1use serde_json::Value;
8
9pub struct RuleDef {
11 pub id: &'static str,
14 pub category: &'static str,
21 pub name: &'static str,
23 pub short: &'static str,
25 pub full: &'static str,
27 pub docs_path: &'static str,
29}
30
31pub const CHECK_RULES: &[RuleDef] = &[
33 RuleDef {
34 id: "fallow/unused-file",
35 category: "Dead code",
36 name: "Unused Files",
37 short: "File is not reachable from any entry point",
38 full: "Source files that are not imported by any other module and are not entry points (scripts, tests, configs). These files can safely be deleted. Detection uses graph reachability from configured entry points.",
39 docs_path: "explanations/dead-code#unused-files",
40 },
41 RuleDef {
42 id: "fallow/unused-export",
43 category: "Dead code",
44 name: "Unused Exports",
45 short: "Export is never imported",
46 full: "Named exports that are never imported by any other module in the project. Includes both direct exports and re-exports through barrel files. The export may still be used locally within the same file.",
47 docs_path: "explanations/dead-code#unused-exports",
48 },
49 RuleDef {
50 id: "fallow/unused-type",
51 category: "Dead code",
52 name: "Unused Type Exports",
53 short: "Type export is never imported",
54 full: "Type-only exports (interfaces, type aliases, enums used only as types) that are never imported. These do not generate runtime code but add maintenance burden.",
55 docs_path: "explanations/dead-code#unused-types",
56 },
57 RuleDef {
58 id: "fallow/private-type-leak",
59 category: "Dead code",
60 name: "Private Type Leaks",
61 short: "Exported signature references a private type",
62 full: "Exported values or types whose public TypeScript signature references a same-file type declaration that is not exported. Consumers cannot name that private type directly, so the backing type should be exported or removed from the public signature.",
63 docs_path: "explanations/dead-code#private-type-leaks",
64 },
65 RuleDef {
66 id: "fallow/deprecated-export-in-use",
67 category: "Dead code",
68 name: "Deprecated Exports in Use",
69 short: "Export marked @deprecated is still referenced",
70 full: "Exports whose leading JSDoc carries @deprecated and that still have at least one consumer in a reachable file. Each finding lists the exact consumer count, a sample of up to 10 consumers sorted by path and line, and the deprecation message. A deprecated export with no consumer is reported as an unused export instead, marked deprecated. A consumer in an unreachable file does not count, because that file is dead code itself. `public_api` is true when the export lives in an entry point or a re-export chain reaches one: external consumers are not visible, so the finding makes no removal claim. The rule is opt-in and defaults to off. A per-path override resolves on the file that declares the export, not on the consumer.",
71 docs_path: "explanations/dead-code#deprecated-exports-in-use",
72 },
73 RuleDef {
74 id: "fallow/unused-dependency",
75 category: "Dependencies",
76 name: "Unused Dependencies",
77 short: "Dependency listed but never imported",
78 full: "Packages listed in dependencies that are never imported or required by any source file. Framework plugins and CLI tools may be false positives; use the ignore_dependencies config to suppress.",
79 docs_path: "explanations/dead-code#unused-dependencies",
80 },
81 RuleDef {
82 id: "fallow/unused-dev-dependency",
83 category: "Dependencies",
84 name: "Unused Dev Dependencies",
85 short: "Dev dependency listed but never imported",
86 full: "Packages listed in devDependencies that are never imported by test files, config files, or scripts. Build tools and jest presets that are referenced only in config may appear as false positives.",
87 docs_path: "explanations/dead-code#unused-devdependencies",
88 },
89 RuleDef {
90 id: "fallow/unused-optional-dependency",
91 category: "Dependencies",
92 name: "Unused Optional Dependencies",
93 short: "Optional dependency listed but never imported",
94 full: "Packages listed in optionalDependencies that are never imported. Optional dependencies are typically platform-specific; verify they are not needed on any supported platform before removing.",
95 docs_path: "explanations/dead-code#unused-optionaldependencies",
96 },
97 RuleDef {
98 id: "fallow/type-only-dependency",
99 category: "Dependencies",
100 name: "Type-only Dependencies",
101 short: "Production dependency only used via type-only imports",
102 full: "Production dependencies that are only imported via `import type` statements. These can be moved to devDependencies since they generate no runtime code and are stripped during compilation.",
103 docs_path: "explanations/dead-code#type-only-dependencies",
104 },
105 RuleDef {
106 id: "fallow/test-only-dependency",
107 category: "Dependencies",
108 name: "Test-only Dependencies",
109 short: "Production dependency only imported by test files",
110 full: "Production dependencies that are only imported from test files. These can usually move to devDependencies because production entry points do not require them at runtime.",
111 docs_path: "explanations/dead-code#test-only-dependencies",
112 },
113 RuleDef {
114 id: "fallow/dev-dependency-in-production",
115 category: "Dependencies",
116 name: "Dev Dependencies Used in Production",
117 short: "devDependency imported by production code with a runtime import",
118 full: "A package in `devDependencies` that is imported by production (non-test, non-config) source code via a runtime/value import. Whether it should be promoted to `dependencies` depends on the deployment: a production-only install (`pnpm install --prod`) omits devDependencies, so an import resolved at runtime breaks, while a build that inlines the package into its output resolves nothing at runtime and promoting it can instead make the deployment require an install it did not need. This is the promote-side mirror of `test-only-dependency` and `type-only-dependency`. A dev dependency imported from production code only via `import type` is NOT flagged (types are erased at build time), and a package also listed in `dependencies`, `peerDependencies`, or `optionalDependencies` is left alone because another manifest section provides it at runtime.",
119 docs_path: "explanations/dead-code#dev-dependencies-in-production",
120 },
121 RuleDef {
122 id: "fallow/unused-enum-member",
123 category: "Dead code",
124 name: "Unused Enum Members",
125 short: "Enum member is never referenced",
126 full: "Enum members that are never referenced in the codebase. Uses scope-aware binding analysis to track all references including computed access patterns.",
127 docs_path: "explanations/dead-code#unused-enum-members",
128 },
129 RuleDef {
130 id: "fallow/unused-class-member",
131 category: "Dead code",
132 name: "Unused Class Members",
133 short: "Class member is never referenced",
134 full: "Class methods and properties that are never referenced outside the class. Private members are checked within the class scope; public members are checked project-wide.",
135 docs_path: "explanations/dead-code#unused-class-members",
136 },
137 RuleDef {
138 id: "fallow/unused-store-member",
139 category: "Dead code",
140 name: "Unused Store Members",
141 short: "Store member is never accessed by any consumer",
142 full: "Pinia store members (a `state` / `getters` / `actions` key, or a setup-store returned key) declared but never accessed by any consumer project-wide. The store binding is imported (so the module is reachable) yet a specific member is dead. Defaults to warn, not error: a store has an open declaration surface (plugins, dynamic dispatch) so confidence is lower. Activates only when pinia or @pinia/nuxt is a declared dependency.",
143 docs_path: "explanations/dead-code#unused-store-members",
144 },
145 RuleDef {
146 id: "fallow/unresolved-import",
147 category: "Dead code",
148 name: "Unresolved Imports",
149 short: "Import could not be resolved",
150 full: "Import specifiers that could not be resolved to a file on disk. Common causes: deleted files, typos in paths, missing path aliases in tsconfig, or uninstalled packages.",
151 docs_path: "explanations/dead-code#unresolved-imports",
152 },
153 RuleDef {
154 id: "fallow/unlisted-dependency",
155 category: "Dependencies",
156 name: "Unlisted Dependencies",
157 short: "Dependency used but not in package.json",
158 full: "Packages that are imported in source code but not listed in package.json. These work by accident (hoisted from another workspace package or transitive dep) and will break in strict package managers.",
159 docs_path: "explanations/dead-code#unlisted-dependencies",
160 },
161 RuleDef {
162 id: "fallow/duplicate-export",
163 category: "Dead code",
164 name: "Duplicate Exports",
165 short: "Export name appears in multiple modules",
166 full: "The same export name is defined in multiple modules. Consumers may import from the wrong module, leading to subtle bugs. Consider renaming or consolidating.",
167 docs_path: "explanations/dead-code#duplicate-exports",
168 },
169 RuleDef {
170 id: "fallow/circular-dependency",
171 category: "Architecture",
172 name: "Circular Dependencies",
173 short: "Circular dependency chain detected",
174 full: "A cycle in the module import graph. Circular dependencies cause undefined behavior with CommonJS (partial modules) and initialization ordering issues with ESM. Break cycles by extracting shared code.",
175 docs_path: "explanations/dead-code#circular-dependencies",
176 },
177 RuleDef {
178 id: "fallow/re-export-cycle",
179 category: "Architecture",
180 name: "Re-Export Cycles",
181 short: "Two or more barrel files re-export from each other in a loop",
182 full: "A barrel file re-exports from another barrel that ultimately re-exports back. When this happens, imports from any file in the loop may silently come up empty, because the re-export chain has no terminating module to resolve names against. To fix this: open any one file in the loop and remove the `export * from` (or `export { ... } from`) statement that points back into the cycle. Any single removal will break the cycle and restore working re-exports. A self-loop (a single barrel re-exporting from itself, often a rename leftover) is reported under the same rule with kind `self-loop`.",
183 docs_path: "explanations/dead-code#re-export-cycles",
184 },
185 RuleDef {
186 id: "fallow/boundary-violation",
187 category: "Architecture",
188 name: "Boundary Violations",
189 short: "Import crosses a configured architecture boundary",
190 full: "A module imports from a zone that its configured boundary rules do not allow. Boundary checks help keep layered architecture, feature slices, and package ownership rules enforceable.",
191 docs_path: "explanations/dead-code#boundary-violations",
192 },
193 RuleDef {
194 id: "fallow/boundary-coverage",
195 category: "Architecture",
196 name: "Boundary Coverage",
197 short: "Source file matches no configured architecture boundary zone",
198 full: "A reachable source file is not assigned to any configured boundary zone while boundaries.coverage.requireAllFiles is enabled. Add the file to a zone pattern, move it under an existing zone, or allow-list generated and intentionally unzoned paths with boundaries.coverage.allowUnmatched.",
199 docs_path: "explanations/dead-code#boundary-violations",
200 },
201 RuleDef {
202 id: "fallow/boundary-call-violation",
203 category: "Architecture",
204 name: "Boundary Call Violation",
205 short: "Zoned file calls a callee its zone forbids",
206 full: "A file classified into a boundary zone calls a callee matching one of the zone's boundaries.calls.forbidden patterns. The check is syntactic: it matches the written callee path and the import-resolved canonical path, and it only applies to files classified into a zone. Move the call behind an allowed abstraction, or adjust the zone's forbidden patterns if the rule was wrong.",
207 docs_path: "explanations/dead-code#boundary-violations",
208 },
209 RuleDef {
210 id: "fallow/policy-violation",
211 category: "Policy",
212 name: "Policy Violation",
213 short: "Banned usage matched a rule-pack rule",
214 full: "A call site, import, or catalogue-derived effect matched a rule from a configured rule pack (the rulePacks config key). Packs are pure declarative data; the check is syntactic, call and effect matching use written plus import-resolved canonical callees, and import matching uses the raw specifier. Replace the banned usage per the rule's message, scope the rule with files/exclude globs, or adjust its severity.",
215 docs_path: "explanations/dead-code#policy-violations",
216 },
217 RuleDef {
218 id: "fallow/stale-suppression",
219 category: "Suppressions",
220 name: "Stale Suppressions",
221 short: "Suppression comment or tag no longer matches any issue",
222 full: "A fallow-ignore-next-line, fallow-ignore-file, or @expected-unused suppression that no longer matches any active issue. The underlying problem was fixed but the suppression was left behind. Remove it to keep the codebase clean.",
223 docs_path: "explanations/dead-code#stale-suppressions",
224 },
225 RuleDef {
226 id: "fallow/missing-suppression-reason",
227 category: "Suppressions",
228 name: "Missing Suppression Reason",
229 short: "Suppression comment omits a required reason",
230 full: "A fallow-ignore-next-line or fallow-ignore-file suppression omits the explanatory reason required by the requireSuppressionReason rule. Add a short reason after the suppression token, or remove the suppression if the issue is no longer intentional.",
231 docs_path: "explanations/dead-code#stale-suppressions",
232 },
233 RuleDef {
234 id: "fallow/unused-catalog-entry",
235 category: "Dependencies",
236 name: "Unused catalog entry",
237 short: "Catalog entry not referenced by any workspace package",
238 full: "An entry in a package manager catalog (`pnpm-workspace.yaml` `catalog:` / `catalogs:` or Bun root `package.json` `workspaces.catalog` / `workspaces.catalogs`) that no workspace package.json references via the `catalog:` protocol. Catalog entries are leftover dependency metadata once a package is removed from every consumer; delete the entry to keep the catalog truthful. See also: fallow/unresolved-catalog-reference (the inverse: consumer references a catalog that does not declare the package).",
239 docs_path: "explanations/dead-code#unused-catalog-entries",
240 },
241 RuleDef {
242 id: "fallow/empty-catalog-group",
243 category: "Dependencies",
244 name: "Empty catalog group",
245 short: "Named catalog group has no entries",
246 full: "A named group under `catalogs:` in `pnpm-workspace.yaml` or Bun root `package.json` has no package entries. Empty named groups are leftover catalog structure after the last entry is removed. The default `catalog` map is intentionally ignored because some projects keep it as a stable hook.",
247 docs_path: "explanations/dead-code#empty-catalog-groups",
248 },
249 RuleDef {
250 id: "fallow/unresolved-catalog-reference",
