27 Commits
Author SHA1 Message Date
tmu acf9d06ddd 🚀 Release 0.8.1
CI / release-gate (push) Successful in 2s
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2026-09-23 21:24:42 +00:00
tmu eba60f6569 🔀 Merge chore/coverage-threshold into main 2026-09-23 21:23:37 +00:00
tmu 52ce655d8e 👷 Gate CI at 100% coverage
test:ci now runs c8 with --all --include "src/**/*.ts" --100, so the
build job fails when any runtime file under src/ is untested. --all is
what makes the gate non-vacuous: without it c8 counts only the files the
suite happened to load, and a new untested module stays invisible.

Add src/index.test.ts to load the public barrel, which was previously
never imported at runtime and so read as 0% under --all. matcher-shared.ts
is types-only (an empty runtime image) and carries a file-level c8 ignore
with the reason.

Why 100% and the rejected alternatives: development/ci.md § Coverage
threshold.
2026-09-23 21:12:24 +00:00
tmu 76327a8c47 🔀 Merge chore/duplicate-tag-union-test into main 2026-09-23 20:55:56 +00:00
tmu d7004c0f71 📝 Clarify the duplicate-tag known issue 2026-09-23 20:52:45 +00:00
tmu 69231eb9ac 📝 Note the duplicate-tag tests in the changelog 2026-09-23 20:30:44 +00:00
tmu 7ff371c569 ✅ Pin the duplicate-tag union collapse 2026-09-23 20:30:35 +00:00
tmu 0339a493a2 📝 Track the TypeScript 5.0 CI baseline 2026-09-23 20:28:53 +00:00
tmu 2c856f28e3 🔀 Merge chore/open-universe-guidance into main 2026-09-23 20:01:52 +00:00
tmu 4260a4732c 📝 Document why open universes are rejected
Add a README Caveats subsection with user-facing guidance for the two
open-universe shapes: parse external input at the boundary down to a
finite union, or use a runtime Map registry for extensible domains.
Point the finite-universe bullet at it, and point the rejected
fix/open-universe-* entry in development/library.md back at the new
guidance, so rule and decision cross-reference without duplicating each
other.
2026-09-23 19:51:19 +00:00
tmu 11d364e187 🚀 Release 0.8.0
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2026-09-23 17:42:32 +00:00
tmu 8dc0b95320 🔀 Merge fix/union-valued-discriminant into main 2026-09-23 17:37:37 +00:00
tmu 7b90f898d3 ✅ Cover property-union autocomplete and rejection
Add property-union tests for the completion popup, a broad value in the
union, and value/stringification collisions. Rename the existing
property-union tests to a `property union:` prefix so they can be
selected with `--test-name-pattern`, and extend the autocomplete helper
with a `key` option so a probe can complete on a property other than
`kind`.
2026-09-23 16:32:16 +00:00
tmu 1bdf7f0315 🐛 Reject mixed literal and broad universes
`UnsupportedReason` tested `IsLiteral<PatternKey<T>> extends false`.
`IsLiteral` is `boolean` for a union that mixes a literal with a broad
type (`"a" | \`x-${number}\``), so `boolean extends false` is false and
the mix was accepted. Test `extends true` instead, which rejects it.

Found while adding property-union broad-universe coverage; the gate is
shared with the primitive-union matcher.
2026-09-23 16:32:09 +00:00
tmu 55bf6c24a7 🐛 Narrow union-valued and optional discriminants
The tagged-union matcher selected handler parameters with
`Extract<T, Record<K, V>>`, which only keeps a member whose
discriminant is a singleton literal. A property that is itself a
union (`{ color: "red" | "green" | "blue" }`) or optional
(`{ type?: "x" }`) matched no member, so every handler received
`never`, and the fallback saw the whole shape instead of the
unhandled tags.

Replace the selector with `Narrowed`, which distributes over `T`,
drops a member whose `K` cannot take the tag, and narrows `K`. The
`T[K] extends V` fast path keeps an exact member (a discriminated
union's declared interface) untouched. The fallback reuses
`Narrowed` over `Exclude<Tags, HandledTags>`, so a union-valued
property narrows to the unhandled tags rather than the whole shape.

Matching a defined tag on an optional property makes the key
required (`{ type: "x" }`); the `undefined` tag yields
`{ type?: never }` under `exactOptionalPropertyTypes` (absence) or
`{ type?: undefined }` when the property admits an explicit
`undefined`.
2026-09-23 16:04:00 +00:00
tmu e7b5c0284d 🔀 Merge chore/prune-backlog into main 2026-09-23 15:27:05 +00:00
tmu 013bfa883b 📝 Prune the backlog; document the LSP shutdown fix
Remove every done/cancelled backlog item; the reasons they recorded are
already in development/ (library.md, testing.md, tooling.md, workflow.md)
and git history is the archive.

The one exception was the TS 7 LSP shutdown workaround, which lived only in
a code comment. Record it under development/testing.md § Autocomplete
(Known issue) before dropping the bug item.
2026-09-23 15:12:54 +00:00
tmu d99d84d387 🚀 Release 0.7.1
CI / release-gate (push) Successful in 2s
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2026-09-23 14:56:59 +00:00
tmu 02f64f804e 🔀 Merge fix/knip-library-entry into main 2026-09-23 14:56:15 +00:00
tmu cbaed8fabc 🐛 Stop knip reporting the source entry
Listing scripts/*.ts in knip's `entry` replaced its default entry
detection, which derives the public entry from package.json `exports`.
Adding the CLI scripts therefore dropped the library entry, so knip
resolved the package through dist/index.js and flagged the unreferenced
src/index.ts as unused. Name the source entry alongside the scripts.

Record the rationale in development/tooling.md.
2026-09-23 14:55:27 +00:00
tmu 410903198e 🔀 Merge chore/upgrade-deps into main 2026-09-23 14:51:49 +00:00
tmu 2e4262383c ⬆️ Upgrade dependencies
Bump every direct dependency to the latest registry version: cspell
10.3.3, knip 6.38.0, oxfmt 0.70.0, oxlint 1.85.0, oxlint-tsgolint
7.0.2002 and type-fest 5.10.0, plus their transitive updates. oxfmt is
the only range widened (^0.68.0 -> ^0.70.0); the rest moved within
their existing semver ranges.

`npm run maintain:outdated` is now clean and `npm run verify` is green
with no rule or format fallout. `maintain:knip` still reports the
pre-existing `src/index.ts` false positive (dist-only `exports`), which
predates this bump.
2026-09-23 14:50:29 +00:00
tmu a8f1a05db2 🚀 Release 0.7.0
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2026-09-23 14:34:51 +00:00
tmu 675fd0bb54 🔀 Merge feature/finite-universes into main
CI / release-gate (push) Successful in 3s
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2026-09-23 13:48:11 +00:00
tmu ce287b384f 📝 Note the gate in changelog and backlog
Close the broad-universe type-hole task and cancel the widened-literal
test task, since arbitrary strings no longer fall through to a fallback.
2026-09-23 13:42:25 +00:00
tmu aaeeef1e11 📝 Document the finite-only universe decision
Record why open universes and value/stringification collisions are
rejected, the `Member<T, K>` inversion, and the findings from the
rejected open-universe attempt so they are not re-run.
2026-09-23 13:42:12 +00:00
tmu 3b5269f9e1 🐛 Gate the universe to finite, literal keys
An open universe (`string`, `number`, a template literal) makes the
handler map index-like, so a partial object satisfied the exhaustive
overload and the runtime `dispatch` throw was reachable. A universe
containing a member and its stringification (`"true" | true`, `1 | "1"`)
collapsed two members onto one key.

- reject broad universes and value/stringification collisions at the
  factory, with a diagnostic naming the reason
- invert `PatternKey` against the universe (`Member<T, K>`) instead of
  `PatternParam<K>`, so a standalone `"true"` is typed `"true"`
- intersect `UniverseGate<T>` into the handler and fallback parameters,
  preserving `R` inference and the popup
2026-09-23 13:41:57 +00:00
19 changed files with 2187 additions and 631 deletions

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@@ -77,6 +77,9 @@ jobs:
- run: npm ci - run: npm ci
- run: npm run build - run: npm run build
- run: npm run check - run: npm run check
# Fails the build below 100% coverage on `src/` (`c8 --all --100`);
# the same run produces the report published below. See
# development/ci.md § Coverage threshold.
- run: npm run test:ci - run: npm run test:ci
# Publish this tag's coverage to the self-hosted pages server, # Publish this tag's coverage to the self-hosted pages server,
# served read-only at # served read-only at
+31 -1
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@@ -7,6 +7,32 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
## [Unreleased] ## [Unreleased]
## [0.8.1] - 2026-09-23
- gate CI at 100% coverage: `test:ci` runs c8 with `--all --100` over `src/`,
and a test loads the `index.ts` barrel so it is measured
- pin the duplicate-tag union collapse (members sharing a tag dispatch through
one handler) with tests
## [0.8.0] - 2026-09-23
- reject a universe that mixes a literal with a broad type (e.g.
