# PlaydateKit ![Playdate logo](.README/Playdate_logo.svg) Swift bindings to the [Playdate](https://play.date) C API. The Playdate C API is delivered as a `PlaydateAPI*` struct of function pointers that the firmware hands to your game at launch. This package wraps that surface in idiomatic Swift: namespaced APIs, wrapper types with ownership semantics, closures instead of function-pointer/userdata pairs, `OptionSet` and `enum` types instead of raw constants, and typed `throws` for fallible calls. All ten C subsystems are covered: | Namespace | Wraps | Highlights | |---|---|---| | `System` | `playdate->system` | input, time, menu items, logging | | `Display` | `playdate->display` | refresh rate, scale, mosaic, flip | | `Graphics` | `playdate->graphics` | drawing, `Bitmap`, `Font`, `TileMap`, video | | `Sprite` | `playdate->sprite` | display list, collisions, custom draw | | `Sound` | `playdate->sound` | players, synths, sequences, effects | | `File` | `playdate->file` | `Handle`, directory operations | | `JSON` | `playdate->json` | `Value` tree decode/encode | | `Lua` | `playdate->lua` | C functions, classes, stack access | | `Scoreboards` | `playdate->scoreboards` | online leaderboards | | `Network` | `playdate->network` | wifi, `HTTPConnection`, `TCPConnection` | ## Requirements - The [Playdate SDK](https://play.date/dev/) (3.1.1 or later). The SDK is not vendored into this repository. - Swift 6.3 tools or later. Device builds additionally need: - A [swift.org development snapshot toolchain](https://www.swift.org/install/macos/) — Xcode's toolchain does not ship the Embedded Swift stdlib for the device target (`armv7em-none-none-eabi`). The easiest way to get one is to install [Swiftly](https://www.swift.org/swiftly/), Swift's toolchain manager, and install the `main-snapshot` toolchain with it: ```sh swiftly install main-snapshot ``` - The [Arm GNU toolchain](https://developer.arm.com/downloads/-/arm-gnu-toolchain-downloads) (`arm-none-eabi-gcc`) on your `PATH`, which the Playdate SDK's build support uses to compile and link the device binary. ### One-time SDK setup The `CPlaydate` target resolves `pd_api.h` through a `playdate` pkg-config module, so the package works as a normal SwiftPM dependency without unsafe build flags. Generate the pkg-config file once per machine: ```sh make setup ``` The target locates the SDK via `PLAYDATE_SDK_PATH` (default `~/Developer/PlaydateSDK`) and writes `playdate.pc` into a directory SwiftPM searches by default (`/usr/local/lib/pkgconfig`). If you prefer another location on your `PKG_CONFIG_PATH`, run the underlying script directly with the destination as an argument: `Scripts/install-pkgconfig.sh `. If Xcode had the package open before you ran the setup, make it re-read the manifest (File ▸ Packages ▸ Reset Package Caches) — Xcode caches package resolution and won't notice the new `.pc` file on its own. ## Adding the dependency ```swift // Package.swift of your game dependencies: [ .package( url: "https://github.com/rock-n-code/playdate-kit.git", from: "0.1.0" ), ], targets: [ .target( name: "MyGame", dependencies: [ .product( name: "PlaydateKit", package: "playdate-kit" ) ] ), ] ``` ## Getting started A Playdate application or game has a single C entry point, `eventHandler`. Export it with `@_cdecl`, initialize the binding on the first event, and install an update callback: ```swift import CPlaydate import PlaydateKit @_cdecl("eventHandler") func eventHandler( pointer: UnsafeMutableRawPointer, event: PDSystemEvent, argument: UInt32 ) -> Int32 { switch SystemEvent(event: event, argument: argument) { case .initialize: Playdate.initialize(with: pointer) // must happen before anything else Game.shared.start() case .pause: Game.shared.pause() default: break } return 0 } final class Game { nonisolated(unsafe) static let shared = Game() var player = Sprite() func start() { Display.refreshRate = 50 System.setUpdateCallback { self.update() return true // true = redraw the display this frame } } func update() { let (_, pushed, _) = System.buttonState if pushed.contains(.a) { System.log("A pressed at \(System.currentTimeMilliseconds)ms") } Sprite.updateAndDrawAll() System.drawFPS() } } ``` `Playdate.initialize(with:)` stores the API