EdisonJwa 21945979a3 test(audio,ptt): comprehensive Windows P0 unit-test suite (L0-L11)
Layered test coverage for the Windows PTT subsystem ahead of the
v1.0.0-rc.8 official release sign-off.

L0 (refactor)
- Extract three pure-logic dispatchers from the existing WndProc /
  LowLevelKeyboardProc / LowLevelMouseProc bodies in
  crates/chanora_audio/src/ptt_backends/windows.rs:
    dispatch_raw_input(ctx, &RAWINPUT)
    dispatch_hook_keyboard(ctx, wparam, &KBDLLHOOKSTRUCT)
    dispatch_hook_mouse(ctx, wparam, &MSLLHOOKSTRUCT)
  Each takes a small Context (AtomicBinding + AudioTransmitGate +
  flags) and is callable without spinning up any Win32 plumbing.
  The real Win32 procs unchanged structurally; they unpack lparam
  and forward to the dispatchers. AtomicBinding / RawInputContext
  / HookContext / resolve_binding are now pub(crate) so the
  in-file test module can drive them.

L1 — windows_keymap full-table sweep (+13 tests)
  Every key_label_to_vk arm, all A-Z + a-z, all 0-9, F1-F20,
  navigation, modifiers, OEM punctuation, numpad. Exhaustive
  mouse_label_to_button cases including the 0x08 / 0x10 /
  unknown-bitmask fallbacks.

L2 — AtomicBinding lock-free correctness
  store/read round-trip, clear(), Default = zeros, single-writer
  / single-reader concurrency, many-readers / single-writer.

L3 — resolve_binding dispatcher tests
  All PttInputClass variants, well-known labels, unknown-label
  fallback, mismatched class+label rejection, mouse bitmask
  resolution.

L4 — Backend state-machine
  Both WindowsRawInputBackend and WindowsHookBackend:
  descriptor() pre-arm vs post-arm (L0Focused -> L2/L3), start()
  with None binding rejection, rebind() in-place, stop()
  clears + idempotent, stop() after stop() no-op.

L5 — dispatch_raw_input table
  Keyboard match/non-match, key-down/key-up via Flags & 0x01,
  no-binding short-circuit, mouse XBUTTON1/XBUTTON2 down/up
  matching the bound button, unhandled HID type. RAWINPUT structs
  built via mem::zeroed plus field-fill, owning the unsafe in
  the test layer where it belongs.

L6 — dispatch_hook_keyboard + dispatch_hook_mouse
  WM_KEYDOWN / WM_KEYUP / WM_SYSKEYDOWN / WM_SYSKEYUP for the
  keyboard path, WM_XBUTTONDOWN / WM_XBUTTONUP for the mouse
  path. Same shape as L5.

L7 — Privacy invariant (crates/chanora_audio/tests/ptt_privacy.rs)
  New cross-platform integration test installs a custom
  tracing_subscriber Layer that records every emitted event's
  target + field names. Exercises the public PTT API plus (on
  Windows) the backend factory. Asserts no field name in the
  banned list (vk, scan_code, keysym, key_label, bound_key,
  binding, platform_key, VKey, wVk, wScan, kbflags, mouseflags)
  is ever emitted and every field belongs to the DEC-027
  allow-list. Adds tracing-subscriber as a dev-dependency on
  chanora_audio.

L8 — Full-chain integration in core/chanora_core/src/ptt.rs
  Windows-only mod windows_full_chain_tests:
    zero-tail full chain (synchronous)
    default-tail full chain (200 ms wait then off)
    mid-press rebind abandons in-flight press

L9/L10/L11 — tools/windows-smoke.cmd + tools/windows-smoke.md
  Batch smoke script + operator doc. cargo build, flutter build,
  artifact existence + size checks, headless launch with stderr
  capture, bridge-initialised log assertion. Distinct exit codes
  per failure step. Doc explains invocation + common failure
  modes.

Verification (Linux)
- cargo check --workspace: clean.
- cargo test --workspace: 78 passed / 0 failed / 3 ignored.
  76 cross-platform unit tests (unchanged) plus the new
  ptt_privacy integration test plus one new ignored portal smoke
  test.

The Windows-gated tests (~49 new) compile and run on the Korean
Windows 11 host where they belong; cross-compile from Linux is
not configured locally. The smoke script is the production
acceptance gate for rc.8 on Windows.

Deviations from the original plan are minor (single ignored
real-runtime test rather than per-platform attribute, L7 uses
public API rather than pub(crate) dispatchers, dispatchers live
inside windows.rs rather than a sibling module) and documented
in the subagent report.
2026-05-16 00:47:10 +08:00

Chanora

Chanora is a cross-platform voice communication client for TeamSpeak-compatible servers.

It is built with a shared Flutter UI and a Rust core, with TeamSpeak-compatible protocol integration isolated behind tsclientlib.

Flutter UI + Rust Core + tsclientlib

Chanora is an independent project and is not affiliated with, endorsed by, sponsored by, or officially associated with TeamSpeak.


Status

Chanora is currently in early planning and baseline-candidate design.