`"a" | \`x-${number}\``), which the finite-literal gate let through
- narrow the tagged-union matcher's handler parameters for a union-valued or
optional discriminant, and its fallback to the unhandled tags, instead of
passing `never`
## [0.7.1] - 2026-09-23
- upgrade dependencies
## [0.7.0] - 2026-09-23
- reject broad universes (`string`, `number`, template literals) and
value/stringification collisions (`true | "true"`, `1 | "1"`) at the factory
- type handler parameters by the matched member, so a
standalone `"true"` universe is typed `"true"` rather than `true`
## [0.6.0] - 2026-09-22 ## [0.6.0] - 2026-09-22
- add `getTaggedUnionMatcher` / `getTaggedUnionMatcherW` for discriminated unions - add `getTaggedUnionMatcher` / `getTaggedUnionMatcherW` for discriminated unions
@@ -75,7 +101,11 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
- basic setup - basic setup
[Unreleased]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.6.0...main [Unreleased]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.8.1...main
[0.8.1]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.8.0...0.8.1
[0.8.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.7.1...0.8.0
[0.7.1]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.7.0...0.7.1
[0.7.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.6.0...0.7.0
[0.6.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.5.0...0.6.0 [0.6.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.5.0...0.6.0
[0.5.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.4.0...0.5.0 [0.5.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.4.0...0.5.0
[0.4.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.3.0...0.4.0 [0.4.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.3.0...0.4.0
+3 -2
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@@ -41,7 +41,7 @@ faster tiers catch less, slower tiers are more thorough":
| `npm run verify` | manual | Definition of done: `npm run check` + unit tests, one shot | ~6s | | `npm run verify` | manual | Definition of done: `npm run check` + unit tests, one shot | ~6s |
| `npm run fix` | manual | Auto-resolve fixable issues (lint, format) | ~3s | | `npm run fix` | manual | Auto-resolve fixable issues (lint, format) | ~3s |
| `npm run maintain` | manual / CI (advisory) | `maintain:knip` + `maintain:outdated` (whole-project + network scans) | ~10s | | `npm run maintain` | manual / CI (advisory) | `maintain:knip` + `maintain:outdated` (whole-project + network scans) | ~10s |
| CI build (auto) | on push to `main` / tag | `build` job (build + correctness + packaging) — see [.gitea/workflows/ci.yml](./.gitea/workflows/ci.yml) | ~30s+ | | CI build (auto) | on push to `main` / tag | `build` job (build + correctness + coverage + packaging) — see [.gitea/workflows/ci.yml](./.gitea/workflows/ci.yml) | ~30s+ |
| CI maintain (auto, non-blocking) | on push to `main` | `npm run maintain` — reports, never fails the build | ~10s | | CI maintain (auto, non-blocking) | on push to `main` | `npm run maintain` — reports, never fails the build | ~10s |
| CI publish (auto) | on tag | packaging checks + `publish:publint` / `publish:attw`, then the Gitea release page and `npm publish` (skipped, and the job failed, without `NPM_TOKEN`) | ~15s | | CI publish (auto) | on tag | packaging checks + `publish:publint` / `publish:attw`, then the Gitea release page and `npm publish` (skipped, and the job failed, without `NPM_TOKEN`) | ~15s |
@@ -125,7 +125,8 @@ CI step. Pick the prefix that matches the script's lifecycle:
`npm run fix`; the diff is the review surface. `npm run fix`; the diff is the review surface.
- `test:*` — test scripts. `test` is the canonical entry point (`check:tsc` + - `test:*` — test scripts. `test` is the canonical entry point (`check:tsc` +
unit tests); `test:unit` skips the typecheck for fast local iteration; unit tests); `test:unit` skips the typecheck for fast local iteration;
`test:ci` adds c8 coverage. `test:ci` runs the suite under c8 and fails below 100% coverage on `src/`
(CI-only; `verify` stays coverage-free).
- `watch:*` — long-running watchers for the manual inner dev loop. Aggregated by - `watch:*` — long-running watchers for the manual inner dev loop. Aggregated by
`watch`. `watch`.
- `maintain:*` — advisory repo-maintenance scans: read-only, but whole-project - `maintain:*` — advisory repo-maintenance scans: read-only, but whole-project
+22 -4
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@@ -25,16 +25,34 @@ Yet to be implemented
## Caveats ## Caveats
- **A value and its stringification collide.** Object keys stringify, so a - **Only finite universes are supported.** The factory must be given a finite
universe that mixes a member with the string it stringifies to — `1 | "1"`, union of literals; `string`, `number` and template literals are rejected. This
`true | "true"`, `null | "null"` — collapses to a single handler key and both is what lets the exhaustive overload be proven, so the runtime `dispatch`
members are routed to it. Use one form or the other. throw stays unreachable through the typed API.
- **A value and its stringification must not both be present.** Object keys
stringify, so a universe containing both a member and the string it
stringifies to — `1 | "1"`, `true | "true"`, `null | "null"` — is rejected at
the factory. Either form alone is fine, and one value's string form may
coexist with a _different_ value's bare form (`"true" | false`).
- **`symbol` and `bigint` are not supported.** A `symbol` brand is a - **`symbol` and `bigint` are not supported.** A `symbol` brand is a
compile-time phantom with nothing to match at runtime, and a `bigint` is not a compile-time phantom with nothing to match at runtime, and a `bigint` is not a
valid property key; neither satisfies the matcher's universe constraint. valid property key; neither satisfies the matcher's universe constraint.
- **`NaN` and `-0` cannot be matched specifically.** They have no literal type, - **`NaN` and `-0` cannot be matched specifically.** They have no literal type,
so both stay part of `number`. so both stay part of `number`.
### Why open universes are rejected
An open universe — one carrying a broad member, as in
`type Units = "s" | "ms" | "min" | (string & {})` — is not a dispatch concern.
If the values arrive from outside the program, parse them at the boundary down
to a finite union and match the narrowed result; the openness never reaches the
matcher. If the domain is genuinely extensible, the right shape is a runtime
`Map` of handlers, where "no handler" is a lookup, not a pattern. Either way an
open matcher would abandon the one guarantee this library exists to give —
provable exhaustiveness — to automate what a `switch` and a default arm already
cover. The type-level cost of supporting open universes is recorded in
[development/library.md](./development/library.md#supported-universes).
## License ## License
MIT © 2025 tmu. See [LICENSE](./LICENSE). MIT © 2025 tmu. See [LICENSE](./LICENSE).
+6 -63
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@@ -6,75 +6,21 @@ Backlog and tracking for tiny-pattern-ts. Managed in vscode-todotasks format.
Setup: Setup:
☐ Split off template into separate package => pi --session 01a07dde-7050-7054-bb36-1606d7eb2bc3 @low ☐ Split off template into separate package => pi --session 01a07dde-7050-7054-bb36-1606d7eb2bc3 @low
✔ straighten oxc rules @done
✔ oxc forbids ternary => remove oxc rule @done
✔ oxc wants comments to start comments with a capital letter => remove oxc rule @done
✔ there already exists a /* */ block comment in primitive.ts, => change to multi-line comment @done
✔ Remove example code files and its documentation and its exports from index.ts @high @done
✔ remove src/match.ts and its documentation @high @done
✔ remove src/pattern.ts and its documentation @high @done
✔ remove src/index.test.ts and its documentation @high @done
✔ exports from `src/index.ts` should only be the public API surface @done
v1.0: v1.0:
☐ API surface is stable and fully typed ☐ API surface is stable and fully typed
☐ Finalize public exports in `src/index.ts` ☐ Finalize public exports in `src/index.ts`
☐ Document all exported types and functions ☐ Document all exported types and functions
☐ Add JSDoc for public APIs ☐ Add JSDoc for public APIs
☐ Test coverage meets threshold ✔ Test coverage meets threshold @done
☐ Achieve 100% branch coverage on `src/primitive-union.ts` ✔ Achieve 100% branch coverage on `src/primitive-union.ts` @done
☐ Achieve 100% branch coverage on `src/index.ts` ✔ Achieve 100% branch coverage on `src/index.ts` @done
Testing:
✔ Cover autocomplete with real completion test cases in the suite @medium @done
→ `src/util/__tests__/lsp-completion.ts` (`#test-utils/…`) is the helper; the suite asserts its labels (see development/testing.md § Autocomplete)
→ wire it into `node --test` so a test asserts the offered labels
→ note: `Parameters<typeof factory>[0]` resolves only the *last* overload; use `@ts-expect-error` call sites for factory negatives, not `not.toExtend<Parameters<…>>`
✔ Drive the LSP completion helper through the LSP protocol library instead of a hand-rolled JSON-RPC client @medium @done
✔ Add `vscode-languageserver-protocol` and record the tooling decision @done
✔ Rewrite `src/util/__tests__/lsp-completion.ts` onto `createMessageConnection` and typed requests @done
✔ Update `development/testing.md § Autocomplete` for the new client @done
✔ Run `npm run verify` and check the task off @done
☐ Test a literal union widened with `(string & {})` — `"red" | "green" | "yellow" | (string & {})` @medium
→ autocomplete should still offer the literals; arbitrary strings stay assignable and fall through to the fallback
☐ Type hole when using broad types like string as a universe @high
☐ handlers cannot be exhaustive, yet it is possible to not have a fallback
☐ one test even exploits this, I think for a negative test
☐ does the same type hole exist for tagged-union matchers or primitive-union matchers only?
