Phase 8 of docs/multiple-profiles.md: the seams of Phases 1 through 7 in a row, through the real view models on an in-memory database with a real key store. A is made from a phrase through the create view model and the seed writer, the way Landing makes the first profile: both files written, and listed once as a profile with a wallet attached, under the wallet's id, with the credential's key. A is opened with a node behind it -- a PhoenixBusiness that was never started, which is enough to make it one the switch has to stop. B's npub is signed in from inside through the sign-in view model; the switch stops A's node, B is open and read-only, the machine routes it from its placeholder, and nothing was ever started for a public key. A kind 1 queued for A while B is open waits three seconds unsigned; back to A, and it goes out, with nothing more stopped since B had no node. C is created from inside through the bare-key writer: a key, not a second wallet, routed, with no node, and the switch to it stops A's node again. C and B are forgotten through ForgetIdentity with the view model's writers, the default is cleared and the selector reset: A is listed alone, its credential is the only entry left in the file, B's and C's account rows went with them, and A itself cannot be forgotten because a wallet is attached. Then a fresh view model over the same directory, which is what a cold boot is: the repair finds nothing to do, A is listed from its credential rather than derived, and StartupChoice opens it without asking. A navigation state is matched to a profile by whichever step it is at -- UnsignedProfile, UnqueuedProfileSynchronization, UnannouncedProfile through the event the broadcast request names, ProfileLoaded -- because with the notary running, A's account moves from unsigned to announced-pending while the test looks, and what the test asserts is whose account it is, not which step it reached. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Pulled-From: curated/curated@88577bb5c3
This is a Kotlin Multiplatform project targeting Android, iOS, Desktop (JVM).
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/composeApp is for code that will be shared across your Compose Multiplatform applications. It contains several subfolders:
- commonMain is for code that’s common for all targets.
- Other folders are for Kotlin code that will be compiled for only the platform indicated in the folder name. For example, if you want to use Apple’s CoreCrypto for the iOS part of your Kotlin app, the iosMain folder would be the right place for such calls. Similarly, if you want to edit the Desktop (JVM) specific part, the jvmMain folder is the appropriate location.
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/iosApp contains iOS applications. Even if you’re sharing your UI with Compose Multiplatform, you need this entry point for your iOS app. This is also where you should add SwiftUI code for your project.
Build and Run Android Application
To build and run the development version of the Android app, use the run configuration from the run widget in your IDE’s toolbar or build it directly from the terminal:
- on macOS/Linux
./gradlew :composeApp:assembleDebug - on Windows
.\gradlew.bat :composeApp:assembleDebug
Build and Run Desktop (JVM) Application
To build and run the development version of the desktop app, use the run configuration from the run widget in your IDE’s toolbar or run it directly from the terminal:
- on macOS/Linux
./gradlew :composeApp:run - on Windows
.\gradlew.bat :composeApp:run
Build and Run iOS Application
To build and run the development version of the iOS app, use the run configuration from the run widget in your IDE’s toolbar or open the /iosApp directory in Xcode and run it from there.
Learn more about Kotlin Multiplatform…