Current documentation baseline: v0.9.2
Current status: Baseline Candidate
Implementation status: Not production-ready

The current engineering focus is:

  • defining the system and software architecture;
  • preparing the Flutter + Rust application structure;
  • validating TeamSpeak-compatible protocol integration through tsclientlib;
  • defining cross-platform audio behavior;
  • preparing release, verification, security, privacy, and legal gates.

Target Platforms

Chanora is intended to support:

  • Windows
  • macOS
  • Linux
  • Android
  • iOS / iPadOS

Current platform policy:

Platform Baseline
iOS / iPadOS runtime target iOS 13+ unless Flutter, plugin, audio, or product constraints require raising it
App Store Connect upload gate Xcode 26+ with iOS 26 / iPadOS 26 SDK+ for upload on or after 2026-04-28
Android runtime target Android API 24+ unless Flutter, plugin, audio, or product constraints require raising it
Google Play target API Target the Google Play-required API level on upload date

The App Store / Play Store upload gates are release requirements. They are separate from local development and internal testing requirements.


Architecture Overview

Chanora separates UI, protocol logic, state synchronization, audio processing, diagnostics, and platform services.

Flutter Application
  ├─ App Shell
  ├─ Material 3 / Chanora Design System
  ├─ Feature Modules
  ├─ View Models / State
  └─ Typed Flutter/Rust Bridge

Rust Core
  ├─ Connection Manager
  ├─ State Synchronization
  ├─ Protocol Adapter
  ├─ Audio Subsystem
  ├─ Storage Services
  └─ Diagnostics

Protocol Layer
  └─ tsclientlib
      └─ TeamSpeak-compatible server

Key architecture rules:

  • Flutter does not call tsclientlib directly.
  • Protocol-specific types do not leak into the Flutter UI layer.
  • Rust Core owns protocol coordination, state synchronization, audio logic, storage services, diagnostics, and bridge-facing DTOs.
  • Flutter owns presentation, navigation, Material 3 theming, accessibility, localization presentation, and platform UI behavior.
  • Product localization and server-provided content are separated.
  • UTF-8 is the internal cross-layer text representation.
  • Non-UTF-8 conversion, if needed, occurs only at explicit protocol or platform boundaries.

MVP Direction

The current recommended MVP scope is:

Area MVP decision
Active server connections One active server connection per client instance
UI baseline Material 3 + Chanora Design System
Product language English UI first, i18n-ready architecture
Server content Preserve Unicode and do not translate server-provided content
Audio processing defaults Echo Canceller, Automatic Gain Control, Noise Suppression, and High-Pass Filter enabled where supported and stable
Audio implementation path Platform-native first; fallback isolated behind the audio subsystem
Local non-secret storage SQLite or equivalent embedded database
Secret storage Platform secure storage
Flutter/Rust bridge Stable typed bridge with generated or schema-controlled DTOs
Diagnostics Local, user-initiated export only
Telemetry None in MVP
Crash reporting Disabled unless explicitly approved later

Desktop Push-to-Talk

Chanora's desktop Push-to-Talk (PTT) follows a capability-based design (see docs/architecture/desktop-ptt-architecture.md). Focused PTT — the user holds a bound key or mouse button inside the focused Chanora window — is mandatory on Windows, macOS, and Linux. Global PTT (recognised while the application is not focused) is capability-dependent: it requires the operating system, the user-granted permission set, the display server, and the available input backend to all permit it.

The application reports a PttCapabilityLevel (L0Focused, L1GlobalShortcut, L2GlobalHoldToTalk, L3GlobalWithMouseButtons) that matches actual runtime behaviour, not the platform's theoretical maximum. The UI capability badge shows the live value.

Per-platform strategy (resolved by owner rulings 2026-05-15, see docs/governance/product-decision-register.md DEC-023 through DEC-028):

  • Windows — Raw Input first, low-level keyboard hook fallback, Focused PTT terminal fallback. Mouse side buttons supported. P0 / MVP.
  • macOS — permission-aware Event Tap with Focused PTT fallback; Global PTT upgrades asynchronously when the user grants Input Monitoring / Accessibility. P0 / MVP.
  • Linux — officially tested on GNOME on Wayland using the org.freedesktop.portal.GlobalShortcuts interface; every other Linux environment falls back to Focused PTT. Release notes do not claim Global PTT support outside the tested compositor.
  • Raw key codes, scan codes, virtual-key values, keysyms, and key-press timing sequences are never logged or included in the user-initiated diagnostic export. The diagnostic export carries only capability level, backend identifier, and bound input class.

A missed-key-up watchdog (default 30 s) clears transmit_active when the OS suppresses a key-up event so a stuck-PTT bug class is ruled out by construction.

