Three iOS client problems fixed plus a new core stereo-mic capture ABI: 1. Channel-id sync bug (mic button permanently dimmed): SessionState never synced currentChannelId from the self user's channelId on connect, so the mic button (gated on currentChannelId == 0) stayed dimmed. Added syncSelfChannel() (mirrors macOS MainWindowController.swift:461,491,522); called from init/.channelList/.userJoined/.userLeft/.userUpdated/.joinResult. Added applyServerMuteState() + serverMuted/serverDeafened to VoiceState. 2. Join/Leave Voice button: replaced icon-only mic toggle with explicit text button (parity with macOS). Mute/deafen disable when not in voice. 3. IOSAudioRouter.swift (new): full AVAudioSession routing layer — input port selection, built-in mic orientation/polar patterns, Bluetooth HFP/A2DP/Off modes, Standard/Raw mic processing, stereo capture, AirPlay, UserDefaults persistence. AudioSessionManager delegates to it. 4. Core stereo-mic capture (append-only ABI): vc_set_capture_channels() lets the core open the mic device in stereo (2-ch interleaved). LocalStream gains capture_channels; ensure_audio_running reads it; audio_engine.cpp capture_accum_ + on_capture updated to channel-aware accumulation. Test test_stereo_mic_capture (headless, L!=R stereo round-trip). Swift wrapper VoiceCatClient.setCaptureChannels. 5. Settings UI rework: AVAudioSession-derived input/output tree replaces miniaudio device picker. 6. iOS deployment target raised to 18.0 (Package.swift + project.pbxproj). swift-tools-version 6.0 with swiftLanguageModes .v5. Docs: tech-stack.md, architecture.md, voice.md, roadmap.md, building.md updated; stale 'vc_audio_suspend/resume deferred' claims corrected. Verified: ctest --preset dev 21/21 green; swift test 6/6 green; xcodebuild -target VoiceCatiOS -sdk iphonesimulator BUILD SUCCEEDED.
481 lines
19 KiB
Markdown
481 lines
19 KiB
Markdown
# Building & Manual Testing
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This doc explains what each CMake preset in [`CMakePresets.json`](../CMakePresets.json) is
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*for*, which one to actually use day-to-day, and the commands to stand up a real server +
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`vccli` clients against each other for manual testing. For the one-paragraph quick-start see
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[`CLAUDE.md`](../CLAUDE.md); for `ctest` targets see [`AGENTS.md`](../AGENTS.md). This doc is
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the missing middle: *how the presets relate to each other*, *which platform each targets*,
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and *how to drive the binaries by hand*.
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**Quick navigation:**
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| What you want to build | Section | Key command |
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|------------------------|---------|-------------|
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| Server + `vccli` + tests (all platforms) | [§3](#3-build--test-the-loop-youll-run-constantly) | `cmake --preset dev && cmake --build --preset dev && ctest --preset dev` |
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| Production server (stripped, no tests) | [§5](#5-server-release-production-shaped-build) | `cmake --preset server-release && cmake --build --preset server-release` |
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| Windows client (C# / WinForms) | [§7](#7-windows-client-c--winforms) | `dotnet build clients/windows/VoiceCat.slnx` |
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| macOS client (AppKit) | [§8](#8-macos-client-appkit) | `scripts/build-macos-client.sh` |
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| iOS client (SwiftUI / simulator) | [§9](#9-ios-client-swiftui) | `scripts/build-ios-client.sh` |
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| Launch iOS app on simulator | [§9](#9-ios-client-swiftui) | `scripts/run-ios-simulator.sh` |
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| Swift core + tests | [§8](#8-macos-client-appkit) | `cd clients/apple && swift test` |
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## 1. What each preset is for
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| Preset | Binary dir | Deps | Build type | Server | Tools | Tests | Strip | Platform | What it's for |
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|--------|-----------|------|------------|--------|-------|-------|-------|----------|---------------|
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| `vcpkg-common` | — | vcpkg | — | — | — | — | — | all | Hidden base. Sets the vcpkg toolchain wrapper ([`cmake/voicecat-toolchain.cmake`](../cmake/voicecat-toolchain.cmake)) which auto-resolves the triplet from the host platform. Not used directly. |
