definition_facts(&module.semantic_facts)
3468                .map(|fact| fact.type_name.as_str())
3469                .collect::<Vec<_>>(),
3470            vec!["AdminPage"]
3471        );
3472        assert_eq!(
3473            playwright_fixture_alias_facts(&module.semantic_facts)
3474                .map(|fact| fact.base_name.as_str())
3475                .collect::<Vec<_>>(),
3476            vec!["test"]
3477        );
3478        assert_eq!(
3479            playwright_fixture_type_facts(&module.semantic_facts)
3480                .map(|fact| fact.fixture_name.as_str())
3481                .collect::<Vec<_>>(),
3482            vec!["adminPage"]
3483        );
3484    }
3485
3486    #[test]
3487    fn line_offsets_empty_string() {
3488        assert_eq!(compute_line_offsets(""), vec![0]);
3489    }
3490
3491    #[test]
3492    #[expect(
3493        clippy::too_many_lines,
3494        reason = "exhaustive field-by-field construction + release assertions for every ModuleInfo field"
3495    )]
3496    fn release_resolution_payload_drops_copied_vectors_only() {
3497        let mut module = ModuleInfo {
3498            file_id: FileId(7),
3499            exports: vec![ExportInfo {
3500                name: ExportName::Named("kept".to_string()),
3501                local_name: None,
3502                is_type_only: false,
3503                is_side_effect_used: false,
3504                visibility: VisibilityTag::None,
3505                expected_unused_reason: None,
3506                span: span(),
3507                members: Vec::new(),
3508                super_class: None,
3509            }]
3510            .into(),
3511            imports: vec![ImportInfo {
3512                source: "node:child_process".to_string(),
3513                imported_name: ImportedName::Default,
3514                local_name: "childProcess".to_string(),
3515                is_type_only: false,
3516                is_type_only_star: false,
3517                from_style: false,
3518                span: span(),
3519                source_span: span(),
3520            }],
3521            re_exports: vec![ReExportInfo {
3522                source: "./kept".to_string(),
3523                imported_name: "kept".to_string(),
3524                exported_name: "kept".to_string(),
3525                is_type_only: false,
3526                span: span(),
3527                statement_span: span(),
3528                source_span: span(),
3529            }],
3530            dynamic_imports: vec![DynamicImportInfo {
3531                source: "./dynamic".to_string(),
3532                span: span(),
3533                destructured_names: vec!["value".to_string()],
3534                local_name: None,
3535                is_speculative: false,
3536            }],
3537            dynamic_import_patterns: vec![DynamicImportPattern {
3538                prefix: "./pages/".to_string(),
3539                suffix: Some(".tsx".to_string()),
3540                span: span(),
3541                mechanism: ModuleLoadMechanism::EsModule,
3542            }],
3543            require_calls: vec![RequireCallInfo {
3544                source: "./required".to_string(),
3545                span: span(),
3546                source_span: span(),
3547                destructured_names: Vec::new(),
3548                local_name: Some("required".to_string()),
3549                is_type_only: false,
3550            }],
3551            package_path_references: vec!["react".to_string()].into(),
3552            member_accesses: vec![MemberAccess {
3553                object: "Status".to_string(),
3554                member: "Active".to_string(),
3555            }]
3556            .into(),
3557            semantic_facts: std::sync::Arc::default(),
3558            whole_object_uses: vec!["Status".to_string()].into(),
3559            has_cjs_exports: true,
3560            has_angular_component_template_url: true,
3561            content_hash: 42,
3562            suppressions: Vec::new(),
3563            unknown_suppression_kinds: Vec::new(),
3564            unused_import_bindings: vec!["unused".to_string()],
3565            type_referenced_import_bindings: vec!["TypeOnly".to_string()],
3566            value_referenced_import_bindings: vec!["Value".to_string()],
3567            line_offsets: vec![0, 8],
3568            complexity: vec![FunctionComplexity {
3569                name: "work".to_string(),
3570                is_private_member: false,
3571                line: 1,
3572                col: 0,
3573                cyclomatic: 2,
3574                cognitive: 3,
3575                line_count: 4,
3576                param_count: 1,
3577                react_hook_count: 0,
3578                react_jsx_max_depth: 0,
3579                react_prop_count: 0,
3580                source_hash: Some("hash".to_string()),
3581                contributions: Vec::new(),
3582            }],
3583            flag_uses: vec![FlagUse {
3584                flag_name: "FEATURE_X".to_string(),
3585                kind: FlagUseKind::EnvVar,
3586                line: 1,
3587                col: 0,
3588                guard_span_start: None,
3589                guard_span_end: None,
3590                sdk_name: None,
3591            }],
3592            class_heritage: vec![ClassHeritageInfo {
3593                export_name: "Child".to_string(),
3594                super_class: Some("Parent".to_string()),
3595                implements: vec!["Contract".to_string()],
3596                type_parameters: Vec::new(),
3597                instance_bindings: Vec::new(),
3598                super_class_type_args: Vec::new(),
3599                generic_instance_bindings: Vec::new(),
3600            }],
3601            exported_factory_returns: std::sync::Arc::from([FactoryReturnExport {
3602                export_name: "useApi".to_string(),
3603                class_local_name: "RESTApi".to_string(),
3604            }]),
3605            exported_factory_return_object_shapes: std::sync::Arc::from([
3606                FactoryReturnObjectShapeExport {
3607                    export_name: "createUi".to_string(),
3608                    properties: Box::from([FactoryReturnObjectProperty {
3609                        property_path: "orders".to_string(),
3610                        class_local_name: "OrdersPage".to_string(),
3611                    }]),
3612                },
3613            ]),
3614            type_member_types: std::sync::Arc::from([TypeMemberTypeEntry {
3615                type_name: "Opts".to_string(),
3616                property: "c".to_string(),
3617                property_type: "OptDep".to_string(),
3618            }]),
3619            injection_tokens: vec![("TOKEN".to_string(), "Contract".to_string())],
3620            local_type_declarations: vec![LocalTypeDeclaration {
3621                name: "Contract".to_string(),
3622                span: span(),
3623            }],