251 category: "Dependencies",
252 name: "Unresolved catalog reference",
253 short: "package.json references a catalog that does not declare the package",
254 full: "A workspace package.json declares a dependency with the `catalog:` or `catalog:<name>` protocol, but the catalog has no entry for that package. The package manager install will fail until the catalog is fixed. To fix: add the package to the named catalog, switch the reference to a different catalog that does declare it, or remove the reference and pin a hardcoded version. Scope: the detector scans `dependencies`, `devDependencies`, `peerDependencies`, and `optionalDependencies` in every workspace `package.json`, using `pnpm-workspace.yaml` catalogs when present and Bun root `package.json` catalogs otherwise. See also: fallow/unused-catalog-entry (the inverse: catalog entries no consumer references).",
255 docs_path: "explanations/dead-code#unresolved-catalog-references",
256 },
257 RuleDef {
258 id: "fallow/unused-dependency-override",
259 category: "Dependencies",
260 name: "Unused dependency override",
261 short: "Package-manager override target is not declared or resolved",
262 full: "An entry in `pnpm-workspace.yaml`'s `overrides:` section, `package.json#pnpm.overrides`, npm or Bun's top-level `package.json#overrides`, or Bun's `package.json#resolutions` whose target package is not declared by any workspace package and is not present in the active readable lockfile (`pnpm-lock.yaml`, `package-lock.json`, `npm-shrinkwrap.json`, or `bun.lock`). Override entries linger after their target package leaves the resolved dependency tree. pnpm and npm projects without a readable lockfile fall back to workspace package manifests and keep a `hint` so transitive CVE pins can be reviewed before removal. Bun projects with only binary `bun.lockb` fail closed: fallow reports a workspace diagnostic and emits no unused-override finding until a readable `bun.lock` exists. To fix: delete the entry, refresh the active lockfile if it is stale, or add the entry to `ignoreDependencyOverrides` when the override is intentionally retained. See also: fallow/misconfigured-dependency-override.",
263 docs_path: "explanations/dead-code#unused-dependency-overrides",
264 },
265 RuleDef {
266 id: "fallow/misconfigured-dependency-override",
267 category: "Dependencies",
268 name: "Misconfigured dependency override",
269 short: "Package-manager override has an unparsable key or value",
270 full: "An entry in `pnpm-workspace.yaml#overrides`, `package.json#pnpm.overrides`, npm or Bun's top-level `package.json#overrides`, or Bun's `package.json#resolutions` whose key or value cannot be interpreted in that source's override grammar. Common shapes include an empty key, an empty value, a malformed version selector (`@types/react@<<18`), or an unbalanced parent matcher (`react>`). The active package manager may reject or ignore the entry. To fix: correct the key or value according to that package manager's grammar, or remove the entry. See also: fallow/unused-dependency-override.",
271 docs_path: "explanations/dead-code#misconfigured-dependency-overrides",
272 },
273 RuleDef {
274 id: "fallow/invalid-client-export",
275 category: "Policy",
276 name: "Invalid client export",
277 short: "\"use client\" file exports a server-only / route-config name",
278 full: "A file carrying the `\"use client\"` directive also exports a Next.js server-only or route-segment config name (such as `metadata`, `generateMetadata`, `revalidate`, `generateStaticParams`, or a route HTTP method like `GET`/`POST`). Next.js rejects this combination at build time. Move the server-only export to a non-client module (a server component, a `route.ts`, or a separate config file), or remove the `\"use client\"` directive if the module does not need to be a client boundary. The check runs only when the project declares `next`.",
279 docs_path: "explanations/dead-code#invalid-client-exports",
280 },
281 RuleDef {
282 id: "fallow/mixed-client-server-barrel",
283 category: "Policy",
284 name: "Mixed client/server barrel",
285 short: "Barrel re-exports both a \"use client\" module and a server-only module",
286 full: "A barrel file (a module whose exports are `export ... from` re-exports) forwards a name from a `\"use client\"` module alongside a name from a server-only module (one carrying `\"use server\"`, importing the `server-only` package, or importing a server-only Next.js API such as `next/headers`). Importing one name from such a barrel drags the other's directive context across the React Server Components boundary, the documented Next.js App Router footgun. Type-only re-exports are ignored (erased at build), and a barrel re-exporting a client module alongside an ordinary undirected utility does NOT flag. To fix: split the barrel so client and server-only modules are re-exported from separate entry points. The check runs only when the project declares `next`.",
287 docs_path: "explanations/dead-code#mixed-client-server-barrels",
288 },
289 RuleDef {
290 id: "fallow/misplaced-directive",
291 category: "Policy",
292 name: "Misplaced directive",
293 short: "\"use client\" / \"use server\" directive is not in the leading position and is ignored",
294 full: "A `\"use client\"` or `\"use server\"` directive string appears as an expression statement after a non-directive statement (an `import`, a `const`). React Server Components bundlers only honor a directive in the leading prologue, before any other statement; once any statement precedes it the string is parsed as an ordinary expression and SILENTLY IGNORED. The intended client/server boundary never takes effect, so the file is treated as a server module. To fix: move the directive to the very top of the file, above every import. The check runs only when the project declares `next`.",
295 docs_path: "explanations/dead-code#misplaced-directives",
296 },
297 RuleDef {
298 id: "fallow/unprovided-inject",
299 category: "Dead code",
300 name: "Unprovided injects",
301 short: "inject() / getContext() reads a key that no provide() / setContext() supplies",
302 full: "A Vue `inject(KEY)` or Svelte `getContext(KEY)` reads a dependency-injection key (an imported or module-local symbol) that no matching `provide(KEY)` / `setContext(KEY)` supplies anywhere in the project. The read resolves to undefined at runtime, surfaced only at render. To fix: add a matching provider for the key, or remove the dead inject. Defaults to warn, not error: a provider may live outside the analyzed graph (an app-level provide registered elsewhere, a plugin, a host application). String-literal keys and keys imported from a package are abstained.",
303 docs_path: "explanations/dead-code#unprovided-injects",
304 },
305 RuleDef {
306 id: "fallow/unrendered-component",
307 category: "Dead code",
308 name: "Unrendered components",
309 short: "A Vue / Svelte component is reachable through a barrel but rendered nowhere",
310 full: "A Vue or Svelte single-file component (the default export of a `.vue` / `.svelte` file) is reachable in the module graph (a barrel re-exports it) but instantiated NOWHERE in the project: no `<Tag>`, no `:is` / `this=` binding, no `components` / `app.component` registration, no `h()` / auto-import use, and no script value-read. It survives unused-file (the barrel keeps it reachable) and unused-export (the re-export counts as a use), yet no file actually renders it. To fix: render the component somewhere, or delete it and drop the dead re-export. Defaults to warn, not error: a component can be rendered reflectively (a dynamic `<component :is>` resolved from a non-literal value), so analyzer confidence is lower. Components that are themselves entry points (route pages, layouts, `App.vue`) and components re-exported from a non-private package entry point are abstained.",
311 docs_path: "explanations/dead-code#unrendered-components",
312 },
313 RuleDef {
314 id: "fallow/unused-component-prop",
315 category: "Dead code",
316 name: "Unused component props",
317 short: "A Vue, Svelte, or React component prop is referenced nowhere in its own component",
318 full: "A declared component prop referenced nowhere inside its own component, in these framework shapes: a Vue `<script setup>` defineProps prop, a Svelte 5 `$props()` prop, or a React/Preact prop destructured from a component's first parameter and read nowhere in its body. Framework type checkers check caller-side prop correctness, not this in-component dead-input direction. Conservative: Vue abstains on `$attrs` fallthrough, whole-object props use, defineExpose, defineModel, and imported prop-type aliases; Svelte abstains on rest, computed, nested, and whole-object `$props()` shapes; React abstains on rest spread (`{...rest}`), props forwarded by spread, props passed wholesale to a hook, `forwardRef` / imported-interface props, and exported public-API component props. Default warn; suppress or remove the prop.",
319 docs_path: "explanations/dead-code#unused-component-props",
320 },
321 RuleDef {
322 id: "fallow/unused-component-emit",
323 category: "Dead code",
324 name: "Unused component emits",
325 short: "A Vue <script setup> defineEmits event is emitted nowhere in its own component",
326 full: "A Vue `<script setup>` defineEmits declared event that is emitted nowhere in its own component (no `emit('<name>')` call). vue-tsc / Volar check caller-side emit correctness, not this in-component dead-output direction. Conservative: abstains on `$attrs` fallthrough, whole-object emit use, defineExpose, defineModel, and imported emit-type aliases. Default warn; suppress or remove the emit.",
327 docs_path: "explanations/dead-code#unused-component-emits",
328 },
329 RuleDef {
330 id: "fallow/unused-component-input",
331 category: "Dead code",
332 name: "Unused component inputs",
333 short: "An Angular @Input() / signal input() / model() input is read nowhere in its own component",
334 full: "An Angular `@Input()` / signal `input()` / `model()` declared input that is read nowhere in its own component (neither the inline / external template nor the class body). The Angular compiler never flags a declared-but-unread `@Input`, and there is no `@angular-eslint` rule for it. Conservative: usage detection over-credits by design (a template sentinel ref, any class-body member access by that name, or a bare identifier read counts as used), and the whole component abstains on an unresolved `extends` heritage clause (a base class in another file may read the input). A `model()` is recorded as an input only. Default warn; suppress or remove the input. The check runs only when the project declares `@angular/core`.",
335 docs_path: "explanations/dead-code#unused-component-inputs",
336 },
337 RuleDef {
338 id: "fallow/unused-component-output",
339 category: "Dead code",
340 name: "Unused component outputs",
341 short: "An Angular @Output() / signal output() output is emitted nowhere in its own component",
342 full: "An Angular `@Output()` / signal `output()` declared output that is emitted nowhere in its own component (no `this.<output>.emit(...)`). The Angular compiler never flags a declared-but-unemitted `@Output`, and there is no `@angular-eslint` rule for it. Conservative: usage detection over-credits by design (a `this.<output>.emit` call site, or any value read of `this.<output>` that might forward it, counts as used), and the whole component abstains on an unresolved `extends` heritage clause. A `model()`-derived implicit output is never flagged. Default warn; suppress or remove the output. The check runs only when the project declares `@angular/core`.",
343 docs_path: "explanations/dead-code#unused-component-outputs",
344 },
345 RuleDef {
346 id: "fallow/unused-svelte-event",
347 category: "Dead code",
348 name: "Unused Svelte events",
349 short: "A Svelte component dispatches a createEventDispatcher event whose name is listened to nowhere in the project",
350 full: "A Svelte component that dispatches a custom event via `createEventDispatcher` (`const dispatch = createEventDispatcher(); dispatch('save')`) whose event name is listened to NOWHERE in the analyzed project. This is the cross-file dead-OUTPUT direction: the component fires an event nothing handles. No native tool covers the listener side: eslint-plugin-svelte and svelte-check are single-file / type-only. fallow builds a project-wide listened-event set from every component-tag `on:<name>` binding (event forwarding, an `on:<name>` with no handler, counts as a listen), then flags a dispatched event whose name is in no listened set. Conservative (zero false positives): the whole component abstains on a dynamic `dispatch(<nonLiteral>)` (the event name is unknowable) or a `dispatch` reference forwarded as a value; a DOM `on:click` on a lowercase element is NOT a custom event and is ignored; and any listener on any component anywhere credits the name (the liberal over-credit, false-negative-safe direction). Default warn; remove the dispatched event or wire a listener. The check runs only when the project declares `svelte`.",
351 docs_path: "explanations/dead-code#unused-svelte-events",
352 },
353 RuleDef {
354 id: "fallow/unused-server-action",
355 category: "Dead code",
356 name: "Unused server actions",
357 short: "A Next.js Server Action exported from a \"use server\" file is referenced by no code in the project",
358 full: "A Next.js Server Action (an export of a `\"use server\"` file) that no code in the project references: no import-and-call, no `action={fn}` JSX binding, no `<form action={fn}>`. This is the cross-graph \"declared but zero consumers\" direction, reclassified out of `unused-export` for `\"use server\"` files so the finding carries the action-specific signal. eslint-plugin-next is single-file and cannot see cross-file usage. It does NOT mean the endpoint is unreachable: Next.js still registers a generated action id, so it stays POST-able; it means no project code references it (likely forgotten or dead, and a candidate for removal to shrink surface area). Default warn; wire the action to a consumer or remove it. The check runs only when the project declares `next`.",
359 docs_path: "explanations/dead-code#unused-server-actions",
360 },
361 RuleDef {
362 id: "fallow/unused-load-data-key",
363 category: "Dead code",
364 name: "Unused load data keys",
365 short: "A SvelteKit load() return-object key is read by no consumer",
366 full: "A SvelteKit route `load()` (in `+page.ts` / `+page.server.ts` and the `.js` variants) returns an object whose keys become the route's `data` prop. A returned key that NO consumer reads is dead: it runs a real server-side fetch / DB cost on every request for data nothing renders. fallow checks two channels: the sibling `+page.svelte`'s `data.<key>` reads (route-pinned), and project-wide `page.data.<key>` (Svelte 5 `$app/state`) / `$page.data.<key>` (Svelte 4 `$app/stores`) reads in any component. `svelte-check` types `data` via generated `$types` but never flags an unread RETURNED key. The detector abstains (never false-flags) on a spread / non-literal / multi-return / computed-key / wrapped `load`, on a sibling that passes the whole `data` object opaquely, on a `+page.server.ts` whose universal `+page.ts` sibling forwards its `data`, and project-wide when any whole-object use of `page.data` / `$page.data` is seen. Default warn; delete the key or wire a consumer. A load fetch can have side effects, so there is no safe auto-fix. The check runs only when the project declares `@sveltejs/kit`.",
