84 Commits
Author SHA1 Message Date
tmu ee146ce350 🚀 Release 0.2.0
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2026-09-16 22:07:16 +00:00
tmu 33c6d9dc8d 🔀 Merge chore/remove-example-code into main 2026-09-16 22:06:17 +00:00
tmu 65e885989b 📝 Backlog the README walkthrough restoration
The example-code removal stripped the synopsis and examples with the
template modules; track bringing them back around the real API, with the
previous section order recorded so its placement is not re-guessed.
2026-09-16 22:05:05 +00:00
tmu 16092350b8 📝 Check off example-code removal in backlog
Note the finished work under [Unreleased] and mark the task and its
subtasks done; retarget the v1.0 coverage tasks at the surviving
primitive module.
2026-09-16 21:58:14 +00:00
tmu a3eb6183af 🔥 Remove the match and pattern example modules
They were the template's demo API, not the library's real surface. Drop
them, their README walkthrough, and the tooling note that cited their
disable directives, and point index.ts at the primitive matchers that
remain.
2026-09-16 21:57:55 +00:00
tmu ce3d618757 🔥 Remove the example index spec
The spec only exercised the template's match/P example API. Removing it
first lets the modules and exports it imports go next without leaving a
dangling reference.
2026-09-16 21:57:42 +00:00
tmu 73e5bc0093 🔀 Merge chore/straighten-oxc-rules into main
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2026-09-16 21:50:14 +00:00
tmu 08513b36a9 📝 Check off straighten-oxc-rules in backlog
Note the finished work under [Unreleased] and mark the task and its
subtasks done.
2026-09-16 21:46:04 +00:00
tmu 068d6b4998 ♻️ Use line comments in primitive matchers
Replace the three `/* */` prose blocks with `//` line comments, matching
the rest of the codebase and the comment style the oxlint config now
allows.
2026-09-16 21:46:00 +00:00
tmu fa0b7f2e84 🔧 Allow ternaries and lowercase comments
Turn off `eslint/no-ternary` and `eslint/capitalized-comments` in the
project config: both encode a style the project rejects, so they belong in
the config's rule map rather than a per-site disable.

Scope the adjacent `oxlint-disable` decision to false positives and
record why a rejected stylistic rule is turned off project-wide.
2026-09-16 21:45:54 +00:00
tmu 71ecd508b7 🔀 Merge feature/primitve-pattern-matching into main 2026-09-16 21:40:57 +00:00
tmu c13bc2f408 📝 Document why any is retained in primitive matchers
Rewriting without any was evaluated; the alternatives were more
complex than the current solution. Record the rationale next to the
two oxlint-disable sites so the suppression is not re-litigated.
2026-09-16 21:39:46 +00:00
tmu 8e2691e6aa 📝 Will add backlog items found while working 2026-09-16 20:43:01 +00:00
tmu 16650b07e3 📝 Backlog primitive literal coverage questions 2026-09-16 20:01:20 +00:00
tmu a0f0894339 ✅ Spec mixed string and numeric union keys 2026-09-16 20:01:12 +00:00
tmu ed71929365 ✅ Check matcher handler params
The primitive union matchers invoke every handler with the matched
literal, but the specs wrote their handlers with zero parameters, so
the passed value and its inferred key-literal type went untested.

Declare the parameter on each such handler and pin it with
expectTypeOf, matching the style the two already-correct handlers used.
The `_` fallbacks assert the whole union rather than a single literal.
Return-type expectations are unchanged, so the W / non-W widening
distinctions are still covered.
2026-09-16 19:29:04 +00:00
tmu cce030b8e5 🐛 Type partial W matcher without an any cast
getPrimitiveUnionMatcherPartialW was declared with the intended
P-inferring signature but assigned via `as any`, hiding that the
declared parameter was not assignable to the implementation's. The
union in PatternPrimitiveUnionPartial makes the `_` arm demand
`_ ∈ keyof P`, which the exhaustive arm cannot prove.

Intersect the inference hook Simplify<P> with the implementation's
parameter shape, R pinned to PatternReturns<P>, so the assignment
type-checks while callers keep inferring P from the argument.

Add a spec for the exhaustive (no `_`) pattern.
2026-09-16 19:10:40 +00:00
tmu 2ff67801e0 ✨ Add VS Code node:test debugging and runner config
launch.json: 'Debug current test file' F5 config running
node --test --strip-types on the active file.

settings.json: register .ts with the connor4312.nodejs-testing
extension via nodejs-testing.extensions, using --strip-types (the
repo pins node >=26 with native type stripping) instead of tsx, so
the extension discovers src/*.test.ts and shows Run/Debug lenses
above test() calls in the native Testing UI.

extensions.json: recommend connor4312.nodejs-testing; cspell.json:
allow 'connor' for the extension id.

.gitignore: un-ignore .vscode/launch.json so the config is shared.
2026-09-16 17:34:53 +00:00
tmu 62a5599ab3 📝 Require labeled AAA blocks in tests
Rule in CONTRIBUTING.md; decision, why and rejected unlabeled
ordering in development/testing.md.
2026-09-16 16:00:43 +00:00
tmu 34567856a5 ♻️ Label arrange-act-assert blocks in specs
Rework every test body into // Arrange / // Act / // Assert blocks
separated by blank lines: the factory is arranged once, the matcher is
built from it in a single act, and all type/runtime checks sink to the
end. index.test.ts adopts the same shape.

Also migrate off expect-type's deprecated toMatchTypeOf: the checks
are assignability tests, so toExtend is the faithful replacement.
2026-09-16 16:00:41 +00:00
tmu a25ac6d1e2 ✅ Spec primitive union matchers
Type-driven tests: every expectTypeOf pairs an assert, covering the
header matrix (exhaustive vs partial patterns, strict R vs widened
returns, string and numeric keys, _ fallback wiring).

Negative cases use Parameters<typeof factory>[0] assignability because
expect-type's .not.toBeCallableWith collapses to never on these generic
Simplify<>-wrapped signatures.

Same documented expectTypeOf floating-promise false positive as
index.test.ts, so the same file-level disable applies; testing.md
known-issue updated to list both files.
2026-09-16 14:52:30 +00:00
tmu 40bf652b97 ✨ Add primitive union pattern matchers
Curried matchers over string|number literal unions in four variants
(exhaustive/partial x strict/widened return inference), per the header
matrix in src/primitive.ts.

- Adds type-fest for Simplify/ValueOf.
- Deliberate oxlint escape hatches (as any dispatch) until a cast-free
  formulation lands; see the file comments.
2026-09-16 14:52:21 +00:00
tmu 1e13917cbe 🚀 Release 0.1.8
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2026-09-16 09:01:49 +00:00
tmu 42281a0f10 🔀 Merge chore/upgrade-deps into main 2026-09-16 08:56:32 +00:00
tmu c15bc0153e 📝 Require concise prose in development/
Actionable sentence in CONTRIBUTING.md § Rules the tools don't enforce;
the why — humans skim, agents imitate the dominant style, so verbosity
compounds — in development/README.md § Decision blocks. Both sides in
one commit per the write-each-fact-once rule.
2026-09-16 08:00:36 +00:00
tmu ae319f6547 🔧 Ignore @types/node in maintain:outdated
DefinitelyTyped keeps the @types/node latest dist-tag on the LTS line,
so check-outdated compared the current-line types against a lower
version: a permanent "reverted" flag, scan exit 1, zero signal. Ignored
by package name; --types filtering and a version-scoped pin rejected
(rationale in development/tooling.md).
2026-09-16 07:55:25 +00:00
tmu 63e8edce79 ⬆️ Upgrade dependencies
@types/node to ^26.6.1 and cspell to ^10.3.2 — the only packages
check-outdated found behind the registry, both bumps within the existing
semver ranges. cspell 10.3.2 drops its transitive
fast-json-stable-stringify. npm run verify is green with no rule or
format fallout. maintain:outdated still flags @types/node as "reverted"
because DefinitelyTyped's latest dist-tag stays on the 22.x LTS series;
known false positive, advisory scan only.
2026-09-16 07:31:49 +00:00
tmu b456a430a7 🚀 Release 0.1.7
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2026-09-16 07:23:24 +00:00
tmu 36d8c4feae 🔀 Merge chore/resolve-finish-push-tension into main 2026-09-16 07:21:55 +00:00
tmu d646fd1ec4 ♻️ Let create:branch start from an ahead main
`create:finish` leaves the merge local until `create:release` pushes it, so
`main` is routinely ahead of its upstream between a merge and a release. The
branch front door demanded an exact match and refused until it was pushed,
forcing a manual `git push` that the model deliberately keeps out of it.

Reject only a `main` that is behind its upstream — matching `create:finish`,
which already tolerates being ahead — and record why pushing from `finish` was
rejected instead. The push stays with `create:release`, so the merge remains
reviewable locally, and the known issue about the deadlock is gone.

Resolves: backlog task "Resolve the finish/push tension".
2026-09-15 22:14:51 +00:00
tmu 177d63fa95 🔀 Merge chore/prune-backlog-and-changelog-rule into main
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2026-09-15 22:09:21 +00:00
tmu f6f820a648 📝 Require a changelog note before finishing a branch
A merged branch must carry a final commit adding a short summary of the
work under [Unreleased] in CHANGELOG.md. create:release derives the bump
heuristic from that body, so notes have to exist before release day;
rationale in development/workflow.md.
2026-09-15 22:08:08 +00:00
tmu c5cc903221 📝 Prune the backlog of closed tasks
All completed and cancelled entries are implemented and reflected in the
docs, CI and changelog; only still-open tasks remain.
2026-09-15 21:58:44 +00:00
tmu cf73857931 🚀 Release 0.1.6
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2026-09-15 21:53:19 +00:00
tmu 9f038a230d 🔀 Merge chore/docs-restructure into main
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2026-09-15 21:51:33 +00:00
tmu 1465926783 📝 Check off the docs restructure and note it in the changelog 2026-09-15 21:51:21 +00:00
tmu 5e7d40b013 📝 Improve docs after split 2026-09-15 21:46:41 +00:00
tmu 74c39e1346 ♻️ Tighten the development/ prose
Same decisions, rationale, rejected alternatives and known issues, said with
less padding: ~5,530 -> ~4,730 words (-15%). Every fact from the first draft is
kept; only the wording, duplicated lead-ins and restated context are cut.
2026-09-15 13:56:49 +00:00
tmu 7ea84b66fa ♻️ Drop the last duplicated prose from development/
The GitHub Flow description and the type-first enforcement sentence still
appeared in both CONTRIBUTING.md and development/. development/ now carries only
the context and rationale that is not in CONTRIBUTING.md.
2026-09-15 13:47:01 +00:00
tmu 95d73d11b6 ♻️ Single-home the actionable rules and the rationale
development/ had restated the actionables that CONTRIBUTING.md owns: the
branching step list, the script prefix list, the feedback-tier rule of thumb,
the commit convention and the type-driven test loop. Those now live only in
CONTRIBUTING.md; development/ keeps the decision blocks and links to the rule.
development/README.md, CONTRIBUTING.md and AGENTS.md state the 'write each fact
once' principle explicitly.
2026-09-15 13:46:31 +00:00
tmu fe02317fc8 📝 Track code-fence testing and the finish/push tension
Adds a Documentation task to validate Markdown code fences against src/, and a
Workflow task for the create:finish / create:branch upstream mismatch recorded
in development/workflow.md.
2026-09-15 13:40:04 +00:00
tmu 84d48c6e67 📝 Make the rule/rationale split explicit
AGENTS.md and CONTRIBUTING.md now state that a decision, its rejected
alternatives and its known issues belong in development/<category>.md, that the
actionable rule stays in CONTRIBUTING.md, and that both change in the same
commit. development/README.md names library.md in the category list and spells
out that the sync runs in both directions.
2026-09-15 13:39:58 +00:00
tmu c7372732ba ♻️ Move script-header rationale into development/
branch.sh, finish.sh, release.sh, runner-image.sh and release-notes.sh
carried multi-paragraph 'how we got here / rejected' essays in comments. They
now live in the matching development/ category file, and each script keeps a
one-line pointer so the rationale is single-homed and cannot drift.
2026-09-15 13:27:21 +00:00
tmu 9faa0ecc55 📝 Rewrite README as the user entry point
Follows the Perl/CPAN order: name + one-line description, Synopsis, Description,
Examples, API reference, License. Tooling, CI and decision content moved to
development/; the README keeps only user-facing material and a pointer to
CONTRIBUTING.md and AGENTS.md. No version line and no package.json link.
2026-09-15 13:27:15 +00:00
tmu 73669ec5b6 📝 Rewrite CONTRIBUTING as the contributor entry point
Adds Setup, Development commands, Code style and formatting (with the VSCode
extension hint) and Submitting changes. The decision prose moves to
development/; this file keeps the actionable rules (feedback-tier table, script
prefix list, standards) and links to the category files for the why.
2026-09-15 13:27:05 +00:00
tmu dc7ce22fc5 📝 Add development/ docs for decisions and known issues
Category files under development/ replace the decision prose that was
scattered through README.md and CONTRIBUTING.md. Each decision is a block with
Decision (YYYY-MM) / Why / Rejected / Known issue; the new library.md records
the public API contract and its limitations. AGENTS.md and backlog.tasks now
point at the new home.
2026-09-15 13:26:59 +00:00
tmu 97dfe9e7b4 📝 Expand the docs-cleanup task into concrete subtasks 2026-09-15 13:21:58 +00:00
tmu b92645faa1 🔀 Merge chore/runner-image-decision into main
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2026-09-15 12:09:13 +00:00
tmu 5bb58137c4 📝 Check off the Gitea release-page verification task 2026-09-15 12:07:34 +00:00
tmu e1dec54363 📝 Cancel force-pull task and document the runner-image decision
The act-ci image is rebuilt only when Node is bumped, which changes the
tag, so the runner's default no-force-pull behavior already picks up every
normal update. Forcing a pull would re-pull on every job and a missed
runner-side image change is acceptable, so document that decision as a
known issue with a manual docker rmi workaround instead of tracking a
force-pull task.
2026-09-15 12:02:59 +00:00
tmu c0bba0775c 🚀 Release 0.1.5
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2026-09-15 09:33:17 +00:00
tmu b8d235df89 🔀 Merge chore/improve-ci-publish into main 2026-09-15 09:32:04 +00:00
tmu 76fe8993a7 📝 Track the docs cleanup and docs-site task 2026-09-15 09:31:58 +00:00
tmu f984576d4e 📝 Record the automatic-token publish design in the backlog
Point 1 dropped the GITEA_TOKEN gate (the run's automatic github.token is
always present), and point 2 added the all-or-nothing check; keep the checked
task from claiming behavior the workflow no longer has.
2026-09-15 09:25:42 +00:00
tmu 79b4d8c005 ♻️ Use the automatic token and fail closed on a partial release
Drop the GITEA_TOKEN gate and pass no explicit token: gitea-release-action
defaults to the run's automatic github.token, so the release page needs only
contents: write. Keep the npm publish gated on NPM_TOKEN, but add a final
always() step that fails the job unless both the release page and npm publish
reported success, so a skipped npm half is an explicit red job instead of a
silently green one.
2026-09-15 09:25:24 +00:00
tmu 60e416b0fe 📝 Check off the CI publish task
The publish job was already tag-only; the coarse NPM_TOKEN assert is replaced by
per-step env gates, so an unset secret now skips only its own step.
2026-09-15 09:06:48 +00:00
tmu e90d2549e3 📝 Document the publish-step token gates
Record the two optional secrets and why the job lifts them into env: the
secrets context is unavailable in a step if, so env is the only place the gate
can read them.
2026-09-15 09:06:39 +00:00
tmu 8915eb8faa 👷 Gate the publish steps on their tokens
The publish job aborted at the top-of-job NPM_TOKEN assert, so every tag run
since 0.1.1 failed before checkout and nothing was ever published. Lift both
optional secrets into job-level env (the secrets context is not allowed in a
step if) and gate each publish step: the Gitea release on GITEA_TOKEN, npm
publish on NPM_TOKEN. An absent secret now skips only its step, so a tag without
the maintainer's secrets stays green after the packaging checks.
2026-09-15 09:06:35 +00:00
tmu 75f2185b32 📝 Track the CI publish hardening task
Also restores the runner force-pull task that the new entry had replaced; it is
still open (CONTRIBUTING § CI runner image documents the stale-image failure).
2026-09-15 09:05:41 +00:00
tmu 9c472c88c2 🚀 Release 0.1.4
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2026-09-14 16:20:46 +00:00
tmu 16962e947e 🔀 Merge chore/dependency-updates into main 2026-09-14 16:19:04 +00:00
tmu be0ca717d0 ⬆️ Upgrade oxfmt to 0.68.0 and oxlint to 1.83.0
Latest releases of the two oxc tools; both minor bumps within 0.x/1.x
semver ranges. check-outdated now reports zero outdated dependencies
and npm run verify passes with no rule or format fallout.
2026-09-14 16:18:02 +00:00
tmu 5a3ee3b8cc 🔀 Merge chore/remove-toolcache-diagnostics into main
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2026-09-14 16:07:52 +00:00
tmu 77fb604d7e 📝 Check off the CI Node-baking task
All steps confirmed green in CI ('Found in cache @ /opt/hostedtoolcache/node/
26.8.2/x64', no download). The runner-side force-pull item moves to its own
task, since a changed image under an unchanged tag is still silently ignored.
2026-09-14 16:04:03 +00:00
tmu 1b2b50304e ♻️ Assert the baked tool cache instead of logging it
The diagnostics did their job (missing <version>/<arch>.complete marker, now
written by the image). Replace the noise with a fail-fast assert that names
the same invariant, mirroring the publish job's NPM_TOKEN check: a stale tag
on the runner would otherwise silently reintroduce the per-job download, with
nothing in the repo to catch it.
2026-09-14 16:04:01 +00:00
tmu 048a8870e6 🐛 Write the tool-cache completion marker into the image
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setup-node still downloaded although the image carried a perfect
/opt/hostedtoolcache/node/26.8.2/x64/ tree. actions/tool-cache accepts a
cached tool only when the sibling marker <version>/<arch>.complete exists
(tc.find() tests it explicitly); a bare directory is ignored, so the probe
fell through to the download. The marker is what tc.cacheDir() writes after
installing a tool, so the baked entry must create it too.