3624            public_signature_type_references: vec![PublicSignatureTypeReference {
3625                export_name: "kept".to_string(),
3626                type_name: "Contract".to_string(),
3627                span: span(),
3628            }],
3629            namespace_object_aliases: vec![NamespaceObjectAlias {
3630                via_export_name: "api".to_string(),
3631                suffix: "read".to_string(),
3632                namespace_local: "ns".to_string(),
3633            }],
3634            iconify_prefixes: vec!["hero".to_string()],
3635            iconify_icon_names: vec!["hero-home".to_string()],
3636            auto_import_candidates: vec!["useState".to_string()],
3637            directives: vec!["use client".to_string()],
3638            client_only_dynamic_import_spans: Vec::new(),
3639            security_sinks: Vec::new(),
3640            security_sinks_skipped: 1,
3641            security_unresolved_callee_sites: Vec::new(),
3642            tainted_bindings: Vec::new(),
3643            sanitized_sink_args: Vec::new(),
3644            security_control_sites: Vec::new(),
3645            callee_uses: Vec::new(),
3646            misplaced_directives: Vec::new(),
3647            inline_server_action_exports: Vec::new(),
3648            di_key_sites: Vec::new(),
3649            has_dynamic_provide: false,
3650            referenced_import_bindings: Vec::new(),
3651            component_props: Vec::new(),
3652            has_props_attrs_fallthrough: false,
3653            has_define_expose: false,
3654            has_define_model: false,
3655            has_unharvestable_props: false,
3656            component_emits: Vec::new(),
3657            angular_inputs: Vec::new(),
3658            angular_outputs: Vec::new(),
3659            angular_component_selectors: Vec::new(),
3660            registered_custom_elements: Vec::new(),
3661            used_custom_element_tags: Vec::new(),
3662            angular_used_selectors: Vec::new(),
3663            angular_entry_component_refs: Vec::new(),
3664            has_dynamic_component_render: false,
3665            has_unharvestable_emits: false,
3666            has_dynamic_emit: false,
3667            has_emit_whole_object_use: false,
3668            load_return_keys: Vec::new(),
3669            has_unharvestable_load: false,
3670            has_load_data_whole_use: false,
3671            has_page_data_store_whole_use: false,
3672            has_route_loader_data_whole_use: false,
3673            component_functions: Vec::new(),
3674            react_props: Vec::new(),
3675            hook_uses: Vec::new(),
3676            render_edges: Vec::new(),
3677            svelte_dispatched_events: Vec::new(),
3678            svelte_listened_events: Vec::new(),
3679            has_dynamic_dispatch: false,
3680        };
3681
3682        module.release_resolution_payload();
3683
3684        assert_eq!(module.file_id, FileId(7));
3685        assert_eq!(module.content_hash, 42);
3686        assert_eq!(module.line_offsets, vec![0, 8]);
3687        assert_eq!(module.imports.len(), 1);
3688        assert_eq!(module.exports.len(), 1);
3689        assert_eq!(module.re_exports.len(), 1);
3690        assert_eq!(module.dynamic_import_patterns.len(), 1);
3691        assert_eq!(module.member_accesses.len(), 1);
3692        assert_eq!(module.complexity.len(), 1);
3693        assert_eq!(module.flag_uses.len(), 1);
3694        assert_eq!(module.class_heritage.len(), 1);
3695        assert_eq!(module.exported_factory_returns.len(), 1);
3696        assert_eq!(module.injection_tokens.len(), 1);
3697        assert_eq!(module.local_type_declarations.len(), 1);
3698        assert_eq!(module.public_signature_type_references.len(), 1);
3699        assert_eq!(module.iconify_prefixes.len(), 1);
3700        assert_eq!(module.iconify_icon_names.len(), 1);
3701        assert_eq!(module.directives.len(), 1);
3702        assert_eq!(module.security_sinks_skipped, 1);
3703        assert_released!(module.dynamic_imports);
3704        assert_released!(module.require_calls);
3705        assert_released!(module.package_path_references);
3706        assert_released!(module.whole_object_uses);
3707        assert_released!(module.unused_import_bindings);
3708        assert_released!(module.type_referenced_import_bindings);
3709        assert_released!(module.value_referenced_import_bindings);
3710        assert_released!(module.namespace_object_aliases);
3711        assert_released!(module.auto_import_candidates);
3712        assert_eq!(
3713            module.referenced_import_bindings,
3714            vec!["childProcess".to_string()]
3715        );
3716    }
3717
3718    #[test]
3719    fn sink_shape_bitcode_roundtrip() {
3720        for shape in [
3721            SinkShape::Call,
3722            SinkShape::MemberCall,
3723            SinkShape::MemberAssign,
3724            SinkShape::TaggedTemplate,
3725            SinkShape::JsxAttr,
3726            SinkShape::NewExpression,
3727            SinkShape::SecretLiteral,
3728        ] {
3729            let encoded = bitcode::encode(&shape);
3730            let decoded: SinkShape = bitcode::decode(&encoded).expect("decode sink shape");
3731            assert_eq!(shape, decoded);
3732        }
3733    }
3734
3735    #[test]
3736    fn sink_arg_kind_bitcode_roundtrip() {
3737        for kind in [
3738            SinkArgKind::TemplateWithSubst,
3739            SinkArgKind::Concat,
3740            SinkArgKind::Object,
3741            SinkArgKind::Call,
3742            SinkArgKind::Literal,
3743            SinkArgKind::NoArg,
3744            SinkArgKind::Other,
3745        ] {
3746            let encoded = bitcode::encode(&kind);
3747            let decoded: SinkArgKind = bitcode::decode(&encoded).expect("decode sink arg kind");
3748            assert_eq!(kind, decoded);
3749        }
3750    }
3751
3752    #[test]
3753    fn security_url_shape_bitcode_roundtrip() {
3754        for shape in [
3755            SecurityUrlShape::FixedOriginDynamicPath,
3756            SecurityUrlShape::DynamicOrigin,
3757        ] {
3758            let encoded = bitcode::encode(&shape);
3759            let decoded: SecurityUrlShape =
3760                bitcode::decode(&encoded).expect("decode security url shape");
3761            assert_eq!(shape, decoded);
3762        }
3763    }
3764
3765    #[test]
3766    fn sink_site_bitcode_roundtrip() {
3767        let site = SinkSite {
3768            sink_shape: SinkShape::MemberAssign,
3769            callee_path: "el.innerHTML".to_string(),
3770            arg_index: 0,
3771            arg_is_non_literal: true,
3772            arg_kind: SinkArgKind::Other,
3773            arg_literal: Some(SinkLiteralValue::Integer(511)),
3774            regex_pattern: None,
3775            object_properties: vec![SinkObjectProperty {
3776                key: "origin".to_string(),
3777                value: SinkLiteralValue::String("*".to_string()),
3778            }],
3779            object_property_keys: vec!["origin".to_string()],