367 docs_path: "explanations/dead-code#unused-load-data-keys",
368 },
369 RuleDef {
370 id: "fallow/prop-drilling",
371 category: "Dead code",
372 name: "Prop drilling",
373 short: "A React/Preact prop is forwarded unchanged through 3+ pass-through components to a distant consumer",
374 full: "A React/Preact prop is received by a component, forwarded UNCHANGED to a child, and forwarded again through two or more intermediate \"pass-through\" components until a component that substantively uses it. The high-confidence signal is that the received identifier appears ONLY as the root of forwarded child-JSX attribute values (so `<Child userName={user.name}/>` counts: the prop `user` is projected forward), not the attribute name matching. fallow emits located per-chain records (the source, each pass-through hop, and the consumer with file + line + component name) so CI and an agent can act: colocate the consumer with the data, lift the value to a React context/provider at a mid-chain hop, or compose the component so the intermediates no longer thread the prop. This is a graph-derived health signal, not a correctness error. The rule defaults to OFF (opt-in), like private-type-leak and the security rules: enable it with `prop-drilling: \"warn\"` in `rules`. Zero false positives by construction: any `{...props}` spread, `cloneElement`, element-as-prop / render-prop / children-as-function, or context `*.Provider` anywhere in the chain abstains the whole chain, as does an ambiguous or unresolvable hop. The check runs only when the project declares `react` / `react-dom` / `next` / `preact`.",
375 docs_path: "explanations/dead-code#prop-drilling",
376 },
377 RuleDef {
378 id: "fallow/thin-wrapper",
379 category: "Dead code",
380 name: "Thin wrapper",
381 short: "A React/Preact component whose whole body is a single spread-forwarded child render (a candidate for inlining)",
382 full: "A React/Preact component whose ENTIRE body is structural indirection: it returns exactly one capitalized component element that forwards the component's own props via a bare spread (`return <Child {...props}/>`), with no host-element wrapper, no extra children, no named attributes alongside the spread, no hooks, no branching, and no other statements. Such a component adds nothing of its own: it is a CANDIDATE for inlining at its call sites or deleting, not a correctness error. fallow emits a located per-wrapper record (file + line + the wrapper and child component names) so CI and an agent can act. The rule defaults to OFF (opt-in), like prop-drilling and the security rules: enable it with `thin-wrapper: \"warn\"` in `rules`. Zero false positives by construction: a `forwardRef` / `memo` wrapper (the sanctioned way to make a child ref-able or set a perf boundary), an EXPORTED component (a public-API re-brand / encapsulation), a context `*.Provider` wrapper, a `cloneElement` / render-prop forward, a wrapper that passes ANY named attribute alongside the spread (a fixed configuration), a self-render, or an unresolvable / member-expression child all abstain. A TypeScript-only type-narrowing wrapper (`const StrictButton = (p: StrictProps) => <Button {...p}/>`) is a known limitation under ADR-001's syntactic analysis; suppress it with the inline comment. The check runs only when the project declares `react` / `react-dom` / `next` / `preact`.",
383 docs_path: "explanations/dead-code#thin-wrapper",
384 },
385 RuleDef {
386 id: "fallow/duplicate-prop-shape",
387 category: "Dead code",
388 name: "Duplicate prop shape",
389 short: "Three or more React/Preact components across two or more files declare an identical prop-name set (a missing shared Props type)",
390 full: "Three or more distinct React/Preact components, living in two or more files, whose statically-harvested prop NAME set is byte-for-byte IDENTICAL after (a) excluding a fixed denylist of ubiquitous DOM / render-passthrough prop names (className, style, id, children, key, ref, the common event handlers, plus data-* / aria-* by prefix) and (b) requiring the REMAINING significant set to have four or more members. Identity is over NAMES only, never types (ADR-001 cannot resolve types). This is a structural-refactor health signal: the recurring shape is a missing shared abstraction, so extract one shared `Props` type (or a base component) that every member reuses. It is never a correctness error and never an auto-fix. fallow emits one located record per participating component, each naming the shared `shape`, the `group_size`, and the OTHER members in `sharing_components`. The rule defaults to OFF (opt-in), like thin-wrapper and the security rules: enable it with `duplicate-prop-shape: \"warn\"` in `rules`. Anti-noise gates (defended as rule-of-three plus a denylist-survivor floor, not tuned magic): the four-significant-prop floor turns `{label, onClick}` buttons into non-findings; the three-component floor is the rule-of-three abstraction trigger; the two-file floor keeps a local same-shaped variant pair (a render-prop pair, a Foo/FooImpl split) unflagged. A component whose props are not fully harvestable (a rest/spread signature, a forwardRef/memo over an imported interface) ABSTAINS, because a partial prop set can never be proven identical. Exact full-set identity ONLY: a superset / subset relationship does NOT group, so a four-prop group and a five-prop superset form TWO findings (the price of zero invalid groups: the finding always fits one extracted shared type). The check runs only when the project declares `react` / `react-dom` / `next` / `preact`.",
391 docs_path: "explanations/dead-code#duplicate-prop-shape",
392 },
393 RuleDef {
394 id: "fallow/route-collision",
395 category: "Policy",
396 name: "Route collision",
397 short: "Two or more Next.js App Router route files resolve to the same URL",
398 full: "Two or more App Router route files (a `page` or a `route` handler) resolve to the SAME URL within one app-root. Route groups `(name)` and parallel slots `@name` do not change the URL, so `app/(marketing)/about/page.tsx` and `app/(shop)/about/page.tsx` both own `/about`. Next.js fails the build (\"You cannot have two parallel pages that resolve to the same path\") because a URL can have at most one owner, whether a Page or a Route Handler. fallow surfaces every colliding file at once; the build error names only one. Buckets are scoped per app-root (per workspace package), so a monorepo with several independent Next apps sharing a path is not flagged. Files under a private `_folder` or an intercepting marker `(.)`/`(..)`/`(...)` are excluded. There is no safe auto-fix: move or merge one of the files so each URL has a single owner. The check runs only when the project declares `next`.",
399 docs_path: "explanations/dead-code#route-collisions",
400 },
401 RuleDef {
402 id: "fallow/dynamic-segment-name-conflict",
403 category: "Policy",
404 name: "Dynamic segment name conflict",
405 short: "Sibling Next.js dynamic route segments use different slug names at the same position",
406 full: "Two or more sibling dynamic route segments at the same App Router tree position use different param spellings (`[id]` vs `[slug]`, or a catch-all `[...x]` vs an optional catch-all `[[...x]]`). Next.js throws \"You cannot use different slug names for the same dynamic path\" at dev and production runtime when the position is hit, because one position must resolve to a single param name. `next build` does NOT catch this (the build succeeds), so CI passes while the route crashes on its first request; fallow's static catch closes that gap. Route groups are transparent to the position and parallel slots fork it, so only genuinely-sibling segments conflict. To fix: rename the dynamic segments at the position to one consistent slug name. The check runs only when the project declares `next`.",
407 docs_path: "explanations/dead-code#dynamic-segment-name-conflicts",
408 },
409];
410
411#[must_use]
413pub fn rule_by_id(id: &str) -> Option<&'static RuleDef> {
414 CHECK_RULES
415 .iter()
416 .chain(HEALTH_RULES.iter())
417 .chain(DUPES_RULES.iter())
418 .chain(FLAGS_RULES.iter())
419 .chain(SECURITY_RULES.iter())
420 .find(|r| r.id == id)
421}
422
423pub fn all_rules() -> impl Iterator<Item = &'static RuleDef> {
427 CHECK_RULES
428 .iter()
429 .chain(HEALTH_RULES.iter())
430 .chain(DUPES_RULES.iter())
431 .chain(FLAGS_RULES.iter())
432 .chain(SECURITY_RULES.iter())
433}
434
435#[must_use]
440pub fn rule_command(rule: &RuleDef) -> &'static str {
441 let owns = |rules: &[RuleDef]| rules.iter().any(|candidate| candidate.id == rule.id);
442 if owns(HEALTH_RULES) {
443 "health"
444 } else if owns(DUPES_RULES) {
445 "dupes"
446 } else if owns(FLAGS_RULES) {
447 "flags"
448 } else if owns(SECURITY_RULES) {
449 "security"
450 } else {
451 "dead-code"
452 }
453}
454
455#[must_use]
458pub fn bare_rule_id(rule: &RuleDef) -> &'static str {
459 rule.id.split_once('/').map_or(rule.id, |(_, bare)| bare)
460}
461
462#[must_use]
475pub fn rule_severity_key(rule: &RuleDef) -> Option<&'static str> {
476 let bare = bare_rule_id(rule);
477 let candidate = fallow_types::issue_meta::issue_meta_by_code(bare)
478 .and_then(|meta| meta.config_key.or(meta.suppress_token))
479 .or_else(|| match rule_command(rule) {
480 "security" => Some(if bare == "client-server-leak" {
481 "security-client-server-leak"
482 } else {
483 "security-sink"
484 }),
485 "health" if matches!(bare, "untested-file" | "untested-export") => {
486 Some("coverage-gaps")
487 }
488 _ => None,
489 })?;
490 crate::schemas::is_rule_severity_key(candidate).then_some(candidate)
491}
492
493#[must_use]
495pub fn rule_docs_url(rule: &RuleDef) -> String {
496 let docs_path = rule_result_meta(rule).map_or(rule.docs_path, |meta| meta.meta_docs_path);
497 fallow_output::rule_docs_url(docs_path)
498}
499
500fn rule_result_meta(rule: &RuleDef) -> Option<&'static fallow_types::issue_meta::IssueResultMeta> {
501 let code = rule.id.strip_prefix("fallow/")?;
502 fallow_types::issue_meta::issue_result_meta_by_code(code)
503}
504
505fn rule_explain_name(rule: &RuleDef) -> &'static str {
506 rule_result_meta(rule).map_or(rule.name, |meta| meta.meta_name)
507}
508
509fn rule_explain_summary(rule: &RuleDef) -> &'static str {
510 rule_result_meta(rule).map_or(rule.short, |meta| meta.sarif_description)
511}
512
513pub struct RuleGuide {
518 pub example: &'static str,
520 pub how_to_fix: &'static str,
522}
523
524#[must_use]
529pub fn rule_by_token(token: &str) -> Option<&'static RuleDef> {
530 let trimmed = token.trim();
531 if trimmed.is_empty() {
532 return None;
533 }
534 if let Some(rule) = rule_by_id(trimmed) {
535 return Some(rule);
536 }
537 let normalized = trimmed
538 .strip_prefix("fallow/")
539 .unwrap_or(trimmed)
540 .trim_start_matches("--")
541 .replace('_', "-")
542 .split_whitespace()
543 .collect::<Vec<_>>()
544 .join("-");
545 if let Some(rule) = dead_code_registry_rule(&normalized) {
546 return Some(rule);
547 }
548 let alias = health_alias_id(&normalized).or_else(|| security_alias_id(&normalized));
549 if let Some(id) = alias
550 && let Some(rule) = rule_by_id(id)
551 {
552 return Some(rule);
553 }
554 let security_token = normalized.strip_prefix("security-").unwrap_or(&normalized);
555 let security_id = format!("security/{security_token}");
556 if let Some(rule) = rule_by_id(&security_id) {
557 return Some(rule);
558 }
559 let singular = normalized
560 .strip_suffix('s')
561 .filter(|_| normalized != "unused-class")
562 .unwrap_or(&normalized);
563 let singular_security_token = singular.strip_prefix("security-").unwrap_or(singular);
564 let singular_security_id = format!("security/{singular_security_token}");
565 if let Some(rule) = rule_by_id(&singular_security_id) {
566 return Some(rule);
567 }
568 let id = format!("fallow/{singular}");
569 rule_by_id(&id).or_else(|| {
570 CHECK_RULES
571 .iter()
572 .chain(HEALTH_RULES.iter())
573 .chain(DUPES_RULES.iter())
574 .chain(FLAGS_RULES.iter())
575 .chain(SECURITY_RULES.iter())
576 .find(|rule| {
577 rule.docs_path.ends_with(&normalized)
578 || rule.docs_path.ends_with(singular)
579 || rule_result_meta(rule).is_some_and(|meta| {
580 meta.meta_docs_path.ends_with(&normalized)
581 || meta.meta_docs_path.ends_with(singular)
582 || meta.meta_name.eq_ignore_ascii_case(trimmed)
583 })
584 || rule.name.eq_ignore_ascii_case(trimmed)
585 })
586 })
587}
588
589fn dead_code_registry_rule(normalized: &str) -> Option<&'static RuleDef> {
590 let meta = fallow_types::issue_meta::issue_meta_for_contract_token(normalized)?;
591 CHECK_RULES
592 .iter()
593 .find(|rule| rule.id.strip_prefix("fallow/") == Some(meta.code))
594}
595
596fn health_alias_id(normalized: &str) -> Option<&'static str> {
597 match normalized {
598 "complexity" | "high-complexity" => Some("fallow/high-complexity"),
599 "cyclomatic" | "high-cyclomatic" | "high-cyclomatic-complexity" => {
600 Some("fallow/high-cyclomatic-complexity")
601 }
602 "cognitive" | "high-cognitive" | "high-cognitive-complexity" => {
603 Some("fallow/high-cognitive-complexity")
604 }
605 "crap" | "high-crap" | "high-crap-score" => Some("fallow/high-crap-score"),
606 "duplication" | "dupes" | "code-duplication" => Some("fallow/code-duplication"),
607 "feature-flag" | "feature-flags" | "flags" => Some("fallow/feature-flag"),
608 "flag-retirement" | "flag-retirement-candidate" | "retirement" => {
609 Some("fallow/flag-retirement-candidate")
610 }
611 _ => None,
612 }
613}
614
615fn security_alias_id(normalized: &str) -> Option<&'static str> {
616 match normalized {
617 "security"
618 | "security-candidate"
619 | "security-candidates"
620 | "tainted-sink"
621 | "tainted-sinks"
622 | "security-sink"
623 | "security-sinks" => Some("security/tainted-sink"),
624 "client-server-leak"
625 | "client-server-leaks"
626 | "security-client-server-leak"
627 | "security-client-server-leaks" => Some("security/client-server-leak"),
628 "hardcoded-secret" | "hardcoded-secrets" | "hard-coded-secret" | "hard-coded-secrets" => {
629 Some("security/hardcoded-secret")
630 }
631 _ => None,
632 }
633}
634
635#[must_use]
637pub fn rule_guide(rule: &RuleDef) -> RuleGuide {
638 source_dead_code_rule_guide(rule.id)
639 .or_else(|| member_import_rule_guide(rule.id))
640 .or_else(|| architecture_rule_guide(rule.id))
641 .or_else(|| catalog_rule_guide(rule.id))
642 .or_else(|| health_runtime_rule_guide(rule.id))
643 .or_else(|| duplication_rule_guide(rule.id))
644 .or_else(|| security_rule_guide(rule.id))
645 .unwrap_or_else(fallback_rule_guide)
