Dr. Dominik Jain 2c15dcdb84
Add systematic component tests via a composable test model (#10529)
*  Add systematic component tests via a composable test model

Introduce a framework for systematically testing Penpot component behaviour
(synchronisation/propagation, swaps, variant switches, nesting), plus a first
suite of cases built on it.

A test is expressed as a COMPOSITION OF OPERATIONS over a "situation" (an
in-memory file value plus named role bindings). Operations are reified as data
and composed by two combinators — `in-sequence` (threads the situation) and
`one-of`/`optional` (alternatives, enumerated into concrete variants). So one
written case stands for a whole matrix of variants, and coverage grows by
composition rather than by copying tests. Operations drive the REAL production
change pipeline, and event-operations dispatch the REAL workspace events and
await settlement, so the production watcher's automatic propagation is what is
exercised — the tests reflect genuine app behaviour, not a reimplementation.

Structure (frontend/test/frontend_tests/composable_tests/):
  - core            — the domain-agnostic engine: situation, the operation and
                      enumeration protocols, the combinators, and the runners.
  - comp/nodes      — the component operations (create/instantiate/reset, nesting,
                      swap, the variant ops, child add/remove/move, change, undo,
                      library sync).
  - comp/setups     — component-shaped starting configurations.
  - interpreter     — runs a case against the real frontend store: sync-ops apply
                      directly, event-ops dispatch real events and await
                      settlement (absorbing sync-file's delayed status RPC, which
                      would otherwise leak an error into subsequent tests).
  - comp/sync-test  — the cases (B-F, H, I, K, L, M).

This is test-only code with a single consumer — the frontend test suite (the
layer that runs the real app) — so it lives entirely under the frontend test
tree as .cljs, not under app/common.

The framework and its cases are documented in the project memory
frontend/composable-component-tests, added alongside.

Co-authored-by: Claude <noreply@anthropic.com>

* 🐛 Guard WASM mock teardown against an empty snapshot

`teardown-wasm-mocks!` unconditionally restored from the `originals` atom.
When run without a matching setup (double teardown, or `with-wasm-mocks*`
misused around an async test body), the snapshot is empty and every WASM API
function was `set!` to nil — permanently, for the remainder of the test run.
Any later code calling one of them (e.g. a leaked debounced resize-wasm-text
event firing during a subsequent test namespace) then crashed with
"initialized? is not a function".

Make the restore a no-op when there is nothing to restore.

Co-authored-by: Claude <noreply@anthropic.com>

---------

Co-authored-by: Claude <noreply@anthropic.com>
2026-07-10 12:17:43 +02:00
2026-07-09 08:33:46 +02:00
2021-11-15 09:54:36 -05:00
2026-06-30 16:15:30 +02:00
2020-08-11 10:11:23 +02:00
2026-06-05 11:30:58 +02:00
2025-01-22 15:46:23 +01:00
2017-03-06 18:42:58 +01:00
2026-06-30 16:25:24 +02:00
2026-07-08 15:44:18 +02:00
2025-06-02 12:09:20 +02:00
2023-11-15 10:55:39 +01:00
2026-06-22 14:35:10 +02:00
2026-06-30 16:15:30 +02:00
2026-06-15 12:03:59 +02:00
2026-06-09 18:48:03 +02:00
2026-06-11 12:47:20 +02:00
2020-08-05 11:19:34 +02:00

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