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| `skeleton` | `build/skeleton` | none | Debug | ON | ON | ON | no | all | The M0 skeleton. Compiles with just a C++20 compiler — no `VCPKG_ROOT` needed. Subsystems are stubs (`VC_ERR_NOT_IMPLEMENTED`). Good for "does the repo even build" sanity checks. Runs 2 tests (smoke + frame_codec). |
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| `dev` | `build/dev` | vcpkg | Debug | ON | ON | ON | no | all | **The one you actually want.** Day-to-day development: real protocol, crypto, voice, server — everything. Builds server + tools + tests (21 tests). Works on Windows, Linux, and macOS (triplet auto-resolved). |
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| `release` | `build/release` | vcpkg | Release | ON | ON | ON | no | all | Optimized build with the full test suite. Use to run tests against optimized code, profile, or catch optimizer-sensitive bugs. Symbols kept (not stripped) so stack traces and profiling remain useful. |
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| `server-release` | `build/server-release` | vcpkg | Release | ON | ON | OFF | **yes** | all | Production-shaped build for deployment. Optimized + stripped binaries (`-s`), no tests. This is what you'd ship/run — see [docs/deployment.md](deployment.md). |
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| `windows-client` | `build/windows-client` | vcpkg | Release | OFF | OFF | OFF | no | Windows | Produces a redistributable `voicecat.dll` for the C# WinForms client (M4). Static MinGW runtime — no `libgcc_s_seh-1.dll` etc. See [clients/windows/README.md](../clients/windows/README.md). |
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| `apple-dev` | `build/apple-dev` | vcpkg | Release | OFF | OFF | OFF | no | macOS | Static `libvoicecat.a` for the Swift Package / XCFramework (macOS slice). Validated on macOS 26.5 / Apple Silicon — builds green, produces valid arm64 `.a` + XCFramework. See [clients/apple/README.md](../clients/apple/README.md). |
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| `apple-ios` | `build/apple-ios` | vcpkg | Release | OFF | OFF | OFF | no | macOS→iOS | **Scaffolding** — cross-compiled static `libvoicecat.a` for iOS device (`arm64-ios`). One XCFramework slice. Not yet CI-validated. |
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| `apple-ios-sim` | `build/apple-ios-sim` | vcpkg | Release | OFF | OFF | OFF | no | macOS→iOS sim | **Scaffolding** — cross-compiled static `libvoicecat.a` for iOS simulator (`arm64-ios-sim`). One XCFramework slice. Not yet CI-validated. |
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So in practice there are three presets that matter for day-to-day work:
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- **`dev`** — everything: real protocol, real voice, real manual testing. This is the loop you run constantly.
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- **`release`** — same suite, optimized. Run it when you want to check optimized behavior or profile.
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- **`skeleton`** — fast no-deps build to confirm the stub path still compiles (CI smoke check).
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The rest are purpose-specific: `server-release` for deployment, `windows-client` for the DLL,
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`apple-*` for Apple platform slices.
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### Platform matrix
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The vcpkg presets (`dev`, `release`, `server-release`, `windows-client`, `apple-*`) auto-resolve
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the vcpkg triplet via [`cmake/voicecat-toolchain.cmake`](../cmake/voicecat-toolchain.cmake):
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| Host platform | Auto-resolved triplet | Notes |
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|---------------|----------------------|-------|
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| Windows (MinGW/MSYS2) | `x64-mingw-static` | The project's Windows toolchain. MSVC users must set `VCPKG_TARGET_TRIPLET=x64-windows` explicitly. |
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| Linux x64 | `x64-linux` | Server's primary deployment target (Docker, systemd). |
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| Linux arm64 | `arm64-linux` | Raspberry Pi / ARM VPS. |
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| macOS (Apple Silicon) | `arm64-osx` | `apple-dev` uses this automatically. |
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| macOS (Intel) | `x64-osx` | `apple-dev` uses this automatically. |
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Cross-compile presets (`apple-ios`, `apple-ios-sim`) override `VCPKG_TARGET_TRIPLET` explicitly;
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`VCPKG_HOST_TRIPLET` stays the host's (e.g. `arm64-osx` when building iOS on Apple Silicon).