646}
647
648fn source_dead_code_rule_guide(id: &str) -> Option<RuleGuide> {
649 Some(match id {
650 "fallow/unused-file" => RuleGuide {
651 example: "src/old-widget.ts is not imported by any entry point, route, script, or config file.",
652 how_to_fix: "Delete the file if it is genuinely dead. If a framework loads it implicitly, add the right plugin/config pattern or mark it in alwaysUsed.",
653 },
654 "fallow/unused-export" => RuleGuide {
655 example: "export const formatPrice = ... exists in src/money.ts, but no module imports formatPrice.",
656 how_to_fix: "Remove the export or make it file-local. If it is public API, import it from an entry point or add an intentional suppression with context.",
657 },
658 "fallow/unused-type" => RuleGuide {
659 example: "export interface LegacyProps is exported, but no module imports the type.",
660 how_to_fix: "Remove the type export, inline it, or keep it behind an explicit API entry point when consumers rely on it.",
661 },
662 "fallow/private-type-leak" => RuleGuide {
663 example: "export function makeUser(): InternalUser exposes InternalUser even though InternalUser is not exported.",
664 how_to_fix: "Export the referenced type, change the public signature to an exported type, or keep the helper private.",
665 },
666 "fallow/deprecated-export-in-use" => RuleGuide {
667 example: "/** @deprecated Use formatMoney. */ export function formatPrice() is still imported by src/cart.ts and src/checkout.ts.",
668 how_to_fix: "Move each consumer to the replacement the message names, then remove the export. For the full consumer list, run `fallow dead-code --trace <file>:<export>`. Enable the rule with `deprecated-exports-in-use: \"warn\"` in `rules`, or pass `--deprecated-exports-in-use` for one run.",
669 },
670 "fallow/unused-dependency"
671 | "fallow/unused-dev-dependency"
672 | "fallow/unused-optional-dependency" => RuleGuide {
673 example: "package.json lists left-pad, but no source, script, config, or plugin-recognized file imports it.",
674 how_to_fix: "Remove the dependency after checking runtime/plugin usage. If another workspace uses it, move the dependency to that workspace.",
675 },
676 "fallow/type-only-dependency" => RuleGuide {
677 example: "zod is in dependencies but only appears in import type declarations.",
678 how_to_fix: "Move the package to devDependencies unless runtime code imports it as a value.",
679 },
680 "fallow/test-only-dependency" => RuleGuide {
681 example: "vitest is listed in dependencies, but only test files import it.",
682 how_to_fix: "Move the package to devDependencies unless production code imports it at runtime.",
683 },
684 "fallow/dev-dependency-in-production" => RuleGuide {
685 example: "yaml is in devDependencies, but src/config.ts imports { parse } from 'yaml' and runs it at runtime.",
686 how_to_fix: "Move the package to dependencies when the deployment installs them, so a production-only install keeps it. Leave it in devDependencies if the build inlines it into the output, if the only production imports are `import type`, or if another manifest section (dependencies / peer / optional) already provides it.",
687 },
688 _ => return None,
689 })
690}
691
692fn member_import_rule_guide(id: &str) -> Option<RuleGuide> {
693 Some(match id {
694 "fallow/unused-enum-member" => RuleGuide {
695 example: "Status.Legacy remains in an exported enum, but no code reads that member.",
696 how_to_fix: "Remove the member after checking serialized/API compatibility, or suppress it with a reason when external data still uses it.",
697 },
698 "fallow/unused-class-member" => RuleGuide {
699 example: "class Parser has a public parseLegacy method that is never called in the project.",
700 how_to_fix: "Remove or privatize the member. For reflection/framework lifecycle hooks, configure or suppress the intentional entry point.",
701 },
702 "fallow/unused-store-member" => RuleGuide {
703 example: "useCartStore declares a discountTotal getter that no component, composable, or other store ever reads.",
704 how_to_fix: "Remove the unused state property, getter, or action. If it is consumed reflectively (a Pinia plugin, $onAction, or dynamic dispatch), suppress the line with // fallow-ignore-next-line unused-store-member.",
705 },
706 "fallow/unprovided-inject" => RuleGuide {
707 example: "A component calls inject(ThemeKey) (Vue) or getContext(ThemeKey) (Svelte) with an imported symbol key, but no provide(ThemeKey) / setContext(ThemeKey) exists anywhere in the project.",
708 how_to_fix: "Add a matching provide() / setContext() for the key, or remove the dead inject() / getContext(). If a provider lives outside the analyzed graph (an app-level provide registered elsewhere, a plugin, a host app), suppress the line with // fallow-ignore-next-line unprovided-inject.",
709 },
710 "fallow/unrendered-component" => RuleGuide {
711 example: "components/Orphan.vue is re-exported from a barrel (export { default as Orphan } from './Orphan.vue') but no template, registration, h() call, or dynamic import ever renders it.",
712 how_to_fix: "Render the component where it belongs, or delete it and remove the dead barrel re-export. If it is rendered reflectively (a dynamic <component :is> from a non-literal value), suppress the line with // fallow-ignore-next-line unrendered-component.",
713 },
714 "fallow/unused-component-prop" => RuleGuide {
715 example: "Widget.vue declares defineProps<{ size: string }>(), or a React Widget({ size }) destructures `size`, but `size` is referenced nowhere in the component (Vue: its script or template; React: its function body or JSX).",
716 how_to_fix: "Remove the unused prop, or reference it in the component (Vue: the script / template; React: the function body or JSX). If the prop is part of a deliberately-stable public component API, suppress the line with // fallow-ignore-next-line unused-component-prop.",
717 },
718 "fallow/unused-component-emit" => RuleGuide {
719 example: "Widget.vue declares defineEmits<{ close: [] }>() but `emit('close')` is called nowhere in the component's script.",
720 how_to_fix: "Remove the unused emit, or emit it in the script. If the emit is part of a deliberately-stable public component API, suppress the line with // fallow-ignore-next-line unused-component-emit.",
721 },
722 "fallow/unused-component-input" => RuleGuide {
723 example: "user-card.component.ts declares @Input() size: string (or size = input<string>()) but `size` is read nowhere in the template or the class body.",
724 how_to_fix: "Remove the unused input, or read it in the template or class body. If the input is part of a deliberately-stable public component API, suppress the line with // fallow-ignore-next-line unused-component-input.",
725 },
726 "fallow/unused-component-output" => RuleGuide {
727 example: "user-card.component.ts declares @Output() close = new EventEmitter<void>() (or close = output<void>()) but `this.close.emit(...)` is called nowhere in the class.",
728 how_to_fix: "Remove the unused output, or emit it from the class. If the output is part of a deliberately-stable public component API, suppress the line with // fallow-ignore-next-line unused-component-output.",
729 },
730 "fallow/unused-svelte-event" => RuleGuide {
731 example: "Child.svelte calls const dispatch = createEventDispatcher(); dispatch('dead'), but no parent listens for it (no <Child on:dead> anywhere in the project).",
732 how_to_fix: "Remove the dispatched event, or listen for it on the component (<Child on:dead={...}> or forward it via <Child on:dead>). If the event is dispatched reflectively (a dynamic name) or is part of a deliberately-stable public component API, suppress the line with // fallow-ignore-next-line unused-svelte-event.",
733 },
734 "fallow/unused-server-action" => RuleGuide {
735 example: "app/actions.ts has \"use server\" and exports submitForm, but no component imports it, binds it via action={submitForm}, or uses it in <form action={submitForm}>.",
736 how_to_fix: "Wire the action to a consumer (an import-and-call, an action={fn} binding, or a <form action={fn}>), or remove it. If it is invoked reflectively (an action registry dispatching by id, or a non-JS caller), suppress the line with // fallow-ignore-next-line unused-server-action.",
737 },
738 "fallow/unused-load-data-key" => RuleGuide {
739 example: "src/routes/blog/+page.ts returns { posts, draftCount } but +page.svelte only reads data.posts and no component reads page.data.draftCount.",
740 how_to_fix: "Delete the unused key from the load() return (and skip its fetch), or wire a consumer (read data.<key> in +page.svelte, or page.data.<key> in a shared component). If the load fetch has a side effect you must keep, suppress the line with // fallow-ignore-next-line unused-load-data-key.",
741 },
742 "fallow/prop-drilling" => RuleGuide {
743 example: "Page receives `user` and renders <Layout user={user}/>; Layout only re-passes it to <Sidebar user={user}/>; Sidebar only re-passes it to <Profile user={user}/>, which finally reads user.name. The prop is drilled through Layout and Sidebar untouched.",
744 how_to_fix: "Collapse the chain: colocate the consumer with the data, lift the value into a React context/provider at a mid-chain hop and consume it there, or compose the component (pass the rendered child as children) so the intermediates no longer thread the prop. Enable the rule with rules.prop-drilling = \"warn\" (it defaults to off). To accept one chain, suppress the source prop with // fallow-ignore-next-line prop-drilling.",
745 },
746 "fallow/thin-wrapper" => RuleGuide {
747 example: "const ButtonWrapper = (props) => <Button {...props}/>; the wrapper has no own markup, hooks, or logic, so it only re-points at Button.",
748 how_to_fix: "Inline the wrapper at its call sites (use <Button .../> directly) or delete it. Keep it only if it is a deliberate seam (a planned divergence point, a public-API re-brand): an exported wrapper already abstains. Enable the rule with rules.thin-wrapper = \"warn\" (it defaults to off). To accept one wrapper, suppress it with // fallow-ignore-next-line thin-wrapper above the component definition.",
749 },
750 "fallow/duplicate-prop-shape" => RuleGuide {
751 example: "FieldText, FieldNumber, and FieldSelect (across three files) each declare exactly { name, label, value, onChange, error }. The five significant prop names are identical, so they form one duplicate-prop-shape group.",
752 how_to_fix: "Extract one shared Props type (e.g. type FieldProps = { name; label; value; onChange; error }) that every member reuses, or a base component the variants compose. Keep them separate only if a per-variant prop divergence is planned. Enable the rule with rules.duplicate-prop-shape = \"warn\" (it defaults to off). To accept one member, suppress it with // fallow-ignore-next-line duplicate-prop-shape above the component definition; the suppressed member still appears in its siblings' sharing_components because the group is real regardless of suppression.",
753 },
754 "fallow/unresolved-import" => RuleGuide {
755 example: "src/app.ts imports ./routes/admin, but no matching file exists after extension and index resolution.",
756 how_to_fix: "Fix the specifier, restore the missing file, install the package, or align tsconfig path aliases with the runtime resolver.",
757 },
758 "fallow/unlisted-dependency" => RuleGuide {
759 example: "src/api.ts imports undici, but the nearest package.json does not list undici.",
760 how_to_fix: "Add the package to dependencies/devDependencies in the workspace that imports it instead of relying on hoisting or transitive deps.",
761 },
762 "fallow/duplicate-export" => RuleGuide {
763 example: "Button is exported from both src/ui/button.ts and src/components/button.ts.",
764 how_to_fix: "Rename or consolidate the exports so consumers have one intentional import target.",
765 },
766 _ => return None,
767 })
768}
769
770fn architecture_rule_guide(id: &str) -> Option<RuleGuide> {
771 Some(match id {
772 "fallow/circular-dependency" => RuleGuide {
773 example: "src/a.ts imports src/b.ts, and src/b.ts imports src/a.ts.",
774 how_to_fix: "Extract shared code to a third module, invert the dependency, or split initialization-time side effects from type-only contracts.",
775 },
776 "fallow/boundary-violation" => RuleGuide {
777 example: "features/billing imports app/admin even though the configured boundary only allows imports from shared and entities.",
778 how_to_fix: "Move the shared contract to an allowed zone, invert the dependency, or update the boundary config only if the architecture rule was wrong.",
779 },
780 "fallow/boundary-coverage" => RuleGuide {
781 example: "src/generated/client.ts is reachable but does not match any boundaries.zones[].patterns entry.",
782 how_to_fix: "Add the file to the intended zone pattern, move it under a zoned directory, or add a generated-file glob to boundaries.coverage.allowUnmatched.",
783 },
784 "fallow/boundary-call-violation" => RuleGuide {
785 example: "src/domain/policy.ts calls execSync from node:child_process while boundaries.calls.forbidden bans child_process.* from the domain zone.",
786 how_to_fix: "Move the call into a zone that may perform the effect, route it through an allowed abstraction, or narrow the forbidden pattern if the rule was wrong. To suppress, use the boundary family token: `// fallow-ignore-next-line boundary-violation` governs import, coverage, and call findings alike (the rule-id-shaped `boundary-call-violation` is accepted as an alias).",
787 },
788 "fallow/policy-violation" => RuleGuide {
789 example: "src/app.ts imports moment while a rule pack bans the moment specifier with the message 'Use date-fns.'",
790 how_to_fix: "Replace the banned call, import, or effectful usage with the alternative named in the rule's message. To waive one rule, use `// fallow-ignore-next-line policy-violation:<pack>/<rule-id>` or the file-level form. Use bare `policy-violation` only when you intend to suppress every rule-pack finding at that scope.",
791 },
792 "fallow/stale-suppression" => RuleGuide {
793 example: "// fallow-ignore-next-line unused-export remains above an export that is now used.",
794 how_to_fix: "Remove the suppression. If a different issue is still intentional, replace it with a current, specific suppression.",
795 },
796 "fallow/missing-suppression-reason" => RuleGuide {
797 example: "// fallow-ignore-next-line unused-export appears without the required explanatory reason.",
798 how_to_fix: "Add a concise reason after the suppression token, or remove the suppression if the issue is no longer intentional.",
799 },
800 _ => return None,
801 })
802}
803
804fn catalog_rule_guide(id: &str) -> Option<RuleGuide> {
805 Some(match id {
806 "fallow/unused-catalog-entry" => RuleGuide {
807 example: "The catalog source declares `catalog: { is-even: ^1.0.0 }`, but no workspace package.json declares `\"is-even\": \"catalog:\"`.",