Job-container diagnostics also confirmed the path was never in question:
RUNNER_TOOL_CACHE=/opt/hostedtoolcache, no mount over it, node -v from the
baked path prints v26.8.2.

CONTRIBUTING records both invariants — the marker, and the fact that a
Dockerfile change keeps the same tag, which forcePull=false can hide.
2026-09-14 15:59:23 +00:00
tmu f0b28c81c0 🔊 Log tool-cache state in the CI build job
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The custom image provably carries /opt/hostedtoolcache/node/26.8.2/x64/bin/node
(ls inside the image confirms the layout, modes and the 150 MB binary), yet
setup-node still downloads. So the miss is runtime-only: either the runner is
not running that image or something shadows the path inside the job container.
This step prints mounts, the tool-cache listing, a direct node -v from the
baked path and the RUNNER_* env, then setup-node runs unchanged.

Temporary: remove once the cause is known.
2026-09-14 15:55:52 +00:00
tmu 1dfb979ebb 🚀 Release 0.1.3
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2026-09-14 15:45:11 +00:00
tmu f04ad3d5bc 🔀 Merge chore/fix-ci into main 2026-09-14 15:43:57 +00:00
tmu 93cbfcf6b1 🐛 Expand the node base image through a named stage
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COPY --from= resolves its value as a stage name at parse time, before build
args exist, so COPY --from=node:${NODE_VERSION} collapsed to the invalid
'node:' and docker failed with 'failed to parse stage name'. ARGs in global
scope are expanded in FROM, so route through a named nodebase stage; the
per-stage ARG redeclaration keeps the tool-cache paths expanding.
2026-09-14 13:28:29 +00:00
tmu 3e33b51d1b 📝 Document CI runner-image bump ritual
build:runner-image broke the script prefix convention: build is a bare
single-tool command, and no tier fits a docker-daemon + registry-cred action,
so the script leaves package.json and is invoked directly. CONTRIBUTING gains
a 'CI runner image' section recording where the image pushes
(gitea.e1nsnull.de/tmu/act-ci:<version>), the .node-version coupling, and the
three-step Node-bump ritual.
2026-09-14 12:51:34 +00:00
tmu abbdf4410e 📝 Track CI Node-baking work in backlog
Record chore/fix-ci's two done steps and the remaining ops step (build/push
the image; first CI run is the acceptance test). Glyph/tag coupling honoured:
every ✔ line carries @done, open parent stays ☐.
2026-09-14 12:40:22 +00:00
tmu 245dfaf198 💚 Bake Node into the CI job image
setup-node never consults `node` on PATH; its only fast path is a probe of
/opt/hostedtoolcache, which the ephemeral act_runner job containers always
miss, so every job paid a ~50 MB Node download. docker/Dockerfile extends the
runner's default catthehacker/act image with the Node distribution overlaid at
the exact tool-cache layout, so setup-node finds 26.8.2 and skips the fetch
while node-version-file, cache: npm and registry-url keep working unchanged.

Image layers dedupe against the base the host already pulled and prune via
normal docker hygiene — the cleanup story a host bind of /opt/hostedtoolcache
lacks. To make the bake deterministic, .node-version is pinned to the exact
26.8.2 the image carries; scripts/runner-image.sh guards that coupling and
builds/pushes the tag the three node jobs now reference via container.image.

Ops follow-up (outside the repo): build once with
`npm run build:runner-image -- --push` on a machine with registry creds. If
the package is private, the runner needs container registry credentials in
its config.
2026-09-14 12:37:58 +00:00
tmu b9fe21175f 💚 Reuse npm cache in publish job
The publish job ran npm ci against a cold cache on every release while
build/maintain already share a warm node-cache key off the same lockfile.
Tag runs can read caches saved on main, so wiring cache: npm here is free.
2026-09-14 12:13:38 +00:00
tmu 5292455dbc 🚀 Release 0.1.2
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2026-09-14 12:03:32 +00:00
tmu d1ef039688 🔀 Merge chore/dependency-updates into main 2026-09-14 12:02:51 +00:00
tmu c65f86e5d5 ⬆️ Upgrade dependencies 2026-09-14 12:02:27 +00:00
tmu b5bfe83140 🚀 Release 0.1.1
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2026-09-14 11:58:51 +00:00
tmu 60bf1bb3a9 🔀 Merge chore/dependency-updates into main 2026-09-14 11:58:11 +00:00
tmu 24bd0270c0 ⬆️ Upgrade dependencies 2026-09-14 11:57:34 +00:00
tmu 475136c1e5 📝 Check off done tasks 2026-09-14 11:55:28 +00:00
tmu 67e3e13b5e 🚀 Release 0.1.0
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CI / build (push) Successful in 37s
CI / maintain (push) Failing after 30s
CI / publish (push) Failing after 4s
2026-09-14 11:48:55 +00:00
tmu 595759ca7a 🔀 Merge feature/setup into main 2026-09-14 11:47:58 +00:00
tmu 8495adc47b 👷 Retitle release commits to 🚀
The release commit message is a machine-read convention (release-gate
in ci.yml skips the redundant main CI run on it), so the emoji carries
weight: change the mint in scripts/release.sh, the recognized pattern,
and both docs in one atomic commit. No tags or release commits exist
yet, so nothing historical parses differently. 🚀 matches the
gitmoji semantic (deploy/publish) better than 🔖 here.
2026-09-14 11:47:00 +00:00
35 changed files with 2366 additions and 968 deletions