3780            object_property_keys_complete: true,
3781            arg_idents: vec!["userInput".to_string()],
3782            arg_source_paths: vec!["req.body.email".to_string(), "req.body".to_string()],
3783            span_start: 10,
3784            span_end: 20,
3785            url_arg_literal: Some("https://api.example.com".to_string()),
3786            url_shape: Some(SecurityUrlShape::FixedOriginDynamicPath),
3787        };
3788        let encoded = bitcode::encode(&site);
3789        let decoded: SinkSite = bitcode::decode(&encoded).expect("decode sink site");
3790        assert_eq!(decoded.sink_shape, site.sink_shape);
3791        assert_eq!(decoded.callee_path, site.callee_path);
3792        assert_eq!(decoded.arg_index, site.arg_index);
3793        assert_eq!(decoded.arg_is_non_literal, site.arg_is_non_literal);
3794        assert_eq!(decoded.arg_kind, site.arg_kind);
3795        assert_eq!(decoded.arg_literal, site.arg_literal);
3796        assert_eq!(decoded.object_properties, site.object_properties);
3797        assert_eq!(decoded.object_property_keys, site.object_property_keys);
3798        assert_eq!(
3799            decoded.object_property_keys_complete,
3800            site.object_property_keys_complete
3801        );
3802        assert_eq!(decoded.arg_idents, site.arg_idents);
3803        assert_eq!(decoded.arg_source_paths, site.arg_source_paths);
3804        assert_eq!(decoded.url_shape, site.url_shape);
3805        assert_eq!(decoded.span(), site.span());
3806    }
3807
3808    #[test]
3809    fn line_offsets_single_line_no_newline() {
3810        assert_eq!(compute_line_offsets("hello"), vec![0]);
3811    }
3812
3813    #[test]
3814    fn line_offsets_single_line_with_newline() {
3815        assert_eq!(compute_line_offsets("hello\n"), vec![0, 6]);
3816    }
3817
3818    #[test]
3819    fn line_offsets_multiple_lines() {
3820        assert_eq!(compute_line_offsets("abc\ndef\nghi"), vec![0, 4, 8]);
3821    }
3822
3823    #[test]
3824    fn line_offsets_trailing_newline() {
3825        assert_eq!(compute_line_offsets("abc\ndef\n"), vec![0, 4, 8]);
3826    }
3827
3828    #[test]
3829    fn line_offsets_consecutive_newlines() {
3830        assert_eq!(compute_line_offsets("\n\n\n"), vec![0, 1, 2, 3]);
3831    }
3832
3833    #[test]
3834    fn line_offsets_multibyte_utf8() {
3835        assert_eq!(compute_line_offsets("á\n"), vec![0, 3]);
3836    }
3837
3838    #[test]
3839    fn line_col_offset_zero() {
3840        let offsets = compute_line_offsets("abc\ndef\nghi");
3841        let (line, col) = byte_offset_to_line_col(&offsets, 0);
3842        assert_eq!((line, col), (1, 0));
3843    }
3844
3845    #[test]
3846    fn line_col_middle_of_first_line() {
3847        let offsets = compute_line_offsets("abc\ndef\nghi");
3848        let (line, col) = byte_offset_to_line_col(&offsets, 2);
3849        assert_eq!((line, col), (1, 2));
3850    }
3851
3852    #[test]
3853    fn line_col_start_of_second_line() {
3854        let offsets = compute_line_offsets("abc\ndef\nghi");
3855        let (line, col) = byte_offset_to_line_col(&offsets, 4);
3856        assert_eq!((line, col), (2, 0));
3857    }
3858
3859    #[test]
3860    fn line_col_middle_of_second_line() {
3861        let offsets = compute_line_offsets("abc\ndef\nghi");
3862        let (line, col) = byte_offset_to_line_col(&offsets, 5);
3863        assert_eq!((line, col), (2, 1));
3864    }
3865
3866    #[test]
3867    fn line_col_start_of_third_line() {
3868        let offsets = compute_line_offsets("abc\ndef\nghi");
3869        let (line, col) = byte_offset_to_line_col(&offsets, 8);
3870        assert_eq!((line, col), (3, 0));
3871    }
3872
3873    #[test]
3874    fn line_col_end_of_file() {
3875        let offsets = compute_line_offsets("abc\ndef\nghi");
3876        let (line, col) = byte_offset_to_line_col(&offsets, 10);
3877        assert_eq!((line, col), (3, 2));
3878    }
3879
3880    #[test]
3881    fn line_col_single_line() {
3882        let offsets = compute_line_offsets("hello");
3883        let (line, col) = byte_offset_to_line_col(&offsets, 3);
3884        assert_eq!((line, col), (1, 3));
3885    }
3886
3887    #[test]
3888    fn line_col_at_newline_byte() {
3889        let offsets = compute_line_offsets("abc\ndef");
3890        let (line, col) = byte_offset_to_line_col(&offsets, 3);
3891        assert_eq!((line, col), (1, 3));
3892    }
3893
3894    #[test]
3895    fn export_name_matches_str_named() {
3896        let name = ExportName::Named("foo".to_string());
3897        assert!(name.matches_str("foo"));
3898        assert!(!name.matches_str("bar"));
3899        assert!(!name.matches_str("default"));
3900    }
3901
3902    #[test]
3903    fn export_name_matches_str_default() {
3904        let name = ExportName::Default;
3905        assert!(name.matches_str("default"));
3906        assert!(!name.matches_str("foo"));
3907    }
3908
3909    #[test]
3910    fn export_name_display_named() {
3911        let name = ExportName::Named("myExport".to_string());
3912        assert_eq!(name.to_string(), "myExport");
3913    }
3914
3915    #[test]
3916    fn export_name_display_default() {
3917        let name = ExportName::Default;
3918        assert_eq!(name.to_string(), "default");
3919    }
3920
3921    #[test]
3922    fn export_name_equality_named() {
3923        let a = ExportName::Named("foo".to_string());
3924        let b = ExportName::Named("foo".to_string());
3925        let c = ExportName::Named("bar".to_string());
3926        assert_eq!(a, b);
3927        assert_ne!(a, c);
3928    }
3929
3930    #[test]
3931    fn export_name_equality_default() {
3932        let a = ExportName::Default;
3933        let b = ExportName::Default;
3934        assert_eq!(a, b);
3935    }
3936
3937    #[test]
3938    fn export_name_named_not_equal_to_default() {
3939        let named = ExportName::Named("default".to_string());
3940        let default = ExportName::Default;
3941        assert_ne!(named, default);
3942    }
3943
3944    #[test]
3945    fn export_name_hash_consistency() {
3946        use std::collections::hash_map::DefaultHasher;
3947        use std::hash::{Hash, Hasher};
3948
3949        let mut h1 = DefaultHasher::new();
3950        let mut h2 = DefaultHasher::new();
3951        ExportName::Named("foo".to_string()).hash(&mut h1);
3952        ExportName::Named("foo".to_string()).hash(&mut h2);
3953        assert_eq!(h1.finish(), h2.finish());
3954    }
3955
3956    #[test]
3957    fn export_name_matches_str_empty_string() {
3958        let name = ExportName::Named(String::new());
3959        assert!(name.matches_str(""));
3960        assert!(!name.matches_str("foo"));
3961    }
3962
3963    #[test]
3964    fn export_name_default_does_not_match_empty() {
3965        let name = ExportName::Default;
3966        assert!(!name.matches_str(""));
3967    }
3968
3969    #[test]
3970    fn imported_name_equality() {
3971        assert_eq!(
3972            ImportedName::Named("foo".to_string()),