Matcher: Matcher:
✔ Clean up: adopt the 3-overload matcher (`src/prototype-ac2.ts`) and delete the prototypes @high @done ✔ when using a union type as a property, the current behavior of tagged union matcher is @done
→ `getMatcher` / `getMatcherW`, each with overloads `ExhaustiveLoose` → `Fallback` → `Handlers` (order is load-bearing)
→ fold into `src/primitive.ts` / the public API; drop `src/prototype*.ts`
✔ `_` should receive only the unhandled `T` keys, not all of `T` @medium @done
→ the fallback is now a second argument: `(handlers, (s) => …)`, `s: Exclude<T, keyof handlers>`
✔ A fallback for an already-exhaustive handler map must be a compile error @medium @done
→ rejected by an F-bounded constraint on `Handled` (checked *after* inference); a conditional in the fallback parameter is evaluated too early and breaks contextual typing
✔ Implement matcher with similar API like matcher from primitive.ts @high @done
→ `getTaggedUnionMatcher` / `getTaggedUnionMatcherW`, curried on the discriminant key
→ fallback is the second argument; `_` removed
✔ Rename `primitive` to `primitive-union` and `getMatcher` to `getPrimitiveMatcher` @medium @done
→ `src/primitive.ts` / `src/primitive.test.ts` → `primitive-union.*`
→ `getMatcherW` → `getPrimitiveMatcherW` for symmetry with the tagged-union pair
→ update `src/index.ts`, `development/library.md` and any README references
→ shipped as `getPrimitiveUnionMatcher` / `getPrimitiveUnionMatcherW`; kept `Union` for symmetry with the tagged-union pair
☐ when using a union type as a property, the current behavior of tagged union matcher is
to pass never to handler parameters to pass never to handler parameters
→ new matcher function needed or can be fixed in tagged union matcher → new matcher function needed or can be fixed in tagged union matcher
☐ optional discriminant (`{ type?: "x" }`) is the same hole: the boolean/nullish change now admits the `undefined` tag, so the factory accepts the key, but `Extract<T, Record<K, V>>` still passes `never` to both the `x` and `undefined` handlers ✔ optional discriminant (`{ type?: "x" }`) is the same hole: the boolean/nullish change now admits the `undefined` tag, so the factory accepts the key, but `Extract<T, Record<K, V>>` still passes `never` to both the `x` and `undefined` handlers @done
Bugs:
✔ TS 7 LSP server logs `context canceled` on stderr at shutdown @done
→ `handleExit` returns `io.EOF`, cancelling the background context while `Session.updateWatches` is still in flight; the bare error is flushed to stderr and the server exits 1
→ close stdin after `shutdown` instead of sending `exit`; the server exits cleanly (code 0, no output), kill kept as a fallback
Enhancements:
✔ Allow boolean literals in primitive union patterns (e.g. `true: () => "yes"`) @medium @done
✔ Are there other primitive types that should be supported in union patterns? (e.g. `bigint`, `symbol`) @medium @done
→ added boolean, null and undefined; rejected `symbol` (compile-time brand, nothing at runtime) and `bigint` (not a property key)
✔ Allow boolean, null and undefined discriminant values in tagged-union patterns @medium @done
→ moved the `PatternKey` / `PatternParam` projection to `matcher-shared.ts` and keyed the tagged-union handler map through it; see development/library.md § Tagged-union matcher
Documentation: Documentation:
☐ Bring README.md back to its previous form — synopsis and examples restored, in the correct place ☐ Bring README.md back to its previous form — synopsis and examples restored, in the correct place
@@ -84,12 +30,8 @@ Documentation:
☐ Add comparison section vs. other TS pattern-matching libs in Readme.md ☐ Add comparison section vs. other TS pattern-matching libs in Readme.md
☐ Write migration guide for users coming from discriminated unions ☐ Write migration guide for users coming from discriminated unions
☐ Create backlog tasks for implementation ☐ Create backlog tasks for implementation
✔ Document the matcher design paths in `development/` — union vs overload merge, inferred universe (`NoInfer`), conditional `RequireKeys`, cases-first — and why each was abandoned @done
☐ Validate code fences in Markdown (start with README.md) — compile the TypeScript examples against `src/` so the docs cannot drift from the API ☐ Validate code fences in Markdown (start with README.md) — compile the TypeScript examples against `src/` so the docs cannot drift from the API
Workflow:
✔ Resolve the finish/push tension: `create:finish` leaves `main` ahead of its upstream while `create:branch` refuses until `main` matches upstream — decide whether `finish` should push or `branch` should compare only `BEHIND` (see development/workflow.md) @done
Maintenance: Maintenance:
☐ Serve CI coverage over a tiny self-hosted webserver (replace the zip artifact) @low ☐ Serve CI coverage over a tiny self-hosted webserver (replace the zip artifact) @low
☐ Explore serving coverage for non-tag pushes (e.g. `main/coverage`, PR previews) @low ☐ Explore serving coverage for non-tag pushes (e.g. `main/coverage`, PR previews) @low
@@ -102,3 +44,4 @@ Maintenance:
☐ Add a minimal dir-listing webserver to the gitea docker setup for serving landing page (reuse existing reverse proxy) ☐ Add a minimal dir-listing webserver to the gitea docker setup for serving landing page (reuse existing reverse proxy)
☐ CI writes landing page to a shared volume keyed by project + tag (e.g. `/landing/tiny-pattern-ts/<tag>/`) ☐ CI writes landing page to a shared volume keyed by project + tag (e.g. `/landing/tiny-pattern-ts/<tag>/`)
☐ Browse to `…/tiny-pattern-ts/index.html` in the browser ☐ Browse to `…/tiny-pattern-ts/index.html` in the browser
☐ Add testing with TypeScript 5.0 baseline in CI
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@@ -43,7 +43,9 @@
"silverwind", "silverwind",
"idris", "idris",
"todotasks", "todotasks",
"connor" "connor",
"injective",
"injectivity"
], ],
"ignorePaths": ["dist", "node_modules", "coverage", "*.svg", ".gitignore"] "ignorePaths": ["dist", "node_modules", "coverage", "*.svg", ".gitignore"]
} }
+33
View File
@@ -97,6 +97,39 @@ Leave `act_runner`'s `force_pull` disabled.
(`docker rmi gitea.e1nsnull.de/tmu/act-ci:<version>`); do not reach for (`docker rmi gitea.e1nsnull.de/tmu/act-ci:<version>`); do not reach for
force-pull. force-pull.
## Coverage threshold
#### Decision (2026-09)
`npm run test:ci` fails below 100% statements / branches / functions / lines
across `src/**/*.ts` (`c8 --all --include "src/**/*.ts" --100`). The gate rides
the `build` job; `npm run verify` stays coverage-free.
#### Why
- The types are the feature, so an untested branch is a hole in the contract,
not a metric to trade off; 100% is the only threshold that means "no hole".
- `--all` counts a `src/` file no test imports. Without it c8 reports only the
files the suite happened to load, so a new untested module is invisible and
the threshold passes vacuously.
- The gate rides `test:ci`, which `build` already runs — no new job or step.
- `verify` stays fast and local; the slower coverage run is a CI-only tier (see
[workflow.md § Feedback tiers](./workflow.md#feedback-tiers)).
#### Rejected
- Per-file thresholds: a global 100% already forces every counted file to 100%.
- A `check:coverage` script: it would re-run the suite or read c8's temp dir,
and no `check:*` script runs tests.
- `--all` without `--include`: it would also sweep `scripts/`, which is not the
shipped surface.
#### Known issue
- `src/matcher-shared.ts` is types only, so its runtime image is empty; c8 still
lists it under `--all`. It carries a file-level `/* c8 ignore start */` with
the reason. Adding runtime code there means removing that directive.
## Coverage serving ## Coverage serving
#### Decision (2026-09) #### Decision (2026-09)
+106 -24
View File
@@ -97,9 +97,11 @@ Each factory is two overloads whose order is load-bearing:
#### Decision (2026-09) #### Decision (2026-09)
`src/matcher-shared.ts` holds the seven universe-agnostic pieces both matchers `src/matcher-shared.ts` holds the universe-agnostic pieces both matchers use:
use: `UnaryFn`, `PatternReturns`, `RedundantFallback`, `HandlerMap`, the shared `UnaryFn`, `PatternReturns`, `RedundantFallback`, `HandlerMap`, the shared
`Matchable` universe, and the `PatternKey` / `PatternParam` key projection. `Matchable` universe, the `PatternKey` key projection and its `Member` inverse,
and the `Stringified` / `Collisions` / `UnsupportedReason` / `UnsupportedUniverse`
/ `UniverseGate` universe gate.
#### Why #### Why
@@ -118,8 +120,71 @@ use: `UnaryFn`, `PatternReturns`, `RedundantFallback`, `HandlerMap`, the shared
`Fallback` and `MustBePartial`.** Each is built from its own universe `Fallback` and `MustBePartial`.** Each is built from its own universe
(`Tags`/`MapTaggedUnion` vs the primitive values); abstracting over the (`Tags`/`MapTaggedUnion` vs the primitive values); abstracting over the
F-bounded `Handled` constraint that makes the remainder work risks the F-bounded `Handled` constraint that makes the remainder work risks the
contextual typing it exists to preserve. `Matchable` and the `PatternKey` / contextual typing it exists to preserve. `Matchable`, the `PatternKey` /
`PatternParam` projection are the pieces both universes genuinely share. `Member` projection and the `UniverseGate` are the pieces both universes
genuinely share.