808 how_to_fix: "Delete the entry from the catalog source file. If any consumer uses a hardcoded version (surfaced in `hardcoded_consumers`), switch that consumer to `catalog:` first to keep versions aligned.",
809 },
810 "fallow/empty-catalog-group" => RuleGuide {
811 example: "The catalog source declares `catalogs: { react17: {} }` after the last react17 entry was removed.",
812 how_to_fix: "Delete the empty named group from the catalog source file. Comments between the deleted header and the next sibling can stay in place for manual review.",
813 },
814 "fallow/unresolved-catalog-reference" => RuleGuide {
815 example: "packages/app/package.json declares `\"old-react\": \"catalog:react17\"`, but `catalogs.react17` in the catalog source does not declare `old-react`. The package manager install will fail.",
816 how_to_fix: "If `available_in_catalogs` is non-empty, change the reference to one of those catalogs (e.g. `catalog:react18`). Otherwise add the package to the named catalog in the catalog source, or remove the catalog reference and pin a hardcoded version. For staged migrations where the catalog edit lands separately, add the (package, catalog, consumer) triple to `ignoreCatalogReferences` in your fallow config.",
817 },
818 "fallow/unused-dependency-override" => RuleGuide {
819 example: "The root package.json declares `overrides: { axios: ^1.6.0 }`, but no workspace package.json declares `axios` and the active lockfile does not resolve it.",
820 how_to_fix: "Delete the entry from its reported declaration source. If the finding is caused by a stale or missing readable lockfile, refresh the active lockfile and rerun fallow. If the override is intentionally retained, add it to `ignoreDependencyOverrides` in your fallow config.",
821 },
822 "fallow/misconfigured-dependency-override" => RuleGuide {
823 example: "The root package.json declares `overrides: { \"axios\": \"\" }`. An empty override value is invalid and the active package manager will reject or ignore it.",
824 how_to_fix: "Fix the key or value to match the active package manager's grammar. For pnpm this includes bare or scoped package names, version selectors, parent matchers, and the supported `-`, `$ref`, and `npm:alias` values. For npm or Bun, preserve the supported nested object shape. Remove experimental entries that should not remain.",
825 },
826 _ => return None,
827 })
828}
829
830fn health_runtime_rule_guide(id: &str) -> Option<RuleGuide> {
831 Some(match id {
832 "fallow/high-cyclomatic-complexity"
833 | "fallow/high-cognitive-complexity"
834 | "fallow/high-complexity" => RuleGuide {
835 example: "A function contains several nested conditionals, loops, and early exits, exceeding the configured complexity threshold. fallow also flags synthetic template-family findings on markup: Angular .html templates and inline `@Component({ template: ... })` literals, Vue SFC `<template>` blocks, Svelte markup, and Astro markup, plus each top-level Svelte `{#snippet name(...)}` block as its own `<snippet:NAME>` unit. `<component>` rollup findings combine the worst class method with its template.",
836 how_to_fix: "For function findings, extract named helpers, split independent branches, flatten guard clauses, and add tests around the behavior before refactoring. For `<template>` findings, flatten nested control flow and move branch selection out of the markup: Angular `@if`/`@for`/`@switch`/`@defer` and legacy `*ngIf`/`*ngFor` into computed signals on the component class, Vue `v-if`/`v-else-if`/`v-for` into computed properties, Svelte `{#if}`/`{:else if}`/`{#each}`/`{#await}`/`{#key}` into derived state, Astro control flow into props resolved in the frontmatter. In Svelte, moving a repeated or deeply nested block into a top-level `{#snippet}` gives it its own `<snippet:NAME>` unit with nesting rebased to zero, so the in-file extraction moves the score; splitting a large template into child components lowers the score in every dialect. For `<component>` rollup findings, attack the larger half first; the per-half breakdown lives in `component_rollup`. To report these findings without a failed run, set the `complexity-cyclomatic` or `complexity-cognitive` rule to `warn`.",
837 },
838 "fallow/high-crap-score" => RuleGuide {
839 example: "A complex function has little or no matching Istanbul coverage, so its CRAP score crosses the configured gate. Synthetic template-family units (the `<template>` units on Angular, Vue, Svelte and Astro markup, and Svelte `<snippet:NAME>` units) are not scored on this dimension: a template carries no direct coverage of its own, so fallow gates templates on the cyclomatic and cognitive dimensions instead.",
840 how_to_fix: "Add focused tests for the risky branches first, then simplify the function if the score remains high. Template findings never carry this rule, so a `maxCrap` override scoped to a template unit buys nothing and can be removed. To report these findings without a failed run, set the `complexity-crap` rule to `warn`.",
841 },
842 "fallow/refactoring-target" => RuleGuide {
843 example: "A file combines high complexity density, churn, fan-in, and dead-code signals.",
844 how_to_fix: "Start with the listed evidence: remove dead exports, extract complex functions, then reduce fan-out or cycles in small steps.",
845 },
846 "fallow/untested-file" | "fallow/untested-export" => RuleGuide {
847 example: "Production-reachable code has no dependency path from discovered test entry points.",
848 how_to_fix: "Add or wire a test that imports the runtime path, or update entry-point/test discovery if the existing test is invisible to fallow.",
849 },
850 "fallow/runtime-safe-to-delete"
851 | "fallow/runtime-review-required"
852 | "fallow/runtime-low-traffic"
853 | "fallow/runtime-coverage-unavailable"
854 | "fallow/runtime-coverage" => RuleGuide {
855 example: "Runtime coverage shows a function was never called, barely called, or could not be matched during the capture window.",
856 how_to_fix: "Treat high-confidence cold static-dead code as delete candidates. For advisory or unavailable coverage, inspect seasonality, workers, source maps, and capture quality first.",
857 },
858 _ => return None,
859 })
860}
861
862fn duplication_rule_guide(id: &str) -> Option<RuleGuide> {
863 Some(match id {
864 "fallow/code-duplication" => RuleGuide {
865 example: "Two files contain the same normalized token sequence across a multi-line block.",
866 how_to_fix: "Extract the shared logic when the duplicated behavior should evolve together. Leave it duplicated when the similarity is accidental and likely to diverge.",
867 },
868 _ => return None,
869 })
870}
871
872fn security_rule_guide(id: &str) -> Option<RuleGuide> {
873 Some(match id {
874 "security/tainted-sink" => RuleGuide {
875 example: "A non-literal request field reaches a catalogue sink such as security/sql-injection or security/dangerous-html. The finding is a candidate, not proof of exploitability.",
876 how_to_fix: "Trace the source, sink, sanitization, and runtime context. Fix confirmed issues with parameterization, escaping, validation, or safer APIs, and suppress only reviewed false positives with context.",
877 },
878 "security/client-server-leak" => RuleGuide {
879 example: "A module marked `use client` imports code that reads a non-public `process.env` or `import.meta.env` value through a static path.",
880 how_to_fix: "Keep non-public env reads on the server side, move the value behind an API boundary, or rename only intentionally public values to the framework's public prefix.",
881 },
882 "security/hardcoded-secret" => RuleGuide {
883 example: "A provider-prefixed token-shaped literal is assigned to a secret-shaped variable, and the hardcoded-secret category is explicitly included.",
884 how_to_fix: "Rotate real credentials, move them to a secret manager or environment variable, and keep test-only literals clearly fake so they do not resemble provider tokens.",
885 },
886 id if id.starts_with("security/") => RuleGuide {
887 example: "A `fallow security` candidate uses this catalogue category as its SARIF rule id, for example security/sql-injection for a matched SQL sink.",
888 how_to_fix: "Review the candidate trace before acting. Confirm attacker control, missing sanitization, and reachable runtime context, then fix with the category-appropriate safer API or add a reviewed suppression.",
889 },
890 _ => return None,
891 })
892}
893
894fn fallback_rule_guide() -> RuleGuide {
895 RuleGuide {
896 example: "Run the relevant command with --format json --quiet --explain to inspect this rule in context.",
897 how_to_fix: "Use the issue action hints, source location, and docs URL to decide whether to remove, move, configure, or suppress the finding.",
898 }
899}
900
901pub fn explain_issue_type(
908 issue_type: &str,
909) -> Result<fallow_output::ExplainOutput, crate::ProgrammaticError> {
910 let Some(rule) = rule_by_token(issue_type) else {
911 return Err(unknown_explain_error(issue_type));
912 };
913 let guide = rule_guide(rule);
914 Ok(fallow_output::ExplainOutput {
915 id: rule.id.to_string(),
916 name: rule_explain_name(rule).to_string(),
917 summary: rule_explain_summary(rule).to_string(),
918 rationale: rule.full.to_string(),
919 example: guide.example.to_string(),
920 how_to_fix: guide.how_to_fix.to_string(),
921 docs: rule_docs_url(rule),
922 })
923}
924
925pub fn serialize_explain_programmatic_json(
932 issue_type: &str,
933 analysis_run_id: Option<&str>,
934) -> Result<serde_json::Value, crate::ProgrammaticError> {
935 let output = explain_issue_type(issue_type)?;
936 fallow_output::serialize_explain_json_output(output, analysis_run_id).map_err(|error| {
937 crate::ProgrammaticError::new(format!("JSON serialization error: {error}"), 2)
938 .with_code("json_serialization")
939 })
940}
941
942#[must_use]
945pub fn unknown_explain_error(issue_type: &str) -> crate::ProgrammaticError {
946 if let Some(nearest) = nearest_explain_token(issue_type) {
947 return crate::ProgrammaticError::new(
948 format!("unknown issue type '{issue_type}'. Did you mean '{nearest}'?"),
949 2,
950 )
951 .with_code("unknown_issue_type")
952 .with_help(format!("fallow explain {nearest}"));
953 }
954 let message = if looks_security_explain_token(issue_type) {
955 format!(
956 "unknown issue type '{issue_type}'. Try values like tainted-sink, client-server-leak, hardcoded-secret, sql-injection, or security/sql-injection"
957 )
958 } else {
959 format!(
960 "unknown issue type '{issue_type}'. Try values like unused files, unused-export, high complexity, or code duplication"
961 )
962 };
963 crate::ProgrammaticError::new(message, 2).with_code("unknown_issue_type")
964}
965
966fn nearest_explain_token(issue_type: &str) -> Option<&'static str> {
971 let normalized = issue_type
972 .trim()
973 .strip_prefix("fallow/")
974 .unwrap_or_else(|| issue_type.trim())
975 .trim_start_matches("--")
976 .replace('_', "-");
977 let candidates: Vec<&'static str> = all_rules()
978 .flat_map(|rule| [bare_rule_id(rule), rule.id])
979 .collect();
980 fallow_config::levenshtein::closest_match(&normalized, candidates)
981}
982
983fn looks_security_explain_token(issue_type: &str) -> bool {
984 let normalized = issue_type.trim().to_ascii_lowercase().replace('_', "-");
985 normalized.contains("security")
986 || normalized.contains("secret")
987 || normalized.contains("sink")
988 || normalized.contains("cwe")
989 || normalized.contains("client-server")
990 || normalized.contains("injection")
991}
992
993pub const HEALTH_RULES: &[RuleDef] = &[
995 RuleDef {
996 id: "fallow/high-cyclomatic-complexity",
997 category: "Health",
998 name: "High Cyclomatic Complexity",
999 short: "Function has high cyclomatic complexity",
1000 full: "McCabe cyclomatic complexity exceeds the configured threshold. Cyclomatic complexity counts the number of independent paths through a function (1 + decision points: if/else, switch cases, loops, ternary, logical operators). High values indicate functions that are hard to test exhaustively. fallow also emits this rule on synthetic `<template>` findings across every supported template dialect (Angular .html templates and inline `@Component({ template: ... })` literals, Vue SFC `<template>` blocks, Svelte markup, Astro markup), counting each dialect's control-flow blocks (Angular `@if`/`@else if`/`@for`/`@case`/`@defer (when ...)` and legacy `*ngIf`/`*ngFor`; Vue `v-if`/`v-else-if`/`v-for`; Svelte `{#if}`/`{:else if}`/`{#each}`/`{#await}`/`{#key}`; the Astro equivalents) plus ternary and logical operators inside bound attributes and interpolations; on each top-level Svelte `{#snippet name(...)}` block, emitted as its own `<snippet:NAME>` unit; and on synthetic `<component>` rollup findings whose `cyclomatic` is the worst class method's score plus the template's. Ranking and `--targets` use the rollup total; JSON exposes the per-half breakdown under `component_rollup`.",
1001 docs_path: "explanations/health#cyclomatic-complexity",
1002 },
1003 RuleDef {
1004 id: "fallow/high-cognitive-complexity",
1005 category: "Health",
1006 name: "High Cognitive Complexity",
1007 short: "Function has high cognitive complexity",
1008 full: "SonarSource cognitive complexity exceeds the configured threshold. Unlike cyclomatic complexity, cognitive complexity penalizes nesting depth and non-linear control flow (breaks, continues, early returns). It measures how hard a function is to understand when reading sequentially. fallow also emits this rule on synthetic `<template>` findings across every supported template dialect (Angular .html templates and inline `@Component({ template: ... })` literals, Vue SFC `<template>` blocks, Svelte markup, Astro markup), where nesting penalties accumulate on stacked control-flow blocks: Angular `@if`/`@for`/`@switch`, Vue `v-if`/`v-for`, Svelte `{#if}`/`{#each}`/`{#await}`; on each top-level Svelte `{#snippet name(...)}` block, emitted as its own `<snippet:NAME>` unit with nesting rebased to zero so in-file snippet extraction lowers the parent template's score; and on synthetic `<component>` rollup findings whose `cognitive` is the worst class method's score plus the template's. Ranking and `--targets` use the rollup total; JSON exposes the per-half breakdown under `component_rollup`.",
1009 docs_path: "explanations/health#cognitive-complexity",
1010 },
1011 RuleDef {
1012 id: "fallow/high-complexity",
1013 category: "Health",
1014 name: "High Complexity (Both)",
1015 short: "Function exceeds both complexity thresholds",
1016 full: "Function exceeds both cyclomatic and cognitive complexity thresholds. This is the strongest signal that a function needs refactoring, it has many paths AND is hard to understand. The same rule fires on synthetic `<template>` findings in every supported template dialect (Angular .html templates and inline `@Component({ template: ... })` literals, Vue SFC `<template>` blocks, Svelte markup, Astro markup) when both metrics exceed their thresholds, and on synthetic `<component>` rollup findings whose totals are the worst class method's score plus the template's. Ranking and `--targets` use the rollup totals; JSON exposes the per-half breakdown under `component_rollup`.",
