Lays the groundwork for the macOS (AppKit) and iOS (SwiftUI) clients with a shared Swift core wrapping the C ABI, mirroring the proven Windows VoiceCat.Interop layer. Architecture decision: macOS UI = AppKit (not SwiftUI) for the most mature VoiceOver accessibility story — same rationale as the Windows client's WinForms-over-WinUI-3 decision. iOS stays SwiftUI. Recorded in docs/roadmap.md §2. Build infrastructure (Phase 0): - clients/apple/scripts/build-xcframework.sh: runs cmake --preset apple-dev, merges libvoicecat.a + 107 vcpkg static deps into a single ~30 MB fat static library (libvoicecat-fat.a) via libtool -static (SPM binary targets link one .a per slice), stages voicecat.h + a generated module.modulemap (module VoiceCatC) into the headers, runs xcodebuild -create-xcframework -> clients/apple/VoiceCatCore.xcframework. VoiceCatCore Swift Package (Phase 1): - Package.swift: binary target (VoiceCatCoreXCF) + library (VoiceCatCore) + test target. - Sources/VoiceCatCore/: 7 files mirroring the C# VoiceCat.Interop patterns adapted to Swift native C interop — Enums (9 Swift mirrors of C enums, UInt32-backed), Config, Event (copies ev.text to String inside the callback — the #1 lifetime rule), Models (10 Swift value types), Marshaling (C arrays -> Swift + immediate vc_free_*), Callbacks (@convention(c) + Unmanaged.passUnretained, the Swift analog of C#'s [UnmanagedCallersOnly] + GCHandle), VoiceCatClient (owns vc_client* as OpaquePointer, all 38 C ABI functions, deinit -> vc_client_destroy then frees config CStrings, event delivery on main queue via coalesced DispatchQueue.main drain). Tests — 6/6 green (swift test against a real voicecat-server): - testConnectTofuAuthListChannelsRoundTrips, testAdminChannelCrudAccountCrudRoundTrips, testScreenAudioStreamStartsAndStops, testPerStreamRecvControlsRoundTrip, plus two static smoke tests. Catches Swift-specific interop bugs (@convention(c) callback lifetime, Unmanaged pointer resolution, CString memory management, enum raw-value bridging, struct layout) that C++ ctest cannot. C++ suite still 21/21 green. Docs updated (house rule): tech-stack.md §2, architecture.md §4, roadmap.md M4 + §2, clients/apple/README.md (full rewrite), PROGRESS.md, .gitignore.
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Roadmap & Open Questions
1. Milestones
Each milestone is shippable/testable on its own. The headless C++ test client (vccli)
exists from M1 so the protocol can be exercised long before any GUI.
M0 — Scaffolding
- Repo layout (see architecture.md §6), CMake + vcpkg manifest, CI matrix.
core/proto/skeleton;protoccodegen wired for C++ (C#/Swift later).- Empty
libvoicecatwith the C ABI header and stub implementations. - Exit: core + server +
vcclicompile and link on Linux/macOS/Windows.
M1 — Control plane (TCP/TLS, no audio yet)
- TLS 1.3 transport; framing; Envelope; ClientHello/ServerHello negotiation.
- Auth: guest + admin-provisioned local account (Argon2id, SQLite); server identity
(TOFU/Ed25519);
voicecat-adminaccount add/reset/del/list. - Channel tree: snapshot + deltas; join/leave; create/edit/delete (perm-checked).
- Text chat (ephemeral): channel + private messages, acks; live relay, no history store.
vcclican connect, auth, browse channels, and chat.- Exit: two
vccliinstances chat through a real server over TLS.
M2 — Voice, single stream
- UDP transport with exported-key + ChaCha20-Poly1305 AEAD (mandatory, no plaintext path); UDP token binding; anti-replay.
- miniaudio capture/playback; libopus encode/decode; one
MICstream per user. - Send-side webrtc APM (AEC + NS + AGC + VAD) and a VAD/PTT input gate (both modes, client-configurable) — AEC is in from the start, not deferred.
- Per-ssrc adaptive jitter buffer; mixer; FEC/PLC/DTX.
- Per-channel
AudioConfigenforced (incl. servermax_bitrate_bpsceiling); SFU relay. - Exit: talk between two
vccli/early-GUI clients in a channel; loss resilience visible.