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### Preset history
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The preset set was cleaned up on 2026-06-18 (see `PROGRESS.md`). The old names map as follows:
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| Old name | New name | Notes |
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|----------|----------|-------|
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| `dev` | `skeleton` | Renamed to reflect its actual purpose (no-deps stub smoke check). |
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| `m1-dev` | `dev` | Renamed — the project is past M5, so milestone-named presets were misleading. This is now the default development preset. |
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| `m2-dev` | *(dropped)* | Was cache-identical to `m1-dev` (same flags, same triplet, only the binary dir differed). Removed. |
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| `server-release` | `server-release` | Unchanged name; now stripped (`-s`) and auto-triplet. |
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| *(new)* | `release` | New: optimized build with tests on, symbols kept. |
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| `windows-client` | `windows-client` | Unchanged name; triplet now auto-resolved. |
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| *(new)* | `apple-dev`, `apple-ios`, `apple-ios-sim` | New: Apple platform scaffolding. |
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If you see `m1-dev` or `m2-dev` in old scripts, commits, or `PROGRESS.md` history entries,
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use `dev` instead. Historical `PROGRESS.md` entries are left intact as a true record of what
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was run.
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## 2. One-time setup for the real-deps presets
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`dev`, `release`, `server-release`, `windows-client`, and `apple-*` all need `VCPKG_ROOT`
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pointing at a bootstrapped vcpkg checkout:
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```bash
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# once:
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git clone https://github.com/microsoft/vcpkg
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./vcpkg/bootstrap-vcpkg.sh # .bat on Windows
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# every shell session (PowerShell):
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$env:VCPKG_ROOT = "D:\path\to\vcpkg"
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# or on Linux/macOS:
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export VCPKG_ROOT=/path/to/vcpkg
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```
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`vcpkg.json` (manifest mode) pins every dependency (protobuf, mbedTLS, libsodium, asio,
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sqlite3, spdlog, opus, miniaudio) — `cmake --preset dev` resolves and builds them
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automatically on first configure. That first configure is slow (vcpkg building from source);
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subsequent ones are cached.
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## 3. Build + test (the loop you'll run constantly)
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```bash
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cmake --preset dev
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cmake --build --preset dev
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ctest --preset dev
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```
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Binaries land in `build/dev/bin/` (`.exe` suffix on Windows):
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- `build/dev/bin/voicecat-server`
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- `build/dev/bin/vccli`
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- `build/dev/bin/voicecat-admin`
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To run the same suite against optimized code:
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```bash
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cmake --preset release
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cmake --build --preset release
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ctest --preset release
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```
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## 4. Manual testing: server + two clients
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### Start the server
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```bash
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./build/dev/bin/voicecat-server --name "Test Server" --data-dir ./voicecat-data
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```
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First run generates an Ed25519 identity + self-signed cert under `--data-dir`, creates the
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SQLite store, and creates a default "Lobby" channel. Other server flags:
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```
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--port <n> control+media port (default 8384)
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--data-dir <path> data directory (default ./voicecat-data)
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--name <name> server name
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--no-guests disable guest access (then provision accounts via voicecat-admin)
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--print-config print effective config and exit
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--version print version and exit
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```
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### Drive it with `vccli`
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`vccli` is the headless client used to exercise the protocol by hand. Full flag list:
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```
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vccli [--host H] [--port P] [--nick NAME] [--channel ID]
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[--voice] [--mute] [--text MSG] [--list-devices]
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[--input-device ID] [--input-mode vad|ptt] [--share-screen-audio]
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--host H server host (default 127.0.0.1)
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--port P server TCP port (default 8384)
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--nick NAME guest nickname (default vccli-test)
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--channel ID channel to join after auth (default 1, Lobby)
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--voice start a MIC stream and stay connected until Ctrl+C
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--mute start with the mic muted (only meaningful with --voice)
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--text MSG send MSG to the channel, then exit
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--list-devices print input/output devices (vc_list_devices) and exit
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--input-device ID use device ID (from --list-devices) for the MIC stream
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--input-mode vad|ptt send-side input gate mode (default vad)
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--share-screen-audio also start a SCREEN_AUDIO stream (WASAPI loopback on Windows)
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```
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While `--voice` is running, stdin accepts `ptt on`, `ptt off`, `mode vad`, `mode ptt` to
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toggle the input gate live.