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+60 -19
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@@ -16,7 +16,7 @@ jobs:
# pushes `main` and the tag seconds apart, and the tag points at exactly # pushes `main` and the tag seconds apart, and the tag points at exactly
# the HEAD commit that push delivers — so the branch run would verify the # the HEAD commit that push delivers — so the branch run would verify the
# identical tree the tag run verifies anyway (plus `publish`). When a push # identical tree the tag run verifies anyway (plus `publish`). When a push
# to `main` is headed by a release commit (`:bookmark: Release x.y.z`, the # to `main` is headed by a release commit (`:rocket: Release x.y.z`, the
# single commit release.sh creates), the full CI is skipped here and the # single commit release.sh creates), the full CI is skipped here and the
# tag run becomes the authoritative one for that SHA. All other pushes — # tag run becomes the authoritative one for that SHA. All other pushes —
# PRs, tags, ordinary `main` merges — see `skip=false` and run as before. # PRs, tags, ordinary `main` merges — see `skip=false` and run as before.
@@ -38,7 +38,7 @@ jobs:
# Keyed on the ref, not just the message: a tag run checks out # Keyed on the ref, not just the message: a tag run checks out
# the same release commit, and `publish` needs its `build`. # the same release commit, and `publish` needs its `build`.
if [ "${REF}" = "refs/heads/main" ] && if [ "${REF}" = "refs/heads/main" ] &&
git log -1 --format=%s | grep -qE '^:bookmark: Release [0-9]+\.[0-9]+\.[0-9]+$'; then git log -1 --format=%s | grep -qE '^:rocket: Release [0-9]+\.[0-9]+\.[0-9]+$'; then
echo 'Release commit on main — the tag run covers this SHA; skipping full CI.' echo 'Release commit on main — the tag run covers this SHA; skipping full CI.'
echo 'skip=true' >>"${GITHUB_OUTPUT}" echo 'skip=true' >>"${GITHUB_OUTPUT}"
else else
@@ -49,15 +49,27 @@ jobs:
needs: release-gate needs: release-gate
if: needs.release-gate.outputs.skip != 'true' if: needs.release-gate.outputs.skip != 'true'
runs-on: ubuntu-latest runs-on: ubuntu-latest
# Bind-mount the shared pages tree so the coverage step below can write # `image` extends the runner's default job image (catthehacker/act)
# into it. The runner whitelists this path via `container.valid_volumes` # with Node 26 pre-planted in the tool cache layout, so setup-node's
# (docker-space `setup/gitea.sh`); `image` is omitted on purpose so the # version probe hits and never downloads (see docker/Dockerfile). The
# runner keeps using its default job image. # tag MUST equal the exact version pinned in `.node-version`; the bump
# ritual is documented in CONTRIBUTING.md § CI runner image. The volume
# bind-mounts the shared pages tree so the
# coverage step below can write into it; the runner whitelists this
# path via `container.valid_volumes` (docker-space `setup/gitea.sh`).
container: container:
image: gitea.e1nsnull.de/tmu/act-ci:26.8.2
volumes: volumes:
- /data/gitea-pages:/data/gitea-pages - /data/gitea-pages:/data/gitea-pages
steps: steps:
- uses: actions/checkout@v4 - uses: actions/checkout@v4
# Fail fast when the job container is not the baked image: a stale
# tag on the runner (`forcePull=false` in its pull log) silently
# reintroduces the per-job download. Cheap, and it names the
# invariant.
- name: Assert the baked tool cache is present
run: |
test -f "/opt/hostedtoolcache/node/$(tr -d '[:space:]' < .node-version)/x64.complete"
- uses: actions/setup-node@v4 - uses: actions/setup-node@v4
with: with:
node-version-file: .node-version node-version-file: .node-version
@@ -108,6 +120,10 @@ jobs:
if: needs.release-gate.outputs.skip != 'true' if: needs.release-gate.outputs.skip != 'true'
runs-on: ubuntu-latest runs-on: ubuntu-latest
continue-on-error: true continue-on-error: true
# Same baked image as `build` — without it this job re-downloads Node
# per run (see docker/Dockerfile).
container:
image: gitea.e1nsnull.de/tmu/act-ci:26.8.2
steps: steps:
- uses: actions/checkout@v4 - uses: actions/checkout@v4
- uses: actions/setup-node@v4 - uses: actions/setup-node@v4
@@ -121,24 +137,30 @@ jobs:
if: startsWith(gitea.ref, 'refs/tags/') if: startsWith(gitea.ref, 'refs/tags/')
needs: build needs: build
runs-on: ubuntu-latest runs-on: ubuntu-latest
# Same baked image as `build` — setup-node still owns the registry-url
# `.npmrc` rewrite here; only the Node download is skipped.
container:
image: gitea.e1nsnull.de/tmu/act-ci:26.8.2
# The release page is created with the run's automatic Gitea token # The release page is created with the run's automatic Gitea token
# (`github.token`), not `NPM_TOKEN`, so it needs `contents: write`. # (`github.token`), so it needs `contents: write`.
permissions: permissions:
contents: write contents: write
# The npm token is optional: `secrets` is not an allowed context in a
# step `if` (see GitHub's context-availability table), so it is lifted
# into job-level `env`, where an unset secret arrives as the empty
# string and skips the publish rather than attempting an unauthenticated
# one. Set NPM_TOKEN in the Gitea repo: Settings → Actions → Secrets.
env:
NPM_TOKEN: ${{ secrets.NPM_TOKEN }}
steps: steps:
# Double-gate: publish only runs on a tag *and* aborts here if NPM_TOKEN
# is unset, so a tag push never silently no-ops (or half-publishes). Set
# NPM_TOKEN in the Gitea repo: Settings → Actions → Secrets.
- name: Assert NPM_TOKEN is configured
run: |
if [ -z "${{ secrets.NPM_TOKEN }}" ]; then
echo "::error::NPM_TOKEN secret is not set — refusing to publish."
exit 1
fi
- uses: actions/checkout@v4 - uses: actions/checkout@v4
- uses: actions/setup-node@v4 - uses: actions/setup-node@v4
with: with:
node-version-file: .node-version node-version-file: .node-version
# Same lockfile/key as `build`, and tag runs can read caches
# saved on `main` — without this, every release pays a cold
# `npm ci` despite the warm shared npm cache.
cache: "npm"
registry-url: "https://registry.npmjs.org/" registry-url: "https://registry.npmjs.org/"
- run: npm ci - run: npm ci
# Consume the dist/ that `build` produced and gated, instead of # Consume the dist/ that `build` produced and gated, instead of
@@ -159,9 +181,28 @@ jobs:
env: env:
TAG_REF: ${{ gitea.ref }} TAG_REF: ${{ gitea.ref }}
run: ./scripts/release-notes.sh "${TAG_REF#refs/tags/}" > release-notes.md run: ./scripts/release-notes.sh "${TAG_REF#refs/tags/}" > release-notes.md
- uses: https://gitea.com/actions/gitea-release-action@v1 - name: Create the Gitea release
id: gitea_release
uses: https://gitea.com/actions/gitea-release-action@v1
with: with:
body_path: release-notes.md body_path: release-notes.md
- run: npm publish --access public - name: Publish to npm
id: npm_publish
if: env.NPM_TOKEN != ''
run: npm publish --access public
env: env:
NODE_AUTH_TOKEN: ${{ secrets.NPM_TOKEN }} NODE_AUTH_TOKEN: ${{ env.NPM_TOKEN }}
# All-or-nothing: the tag is only released once *both* the release
# page and the npm package are up. A skipped npm publish (NPM_TOKEN
# unset) has no `success` outcome, so `always()` reaches this check
# even after a failure and turns the skipped half into an explicit
# red job instead of a silently green one.
- name: Require both releases
if: always()
run: |
GITEA="${{ steps.gitea_release.outcome }}"
NPM="${{ steps.npm_publish.outcome }}"
if [ "${GITEA}" != success ] || [ "${NPM}" != success ]; then
echo "::error::incomplete release — gitea=${GITEA:-skipped} npm=${NPM:-skipped}"
exit 1
fi
+1
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@@ -10,5 +10,6 @@ coverage
!.vscode/extensions.json !.vscode/extensions.json
!.vscode/settings.json !.vscode/settings.json
!.vscode/tasks.json !.vscode/tasks.json
!.vscode/launch.json
.idea .idea
.DS_Store .DS_Store
+1 -1
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@@ -1 +1 @@
26 26.8.2
+2
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@@ -13,6 +13,8 @@
"eslint/no-undefined": "off", "eslint/no-undefined": "off",
"eslint/sort-keys": "off", "eslint/sort-keys": "off",
"eslint/id-length": "off", "eslint/id-length": "off",
"eslint/capitalized-comments": "off",
"eslint/no-ternary": "off",
"import/no-named-export": "off", "import/no-named-export": "off",
"eslint/one-var": "off", "eslint/one-var": "off",
"import/group-exports": "off", "import/group-exports": "off",
+1
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@@ -1,5 +1,6 @@
{ {
"recommendations": [ "recommendations": [
"connor4312.nodejs-testing",
"oxc.oxc-vscode", "oxc.oxc-vscode",
"streetsidesoftware.code-spell-checker", "streetsidesoftware.code-spell-checker",
"typescriptteam.native-preview", "typescriptteam.native-preview",
+15
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@@ -0,0 +1,15 @@
{
"version": "0.2.0",
"configurations": [
{
"type": "node",
"request": "launch",
"name": "Debug current test file",
"runtimeExecutable": "node",
"runtimeArgs": ["--test", "--strip-types"],
"args": ["${file}"],
"cwd": "${workspaceFolder}",
"console": "integratedTerminal"
}
]
}
+10
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@@ -1,4 +1,14 @@
{ {
"nodejs-testing.extensions": [
{
"extensions": ["mjs", "cjs", "js"],
"parameters": []
},
{
"extensions": ["ts"],
"parameters": ["--strip-types"]
}
],
"[typescript]": { "[typescript]": {
"editor.defaultFormatter": "oxc.oxc-vscode", "editor.defaultFormatter": "oxc.oxc-vscode",
"editor.formatOnSave": true "editor.formatOnSave": true
+3 -1
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@@ -12,6 +12,7 @@ first-action facts. Do not restate evolving prose here — it will drift.
- **Optional code intelligence:** this repo installs `@spences10/pi-lsp` (pinned in `.pi/settings.json`) as a project-local pi extension. It talks to the repo's own TypeScript 7 via `tsc --lsp --stdio` and exposes **read-only** tools — `lsp_hover`, `lsp_definition`, `lsp_references`, `lsp_find_symbol`, `lsp_document_symbols`, `lsp_diagnostics(_many)`. Prefer `lsp_references` over `grep -w` for widely-colliding identifiers (`matches`, `type`, …); use `lsp_hover` to read inferred types on generic-heavy code. It has no rename / code-action / apply-edit surface — the write side is pi's `edit` tool + `check:tsc`. Treat empty LSP output as _inconclusive_, not success: **`npm run test` / `npm run verify` remain the sole authoritative gate** (see the next bullet). The server keeps running across that gate with a ~5 min idle timeout and registers no file watchers, so if you change `tsconfig.json` / `package.json` mid-session its diagnostics can be stale — when LSP output disagrees with `check:tsc`, trust `check:tsc` and restart pi (or wait out the idle timeout) before concluding the LSP is wrong. - **Optional code intelligence:** this repo installs `@spences10/pi-lsp` (pinned in `.pi/settings.json`) as a project-local pi extension. It talks to the repo's own TypeScript 7 via `tsc --lsp --stdio` and exposes **read-only** tools — `lsp_hover`, `lsp_definition`, `lsp_references`, `lsp_find_symbol`, `lsp_document_symbols`, `lsp_diagnostics(_many)`. Prefer `lsp_references` over `grep -w` for widely-colliding identifiers (`matches`, `type`, …); use `lsp_hover` to read inferred types on generic-heavy code. It has no rename / code-action / apply-edit surface — the write side is pi's `edit` tool + `check:tsc`. Treat empty LSP output as _inconclusive_, not success: **`npm run test` / `npm run verify` remain the sole authoritative gate** (see the next bullet). The server keeps running across that gate with a ~5 min idle timeout and registers no file watchers, so if you change `tsconfig.json` / `package.json` mid-session its diagnostics can be stale — when LSP output disagrees with `check:tsc`, trust `check:tsc` and restart pi (or wait out the idle timeout) before concluding the LSP is wrong.
- **Definition of done — run this before you call the work finished:** `npm run verify`. If all green, commit. If red, look at the output, fix the root cause, and re-run. - **Definition of done — run this before you call the work finished:** `npm run verify`. If all green, commit. If red, look at the output, fix the root cause, and re-run.
- **On commit:** write a good message (see [CONTRIBUTING.md § Commit messages](./CONTRIBUTING.md#commit-messages)). Lefthook's pre-commit hook already runs the fast, offline, staged-file checks — don't run them by hand. If the hook fails on style, `npm run fix`, restage, recommit. - **On commit:** write a good message (see [CONTRIBUTING.md § Commit messages](./CONTRIBUTING.md#commit-messages)). Lefthook's pre-commit hook already runs the fast, offline, staged-file checks — don't run them by hand. If the hook fails on style, `npm run fix`, restage, recommit.
- **Document decisions where the next maintainer will look:** rationale, rejected alternatives and known issues go in `development/<category>.md` (see [development/README.md](./development/README.md)); the actionable rule stays in [CONTRIBUTING.md](./CONTRIBUTING.md) and links to it. Write each fact once — never copy the rule into `development/` or the reason into `CONTRIBUTING.md` — and change both in the same commit when a rule changes.
- **`npm run maintain` is NOT part of the feature loop.** Its scans are advisory, never a gate; run them only on an explicit maintenance / update-deps branch. - **`npm run maintain` is NOT part of the feature loop.** Its scans are advisory, never a gate; run them only on an explicit maintenance / update-deps branch.
```sh ```sh
@@ -64,5 +65,6 @@ In both cases, follow [CONTRIBUTING.md § Testing discipline (type-driven)](./CO
- [CONTRIBUTING.md § Script prefix convention](./CONTRIBUTING.md#script-prefix-convention) — adding an `npm run` script? reuse an existing prefix or it doesn't belong. - [CONTRIBUTING.md § Script prefix convention](./CONTRIBUTING.md#script-prefix-convention) — adding an `npm run` script? reuse an existing prefix or it doesn't belong.
- [CONTRIBUTING.md § Commit messages](./CONTRIBUTING.md#commit-messages) — gitmoji + imperative + 50/72. - [CONTRIBUTING.md § Commit messages](./CONTRIBUTING.md#commit-messages) — gitmoji + imperative + 50/72.
- [CONTRIBUTING.md § Feedback tiers](./CONTRIBUTING.md#feedback-tiers) — what runs when and at what cost (`watch` / pre-commit / pre-push / `check` / `verify` / `fix` / `maintain` / CI). - [CONTRIBUTING.md § Feedback tiers](./CONTRIBUTING.md#feedback-tiers) — what runs when and at what cost (`watch` / pre-commit / pre-push / `check` / `verify` / `fix` / `maintain` / CI).
- [README.md § Tooling decisions](./README.md#tooling-decisions) — the rationale behind each tool choice; read before changing tooling. - [development/](./development/README.md) — the decisions, rejected alternatives and known issues behind the rules; the “why” that CONTRIBUTING.md links to. Read the relevant file before changing an area.
- [development/tooling.md](./development/tooling.md) — the rationale behind each tool choice; read before changing tooling.
- [package.json `#scripts`](./package.json) — the source of truth for every command (the `LEFTHOOK_FILES` convention scopes them to staged files vs. the whole project). - [package.json `#scripts`](./package.json) — the source of truth for every command (the `LEFTHOOK_FILES` convention scopes them to staged files vs. the whole project).
+58 -1
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@@ -7,4 +7,61 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
## [Unreleased] ## [Unreleased]
[Unreleased]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts ## [0.2.0] - 2026-09-16
- allow ternaries and lowercase comments in oxlint
- switch `src/primitive.ts` prose from block comments to line comments
- remove the template's `match`/`P` example modules and their documentation, and point `src/index.ts` at the primitive matchers
## [0.1.8] - 2026-09-16
- upgrade dependencies
- ignore `@types/node` in `maintain:outdated` (misleading `latest` dist-tag)
- require extremely concise prose in `development/`
## [0.1.7] - 2026-09-16
- require a short summary under `[Unreleased]` in the changelog before a branch is finished
- let `create:branch` start from a `main` that is ahead of its upstream, so a finished merge no longer blocks the next branch until it is pushed
## [0.1.6] - 2026-09-15
- restructure the documentation: README.md for users, CONTRIBUTING.md for contributors, and development/ for the decisions, rejected alternatives and known issues
- document the decisions and known issues for CI, tooling, testing, publishing and the workflow
## [0.1.5] - 2026-09-15
- improve CI configuration
## [0.1.4] - 2026-09-14
- fix CI to node from custom image
- upgrade dependencies
## [0.1.3] - 2026-09-14
- change to custom image for CI
## [0.1.2] - 2026-09-14
- upgrade dependencies
## [0.1.1] - 2026-09-14
- upgrade dependencies
## [0.1.0] - 2026-09-14
- basic setup
[Unreleased]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.2.0...main
[0.2.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.8...0.2.0
[0.1.8]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.7...0.1.8
[0.1.7]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.6...0.1.7
[0.1.6]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.5...0.1.6
[0.1.5]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.4...0.1.5
[0.1.4]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.3...0.1.4
[0.1.3]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.2...0.1.3
[0.1.2]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.1...0.1.2
[0.1.1]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/0.1.0...0.1.1
[0.1.0]: https://gitea.e1nsnull.de/tmu/tiny-pattern-ts/compare/20308c5a6d8cccfb09b02ac2ebebd8055e91cd11...0.1.0
+198 -65
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@@ -1,52 +1,39 @@
# Contributing # Contributing
This document is for maintainers and contributors working on the project itself. End-user documentation is in [README.md](./README.md). The machine entry point for AI coding agents is [AGENTS.md](./AGENTS.md); keep this file as the prose home for the rules below so agents and humans don't diverge. This document is for maintainers and contributors working on the project
itself. End-user documentation is in [README.md](./README.md). The reasons
behind the rules here — the decisions, rejected alternatives, and known issues —
live in [development/](./development/README.md). The machine entry point for AI
coding agents is [AGENTS.md](./AGENTS.md); keep this file as the prose home for
the rules so agents and humans don't diverge.
## Rules the tools don't enforce ## Setup
CI and review will bounce these even though `npm run check` and the linters don't catch them. They're the high-frequency things a contributor (or an agent) reaches for by default: 1. Clone the repository.
2. Install Node.js >= 26 — see [.node-version](./.node-version); the exact pinned
version is what CI and the runner image use.
3. `npm ci`.
4. `npm run setup` — the one-time clone configuration (currently registers the
commit-message template).
- **Source imports use `.ts` extensions, never `.js`.** `node --strip-types` only resolves the `.ts` form at test time; "Pre-fixing" an import to `.js` breaks the inner loop. (rationale: README § Tooling decisions) ## Development commands
- **A new `npm run` script must reuse an existing prefix** (`create:` / `check:` / `fix:` / `test:` / `watch:` / `maintain:` / `publish:` / `setup:`). If none fits, that's a signal the script doesn't belong in the pipeline — not a reason to invent a new prefix. If it genuinely does belong, add the prefix to both lists here in the same commit; an undocumented prefix becomes invisible and quietly accrues members. (see [Script prefix convention](#script-prefix-convention))
- **`oxlint-disable` directives live in source, not `.oxlintrc.json`.** The trade-off must sit next to the code it silences. This is a _human_ last-resort convention; agents must not add these — see [AGENTS.md § Never do](./AGENTS.md#never-do). (rationale: README § Tooling decisions)
- **Don't put slow / network / whole-project scans in `check` or pre-commit.** Advisory scans are not correctness gates; they belong under `maintain:`. (see [Feedback tiers](#feedback-tiers) and [Script prefix convention](#script-prefix-convention))
- **New work starts with `npm run create:branch`, never a hand-written `git switch -c`/`git checkout -b`.** The command carries the branch precondition; branching around it skips the clean-tree, current-`main` and green-baseline checks, and the skip is invisible until a failure can no longer be attributed. (see [Branching model](#branching-model))