M3 — Multi-stream & per-channel tuning
- Multiple concurrent streams per user (
MIC,SCREEN_AUDIO,AUX_DEVICE). - Per-stream receiver gain/mute; listener-side per-user noise reduction (APM NS on the receive path, per ssrc, local-only); talk indicators.
- Full per-channel Opus configurability (mono/stereo, bitrate, frame size, FEC/DTX).
- Exit: a user shares mic + desktop audio; listeners control each independently.
M4 — Native clients
Windows (C#/WinForms, .NET 10) ✓ complete 2026-06-17:
- Connect, saved-server list (JSON, DPAPI-encrypted passwords), TOFU identity dialog.
- Channel tree (
TreeView), user list, join (incl. password-protected channels). - Voice: mic start/stop, mute/deafen, VAD/PTT/always-on mode, VAD sensitivity slider
(live threshold update via
vc_set_vad_threshold), device picker, level meter. - Per-user gain/mute/NR tuning (
PerUserTuningDialog). - Channel + private text chat. Activity log (screen-reader primary path).
- Explicit
AccessibleName/AccessibleDescriptionon every control;&mnemonics;AutomationNotificationcurated live announcements. - Focus-scoped PTT (documented limitation — no system-wide hook in v1).
- Admin/moderation UI out of scope — needs server-side dispatch first (M5).
macOS (Swift/AppKit) — in progress:
- Same feature set as Windows over the same C ABI (now stable and complete).
- Shared Swift core (
VoiceCatCorepackage) ✓ complete 2026-06-18 — wraps all 38 C ABI functions; 6/6 XCTest smoke tests pass against a real server (connect → TOFU → auth → channels → moderation → admin CRUD → per-stream recv controls). Seeclients/apple/README.md. - UI: AppKit (not SwiftUI) — chosen for the most mature VoiceOver accessibility story
(per-control
accessibilityLabel/accessibilityHelp/accessibilityRole,NSAccessibility.post(.announcement)for live announcements). Same rationale as the Windows client's WinForms-over-WinUI-3 decision (see §2 below). macOS 14 (Sonoma) deployment target. - AVAudioSession not needed on macOS (CoreAudio via the core directly).
iOS (Swift/SwiftUI) — pending:
- SwiftUI app consuming the same
VoiceCatCorepackage. - AVAudioSession, mic permission, foreground voice.
- ReplayKit broadcast extension for
SCREEN_AUDIO. vc_audio_suspend/vc_audio_resumeABI hooks (deferred until this milestone).
Exit: non-technical user installs a client, saves a server, and joins.
M5 — Moderation, polish, and beyond
- Permissions/roles, kick/ban/server-mute, channel passwords UI. Windows WinForms UI complete (channel CRUD with full Opus config, user moderation, server account management); macOS/iOS Swift UI pending.
- DRED toggle, audio-quality polish. (AEC and VAD/PTT already shipped in M2.)
- Then (post-v1, protocol already reserves space): file transfer, E2EE option, CallKit/PushKit background voice, key-based identity, server-side text history, multi-node server.
2. Resolved decisions
Settled and reflected throughout the docs:
- Media crypto: exported-key + ChaCha20-Poly1305 AEAD from day one, mandatory — no DTLS, no plaintext mode. (security.md §2)
- TLS library / licensing: mbedTLS (Apache-2.0) + libsodium (ISC). No GPL/LGPL anywhere; code is redistributable closed-source. wolfSSL is rejected. (tech-stack.md §5)
- iOS screen/system audio: supported via a ReplayKit Broadcast Upload Extension
(
.audioApp); audio-only stays within the extension memory cap. (voice.md §9) - Self-host UX: zero-config, encrypted-by-default; Docker / single binary / source build. (deployment.md)
- DSP engine: webrtc-audio-processing (APM) — AEC in from the start, plus NS/AGC/VAD. (voice.md §8)
- Input activation: VAD and PTT, both modes client-configurable. (voice.md §11)
- Noise reduction is two-sided: sender can denoise its mic, and each listener can apply NS to a specific other user, locally, with no protocol traffic. (voice.md §10)
- Accounts: admin-provisioned (no self-serve registration) via
voicecat-adminor the in-app admin interface. (security.md §4, protocol.md §3, deployment.md §3a) - Text: ephemeral — live relay, no server-side history in v1. (protocol.md §5)
- Connect UX: pure direct-connect with a client-side saved-server list (no central directory). (deployment.md §3)
- Bitrate ceiling: server-config
opus.limits.max_bitrate_bps. (deployment.md §2) - Name: "VoiceCat" stays as the internal placeholder.