pointer once; every wrapper in the module uses it from then on. Calling any wrapper before `initialize` is a programmer error and will crash. ## Tour of the API ### System: input, time, menu ```swift // Buttons are an OptionSet: current (held), pushed and released this frame. let (current, pushed, released) = System.buttonState if current.contains([.b, .down]) { /* charge shot */ } // Crank. if !System.isCrankDocked { aim(degrees: System.crankAngle) spin(by: System.crankChange) } // Accelerometer is a peripheral you enable first. System.setPeripheralsEnabled(.accelerometer) let (x, y, z) = System.accelerometer // System menu items take closures; the binding keeps them alive until removed. System.addCheckmarkMenuItem(title: "music", isChecked: true) { item in Audio.musicEnabled = item.isChecked } System.addOptionsMenuItem(title: "mode", options: ["easy", "hard"]) { item in Game.shared.difficulty = item.value } // Logging goes to the simulator console or device serial. System.log("spawned \(count) enemies") System.error("unrecoverable") // stops execution ``` ### Graphics: drawing, bitmaps, fonts Fallible loads (`Bitmap(path:)`, `Font(path:)`, …) throw `PlaydateError`, which carries the message produced by the OS: ```swift let font = try Graphics.Font(path: "fonts/Asheville-Sans-14-Bold.pft") Graphics.setFont(font) Graphics.clear(color: .white) Graphics.fillRect(x: 0, y: 0, width: 400, height: 32, color: .black) Graphics.drawText("Hëllo, Playdate", x: 8, y: 8) // Colors are solid or 8×8 patterns. let checker = Graphics.Pattern(rows: (0xAA, 0x55, 0xAA, 0x55, 0xAA, 0x55, 0xAA, 0x55)) Graphics.fillEllipse(x: 100, y: 100, width: 64, height: 64, color: .pattern(checker)) // Bitmaps draw themselves; draw into one by pushing it as the context. let logo = try Graphics.Bitmap(path: "images/logo") logo.draw(x: 168, y: 88) let canvas = Graphics.Bitmap(width: 64, height: 64) Graphics.pushContext(canvas) Graphics.drawLine(x1: 0, y1: 0, x2: 63, y2: 63, width: 2, color: .black) Graphics.popContext() ``` ### Sprites and collisions ```swift let ball = Sprite() ball.setImage(try Graphics.Bitmap(path: "images/ball")) ball.moveTo(x: 200, y: 120) ball.collideRect = Rect(x: 0, y: 0, width: 16, height: 16) ball.setCollisionResponseFunction { _, _ in .bounce } ball.add() // adds to the display list; the binding keeps it alive while added // In the update callback: let (actual, collisions) = ball.moveWithCollisions(goalX: goalX, goalY: goalY) for collision in collisions where collision.other.tag == Tags.brick { collision.other.remove() } // Every collision/query API also has a visitor form that iterates the // results in place instead of building an array — useful in hot loops: ball.moveWithCollisions(goalX: goalX, goalY: goalY) { collision in if collision.other.tag == Tags.brick { collision.other.remove() } } ``` Sprite callbacks (`setUpdateFunction`, `setDrawFunction`, `setCollisionResponseFunction`) receive the Swift wrapper back. The C-level sprite userdata slot is reserved by the binding for that recovery — use the `userdata` property on `Sprite` for your own per-sprite storage instead. ### Sound ```swift // Stream music from disk. let music = try Sound.FilePlayer(path: "audio/theme") music.play(repeat: 0) // 0 = loop forever // Play short effects from memory. let blip = try Sound.SamplePlayer(path: "audio/blip") blip.play() // Synthesis. let synth = Sound.Synth(waveform: .square) synth.setAttackTime(0.01) synth.setReleaseTime(0.2) synth.playMIDINote(Sound.noteC4, velocity: 0.8, length: 0.5) // Channels mix sources and effects. let channel = Sound.Channel() channel.add() channel.addSource(synth) let filter = Sound.TwoPoleFilter(kind: .lowPass) filter.setFrequency(800) channel.addEffect(filter) // Anything that takes a modulator accepts any SignalValue (LFO, Envelope, …). let wobble = Sound.LFO(shape: .sine) wobble.setRate(2) synth.frequencyModulator = wobble ``` ### Files and JSON ```swift // Paths resolve against the game's Data directory and pdx per the open mode. let save = try File.Handle(path: "save.json", mode: .write) try save.write(JSON.encode(.table([ "level": .int(3), "name": .string("Röck"), ]))) try save.close() let loaded = try JSON.decodeFile(path: "save.json") if case .table(let