- **Work is merged back with `npm run create:finish`, never a hand-written `git merge`.** The command carries the merge-side preconditions (clean tree, current `main`, a `feature/`/`fix/`/`chore/` branch) and runs `npm run verify` after the merge, so a merge cannot land unverified. (see [Branching model](#branching-model))
- **There is no local `npm run publish`, and `publish:publint` / `publish:attw` don't go in `check`.** (see [Publishing workflow](#publishing-workflow))
## Editor configuration - **Build:** `npm run build`
- **Test:** `npm run test`, `npm run test:ci`
`.editorconfig` is for editor compatibility, not a gate — it is a sane fallback for the files oxfmt does not format (shell scripts, dotfiles, `LICENSE`, the commit-message template, and git's `COMMIT_EDITMSG` buffer). Where both apply, `.oxfmtrc.json` is authoritative: oxfmt is the formatter, and the overlapping `.editorconfig` keys only keep non-oxfmt editors close to the formatted result. - **Watch:** `npm run watch` - re-runs tests on file save, humans only
- **Checks:** `npm run check`, `npm run fix`
## Commit messages - **Verify:** `npm run verify` — the definition of done
- **Maintenance:** `npm run maintain` — advisory only
Gitmoji subject, imperative mood, 50/72 wrapping. The template is `commit-message-template`; run `npm run setup:git-commit-message` once after cloning to register it as git's `commit.template` (or `npm run setup` to run every one-time clone step). - **Individual fixes:** `npm run fix:oxfmt`, `npm run fix:oxlint`
Examples from history: `:sparkles: Add watch tier with watch:test child`, `:recycle: Move type-aware config to .oxlintrc.json; use source-level disable directives`, `:memo: Restore unique maintainer content as CONTRIBUTING.md`. The body explains _what and why_, not _how_; link issues with `Resolves #...`.
## Script prefix convention
Script names in `package.json` use a prefix that signals _when_ the script is intended to run. A `<prefix>:<name>` script is implicitly aggregated by a `<prefix>` script (if one exists) and run by the corresponding lefthook hook or CI step. Picking the right prefix documents the script's intended lifecycle:
- `create:*` — front doors of the repo's own workflow; these mutate git state rather than the source. `create:branch` opens a unit of work (asserts a clean tree, a current `main` and a green baseline before it branches), `create:finish` closes the branch half (merges the current unit of work into `main` and verifies the result), `create:release` closes the release half (maintainer-only). No bare `create` aggregator on purpose — see `publish:*` for the precedent.
- `check:*` — read-only verification; never modifies files. Aggregated by `npm run check`.
- `fix:*` — mutating counterpart of a `check:*` script. Aggregated by `npm run fix`; the diff is the review surface.
- `test:*` — test scripts. `test` is the canonical entry point (`check:tsc` + unit tests); `test:unit` skips the typecheck for fast local iteration; `test:ci` adds c8 coverage.
- `watch:*` — long-running watchers for the manual inner dev loop. Aggregated by `watch`; currently a single child (`watch:test`), and a future `watch:oxlint` / `watch:tsc` would run concurrently under that umbrella.
- `maintain:*` — advisory repo-maintenance scans: read-only, but whole-project and/or network-bound, so never a correctness gate. Aggregated by `npm run maintain`.
- `publish:*` — validates the _publishable artifact_ (e.g. `dist/`) rather than the source, so it needs a fresh build. (see [Rules the tools don't enforce](#rules-the-tools-dont-enforce) and [Publishing workflow](#publishing-workflow))
- `setup:*` — one-time configuration of a fresh clone; mutates the local environment (git config, editor settings) rather than the repo source, so it is never part of a hook or CI step. Aggregated by `npm run setup` (the umbrella), run once after cloning.
A new script should pick the prefix that matches its lifecycle, not invent a new one. If no existing prefix fits, that's a signal the script doesn't belong in the standard pipeline. When it genuinely does belong, a new prefix is allowed — but it enters both lists in this file in the same commit as its first member, otherwise the rule "reuse an existing prefix" silently develops an exception (the old `use:` prefix was exactly that; it is now retired into `setup:`).
Separately, some top-level scripts are **bare** (no prefix): the entry points that either run a single tool (`build`, `clean`) or aggregate a `prefix:*` family (`check`, `fix`, `test`, `watch`, `maintain`, `setup`), plus one convenience that composes across tiers: `verify` — composing `check` + `test:unit` into one whole-project correctness gate (it deliberately uses `test:unit` rather than `test` because `check` already runs `check:tsc`, so the type checker runs exactly once). Bare commands are how you invoke a tier; the `prefix:*` scripts are what those tiers are made of.
## Feedback tiers ## Feedback tiers
The tools are organized into a feedback ladder. Each tier catches different things at different costs; the rule of thumb is "earlier tiers fire more often, faster tiers catch less, slower tiers are more thorough": The tools are organized into a feedback ladder. Each tier catches different
things at different costs; the rule of thumb is "earlier tiers fire more often,
faster tiers catch less, slower tiers are more thorough":
| Tier | When | What it runs | Time | | Tier | When | What it runs | Time |
| -------------------------------- | ----------------------- | -------------------------------------------------------------------------------------------------------- | ----- | | -------------------------------- | ----------------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------- | ----- |
| `npm run watch` | manual | `watch:test` — re-runs tests on file save | ~0.1s | | `npm run watch` | manual | `watch:test` — re-runs tests on file save | ~0.1s |
| Pre-commit (auto) | on stage | tsc + oxlint + oxfmt + cspell (staged files only) | ~1.3s | | Pre-commit (auto) | on stage | tsc + oxlint + oxfmt + cspell (staged files only) | ~1.3s |
| Pre-push (auto) | on push | `npm test` (full tsc + unit tests) | ~3.5s | | Pre-push (auto) | on push | `npm test` (full tsc + unit tests) | ~3.5s |
@@ -56,45 +43,191 @@ The tools are organized into a feedback ladder. Each tier catches different thin
| `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 + 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 | Gitea release page (body from CHANGELOG) + `publish:publint` + `publish:attw`, then `npm publish` | ~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 |
### Why these splits? Before pushing, run `npm run verify` — the one-shot correctness gate. Run
`npm run maintain` only on a maintenance / update-deps branch. Why the splits
- **`watch:*` is a manual tier, not a hook.** The developer starts it on demand (it has to be killed with Ctrl-C) and it runs in a dedicated terminal pane. It sits as the earliest tier in the feedback ladder, catching failures the moment a file is saved — before staging, before commit. are where they are: [development/workflow.md § Feedback tiers](./development/workflow.md#feedback-tiers).
- **`check:tsc`, `check:oxlint`, `check:oxfmt`, `check:cspell`** are in pre-commit because they are fast (~0.2–0.5s each), fully offline, and naturally scope to staged files via the `LEFTHOOK_FILES` env var convention. They give instant feedback on what you typed.
- **`test` (and the `tsc` it includes) is in pre-push** because it runs the whole test suite across the whole project. The pre-commit `LEFTHOOK_FILES` convention doesn't apply to the test runner, so pre-commit isn't the right home. Pre-push runs after all commits are made but before the push leaves the machine, catching regressions that span multiple commits.
### Before pushing
Run `npm run verify` — the one-shot correctness gate in the table above. Run `npm run maintain` only on a maintenance / update-deps branch.
## Testing discipline (type-driven) ## Testing discipline (type-driven)
For this library the types _are_ the feature — narrowing, `exhaustive()` returns, the `Matcher<T>` contract — so a runtime-only test loop would verify the wrong thing. New behavior follows **type-driven development** (in Edwin Brady's sense): _treat the type as the plan for a program, and use the compiler and type checker as your assistant, guiding you to a complete program that satisfies the type_ ([idris-lang.org](https://www.idris-lang.org/)). Here that plan is the `expectTypeOf` assertion, written first. The loop is **type → red → green → refactor**: For this library the types _are_ the feature, so development is **type-driven**:
the compile-time expectation is written before the runtime assertion, and both
before the implementation. The loop is **type → red → green → refactor**:
1. **Type** — write the compile-time expectation first (`expectTypeOf(...).toEqualTypeOf<…>()`) and let `npm run check:tsc` fail on the _type_. The type error is the spec you want to hit before the runtime logic exists. 1. **Type** — write the compile-time expectation first
2. **Red** — add the matching runtime assertion (`assert.*`) so `npm run test:unit` now fails on behavior. (`expectTypeOf(...).toEqualTypeOf<…>()`) and let `npm run check:tsc` fail on
3. **Green** — implement in `src/*.ts` until both the type check and the test pass. the _type_. The type error is the spec you want to hit before the runtime
4. **Refactor** — with the type system and the tests as the safety net, then `npm run verify` as the definition-of-done gate. logic exists.
2. **Red** — add the matching runtime assertion (`assert.*`) so
`npm run test:unit` now fails on behavior.
3. **Green** — implement in `src/*.ts` until both the type check and the test
pass.
4. **Refactor** — with the type system and the tests as the safety net, then
`npm run verify` as the definition-of-done gate.
This is why every test in the suite pairs an `expectTypeOf(...)` with an `assert.*` — keep them together. Type-first is also enforced structurally: `npm test` runs `check:tsc` before the test runner, so a wrong type can never be papered over by a passing assertion. Per [AGENTS.md § Never do](./AGENTS.md#never-do), reach green honestly — fix the types so both the type check and the runtime assertion pass, never suppress the ones you can't make pass. Every test pairs an `expectTypeOf(...)` with an `assert.*`; keep them together.
Each test body follows **AAA (Arrange–Act–Assert)** with labeled blocks
separated by a blank line: `// Arrange` sets up the inputs (e.g. the matcher
factory), `// Act` exercises the subject once from them (not a second
throwaway call), `// Assert` holds every check — type expectations first,
runtime assertions last; an empty block drops its label (see
[development/testing.md § AAA ordering](./development/testing.md#aaa-ordering)).
Type-first is enforced structurally: `npm test` runs `check:tsc` before the
test runner, so a wrong type can never be papered over by a passing assertion.
Per [AGENTS.md § Never do](./AGENTS.md#never-do), reach green honestly — fix the
types, never suppress the checks you can't make pass. Full rationale:
[development/testing.md](./development/testing.md).
## Code style and formatting
`oxfmt` is the formatter and `oxlint` is the linter (with type-aware rules).
`npm run fix` resolves the fixable issues; `npm run check` verifies without
writing. Suppressions must be fixed at the root — do not add `oxlint-disable`
directives or `as` casts to force a green run (see
[AGENTS.md § Never do](./AGENTS.md#never-do)).
Suggested VSCode extensions are in
[.vscode/extensions.json](./.vscode/extensions.json); the project's formatter
and linter are wired up there. Toolchain decisions:
[development/tooling.md](./development/tooling.md).
## Commit messages
Gitmoji subject, imperative mood, 50/72 wrapping. The template is
[commit-message-template](./commit-message-template); `npm run setup`
(or `npm run setup:git-commit-message`) registers it as git's
`commit.template`. Examples and rationale:
[development/workflow.md § Commit messages](./development/workflow.md#commit-messages).
## Script prefix convention
Script names in `package.json` use a prefix that signals _when_ the script is
intended to run. A `<prefix>:<name>` script is implicitly aggregated by a
`<prefix>` script (if one exists) and run by the corresponding lefthook hook or
CI step. Pick the prefix that matches the script's lifecycle:
- `create:*` — front doors of the repo's own workflow; these mutate git state
rather than the source. `create:branch` opens a unit of work, `create:finish`
closes the branch half, `create:release` closes the release half
(maintainer-only). No bare `create` aggregator on purpose.
- `check:*` — read-only verification; never modifies files. Aggregated by
`npm run check`.
- `fix:*` — mutating counterpart of a `check:*` script. Aggregated by
`npm run fix`; the diff is the review surface.
- `test:*` — test scripts. `test` is the canonical entry point (`check:tsc` +
unit tests); `test:unit` skips the typecheck for fast local iteration;
`test:ci` adds c8 coverage.
- `watch:*` — long-running watchers for the manual inner dev loop. Aggregated by
`watch`.
- `maintain:*` — advisory repo-maintenance scans: read-only, but whole-project
and/or network-bound, so never a correctness gate. Aggregated by
`npm run maintain`.
- `publish:*` — validates the _publishable artifact_ (e.g. `dist/`) rather than
the source, so it needs a fresh build.
- `setup:*` — one-time configuration of a fresh clone; mutates the local
environment rather than the repo source, so it is never part of a hook or CI
step. Aggregated by `npm run setup`, run once after cloning.
A new script must reuse an existing prefix. If none fits, that's a signal the
script doesn't belong in the pipeline — not a reason to invent a new prefix. If
it genuinely does belong, add the prefix to this list in the same commit as its
first member; an undocumented prefix becomes invisible and quietly accrues
members. Why `create:` exists, the rejected names, and the design of the bare
scripts: [development/workflow.md § Script prefix convention](./development/workflow.md#script-prefix-convention).
## Rules the tools don't enforce
CI and review will bounce these even though `npm run check` and the linters
don't catch them. They're the high-frequency things a contributor (or an agent)
reaches for by default:
- **Source imports use `.ts` extensions, never `.js`.** `node --strip-types`
only resolves the `.ts` form at test time; "pre-fixing" an import to `.js`
breaks the inner loop. (why:
[development/tooling.md](./development/tooling.md#source-imports-use-ts-extensions))
- **A new `npm run` script must reuse an existing prefix.** See
[Script prefix convention](#script-prefix-convention).
- **`oxlint-disable` directives live in source, not `.oxlintrc.json`.** The
trade-off must sit next to the code it silences. This is a _human_ last-resort
convention; agents must not add these — see
[AGENTS.md § Never do](./AGENTS.md#never-do). (why:
[development/tooling.md](./development/tooling.md#oxlint-disable-directives-live-next-to-the-code))
- **Don't put slow / network / whole-project scans in `check` or pre-commit.**
Advisory scans are not correctness gates; they belong under `maintain:`. (why:
[development/workflow.md](./development/workflow.md#feedback-tiers))
- **New work starts with `npm run create:branch`, never a hand-written
`git switch -c` / `git checkout -b`.** The command carries the branch
precondition; branching around it skips the clean-tree, current-`main` and
green-baseline checks, and the skip is invisible until a failure can no longer
be attributed. (why:
[development/workflow.md](./development/workflow.md#branching-model))
- **Work is merged back with `npm run create:finish`, never a hand-written
`git merge`.** The command carries the merge-side preconditions (clean tree,
current `main`, a `feature/`/`fix/`/`chore/` branch) and runs `npm run verify`
after the merge, so a merge cannot land unverified. (why:
[development/workflow.md](./development/workflow.md#branching-model))
- **There is no local `npm run publish`, and `publish:publint` / `publish:attw`
don't go in `check`.** (why:
[development/publishing.md](./development/publishing.md#ci-only-publishing))
- **A branch ends with a changelog note:** before `npm run create:finish`,
summarize the work under `[Unreleased]` in [CHANGELOG.md](./CHANGELOG.md).
(why:
[development/workflow.md](./development/workflow.md#changelog-notes))
- **A decision or its rationale belongs in `development/`, not here.** This file
holds the actionable rule; `development/<category>.md` holds why, the rejected
alternatives and the known issues. When you change a rule, update its category
file in the same commit and cross-link the two. (why:
[development/README.md](./development/README.md))
- **Prose in `development/` is extremely concise.** When adding or changing a
decision, write fragments if needed — sacrifice grammar for concision. (why:
[development/README.md § Decision blocks](./development/README.md#decision-blocks))
## Branching model ## Branching model
**GitHub Flow (single-developer).** Every change — feature, fix, refactor — branches off `main` and is merged back via a local commit (no PR workflow on Gitea yet). Collaborative review via Gitea UI is not in place — Gitea is the lab; when something is tested and ready for production it will be promoted to GitHub. **GitHub Flow (single-developer).** Every change — feature, fix, refactor —
branches off `main` and is merged back via a local commit. There is no pull
request workflow on Gitea yet.
- **Base branch:** `main` - **Base branch:** `main`
- **Branch naming:** `feature/<desc>` / `fix/<desc>` / `chore/<desc>` - **Branch naming:** `feature/<desc>` / `fix/<desc>` / `chore/<desc>`
- **Starting work:** `npm run create:branch -- <prefix>/<desc>`. It refuses, without changing anything, unless the working tree is clean (untracked files included), no merge/rebase/cherry-pick is in progress, `main` matches its upstream, and `npm run test` is green on `main` — so a later failure is always attributable to your edits. The prefix is still _your_ call, inferred from the task; the script validates it rather than guessing it. - **Starting work:** `npm run create:branch -- <prefix>/<desc>`. It refuses,
- **Merging:** `npm run create:finish` (on the branch). It asserts the same clean-tree / no-operation / current-`main` preconditions, fast-forwards a stale `main` (a true divergence is refused), merges the branch `--no-ff`, runs `npm run verify`, and deletes the branch only after the merge is green. The push is deliberately left to `create:release`, so the merge stays local and reviewable — read the diff yourself before finishing. without changing anything, unless the working tree is clean, no
- CI runs `npm run check` + `npm run test:ci` on every push to `main` — this is the authoritative gate. The one exception: a push headed by a release commit (`:bookmark: Release x.y.z`) skips the full `build`/`maintain` jobs, because `create:release` pushes the tag for that exact commit right after and the tag run is the authoritative one (see `release-gate` in [.gitea/workflows/ci.yml](./.gitea/workflows/ci.yml)). merge/rebase/cherry-pick is in progress, `main` is not behind its upstream
- **Releases are NOT triggered by pushes.** Only the maintainer triggers a release (see [Publishing workflow](#publishing-workflow)). (a local merge not yet pushed is fine — the push belongs to `create:release`),
and `npm run test` is green on `main`. The prefix is _your_ call, inferred from
the task; the script validates it rather than guessing it.
- **Merging:** `npm run create:finish` (on the branch). It re-asserts the same
preconditions, merges `--no-ff`, runs `npm run verify`, and deletes the branch
only after the merge is green. The push is left to `create:release`, so the
merge stays local and reviewable.
- CI runs on every push to `main` — see [Feedback tiers](#feedback-tiers) and
[.gitea/workflows/ci.yml](./.gitea/workflows/ci.yml).
- **Releases are NOT triggered by pushes.** Only the maintainer triggers a
release; see [Publishing](#publishing).
## Publishing workflow Full rationale, including the front-door decisions:
[development/workflow.md § Branching model](./development/workflow.md#branching-model).
Publishing is CI-only by policy. Local `npm publish` is not supported. The maintainer triggers releases from `main`: ## Submitting changes