3973            ImportedName::Named("foo".to_string())
3974        );
3975        assert_ne!(
3976            ImportedName::Named("foo".to_string()),
3977            ImportedName::Named("bar".to_string())
3978        );
3979        assert_eq!(ImportedName::Default, ImportedName::Default);
3980        assert_eq!(ImportedName::Namespace, ImportedName::Namespace);
3981        assert_eq!(ImportedName::SideEffect, ImportedName::SideEffect);
3982        assert_ne!(ImportedName::Default, ImportedName::Namespace);
3983        assert_ne!(
3984            ImportedName::Named("default".to_string()),
3985            ImportedName::Default
3986        );
3987    }
3988
3989    #[test]
3990    fn member_kind_equality() {
3991        assert_eq!(MemberKind::EnumMember, MemberKind::EnumMember);
3992        assert_eq!(MemberKind::ClassMethod, MemberKind::ClassMethod);
3993        assert_eq!(MemberKind::ClassProperty, MemberKind::ClassProperty);
3994        assert_eq!(MemberKind::NamespaceMember, MemberKind::NamespaceMember);
3995        assert_ne!(MemberKind::EnumMember, MemberKind::ClassMethod);
3996        assert_ne!(MemberKind::ClassMethod, MemberKind::ClassProperty);
3997        assert_ne!(MemberKind::NamespaceMember, MemberKind::EnumMember);
3998    }
3999
4000    #[test]
4001    fn member_kind_bitcode_roundtrip() {
4002        let kinds = [
4003            MemberKind::EnumMember,
4004            MemberKind::ClassMethod,
4005            MemberKind::ClassProperty,
4006            MemberKind::NamespaceMember,
4007        ];
4008        for kind in &kinds {
4009            let bytes = bitcode::encode(kind);
4010            let decoded: MemberKind = bitcode::decode(&bytes).unwrap();
4011            assert_eq!(&decoded, kind);
4012        }
4013    }
4014
4015    #[test]
4016    fn member_access_bitcode_roundtrip() {
4017        let access = MemberAccess {
4018            object: "Status".to_string(),
4019            member: "Active".to_string(),
4020        };
4021        let bytes = bitcode::encode(&access);
4022        let decoded: MemberAccess = bitcode::decode(&bytes).unwrap();
4023        assert_eq!(decoded.object, "Status");
4024        assert_eq!(decoded.member, "Active");
4025    }
4026
4027    #[test]
4028    fn line_offsets_crlf_only_counts_lf() {
4029        let offsets = compute_line_offsets("ab\r\ncd");
4030        assert_eq!(offsets, vec![0, 4]);
4031    }
4032
4033    #[test]
4034    fn line_col_empty_file_offset_zero() {
4035        let offsets = compute_line_offsets("");
4036        let (line, col) = byte_offset_to_line_col(&offsets, 0);
4037        assert_eq!((line, col), (1, 0));
4038    }
4039
4040    // --- VisibilityTag ---
4041
4042    #[test]
4043    fn visibility_tag_default_is_none_variant() {
4044        assert_eq!(VisibilityTag::default(), VisibilityTag::None);
4045    }
4046
4047    #[test]
4048    fn visibility_tag_is_none_only_for_none_variant() {
4049        assert!(VisibilityTag::None.is_none());
4050        assert!(!VisibilityTag::Public.is_none());
4051        assert!(!VisibilityTag::Internal.is_none());
4052        assert!(!VisibilityTag::Beta.is_none());
4053        assert!(!VisibilityTag::Alpha.is_none());
4054        assert!(!VisibilityTag::ExpectedUnused.is_none());
4055    }
4056
4057    #[test]
4058    fn visibility_tag_suppresses_unused_for_api_tags() {
4059        assert!(VisibilityTag::Public.suppresses_unused());
4060        assert!(VisibilityTag::Internal.suppresses_unused());
4061        assert!(VisibilityTag::Beta.suppresses_unused());
4062        assert!(VisibilityTag::Alpha.suppresses_unused());
4063    }
4064
4065    #[test]
4066    fn visibility_tag_does_not_suppress_none_or_expected_unused() {
4067        assert!(!VisibilityTag::None.suppresses_unused());
4068        assert!(!VisibilityTag::ExpectedUnused.suppresses_unused());
4069    }
4070
4071    // --- is_public_env_path ---
4072
4073    #[test]
4074    fn is_public_env_path_process_env_public_prefix() {
4075        assert!(is_public_env_path("process.env.NEXT_PUBLIC_API_URL"));
4076        assert!(is_public_env_path("process.env.VITE_APP_KEY"));
4077        assert!(is_public_env_path("process.env.REACT_APP_TITLE"));
4078        assert!(is_public_env_path("process.env.NODE_ENV"));
4079    }
4080
4081    #[test]
4082    fn is_public_env_path_import_meta_env_public_prefix() {
4083        assert!(is_public_env_path("import.meta.env.VITE_BASE_URL"));
4084        assert!(is_public_env_path("import.meta.env.PUBLIC_API"));
4085    }
4086
4087    #[test]
4088    fn is_public_env_path_secret_env_vars_are_not_public() {
4089        assert!(!is_public_env_path("process.env.SECRET_KEY"));
4090        assert!(!is_public_env_path("process.env.DATABASE_PASSWORD"));
4091        assert!(!is_public_env_path("import.meta.env.API_TOKEN"));
4092    }
4093
4094    #[test]
4095    fn is_public_env_path_non_env_paths_are_not_public() {
4096        assert!(!is_public_env_path("req.query.id"));
4097        assert!(!is_public_env_path("process.argv"));
4098        assert!(!is_public_env_path("window.location.href"));
4099    }
4100
4101    // --- is_public_env_var edge cases ---
4102
4103    #[test]
4104    fn is_public_env_var_exact_matches() {
4105        assert!(is_public_env_var("NODE_ENV"));
4106    }
4107
4108    #[test]
4109    fn is_public_env_var_all_known_prefixes() {
4110        assert!(is_public_env_var("NUXT_PUBLIC_API_URL"));
4111        assert!(is_public_env_var("PUBLIC_API_KEY"));
4112        assert!(is_public_env_var("GATSBY_APP_ID"));
4113        assert!(is_public_env_var("EXPO_PUBLIC_SENTRY_DSN"));
4114        assert!(is_public_env_var("STORYBOOK_ENV"));
4115    }
4116
4117    #[test]
4118    fn is_public_env_var_secret_token_beats_metadata_token() {
4119        // "SECRET_SHA": has SECRET (wins) and SHA (metadata); should NOT be public
4120        assert!(!is_public_env_var("SECRET_SHA"));
4121        // "REF_TOKEN": has TOKEN (secret) and REF (metadata); should NOT be public
4122        assert!(!is_public_env_var("REF_TOKEN"));
4123    }
4124
4125    #[test]
4126    fn is_public_env_var_plain_unknown_names_are_not_public() {
4127        assert!(!is_public_env_var("MY_SERVICE_URL"));
4128        assert!(!is_public_env_var("FEATURE_FLAG"));
4129        assert!(!is_public_env_var("DATABASE_URL"));
4130    }
4131
4132    // --- SinkSite::span ---
4133
4134    #[test]
4135    fn sink_site_span_reconstructs_from_offsets() {
4136        let site = SinkSite {
4137            sink_shape: SinkShape::Call,
4138            callee_path: "eval".to_string(),
4139            arg_index: 0,
4140            arg_is_non_literal: true,
4141            arg_kind: SinkArgKind::Other,
4142            arg_literal: None,
4143            regex_pattern: None,
4144            object_properties: Vec::new(),
4145            object_property_keys: Vec::new(),
4146            object_property_keys_complete: false,
4147            arg_idents: Vec::new(),
4148            arg_source_paths: Vec::new(),
4149            span_start: 5,