entries) = loaded, case .int(let level)? = entries["level"] { Game.shared.level = level } try File.listFiles(at: "replays") { name in System.log("found \(name)") } ``` ### Network Network access requires user permission per server: ```swift let reply = Network.HTTPConnection.requestAccess( server: "example.com", purpose: "Fetching daily puzzles") { allowed in guard allowed else { return } Puzzles.fetch() } func fetch() { guard let connection = Network.HTTPConnection(server: "example.com") else { return } connection.setRequestCompleteCallback { connection in let body = try? connection.read(length: connection.bytesAvailable) // … keep `connection` referenced somewhere until this fires … } try? connection.get(path: "/daily.json") } ``` ### Lua interop Lua callbacks are C function pointers with no context, so they must be `@convention(c)` functions rather than capturing closures: ```swift let double: Lua.CFunction = { _ in Lua.push(Lua.intArgument(at: 1) * 2) return 1 // number of return values pushed } try Lua.addFunction(double, name: "mylib.double") ``` ## Conventions - **Namespaces.** The subsystem namespaces (`System`, `Graphics`, `Sound`, …) live at the top level of the module; only the raw C API bootstrap stays under `Playdate` (`Playdate.initialize(with:)`, `Playdate.api`). On a name collision with another module, qualify with the module name: `PlaydateKit.System`. - **Properties vs. methods.** State the OS can report back is a property: read-write where the C API has a get/set pair (`Display.refreshRate`, `Source.volume`), get-only where it only has a getter (`Display.fps`). A `set…` method means the C API is write-only there (`Display.setScale`, `Synth.setAttackTime`) or setting takes extra arguments — a property getter never invents a value the OS can't return. Callbacks are installed with `set…Callback`/`set…Function` methods. - **Paths.** APIs that load a single file label the argument `path:` (`Bitmap(path:)`, `JSON.decodeFile(path:)`); directory operations use `at:` (`File.listFiles(at:)`). The POSIX-named `File.stat`, `File.mkdir`, and `File.unlink` take their path unlabeled, like their C namesakes. - **Errors.** Fallible operations use typed throws — `throws(PlaydateError)` generally, `throws(Network.NetError)` for network I/O — so `catch` gives you a concrete type, and no `any Error` existentials are needed. - **Ownership.** A wrapper that *creates* a C object frees it on `deinit`; keep the wrapper referenced for as long as you use it. Wrappers vending OS-owned objects (a `Bitmap` from a `BitmapTable`, a track from a `Sequence`, …) don't free them — keep the owner alive instead, as documented on each API. Resources a C object keeps referencing (a sprite's image, a synth's sample, modulators, menu-item option titles) are retained by the wrapper automatically. - **Callbacks.** Where the C API provides a userdata slot, closures are supported everywhere and delivered back with the right wrapper. A few C callbacks have no userdata (serial messages, headphone changes, scoreboard completions, `getServerTime`); those track one Swift closure at a time, as noted in their documentation. - **Threading.** The Playdate runtime is single-threaded (audio callbacks excepted); statics in the binding are `nonisolated(unsafe)` on that basis. Don't call the API from other threads. ## Building for the simulator and device This package builds as a plain Swift library, which is how you develop and unit-test game logic on the host (`swift test` works out of the box). Shipping a `.pdx` needs the Playdate toolchain on top: - **Simulator** builds compile your game as a host dylib placed in the pdx (`Examples/HelloPlaydate/build.sh` shows the SwiftPM-based flow). - **Device** builds cross-compile with Embedded Swift for ARM Cortex-M7 (`-enable-experimental-feature Embedded`, triple `armv7em-none-none-eabi`, `-fshort-enums` to match the firmware ABI) and link through the SDK's own make infrastructure. [`Examples/swift.mk`](Examples/swift.mk) packages the device pipeline: it locates the SDK and a Swift snapshot toolchain, compiles the `PlaydateKit` wrapper as a module-aliased Embedded Swift module, and hooks the game objects into the SDK's `common.mk`. A game needs only a short