## Supported universes
#### Decision (2026-09)
A universe must be a **finite union of literals** with **no
value/stringification collision**. Broad types (`string`, `number`, a template
literal) and `"true" | true` / `1 | "1"` are rejected; the factory intersects
`UniverseGate<T>` (the `UnsupportedUniverse<Reason>` diagnostic) into the
handler and fallback parameters. `Member<T, K>` replaces the `PatternParam<K>`
inversion: the handler parameter is the member(s) of `T` whose `PatternKey` is
`K`, so a standalone `"true"` is `"true"`, not `true`.
#### Why
- **`PatternKey` is not injective.** `"true"` and `true` (and `1` / `"1"`)
share a runtime key, so `PatternParam<K>` cannot recover the member.
`Member<T, K>` inverts against `T`, which is exact.
- **Broad types cannot be proven exhaustive.** An index-like map lets a partial
object satisfy the exhaustive overload and reaches the `dispatch` throw.
Rejecting at the boundary avoids threading an open/closed branch through
`Handlers`, `Fallback` and `MustBePartial`.
- **The finite-literal predicate is `IsLiteral<PatternKey<T>> extends true`.**
`IsLiteral` is `boolean` for a union that mixes a literal with a broad type
(`"a" | \`x-${number}\``), so `extends false`would treat the mix as
supported;`extends true` is the check that rejects it.
- **Collisions are rejected, not merged.** `Member<T, K>` would be sound (the
handler gets the union), but the API is one handler per member; rejecting
keeps `Member` a singleton and the remainder exact.
- **The collision predicate is type-checkable.** `Collisions<T> =
Extract<T, Stringified<T>>` catches numeric collisions too.
- **The gate is an intersection, not a branch,** so `R` inference and the popup
survive; a conditional parameter type would not.
#### Rejected
- **Open universes with a required fallback** (`fix/open-universe-*`): sound,
but left the collision hole and added an `IsLiteral` /
`OpenUniverseNeedsFallback` branch through every handler type. Findings, kept
so they are not re-run: `{}` satisfies an index signature (and `Exact` misses
it); an index signature dominates contextual typing; `R` infers only from a
non-self-referential parameter type (`{ [K in keyof H]: … R … }` gives
`unknown`); an F-bounded guard referencing `keyof Handled` in `Handled`'s own
constraint sees the constraint, not the map; all handlers share one `R` (only
the fallback widens it); `IsLiteral` is the finite-literal predicate. The
user-facing consequence — open universes are a parsing or registry concern,
not a dispatch one — is guidance in README § Why open universes are rejected.
- **`Member<T, K>` without the gate:** sound, but a colliding handler gets a
union and `1 | "1"` stays one runtime key.
- **A round-trip injectivity gate** (`IsEqual<T, PatternParam<PatternKey<T>>>`):
over-rejects standalone `"true"` / `"false"` / `"null"` / `"undefined"`.
- **A case-list / ts-pattern builder:** removes the collision class but drops
the object map (footprint, popup) and reimplements an existing library.
- **Normalize numeric keys to strings:** makes `PatternKey` injective but
changes "numeric keys stay numbers" and defeats the numeric dispatch fast
path.
#### Known issue
- A multi-collision universe lists every collision in the diagnostic.
- The `dispatch` throw is unreachable through the typed API; the throw tests
widen the factory to `Function` to reach it.
## Tagged-union matcher ## Tagged-union matcher
@@ -149,28 +214,44 @@ The key is a separate call because `K` is inferred from its literal argument and
#### Why #### Why
- **Same fallback/remainder machinery as the primitive-union matcher.** `HandledMembers` - **Same fallback/remainder machinery as the primitive-union matcher.** `HandledTags`
maps the handled tags to their members and `Exclude<T, …>` is the fallback's recovers the tag values the map handled (`Member<Tags, keyof Handled>`) and
parameter; the redundant-fallback guard is the same F-bounded constraint. Only `Narrowed<T, K, Exclude<Tags, …>>` is the fallback's parameter; the
the "universe" changes — `T`'s members instead of primitive values. redundant-fallback guard is the same F-bounded constraint. Only the "universe"
changes — `T`'s members instead of primitive values.
- **`T extends object`, not `Record<PropertyKey, unknown>`.** An `interface` has - **`T extends object`, not `Record<PropertyKey, unknown>`.** An `interface` has
no implicit index signature, so the `Record` constraint would reject no implicit index signature, so the `Record` constraint would reject
interface-based unions. The runtime reads the tag off `object` with one interface-based unions. The runtime reads the tag off `object` with one
assertion, the tagged twin of the primitive-union dispatch's `shape as string | number`. assertion, the tagged twin of the primitive-union dispatch's `shape as string | number`.
- **`MapTaggedUnion` distributes with `Extract`.** A duplicated tag yields a - **`Narrowed` distributes over `T`, narrowing `K` to the tag.** A member whose
union of members instead of dropping one. `K` cannot take the tag drops out; a duplicated tag yields a union of members
instead of dropping one. `T[K] extends V` returns the exact member (a
discriminated union's declared interface) untouched, so the mapped form only
handles a property that is itself a union.
- **A union-valued or optional discriminant is supported.** A single shape whose
property is a union (`{ color: "red" | "green" | "blue" }`) is narrowed per
handler instead of being passed `never`. Matching a defined tag on an optional
property (`{ type?: "x" }`) proves the key is present, so it becomes required
(`{ type: "x" }`); the `undefined` tag narrows it to `{ type?: never }` under
`exactOptionalPropertyTypes` (absence) or `{ type?: undefined }` when the
property explicitly admits `undefined`.
- **A `boolean` / `null` / `undefined` tag goes through the shared - **A `boolean` / `null` / `undefined` tag goes through the shared
`PatternKey` / `PatternParam` projection.** `Discriminated` admits those tags `PatternKey` / `Member` projection.** `Discriminated` admits those tags
(they are in `Tag`), but they cannot key a mapped type, so the handler map is (they are in `Tag`), but they cannot key a mapped type, so the handler map is
keyed by the stringified form (`true` → `"true"`) and `PatternParam` inverts keyed by the stringified form (`true` → `"true"`) and `Member` inverts it
it to recover the member. This is the same projection the primitive-union against the tag set to recover the member. This is the same projection the
matcher uses over its universe, which is why it lives in `matcher-shared.ts`. primitive-union matcher uses over its universe, which is why it lives in
`matcher-shared.ts`.
#### Known issue #### Known issue
- A member's tag must be unique across the union; two members with the same tag - A tag need not be unique across the union. Two members sharing one is not a
collapse to a union under one handler. The same holds for a tag colliding with soundness hole: they select a single runtime key, so one handler receiving
its stringification (`true | "true"`) — see [README § Caveats](../README.md#caveats). their union is the only correct behavior — the key is simply not a
discriminant. The gate rejects only the distinct-value collision
(`true | "true"`), where two values share a key and `Member` can no longer
invert it; see § Supported universes. Pinned by the duplicate-tag tests in
`src/tagged-union.test.ts`.
## Primitive universe ## Primitive universe
@@ -180,11 +261,12 @@ The universe (`Matchable`) is `string | number | boolean | null | undefined`,
with `boolean` admitted as `true | false`. with `boolean` admitted as `true | false`.
`boolean`/`null`/`undefined` are not property keys, so handler-map keys are a `boolean`/`null`/`undefined` are not property keys, so handler-map keys are a
projection (`PatternKey`: each member stringified) and `PatternParam` inverts projection (`PatternKey`: each member stringified) and `Member` inverts it
it, so callbacks receive the real member (`true`, not `"true"`). The popup against the universe, so callbacks receive the real member (`true`, not
offers `true`, `false`, `null`, `undefined` by name (verified over LSP). The `"true"`; the standalone string `"true"` stays `"true"`). The popup offers
same projection is shared with the tagged-union matcher; see `true`, `false`, `null`, `undefined` by name (verified over LSP). The same
§ Tagged-union matcher. projection is shared with the tagged-union matcher; see § Tagged-union matcher.
The supported universes are constrained as described in § Supported universes.
#### Why #### Why
@@ -194,5 +276,5 @@ same projection is shared with the tagged-union matcher; see
`String()` defeats V8's numeric-key path: measured ~2× on number-keyed `String()` defeats V8's numeric-key path: measured ~2× on number-keyed
dispatch). dispatch).
- `symbol`/`bigint`/`NaN`/`-0` are rejected, and a member colliding with its - `symbol`/`bigint`/`NaN`/`-0` are rejected, and a member colliding with its
stringification is unguarded: user-facing, stated once in stringification is rejected by the gate: user-facing, stated once in
[README § Caveats](../README.md#caveats). [README § Caveats](../README.md#caveats).
+7 -1
View File
@@ -35,7 +35,8 @@ in
[CONTRIBUTING.md § Development commands](../CONTRIBUTING.md#development-commands). [CONTRIBUTING.md § Development commands](../CONTRIBUTING.md#development-commands).