4150            span_end: 15,
4151            url_arg_literal: None,
4152            url_shape: None,
4153        };
4154        let s = site.span();
4155        assert_eq!(s.start, 5);
4156        assert_eq!(s.end, 15);
4157    }
4158
4159    // --- SecurityControlKind ---
4160
4161    #[test]
4162    fn security_control_kind_equality_and_ordering() {
4163        assert_eq!(
4164            SecurityControlKind::Sanitization,
4165            SecurityControlKind::Sanitization
4166        );
4167        assert_eq!(
4168            SecurityControlKind::Validation,
4169            SecurityControlKind::Validation
4170        );
4171        assert_ne!(
4172            SecurityControlKind::Sanitization,
4173            SecurityControlKind::Validation
4174        );
4175        assert!(SecurityControlKind::Sanitization < SecurityControlKind::Validation);
4176        assert!(SecurityControlKind::Authentication < SecurityControlKind::Authorization);
4177    }
4178
4179    // --- SanitizerScope ---
4180
4181    #[test]
4182    fn sanitizer_scope_equality_and_ordering() {
4183        assert_eq!(SanitizerScope::Html, SanitizerScope::Html);
4184        assert_eq!(SanitizerScope::Url, SanitizerScope::Url);
4185        assert_eq!(SanitizerScope::Path, SanitizerScope::Path);
4186        assert_eq!(SanitizerScope::SqlIdentifier, SanitizerScope::SqlIdentifier);
4187        assert_ne!(SanitizerScope::Html, SanitizerScope::Url);
4188        assert!(SanitizerScope::Html < SanitizerScope::Url);
4189    }
4190
4191    // --- SkippedSecurityCalleeReason ---
4192
4193    #[test]
4194    fn skipped_security_callee_reason_equality() {
4195        assert_eq!(
4196            SkippedSecurityCalleeReason::ComputedMember,
4197            SkippedSecurityCalleeReason::ComputedMember
4198        );
4199        assert_ne!(
4200            SkippedSecurityCalleeReason::ComputedMember,
4201            SkippedSecurityCalleeReason::DynamicDispatch
4202        );
4203        assert_ne!(
4204            SkippedSecurityCalleeReason::DynamicDispatch,
4205            SkippedSecurityCalleeReason::UnsupportedAssignmentObject
4206        );
4207    }
4208
4209    // --- SkippedSecurityCalleeExpressionKind ---
4210
4211    #[test]
4212    fn skipped_security_callee_expression_kind_equality() {
4213        use SkippedSecurityCalleeExpressionKind as K;
4214        assert_eq!(K::StaticMemberExpression, K::StaticMemberExpression);
4215        assert_eq!(K::ComputedMemberExpression, K::ComputedMemberExpression);
4216        assert_eq!(K::Identifier, K::Identifier);
4217        assert_eq!(K::Other, K::Other);
4218        assert_ne!(K::StaticMemberExpression, K::ComputedMemberExpression);
4219        assert_ne!(K::Identifier, K::Other);
4220    }
4221
4222    // --- SinkLiteralValue ---
4223
4224    #[test]
4225    fn sink_literal_value_equality() {
4226        assert_eq!(
4227            SinkLiteralValue::String("x".to_string()),
4228            SinkLiteralValue::String("x".to_string())
4229        );
4230        assert_ne!(
4231            SinkLiteralValue::String("x".to_string()),
4232            SinkLiteralValue::String("y".to_string())
4233        );
4234        assert_eq!(SinkLiteralValue::Integer(42), SinkLiteralValue::Integer(42));
4235        assert_ne!(SinkLiteralValue::Integer(1), SinkLiteralValue::Integer(2));
4236        assert_eq!(
4237            SinkLiteralValue::Boolean(true),
4238            SinkLiteralValue::Boolean(true)
4239        );
4240        assert_ne!(
4241            SinkLiteralValue::Boolean(true),
4242            SinkLiteralValue::Boolean(false)
4243        );
4244        assert_eq!(SinkLiteralValue::Null, SinkLiteralValue::Null);
4245        assert_ne!(SinkLiteralValue::Null, SinkLiteralValue::Boolean(false));
4246    }
4247
4248    // --- SecurityUrlShape ---
4249
4250    #[test]
4251    fn security_url_shape_equality() {
4252        assert_eq!(
4253            SecurityUrlShape::FixedOriginDynamicPath,
4254            SecurityUrlShape::FixedOriginDynamicPath
4255        );
4256        assert_eq!(
4257            SecurityUrlShape::DynamicOrigin,
4258            SecurityUrlShape::DynamicOrigin
4259        );
4260        assert_ne!(
4261            SecurityUrlShape::FixedOriginDynamicPath,
4262            SecurityUrlShape::DynamicOrigin
4263        );
4264    }
4265
4266    // --- FlagUseKind ---
4267
4268    #[test]
4269    fn flag_use_kind_equality() {
4270        assert_eq!(FlagUseKind::EnvVar, FlagUseKind::EnvVar);
4271        assert_eq!(FlagUseKind::SdkCall, FlagUseKind::SdkCall);
4272        assert_eq!(FlagUseKind::ConfigObject, FlagUseKind::ConfigObject);
4273        assert_ne!(FlagUseKind::EnvVar, FlagUseKind::SdkCall);
4274        assert_ne!(FlagUseKind::SdkCall, FlagUseKind::ConfigObject);
4275    }
4276
4277    // --- ComplexityMetric ---
4278
4279    #[test]
4280    fn complexity_metric_equality() {
4281        assert_eq!(ComplexityMetric::Cyclomatic, ComplexityMetric::Cyclomatic);
4282        assert_eq!(ComplexityMetric::Cognitive, ComplexityMetric::Cognitive);
4283        assert_ne!(ComplexityMetric::Cyclomatic, ComplexityMetric::Cognitive);
4284    }
4285
4286    // --- ComplexityContributionKind ---
4287
4288    #[test]
4289    fn complexity_contribution_kind_equality_spot_check() {
4290        use ComplexityContributionKind as K;
4291        assert_eq!(K::If, K::If);
4292        assert_eq!(K::Else, K::Else);
4293        assert_eq!(K::ElseIf, K::ElseIf);
4294        assert_eq!(K::Ternary, K::Ternary);
4295        assert_eq!(K::LogicalAnd, K::LogicalAnd);
4296        assert_eq!(K::LogicalOr, K::LogicalOr);
4297        assert_eq!(K::NullishCoalescing, K::NullishCoalescing);
4298        assert_eq!(K::LogicalAssignment, K::LogicalAssignment);
4299        assert_eq!(K::OptionalChain, K::OptionalChain);
4300        assert_eq!(K::For, K::For);
4301        assert_eq!(K::ForIn, K::ForIn);
4302        assert_eq!(K::ForOf, K::ForOf);
4303        assert_eq!(K::While, K::While);
4304        assert_eq!(K::DoWhile, K::DoWhile);
4305        assert_eq!(K::Switch, K::Switch);
4306        assert_eq!(K::Case, K::Case);
4307        assert_eq!(K::Catch, K::Catch);
4308        assert_eq!(K::LabeledBreak, K::LabeledBreak);
4309        assert_eq!(K::LabeledContinue, K::LabeledContinue);
4310        assert_eq!(K::JsxDepth, K::JsxDepth);
4311        assert_eq!(K::HookDensity, K::HookDensity);
4312        assert_eq!(K::PropCount, K::PropCount);
4313        assert_eq!(K::Await, K::Await);
4314        assert_eq!(K::Then, K::Then);
4315        assert_ne!(K::If, K::Else);
4316        assert_ne!(K::For, K::While);
4317        assert_ne!(K::Switch, K::Case);
4318    }
4319
4320    // --- MisplacedDirectiveSite ---
4321
4322    #[test]
4323    fn misplaced_directive_site_equality() {
4324        let client = MisplacedDirectiveSite {
4325            is_server: false,
4326            span_start: 10,
4327        };
4328        let server = MisplacedDirectiveSite {
4329            is_server: true,
4330            span_start: 10,