Makefile on top — [`Examples/HelloPlaydate/Makefile`](Examples/HelloPlaydate/Makefile) is the template, and `make` in that directory produces a `.pdx` containing both the device binary and the simulator dylib. Swift code is compiled `-Osize` by default (measured ~15% smaller than `-O` on the example); override with `make SWIFT_OPT=-O`. The setup follows Apple's [swift-playdate-examples](https://github.com/apple/swift-playdate-examples), adapted to this package. The wrappers are written within the Embedded Swift subset for exactly this reason: no Foundation, no reflection, no untyped throws. That claim is enforced, not aspirational: the check cross-compiles the whole module for `armv7em-none-none-eabi` with Embedded Swift enabled and the device's `-fshort-enums` ABI. Running it needs the same snapshot toolchain and Arm GNU toolchain headers: ```sh make embedded ``` The target picks up a snapshot toolchain installed at `~/Library/Developer/Toolchains` automatically; point it at another one with `make embedded SWIFT_BIN=`. ## Make targets A root Makefile fronts the development lifecycle; a bare `make` (or `make help`) lists the targets. `build`, `test`, `docs`, and `consumer-test` need only Xcode's toolchain (after the one-time `make setup`); `embedded` and the example targets additionally need the device toolchains above. | Target | Effect | |---|---| | `make setup` | One-time: point the `playdate` pkg-config module at the SDK | | `make build` / `make test` | Build the bindings for the host / run the unit tests | | `make outdated` / `make upgrade` | Show / apply updates to the SwiftPM dependencies | | `make embedded` | Compile-only device check (Embedded Swift, `armv7em-none-none-eabi`) | | `make consumer-test` | Build and run a scratch package depending on playdate-kit | | `make check` | The full verification suite: build, test, embedded, consumer-test | | `make docs` / `make docs-preview` | Generate / preview the DocC documentation | | `make example` / `make example-run` | Build the HelloPlaydate example / open it in the Playdate Simulator | | `make clean` | Remove build products of the package and the example | ## Example [`Examples/HelloPlaydate`](Examples/HelloPlaydate) is a complete minimal game — bouncing box, crank needle, button handling, a system menu item — that builds into a runnable `.pdx`: ```sh cd Examples/HelloPlaydate # Simulator only (plain SwiftPM, no extra toolchains): ./build.sh open -a "$HOME/Developer/PlaydateSDK/bin/Playdate Simulator.app" HelloPlaydate.pdx # Device + simulator (snapshot toolchain and arm-none-eabi-gcc required): make ``` Sideload the device build from the Playdate Simulator (Device ▸ Upload Game to Device) or with the SDK's `pdutil`. ## Documentation The API reference is a DocC catalog. Generate it locally with: ```sh make docs ``` serve it in a local web server with `make docs-preview`, or browse it with Xcode's documentation viewer (Product ▸ Build Documentation). ## Layout ``` Examples/ swift.mk Shared make rules for device builds: toolchain/SDK discovery and Embedded Swift compile flags HelloPlaydate/ Minimal game buildable into a .pdx for the simulator (build.sh) or simulator + device (make) Scripts/ install-pkgconfig.sh One-time setup: points the "playdate" pkg-config module at your SDK installation build-embedded.sh Compile-only device check: Embedded Swift for armv7em-none-none-eabi with the device ABI consumer-test.sh Builds a scratch package depending on playdate-kit to prove settings propagate to consumers Sources/ CPlaydate/ System library target: module map + umbrella header importing pd_api.h from the SDK, plus inline shims for the variadic log/error functions PlaydateKit/ The Swift bindings, one folder per subsystem (System, Graphics, Sound, ...) holding one type per file, grouped by kind (Classes, Structures, Enumerations, Aliases); Sound is further split into the Source, Signal, Effect, and Synth subdomains. Also holds the shared Support.swift helpers and the PlaydateKit.docc documentation catalog Tests/ PlaydateKit/ Host-runnable tests for the pure value types ``` ## License MIT — see [LICENSE](LICENSE). The Playdate SDK itself is licensed separately by Panic, Inc. and is not distributed with this package.