Migrate an Expo Module
Migrate the Swift side of an existing Expo module without changing its observable JS API. Treat the current JS/TypeScript surface and tests as the compatibility contract. Leave Kotlin on the 1.0 DSL unless the user explicitly expands the task.
Prerequisite
Use expo 57.0.21 or newer. Earlier 57.x versions can compile the macros but lack many of the 2.0 features and performance optimizations, so do not target them. Before editing, check the target's installed version (expo in package.json/lockfile, or npm ls expo). If it is older, stop and tell the user to upgrade first.
Check the example app's own package.json too, not only the module root. The example app is the integration surface you build and launch in step 4, so it needs the same floor.
This is a floor, not a guarantee: the exact macro and core surface still varies within 57.x, so step 2 must still verify the checked-out source.
SDK 57 ships the macros as experimental and undocumented, with the official beta in SDK 58. The API can still change under you. Say this to the user before a large migration, and prefer incremental mixed mode over converting a module wholesale.
References
- Read
references/migration-map.mdbefore changing source. It contains the 1.0-to-2.0 mappings, semantic traps, and mixed-mode rules. - Read
references/example.mdfor a full before/after walkthrough of one module through mixed mode to a complete migration. Consult it when you need to see how the per-member rules compose. - Read
references/compatibility.mdwhen the checked-outexpo-modules-coreversion or branch is not known to support every requested macro. It explains how to verify the actual compile-time and runtime surface instead of guessing from a version number, and lists what the macros plugin gained through0.10.0.
Workflow
1. Establish the contract
Inspect repository instructions and the worktree before editing. Locate the Swift module classes, records, shared objects, native views, JS/TS bindings, tests, example app, podspec, expo-module.config.json, and installed or checked-out expo-modules-core.
Inventory every exported item before rewriting it:
- module and shared-object JS names
- function names, arity, labels, defaults, nullability, sync/async behavior, errors, and queue/thread semantics (note which
AsyncFunctionbodies do blocking or long-running work, and any.runOnQueue(...)) - property names, mutability, and constant caching behavior
- event wire names and payload shapes
- record field names, defaults, requiredness, and nullability
- shared-object constructors and instance/static placement (
FunctionvsStaticFunction/StaticAsyncFunction) - lifecycle hooks and views
Use the TypeScript declarations and JS call sites to resolve ambiguity. Do not silently "improve" requiredness, rename an event, or change sync behavior during a syntax migration.
2. Verify the available 2.0 surface
Inspect the macro declarations and matching core hooks in the dependency actually used by the target. Do not assume that all items in the 2.0 design are present because one macro compiles.
Classify each 1.0 item as:
- Migrate: both its macro and required core runtime support exist.
- Keep in DSL: mixed mode preserves it safely, or 2.0 lacks an equivalent.
- Blocked: migration would alter the JS contract or requires unavailable runtime support.
Prefer an incremental mixed-mode result over speculative generated code. Keep definition() for any remaining DSL elements; delete it only when it is empty and the resolved module name is preserved by @ExpoModule.
3. Apply the migration
Migrate one semantic group at a time: module naming, functions, properties/constants, events, shared objects, then records. Keep the diff narrow.
Follow these invariants:
- Preserve every existing JS-visible name explicitly when Swift naming rules or macro defaults differ.
- Keep original optional/default behavior. An optional 1.0 record field must not become required merely because 2.0 can express required fields.
- Do not migrate same-JS-name overloads unless the checked-out macro groups and dispatches them.