4331        };
4332        let client2 = MisplacedDirectiveSite {
4333            is_server: false,
4334            span_start: 10,
4335        };
4336        assert_eq!(client, client2);
4337        assert_ne!(client, server);
4338    }
4339
4340    #[test]
4341    fn misplaced_directive_site_is_server_flag() {
4342        let site = MisplacedDirectiveSite {
4343            is_server: true,
4344            span_start: 42,
4345        };
4346        assert!(site.is_server);
4347        assert_eq!(site.span_start, 42);
4348
4349        let client_site = MisplacedDirectiveSite {
4350            is_server: false,
4351            span_start: 0,
4352        };
4353        assert!(!client_site.is_server);
4354    }
4355
4356    // --- DiRole / DiFramework ---
4357
4358    #[test]
4359    fn di_role_equality() {
4360        assert_eq!(DiRole::Provide, DiRole::Provide);
4361        assert_eq!(DiRole::Inject, DiRole::Inject);
4362        assert_ne!(DiRole::Provide, DiRole::Inject);
4363    }
4364
4365    #[test]
4366    fn di_framework_equality() {
4367        assert_eq!(DiFramework::Vue, DiFramework::Vue);
4368        assert_eq!(DiFramework::Svelte, DiFramework::Svelte);
4369        assert_eq!(DiFramework::Angular, DiFramework::Angular);
4370        assert_ne!(DiFramework::Vue, DiFramework::Svelte);
4371        assert_ne!(DiFramework::Svelte, DiFramework::Angular);
4372    }
4373
4374    // --- ComponentEmit ---
4375
4376    #[test]
4377    fn component_emit_equality() {
4378        let a = ComponentEmit {
4379            name: "close".to_string(),
4380            span_start: 10,
4381            used: true,
4382        };
4383        let b = ComponentEmit {
4384            name: "close".to_string(),
4385            span_start: 10,
4386            used: true,
4387        };
4388        let different_used = ComponentEmit {
4389            name: "close".to_string(),
4390            span_start: 10,
4391            used: false,
4392        };
4393        let different_name = ComponentEmit {
4394            name: "open".to_string(),
4395            span_start: 10,
4396            used: true,
4397        };
4398        assert_eq!(a, b);
4399        assert_ne!(a, different_used);
4400        assert_ne!(a, different_name);
4401    }
4402
4403    // --- DispatchedEvent ---
4404
4405    #[test]
4406    fn dispatched_event_equality() {
4407        let a = DispatchedEvent {
4408            name: "myEvent".to_string(),
4409            span_start: 20,
4410        };
4411        let b = DispatchedEvent {
4412            name: "myEvent".to_string(),
4413            span_start: 20,
4414        };
4415        let c = DispatchedEvent {
4416            name: "otherEvent".to_string(),
4417            span_start: 20,
4418        };
4419        let d = DispatchedEvent {
4420            name: "myEvent".to_string(),
4421            span_start: 99,
4422        };
4423        assert_eq!(a, b);
4424        assert_ne!(a, c);
4425        assert_ne!(a, d);
4426    }
4427
4428    // --- AngularInputMember / AngularOutputMember ---
4429
4430    #[test]
4431    fn angular_input_member_equality() {
4432        let a = AngularInputMember {
4433            name: "title".to_string(),
4434            span_start: 5,
4435        };
4436        let b = AngularInputMember {
4437            name: "title".to_string(),
4438            span_start: 5,
4439        };
4440        let c = AngularInputMember {
4441            name: "label".to_string(),
4442            span_start: 5,
4443        };
4444        assert_eq!(a, b);
4445        assert_ne!(a, c);
4446    }
4447
4448    #[test]
4449    fn angular_output_member_equality() {
4450        let a = AngularOutputMember {
4451            name: "clicked".to_string(),
4452            span_start: 8,
4453        };
4454        let b = AngularOutputMember {
4455            name: "clicked".to_string(),
4456            span_start: 8,
4457        };
4458        let c = AngularOutputMember {
4459            name: "hovered".to_string(),
4460            span_start: 8,
4461        };
4462        assert_eq!(a, b);
4463        assert_ne!(a, c);
4464    }
4465
4466    // --- AngularComponentSelector ---
4467
4468    #[test]
4469    fn angular_component_selector_fields() {
4470        let s = AngularComponentSelector {
4471            selectors: vec!["app-foo".to_string(), "[appFoo]".to_string()],
4472            span_start: 100,
4473            class_name: "FooComponent".to_string(),
4474        };
4475        assert_eq!(s.selectors.len(), 2);
4476        assert_eq!(s.selectors[0], "app-foo");
4477        assert_eq!(s.selectors[1], "[appFoo]");
4478        assert_eq!(s.class_name, "FooComponent");
4479    }
4480
4481    #[test]
4482    fn angular_component_selector_equality() {
4483        let a = AngularComponentSelector {
4484            selectors: vec!["app-bar".to_string()],
4485            span_start: 0,
4486            class_name: "BarComponent".to_string(),
4487        };
4488        let b = AngularComponentSelector {
4489            selectors: vec!["app-bar".to_string()],
4490            span_start: 0,
4491            class_name: "BarComponent".to_string(),
4492        };
4493        let c = AngularComponentSelector {
4494            selectors: vec!["app-baz".to_string()],
4495            span_start: 0,
4496            class_name: "BazComponent".to_string(),
4497        };
4498        assert_eq!(a, b);
4499        assert_ne!(a, c);
4500    }
4501
4502    // --- LoadReturnKey ---
4503
4504    #[test]
4505    fn load_return_key_equality() {
4506        let a = LoadReturnKey {
4507            name: "user".to_string(),
4508            span_start: 50,
4509            span_end: 54,
4510        };
4511        let b = LoadReturnKey {
4512            name: "user".to_string(),
4513            span_start: 50,
4514            span_end: 54,
4515        };
4516        let c = LoadReturnKey {
4517            name: "posts".to_string(),
4518            span_start: 50,
4519            span_end: 55,
4520        };
4521        assert_eq!(a, b);
4522        assert_ne!(a, c);
4523    }
4524
4525    #[test]
4526    fn load_return_key_span_fields() {
4527        let key = LoadReturnKey {
4528            name: "data".to_string(),
4529            span_start: 10,
4530            span_end: 14,
4531        };
4532        assert_eq!(key.span_start, 10);
4533        assert_eq!(key.span_end, 14);
4534        assert_eq!(key.name, "data");
4535    }
4536
4537    // --- ComponentFunctionKind ---
4538
4539    #[test]
4540    fn component_function_kind_equality() {
4541        assert_eq!(ComponentFunctionKind::FnDecl, ComponentFunctionKind::FnDecl);
4542        assert_eq!(ComponentFunctionKind::Arrow, ComponentFunctionKind::Arrow);
4543        assert_eq!(
4544            ComponentFunctionKind::ForwardRefWrapper,
4545            ComponentFunctionKind::ForwardRefWrapper
4546        );
4547        assert_eq!(
4548            ComponentFunctionKind::MemoWrapper,
4549            ComponentFunctionKind::MemoWrapper