1017 docs_path: "explanations/health#complexity-metrics",
1018 },
1019 RuleDef {
1020 id: "fallow/high-crap-score",
1021 category: "Health",
1022 name: "High CRAP Score",
1023 short: "Function has a high CRAP score (complexity combined with low coverage)",
1024 full: "The function's CRAP (Change Risk Anti-Patterns) score meets or exceeds the configured threshold. CRAP combines cyclomatic complexity with test coverage using the Savoia and Evans (2007) formula: `CC^2 * (1 - coverage/100)^3 + CC`. High CRAP indicates changes to this function carry high risk because it is complex AND poorly tested. Pair with `--coverage` for accurate per-function scoring; without it fallow estimates coverage from the module graph. This rule fires on functions only: synthetic template-family units (`<template>`, Svelte `<snippet:NAME>`) are excluded from the CRAP dimension, because a template is exercised only through its component and carries no coverage the formula could measure. Templates gate on the cyclomatic and cognitive dimensions instead.",
1025 docs_path: "explanations/health#crap-score",
1026 },
1027 RuleDef {
1028 id: "fallow/refactoring-target",
1029 category: "Health",
1030 name: "Refactoring Target",
1031 short: "File identified as a high-priority refactoring candidate",
1032 full: "File identified as a refactoring candidate based on a weighted combination of complexity density, churn velocity, dead code ratio, fan-in (blast radius), and fan-out (coupling). Categories: urgent churn+complexity, break circular dependency, split high-impact file, remove dead code, extract complex functions, reduce coupling.",
1033 docs_path: "explanations/health#refactoring-targets",
1034 },
1035 RuleDef {
1036 id: "fallow/css-token-drift",
1037 category: "Health",
1038 name: "CSS Token Drift",
1039 short: "CSS or CSS-in-JS hardcoded styling value bypasses the design token system",
1040 full: "A styling value appears to bypass the project's design token system, for example a Tailwind arbitrary value in markup. The finding is advisory by default and does not affect the audit verdict unless rules.css-token-drift is set to error. Verify the value and replace it with an existing scale token when appropriate.",
1041 docs_path: "explanations/health#css-token-drift",
1042 },
1043 RuleDef {
1044 id: "fallow/css-duplicate-block",
1045 category: "Health",
1046 name: "CSS Duplicate Block",
1047 short: "CSS or CSS-in-JS declaration block is duplicated across rules",
1048 full: "A style rule declaration block is repeated across selectors, suggesting copy-pasted styling that can often be consolidated. The finding is advisory by default and does not affect the audit verdict unless rules.css-duplicate-block is set to error.",
1049 docs_path: "explanations/health#css-duplicate-block",
1050 },
1051 RuleDef {
1052 id: "fallow/css-selector-complexity",
1053 category: "Health",
1054 name: "CSS Selector Complexity",
1055 short: "CSS selector, nesting, or important usage is structurally complex",
1056 full: "A CSS or CSS-in-JS rule crosses the structural floor for selector specificity, selector complexity, nesting depth, or important usage. The finding is advisory by default and does not affect the audit verdict unless rules.css-selector-complexity is set to error.",
1057 docs_path: "explanations/health#css-selector-complexity",
1058 },
1059 RuleDef {
1060 id: "fallow/css-dead-surface",
1061 category: "Health",
1062 name: "CSS Dead Surface",
1063 short: "CSS or CSS-in-JS surface appears unused",
1064 full: "A styling surface appears unused in the analyzed project, such as a scoped SFC class with no component-local use. The finding is advisory by default and does not affect the audit verdict unless rules.css-dead-surface is set to error. Verify dynamic consumers before deleting.",
1065 docs_path: "explanations/health#css-dead-surface",
1066 },
1067 RuleDef {
1068 id: "fallow/css-broken-reference",
1069 category: "Health",
1070 name: "CSS Broken Reference",
1071 short: "CSS or CSS-in-JS reference resolves to no stylesheet definition",
1072 full: "A styling reference appears unresolved, such as a class token or keyframes name that has no stylesheet definition in the analyzed project. The finding is advisory by default and does not affect the audit verdict unless rules.css-broken-reference is set to error. Verify external or CSS-in-JS definitions before fixing.",
1073 docs_path: "explanations/health#css-broken-reference",
1074 },
1075 RuleDef {
1076 id: "fallow/untested-file",
1077 category: "Health",
1078 name: "Untested File",
1079 short: "Runtime-reachable file has no test dependency path",
1080 full: "A file is reachable from runtime entry points but not from any discovered test entry point. This indicates production code that no test imports, directly or transitively, according to the static module graph.",
1081 docs_path: "explanations/health#coverage-gaps",
1082 },
1083 RuleDef {
1084 id: "fallow/untested-export",
1085 category: "Health",
1086 name: "Untested Export",
1087 short: "Runtime-reachable export has no test dependency path",
1088 full: "A value export is reachable from runtime entry points but no test-reachable module references it. This is a static test dependency gap rather than line coverage, and highlights exports exercised only through production entry paths.",
1089 docs_path: "explanations/health#coverage-gaps",
1090 },
1091 RuleDef {
1092 id: "fallow/runtime-safe-to-delete",
1093 category: "Health",
1094 name: "Production Safe To Delete",
1095 short: "Statically unused AND never invoked in production with V8 tracking",
1096 full: "The function is both statically unreachable in the module graph and was never invoked during the observed runtime coverage window. This is the highest-confidence delete signal fallow emits.",
1097 docs_path: "explanations/health#runtime-coverage",
1098 },
1099 RuleDef {
1100 id: "fallow/runtime-review-required",
1101 category: "Health",
1102 name: "Production Review Required",
1103 short: "Statically used but never invoked in production",
1104 full: "The function is reachable in the module graph (or exercised by tests / untracked call sites) but was not invoked during the observed runtime coverage window. Needs a human look: may be seasonal, error-path only, or legitimately unused.",
1105 docs_path: "explanations/health#runtime-coverage",
1106 },
1107 RuleDef {
1108 id: "fallow/runtime-low-traffic",
1109 category: "Health",
1110 name: "Production Low Traffic",
1111 short: "Function was invoked below the low-traffic threshold",
1112 full: "The function was invoked in production but below the configured `--low-traffic-threshold` fraction of total trace count (spec default 0.1%). Effectively dead for the current period.",
1113 docs_path: "explanations/health#runtime-coverage",
1114 },
1115 RuleDef {
1116 id: "fallow/runtime-coverage-unavailable",
1117 category: "Health",
1118 name: "Runtime Coverage Unavailable",
1119 short: "Runtime coverage could not be resolved for this function",
1120 full: "The function could not be matched to a V8-tracked coverage entry. Common causes: the function lives in a worker thread (separate V8 isolate), it is lazy-parsed and never reached the JIT tier, or its source map did not resolve to the expected source path. This is advisory, not a dead-code signal.",
1121 docs_path: "explanations/health#runtime-coverage",
1122 },
1123 RuleDef {
1124 id: "fallow/runtime-coverage",
1125 category: "Health",
1126 name: "Runtime Coverage",
1127 short: "Runtime coverage finding",
1128 full: "Generic runtime-coverage finding for verdicts not covered by a more specific rule. Covers the forward-compat `unknown` sentinel; the CLI filters `active` entries out of `runtime_coverage.findings` so the surfaced list stays actionable.",
1129 docs_path: "explanations/health#runtime-coverage",
1130 },
1131 RuleDef {
1132 id: "fallow/coverage-intelligence-risky-change",
1133 category: "Health",
1134 name: "Coverage Intelligence Risky Change",
1135 short: "Changed hot path combines high CRAP and low test coverage",
1136 full: "Coverage intelligence combined change scope, runtime hot-path evidence, low test coverage, and high CRAP into a risky-change finding. Add focused tests or split the change before merging.",
1137 docs_path: "explanations/health#coverage-intelligence",
1138 },
1139 RuleDef {
1140 id: "fallow/coverage-intelligence-delete",
1141 category: "Health",
1142 name: "Coverage Intelligence Delete",
1143 short: "Static and runtime evidence indicate code can be deleted",
1144 full: "Coverage intelligence combined static unused status, runtime cold evidence, and lack of test reachability into a high-confidence delete recommendation.",
1145 docs_path: "explanations/health#coverage-intelligence",
1146 },
1147 RuleDef {
1148 id: "fallow/coverage-intelligence-review",
1149 category: "Health",
1150 name: "Coverage Intelligence Review",
1151 short: "Cold reachable uncovered code needs owner review",
1152 full: "Coverage intelligence found code that is statically reachable but cold in runtime evidence, uncovered by tests, and ownership-risky. Route it to an owner before changing or deleting it.",
1153 docs_path: "explanations/health#coverage-intelligence",
1154 },
1155 RuleDef {
1156 id: "fallow/coverage-intelligence-refactor",
1157 category: "Health",
1158 name: "Coverage Intelligence Refactor",
1159 short: "Hot covered code has high CRAP and should be refactored carefully",
1160 full: "Coverage intelligence found hot production code that is covered by tests but still has high CRAP. Refactor carefully while preserving behavior.",
1161 docs_path: "explanations/health#coverage-intelligence",
1162 },
1163];
1164
1165pub const DUPES_RULES: &[RuleDef] = &[RuleDef {
1167 id: "fallow/code-duplication",
1168 category: "Duplication",
1169 name: "Code Duplication",
1170 short: "Duplicated code block",
1171 full: "A block of code that appears in multiple locations with identical or near-identical token sequences. Clone detection uses normalized token comparison: identifier names and literals are abstracted away in non-strict modes.",
1172 docs_path: "explanations/duplication#clone-groups",
1173}];
1174
1175pub const FLAGS_RULES: &[RuleDef] = &[
1177 RuleDef {
1178 id: "fallow/feature-flag",
1179 category: "Flags",
1180 name: "Feature Flags",
1181 short: "Detected feature flag pattern",
1182 full: "A feature flag pattern detected by `fallow flags`: environment-variable checks, flag SDK calls (LaunchDarkly, Unleash, and similar), or config-object lookups. Long-lived flags accumulate dead branches; review old flags for retirement and pair with dead-code analysis to find branches that can no longer execute.",
1183 docs_path: "cli/flags",
1184 },
1185 RuleDef {
1186 id: "fallow/flag-retirement-candidate",
1187 category: "Flags",
1188 name: "Flag Retirement Candidate",
1189 short: "Feature flag is a retirement candidate",
1190 full: "A feature flag that `fallow flags --retirement` lists with at least one retirement reason: one read site, reads only in tests, a literal constant, identical or empty guard branches, guarded dead code, a definition that no code reads, or a vendor state from `--flag-state` (rolled out, archived, missing in the vendor export, or in the export only). The report is advisory. A person decides to remove the flag; Fallow does not remove code.",
1191 docs_path: "cli/flags#retirement-report",
1192 },
1193];
1194
1195macro_rules! security_catalogue_rule {
1196 ($id:literal, $name:literal, $cwe:literal) => {
1197 RuleDef {
1198 id: concat!("security/", $id),
1199 category: "Security",
1200 name: $name,
1201 short: concat!("Catalogue security candidate for CWE-", $cwe),
1202 full: concat!(
1203 $name,
1204 " is a data-driven `fallow security` tainted-sink catalogue category with CWE-",
1205 $cwe,
1206 " metadata. fallow reports it as an unverified candidate when a captured sink shape matches this category. Use it to understand or filter `security/",
1207 $id,
1208 "` findings, then inspect the trace, source, sink, sanitization, and application context before treating it as exploitable."
1209 ),
1210 docs_path: "cli/security",
1211 }
1212 };
1213}
1214
1215pub const SECURITY_RULES: &[RuleDef] = &[
1218 RuleDef {
1219 id: "security/tainted-sink",
1220 category: "Security",
1221 name: "Tainted Sink Candidates",
1222 short: "Syntactic security sink candidates require verification",
1223 full: "The `tainted-sink` family covers data-driven `fallow security` catalogue categories. These findings are unverified candidates, not confirmed vulnerabilities. fallow can connect known source signals to captured sink shapes and add CWE metadata, but it does not prove attacker control, missing sanitization, exploitability, or business impact.",
1224 docs_path: "cli/security",
1225 },
1226 RuleDef {
1227 id: "security/client-server-leak",
1228 category: "Security",
1229 name: "Client-server Secret Leak Candidates",
1230 short: "Client-bound code reaches a non-public env read",
1231 full: "`client-server-leak` reports a candidate when a `use client` module can transitively reach a static non-public `process.env` or `import.meta.env` read. Public-by-convention env prefixes are treated as public. The finding is advisory and still needs bundle, framework, and runtime verification before treating it as a real exposure.",
1232 docs_path: "cli/security",
1233 },
1234 RuleDef {
1235 id: "security/hardcoded-secret",
1236 category: "Security",
1237 name: "Hardcoded Secret Candidates",
1238 short: "Provider-prefixed or contextual secret literals require verification",
1239 full: "`hardcoded-secret` reports opt-in candidates for provider-prefixed or contextual secret-shaped literals. The category is include-required and only runs when listed in `security.categories.include`. It avoids raw entropy alone, but every result still requires review, secret rotation decisions, and context before acting.",
1240 docs_path: "cli/security",
1241 },
1242 security_catalogue_rule!("dangerous-html", "Dangerous HTML sink", "79"),
1243 security_catalogue_rule!(
1244 "template-escape-bypass",
1245 "Template escape bypass sink",
1246 "79"
1247 ),
1248 security_catalogue_rule!("command-injection", "OS command injection sink", "78"),
1249 security_catalogue_rule!("code-injection", "Code injection sink", "94"),
1250 security_catalogue_rule!("dynamic-regex", "Dynamic regular expression sink", "1333"),
1251 security_catalogue_rule!("redos-regex", "ReDoS regex sink", "1333"),
1252 security_catalogue_rule!(
1253 "resource-amplification",
1254 "Resource amplification sink",
1255 "400"
1256 ),
1257 security_catalogue_rule!("dynamic-module-load", "Dynamic module load sink", "95"),
1258 security_catalogue_rule!("sql-injection", "SQL injection sink", "89"),
1259 security_catalogue_rule!("ssrf", "Server-side request forgery sink", "918"),
1260 security_catalogue_rule!(