1. All intended changes are merged to `main` and passing CI. There is no pull request workflow on Gitea yet, so a contribution is submitted
2. The maintainer runs `npm run create:release`. VS Code opens `CHANGELOG.md` to finalize the `[Unreleased]` notes; because pubv refuses a dirty tree, any edit is committed first (then folded into the release commit), and pubv's interactive prompt suggests a version from those notes — the maintainer confirms or edits it. as a branch that is merged locally:
3. `scripts/release.sh` creates a single release commit (graduated changelog + package.json bump, amended into one commit), tags it, and pushes everything to Gitea.
4. CI fires on both pushes: the `publish` job runs on the tag (`build` + publish-tier checks + release page + `npm publish`), while the branch run's `release-gate` job recognizes the release commit and skips `build`/`maintain` — the tag verifies the identical SHA, so no work is duplicated. The job graph lives in [.gitea/workflows/ci.yml](./.gitea/workflows/ci.yml) — keep that file, not this list, as the source of truth. The publish-tier checks must pass before the artifact is published. The `publish` job also creates the Gitea release page from the matching Keep-a-Changelog section (`scripts/release-notes.sh`); it runs _before_ `npm publish` so a broken page fails CI without consuming a version, and `npm publish` stays the last step. 1. `npm run create:branch -- <prefix>/<desc>`.
2. Commit your work (one or more commits, per the tests and style rules above).
3. `npm run verify` — the definition of done.
4. Add a changelog note under `[Unreleased]` (see
[Rules the tools don't enforce](#rules-the-tools-dont-enforce)).
5. `npm run create:finish` to merge the branch into `main` and verify the
result.
6. Present a handover for review. Once there are no further objections, the
maintainer pushes.
When the project is promoted to GitHub, this step becomes a normal pull request
against `main`.
## Publishing
Publishing is maintainer-only and CI-only. See
[development/publishing.md](./development/publishing.md).
+21 -55
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@@ -2,68 +2,34 @@
Pattern matching for TypeScript/ESM environments (F#-style, not regex). Pattern matching for TypeScript/ESM environments (F#-style, not regex).
## Development ## Description
- **Build:** `npm run build` `tiny-pattern-ts` brings F#-style pattern matching to TypeScript. Patterns are
- **Test:** `npm run test`, `npm run test:ci` ordinary objects whose `matches` method is a TypeScript type guard, so narrowing
- **Watch:** `npm run watch` composes the way any other guard does. It is deliberately not a regex engine and
- **Checks:** `npm run check`, `npm run fix` not a macro: there is no transpiler and no DSL to learn, and the type-level
- **Verify:** `npm run verify` — the definition of done contract is the feature — see [development/library.md](./development/library.md)
- **Maintenance:** `npm run maintain` — advisory only for the design decisions and the known limitations.
- **Individual fixes:** `npm run fix:oxfmt`, `npm run fix:oxlint`
What each tier runs, when it fires and what it costs: ## Requirements
[CONTRIBUTING.md § Feedback tiers](./CONTRIBUTING.md#feedback-tiers). How the
`prefix:` in a script name is chosen:
[§ Script prefix convention](./CONTRIBUTING.md#script-prefix-convention).
### Tooling - **Node.js >= 26** (`engines` field; pinned via `.node-version`).
- **TypeScript >= 5.0** to consume the published declarations. The emitted `.d.ts`
use `const` type parameters (TS 5.0) and keep their relative `.ts` specifiers;
both resolve on TS >= 5.0 in `node10` / `node16` / `nodenext` / `bundler`.
- The package is **ESM-only** (no CommonJS shim).
- **TypeScript 7** — type checker and build (`tsc`). ## API
- **node --test** + `--strip-types` — test runner.
- **c8** — code coverage for `test:ci`.
- **oxlint** — Rust-based linter, with type-aware rules powered by **oxlint-tsgolint** (typescript-go).
- **oxfmt** — Rust-based formatter (Prettier-compatible). Formats JS/TS, JSON/JSONC, YAML, Markdown, MDX, and more; built-in `package.json` key sorting replaces `sort-package-json`.
- **cspell** — spell checking.
- **knip** — finds unused dependencies, exports, and files.
- **check-outdated** — reports dependencies behind the registry; it exits non-zero whenever _any_ dependency is outdated.
- **publint** — validates `package.json` for ESM publishing correctness.
- **@arethetypeswrong/cli** (`attw`) — validates `.d.ts` declarations against multiple module-resolution scenarios.
- **lefthook** — git hooks.
- **@spences10/pi-lsp** — read-only LSP code intelligence for AI coding agents (project-local `.pi/settings.json`). Talks to this repo's TypeScript 7 via `tsc --lsp --stdio`.
Each tool's configuration trade-off is recorded in [Tooling decisions](#tooling-decisions); when it runs is in [CONTRIBUTING.md § Feedback tiers](./CONTRIBUTING.md#feedback-tiers). Yet to be implemented
### Tooling decisions ## License
The choice and configuration of each tool above is the result of deliberate trade-offs, not defaults. The non-obvious ones: MIT © 2025 tmu. See [LICENSE](./LICENSE).
- **`tsconfig.json` extends `@tsconfig/strictest` + `@tsconfig/node26`**; `tsconfig.build.json` extends it to add the emit-only options (`declaration`, `sourceMap`, `inlineSources`, `outDir`, `target: es2024`, `rewriteRelativeImportExtensions: true`) and to exclude test files. `inlineSources` embeds the original TypeScript in `dist/*.js.map`, so debuggers can map into `src/` without it being shipped; `declarationMap` is intentionally off because a `.d.ts.map` cannot embed source and would dangle. This separation lets the editor and CI type-check from one config while the build emits from the other.
- **`npm run build` first runs a `prebuild` hook that empties `dist/`.** `tsc` does not prune orphaned emit output — dropping `declarationMap`, for example, left stale `*.d.ts.map` files behind — so the build must start from an empty `dist/` to be reproducible. `prebuild` removes only `dist`; the manual `clean` still resets `dist` + `coverage`, so a local coverage report survives a build.
- **Source imports use `.ts` extensions** so `node --strip-types` resolves them at test time. `rewriteRelativeImportExtensions: true` in `tsconfig.build.json` rewrites them to `.js` in the emitted JavaScript; the emitted `.d.ts` keep the `.ts` specifier, which TypeScript >= 5.0 resolves (see [Requirements](#requirements)), so no post-processing step is needed.
- **Type-aware oxlint is enabled declaratively** via `options.typeAware: true` in `.oxlintrc.json` (powered by `oxlint-tsgolint`). The script commands stay clean — no CLI flag — and type-aware mode is a property of the config, not the invocation.
- **Source-level `oxlint-disable` directives** are used for known type-aware false positives (see `src/pattern.ts`, `src/match.ts`, `src/index.test.ts`). The disable lives next to the code it silences, not in `.oxlintrc.json`, so the trade-off is visible to anyone reading the source.
- **`knip --include dependencies,exports,files`** intentionally omits the `types` category, which produces systematic false positives for libraries whose exported types are part of the public API. The targeted scope keeps the signal high without config-file boilerplate.
- **`attw --profile esm-only`** is semantically correct: this package is intentionally ESM-only (no CommonJS shim), so CJS resolution scenarios are out of scope by design, not a bug.
- **`check:tsc` runs first** in the `npm run check` chain so a type error short-circuits the rest (faster feedback than letting oxlint/oxfmt run and then failing on tsc at the end).
- **The pre-commit hook sets the `LEFTHOOK_FILES` env var** to the staged-files list, and the affected scripts use `${LEFTHOOK_FILES:-<default>}` to default to the whole project when invoked manually. This keeps `package.json#scripts` as the single source of truth for the underlying commands — `lefthook.yml` only describes _what to run on which files_.
- **`tslib` and `type-fest` are deliberately not used.** `tslib` is a runtime helper for old ES3/ES5 targets (the project targets ES2024); `type-fest` was never imported. knip caught both.
- **`@spences10/pi-lsp` is pinned to `0.0.46` and is read-only by design.** The package inspects `node_modules/typescript`, sees major ≥ 7 with no `lib/tsserver.js` (true of the `typescript-go` / `tsgo` port), and spawns the repo's own `tsc --lsp --stdio` binary — no `typescript-language-server` dependency is required. Earlier releases (`≤ 0.0.10`) hard-wire to `typescript-language-server --stdio` and are TS6-only. The tool is _intermediate_ agent feedback (hover, references, definition, symbols, diagnostics); it has no rename / code-action / apply-edit surface, and never a correctness gate — `npm run check` / `verify` remain that. `.pi/settings.json` is the shared, committed declaration; `.pi/npm/` is a gitignored install cache that pi recreates automatically on a trusted startup (it runs `npm install` for any missing project package), so the cache is deliberately not tracked.
### Requirements
- Node.js >= 26 (engines field; pinned via `.node-version`).
- TypeScript >= 5.0 to consume the published declarations. The emitted `.d.ts` use `const` type parameters (TS 5.0) and keep their relative `.ts` specifiers; both resolve on TS >= 5.0 in `node10`/`node16`/`nodenext`/`bundler`.
## VSCode integration
- Recommended extensions: see `.vscode/extensions.json` (oxc, cspell, TypeScript native-preview, EditorConfig, todo-tasks).
- TypeScript 7 is used via the `typescriptteam.native-preview` extension.
- oxc extension provides oxlint squiggles and oxfmt format-on-save; `.vscode/settings.json` pins it per language so a user's local `[language]` formatter settings cannot override the project's choice.
## Contributing ## Contributing
For maintainer and contributor docs — the script prefix convention, the feedback-tier system, the rules the tools don't enforce, and the publishing workflow — see [CONTRIBUTING.md](./CONTRIBUTING.md). AI coding agents: your entry point is [AGENTS.md](./AGENTS.md), which points back to CONTRIBUTING.md. Contributions are documented in [CONTRIBUTING.md](./CONTRIBUTING.md); the
reasons behind the project's decisions, rejected alternatives, and known issues
- Commit signing (GPG). live in [development/](./development/README.md). AI coding agents start at
- Type-only tests use `expect-type`'s `expectTypeOf(...)` inside `node --test` cases. [AGENTS.md](./AGENTS.md).
+23 -10
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@@ -5,9 +5,18 @@ Backlog and tracking for tiny-pattern-ts. Managed in vscode-todotasks format.
--- ---
Setup: Setup:
✔ Add gitea release page in CI @high @done ☐ Split off template into separate package => pi --session 01a07dde-7050-7054-bb36-1606d7eb2bc3 @low
☐ Manually verify the Gitea release page on a real tag push (needs main) @high ✔ straighten oxc rules @done
☐ Split off template into separate package => pi --session 01a07dde-7050-7054-bb36-1606d7eb2bc3 @high ✔ 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
@@ -15,27 +24,31 @@ v1.0:
☐ 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
☐ Achieve 100% branch coverage on `src/pattern.ts` ☐ Achieve 100% branch coverage on `src/primitive.ts`
☐ Achieve 100% branch coverage on `src/match.ts`
☐ Achieve 100% branch coverage on `src/index.ts` ☐ Achieve 100% branch coverage on `src/index.ts`
Bugs: Bugs:
Enhancements: Enhancements:
☐ Allow boolean literals in primitive union patterns (e.g. `true: () => "yes"`) @medium
☐ Are there other primitive types that should be supported in union patterns? (e.g. `bigint`, `symbol`) @medium
Documentation: Documentation:
☐ Add usage examples to README.md ☐ Bring README.md back to its previous form — synopsis and examples restored, in the correct place
→ previous section order: title, tagline, Synopsis, Description, Requirements, Examples, API, License, Contributing
→ previous Examples order: literal/exhaustive, typeof, structural/discriminated unions, when, any
☐ Create `examples/` directory with runnable snippets ☐ Create `examples/` directory with runnable snippets
☐ Add comparison section vs. other TS pattern-matching libs ☐ 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
☐ 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
✔ Add a minimal dir-listing webserver to the gitea docker setup (e.g. caddy `file_server browse` reusing the existing reverse proxy, or any single-binary static server, lipanski/docker-static-website) @done (9/13/2026, 9:02:37 PM)
✔ drop the `actions/upload-artifact` coverage step in favour of the shared-dir layout @done (9/13/2026, 10:37:22 PM)
☐ 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
☐ Manually verify the coverage was created on a real tag push (needs main) @low
→ design: no deploy step in CI; the webserver just exposes the shared directory (decided over Gitea Pages / Codecov — neither confirmed available/ wanted) → design: no deploy step in CI; the webserver just exposes the shared directory (decided over Gitea Pages / Codecov — neither confirmed available/ wanted)
☐ serve docs over self hosted server @low ☐ serve docs over self hosted server @low
☐ Add a minimal dir-listing webserver to the gitea docker setup for serving docs (reuse existing reverse proxy) ☐ Add a minimal dir-listing webserver to the gitea docker setup for serving docs (reuse existing reverse proxy)
+10 -1
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@@ -27,6 +27,14 @@
"knope", "knope",
"runwisp", "runwisp",
"glab", "glab",
"hostedtoolcache",
"nodebase",
"frontends",
"catthehacker",
"nsnull",
"dedup",
"dedupe",
"repoint",
"postversion", "postversion",
"prebuild", "prebuild",
"Zilla", "Zilla",
@@ -34,7 +42,8 @@
"bestikk", "bestikk",
"silverwind", "silverwind",
"idris", "idris",
"todotasks" "todotasks",
"connor"
], ],
"ignorePaths": ["dist", "node_modules", "coverage", "*.svg", ".gitignore"] "ignorePaths": ["dist", "node_modules", "coverage", "*.svg", ".gitignore"]
} }
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@@ -0,0 +1,81 @@
# Development documentation
Why this project works the way it does: the decisions, what was rejected, and
the shortcomings and known issues we carry. Written for maintainers and
contributors.
The actionable rules — setup, running, testing, submitting — live in
[CONTRIBUTING.md](../CONTRIBUTING.md). **Each fact is written once**: the rule
there, the reason here; neither restates the other, and where a fact is useful
in both they link. Read the relevant file before changing an area, and when a
rule changes update its rationale here in the same commit.
User-facing documentation is [README.md](../README.md). `docs/` is deliberately
unused: that name is reserved for the future user documentation site, and
deploying it is out of scope. These files are not part of that site.
## Layout
One file per category:
| File | Covers |
| -------------------------------- | ----------------------------------------------------------------------- |
| [library.md](./library.md) | Public API design, the type-level contract, and its limitations |
| [workflow.md](./workflow.md) | Branching and merging, script prefixes, feedback tiers, commit messages |
| [tooling.md](./tooling.md) | Toolchain choices and configuration, editor setup |
| [testing.md](./testing.md) | Test strategy and type-driven development |
| [ci.md](./ci.md) | CI pipeline, runner image, coverage serving |
| [publishing.md](./publishing.md) | Release and npm publishing |
We start with one file per category so each area stays small enough to hold in
mind; a category that outgrows it becomes a folder with an index, and the links
in CONTRIBUTING.md and README.md point at the category, not a single decision.
## Decision blocks
Record every non-obvious choice as a block in the relevant category file:
```md
## Runner image
#### Decision (2026-09)
Bake Node into the CI job image at the setup-node tool-cache layout instead
of downloading per job.
#### Why
- ...
#### Rejected
- Gitea Pages / per-job download
- force-pull
#### Known issue
- a Dockerfile-only change re-pushed under an unchanged tag is invisible to the runner
- recover with `docker rmi <image>`
```
- The date is the month the decision was made, not when the file was edited —
the anchor for "current" versus "was current once".
- `Rejected` stops the project re-litigating the same alternatives; an empty one
usually means they were never written down.
- `Known issue` is where shortcomings live. A caveat not tied to one decision
goes under a `## Known issues` section at the end of the file.
- Replace a superseded decision in place rather than archiving it; git history
is the archive.
- Terse is the point: humans skim and agents imitate the style already in the
file, so verbosity compounds edit over edit. Grammar loses to density here on
purpose.
## Adding to these docs
1. Pick the category: `library`, `workflow`, `tooling`, `testing`, `ci`,
`publishing`.
2. Add or update a decision block; keep existing text unless the decision
changed.
3. If an actionable rule changes, update
[CONTRIBUTING.md](../CONTRIBUTING.md) in the same commit and cross-link.
Never change a rule there without updating its rationale here.
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# CI
[.gitea/workflows/ci.yml](../.gitea/workflows/ci.yml) is the source of truth for
the job graph; this file records why it is shaped the way it is.
## Pipeline
- **`build`** (push to `main` / tag) — build + correctness + packaging.
- **`maintain`** (push to `main`, non-blocking) — `npm run maintain`; reports,
never fails the build.
- **`publish`** (tag) — packaging checks + `publish:publint` / `publish:attw`,
then the Gitea release page and `npm publish` (see
[publishing.md](./publishing.md)).
- **`release-gate`** — on a `:rocket: Release x.y.z` commit it skips
`build`/`maintain`, because `create:release` pushes the tag for the same commit
right after and the tag run is authoritative. It uses no Node and stays on the
default image.
## Runner image
#### Decision (2026-09)
`build` / `maintain` / `publish` run in `gitea.e1nsnull.de/tmu/act-ci:<version>`
([docker/Dockerfile](../docker/Dockerfile)): the default act image with Node
overlaid at the exact `/opt/hostedtoolcache` layout `actions/setup-node` probes.
#### Why
- No job pays the ~50 MB Node fetch, because the probe hits the baked entry.
- The tag must equal the exact [.node-version](../.node-version) pin, and the
image is rebuilt only as part of a Node bump — there is no other trigger.
- Building needs a docker daemon and registry credentials, so it belongs to no
feedback tier. That is why it is **not** an `npm run` script: no
[prefix](./workflow.md#script-prefix-convention) fits, and that is the signal.
#### Rejected
- Downloading Node in every job — the ~50 MB fetch was the original problem.
- Caching Proxy (Squid or similar) — adds complexity to global setup
- Mounting the tool cache - No invalidation will fill the cache with stale versions
## Bumping Node
Bumping Node is one coordinated change, committed as a unit:
1. Edit [.node-version](../.node-version) to the exact `x.y.z` — floats like `26`
resolve to the latest patch at runtime and bust the baked entry, so
[scripts/runner-image.sh](../scripts/runner-image.sh) refuses them.
2. `docker login gitea.e1nsnull.de` (user + package/access token), then
`./scripts/runner-image.sh --push`, which reads the version and pushes
`<IMAGE_REPO>:<version>`.
3. Repoint the three `container.image` tags in
[.gitea/workflows/ci.yml](../.gitea/workflows/ci.yml) to that version.
Skipping step 2 fails CI at image pull; skipping step 3 silently reverts to the
per-job download.
## Image invariants
For the `setup-node` probe to hit, two things must hold — both easy to break:
### The `x64.complete` marker
#### Decision (2026-09)
Bake a `<version>/<arch>.complete` marker next to the Node directory.
#### Why
- `actions/tool-cache` accepts a cached tool only when
`<version>/<arch>.complete` exists beside it (`tc.find()` checks). A bare
`node/<version>/x64/` is ignored and the download happens anyway. See the
comment in [docker/Dockerfile](../docker/Dockerfile).
### Tag freshness, with force-pull deliberately off
#### Decision (2026-09)
Leave `act_runner`'s `force_pull` disabled.
#### Why
- The tag encodes only the Node version, and the image is rebuilt only when that
changes — so the normal flow always yields a new tag and the runner pulls it.
- Forcing a pull re-pulls the image on every job for no benefit.
#### Rejected
- Enabling `force_pull`: it is acceptable to miss a runner-side image change,