`c8` uses V8 coverage, so the `--strip-types` source is instrumented without a `c8` uses V8 coverage, so the `--strip-types` source is instrumented without a
build step, and the runner relies on the `.ts` import-extension convention (see build step, and the runner relies on the `.ts` import-extension convention (see
[tooling.md](./tooling.md#source-imports-use-ts-extensions)). [tooling.md](./tooling.md#source-imports-use-ts-extensions)). CI gates that
coverage at 100% (see [ci.md § Coverage threshold](./ci.md#coverage-threshold)).
## Handler arguments ## Handler arguments
@@ -198,6 +199,11 @@ the CLI is for manual inspection.
delay is needed. delay is needed.
- The server answers some requests with a string id (`client/registerCapability`); - The server answers some requests with a string id (`client/registerCapability`);
the client must tolerate `string | number` ids or the server stalls. the client must tolerate `string | number` ids or the server stalls.
- `LspSession.close()` sends `shutdown` and then closes stdin instead of
sending `exit`. The TS 7 Go server's `handleExit` returns `io.EOF`, cancelling
the background context while a watch update is still in flight, and logs a
bare `context canceled` before exiting 1; EOF on stdin exits 0 with no output.
The kill stays as a fallback for a server that does not exit.
## Known issues ## Known issues
+22
View File
@@ -196,6 +196,28 @@ joining the oxfmt-superseded rules already off.
are part of the public API. are part of the public API.
- The narrower scope keeps the signal high without config-file boilerplate. - The narrower scope keeps the signal high without config-file boilerplate.
### `knip` lists `src/index.ts` as an entry
#### Decision (2026-09)
`knip.json` declares `"entry": ["src/index.ts", "scripts/*.ts"]`.
#### Why
- Supplying `entry` **replaces** knip's default entry detection, which otherwise
derives the public entry from `package.json` `exports`. Adding `scripts/*.ts`
there therefore dropped the library entry, so knip resolved the package through
its `dist/index.js` output and reported the unreferenced source entry file
`src/index.ts` as an unused file.
- Naming the source entry restores the link between the public API and the
source graph without pointing knip at build output.
#### Rejected
- `paths` mapping `dist/index.*` back to `src/index.ts`: more config to model a
relation the explicit entry states directly, and it would break whenever the
build layout changes.
### `maintain:outdated` ignores `@types/node` ### `maintain:outdated` ignores `@types/node`
#### Decision (2026-09) #### Decision (2026-09)
+1 -1
View File
@@ -1,5 +1,5 @@
{ {
"$schema": "./node_modules/knip/schema.json", "$schema": "./node_modules/knip/schema.json",
"entry": ["scripts/*.ts"], "entry": ["src/index.ts", "scripts/*.ts"],
"ignoreDependencies": ["@runwisp/pubv"] "ignoreDependencies": ["@runwisp/pubv"]
} }
+424 -424
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File diff suppressed because it is too large. Load diff
+3 -3
View File
@@ -1,6 +1,6 @@
{ {
"name": "tiny-pattern-ts", "name": "tiny-pattern-ts",
"version": "0.6.0", "version": "0.8.1",
"description": "Pattern matching for TypeScript/ESM environments (F#-style, not regex)", "description": "Pattern matching for TypeScript/ESM environments (F#-style, not regex)",
"keywords": [ "keywords": [
"adt", "adt",
@@ -58,7 +58,7 @@
"maintain:knip": "knip --include dependencies,exports,files", "maintain:knip": "knip --include dependencies,exports,files",
"maintain:outdated": "check-outdated --ignore-pre-releases --ignore-packages @types/node", "maintain:outdated": "check-outdated --ignore-pre-releases --ignore-packages @types/node",
"test": "npm run check:tsc && node --test --strip-types \"src/**/*.test.ts\"", "test": "npm run check:tsc && node --test --strip-types \"src/**/*.test.ts\"",
"test:ci": "c8 --reporter=text --reporter=lcov --reporter=html node --test --strip-types \"src/**/*.test.ts\"", "test:ci": "c8 --all --include \"src/**/*.ts\" --reporter=text --reporter=lcov --reporter=html --100 node --test --strip-types \"src/**/*.test.ts\"",
"test:unit": "node --test --strip-types \"src/**/*.test.ts\"", "test:unit": "node --test --strip-types \"src/**/*.test.ts\"",
"verify": "npm run check && npm run test:unit", "verify": "npm run check && npm run test:unit",
"watch": "npm run watch:test", "watch": "npm run watch:test",
@@ -83,7 +83,7 @@
"expect-type": "1.4.0", "expect-type": "1.4.0",
"knip": "^6.34.0", "knip": "^6.34.0",
"lefthook": "^2.1.12", "lefthook": "^2.1.12",
"oxfmt": "^0.68.0", "oxfmt": "^0.70.0",
"oxlint": "^1.83.0", "oxlint": "^1.83.0",
"oxlint-tsgolint": "^7.0.2001", "oxlint-tsgolint": "^7.0.2001",
"publint": "^0.3.24", "publint": "^0.3.24",
+27
View File
@@ -0,0 +1,27 @@
import { strict as assert } from "node:assert";
import { test } from "node:test";
import { expectTypeOf } from "expect-type";
import {
getPrimitiveUnionMatcher,
getPrimitiveUnionMatcherW,
getTaggedUnionMatcher,
getTaggedUnionMatcherW,
} from "./index.ts";
// The published entry point is the barrel (`package.json` exports
// `./dist/index.js`), so every factory must be reachable from here. Importing it
// also loads the module, which is what lets c8's `--all` measure it — see
// development/ci.md § Coverage threshold.
test("index: the public entry point re-exports every matcher factory", () => {
// Assert
expectTypeOf(getPrimitiveUnionMatcher).toBeFunction();
assert.equal(typeof getPrimitiveUnionMatcher, "function");
expectTypeOf(getPrimitiveUnionMatcherW).toBeFunction();
assert.equal(typeof getPrimitiveUnionMatcherW, "function");
expectTypeOf(getTaggedUnionMatcher).toBeFunction();
assert.equal(typeof getTaggedUnionMatcher, "function");
expectTypeOf(getTaggedUnionMatcherW).toBeFunction();
assert.equal(typeof getTaggedUnionMatcherW, "function");
});
+57 -15
View File
@@ -1,4 +1,5 @@
import type { ValueOf } from "type-fest"; /* c8 ignore start -- types only: the module has no runtime image to cover */
import type { IsLiteral, IsNever, ValueOf } from "type-fest";
// The primitive-union and tagged-union matchers differ in their universe, but the // The primitive-union and tagged-union matchers differ in their universe, but the
// handler/fallback plumbing is identical; these are the shared pieces. The // handler/fallback plumbing is identical; these are the shared pieces. The
@@ -16,11 +17,11 @@ export type Matchable = string | number | boolean | null | undefined;
// `boolean`, `null` and `undefined` cannot be property keys, so a mapped type // `boolean`, `null` and `undefined` cannot be property keys, so a mapped type
// over a universe that includes one keys each such member by its // over a universe that includes one keys each such member by its
// stringification. `PatternParam` inverts that projection, so a handler callback // stringification. `Member` inverts that projection against the universe, so a
// still receives the *real* member (`true`, not `"true"`). Both matchers use the // handler callback still receives the *real* member (`true`, not `"true"`).
// projection: the primitive-union matcher over its universe, the tagged-union // Both matchers use the projection: the primitive-union matcher over its
// matcher over a discriminant property's values. See README § Caveats for the // universe, the tagged-union matcher over a discriminant property's values. See
// limits. // README § Caveats for the limits.
export type PatternKey<T> = T extends boolean export type PatternKey<T> = T extends boolean
? T extends true ? T extends true
? "true" ? "true"
@@ -30,15 +31,56 @@ export type PatternKey<T> = T extends boolean
: T extends undefined : T extends undefined
? "undefined" ? "undefined"
: T; : T;
export type PatternParam<K> = K extends "true"
? true // The member(s) of `T` whose `PatternKey` is `K`: the universe-keyed inverse of
: K extends "false" // `PatternKey`. The key alone cannot recover the member (`"true"` and `true`
? false // share it), so the handler parameter is derived from `T` instead. For a
: K extends "null" // supported (injective) universe the result is a single member.