1261 "secret-to-network",
1262 "Secret reaches a network request",
1263 "201"
1264 ),
1265 security_catalogue_rule!("path-traversal", "Path traversal sink", "22"),
1266 security_catalogue_rule!(
1267 "header-injection",
1268 "HTTP response header injection sink",
1269 "113"
1270 ),
1271 security_catalogue_rule!("open-redirect", "Open redirect sink", "601"),
1272 security_catalogue_rule!(
1273 "postmessage-wildcard-origin",
1274 "Wildcard postMessage target origin",
1275 "346"
1276 ),
1277 security_catalogue_rule!("tls-validation-disabled", "TLS validation disabled", "295"),
1278 security_catalogue_rule!("cleartext-transport", "Cleartext transport URL", "319"),
1279 security_catalogue_rule!(
1280 "electron-unsafe-webpreferences",
1281 "Unsafe Electron BrowserWindow preferences",
1282 "1188"
1283 ),
1284 security_catalogue_rule!(
1285 "world-writable-permission",
1286 "World-writable chmod mode",
1287 "732"
1288 ),
1289 security_catalogue_rule!(
1290 "insecure-temp-file",
1291 "Predictable temporary file path",
1292 "377"
1293 ),
1294 security_catalogue_rule!(
1295 "mysql-multiple-statements",
1296 "MySQL multiple statements enabled",
1297 "89"
1298 ),
1299 security_catalogue_rule!("permissive-cors", "Permissive CORS policy", "942"),
1300 security_catalogue_rule!("insecure-cookie", "Insecure cookie options", "614"),
1301 security_catalogue_rule!("mass-assignment", "Mass assignment sink", "915"),
1302 security_catalogue_rule!("weak-crypto", "Runtime-selectable crypto algorithm", "327"),
1303 security_catalogue_rule!("insecure-randomness", "Insecure randomness sink", "338"),
1304 security_catalogue_rule!("jwt-alg-none", "JWT alg none", "347"),
1305 security_catalogue_rule!(
1306 "jwt-verify-missing-algorithms",
1307 "JWT verify missing algorithms allowlist",
1308 "347"
1309 ),
1310 security_catalogue_rule!("deprecated-cipher", "Deprecated cipher constructor", "327"),
1311 security_catalogue_rule!(
1312 "unsafe-buffer-alloc",
1313 "Unsafe Buffer allocation sink",
1314 "1188"
1315 ),
1316 security_catalogue_rule!(
1317 "unsafe-deserialization",
1318 "Unsafe deserialization sink",
1319 "502"
1320 ),
1321 security_catalogue_rule!(
1322 "angular-trusted-html",
1323 "Angular bypassSecurityTrust sink",
1324 "79"
1325 ),
1326 security_catalogue_rule!("nextjs-open-redirect", "Next.js open redirect sink", "601"),
1327 security_catalogue_rule!("dom-document-write", "DOM document.write sink", "79"),
1328 security_catalogue_rule!("jquery-html", "jQuery .html() sink", "79"),
1329 security_catalogue_rule!(
1330 "route-send-file",
1331 "Route file-send path traversal sink",
1332 "22"
1333 ),
1334 security_catalogue_rule!("webview-injection", "WebView injected-script sink", "94"),
1335 security_catalogue_rule!("prototype-pollution", "Prototype pollution sink", "1321"),
1336 security_catalogue_rule!("zip-slip", "Archive path-traversal (zip-slip) sink", "22"),
1337 security_catalogue_rule!("nosql-injection", "NoSQL injection sink", "943"),
1338 security_catalogue_rule!("ssti", "Server-side template injection sink", "1336"),
1339 security_catalogue_rule!("xxe", "XML external entity (XXE) sink", "611"),
1340 security_catalogue_rule!("secret-pii-log", "Secret or PII logged", "532"),
1341 security_catalogue_rule!("xpath-injection", "XPath injection sink", "643"),
1342 security_catalogue_rule!(
1343 "llm-call-injection",
1344 "Untrusted input reaches an LLM call",
1345 "1427"
1346 ),
1347];
1348
1349#[must_use]
1351pub fn security_meta() -> fallow_types::envelope::Meta {
1352 fallow_output::security_meta(SECURITY_RULES.iter().map(|rule| {
1353 fallow_output::SecurityRuleMeta {
1354 id: rule.id,
1355 name: rule.name,
1356 description: rule.full,
1357 docs_path: rule.docs_path,
1358 }
1359 }))
1360}
1361
1362#[must_use]
1364pub fn coverage_setup_meta() -> Value {
1365 fallow_output::coverage_setup_meta()
1366}
1367
1368#[must_use]
1370pub fn coverage_analyze_meta() -> Value {
1371 fallow_output::coverage_analyze_meta()
1372}
1373
1374#[cfg(test)]
1375#[allow(
1376 clippy::unwrap_used,
1377 reason = "registry tests intentionally index fixture JSON"
1378)]
1379mod tests {
1380 use super::*;
1381 use serde_json::json;
1382
1383 fn meta_value(meta: fallow_types::envelope::Meta) -> Value {
1384 serde_json::to_value(meta).expect("metadata should serialize")
1385 }
1386
1387 fn check_meta() -> Value {
1388 meta_value(fallow_output::check_meta())
1389 }
1390
1391 fn health_meta() -> Value {
1392 meta_value(fallow_output::health_meta())
1393 }
1394
1395 fn dupes_meta() -> Value {
1396 meta_value(fallow_output::dupes_meta())
1397 }
1398
1399 #[test]
1400 fn all_rules_walks_every_registry_in_order() {
1401 let ids: Vec<&str> = all_rules().map(|rule| rule.id).collect();
1402 let expected: Vec<&str> = CHECK_RULES
1403 .iter()
1404 .chain(HEALTH_RULES)
1405 .chain(DUPES_RULES)
1406 .chain(FLAGS_RULES)
1407 .chain(SECURITY_RULES)
1408 .map(|rule| rule.id)
1409 .collect();
1410 assert_eq!(ids, expected);
1411 let mut unique = ids.clone();
1412 unique.sort_unstable();
1413 unique.dedup();
1414 assert_eq!(
1415 unique.len(),
1416 ids.len(),
1417 "duplicate rule id across registries"
1418 );
1419 }
1420
1421 #[test]
1422 fn rule_command_names_the_owning_registry() {
1423 assert_eq!(rule_command(&CHECK_RULES[0]), "dead-code");
1424 assert_eq!(rule_command(&HEALTH_RULES[0]), "health");
1425 assert_eq!(rule_command(&DUPES_RULES[0]), "dupes");
1426 assert_eq!(rule_command(&FLAGS_RULES[0]), "flags");
1427 assert_eq!(rule_command(&SECURITY_RULES[0]), "security");
1428 }
1429
1430 #[test]
1431 fn severity_key_follows_the_gating_rule() {
1432 let by_id = |id: &str| rule_by_id(id).unwrap();
1433 assert_eq!(bare_rule_id(by_id("fallow/unused-export")), "unused-export");
1434 assert_eq!(
1435 bare_rule_id(by_id("security/sql-injection")),
1436 "sql-injection"
1437 );
1438 assert_eq!(
1439 rule_severity_key(by_id("fallow/unused-export")),
1440 Some("unused-exports")
1441 );
1442 assert_eq!(
1443 rule_severity_key(by_id("fallow/untested-file")),
1444 Some("coverage-gaps")
1445 );
1446 assert_eq!(
1447 rule_severity_key(by_id("security/sql-injection")),
1448 Some("security-sink")
1449 );
1450 assert_eq!(
1451 rule_severity_key(by_id("security/client-server-leak")),
1452 Some("security-client-server-leak")
1453 );
1454 assert_eq!(
1455 rule_severity_key(by_id("fallow/high-cyclomatic-complexity")),
1456 None
1457 );
1458 assert_eq!(
1459 rule_severity_key(by_id("fallow/code-duplication")),
1460 None,
1461 "a suppression token that is not a rules.* key never becomes a severity key"
1462 );
1463 let defaults = crate::schemas::default_rule_severities();
1464 for rule in all_rules() {
1465 if let Some(key) = rule_severity_key(rule) {
1466 assert!(
1467 defaults.get(key).is_some_and(serde_json::Value::is_string),
1468 "severity key {key} for {} is not a rules.* config key",
1469 rule.id
1470 );
1471 }
1472 }
1473 }
1474
1475 #[test]
1476 fn rule_by_id_finds_check_rule() {
1477 let rule = rule_by_id("fallow/unused-file").unwrap();
1478 assert_eq!(rule.name, "Unused Files");
1479 }
1480
1481 #[test]
1482 fn rule_by_id_finds_health_rule() {
1483 let rule = rule_by_id("fallow/high-cyclomatic-complexity").unwrap();
1484 assert_eq!(rule.name, "High Cyclomatic Complexity");
1485 }
1486
1487 #[test]
1488 fn rule_by_id_finds_dupes_rule() {
1489 let rule = rule_by_id("fallow/code-duplication").unwrap();
1490 assert_eq!(rule.name, "Code Duplication");
1491 }
1492
1493 #[test]
1494 fn rule_by_id_finds_security_rule() {
1495 let rule = rule_by_id("security/tainted-sink").unwrap();
1496 assert_eq!(rule.name, "Tainted Sink Candidates");
1497 }
1498
1499 #[test]
1500 fn rule_by_id_finds_flags_rule() {
1501 let rule = rule_by_id("fallow/feature-flag").unwrap();
1502 assert_eq!(rule.name, "Feature Flags");
1503 }
1504
1505 #[test]
1506 fn rule_by_id_returns_none_for_unknown() {
1507 assert!(rule_by_id("fallow/nonexistent").is_none());
1508 assert!(rule_by_id("").is_none());
1509 }
1510
1511 #[test]
1512 fn rule_docs_url_format() {
1513 let rule = rule_by_id("fallow/unused-export").unwrap();
1514 let url = rule_docs_url(rule);
1515 assert!(url.starts_with("https://docs.fallow.tools/"));
1516 assert!(url.contains("unused-exports"));
1517 }
1518
1519 #[test]
1520 fn explain_output_prefers_issue_result_registry_contract_fields() {
1521 let output = explain_issue_type("unused-type").unwrap();
1522 let meta = fallow_types::issue_meta::issue_result_meta_by_code("unused-type").unwrap();
1523 assert_eq!(output.name, meta.meta_name);
1524 assert_eq!(output.summary, meta.sarif_description);
1525 assert_eq!(
1526 output.docs,
1527 format!("https://docs.fallow.tools/{}", meta.meta_docs_path)
1528 );
1529 }
1530
1531 #[test]
1532 fn dependency_override_explanations_cover_supported_package_managers() {
1533 let unused = explain_issue_type("unused-dependency-override").unwrap();
1534 assert_eq!(unused.name, "Unused dependency override");
1535 assert!(unused.summary.contains("Package-manager override"));
1536 assert!(unused.rationale.contains("npm"));
1537 assert!(unused.rationale.contains("Bun"));
1538
1539 let misconfigured = explain_issue_type("misconfigured-dependency-override").unwrap();
1540 assert_eq!(misconfigured.name, "Misconfigured dependency override");
1541 assert!(misconfigured.summary.contains("Package-manager override"));
1542 assert!(misconfigured.rationale.contains("npm"));
1543 assert!(misconfigured.rationale.contains("Bun"));
1544 }
1545
1546 #[test]
1547 fn result_sarif_rule_ids_have_explain_metadata() {
1548 for contract in fallow_output::issue_output_contracts() {
1549 for rule_id in contract.sarif_rule_ids {
1550 assert!(
1551 rule_by_id(&rule_id).is_some(),
1552 "result metadata code {} has SARIF rule id {rule_id} without RuleDef",
1553 contract.code
1554 );
1555 }
1556 }
1557 }
1558
1559 #[test]
1560 fn registry_dead_code_tokens_resolve_to_explain_rules() {
1561 for meta in fallow_types::issue_meta::ISSUE_KIND_META {
1562 let Some(expected) = CHECK_RULES
1563 .iter()
1564 .find(|rule| rule.id.strip_prefix("fallow/") == Some(meta.code))
1565 else {
1566 continue;
1567 };
1568 assert_registry_token(expected, meta.code);
1569 for token in meta.aliases {
1570 assert_registry_token(expected, token);
1571 }
1572 if let Some(token) = meta.config_key {
1573 assert_registry_token(expected, token);
1574 }
1575 if let Some(token) = meta.mcp_issue_type {
1576 assert_registry_token(expected, token);
1577 }
1578 if let Some(token) = meta.filter_flag {
1579 assert_registry_token(expected, token);
1580 }
1581 if let Some(token) = meta.suppress_token {
1582 assert_registry_token(expected, token);
1583 }
1584 }
1585 }
1586
1587 fn assert_registry_token(expected: &RuleDef, token: &str) {
1588 if !registry_token_is_unique(token) {
1589 return;
1590 }
1591 let actual = rule_by_token(token)
1592 .unwrap_or_else(|| panic!("registry token {token} did not resolve to an explain rule"));
1593 assert_eq!(
1594 actual.id, expected.id,
1595 "registry token {token} resolved to the wrong explain rule"
1596 );
1597 }
1598
1599 fn registry_token_is_unique(token: &str) -> bool {
1600 fallow_types::issue_meta::ISSUE_KIND_META
1601 .iter()
1602 .filter(|meta| {
1603 CHECK_RULES
1604 .iter()
1605 .any(|rule| rule.id.strip_prefix("fallow/") == Some(meta.code))
1606 && fallow_types::issue_meta::issue_meta_matches_contract_token(meta, token)
1607 })
1608 .count()
1609 == 1
1610 }
1611
1612 #[test]
1613 fn check_rules_all_have_fallow_prefix() {
1614 for rule in CHECK_RULES {
1615 assert!(
1616 rule.id.starts_with("fallow/"),
1617 "rule {} should start with fallow/",
1618 rule.id
1619 );
1620 }
1621 }
1622
1623 #[test]
1624 fn check_rules_all_have_docs_path() {
1625 for rule in CHECK_RULES {
1626 assert!(
1627 !rule.docs_path.is_empty(),
1628 "rule {} should have a docs_path",
1629 rule.id
1630 );
1631 }
1632 }
1633
1634 #[test]
1635 fn check_rules_no_duplicate_ids() {
1636 let mut seen = rustc_hash::FxHashSet::default();
1637 for rule in CHECK_RULES
1638 .iter()
1639 .chain(HEALTH_RULES)
1640 .chain(DUPES_RULES)
1641 .chain(FLAGS_RULES)
1642 .chain(SECURITY_RULES)
1643 {
1644 assert!(seen.insert(rule.id), "duplicate rule id: {}", rule.id);
1645 }
1646 }
1647
1648 #[test]
1649 fn check_meta_has_docs_and_rules() {
1650 let meta = check_meta();
1651 assert!(meta.get("docs").is_some());
1652 assert!(meta.get("rules").is_some());
1653 let rules = meta["rules"].as_object().unwrap();
1654 assert_eq!(rules.len(), CHECK_RULES.len());
1655 assert!(rules.contains_key("unused-file"));
1656 assert!(rules.contains_key("unused-export"));
1657 assert!(rules.contains_key("unused-type"));
1658 assert!(rules.contains_key("unused-dependency"));
1659 assert!(rules.contains_key("unused-dev-dependency"));
1660 assert!(rules.contains_key("unused-optional-dependency"));
1661 assert!(rules.contains_key("unused-enum-member"));
1662 assert!(rules.contains_key("unused-class-member"));
1663 assert!(rules.contains_key("unresolved-import"));
1664 assert!(rules.contains_key("unlisted-dependency"));
1665 assert!(rules.contains_key("duplicate-export"));
1666 assert!(rules.contains_key("type-only-dependency"));
1667 assert!(rules.contains_key("circular-dependency"));
1668 }
1669
1670 #[test]
1671 fn check_meta_documents_per_finding_auto_fixable() {
1672 let meta = check_meta();
1673 let defs = meta["field_definitions"].as_object().unwrap();
1674 let note = defs["actions[].auto_fixable"].as_str().unwrap();
1675 assert!(
1676 note.contains("PER FINDING"),
1677 "auto_fixable note must call out per-finding evaluation"
1678 );
1679 assert!(
1680 note.contains("remove-catalog-entry"),
1681 "auto_fixable note must cite remove-catalog-entry per-instance flip"
1682 );
1683 assert!(
1684 note.contains("used_in_workspaces"),
1685 "auto_fixable note must cite the dependency-action per-instance flip"
1686 );
1687 assert!(
1688 note.contains("ignoreExports"),
1689 "auto_fixable note must cite the duplicate-exports config-fixable flip"
1690 );
1691 assert!(defs.contains_key("actions[]"));
1692 }
1693
1694 #[test]
1695 fn health_and_dupes_meta_share_actions_field_definitions() {
1696 for meta in [health_meta(), dupes_meta()] {
1697 let defs = meta["field_definitions"].as_object().unwrap();
1698 assert_eq!(
1699 defs["actions[]"].as_str().unwrap(),
1700 fallow_output::ACTIONS_FIELD_DEFINITION,
1701 );
1702 assert_eq!(
1703 defs["actions[].auto_fixable"].as_str().unwrap(),
1704 fallow_output::ACTIONS_AUTO_FIXABLE_FIELD_DEFINITION,
1705 );
1706 }
1707 }
1708
1709 #[test]
1710 fn check_meta_rule_has_required_fields() {
1711 let meta = check_meta();
1712 let rules = meta["rules"].as_object().unwrap();
1713 for (key, value) in rules {
1714 assert!(value.get("name").is_some(), "rule {key} missing 'name'");
1715 assert!(
1716 value.get("description").is_some(),
1717 "rule {key} missing 'description'"
1718 );
1719 assert!(value.get("docs").is_some(), "rule {key} missing 'docs'");
1720 }
1721 }
1722
1723 #[test]
1724 fn health_meta_has_metrics() {
1725 let meta = health_meta();
1726 assert!(meta.get("docs").is_some());