4550        );
4551        assert_ne!(ComponentFunctionKind::FnDecl, ComponentFunctionKind::Arrow);
4552        assert_ne!(
4553            ComponentFunctionKind::ForwardRefWrapper,
4554            ComponentFunctionKind::MemoWrapper
4555        );
4556    }
4557
4558    // --- HookUseKind ---
4559
4560    #[test]
4561    fn hook_use_kind_equality() {
4562        assert_eq!(HookUseKind::UseState, HookUseKind::UseState);
4563        assert_eq!(HookUseKind::UseEffect, HookUseKind::UseEffect);
4564        assert_eq!(HookUseKind::UseMemo, HookUseKind::UseMemo);
4565        assert_eq!(HookUseKind::UseCallback, HookUseKind::UseCallback);
4566        assert_eq!(HookUseKind::Custom, HookUseKind::Custom);
4567        assert_ne!(HookUseKind::UseState, HookUseKind::UseEffect);
4568        assert_ne!(HookUseKind::UseMemo, HookUseKind::Custom);
4569    }
4570
4571    // --- HookUse ---
4572
4573    #[test]
4574    fn hook_use_fields() {
4575        let h = HookUse {
4576            kind: HookUseKind::UseEffect,
4577            dep_array_arity: Some(2),
4578            span_start: 30,
4579            component: "Widget".to_string(),
4580        };
4581        assert_eq!(h.kind, HookUseKind::UseEffect);
4582        assert_eq!(h.dep_array_arity, Some(2));
4583        assert_eq!(h.span_start, 30);
4584        assert_eq!(h.component, "Widget");
4585    }
4586
4587    #[test]
4588    fn hook_use_no_dep_array() {
4589        let h = HookUse {
4590            kind: HookUseKind::UseCallback,
4591            dep_array_arity: None,
4592            span_start: 0,
4593            component: String::new(),
4594        };
4595        assert!(h.dep_array_arity.is_none());
4596    }
4597
4598    // --- MemberKind::StoreMember (missed in existing bitcode test) ---
4599
4600    #[test]
4601    fn member_kind_store_member_bitcode_roundtrip() {
4602        let kind = MemberKind::StoreMember;
4603        let bytes = bitcode::encode(&kind);
4604        let decoded: MemberKind = bitcode::decode(&bytes).unwrap();
4605        assert_eq!(decoded, kind);
4606    }
4607
4608    // --- RenderEdge / ForwardAttr ---
4609
4610    #[test]
4611    fn render_edge_fields() {
4612        let edge = RenderEdge {
4613            parent_component: "Parent".to_string(),
4614            child_component_name: "Child".to_string(),
4615            attr_names: vec!["title".to_string(), "onClick".to_string()],
4616            has_spread: false,
4617            forward_attrs: vec![ForwardAttr {
4618                attr: "title".to_string(),
4619                root: "props".to_string(),
4620            }],
4621            has_complex_forward: false,
4622        };
4623        assert_eq!(edge.parent_component, "Parent");
4624        assert_eq!(edge.child_component_name, "Child");
4625        assert_eq!(edge.attr_names.len(), 2);
4626        assert!(!edge.has_spread);
4627        assert_eq!(edge.forward_attrs.len(), 1);
4628        assert_eq!(edge.forward_attrs[0].attr, "title");
4629        assert_eq!(edge.forward_attrs[0].root, "props");
4630        assert!(!edge.has_complex_forward);
4631    }
4632
4633    #[test]
4634    fn render_edge_with_spread() {
4635        let edge = RenderEdge {
4636            parent_component: "Wrapper".to_string(),
4637            child_component_name: "Inner".to_string(),
4638            attr_names: Vec::new(),
4639            has_spread: true,
4640            forward_attrs: Vec::new(),
4641            has_complex_forward: true,
4642        };
4643        assert!(edge.has_spread);
4644        assert!(edge.has_complex_forward);
4645    }
4646
4647    // --- ComponentFunction ---
4648
4649    #[test]
4650    fn component_function_fields() {
4651        let cf = ComponentFunction {
4652            name: "MyButton".to_string(),
4653            span_start: 0,
4654            kind: ComponentFunctionKind::Arrow,
4655            is_exported: true,
4656            has_unharvestable_props: false,
4657            uses_clone_element: false,
4658            renders_provider: false,
4659            has_children_as_function: false,
4660            is_pure_passthrough: false,
4661        };
4662        assert_eq!(cf.name, "MyButton");
4663        assert_eq!(cf.kind, ComponentFunctionKind::Arrow);
4664        assert!(cf.is_exported);
4665        assert!(!cf.has_unharvestable_props);
4666        assert!(!cf.is_pure_passthrough);
4667    }
4668
4669    #[test]
4670    fn component_function_passthrough_flag() {
4671        let cf = ComponentFunction {
4672            name: "Passthrough".to_string(),
4673            span_start: 5,
4674            kind: ComponentFunctionKind::FnDecl,
4675            is_exported: false,
4676            has_unharvestable_props: false,
4677            uses_clone_element: false,
4678            renders_provider: false,
4679            has_children_as_function: false,
4680            is_pure_passthrough: true,
4681        };
4682        assert!(cf.is_pure_passthrough);
4683        assert!(!cf.is_exported);
4684    }
4685
4686    // --- DiKeySite ---
4687
4688    #[test]
4689    fn di_key_site_fields() {
4690        let site = DiKeySite {
4691            key_local: "MY_KEY".to_string(),
4692            role: DiRole::Provide,
4693            framework: DiFramework::Vue,
4694            span_start: 77,
4695        };
4696        assert_eq!(site.key_local, "MY_KEY");
4697        assert_eq!(site.role, DiRole::Provide);
4698        assert_eq!(site.framework, DiFramework::Vue);
4699        assert_eq!(site.span_start, 77);
4700    }
4701
4702    #[test]
4703    fn di_key_site_inject_svelte() {
4704        let site = DiKeySite {
4705            key_local: "ctx_key".to_string(),
4706            role: DiRole::Inject,
4707            framework: DiFramework::Svelte,
4708            span_start: 0,
4709        };
4710        assert_eq!(site.role, DiRole::Inject);
4711        assert_eq!(site.framework, DiFramework::Svelte);
4712    }
4713
4714    // --- release_resolution_payload: page data store whole-use derivation ---
4715
4716    #[test]
4717    fn release_payload_derives_page_data_store_whole_use_from_page_data() {
4718        let mut m = minimal_module_info();
4719        m.whole_object_uses = vec!["page.data".to_string()].into();
4720        m.release_resolution_payload();
4721        assert!(m.has_page_data_store_whole_use);
4722    }
4723
4724    #[test]
4725    fn release_payload_derives_page_data_store_whole_use_from_dollar_page_data() {
4726        let mut m = minimal_module_info();
4727        m.whole_object_uses = vec!["$page.data".to_string()].into();
4728        m.release_resolution_payload();
4729        assert!(m.has_page_data_store_whole_use);
4730    }
4731
4732    #[test]
4733    fn release_payload_does_not_set_page_data_store_whole_use_for_other_names() {
4734        let mut m = minimal_module_info();
4735        m.whole_object_uses = vec!["data".to_string(), "page".to_string()].into();
4736        m.release_resolution_payload();
4737        assert!(!m.has_page_data_store_whole_use);