? null export type Member<
: K extends "undefined" T extends Matchable,
? undefined K extends PropertyKey,
: K; > = T extends Matchable ? (PatternKey<T> extends K ? T : never) : never;
// The property key a `Matchable` member takes at runtime: booleans, `null` and
// `undefined` stringify, and a numeric literal becomes its decimal string.
export type Stringified<T> = T extends boolean
? T extends true
? "true"
: "false"
: T extends null
? "null"
: T extends undefined
? "undefined"
: T extends number
? `${T}`
: never;
// The members of `T` that are also the stringification of another member, so
// `PatternKey` cannot invert them. `never` means the universe is injective.
export type Collisions<T> = Extract<T, Stringified<T>>;
// Why `T` is not a supported universe, or `never` when it is. A supported
// universe is a finite union of literals with no value/stringification
// collision: only then can `PatternKey` be inverted unambiguously.
export type UnsupportedReason<T extends Matchable> =
IsLiteral<PatternKey<T>> extends true
? [Collisions<T>] extends [never]
? never
: `a value and its stringification collide. Value is "${Collisions<T> & string}"`
: "broad types like string, number and template literals are not supported";
// The diagnostic for an unsupported universe. Extends `HandlerMap` so the
// implementation's `handlers: HandlerMap` stays assignable when the gate is
// intersected into a parameter; the property name is the message.
export type UnsupportedUniverse<Reason extends string> = HandlerMap &
Readonly<Record<`unsupported universe: ${Reason}`, never>>;
// `unknown` for a supported universe (an intersection no-op), the diagnostic
// otherwise. Intersecting rather than branching keeps `R` inference intact.
export type UniverseGate<T extends Matchable> =
IsNever<UnsupportedReason<T>> extends true
? unknown
: UnsupportedUniverse<UnsupportedReason<T>>;
// `Extract` drops optional handlers (`undefined`) so `PatternReturns` also works // `Extract` drops optional handlers (`undefined`) so `PatternReturns` also works
// when `P`'s constraint has optional keys. // when `P`'s constraint has optional keys.
+393 -32
View File
@@ -495,26 +495,394 @@ test("getPrimitiveUnionMatcher factory rejects non-exhaustive boolean and nullis
); );
}); });
test("getPrimitiveUnionMatcher: an open universe keeps the fallback's remainder open", () => { test("getPrimitiveUnionMatcher: a standalone stringified literal is typed by the member, not its key", () => {
// `"true"` is a string member whose `PatternKey` is `"true"`; inverting the
// key must recover the string, not the boolean that also stringifies to it.
// Arrange // Arrange
const factory = getPrimitiveUnionMatcher<string>(); const factory = getPrimitiveUnionMatcher<"true" | "1">();
// Act // Act
const matcher = factory({ a: () => 1 }, (s) => { const matcher = factory({
// The map's literal keys do not close an open universe, so the true: (s) => {
// remainder stays `string` and the fallback is not redundant. expectTypeOf(s).toEqualTypeOf<"true">();
expectTypeOf(s).toEqualTypeOf<string>(); assert.equal(s, "true");
// A strict pattern fixes one `R` for every handler, so this fallback return 1;
// cannot return its shape; `typeof` is the strongest claim the value },
// makes on its own — any string passes, including `""`. "1": (s) => {
assert.equal(typeof s, "string"); expectTypeOf(s).toEqualTypeOf<"1">();
return 2 as const; assert.equal(s, "1");
return 2;
},
}); });
// Assert // Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: string) => number>(); assert.equal(matcher("true"), 1);
assert.equal(matcher("a"), 1); assert.equal(matcher("1"), 2);
assert.equal(matcher("b"), 2); });
test("getPrimitiveUnionMatcher: a broad universe is rejected", () => {
// Act / Assert — the calls below must not compile
// @ts-expect-error `string` is not a finite union of literals
getPrimitiveUnionMatcher<string>()({ a: () => 1 });
// @ts-expect-error `number` is not a finite union of literals
getPrimitiveUnionMatcher<number>()({ 1: () => 1 });
// @ts-expect-error a template literal is open
getPrimitiveUnionMatcher<`a${string}`>()({ a: () => 1 });
// @ts-expect-error a literal mixed with a template literal is open
getPrimitiveUnionMatcher<"a" | `x-${number}`>()({ a: () => 1 });
// @ts-expect-error `string | boolean` is open because of `string`
getPrimitiveUnionMatcher<string | boolean>()({ true: () => 1 });
// @ts-expect-error the widening factory rejects broad universes too
getPrimitiveUnionMatcherW<string>()({ a: () => 1 });
});
test("getPrimitiveUnionMatcher: a value/stringification collision is rejected", () => {
// Act / Assert — the calls below must not compile
// @ts-expect-error `true` collides with the string `"true"`
getPrimitiveUnionMatcher<"true" | true>()({ true: () => 1 });
// @ts-expect-error `false` collides with the string `"false"`
getPrimitiveUnionMatcher<"false" | false>()({ false: () => 1 });
// @ts-expect-error `null` collides with the string `"null"`
getPrimitiveUnionMatcher<"null" | null>()({ null: () => 1 });
// @ts-expect-error `undefined` collides with the string `"undefined"`
getPrimitiveUnionMatcher<"undefined" | undefined>()({
undefined: () => 1,
});
// @ts-expect-error the number `1` collides with the string `"1"`
getPrimitiveUnionMatcher<1 | "1">()({ 1: () => 1 });
});
test("getPrimitiveUnionMatcher: a collision is rejected beside legal members", () => {
// Act / Assert — the calls below must not compile; the legal members do not
// mask the collision. Each map is otherwise complete, so only the collision
// can make it invalid.
// @ts-expect-error `true` collides with `"true"` beside legal members
getPrimitiveUnionMatcher<"true" | true | "a" | 2>()({
true: () => 1,
a: () => 2,
2: () => 3,
});
// @ts-expect-error `false` collides with `"false"` beside legal members
getPrimitiveUnionMatcher<"false" | false | "a" | 2>()({
false: () => 1,
a: () => 2,
2: () => 3,
});
// @ts-expect-error `null` collides with `"null"` beside legal members
getPrimitiveUnionMatcher<"null" | null | "a" | 2>()({
null: () => 1,
a: () => 2,
2: () => 3,
});
// @ts-expect-error `undefined` collides with `"undefined"` beside legal members
getPrimitiveUnionMatcher<"undefined" | undefined | "a" | 2>()({
undefined: () => 1,
a: () => 2,
2: () => 3,
});
// @ts-expect-error `1` collides with `"1"` beside legal members
getPrimitiveUnionMatcher<1 | "1" | "a" | true>()({
1: () => 1,
a: () => 2,
true: () => 3,
});
});
test('getPrimitiveUnionMatcher: `"true"` and a bare `false` are legal together', () => {
// Arrange — `false` stringifies to `"false"`, so it does not collide with
// the string member `"true"`.
const factory = getPrimitiveUnionMatcher<"true" | false | "a" | 2>();
// Act
const matcher = factory({
true: (s) => {
expectTypeOf(s).toEqualTypeOf<"true">();
assert.equal(s, "true");
return 1;
},
false: (s) => {
expectTypeOf(s).toEqualTypeOf<false>();
assert.equal(s, false);
return 2;
},
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
assert.equal(s, "a");
return 3;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 4;
},
});
// Assert
assert.equal(matcher("true"), 1);
assert.equal(matcher(false), 2);
assert.equal(matcher("a"), 3);
assert.equal(matcher(2), 4);
});
test('getPrimitiveUnionMatcher: `"false"` and a bare `true` are legal together', () => {
// Arrange — `true` stringifies to `"true"`, not `"false"`.
const factory = getPrimitiveUnionMatcher<"false" | true | "a" | 2>();
// Act
const matcher = factory({
false: (s) => {
expectTypeOf(s).toEqualTypeOf<"false">();
assert.equal(s, "false");
return 1;
},
true: (s) => {
expectTypeOf(s).toEqualTypeOf<true>();
assert.equal(s, true);
return 2;
},
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
assert.equal(s, "a");
return 3;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 4;
},
});
// Assert
assert.equal(matcher("false"), 1);
assert.equal(matcher(true), 2);
assert.equal(matcher("a"), 3);
assert.equal(matcher(2), 4);
});
test('getPrimitiveUnionMatcher: `"null"` and a bare `undefined` are legal together', () => {
// Arrange — `undefined` stringifies to `"undefined"`, not `"null"`.
const factory = getPrimitiveUnionMatcher<"null" | undefined | "a" | 2>();
// Act
const matcher = factory({
null: (s) => {
expectTypeOf(s).toEqualTypeOf<"null">();
assert.equal(s, "null");
return 1;
},
undefined: (s) => {
expectTypeOf(s).toEqualTypeOf<undefined>();
assert.equal(s, undefined);
return 2;
},
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
assert.equal(s, "a");
return 3;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 4;
},
});
// Assert
assert.equal(matcher("null"), 1);
assert.equal(matcher(undefined), 2);
assert.equal(matcher("a"), 3);
assert.equal(matcher(2), 4);
});
test('getPrimitiveUnionMatcher: `"undefined"` and a bare `null` are legal together', () => {
// Arrange — `null` stringifies to `"null"`, not `"undefined"`.
const factory = getPrimitiveUnionMatcher<"undefined" | null | "a" | 2>();
// Act
const matcher = factory({
undefined: (s) => {
expectTypeOf(s).toEqualTypeOf<"undefined">();
assert.equal(s, "undefined");
return 1;
},
null: (s) => {
expectTypeOf(s).toEqualTypeOf<null>();
assert.equal(s, null);
return 2;
},
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
assert.equal(s, "a");
return 3;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 4;
},
});
// Assert
assert.equal(matcher("undefined"), 1);
assert.equal(matcher(null), 2);
assert.equal(matcher("a"), 3);
assert.equal(matcher(2), 4);
});
test('getPrimitiveUnionMatcher: `"1"` beside other numbers and strings is legal', () => {
// Arrange — the task's example: `"1"` is the string member, `2` and `3`
// are bare numbers, `"4"` is another string. No stringification lands on
// another member.
const factory = getPrimitiveUnionMatcher<"1" | 2 | 3 | "4">();
// Act
const matcher = factory({
"1": (s) => {
expectTypeOf(s).toEqualTypeOf<"1">();
assert.equal(s, "1");
return 1;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 2;
},
3: (s) => {
expectTypeOf(s).toEqualTypeOf<3>();
assert.equal(s, 3);
return 3;
},
"4": (s) => {
expectTypeOf(s).toEqualTypeOf<"4">();
assert.equal(s, "4");
return 4;
},
});
// Assert
assert.equal(matcher("1"), 1);
assert.equal(matcher(2), 2);
assert.equal(matcher(3), 3);
assert.equal(matcher("4"), 4);
});
// The maximum legal universe needs one handler per member; the statement count
// is inherent to the case.