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**Smoke test — two clients talking:**
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```bash
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# terminal A
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./build/dev/bin/vccli --nick Alice --text "hello from Alice"
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# terminal B (separate window, after A confirms it sent)
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./build/dev/bin/vccli --nick Bob --text "hello from Bob"
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```
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**Real voice between two clients (needs working mic/speakers, two terminals):**
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```bash
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# terminal A
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./build/dev/bin/vccli --nick Alice --voice
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# terminal B
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./build/dev/bin/vccli --nick Bob --voice
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```
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Speak into the mic on one side; you should hear it on the other. Ctrl+C to disconnect.
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**Enumerate audio devices before picking one:**
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```bash
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./build/dev/bin/vccli --list-devices
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./build/dev/bin/vccli --nick Alice --voice --input-device <ID> --input-mode ptt
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```
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**Provisioning a non-guest account** (if the server was started with `--no-guests`):
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```bash
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./build/dev/bin/voicecat-admin --data-dir ./voicecat-data account add alice --password secret
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./build/dev/bin/voicecat-admin --data-dir ./voicecat-data account list
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```
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## 5. `server-release` (production-shaped build)
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Same dependency story, but `Release` build type, stripped binaries, and no tests — this is the
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closest local analogue to what [docs/deployment.md](deployment.md)'s "from source" path
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produces:
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```bash
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cmake --preset server-release
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cmake --build --preset server-release
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./build/server-release/bin/voicecat-server
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```
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Use this to sanity-check release-mode behavior (e.g. perf, optimized codepaths) — not for
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day-to-day development, since it has no test target wired up. The `-s` linker flag strips
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symbol tables from the binaries, producing smaller executables suitable for distribution.
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## 6. Apple platform builds
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The `apple-dev`, `apple-ios`, and `apple-ios-sim` presets produce static `libvoicecat.a`
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slices for the Swift Package / XCFramework. All three are validated on macOS 26.5 / Apple
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Silicon. Build on macOS:
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```bash
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# macOS slice (arm64-osx on Apple Silicon, x64-osx on Intel)
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cmake --preset apple-dev
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cmake --build --preset apple-dev
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# → build/apple-dev/lib/libvoicecat.a
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# iOS device slice (arm64-ios)
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cmake --preset apple-ios
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cmake --build --preset apple-ios
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# → build/apple-ios/lib/libvoicecat.a
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# iOS simulator slice (arm64-ios-simulator)
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cmake --preset apple-ios-sim
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cmake --build --preset apple-ios-sim
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# → build/apple-ios-sim/lib/libvoicecat.a
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```
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You rarely need to run these CMake commands directly. The
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`clients/apple/scripts/build-xcframework.sh` script drives them internally and stitches
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the result into a self-contained `VoiceCatCore.xcframework`:
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```bash
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# macOS slice only (default — used by macOS AppKit client)
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clients/apple/scripts/build-xcframework.sh
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# All 3 slices (macOS + iOS device + iOS sim — required for iOS client)
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clients/apple/scripts/build-xcframework.sh --all
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```
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See [clients/apple/README.md](../clients/apple/README.md) for the XCFramework internals
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(fat static lib merge, module map staging).
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## 7. Windows client (C# / WinForms)
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The Windows client is a .NET 10 WinForms app that loads `voicecat.dll` (the MinGW-built
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shared library from the `windows-client` preset) via P/Invoke. Full details in
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[`clients/windows/README.md`](../clients/windows/README.md).
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**Prerequisites:** .NET SDK 10, MinGW-w64 / MSYS2 UCRT64 (GCC 13+), vcpkg.