1727 let metrics = meta["metrics"].as_object().unwrap();
1728 assert!(metrics.contains_key("cyclomatic"));
1729 assert!(metrics.contains_key("cognitive"));
1730 assert!(metrics.contains_key("maintainability_index"));
1731 assert!(metrics.contains_key("complexity_density"));
1732 assert!(metrics.contains_key("fan_in"));
1733 assert!(metrics.contains_key("fan_out"));
1734 }
1735
1736 #[test]
1737 fn dupes_meta_has_metrics() {
1738 let meta = dupes_meta();
1739 assert!(meta.get("docs").is_some());
1740 let metrics = meta["metrics"].as_object().unwrap();
1741 assert!(metrics.contains_key("duplication_percentage"));
1742 assert!(metrics.contains_key("token_count"));
1743 assert!(metrics.contains_key("clone_groups"));
1744 assert!(metrics.contains_key("clone_families"));
1745 }
1746
1747 #[test]
1748 fn coverage_setup_meta_has_docs_fields_enums_and_warnings() {
1749 let meta = coverage_setup_meta();
1750 assert_eq!(meta["docs_url"], fallow_output::COVERAGE_SETUP_DOCS);
1751 assert!(
1752 meta["field_definitions"]
1753 .as_object()
1754 .unwrap()
1755 .contains_key("members[]")
1756 );
1757 assert!(
1758 meta["field_definitions"]
1759 .as_object()
1760 .unwrap()
1761 .contains_key("config_written")
1762 );
1763 assert!(
1764 meta["field_definitions"]
1765 .as_object()
1766 .unwrap()
1767 .contains_key("members[].package_manager")
1768 );
1769 assert!(
1770 meta["field_definitions"]
1771 .as_object()
1772 .unwrap()
1773 .contains_key("members[].warnings")
1774 );
1775 assert!(
1776 meta["enums"]
1777 .as_object()
1778 .unwrap()
1779 .contains_key("framework_detected")
1780 );
1781 assert!(
1782 meta["warnings"]
1783 .as_object()
1784 .unwrap()
1785 .contains_key("No runtime workspace members were detected")
1786 );
1787 assert!(
1788 meta["warnings"]
1789 .as_object()
1790 .unwrap()
1791 .contains_key("Package manager was not detected")
1792 );
1793 }
1794
1795 #[test]
1796 fn coverage_analyze_meta_documents_data_source_and_action_vocabulary() {
1797 let meta = coverage_analyze_meta();
1798 assert_eq!(meta["docs_url"], fallow_output::COVERAGE_ANALYZE_DOCS);
1799 let fields = meta["field_definitions"].as_object().unwrap();
1800 assert!(fields.contains_key("runtime_coverage.summary.data_source"));
1801 assert!(fields.contains_key("runtime_coverage.summary.last_received_at"));
1802 assert!(fields.contains_key("runtime_coverage.findings[].evidence.test_coverage"));
1803 assert!(fields.contains_key("runtime_coverage.findings[].actions[].type"));
1804 let enums = meta["enums"].as_object().unwrap();
1805 assert_eq!(enums["data_source"], json!(["local", "cloud"]));
1806 assert_eq!(enums["test_coverage"], json!(["covered", "not_covered"]));
1807 assert_eq!(enums["v8_tracking"], json!(["tracked", "untracked"]));
1808 assert_eq!(
1809 enums["action_type"],
1810 json!(["delete-cold-code", "review-runtime"])
1811 );
1812 let warnings = meta["warnings"].as_object().unwrap();
1813 assert!(warnings.contains_key("cloud_functions_unmatched"));
1814 }
1815
1816 #[test]
1817 fn health_rules_all_have_fallow_prefix() {
1818 for rule in HEALTH_RULES {
1819 assert!(
1820 rule.id.starts_with("fallow/"),
1821 "health rule {} should start with fallow/",
1822 rule.id
1823 );
1824 }
1825 }
1826
1827 #[test]
1828 fn health_rules_all_have_docs_path() {
1829 for rule in HEALTH_RULES {
1830 assert!(
1831 !rule.docs_path.is_empty(),
1832 "health rule {} should have a docs_path",
1833 rule.id
1834 );
1835 }
1836 }
1837
1838 #[test]
1839 fn health_rules_all_have_non_empty_fields() {
1840 for rule in HEALTH_RULES {
1841 assert!(
1842 !rule.name.is_empty(),
1843 "health rule {} missing name",
1844 rule.id
1845 );
1846 assert!(
1847 !rule.short.is_empty(),
1848 "health rule {} missing short description",
1849 rule.id
1850 );
1851 assert!(
1852 !rule.full.is_empty(),
1853 "health rule {} missing full description",
1854 rule.id
1855 );
1856 }
1857 }
1858
1859 #[test]
1860 fn dupes_rules_all_have_fallow_prefix() {
1861 for rule in DUPES_RULES {
1862 assert!(
1863 rule.id.starts_with("fallow/"),
1864 "dupes rule {} should start with fallow/",
1865 rule.id
1866 );
1867 }
1868 }
1869
1870 #[test]
1871 fn dupes_rules_all_have_docs_path() {
1872 for rule in DUPES_RULES {
1873 assert!(
1874 !rule.docs_path.is_empty(),
1875 "dupes rule {} should have a docs_path",
1876 rule.id
1877 );
1878 }
1879 }
1880
1881 #[test]
1882 fn dupes_rules_all_have_non_empty_fields() {
1883 for rule in DUPES_RULES {
1884 assert!(!rule.name.is_empty(), "dupes rule {} missing name", rule.id);
1885 assert!(
1886 !rule.short.is_empty(),
1887 "dupes rule {} missing short description",
1888 rule.id
1889 );
1890 assert!(
1891 !rule.full.is_empty(),
1892 "dupes rule {} missing full description",
1893 rule.id
1894 );
1895 }
1896 }
1897
1898 #[test]
1899 fn security_rules_all_have_security_prefix() {
1900 for rule in SECURITY_RULES {
1901 assert!(
1902 rule.id.starts_with("security/"),
1903 "security rule {} should start with security/",
1904 rule.id
1905 );
1906 }
1907 }
1908
1909 #[test]
1910 fn security_rules_all_have_docs_path() {
1911 for rule in SECURITY_RULES {
1912 assert_eq!(
1913 rule.docs_path, "cli/security",
1914 "security rule {} should point at security docs",
1915 rule.id
1916 );
1917 }
1918 }
1919
1920 #[test]
1921 fn security_rules_all_have_non_empty_fields() {
1922 for rule in SECURITY_RULES {
1923 assert!(
1924 !rule.name.is_empty(),
1925 "security rule {} missing name",
1926 rule.id
1927 );
1928 assert!(
1929 !rule.short.is_empty(),
1930 "security rule {} missing short description",
1931 rule.id
1932 );
1933 assert!(
1934 !rule.full.is_empty(),
1935 "security rule {} missing full description",
1936 rule.id
1937 );
1938 }
1939 }
1940
1941 #[test]
1942 fn check_rules_all_have_non_empty_fields() {
1943 for rule in CHECK_RULES {
1944 assert!(!rule.name.is_empty(), "check rule {} missing name", rule.id);
1945 assert!(
1946 !rule.short.is_empty(),
1947 "check rule {} missing short description",
1948 rule.id
1949 );
1950 assert!(
1951 !rule.full.is_empty(),
1952 "check rule {} missing full description",
1953 rule.id
1954 );
1955 }
1956 }
1957
1958 #[test]
1959 fn rule_docs_url_health_rule() {
1960 let rule = rule_by_id("fallow/high-cyclomatic-complexity").unwrap();
1961 let url = rule_docs_url(rule);
1962 assert!(url.starts_with("https://docs.fallow.tools/"));
1963 assert!(url.contains("health"));
1964 }
1965
1966 #[test]
1967 fn rule_docs_url_dupes_rule() {
1968 let rule = rule_by_id("fallow/code-duplication").unwrap();
1969 let url = rule_docs_url(rule);
1970 assert!(url.starts_with("https://docs.fallow.tools/"));
1971 assert!(url.contains("duplication"));
1972 }
1973
1974 #[test]
1975 fn rule_docs_url_security_rule() {
1976 let rule = rule_by_id("security/sql-injection").unwrap();
1977 let url = rule_docs_url(rule);
1978 assert_eq!(url, "https://docs.fallow.tools/cli/security");
1979 }
1980
1981 #[test]
1982 fn health_meta_all_metrics_have_name_and_description() {
1983 let meta = health_meta();
1984 let metrics = meta["metrics"].as_object().unwrap();
1985 for (key, value) in metrics {
1986 assert!(
1987 value.get("name").is_some(),
1988 "health metric {key} missing 'name'"
1989 );
1990 assert!(
1991 value.get("description").is_some(),
1992 "health metric {key} missing 'description'"
1993 );
1994 assert!(
1995 value.get("interpretation").is_some(),
1996 "health metric {key} missing 'interpretation'"
1997 );
1998 }
1999 }
2000
2001 #[test]
2002 fn health_meta_has_all_expected_metrics() {
2003 let meta = health_meta();
2004 let metrics = meta["metrics"].as_object().unwrap();
2005 let expected = [
2006 "cyclomatic",
2007 "cognitive",
2008 "line_count",
2009 "lines",
2010 "maintainability_index",
2011 "complexity_density",
2012 "dead_code_ratio",
2013 "fan_in",
2014 "fan_out",
2015 "score",
2016 "weighted_commits",
2017 "trend",
2018 "priority",
2019 "efficiency",
2020 "effort",
2021 "confidence",
2022 "bus_factor",
2023 "contributor_count",
2024 "share",
2025 "stale_days",
2026 "drift",
2027 "unowned",
2028 "runtime_coverage_verdict",
2029 "runtime_coverage_state",
2030 "runtime_coverage_confidence",
2031 "production_invocations",
2032 "percent_dead_in_production",
2033 ];
2034 for key in &expected {
2035 assert!(
2036 metrics.contains_key(*key),
2037 "health_meta missing expected metric: {key}"
2038 );
2039 }
2040 }
2041
2042 #[test]
2043 fn dupes_meta_all_metrics_have_name_and_description() {
2044 let meta = dupes_meta();
2045 let metrics = meta["metrics"].as_object().unwrap();
2046 for (key, value) in metrics {
2047 assert!(
2048 value.get("name").is_some(),
2049 "dupes metric {key} missing 'name'"
2050 );
2051 assert!(
2052 value.get("description").is_some(),
2053 "dupes metric {key} missing 'description'"
2054 );
2055 }
2056 }
2057
2058 #[test]
2059 fn dupes_meta_has_line_count() {
2060 let meta = dupes_meta();
2061 let metrics = meta["metrics"].as_object().unwrap();
2062 assert!(metrics.contains_key("line_count"));
2063 }
2064
2065 #[test]
2066 fn check_docs_url_valid() {
2067 assert!(fallow_output::CHECK_DOCS.starts_with("https://"));
2068 assert!(fallow_output::CHECK_DOCS.contains("dead-code"));
2069 }
2070
2071 #[test]
2072 fn health_docs_url_valid() {
2073 assert!(fallow_output::HEALTH_DOCS.starts_with("https://"));
2074 assert!(fallow_output::HEALTH_DOCS.contains("health"));
2075 }
2076
2077 #[test]
2078 fn dupes_docs_url_valid() {
2079 assert!(fallow_output::DUPES_DOCS.starts_with("https://"));
2080 assert!(fallow_output::DUPES_DOCS.contains("dupes"));
2081 }
2082
2083 #[test]
2084 fn check_meta_docs_url_matches_constant() {
2085 let meta = check_meta();
2086 assert_eq!(meta["docs"].as_str().unwrap(), fallow_output::CHECK_DOCS);
2087 }
2088
2089 #[test]
2090 fn health_meta_docs_url_matches_constant() {
2091 let meta = health_meta();
2092 assert_eq!(meta["docs"].as_str().unwrap(), fallow_output::HEALTH_DOCS);
2093 }
2094
2095 #[test]
2096 fn dupes_meta_docs_url_matches_constant() {
2097 let meta = dupes_meta();
2098 assert_eq!(meta["docs"].as_str().unwrap(), fallow_output::DUPES_DOCS);
2099 }
2100
2101 #[test]
2102 fn check_rules_count() {
2103 assert_eq!(CHECK_RULES.len(), 47);
2104 }
2105
2106 #[test]
2107 fn health_rules_count() {
2108 assert_eq!(HEALTH_RULES.len(), 21);
2109 }
2110
2111 #[test]
2112 fn dupes_rules_count() {
2113 assert_eq!(DUPES_RULES.len(), 1);
2114 }
2115
2116 #[test]
2117 fn flags_rules_count() {
2118 assert_eq!(FLAGS_RULES.len(), 2);
2119 }
2120
2121 #[test]
2122 fn security_rules_count() {
2123 assert_eq!(
2124 SECURITY_RULES.len(),
2125 matcher_entries_from_security_catalogue().len() + 3
2126 );
2127 }
2128
2129 #[test]
2130 fn security_rules_cover_every_catalogue_matcher() {
2131 let mut rule_ids = rustc_hash::FxHashSet::default();
2132 for rule in SECURITY_RULES {
2133 rule_ids.insert(rule.id);
2134 }
2135
2136 for matcher in matcher_entries_from_security_catalogue() {
2137 let rule_id = format!("security/{}", matcher.id);
2138 assert!(
2139 rule_ids.contains(rule_id.as_str()),
2140 "security matcher {} has no explain rule",
2141 matcher.id
2142 );
2143 }
2144 }
2145
2146 #[test]
2147 fn security_catalogue_rules_match_catalogue_title_and_cwe() {
2148 for matcher in matcher_entries_from_security_catalogue() {
2149 let rule_id = format!("security/{}", matcher.id);
2150 let rule = rule_by_id(&rule_id)
2151 .unwrap_or_else(|| panic!("security matcher {} has no explain rule", matcher.id));
2152 let cwe = format!("CWE-{}", matcher.cwe);
2153 assert_eq!(
2154 rule.name, matcher.title,
2155 "security matcher {} has stale explain title",
2156 matcher.id
2157 );
2158 assert!(
2159 rule.short.contains(&cwe),
2160 "security matcher {} explain summary does not mention {cwe}",
2161 matcher.id
2162 );
2163 assert!(
2164 rule.full.contains(&cwe),
2165 "security matcher {} explain rationale does not mention {cwe}",
2166 matcher.id
2167 );
2168 }
2169 }
2170
2171 #[test]
2177 fn every_rule_declares_a_category() {
2178 let allowed = [
2179 "Dead code",
2180 "Dependencies",
2181 "Duplication",
2182 "Health",
2183 "Architecture",
2184 "Suppressions",
2185 "Security",
2186 "Policy",
2187 "Flags",
2188 ];
2189 for rule in CHECK_RULES
2190 .iter()
2191 .chain(HEALTH_RULES)
2192 .chain(DUPES_RULES)
2193 .chain(FLAGS_RULES)
2194 .chain(SECURITY_RULES)
2195 {
2196 assert!(
2197 !rule.category.is_empty(),
2198 "rule {} has empty category",
2199 rule.id
2200 );
2201 assert!(
2202 allowed.contains(&rule.category),
2203 "rule {} has unrecognised category {:?}; add to allowlist or pick from {:?}",
2204 rule.id,
2205 rule.category,
2206 allowed
2207 );
2208 }
2209 }
2210
2211 #[derive(Debug)]
2212 struct MatcherEntry {
2213 id: &'static str,
2214 title: &'static str,
2215 cwe: &'static str,
2216 }
2217
2218 fn matcher_entries_from_security_catalogue() -> Vec<MatcherEntry> {
2219 let toml = include_str!("../../security/data/security_matchers.toml");
2220 let mut entries = Vec::new();
2221 let mut in_matcher = false;
2222 let mut id = None;
2223 let mut title = None;
2224 let mut cwe = None;
2225
2226 for line in toml.lines() {
2227 let trimmed = line.trim();
2228 if trimmed == "[[matcher]]" {
2229 if let (Some(id), Some(title), Some(cwe)) = (id.take(), title.take(), cwe.take()) {
2230 entries.push(MatcherEntry { id, title, cwe });
2231 }
2232 in_matcher = true;
2233 continue;
2234 }
2235 if trimmed.starts_with("[[") {
2236 if let (Some(id), Some(title), Some(cwe)) = (id.take(), title.take(), cwe.take()) {
2237 entries.push(MatcherEntry { id, title, cwe });
2238 }
2239 in_matcher = false;
2240 continue;
2241 }
2242 if !in_matcher {
2243 continue;
2244 }
2245 if let Some(value) = trimmed
2246 .strip_prefix("id = \"")
2247 .and_then(|value| value.strip_suffix('"'))
2248 {
2249 id = Some(value);
2250 } else if let Some(value) = trimmed
2251 .strip_prefix("title = \"")
2252 .and_then(|value| value.strip_suffix('"'))
2253 {
2254 title = Some(value);
2255 } else if let Some(value) = trimmed.strip_prefix("cwe = ") {
2256 cwe = Some(value);
2257 }
2258 }
2259
2260 if let (Some(id), Some(title), Some(cwe)) = (id.take(), title.take(), cwe.take()) {
2261 entries.push(MatcherEntry { id, title, cwe });
2262 }
2263
2264 let mut seen = rustc_hash::FxHashSet::default();
2265 entries
2266 .into_iter()
2267 .filter(|entry| seen.insert(entry.id))
2268 .collect()
2269 }
2270
2271 #[test]
2275 fn unknown_explain_error_names_the_token_one_edit_away() {
2276 let error = unknown_explain_error("unused-exportz");
2277 assert_eq!(error.code.as_deref(), Some("unknown_issue_type"));
2278 assert!(error.message.contains("unused-export"), "{}", error.message);
2279 assert_eq!(error.help.as_deref(), Some("fallow explain unused-export"));
2280 assert!(
2281 rule_by_token("unused-export").is_some(),
2282 "suggestion must resolve"
2283 );
2284 }
2285
2286 #[test]
2289 fn unknown_explain_error_keeps_the_example_list_for_a_novel_token() {
2290 let error = unknown_explain_error("banana-split-detector");
2291 assert!(!error.message.contains("Did you mean"), "{}", error.message);
2292 assert_eq!(error.help, None);
2293 }
2294}