// oxlint-disable-next-line max-statements
test("getPrimitiveUnionMatcher: the maximum legal universe is supported", () => {
// Arrange — every Matchable kind, one representation per value, plus extra
// literals. No member's stringification is another member.
type Legal =
| "true"
| false
| null
| undefined
| "1"
| 2
| 3
| "a"
| "b"
| "4";
const factory = getPrimitiveUnionMatcher<Legal>();
// Act
const matcher = factory({
true: (s) => {
expectTypeOf(s).toEqualTypeOf<"true">();
assert.equal(s, "true");
return 1;
},
false: (s) => {
expectTypeOf(s).toEqualTypeOf<false>();
assert.equal(s, false);
return 2;
},
null: (s) => {
expectTypeOf(s).toEqualTypeOf<null>();
assert.equal(s, null);
return 3;
},
undefined: (s) => {
expectTypeOf(s).toEqualTypeOf<undefined>();
assert.equal(s, undefined);
return 4;
},
"1": (s) => {
expectTypeOf(s).toEqualTypeOf<"1">();
assert.equal(s, "1");
return 5;
},
2: (s) => {
expectTypeOf(s).toEqualTypeOf<2>();
assert.equal(s, 2);
return 6;
},
3: (s) => {
expectTypeOf(s).toEqualTypeOf<3>();
assert.equal(s, 3);
return 7;
},
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
assert.equal(s, "a");
return 8;
},
b: (s) => {
expectTypeOf(s).toEqualTypeOf<"b">();
assert.equal(s, "b");
return 9;
},
"4": (s) => {
expectTypeOf(s).toEqualTypeOf<"4">();
assert.equal(s, "4");
return 10;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: Legal) => number>();
assert.equal(matcher("true"), 1);
assert.equal(matcher(false), 2);
assert.equal(matcher(null), 3);
assert.equal(matcher(undefined), 4);
assert.equal(matcher("1"), 5);
assert.equal(matcher(2), 6);
assert.equal(matcher(3), 7);
assert.equal(matcher("a"), 8);
assert.equal(matcher("b"), 9);
assert.equal(matcher("4"), 10);
});
test("getPrimitiveUnionMatcher: the maximum illegal universe is rejected", () => {
// Arrange — every value paired with its stringification.
type Illegal =
| "true"
| true
| "false"
| false
| "null"
| null
| "undefined"
| undefined
| "1"
| 1;
// Act / Assert — the call below must not compile
// @ts-expect-error every value collides with its stringification
getPrimitiveUnionMatcher<Illegal>()({
true: () => 1,
false: () => 2,
null: () => 3,
undefined: () => 4,
"1": () => 5,
});
});
test("getPrimitiveUnionMatcher: an open universe is rejected with a fallback too", () => {
// Act / Assert — the call below must not compile; a broad universe is
// unsupported whether or not a fallback is supplied.
// @ts-expect-error `string` is not a finite union of literals
getPrimitiveUnionMatcher<string>()({ a: () => 1 }, () => 2);
}); });
test("getPrimitiveUnionMatcherW factory rejects patterns outside its contract", () => { test("getPrimitiveUnionMatcherW factory rejects patterns outside its contract", () => {
@@ -539,16 +907,11 @@ test("getPrimitiveUnionMatcherW factory rejects patterns outside its contract",
// ============================================================================ // ============================================================================
test("getPrimitiveUnionMatcher: an unhandled shape throws without a fallback", () => { test("getPrimitiveUnionMatcher: an unhandled shape throws without a fallback", () => {
// Arrange — an open universe types its handler map as an index signature, // Arrange — a finite universe is exhaustive through the typed API, so the
// so the type system cannot prove the runtime map is exhaustive. // defensive throw is reachable only by widening the factory and dropping a
const handlers: Record<string, (shape: unknown) => number> = { // handler.
a: (shape) => { const bypass: Function = getPrimitiveUnionMatcher<"a" | "b">();
// The raw shape reaches the handler, not the property key's text. const matcher: (shape: "a" | "b") => number = bypass({ a: () => 1 });
assert.equal(shape, "a");
return 1;
},
};
const matcher = getPrimitiveUnionMatcher<string>()(handlers);
// Act / Assert // Act / Assert
assert.equal(matcher("a"), 1); assert.equal(matcher("a"), 1);
@@ -556,17 +919,15 @@ test("getPrimitiveUnionMatcher: an unhandled shape throws without a fallback", (
}); });
test("getPrimitiveUnionMatcher: an unhandled boolean shape throws without a fallback", () => { test("getPrimitiveUnionMatcher: an unhandled boolean shape throws without a fallback", () => {
// Arrange — an `string | boolean` universe widens its handler map to an // Arrange — as above; `true` indexes the map as the property `"true"`, but
// index signature, so the runtime map's exhaustiveness is not provable. // the handler is still called with the boolean.
const handlers: Record<string, (shape: unknown) => number> = { const bypass: Function = getPrimitiveUnionMatcher<true | false>();
true: (shape) => { const matcher: (shape: boolean) => number = bypass({
// `true` indexes the map as the property `"true"`, but the handler true: (shape: boolean) => {
// is still called with the boolean.
assert.equal(shape, true); assert.equal(shape, true);
return 1; return 1;
}, },
}; });
const matcher = getPrimitiveUnionMatcher<string | boolean>()(handlers);
// Act / Assert // Act / Assert
assert.equal(matcher(true), 1); assert.equal(matcher(true), 1);
+11 -10
View File
@@ -3,25 +3,26 @@ import type { Exact } from "type-fest";
import type { import type {
HandlerMap, HandlerMap,
Matchable, Matchable,
Member,
PatternKey, PatternKey,
PatternParam,
PatternReturns, PatternReturns,
RedundantFallback, RedundantFallback,
UnaryFn, UnaryFn,
UniverseGate,
} from "./matcher-shared.ts"; } from "./matcher-shared.ts";
type Handlers<T extends Matchable, R> = { type Handlers<T extends Matchable, R> = {
[K in PatternKey<T>]: UnaryFn<PatternParam<K>, R>; [K in PatternKey<T>]: UnaryFn<Member<T, K>, R>;
}; };
// The fallback is a *second argument*, not a property of the handler map, // The fallback is a *second argument*, not a property of the handler map,
// because its parameter is the remainder `Exclude<T, keyof Handled>` and TypeScript // because its parameter is the remainder `Exclude<T, Member<T, keyof Handled>>` and TypeScript
// fixes a property's contextual type before it infers its sibling keys. A later // fixes a property's contextual type before it infers its sibling keys. A later
// argument, by contrast, is contextually typed from inference on an earlier // argument, by contrast, is contextually typed from inference on an earlier
// one, so the split is what makes the remainder expressible at all. // one, so the split is what makes the remainder expressible at all.
// See development/library.md. // See development/library.md.
type Fallback<T extends Matchable, Handled, R> = UnaryFn< type Fallback<T extends Matchable, Handled, R> = UnaryFn<
Exclude<T, PatternParam<keyof Handled>>, Exclude<T, Member<T, keyof Handled>>,
R R
>; >;
@@ -44,14 +45,14 @@ type MustBePartial<T extends Matchable, Handled> =
// #1 Handlers (first) -> the exhaustive form and the autocomplete popup // #1 Handlers (first) -> the exhaustive form and the autocomplete popup
// #2 Fallback (last) -> accepts a partial handler map plus a fallback // #2 Fallback (last) -> accepts a partial handler map plus a fallback
interface PrimitiveUnionMatcherStrict<T extends Matchable> { interface PrimitiveUnionMatcherStrict<T extends Matchable> {
<R>(handlers: Handlers<T, R>): UnaryFn<T, R>; <R>(handlers: Handlers<T, R> & UniverseGate<T>): UnaryFn<T, R>;
< <
R, R,
Handled extends Exact<Partial<Handlers<T, R>>, Handled> & Handled extends Exact<Partial<Handlers<T, R>>, Handled> &
MustBePartial<T, Handled>, MustBePartial<T, Handled>,
>( >(
handlers: Handled & Partial<Handlers<T, R>>, handlers: Handled & Partial<Handlers<T, R>> & UniverseGate<T>,
fallback: Fallback<T, Handled, R>, fallback: Fallback<T, Handled, R> & UniverseGate<T>,
): UnaryFn<T, R>; ): UnaryFn<T, R>;
} }
@@ -60,15 +61,15 @@ interface PrimitiveUnionMatcherStrict<T extends Matchable> {
// contextual/autocomplete type. // contextual/autocomplete type.