4738    }
4739
4740    #[test]
4741    fn release_payload_derives_route_loader_data_whole_use() {
4742        let mut m = minimal_module_info();
4743        m.whole_object_uses = vec!["$fallow.routeLoaderData".to_string()].into();
4744        m.release_resolution_payload();
4745        assert!(m.has_route_loader_data_whole_use);
4746    }
4747
4748    // --- release_resolution_payload: referenced_import_bindings derivation ---
4749
4750    #[test]
4751    fn release_payload_referenced_bindings_excludes_empty_local_names() {
4752        let mut m = minimal_module_info();
4753        m.imports = vec![
4754            ImportInfo {
4755                source: "./styles.css".to_string(),
4756                imported_name: ImportedName::SideEffect,
4757                local_name: String::new(), // empty = side-effect import
4758                is_type_only: false,
4759                is_type_only_star: false,
4760                from_style: true,
4761                span: span(),
4762                source_span: span(),
4763            },
4764            ImportInfo {
4765                source: "react".to_string(),
4766                imported_name: ImportedName::Default,
4767                local_name: "React".to_string(),
4768                is_type_only: false,
4769                is_type_only_star: false,
4770                from_style: false,
4771                span: span(),
4772                source_span: span(),
4773            },
4774        ];
4775        m.unused_import_bindings = vec!["React".to_string()];
4776        m.release_resolution_payload();
4777        // "React" was unused, empty local is filtered; result should be empty
4778        assert!(m.referenced_import_bindings.is_empty());
4779    }
4780
4781    #[test]
4782    fn release_payload_referenced_bindings_sorted_and_deduped() {
4783        let mut m = minimal_module_info();
4784        // Two imports with the same local name (unusual but possible via re-exports)
4785        m.imports = vec![
4786            ImportInfo {
4787                source: "a".to_string(),
4788                imported_name: ImportedName::Named("foo".to_string()),
4789                local_name: "foo".to_string(),
4790                is_type_only: false,
4791                is_type_only_star: false,
4792                from_style: false,
4793                span: span(),
4794                source_span: span(),
4795            },
4796            ImportInfo {
4797                source: "b".to_string(),
4798                imported_name: ImportedName::Named("bar".to_string()),
4799                local_name: "bar".to_string(),
4800                is_type_only: false,
4801                is_type_only_star: false,
4802                from_style: false,
4803                span: span(),
4804                source_span: span(),
4805            },
4806            ImportInfo {
4807                source: "c".to_string(),
4808                imported_name: ImportedName::Named("foo".to_string()),
4809                local_name: "foo".to_string(),
4810                is_type_only: false,
4811                is_type_only_star: false,
4812                from_style: false,
4813                span: span(),
4814                source_span: span(),
4815            },
4816        ];
4817        m.unused_import_bindings = Vec::new();
4818        m.release_resolution_payload();
4819        // sorted: ["bar", "foo"] with "foo" deduped
4820        assert_eq!(
4821            m.referenced_import_bindings,
4822            vec!["bar".to_string(), "foo".to_string()]
4823        );
4824    }
4825
4826    // --- CalleeUse ---
4827
4828    #[test]
4829    fn callee_use_fields() {
4830        let cu = CalleeUse {
4831            callee_path: "child_process.exec".to_string(),
4832            span_start: 100,
4833        };
4834        assert_eq!(cu.callee_path, "child_process.exec");
4835        assert_eq!(cu.span_start, 100);
4836    }
4837
4838    // --- Helper to build a minimal ModuleInfo for targeted tests ---
4839
4840    fn minimal_module_info() -> ModuleInfo {
4841        ModuleInfo::empty(FileId(0))
4842    }
4843
4844    fn push_semantic_fact(module: &mut ModuleInfo, fact: SemanticFact) {
4845        let mut facts = std::mem::take(&mut module.semantic_facts).to_vec();
4846        facts.push(fact);
4847        module.semantic_facts = facts.into();
4848    }
4849
4850    #[test]
4851    fn dynamic_custom_element_render_helper_prefers_typed_fact() {
4852        let mut module = minimal_module_info();
4853        push_semantic_fact(
4854            &mut module,
4855            SemanticFact::DynamicCustomElementRender(DynamicCustomElementRenderFact),
4856        );
4857
4858        assert!(has_dynamic_custom_element_render(&module));
4859    }
4860
4861    #[test]
4862    fn function_complexity_bitcode_roundtrip() {
4863        let fc = FunctionComplexity {
4864            name: "processData".to_string(),
4865            is_private_member: true,
4866            line: 42,
4867            col: 4,
4868            cyclomatic: 15,
4869            cognitive: 25,
4870            line_count: 80,
4871            param_count: 3,
4872            react_hook_count: 0,
4873            react_jsx_max_depth: 0,
4874            react_prop_count: 0,
4875            source_hash: Some("0123456789abcdef".to_string()),
4876            contributions: vec![
4877                ComplexityContribution {
4878                    line: 43,
4879                    col: 8,
4880                    metric: ComplexityMetric::Cyclomatic,
4881                    kind: ComplexityContributionKind::If,
4882                    weight: 1,
4883                    nesting: 0,
4884                },
4885                ComplexityContribution {
4886                    line: 45,
4887                    col: 12,
4888                    metric: ComplexityMetric::Cognitive,
4889                    kind: ComplexityContributionKind::ElseIf,
4890                    weight: 3,
4891                    nesting: 2,
4892                },
4893            ],
4894        };
4895        let bytes = bitcode::encode(&fc);
4896        let decoded: FunctionComplexity = bitcode::decode(&bytes).unwrap();
4897        assert_eq!(decoded.name, "processData");
4898        assert!(decoded.is_private_member);
4899        assert_eq!(decoded.line, 42);
4900        assert_eq!(decoded.col, 4);
4901        assert_eq!(decoded.cyclomatic, 15);
4902        assert_eq!(decoded.cognitive, 25);
4903        assert_eq!(decoded.line_count, 80);
4904        assert_eq!(decoded.source_hash.as_deref(), Some("0123456789abcdef"));
4905        assert_eq!(decoded.contributions.len(), 2);
4906        assert_eq!(
4907            decoded.contributions[1].kind,
4908            ComplexityContributionKind::ElseIf
4909        );
4910        assert_eq!(decoded.contributions[1].weight, 3);
4911        assert_eq!(decoded.contributions[1].nesting, 2);
4912        assert_eq!(decoded.contributions[1].metric, ComplexityMetric::Cognitive);
4913    }
4914}