and a `Dockerfile`-only change is not worth a per-job pull.
#### Known issue
- A `Dockerfile`-only change (like the marker above) re-pushed under an
unchanged tag is invisible to the runner, which keeps the old image while the
registry shows the new digest. Remove the stale tag on the runner host
(`docker rmi gitea.e1nsnull.de/tmu/act-ci:<version>`); do not reach for
force-pull.
## Coverage serving
#### Decision (2026-09)
Serve CI coverage from a shared directory on the runner, with no deploy step in
CI.
#### Why
- The webserver exposes the shared directory and the Gitea docker setup reuses
the existing reverse proxy — no upload artifact, no external service.
- Coverage is written to a shared volume keyed by project and tag (for example
`/docs/tiny-pattern-ts/<tag>/`).
#### Rejected
- Gitea Pages and Codecov: neither was confirmed available or wanted.
#### Known issue
- Coverage is served for tag pushes only; non-tag pushes (for example
`main/coverage`) are tracked separately.
[scripts/precompress.ts](../scripts/precompress.ts) emits `.br` / `.gz` / `.zst`
sidecars next to text assets. The Gitea pages service (`static-web-server` with
`SERVER_COMPRESSION_STATIC=true`) serves the sidecar matching `Accept-Encoding`
and falls back to the original.
#### Decision (2026-09)
Precompress into sidecars rather than per request.
#### Why
- The assets are static and change only on deploy, so the work is paid once.
- Images, fonts and archives are already compressed; a sidecar would only grow
them, so only text extensions are emitted.
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# Library design
The type-level design of the public API and the limitations it carries. The
user-facing reference is [README § API](../README.md#api).
Currently the library is placeholder code.
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# Publishing
Publishing is CI-only: local `npm publish` is not supported, and the maintainer
triggers releases from `main`. The mechanics are in
[scripts/release.sh](../scripts/release.sh) and
[scripts/release-notes.sh](../scripts/release-notes.sh); the job graph is
[.gitea/workflows/ci.yml](../.gitea/workflows/ci.yml).
## Release steps
1. All intended changes are merged to `main` and passing CI.
2. The maintainer runs `npm run create:release`. VS Code opens
[CHANGELOG.md](../CHANGELOG.md) to finalize the `[Unreleased]` notes; because
pubv refuses a dirty tree, the edit is committed first (then folded into the
release commit), and pubv suggests a version from those notes to confirm or
edit.
3. `scripts/release.sh` creates one release commit (graduated changelog +
`package.json` bump, amended together), tags it, and pushes.
4. CI fires on both pushes. `publish` runs on the tag (build + publish checks +
release page + `npm publish`), while `release-gate` recognizes the release
commit and skips `build`/`maintain`: the tag verifies the identical SHA, so no
work is duplicated. The publish checks pass before the artifact is published,
and the release page is created from the matching Keep-a-Changelog section
_before_ `npm publish`, so a broken page fails CI without consuming a version
and `npm publish` stays the last step.
## CI-only publishing
#### Decision (2026-09)
Releases are cut by CI from `main`; there is no local `npm publish` and no
`publish:*` script in the `check` chain.
#### Why
- The tag is the artifact marker: CI verifies the exact commit it points at, so
a local publish could ship something the tag does not describe.
- `publish:publint` / `publish:attw` validate the _publishable artifact_, which
needs a fresh build; they are not source-correctness checks and do not belong
in `check`.
## The release commit is assembled from two tools
#### Decision (2026-09)
`create:release` uses `pubv` for the changelog graduation and bump heuristic,
then `npm version` for the `package.json` + lockfile bump, amended into a single
release commit.
#### Why
- We want hand-written Keep-a-Changelog notes, an `[Unreleased]` ->
`## [x.y.z] - DATE` graduation, and a tag on the exact commit that gets
published — and no single tool did both the graduation and the `package.json`
bump.
- Split by strength: `pubv` (tiny, changelog-driven) owns preflight, the
interactive major/minor/patch heuristic, and graduating and committing
`CHANGELOG.md` (no tag, no push); `npm version` syncs `package.json` + the
lockfile; `--amend` folds them into one commit; the tag is created _after_ the
amend so it is never orphaned.
- The notes are finalized _before_ pubv because its bump heuristic reads the
`[Unreleased]` body — editing afterwards would inform the changelog only, not
the version. The staging commit that satisfies pubv's clean-tree check is
folded back into the single release commit.
#### Rejected
- The conventional-commits family: the history is gitmoji, not Conventional, and
the notes are hand-written (see
[workflow.md § Commit messages](./workflow.md#commit-messages)).
- `changesets` / `rtk`: config plus a heavier flow that fights the CI-only
publish.
- `knope` / `kacl` / `bestikk`: changelog-only (no `package.json` bump) and
5-year / 2-year / brand-new maintenance.
- `pubv` alone: it never writes `package.json`.
- `versions` (silverwind): good Gitea support, but pairing it with a hand-rolled
promote became a ~180-line script, which this ~30-line version replaces.
## The version has one source of truth
#### Decision (2026-09)
The version is derived from the graduated `## [x.y.z]` heading in
[CHANGELOG.md](../CHANGELOG.md) and written to `package.json` +
`package-lock.json` by `npm version`.
#### Why
- `release.sh` reads the version from the changelog, so the changelog is the
input and `package.json` the derived copy — one direction, no drift.
#### Rejected
- A `## Version` line in the README: it makes `release.sh` responsible for a
third file.
- Linking `package.json` from the README: it invites a hand-maintained duplicate
the link does not keep in sync.
## Release notes are extracted from the changelog
#### Decision (2026-09)
`scripts/release-notes.sh <tag>` prints the Keep-a-Changelog section for the tag
and exits non-zero when it is missing.
#### Why
- CI reuses the release body from the same file that drove the version, so the
page and the changelog cannot disagree.
- Failing on a missing section means a release can never publish an empty body.
A leading `v` is tolerated so both `v1.2.3` and `1.2.3` match `## [1.2.3]`.
## Token gates
#### Decision (2026-09)
The Gitea release page uses the run's automatic token (`github.token`).
`npm publish` is gated on `NPM_TOKEN`, lifted into job-level `env`. A final
`always()` step fails the job unless both halves reported `success`.
#### Why
- The automatic token needs only `contents: write`, so the release page needs no
secret gate.
- `secrets` is not allowed in a step `if`, so `NPM_TOKEN` must be lifted into
job-level `env`; an unset secret then skips the publish instead of attempting
an unauthenticated one.
- A tag is all-or-nothing: without the `always()` guard a skipped or failed npm
half would leave the job silently green. The guard turns it red.
Set `NPM_TOKEN` (npm publish rights) under Settings -> Actions -> Secrets.
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# Testing
For this library the types _are_ the feature, so a runtime-only test loop would
verify the wrong thing. The commands are in
[CONTRIBUTING.md](../CONTRIBUTING.md); this file records why the loop is shaped
the way it is.
## Type-driven development
The rules — the loop and the pairing rule — are in
[CONTRIBUTING.md § Testing discipline (type-driven)](../CONTRIBUTING.md#testing-discipline-type-driven).
What follows is why and what was rejected.
#### Decision (2026-09)
The compile-time expectation is written before the runtime assertion, and both
before the implementation.
#### Why
- A runtime-only test can pass while the type is wrong, so a type-level library
would ship a broken feature its tests bless.
- The type error is a more precise spec than a failing assertion, because it
states the exact expected type before the logic exists.
#### Rejected
- Runtime-first (classic red/green): it verifies the value, not the contract,
and the contract is the product.
- Testing the type only: it would not catch handler dispatch or the `_`
fallback (see `src/primitive.test.ts`).
The runner is `node --test --strip-types "src/**/*.test.ts"` and the tiers are in
[CONTRIBUTING.md § Development commands](../CONTRIBUTING.md#development-commands).
`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
[tooling.md](./tooling.md#source-imports-use-ts-extensions)).
## AAA ordering
The rule is in
[CONTRIBUTING.md § Testing discipline (type-driven)](../CONTRIBUTING.md#testing-discipline-type-driven).
#### Decision (2026-09)
Test bodies read arrange → act → assert: inputs (the factory) set up first, the
subject exercised once from them, all checks last — types then runtime. The
blocks are labeled with `// Arrange` / `// Act` / `// Assert` comments and
separated by a blank line; an empty block drops its label.
#### Why
- Interleaved setup/checks hide what runs vs. what is observed; the eye
re-reads the block to find the seams.
- A factory built mid-test invites a second throwaway call of the subject;
arranging it once makes the positive construction and the negative
`Parameters<…>` check share one source of truth.
- Labels make the seams explicit, not inferred — grep-able and reviewable
without reading the statements.
#### Rejected
- Unlabeled ordering (bare blank lines): the seams still have to be found by
reading; the labels cost nothing.
## Known issues
- The type-aware linter misidentifies `expectTypeOf()` as a floating promise, so
test files that use it (`src/primitive.test.ts`) carry a
file-level `oxlint-disable
typescript/no-floating-promises` with an explanatory comment. It is a known
false positive, not a rule worth disabling project-wide (see
[tooling.md § oxlint-disable directives live next to the code](./tooling.md#oxlint-disable-directives-live-next-to-the-code)).
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# Tooling
Every tool below was chosen and configured deliberately. The commands a
contributor runs are in [CONTRIBUTING.md](../CONTRIBUTING.md) and the versions
in [package.json](../package.json).
## Tool inventory
- **TypeScript 7** — type checker and build (`tsc`).
- **node --test** + `--strip-types` — test runner.
- **c8** — coverage for `test:ci`.
- **oxlint** — Rust linter, type-aware via **oxlint-tsgolint** (typescript-go).
- **oxfmt** — Rust formatter (Prettier-compatible) for JS/TS, JSON/JSONC, YAML,
Markdown, MDX, and more; its `package.json` key sorting replaces
`sort-package-json`.
- **cspell** — spell checking.
- **knip** — unused dependencies, exports, and files.
- **check-outdated** — dependencies behind the registry; exits non-zero when any
is outdated.
- **publint** — validates `package.json` for ESM publishing.
- **@arethetypeswrong/cli** (`attw`) — validates `.d.ts` against module-resolution
scenarios.
- **lefthook** — git hooks.
- **@spences10/pi-lsp** — read-only LSP code intelligence for AI agents
(project-local `.pi/settings.json`); talks to this repo's TypeScript 7 via
`tsc --lsp --stdio`.
When each runs is in
[CONTRIBUTING.md § Feedback tiers](../CONTRIBUTING.md#feedback-tiers).
## TypeScript and build
### One type-check config, one emit config
#### Decision (2026-09)
`tsconfig.json` extends `@tsconfig/strictest` + `@tsconfig/node26`.
`tsconfig.build.json` adds the emit-only options (`declaration`, `sourceMap`,
`inlineSources`, `outDir`, `target: es2024`,
`rewriteRelativeImportExtensions: true`) and excludes test files.
#### Why
- The editor and CI type-check from one config while the build emits from the
other, so a test file cannot leak into `dist/`.
- `inlineSources` embeds the original TypeScript in `dist/*.js.map`, so
debuggers map into `src/` without it being shipped.
- `declarationMap` stays off: a `.d.ts.map` cannot embed source and would
dangle.
### The build starts from an empty `dist/`
#### Decision (2026-09)
`npm run build` runs a `prebuild` hook that empties `dist/`.
#### Why
- `tsc` does not prune orphaned emit output — dropping `declarationMap` left
stale `*.d.ts.map` files — so reproducibility needs an empty `dist/`.
- `prebuild` removes only `dist`; the manual `clean` resets `dist` + `coverage`,
so a local coverage report survives a build.
### Source imports use `.ts` extensions
#### Decision (2026-09)
Source imports use `.ts`, never `.js`.
#### Why
- `node --strip-types` resolves the `.ts` form at test time.
- `rewriteRelativeImportExtensions` rewrites them to `.js` in the emitted
JavaScript.
- The emitted `.d.ts` keep the `.ts` specifier, which TypeScript >= 5.0 resolves
(see [README § Requirements](../README.md#requirements)), so no
post-processing step is needed.
#### Rejected
- "Pre-fixing" an import to `.js`: it breaks the inner `node --strip-types`
loop.
## Linting and formatting
### Type-aware oxlint is a config property
#### Decision (2026-09)
Type-aware oxlint is enabled via `options.typeAware: true` in `.oxlintrc.json`
(powered by `oxlint-tsgolint`).
#### Why
- The script commands stay clean — no CLI flag.
- A config property cannot be forgotten on one call site.
#### Rejected
- A CLI flag in the `check:oxlint` / `fix:oxlint` scripts: it puts the mode in
two places and invites them to drift.
### `oxlint-disable` directives live next to the code
#### Decision (2026-09)
A type-aware rule that false-positives is silenced with a source-level
`oxlint-disable` directive (see `src/primitive.ts`,
`src/primitive.test.ts`), not by turning the rule off in `.oxlintrc.json`.
#### Why
- The disable sits next to the code it silences, visible to anyone reading the
source.
- The rule stays on everywhere else, so only the mis-firing line is exempted.
#### Rejected
- A project-wide disable in `.oxlintrc.json` for a false positive: it hides the
exemption from the reader of the affected code and switches the rule off
repo-wide for a one-site problem.
#### Known issue
- A source-level disable is a _human_ last resort. AI agents must not add one;
they fix the type at its root (see [AGENTS.md § Never do](../AGENTS.md#never-do)).
### Unwanted stylistic rules are turned off in the config
#### Decision (2026-09)
A stylistic rule the project rejects is `"off"` in the `.oxlintrc.json` `rules`
map, not silenced at a use site. Current entries: `eslint/capitalized-comments`
(comments may start lowercase) and `eslint/no-ternary` (ternaries are allowed),
joining the oxfmt-superseded rules already off.
#### Why
- The rule is wrong for the whole project, not mis-firing at one site, so there
is no line to annotate.
- Keeping the two mechanisms separate keeps a source-level `oxlint-disable`
meaningful: it marks a lone exception.
#### Rejected
- A source-level `oxlint-disable` per use: the same exemption repeated at every
site, and oxfmt can move the site.
### `check:tsc` runs first
#### Decision (2026-09)
`check:tsc` runs first in the `npm run check` chain.
#### Why
- A type error short-circuits the rest, which is faster than running
oxlint/oxfmt and failing on `tsc` at the end.
### `.editorconfig` is a fallback, not a gate
#### Decision (2026-09)
`.editorconfig` exists for editor compatibility; where both apply,
`.oxfmtrc.json` is authoritative.
#### Why
- `.editorconfig` covers the files oxfmt does not format: shell scripts,
dotfiles, `LICENSE`, the commit-message template, and git's `COMMIT_EDITMSG`
buffer.
- oxfmt is the formatter; the overlapping keys only keep non-oxfmt editors close
to the formatted result, so they cannot disagree with the checker.
## Static analysis and packaging
### `knip` omits the `types` category
#### Decision (2026-09)
`knip --include dependencies,exports,files` omits the `types` category.
#### Why
- `types` produces systematic false positives for libraries whose exported types
are part of the public API.
- The narrower scope keeps the signal high without config-file boilerplate.
### `maintain:outdated` ignores `@types/node`
#### Decision (2026-09)
Pass `--ignore-packages @types/node`.
#### Why
- DT pins `@types/node`'s `latest` dist-tag to LTS (22.x); current-line types
ride other tags. Scan sees latest < installed — permanent "reverted", exit
1, zero signal. `--ignore-pre-releases` no help: 22.20.3 is stable.
#### Rejected
- `--types major,minor,patch`: hides real reverted reports elsewhere.
- `@types/node@26.*`: tag stays wrong across majors; un-pin per bump = ritual.
#### Known issue
- A genuinely behind `@types/node` goes unreported; match it to
`.node-version` by hand.
### `attw` targets ESM-only
#### Decision (2026-09)
`attw --profile esm-only` is used.
#### Why
- The package is intentionally ESM-only (no CommonJS shim), so CJS resolution
scenarios are out of scope by design, not a bug.
### `tslib` is deliberately not used
#### Decision (2026-09)
`tslib` is not a dependency.
#### Why
- `tslib` is a runtime helper for old ES3/ES5 targets; this project targets
ES2024.
## Git hooks and script wiring
### `LEFTHOOK_FILES` scopes commands to staged files
#### Decision (2026-09)
The pre-commit hook sets `LEFTHOOK_FILES` to the staged-files list, and the
affected scripts use `${LEFTHOOK_FILES:-<default>}` to default to the whole
project.
#### Why
- It keeps `package.json#scripts` the single source of truth; `lefthook.yml`
only says what to run on which files.
- The same script works by hand (whole project) and staged (scoped), so there is
no second command to maintain.
## Editor and agent tooling
### VSCode integration
- Recommended extensions are in
[.vscode/extensions.json](../.vscode/extensions.json) (oxc, cspell, TypeScript
native-preview, EditorConfig, todo-tasks).
- TypeScript 7 runs via the `typescriptteam.native-preview` extension.
- The oxc extension provides oxlint squiggles and oxfmt format-on-save;
`.vscode/settings.json` pins it per language so a local `[language]` formatter
setting cannot override the project's choice.
### `@spences10/pi-lsp` is pinned and read-only
#### Decision (2026-09)
`@spences10/pi-lsp` is pinned to `0.0.46` and used read-only.
#### Why
- It inspects `node_modules/typescript`, sees major >= 7 with no
`lib/tsserver.js` (true of the `typescript-go` / `tsgo` port), and spawns the
repo's own `tsc --lsp --stdio` — no `typescript-language-server` dependency is
needed.
- Earlier releases (`<= 0.0.10`) hard-wire to `typescript-language-server
--stdio` and are TS6-only.
- It is _intermediate_ agent feedback (hover, references, definition, symbols,
diagnostics), with no rename / code-action / apply-edit surface, and is never a
gate — `npm run check` / `verify` are.
- `.pi/settings.json` is the committed declaration; `.pi/npm/` is a gitignored
install cache that pi recreates on a trusted startup (running `npm install`
for any missing project package), so it is deliberately not tracked.
+173
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@@ -0,0 +1,173 @@
# Workflow
How work moves through the repository. The rules are in
[CONTRIBUTING.md](../CONTRIBUTING.md); this file records why they are shaped the
way they are.
## Branching model
The model is GitHub Flow (single-developer); the steps are in
[CONTRIBUTING.md § Branching model](../CONTRIBUTING.md#branching-model). Context
behind it: Gitea has no collaborative review UI in use, so it is the lab, and
the project moves to GitHub once it is tested and ready.
#### Decision (2026-09)
Work is opened and closed by `create:branch` / `create:finish`, not by prose
plus hand-written `git`.
#### Why
- The preconditions were prose, and prose rots: a rule nobody checks is a
suggestion. A script asserts, then acts, so the branch or merge only exists if
the assertions passed.
- Type-driven work is only trustworthy if the baseline was green before the
first edit. Cheap checks run first and `npm run test` last, so the expensive
gate is not paid on an ineligible tree.
- The merge half owns the post-merge `npm run verify`, so a merge cannot land
unverified. The push stays with `create:release` so the merge is reviewed
locally first; `main` is therefore routinely ahead of its upstream between a
merge and the release that ships it. `create:branch` requires only that `main`
is not _behind_ — matching `create:finish`, which tolerates the local merge and
fast-forwards over a remote one — rather than an exact match.
- Every failure is non-mutating except the baseline test, which runs on `main`
after switching there: a red `main` restores the branch you started on, and a
merge conflict aborts back to the feature branch rather than stranding a