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### Build the DLL
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```powershell
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cmake --preset windows-client
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cmake --build --preset windows-client
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# → build/windows-client/bin/voicecat.dll
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```
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### Build the C# solution
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```powershell
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cd clients/windows
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dotnet build VoiceCat.slnx
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```
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`Directory.Build.props` copies `voicecat.dll` into the output directory automatically.
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### Run the app
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```powershell
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# Terminal 1 — start the server (built with the dev preset)
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./build/dev/bin/voicecat-server.exe --name "My Server"
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# Terminal 2 — launch the client
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dotnet run --project clients/windows/VoiceCat.App/VoiceCat.App.csproj
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```
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### Run the C# interop tests
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```powershell
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dotnet test clients/windows/VoiceCat.slnx
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```
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## 8. macOS client (AppKit)
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The macOS client is an Xcode project (AppKit / Swift) that links `libvoicecat` via the
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`VoiceCatCore` Swift Package, which consumes a binary XCFramework target. Full details in
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[`clients/apple/README.md`](../clients/apple/README.md).
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**Prerequisites:** Xcode, vcpkg (`VCPKG_ROOT` set), macOS 14+ (deployment target).
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### Build the XCFramework
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The XCFramework is a local build artifact (gitignored, like the Windows DLL). It bundles
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`libvoicecat.a` + all vcpkg static deps into a single fat `.a` per slice, plus staged
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headers with a module map so Swift gets `import VoiceCatC`.
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```bash
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# macOS slice only (default, validated)
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clients/apple/scripts/build-xcframework.sh
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# → clients/apple/VoiceCatCore.xcframework/
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# All 3 slices (macOS + iOS device + iOS sim — iOS still scaffolding)
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clients/apple/scripts/build-xcframework.sh --all
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```
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The script runs `cmake --preset apple-dev` + `cmake --build --preset apple-dev` internally,
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then merges vcpkg's static deps with `libtool -static` and stitches the XCFramework with
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`xcodebuild -create-xcframework`.
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### Build the Swift core (SPM)
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```bash
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cd clients/apple
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swift build # builds VoiceCatCore library
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swift test # 6 smoke tests against a real voicecat-server
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```
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`swift test` requires the `dev` CMake preset to be built
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(`build/dev/bin/voicecat-server` + `voicecat-admin`).
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### Build the macOS app (Xcode)
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```bash
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xcodebuild -project clients/apple/macOS/VoiceCatMac.xcodeproj \
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-scheme VoiceCatMac -configuration Debug build
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# → ~/Library/Developer/Xcode/DerivedData/VoiceCatMac-*/Build/Products/Debug/VoiceCatMac.app
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```
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Or open the project in Xcode and build from the UI:
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```bash
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open clients/apple/macOS/VoiceCatMac.xcodeproj
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```
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### Run the app
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```bash
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# Terminal 1 — start the server (built with the dev preset)
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./build/dev/bin/voicecat-server --name "My Server"
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# Terminal 2 — launch the client
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open ~/Library/Developer/Xcode/DerivedData/VoiceCatMac-*/Build/Products/Debug/VoiceCatMac.app
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```
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Or use the per-artifact script which builds and stages to `dist/macos-client/`:
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```bash
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scripts/build-macos-client.sh
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```
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## 9. iOS client (SwiftUI)
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The iOS client is an Xcode project (`clients/apple/iOS/VoiceCatiOS.xcodeproj`) that
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links `libvoicecat` via the same `VoiceCatCore` Swift Package as the macOS client.
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Full details in [`clients/apple/README.md`](../clients/apple/README.md).
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**Prerequisites:** Xcode, vcpkg (`VCPKG_ROOT` set), iOS Simulator runtime installed
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(Xcode > Settings > Platforms > iOS). iOS deployment target: 18.0.