- DSP engine, superseded (2026-06-16): the "webrtc-audio-processing (APM)" decision above
(AEC + NS/AGC/VAD in one module) could not be carried out — it has no working Windows/MSVC
build upstream (GCC-only Meson build, MinGW support unfinished, hard
abseil-cppdependency, Linux-tested only). v1 ships a lightweight, dependency-free energy/RMS VAD instead, behind the sameApmProcessorinterface; there is no AEC/NS/AGC implementation at all yet. Realwebrtc-audio-processingstays a tracked future swap (e.g. if/when a Linux build target exists). (voice.md §8, §11) - Windows client UI framework (2026-06-17): WinForms (.NET 10), not WinUI 3 or
Avalonia. Reason: Win32 HWND controls have the most mature, predictable screen-reader
(NVDA/JAWS/Narrator) support of any current .NET UI stack. WinUI 3's accessibility UIA
tree has known rough edges on .NET 10; Avalonia's accessibility story is thinner still.
This overrides the earlier WinUI/Avalonia mention in
docs/tech-stack.md §2anddocs/architecture.md §4. (clients/windows/) - TOFU pins TLS leaf cert, not Ed25519 (2026-06-17): the original design said to pin the
server's declared Ed25519 identity fingerprint from
ServerHello. This is circular — the Ed25519 key and the TLS cert are generated independently with no cryptographic binding, so accepting/rejecting based on a value sent inside the channel being trust-decided is meaningless. Decision: pin the TLS leaf certificate's own SHA-256 fingerprint, which is verifiable directly from the TLS handshake before any application data is trusted. The Ed25519 value is still shown in the identity dialog for human-readable display only (informational). Seedocs/security.md §1.1. (core/src/crypto/tofu_store.*, vc_confirm_server_identity) - PTT is focus-scoped in v1 (2026-06-17): PTT hotkey capture uses
Form.KeyDown/KeyUp(works only while the VoiceCat window has focus), not a system-wideWH_KEYBOARD_LLhook. Reason: a low-level keyboard hook requires escalated permissions, risks AV flagging, and is disproportionate complexity for a v1 client. Documented in the UI as a known limitation. Can be revisited for v2 if users request it. (clients/windows/VoiceCat.App/Forms/MainForm.cs) - macOS client UI framework (2026-06-18): AppKit, not SwiftUI. Reason: AppKit has the
most mature, granular VoiceOver accessibility story on macOS — per-control
accessibilityLabel/accessibilityHelp/accessibilityRole,NSAccessibility.post(.announcement)for curated live announcements, and decades of real-world screen-reader usage. This is the same rationale that drove the Windows client to WinForms over WinUI 3 (screen-reader support is the deciding factor). SwiftUI's VoiceOver support has improved but still has gaps in complex AppKit-bridged control surfaces (outline views, data-table column headers, live-region announcements). iOS stays SwiftUI — its control surface is narrower and SwiftUI's VoiceOver support is sufficient there. This overrides the earlier "SwiftUI for both macOS + iOS" mention indocs/tech-stack.md §2anddocs/architecture.md §4. macOS 14 (Sonoma) deployment target. (clients/apple/)
3. Open questions
All initial open questions are resolved (§2). Two second-order considerations to keep in mind during implementation — not blockers:
- APM in constrained contexts. webrtc-audio-processing is a heavier build; confirm it static-links cleanly for the single-binary goal, and note the iOS broadcast extension only does Opus encode + send (no APM), so it stays under the ~50 MB cap. Listener-side per-user NS runs only in the full host app.
- Receive-side NR cost at scale. A per-ssrc APM NS instance per flagged user adds CPU on busy channels; instantiate lazily (only for flagged streams) and cap concurrent instances.
4. What's intentionally deferred
To keep v1 focused (voice + text), these are designed-for but not built: file transfer, end-to-end encryption, key-based identities, multi-node/federated servers, mobile background VoIP push, and any server-side audio mixing/transcoding. The protocol's versioning + feature negotiation + reserved tag ranges (protocol.md §8) ensure each can be added without breaking deployed clients.