half-merged `main`.
#### Rejected
- Hand-written `git switch -c` / `git merge`: same rules, no enforcement.
- Reusing `pubv`'s preflight for `create:branch`: release-shaped, third-party,
and it would pay for a build and pack a new branch has no use for.
- Leaving the merge to reviewer judgment: that judgment moved earlier, to the
handover review before `create:finish`, rather than living in a command anyone
can run from a dirty tree.
- Fast-forward instead of `--no-ff`: `--no-ff` keeps each unit of work visible
in `git log`.
- Pushing from `create:finish` to keep `main` level with its upstream: it would
trade the local review the push waits for for a network side effect, and a
failed push would leave the merge landed but unpublished.
## Changelog notes
The rule is in
[CONTRIBUTING.md § Rules the tools don't enforce](../CONTRIBUTING.md#rules-the-tools-dont-enforce).
#### Decision (2026-09)
A merged branch carries its own summary under `[Unreleased]` in
[CHANGELOG.md](../CHANGELOG.md), added before `create:finish`;
`create:release` graduates it into the tagged section (see
[publishing.md](./publishing.md)).
#### Why
- `create:release` derives the bump heuristic from the `[Unreleased]` body, so
the notes must exist before release day.
- The contributor has fresh context; at release day the intent of a branch is
only its diff.
- Gitmoji subjects are signposts, not semantic keys, so notes cannot be derived
from the history.
#### Rejected
- Generating notes from subjects at release time: subjects carry no parseable
type/scope (see § Commit messages).
- The maintainer writing one summary during `create:release`: reconstruction
after the fact.
- Enforcing it in `create:finish`: the front doors assert git state, not
content — and _notable_ is exactly the judgment a tool cannot make.
## Script prefix convention
The prefix taxonomy is the rule, and it lives in
[CONTRIBUTING.md § Script prefix convention](../CONTRIBUTING.md#script-prefix-convention).
The design behind it: bare scripts are the tier entry points — a single tool
(`build`, `clean`) or an aggregator of a `prefix:*` family (`check`, `fix`,
`test`, `watch`, `maintain`, `setup`) — while `verify` composes `check` +
`test:unit` into the whole-project gate (it uses `test:unit`, not `test`,
because `check` already runs `check:tsc`).
#### Decision (2026-09)
`create:` is the prefix for workflow front doors, with no bare `create`
aggregator.
#### Why
- Both members create something real: a branch, a release.
- It joined both lists in [CONTRIBUTING.md](../CONTRIBUTING.md) alongside its
first members, so it could not go invisible the way the retired `use:` prefix
did.
- `publish:*` already set the precedent for a prefix without an aggregator.
#### Rejected
- `run:` / `perform:`: they mean only "do the named thing", so every script fits
and the taxonomy collapses.
- `git:`: names the tool, not the lifecycle moment, and implies passthrough
aliases.
- `start:`: describes the branch half, not the release.
- `cut:`: idiomatic but needs VCS slang to decode.
- `flow:`: overloaded in a type-level matching library.
- The existing families: `check:*` is read-only (CI would run a state-mutating
command), `fix:*` reviews as a diff not a branch, `maintain:*` is advisory and
never a gate.
## Feedback tiers
The table and invocation rules are in
[CONTRIBUTING.md § Feedback tiers](../CONTRIBUTING.md#feedback-tiers); this
section explains the split.
#### Decision (2026-09)
Fast, offline, staged-file checks sit in pre-commit; whole-project test runs in
pre-push and `verify`; slow or network-bound scans under `maintain`.
#### Why
- `watch:*` runs until killed, in its own pane, so it is the earliest tier,
firing on save before staging or commit.
- `check:tsc` / `check:oxlint` / `check:oxfmt` / `check:cspell` are fast
(~0.2–0.5s each), offline, and scope to staged files via `LEFTHOOK_FILES`, so
pre-commit gives instant feedback on what you typed.
- `test` (and its `tsc`) runs the whole suite over the whole project, and the
staged-file convention does not apply to the test runner, so it belongs in
pre-push, after the commits exist but before the push leaves the machine.
#### Rejected
- `maintain:*` in `check` or pre-commit: advisory, whole-project and
network-bound scans are not correctness gates and would slow the fast tier.
- Treating a green pre-commit as the definition of done: it sees only staged
files, hence `npm run verify`.
- A separate `git push` hook for `verify`: the pre-push test tier already covers
it.
## Commit messages
The convention is in
[CONTRIBUTING.md § Commit messages](../CONTRIBUTING.md#commit-messages).
Examples: `:sparkles: Add watch tier with watch:test child`,
`:recycle: Move type-aware config to .oxlintrc.json; use source-level disable
directives`, `:memo: Restore unique maintainer content as CONTRIBUTING.md`. The
body explains what and why, not how; link issues with `Resolves #...`.
#### Decision (2026-09)
Gitmoji subjects, imperative mood, wrapped 50/72, not Conventional Commits.
#### Why
- The history is gitmoji and predates any commit-lint tooling; switching would
rewrite the convention for no gain.
- The body carries the reasoning a reviewer needs; the subject is a signpost,
not a semantic key.
#### Rejected
- Conventional Commits: the release flow uses hand-written Keep-a-Changelog
notes, not generated ones, so the prefix has no automation value here (see
[publishing.md](./publishing.md)).
+51
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@@ -0,0 +1,51 @@
# CI job image for the Gitea act_runner: the runner's default job image with
# Node pre-planted where actions/setup-node looks first.
#
# Why this layout: setup-node ignores `node` on PATH; its only fast path is a
# probe of /opt/hostedtoolcache/node/<version>/<arch>. Without an entry there
# it downloads the ~50 MB distribution on EVERY job (the runner's job
# containers are ephemeral, so its tool cache never survives a job). The
# official node images keep exactly the layout setup-node expects under
# /usr/local, so this layer is a pure file overlay — no scripts, no env.
#
# Why not a host bind of /opt/hostedtoolcache: binds never self-prune. Docker
# images are content-addressed: the base layers dedupe against the act image
# the host already has, and `docker image prune` / re-pulls are the cleanup
# story.
#
# NODE_VERSION must match `.node-version` exactly. setup-node resolves a float
# like `26` to the latest known patch at runtime, so a bump silently busts the
# baked entry; `.node-version` is pinned to x.y.z and scripts/runner-image.sh
# guards the coupling. Rebuild + repoint `container.image` in
# .gitea/workflows/ci.yml on every bump.
#
# The extra `nodebase` stage is load-bearing: `COPY --from=` resolves its value
# as a *stage name* at parse time, before build args exist, so
# `COPY --from=node:${NODE_VERSION}` collapses to the invalid `node:` on
# frontends that do not expand args there. ARGs declared before the first FROM
# *are* expanded in FROM, so routing through a named stage works everywhere.
# Global scope: only visible to FROM lines, but that is exactly where we need it.
ARG NODE_VERSION=26.8.2
FROM node:${NODE_VERSION} AS nodebase
FROM catthehacker/ubuntu:act-latest
# ARGs do not cross stage boundaries; redeclare (with the same default, so a
# bare `docker build -f docker/Dockerfile .` still works) for the paths below.
# Keep this default in sync with the global one above.
ARG NODE_VERSION=26.8.2
# node image: bin/ + lib/ under /usr/local → tool cache: bin/ + lib/ under <ver>/x64.
COPY --from=nodebase /usr/local /opt/hostedtoolcache/node/${NODE_VERSION}/x64
# actions/tool-cache only accepts a cached tool when the sibling marker file
# "<version>/<arch>.complete" exists — tc.find() checks it and falls back to
# downloading otherwise, however complete the directory is. The marker is what
# tc.cacheDir() writes after *it* installs a tool, so a pre-baked entry has to
# reproduce it explicitly.
RUN touch "/opt/hostedtoolcache/node/${NODE_VERSION}/x64.complete"
# Fail the build (not CI) if the overlay or the version arg were wrong.
# Shell form on purpose: exec form (`RUN [...]`) does not expand ARG values.
RUN "/opt/hostedtoolcache/node/${NODE_VERSION}/x64/bin/node" --version
+518 -496
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+10 -7
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@@ -1,6 +1,6 @@
{ {
"name": "tiny-pattern-ts", "name": "tiny-pattern-ts",
"version": "0.0.0", "version": "0.2.0",
"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",
@@ -53,7 +53,7 @@
"create:release": "./scripts/release.sh", "create:release": "./scripts/release.sh",
"maintain": "npm run maintain:knip; npm run maintain:outdated", "maintain": "npm run maintain:knip; npm run maintain:outdated",
"maintain:knip": "knip --include dependencies,exports,files", "maintain:knip": "knip --include dependencies,exports,files",
"maintain:outdated": "check-outdated --ignore-pre-releases", "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 --reporter=text --reporter=lcov --reporter=html 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\"",
@@ -65,20 +65,23 @@
"setup": "npm run setup:git-commit-message", "setup": "npm run setup:git-commit-message",
"setup:git-commit-message": "git config commit.template commit-message-template" "setup:git-commit-message": "git config commit.template commit-message-template"
}, },
"dependencies": {
"type-fest": "^5.9.0"
},
"devDependencies": { "devDependencies": {
"@arethetypeswrong/cli": "^0.18.5", "@arethetypeswrong/cli": "^0.18.5",
"@runwisp/pubv": "^1.5.1", "@runwisp/pubv": "^1.5.1",
"@tsconfig/node26": "^26.0.1", "@tsconfig/node26": "^26.0.1",
"@tsconfig/strictest": "^2.0.8", "@tsconfig/strictest": "^2.0.8",
"@types/node": "^26.4.1", "@types/node": "^26.6.1",
"c8": "^12.0.0", "c8": "^12.0.0",
"check-outdated": "^3.0.0", "check-outdated": "^3.0.0",
"cspell": "^10.2.2", "cspell": "^10.3.2",
"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": "^0.66.0", "oxfmt": "^0.68.0",
"oxlint": "^1.81.0", "oxlint": "^1.83.0",
"oxlint-tsgolint": "^7.0.2001", "oxlint-tsgolint": "^7.0.2001",
"publint": "^0.3.24", "publint": "^0.3.24",
"typescript": "^7.0.2" "typescript": "^7.0.2"
@@ -87,6 +90,6 @@
"node": ">=26" "node": ">=26"
}, },
"allowScripts": { "allowScripts": {
"lefthook@2.1.12": true "lefthook@2.1.14": true
} }
} }
+13 -41
View File
@@ -4,43 +4,13 @@ set -eu
# Branch front-door. Run as `npm run create:branch -- <prefix>/<desc>`. # Branch front-door. Run as `npm run create:branch -- <prefix>/<desc>`.
# #
# How we got here (short): the branching model says every change starts from a # Asserts the branch preconditions — clean tree, no in-progress operation,
# clean, current `main`, and the type-driven loop only produces trustworthy # current `main`, green baseline — and only then creates the branch, so the
# results if the baseline was green *before* the first edit. Both facts were # expensive `npm run test` is not paid on a tree that was never eligible.
# prose. Prose rots silently — a rule nobody checks is a suggestion — so the
# precondition became this script: it asserts, then branches, and the branch
# only appears if the assertions passed. Cheap checks run first, `npm run test`
# runs last: the expensive gate is not paid on a tree that was never eligible.
# #
# Rejected for the prefix name: `run:` / `perform:` (both mean only "do the # Why the front door exists, the rejected prefix names, and the `create:`
# thing named after them", so every script in the repo would fit under them and # decision: development/workflow.md § Branching model and § Script prefix
# the taxonomy collapses); `git:` (names the tool, not the lifecycle moment, and # convention.
# advertises passthrough aliases); `start:` (describes this half, not the
# release); `cut:` (idiomatic for both, but it needs VCS slang to decode, and a
# signpost that has to be explained is not one); `flow:` (overloaded in a library
# about type-level matching); and the existing families — `check:*` is read-only
# and aggregated by `check`, so CI would run a command that mutates repo state;
# `fix:*`'s review surface is a file diff, not a branch; `maintain:*` is advisory
# and explicitly never a gate.
#
# `create:` was kept because both members really do create something: a branch,
# a release. It was added to both prefix lists in CONTRIBUTING.md in the same
# commit as its first members, because a prefix missing from those lists is
# invisible — which was the `use:` mistake this repo carried in backlog.tasks (since retired into `setup:`).
# There is deliberately no bare `create` aggregator: "run all the workflows"
# describes nothing anyone wants, and `publish:*` already sets the precedent for
# a prefix without one.
#
# Also rejected here: reusing `pubv`'s preflight (release-shaped, third-party,
# and it would make branch start pay a build + pack it has no use for). The
# merge half was originally rejected too ("review the diff yourself" is
# judgment), but it now has its own front door — `create:finish` — which owns
# the merge-side preconditions and the post-merge `verify`, so the start half
# does not have to carry that burden.
#
# Every refusal is non-mutating except the baseline test, which runs on `main`
# after we switch there — so a red `main` restores the branch you started on
# rather than stranding you on it.
BASE="main" BASE="main"
PREFIXES="feature fix chore" PREFIXES="feature fix chore"
@@ -116,12 +86,14 @@ if [ -n "${UPSTREAM}" ]; then
echo " refusing to branch on a possibly stale '${BASE}'." >&2 echo " refusing to branch on a possibly stale '${BASE}'." >&2
exit 1 exit 1
} }
# Only *behind* is a problem. `create:finish` deliberately leaves the local
# merge on '${BASE}' until `create:release` pushes it, so being ahead is the
# normal state between a merge and the release that ships it; branching from
# those commits is intended. Missing remote commits is not.
BEHIND=$(git rev-list --count "${BASE}..${UPSTREAM}") BEHIND=$(git rev-list --count "${BASE}..${UPSTREAM}")
AHEAD=$(git rev-list --count "${UPSTREAM}..${BASE}") if [ "${BEHIND}" -ne 0 ]; then
if [ "${BEHIND}" -ne 0 ] || [ "${AHEAD}" -ne 0 ]; then echo "error: '${BASE}' is behind '${UPSTREAM}' (by ${BEHIND})." >&2
echo "error: '${BASE}' has diverged from '${UPSTREAM}' (ahead ${AHEAD}, behind ${BEHIND})." >&2 echo " update it: git switch ${BASE} && git pull --ff-only" >&2
[ "${AHEAD}" -ne 0 ] && echo " not yet pushed commits on '${BASE}': push them, or rebase this work onto them." >&2
[ "${BEHIND}" -ne 0 ] && echo " update it: git switch ${BASE} && git pull --ff-only" >&2
exit 1 exit 1
fi fi
else else
+7 -22
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@@ -4,29 +4,14 @@ set -eu
# Feature-finish front door. Run as `npm run create:finish`. # Feature-finish front door. Run as `npm run create:finish`.
# #
# Why this exists: `create:branch` opens a unit of work, but the close half # Mirror image of `create:branch`: asserts the merge-side preconditions, merges
# (`git checkout main && git merge --no-ff <branch>`) stayed prose in the # the current `feature/`/`fix/`/`chore/` branch into `main` with `--no-ff`,
# branching model, so it drifted per contributor and per session. This is the # proves the result with `npm run verify`, and only then deletes the branch. The
# mirror image of `create:branch`: it asserts the same preconditions (clean # push is owned by `create:release`, so the merge stays local and reviewable.
# tree, no in-progress operation, `main` matching its upstream), merges the # On a conflict it aborts and returns to the feature branch.
# current `feature/`/`fix/`/`chore/` branch into `main`, proves the result with
# `npm run verify`, and only then deletes the branch.
# #
# `create:branch`'s comment argued against wrapping the merge as "judgment — # Rationale and the rejected alternatives: development/workflow.md § Branching
# review the diff yourself". That judgment still lives here, just moved: the # model.
# maintainer reviews the handover *before* invoking this, and the script only
# commits the merge, never the push. The push is owned by `create:release`, so
# the release commit and its tag leave together and a local merge stays
# reviewable (and can be reverted with `git revert -m 1`) until then. `--no-ff`
# keeps the unit of work visible in `git log`.
#
# Unlike `create:branch` a stale `main` is fast-forwarded instead of refused:
# the tree is clean (checked above) and `main` is not the checked-out branch
# yet, so there is no local state to lose. True divergence (local commits *and*
# upstream commits) is still refused — that needs a human.
#
# On a merge conflict we abort and return to the feature branch, so a failed
# finish never strands you on a half-merged `main`.
BASE="main" BASE="main"
PREFIXES="feature fix chore" PREFIXES="feature fix chore"
+3
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@@ -9,6 +9,9 @@ import zlib from "node:zlib";
* matching `Accept-Encoding` and falls back to the original for the rest. * matching `Accept-Encoding` and falls back to the original for the rest.
* *
* Usage: node --strip-types scripts/precompress.ts <dir> [<dir>...] * Usage: node --strip-types scripts/precompress.ts <dir> [<dir>...]
*
* Why sidecars rather than per-request compression: development/ci.md § Coverage
* serving.
*/ */
/** /**
+2
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@@ -9,6 +9,8 @@ set -eu
# `v1.2.3` and `1.2.3` match the `## [1.2.3]` heading. Prints to stdout and # `v1.2.3` and `1.2.3` match the `## [1.2.3]` heading. Prints to stdout and
# exits non-zero when the tag has no section, so a release can never publish # exits non-zero when the tag has no section, so a release can never publish
# with an empty body. # with an empty body.
#
# Why: development/publishing.md § Release notes are extracted from the changelog.
TAG="${1:-}" TAG="${1:-}"
CHANGELOG="${CHANGELOG:-CHANGELOG.md}" CHANGELOG="${CHANGELOG:-CHANGELOG.md}"
+8 -24
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@@ -4,29 +4,13 @@ set -eu
# Release front-door. Run as `npm run create:release`. # Release front-door. Run as `npm run create:release`.
# #
# How we got here (short): we want hand-written Keep-a-Changelog notes, an # Graduates the [Unreleased] changelog notes, bumps package.json + the lockfile,
# [Unreleased] -> "## [x.y.z] - DATE" graduation, and a tag that marks the exact # and commits then tags the exact SHA that CI publishes. The notes are finalized
# commit on main that gets published. No single tool did BOTH the [Unreleased] # in VS Code before pubv because pubv's bump heuristic reads the [Unreleased]
# graduation AND the package.json bump. So split by strength: `pubv` (tiny, # body.
# changelog-driven) owns preflight + the interactive major/minor/patch heuristic
# + graduating/committing CHANGELOG.md (no tag, no push); `npm version` syncs
# package.json + the lockfile; `--amend` folds them into pubv's single commit;
# tag AFTER the amend (so the tag is never orphaned) and push.
# #
# The notes are finalized in VS Code *before* pubv: the [Unreleased] body is # Tooling rationale, the rejected alternatives, and the version source of truth:
# what pubv's bump heuristic reads, so editing afterwards would inform the # development/publishing.md.
# changelog only, not the version choice. pubv refuses a dirty tree, so that
# edit is committed as a staging commit and folded back into the single release
# commit below.
#
# Rejected: the conventional-commits family (our history is gitmoji, not
# Conventional; and we want hand-written notes); changesets/rtk (config + a
# heavier version/publish flow that fights our CI-only publish); knope/kacl/
# bestikk (changelog-only — don't bump package.json; plus 5yr/2yr/brand-new
# maintenance); pubv alone (verified it never writes package.json). We also
# tried `versions` (silverwind) — great Gitea support — but pairing it with a
# hand-rolled promote became a ~180-line script we'd have to maintain, which is
# exactly what this ~30-line version replaces.
CHANGELOG="CHANGELOG.md" CHANGELOG="CHANGELOG.md"
BASE="main" BASE="main"
@@ -103,10 +87,10 @@ fi
echo "Amending release commit..." echo "Amending release commit..."
git add package.json package-lock.json "${CHANGELOG}" git add package.json package-lock.json "${CHANGELOG}"