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### Build the XCFramework (all slices)
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The iOS build requires the `ios-arm64-simulator` slice in the XCFramework — not just the
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macOS slice. Use the `--all` flag to produce all three slices:
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```bash
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clients/apple/scripts/build-xcframework.sh --all
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# → clients/apple/VoiceCatCore.xcframework/
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# ├── macos-arm64/
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# ├── ios-arm64/
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# └── ios-arm64-simulator/
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```
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### Build the iOS simulator app
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```bash
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# Via the convenience script (recommended):
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scripts/build-ios-client.sh
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# → clients/apple/iOS/build/Debug-iphonesimulator/VoiceCatiOS.app
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# → dist/ios-client/VoiceCatiOS.app
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# Or as a single command (what the script does under the hood):
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SIM_SDK="iphonesimulator$(xcrun --sdk iphonesimulator --show-sdk-version)"
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BUILD_DIR="$(pwd)/clients/apple/iOS/build"
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xcodebuild \
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-project clients/apple/iOS/VoiceCatiOS.xcodeproj \
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-target VoiceCatiOS \
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-sdk "$SIM_SDK" \
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-configuration Debug \
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CODE_SIGNING_ALLOWED=NO \
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ARCHS=arm64 \
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ONLY_ACTIVE_ARCH=YES \
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SYMROOT="$BUILD_DIR" \
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OBJROOT="$BUILD_DIR" \
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build
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```
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**Why `-target` instead of `-scheme -destination`?** Using `-scheme VoiceCatiOS
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-destination 'platform=iOS Simulator,OS=latest'` requires a simulator runtime whose iOS
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version exactly matches the SDK version (`iphonesimulatorX.Y`). If you have an older
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runtime installed (common when the SDK ships ahead of runtime availability in Xcode), the
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build fails with "Unable to find a destination matching the provided destination specifier."
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Using `-target` bypasses destination matching and builds against the SDK directly.
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**Why `SYMROOT=OBJROOT=clients/apple/iOS/build`?** When building with `-target` (not
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`-scheme`), the local Swift Package (`VoiceCatCore`) resolves its build products relative
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to `OBJROOT`. By default, SPM resolves into `clients/apple/build/`, while the app target
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looks in `clients/apple/iOS/build/`. Pointing both to the same directory fixes the
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"unable to resolve module dependency: 'VoiceCatCore'" error.
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### Run on the iOS Simulator
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```bash
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# Via the script (finds or boots an iPhone simulator, installs, launches):
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scripts/run-ios-simulator.sh
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# Build and run in one step:
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scripts/run-ios-simulator.sh --build
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# Stream app logs after launch:
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scripts/run-ios-simulator.sh --log
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# Target a specific device by name or UDID:
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scripts/run-ios-simulator.sh --device "iPhone 16 Pro"
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scripts/run-ios-simulator.sh --udid XXXXXXXX-XXXX-XXXX-XXXX-XXXXXXXXXXXX
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```
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Under the hood the script uses `xcrun simctl` commands:
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```bash
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# Boot a simulator (if not already running):
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xcrun simctl boot <UDID>
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open -a Simulator
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xcrun simctl bootstatus <UDID> -b # wait until boot is complete before installing
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# Install the built .app:
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xcrun simctl install <UDID> clients/apple/iOS/build/Debug-iphonesimulator/VoiceCatiOS.app
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# Launch the app:
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xcrun simctl launch <UDID> cat.voice.VoiceCatiOS
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# Stream logs (Ctrl+C to stop — does not kill the app):
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xcrun simctl spawn <UDID> log stream --predicate 'subsystem contains "VoiceCat"'
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```
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### Run the full stack (server + iOS simulator)
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```bash
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# Terminal 1 — start the server
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./build/dev/bin/voicecat-server --name "My Server"
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# Terminal 2 — build + launch iOS client on simulator
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scripts/run-ios-simulator.sh --build
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```
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On first connect the app will show a TOFU identity sheet — accept it, then join a channel.
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### Open in Xcode
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|
|
```bash
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open clients/apple/iOS/VoiceCatiOS.xcodeproj
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```
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Xcode can build and run on the simulator directly. The XCFramework must already exist
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(`clients/apple/VoiceCatCore.xcframework/`) — run `build-xcframework.sh --all` once
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before opening Xcode.
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