- Preserve async threading behavior. A 1.0
AsyncFunctionbody ran off the JS thread; a 2.0async@JSmember starts on it and leaves only at the firstawait. A body that never awaits therefore blocks the JS thread, with no change to the JS signature. Audit what runs before the firstawait, and never leave blocking I/O on the JS actor. Fix with@JS(.concurrent), or restructure onto Swift Concurrency or a continuation. Queue-pinned functions get the same treatment. See the threading section inreferences/migration-map.md. - Verify core support before migrating views, unions, synchronous events, shared-object static members, or free-form
Anyarguments. The macros plugin has shipped ahead of core on every one of these, so check the checked-out core rather than a plugin version, and leave unsupported members on the 1.0 DSL.references/compatibility.mdhas the per-capability checks. - Keep
expo-module.config.jsonlisting every module class underapple.modules. The entries are bare Swift class names, so renaming a class during migration detaches the module silently: it builds, then is absent at runtime. A migrated class must also staypublicoropen. SDK 58's auto-discovery is what retires these entries. - Do not change Kotlin, JS wrappers, or public
.d.tsfiles unless the user requested an API change. - Never write macro-generated symbols into the module's source. The macro emits them; hand-writing or overriding them is not part of a migration.
After each group, search for old DSL entries and call sites that should have moved. Avoid broad formatting or unrelated cleanup.
When a 2.0 equivalent is missing or a group fails
When step 2 classified an item as Blocked, or a migrated group fails to build or breaks the contract, do not force it. Stop on that group and:
Ask the user how to proceed for that item, with two options:
- Co-exist: keep the item in the 1.0
definition()DSL alongside the migrated@ExpoModule(mixed mode) and continue with the other groups. - Revert: back out the group's edits, leaving it untouched on 1.0, and move on.
Default to co-existence when mixed mode is verified safe, since it preserves the most progress. Revert when the half-applied change left the module in a non-building state and cannot be salvaged incrementally.
- Co-exist: keep the item in the 1.0
Open a tracking issue on
expo/exponoting the functionality that 2.0 does not yet cover, so the gap is recorded rather than silently worked around. Usegh issue create --repo expo/expoand confirm with the user before posting (per repo conventions, do not post outward-facing comments without approval). Include:- the 1.0 member and its JS contract
- the specific macro or core hook that is missing (cite the evidence gap from
references/compatibility.md) - the
expo-modules-coreversion/branch checked out
Reference the issue in the handoff so the remaining DSL entry is traceable to a known limitation.
Keep going with the groups that do migrate cleanly; one blocked member does not block the rest.
4. Verify behavior
Run the narrowest available checks first, then the real integration surface:
- Build or type-check the Apple module against the target
expo-modules-core. - Run native unit tests and JS/TS tests.
- Build and launch the example app when the repository provides one.
- Confirm
expo-module.config.jsonstill names every module class underapple.modules, matching the Swift class names as they now stand. A stale entry builds clean and fails only at runtime, so the example app must actually resolve the module, not merely compile. - Compare the final exported surface with the inventory from step 1.
- Search for stale
Name, migratedFunction/AsyncFunction/StaticFunction/StaticAsyncFunction/Property/Constant/Eventsentries, oldsendEventcalls,@Field, and duplicate registrations. Search the source you wrote, not macro expansion output.
Expansion tests alone are insufficient: generated macro code can look correct while failing to link or run against a mismatched core. If dependencies changed or macro plugin flags are missing, reinstall JS dependencies as appropriate, run the repository's CocoaPods installation workflow, and restart Xcode before diagnosing plugin communication failures.
Handoff
Never print macro-generated or core-internal symbol names to the user. references/compatibility.md cites them so you can grep for them, but they are implementation details that change between plugin revisions, and they are noise in a report. Name a capability by its macro (@JS static, @Event(sync:)) and by observable JS behavior. Say "the installed core does not support decoding free-form dictionary arguments yet", not the name of the missing method. The exception is a tracking issue on expo/expo, where the specific missing hook is the point.
Report:
- which members moved to 2.0
- which members intentionally remain in the 1.0 DSL and why
- any compatibility-sensitive choices, especially event names, record requiredness, constants, and queues
- the commands run and any verification not completed
Submitting Feedback
If you encounter errors, misleading or outdated information in this skill, report it so Expo can improve:
npx --yes submit-expo-feedback@latest --category skills --subject "expo-migrate-module" "<actionable feedback>"
Only submit when you have something specific and actionable to report. Include as much relevant context as possible. If an AI agent repeatedly failed or the user had to take over an Expo task, load the expo-skill-feedback skill and follow its eval-candidate flow instead of reusing the command above.