# The exact message format is load-bearing: the `release-gate` job in # The exact message format is load-bearing: the `release-gate` job in
# .gitea/workflows/ci.yml recognizes `:bookmark: Release x.y.z` on main and # .gitea/workflows/ci.yml recognizes `:rocket: Release x.y.z` on main and
# skips the full CI run, since the tag push immediately after verifies the # skips the full CI run, since the tag push immediately after verifies the
# identical SHA (and publishes). Keep the two in sync. # identical SHA (and publishes). Keep the two in sync.
git commit --amend -m ":bookmark: Release ${VERSION}" git commit --amend -m ":rocket: Release ${VERSION}"
echo "Creating tag ${VERSION}..." echo "Creating tag ${VERSION}..."
git tag "${VERSION}" git tag "${VERSION}"
+36
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@@ -0,0 +1,36 @@
#!/usr/bin/env bash
set -euo pipefail
# Build (and optionally push) the CI job image from docker/Dockerfile.
# Run wherever docker + registry credentials live (the runner host, or any
# machine that can reach the registry). The registry/repo below MUST match
# the `container.image` references in .gitea/workflows/ci.yml — the runner
# pulls the image by name.
#
# Usage: scripts/runner-image.sh [--push]
#
# Why the image is baked, its two invariants, and the coordinated Node-bump
# steps: development/ci.md.
IMAGE_REPO="gitea.e1nsnull.de/tmu/act-ci"
NODE_VERSION="$(tr -d '[:space:]' < .node-version)"
if [[ ! "${NODE_VERSION}" =~ ^[0-9]+\.[0-9]+\.[0-9]+$ ]]; then
echo "error: .node-version must be pinned to an exact x.y.z, got '${NODE_VERSION}'." >&2
echo " setup-node resolves floats like '26' to the latest patch at runtime," >&2
echo " which silently busts the tool-cache entry baked into the image." >&2
exit 1
fi
IMAGE="${IMAGE_REPO}:${NODE_VERSION}"
# --pull: refresh the act base layer so the derivative does not float on an
# aging default image forever (layer dedup keeps this cheap).
docker build --pull --build-arg "NODE_VERSION=${NODE_VERSION}" -t "${IMAGE}" -f docker/Dockerfile .
if [[ "${1:-}" == "--push" ]]; then
docker push "${IMAGE}"
fi
echo "built ${IMAGE}"
echo "reminder: bump container.image in .gitea/workflows/ci.yml to this tag"
-56
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@@ -1,56 +0,0 @@
/* oxlint-disable typescript/no-floating-promises -- expectTypeOf() is a sync type-assertion library that the type-aware linter misidentifies as a promise */
import { strict as assert } from "node:assert";
import { test } from "node:test";
import { expectTypeOf } from "expect-type";
import { type Matcher, P, match } from "./index.ts";
test("match returns a builder", () => {
const builder = match("x");
expectTypeOf(builder).toHaveProperty("with");
expectTypeOf(builder).toHaveProperty("exhaustive");
expectTypeOf(builder).toHaveProperty("otherwise");
});
test("P.literal narrows to its literal type", () => {
const matcher = P.literal("yes");
expectTypeOf(matcher).toMatchTypeOf<Matcher<"yes">>();
assert.equal(matcher.matches("yes"), true);
assert.equal(matcher.matches("no"), false);
});
test("P.type narrows to the typeof target", () => {
const matcher = P.type<string>("string");
expectTypeOf(matcher).toMatchTypeOf<Matcher<string>>();
assert.equal(matcher.matches("hi"), true);
assert.equal(matcher.matches(42), false);
});
test("exhaustive() returns the union of handler return types", () => {
const result = match<"a" | "b">("a")
.with(P.literal("a"), () => 1 as const)
.with(P.literal("b"), () => "two" as const)
.exhaustive();
expectTypeOf(result).toEqualTypeOf<1 | "two">();
assert.equal(result, 1);
});
test("otherwise() falls back when no case matches", () => {
const result = match<"x" | "y" | "z">("z")
.with(P.literal("x"), (v): string => `got ${v}`)
.otherwise((v): string => `fallback ${v}`);
assert.equal(result, "fallback z");
});
test("exhaustive throws when no case matches", () => {
assert.throws(
() =>
match<"a" | "b" | "c">("c")
.with(P.literal("a"), () => "A")
.with(P.literal("b"), () => "B")
.exhaustive(),
/no matching case/,
);
});
+6 -2
View File
@@ -1,2 +1,6 @@
export { match, P } from "./match.ts"; export {
export type { Matcher, Pattern } from "./pattern.ts"; getPrimitiveUnionMatcher,
getPrimitiveUnionMatcherPartial,
getPrimitiveUnionMatcherPartialW,
getPrimitiveUnionMatcherW,
} from "./primitive.ts";
-62
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@@ -1,62 +0,0 @@
import { P, type Matcher, type Pattern } from "./pattern.ts";
type Cases<R> = readonly (readonly [Matcher<unknown>, (value: unknown) => R])[];
interface MatchBuilder<T, R> {
with<U extends T, V>(
pattern: Matcher<U>,
handler: (value: U) => V,
): MatchBuilder<T, R | V>;
exhaustive(): R;
otherwise(handler: (value: T) => R): R;
}
const buildMatch = <T, R>(value: T, cases: Cases<R>): MatchBuilder<T, R> => {
const apply = (): R | undefined => {
for (const [matcher, handler] of cases) {
if (matcher.matches(value)) {
return handler(value);
}
}
return undefined;
};
const builder = {
with<U extends T, V>(
pattern: Matcher<U>,
handler: (value: U) => V,
): MatchBuilder<T, R | V> {
const nextCases: Cases<R | V> = [
...cases,
// oxlint-disable-next-line typescript/no-unsafe-type-assertion
[pattern, handler as (value: unknown) => R | V],
];
return buildMatch(value, nextCases);
},
exhaustive(): R {
const result = apply();
if (result === undefined) {
throw new Error(
"tiny-pattern-ts: match.exhaustive() called with no matching case",
);
}
return result;
},
otherwise(handler: (value: T) => R): R {
for (const [matcher, run] of cases) {
if (matcher.matches(value)) {
return run(value);
}
}
return handler(value);
},
};
return builder;
};
export const match = <T>(value: T): MatchBuilder<T, never> =>
buildMatch<T, never>(value, []);
export type { Matcher, Pattern };
export { P };
-105
View File
@@ -1,105 +0,0 @@
/**
* Pattern matching primitives. Each constructor returns a lightweight
* matcher object whose `matches` method returns a type guard.
*/
export interface Matcher<T> {
readonly matches: (value: unknown) => value is T;
}
const literalMatcher = <
const L extends string | number | boolean | null | undefined,
>(
value: L,
): Matcher<L> => ({
matches: (candidate): candidate is L => candidate === value,
});
const typeMatcher = <T>(
type:
| "string"
| "number"
| "boolean"
| "bigint"
| "symbol"
| "undefined"
| "object"
| "function",
): Matcher<T> => {
const matches = (value: unknown): value is T => {
if (type === "undefined") {
return value === undefined;
}
if (type === "object") {
return (
(typeof value === "object" && value !== null) ||
typeof value === "function"
);
}
return typeof value === type;
};
return { matches };
},
whenMatcher = <T>(
predicate: (value: unknown) => value is T,
): Matcher<T> => ({
matches: predicate,
}),
whenMatcherAny = <T>(
predicate: (value: unknown) => boolean,
): Matcher<T> => ({
matches: (value: unknown): value is T => predicate(value),
}),
isNestedMatcher = (expected: unknown): expected is Matcher<unknown> =>
typeof expected === "object" &&
expected !== null &&
"matches" in expected,
// oxlint-disable-next-line typescript/no-unnecessary-type-parameters
keysMatch = <S extends object>(shape: S, candidate: object): boolean => {
// oxlint-disable-next-line typescript/no-unsafe-type-assertion
for (const key of Object.keys(shape) as (keyof S)[]) {
if (!(key in candidate)) {
return false;
}
// oxlint-disable-next-line typescript/no-unsafe-type-assertion
const expected = shape[key],
// oxlint-disable-next-line typescript/no-unsafe-type-assertion
actual = candidate[key as keyof object];
if (isNestedMatcher(expected)) {
if (!expected.matches(actual)) {
return false;
}
} else if (actual !== expected) {
return false;
}
}
return true;
},
structuralMatcher = <S extends object, T extends S>(
shape: S,
refine?: (value: S) => value is T,
): Matcher<T> => ({
matches: (value: unknown): value is T => {
if (typeof value !== "object" || value === null) {
return false;
}
// oxlint-disable-next-line typescript/no-unsafe-type-assertion
const candidate = value as S;
if (!keysMatch(shape, candidate)) {
return false;
}
if (refine && !refine(candidate)) {
return false;
}
return true;
},
});
export const P = {
literal: literalMatcher,
type: typeMatcher,
when: whenMatcher,
any: whenMatcherAny,
shape: structuralMatcher,
} as const;
export type Pattern<T> = Matcher<T>;
+357
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@@ -0,0 +1,357 @@
/* oxlint-disable typescript/no-floating-promises -- expectTypeOf() is a sync type-assertion library that the type-aware linter misidentifies as a promise */
import { strict as assert } from "node:assert";
import { test } from "node:test";
import { expectTypeOf } from "expect-type";
import {
getPrimitiveUnionMatcher,
getPrimitiveUnionMatcherPartial,
getPrimitiveUnionMatcherPartialW,
getPrimitiveUnionMatcherW,
} from "./primitive.ts";
// ============================================================================
// API: getPrimitiveUnionMatcherW — ✔️ Exhaustive / ❌ ReturnsStrict
// ============================================================================
test("getPrimitiveUnionMatcherW requires every literal key", () => {
// Arrange
const factory = getPrimitiveUnionMatcherW<"a" | "b">();
// Act
const matcher = factory({
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
return 1 as const;
},
b: (s) => {
expectTypeOf(s).toEqualTypeOf<"b">();
return "two" as const;
},
});
// Assert
// ❌ ReturnsStrict: mixed handler returns widen to their union.
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b") => 1 | "two">();
// A pattern missing a key must not satisfy the parameter type.
expectTypeOf<{
a: () => number;
}>().not.toExtend<Parameters<typeof factory>[0]>();
assert.equal(matcher("a"), 1);
assert.equal(matcher("b"), "two");
});
test("getPrimitiveUnionMatcherW dispatches on numeric literal keys", () => {
// Arrange
const factory = getPrimitiveUnionMatcherW<1 | 2>();
// Act
const matcher = factory({
1: (n) => {
expectTypeOf(n).toEqualTypeOf<1>();
return n + 1;
},
2: (n) => {
expectTypeOf(n).toEqualTypeOf<2>();
return n * 10;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: 1 | 2) => number>();
assert.equal(matcher(1), 2);
assert.equal(matcher(2), 20);
});
test("getPrimitiveUnionMatcherW dispatches on mixed string and numeric keys", () => {
// Arrange
const factory = getPrimitiveUnionMatcherW<"a" | "b" | 1 | 2>();
// Act
const matcher = factory({
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
return "A" as const;
},
b: (s) => {
expectTypeOf(s).toEqualTypeOf<"b">();
return "B" as const;
},
1: (n) => {
expectTypeOf(n).toEqualTypeOf<1>();
return 10 as const;
},
2: (n) => {
expectTypeOf(n).toEqualTypeOf<2>();
return 20 as const;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<
(shape: "a" | "b" | 1 | 2) => "A" | "B" | 10 | 20
>();
assert.equal(matcher("a"), "A");
assert.equal(matcher("b"), "B");
assert.equal(matcher(1), 10);
assert.equal(matcher(2), 20);
});
// ============================================================================
// API: getPrimitiveUnionMatcher — ✔️ Exhaustive / ✔️ ReturnsStrict
// ============================================================================
test("getPrimitiveUnionMatcher infers a single return type shared by all handlers", () => {
// Arrange
const factory = getPrimitiveUnionMatcher<"a" | "b">();
// Act
const matcher = factory({
a: (s): number => {
expectTypeOf(s).toEqualTypeOf<"a">();
return 1;
},
b: (s): 1 | 2 => {
expectTypeOf(s).toEqualTypeOf<"b">();
return 2;
},
});
// Assert
// ✔️ ReturnsStrict: R is the best common return type, not a widening union.
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b") => number>();
assert.equal(matcher("a"), 1);
assert.equal(matcher("b"), 2);
});
test("getPrimitiveUnionMatcher handlers receive the matched literal", () => {
// Arrange
const factory = getPrimitiveUnionMatcher<"on" | "off">();
// Act
const matcher = factory({
on: (s) => {
expectTypeOf(s).toEqualTypeOf<"on">();
return `handler ${s}`;
},
off: (s) => {
expectTypeOf(s).toEqualTypeOf<"off">();
return `handler ${s}`;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: "on" | "off") => string>();
assert.equal(matcher("on"), "handler on");
assert.equal(matcher("off"), "handler off");
});
test("getPrimitiveUnionMatcher infers one return type across mixed string and numeric keys", () => {
// Arrange
const factory = getPrimitiveUnionMatcher<"a" | "b" | 1 | 2>();
// Act
const matcher = factory({
a: (s): number => {
expectTypeOf(s).toEqualTypeOf<"a">();
return 1;
},
b: (s): 1 | 2 => {
expectTypeOf(s).toEqualTypeOf<"b">();
return 2;
},
1: (n): number => {
expectTypeOf(n).toEqualTypeOf<1>();
return 10;
},
2: (n): number => {
expectTypeOf(n).toEqualTypeOf<2>();
return 20;
},
});
// Assert
// ✔️ ReturnsStrict: R is the best common return type, not a widening union.
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b" | 1 | 2) => number>();
assert.equal(matcher("a"), 1);
assert.equal(matcher("b"), 2);
assert.equal(matcher(1), 10);
assert.equal(matcher(2), 20);
});
// ============================================================================
// API: getPrimitiveUnionMatcherPartial — ❌ Exhaustive / ✔️ ReturnsStrict
// ============================================================================
test("getPrimitiveUnionMatcherPartial routes shapes without a handler to _", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartial<"a" | "b" | "c">();
// Two keys, so `{ a }` lacks only the `_` fallback, nothing else.
const sparseFactory = getPrimitiveUnionMatcherPartial<"a" | "b">();
// Act
const matcher = factory({
a: (s): 1 | 2 => {
expectTypeOf(s).toEqualTypeOf<"a">();
return 1;
},
_: (s): 1 | 2 => {
// The fallback sees the whole union, not a single literal.
expectTypeOf(s).toEqualTypeOf<"a" | "b" | "c">();
return 2;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b" | "c") => 1 | 2>();
// ❌ Exhaustive: gaps are allowed, but only with a `_` fallback.
expectTypeOf<{
a: () => number;
}>().not.toExtend<Parameters<typeof sparseFactory>[0]>();
assert.equal(matcher("a"), 1);
assert.equal(matcher("b"), 2);
assert.equal(matcher("c"), 2);
});
test("getPrimitiveUnionMatcherPartial also accepts an exhaustive pattern", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartial<"a" | "b">();
// Act
const matcher = factory({
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
return "A";
},
b: (s) => {
expectTypeOf(s).toEqualTypeOf<"b">();
return "B";
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b") => string>();
assert.equal(matcher("a"), "A");
assert.equal(matcher("b"), "B");
});
test("getPrimitiveUnionMatcherPartial routes mixed string and numeric keys, gaps go to _", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartial<"a" | "b" | 1 | 2>();
// Act
const matcher = factory({
a: (s): string => {
expectTypeOf(s).toEqualTypeOf<"a">();
return "A";
},
1: (n): string => {
expectTypeOf(n).toEqualTypeOf<1>();
return "one";
},
_: (s): string => {
// The fallback sees the whole union, not a single literal.
expectTypeOf(s).toEqualTypeOf<"a" | "b" | 1 | 2>();
return "fallback";
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<(shape: "a" | "b" | 1 | 2) => string>();
assert.equal(matcher("a"), "A");
assert.equal(matcher("b"), "fallback");
assert.equal(matcher(1), "one");
assert.equal(matcher(2), "fallback");
});
// ============================================================================
// API: getPrimitiveUnionMatcherPartialW — ❌ Exhaustive / ❌ ReturnsStrict
// ============================================================================
test("getPrimitiveUnionMatcherPartialW allows gaps and widens to the union of handler returns", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartialW<"x" | "y" | "z">();
// Two keys, so `{ x }` lacks only the `_` fallback, nothing else.
const sparseFactory = getPrimitiveUnionMatcherPartialW<"x" | "y">();
// Act
const matcher = factory({
x: (s) => {
expectTypeOf(s).toEqualTypeOf<"x">();
return 1 as const;
},
_: (s) => {
// The fallback sees the whole union, not a single literal.
expectTypeOf(s).toEqualTypeOf<"x" | "y" | "z">();
return "fallback" as const;
},
});
// Assert
expectTypeOf(matcher).toEqualTypeOf<
(shape: "x" | "y" | "z") => 1 | "fallback"
>();
// ❌ Exhaustive: gaps are allowed, but only with a `_` fallback.
expectTypeOf<{
x: () => number;
}>().not.toExtend<Parameters<typeof sparseFactory>[0]>();
assert.equal(matcher("x"), 1);
assert.equal(matcher("y"), "fallback");
assert.equal(matcher("z"), "fallback");
});
test("getPrimitiveUnionMatcherPartialW widens mixed string and numeric key returns to their union", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartialW<"a" | "b" | 1 | 2>();
// Act
const matcher = factory({
a: (s) => {
expectTypeOf(s).toEqualTypeOf<"a">();
return "A" as const;
},
1: (n) => {
expectTypeOf(n).toEqualTypeOf<1>();
return 10 as const;
},
_: (s) => {
// The fallback sees the whole union, not a single literal.
expectTypeOf(s).toEqualTypeOf<"a" | "b" | 1 | 2>();
return "fallback" as const;
},
});
// Assert
// ❌ ReturnsStrict: mixed handler returns widen to their union.
expectTypeOf(matcher).toEqualTypeOf<
(shape: "a" | "b" | 1 | 2) => "A" | 10 | "fallback"
>();
assert.equal(matcher("a"), "A");
assert.equal(matcher("b"), "fallback");
assert.equal(matcher(1), 10);
assert.equal(matcher(2), "fallback");
});
test("getPrimitiveUnionMatcherPartialW also accepts an exhaustive pattern", () => {
// Arrange
const factory = getPrimitiveUnionMatcherPartialW<"x" | "y">();
// Act
const matcher = factory({
x: (s) => {
expectTypeOf(s).toEqualTypeOf<"x">();
return 1 as const;
},
y: (s) => {
expectTypeOf(s).toEqualTypeOf<"y">();
return "two" as const;
},
});
// Assert
// ❌ ReturnsStrict: mixed handler returns widen to their union.
expectTypeOf(matcher).toEqualTypeOf<(shape: "x" | "y") => 1 | "two">();
assert.equal(matcher("x"), 1);
assert.equal(matcher("y"), "two");
});
+71
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@@ -0,0 +1,71 @@
import type { Simplify, ValueOf } from "type-fest";
type UnaryFn<T, R> = (shape: T) => R;
// ============================================================================
// ✔️ Exhaustive
// ❌ ReturnsStrict
// ============================================================================
type PatternPrimitiveUnion<R, T extends string | number> = {
[K in T]: UnaryFn<K, R>;
};
type PatternReturns<
P extends Record<string | number, UnaryFn<never, unknown>>,
> = ReturnType<ValueOf<P>>;
export const getPrimitiveUnionMatcherW: <T extends string | number>() => <
P extends PatternPrimitiveUnion<unknown, T>,
>(
pattern: Simplify<P>,
) => UnaryFn<T, PatternReturns<P>> = () => (pattern) => (shape) =>
// Rewrite not to use any is possible, was evaluated and solutions were
// more complex than the current solution.
// oxlint-disable-next-line typescript/no-explicit-any typescript/no-unsafe-type-assertion
(pattern[shape] as any)(shape);
// ============================================================================
// ✔️ Exhaustive
// ✔️ ReturnsStrict
// ============================================================================
export const getPrimitiveUnionMatcher: <T extends string | number>() => <R>(
pattern: Simplify<PatternPrimitiveUnion<R, T>>,
) => UnaryFn<T, R> = getPrimitiveUnionMatcherW;
// ============================================================================
// ❌ Exhaustive
// ✔️ ReturnsStrict
// ============================================================================
type PatternPrimitiveUnionPartial<R, T extends string | number> =
| PatternPrimitiveUnion<R, T>
| (Partial<PatternPrimitiveUnion<R, T>> & {
_: UnaryFn<T, R>;
});
export const getPrimitiveUnionMatcherPartial: <T extends string | number>() => <
R,
>(
pattern: Simplify<PatternPrimitiveUnionPartial<R, T>>,
) => UnaryFn<T, R> = () => (pattern) => (shape) =>
// Rewrite not to use any is possible, was evaluated and solutions were
// more complex than the current solution.
// oxlint-disable-next-line typescript/no-explicit-any typescript/no-unsafe-type-assertion
(pattern[shape] ?? (pattern as any)["_"])(shape);
// ============================================================================
// ❌ Exhaustive
// ❌ ReturnsStrict
// ============================================================================
export const getPrimitiveUnionMatcherPartialW: <
T extends string | number,
>() => <P extends PatternPrimitiveUnionPartial<unknown, T>>(
// `Simplify<P>` is the inference hook: callers infer `P` from the argument.
// the second half pins the impl parameter's `R` to `PatternReturns<P>`.
// that makes the `= getPrimitiveUnionMatcherPartial` assignment type-check.
// neither half works alone.
// without the witness the union's `_` arm demands `_ ∈ keyof P`.
// without `Simplify<P>` the parameter types do not compare.
pattern: Simplify<P> & PatternPrimitiveUnionPartial<PatternReturns<P>, T>,
) => UnaryFn<T, PatternReturns<P>> = getPrimitiveUnionMatcherPartial;