interface PrimitiveUnionMatcherWidening<T extends Matchable> { interface PrimitiveUnionMatcherWidening<T extends Matchable> {
<P extends Exact<Handlers<T, unknown>, P>>( <P extends Exact<Handlers<T, unknown>, P>>(
handlers: P, handlers: P & UniverseGate<T>,
): UnaryFn<T, PatternReturns<P>>; ): UnaryFn<T, PatternReturns<P>>;
< <
R, R,
Handled extends Exact<Partial<Handlers<T, unknown>>, Handled> & Handled extends Exact<Partial<Handlers<T, unknown>>, Handled> &
MustBePartial<T, Handled>, MustBePartial<T, Handled>,
>( >(
handlers: Handled, handlers: Handled & UniverseGate<T>,
fallback: Fallback<T, Handled, R>, fallback: Fallback<T, Handled, R> & UniverseGate<T>,
): UnaryFn<T, PatternReturns<Handled> | R>; ): UnaryFn<T, PatternReturns<Handled> | R>;
} }
+991 -25
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+44 -25
View File
@@ -1,13 +1,14 @@
import type { Exact, UnknownRecord } from "type-fest"; import type { Exact, SetRequired, UnknownRecord } from "type-fest";
import type { import type {
HandlerMap, HandlerMap,
Matchable, Matchable,
Member,
PatternKey, PatternKey,
PatternParam,
PatternReturns, PatternReturns,
RedundantFallback, RedundantFallback,
UnaryFn, UnaryFn,
UniverseGate,
} from "./matcher-shared.ts"; } from "./matcher-shared.ts";
// A tagged union is discriminated by one property whose values are the tags (a // A tagged union is discriminated by one property whose values are the tags (a
@@ -17,8 +18,8 @@ import type {
// to write a handler under, and `bigint` is not a property key. // to write a handler under, and `bigint` is not a property key.
// The discriminant values of `T` under `K`. `Extract` keeps the finite literal // The discriminant values of `T` under `K`. `Extract` keeps the finite literal
// tags and leaves a widened `string`/`number` as itself, so an open universe // tags and leaves a widened `string`/`number` as itself; a broad tag is then
// keeps an open fallback. // rejected by the universe gate.
type Tags<T extends object, K extends keyof T> = Extract<T[K], Matchable>; type Tags<T extends object, K extends keyof T> = Extract<T[K], Matchable>;
// The keys of `T` that can act as a discriminant. `getTaggedUnionMatcher<T>()` // The keys of `T` that can act as a discriminant. `getTaggedUnionMatcher<T>()`
@@ -27,33 +28,49 @@ type Discriminated<T extends object> = {
[K in keyof T]: T[K] extends Matchable ? K : never; [K in keyof T]: T[K] extends Matchable ? K : never;
}[keyof T]; }[keyof T];
// The member(s) of `T` tagged `V`. `Extract` distributes over the union, so a // The member(s) of `T` narrowed to the tag(s) `V`. Distributes over `T`, so a
// duplicated tag maps to a union of members rather than silently dropping one. // duplicated tag maps to a union of members rather than silently dropping one.
// A member whose `K` cannot take `V` drops out; the rest have `K` narrowed to
// `Extract<T[K], V>`. `T[K] extends V` keeps an exact member (a discriminated
// union's declared interface) untouched, so only a property that is itself a
// union — or optional — goes through the mapped form. `SetRequired` makes `K`
// required unless `V` admits `undefined`: a defined tag yields `{ type: "x" }`,
// while the `undefined` tag keeps `{ type?: never }` (absence) or
// `{ type?: undefined }` when the property admits an explicit `undefined`.
// Keyed by `PatternKey`, so `boolean`/`null`/`undefined` tags can key a mapped // Keyed by `PatternKey`, so `boolean`/`null`/`undefined` tags can key a mapped
// type; `PatternParam` inverts the projection to recover the member. // type; `Member` inverts the projection against the tag set to recover the tag.
type Narrowed<T extends object, K extends keyof T, V> = T extends object
? [Extract<T[K], V>] extends [never]
? never
: T[K] extends V
? T
: undefined extends V
? { [P in keyof T]: P extends K ? Extract<T[P], V> : T[P] }
: SetRequired<
{ [P in keyof T]: P extends K ? Extract<T[P], V> : T[P] },
K
>
: never;
type MapTaggedUnion<T extends object, K extends keyof T> = { type MapTaggedUnion<T extends object, K extends keyof T> = {
[P in PatternKey<Tags<T, K>>]: Extract<T, Record<K, PatternParam<P>>>; [P in PatternKey<Tags<T, K>>]: Narrowed<T, K, Member<Tags<T, K>, P>>;
}; };
type Handlers<T extends object, K extends keyof T, R> = { type Handlers<T extends object, K extends keyof T, R> = {
[P in PatternKey<Tags<T, K>>]: UnaryFn<MapTaggedUnion<T, K>[P], R>; [P in PatternKey<Tags<T, K>>]: UnaryFn<MapTaggedUnion<T, K>[P], R>;
}; };
// The members `Handled` covers. Mapping over the projected keys keeps every // The tag values whose `PatternKey` is handled.
// index within `MapTaggedUnion`'s keys, and the conditional drops a stray key type HandledTags<T extends object, K extends keyof T, Handled> = Member<
// outside `T` so it cannot widen the remainder. The remainder is Tags<T, K>,
// `Exclude<T, …>`, mirroring the primitive-union matcher's keyof Handled
// `Exclude<T, PatternParam<keyof Handled>>`. >;
type HandledMembers<T extends object, K extends keyof T, Handled> = {
[P in PatternKey<Tags<T, K>>]: P extends keyof Handled
? MapTaggedUnion<T, K>[P]
: never;
}[PatternKey<Tags<T, K>>];
// The fallback is a *second argument*, not a property of the handler map, so // The fallback is a *second argument*, not a property of the handler map, so
// its parameter can be the remainder the map left open. See development/library.md. // its parameter can be the remainder the map left uncovered: the members
// narrowed to the tags the map did not handle. See development/library.md.
type Fallback<T extends object, K extends keyof T, Handled, R> = UnaryFn< type Fallback<T extends object, K extends keyof T, Handled, R> = UnaryFn<
Exclude<T, HandledMembers<T, K, Handled>>, Narrowed<T, K, Exclude<Tags<T, K>, HandledTags<T, K, Handled>>>,
R R
>; >;
@@ -71,14 +88,16 @@ type MustBePartial<T extends object, K extends keyof T, Handled> =
// #1 Handlers (first) -> the exhaustive form and the autocomplete popup // #1 Handlers (first) -> the exhaustive form and the autocomplete popup
// #2 Fallback (last) -> accepts a partial handler map plus a fallback // #2 Fallback (last) -> accepts a partial handler map plus a fallback
interface TaggedUnionMatcherStrict<T extends object, K extends keyof T> { interface TaggedUnionMatcherStrict<T extends object, K extends keyof T> {
<R>(handlers: Handlers<T, K, R>): UnaryFn<T, R>; <R>(handlers: Handlers<T, K, R> & UniverseGate<Tags<T, K>>): UnaryFn<T, R>;
< <
R, R,
Handled extends Exact<Partial<Handlers<T, K, R>>, Handled> & Handled extends Exact<Partial<Handlers<T, K, R>>, Handled> &
MustBePartial<T, K, Handled>, MustBePartial<T, K, Handled>,
>( >(
handlers: Handled & Partial<Handlers<T, K, R>>, handlers: Handled &
fallback: Fallback<T, K, Handled, R>, Partial<Handlers<T, K, R>> &
UniverseGate<Tags<T, K>>,
fallback: Fallback<T, K, Handled, R> & UniverseGate<Tags<T, K>>,
): UnaryFn<T, R>; ): UnaryFn<T, R>;
} }
@@ -87,15 +106,15 @@ interface TaggedUnionMatcherStrict<T extends object, K extends keyof T> {
// contextual/autocomplete type. // contextual/autocomplete type.
interface TaggedUnionMatcherWidening<T extends object, K extends keyof T> { interface TaggedUnionMatcherWidening<T extends object, K extends keyof T> {
<P extends Exact<Handlers<T, K, unknown>, P>>( <P extends Exact<Handlers<T, K, unknown>, P>>(
handlers: P, handlers: P & UniverseGate<Tags<T, K>>,
): UnaryFn<T, PatternReturns<P>>; ): UnaryFn<T, PatternReturns<P>>;
< <
R, R,
Handled extends Exact<Partial<Handlers<T, K, unknown>>, Handled> & Handled extends Exact<Partial<Handlers<T, K, unknown>>, Handled> &
MustBePartial<T, K, Handled>, MustBePartial<T, K, Handled>,
>( >(
handlers: Handled, handlers: Handled & UniverseGate<Tags<T, K>>,
fallback: Fallback<T, K, Handled, R>, fallback: Fallback<T, K, Handled, R> & UniverseGate<Tags<T, K>>,
): UnaryFn<T, PatternReturns<Handled> | R>; ): UnaryFn<T, PatternReturns<Handled> | R>;
} }