Repository Layout

The repository documentation is expected to live under docs/.

docs/
  requirements/
    sysrs.md
    srs.md

  architecture/
    sysdes.md
    sad.md
    sdd.md

  verification/
    verification-master-plan.md
    swe4-unit-verification-plan.md
    swe5-software-integration-verification-plan.md
    swe6-software-verification-plan.md
    sys4-system-integration-verification-plan.md

  release/
    release-readiness-go-nogo-record.md
    platform-release-policy.md

  security/
    security-privacy-legal-guideline.md
    threat-model.md
    secure-storage-audit-report.md
    diagnostic-redaction-audit-report.md
    dependency-and-supply-chain-report.md

  privacy/
    privacy-policy.md

  legal/
    trademark-and-attribution-review.md

  ui-ux/
    material3-guideline.md
    material3-design-tokens.md
    material3-component-catalog.md
    adaptive-layout-platform-guide.md

  i18n/
    localization-architecture.md

  governance/
    document-index.md
    document-naming-convention.md
    traceability-matrix.md
    baseline-approval-record.md
    baseline-candidate-validation-report.md
    document-review-report.md
    product-decision-register.md
    decision-impact-assessment.md
    git-commit-message-convention.md
    repo-format-validation-report.md
    path-migration-map.md

  references/
    external-references.md
    aspice-swe2-swe3-integration-note.md

Implementation source folders may be added later. A likely structure is:

apps/
  chanora_flutter/

core/
  chanora_core/

crates/
  chanora_protocol/
  chanora_audio/
  chanora_state/
  chanora_storage/
  chanora_diagnostics/
  chanora_bridge/

The exact implementation layout should be finalized when the repository scaffold is created.


Documentation Entry Points

Start here:

Topic Document
System requirements docs/requirements/sysrs.md
Software requirements docs/requirements/srs.md
System architecture docs/architecture/sysdes.md
Software architecture docs/architecture/sad.md
Software detailed design docs/architecture/sdd.md
Verification strategy docs/verification/verification-master-plan.md
Release readiness docs/release/release-readiness-go-nogo-record.md
Platform release policy docs/release/platform-release-policy.md
Product decisions docs/governance/product-decision-register.md
Traceability docs/governance/traceability-matrix.md
Security/privacy/legal gates docs/security/security-privacy-legal-guideline.md

Engineering Process

Chanora follows this documentation hierarchy:

SysRS -> SysDes -> SRS -> SAD -> SDD

Direct traceability rules:

Document Direct upstream source
SysDes SysRS
SRS SysDes only
SAD SRS only
SDD SAD only

Verification mapping:

SDD -> SWE.4 Unit Verification
SAD + SDD -> SWE.5 Software Integration Verification
SRS -> SWE.6 Software Verification
SysDes -> SYS.4 System Integration Verification

Release readiness is tracked separately through the Go/No-Go record.


Release Readiness

A release is not approved by design documents alone.

Before an external or public release, the project must complete:

docs/release/release-readiness-go-nogo-record.md

The release decision must explicitly state:

Go
Conditional Go
No-Go

Release readiness must include:

  • release scope;
  • build number;
  • commit SHA;
  • Git tag;
  • artifact hashes;
  • satisfied P0/MVP requirements;
  • deferred requirements;
  • verification results;
  • waivers;
  • security review status;
  • platform readiness;
  • legal and OSS review status;
  • privacy policy status;
  • approval decision and approvers.

Security, privacy, and legal evidence are required before public or store release.

Required documents include:

docs/security/threat-model.md
docs/security/secure-storage-audit-report.md
docs/security/diagnostic-redaction-audit-report.md
docs/security/dependency-and-supply-chain-report.md
docs/privacy/privacy-policy.md
docs/legal/trademark-and-attribution-review.md

Important gates:

  • identity secrets and server passwords must use platform secure storage;
  • logs and diagnostic exports must redact secrets;
  • diagnostic export must be user-initiated unless a later approved policy changes this;
  • dependency licenses and vulnerabilities must be reviewed;
  • OSS notices must be prepared where required;
  • public wording must not imply official TeamSpeak affiliation;
  • privacy policy must describe local storage, diagnostics, permissions, and data handling.

Git Commit Convention

Chanora uses a Conventional Commits style format:

<type>(<scope>): <summary>

Examples:

feat(voice): add push-to-talk state handling
fix(protocol): recover channel tree after reconnect snapshot
docs(sad): add interface catalog and performance view
i18n(ui): add fallback behavior for missing localization keys
sec(diagnostics): redact server password from export bundle
release(android): prepare internal alpha build metadata

See:

docs/governance/git-commit-message-convention.md

Development

Implementation commands will be added after the repository scaffold is finalized.

Expected future commands may include:

flutter pub get
flutter test
cargo test
cargo clippy
cargo fmt

Do not treat these as authoritative until the actual Flutter/Rust workspace has been created.


Contributing

Before making a change:

  1. Check the affected requirement/design document.
  2. Confirm the correct traceability layer.
  3. Use the Git commit convention.
  4. Update docs and verification plans when the change affects requirements, architecture, detailed design, release behavior, security, privacy, or legal gates.

License

Chanora is dual-licensed under either of:

at your option. This dual-license model was Accepted on 2026-05-14 as decision DEC-020 in docs/governance/product-decision-register.md.

Unless you explicitly state otherwise, any contribution intentionally submitted for inclusion in Chanora by you, as defined in the Apache-2.0 license, shall be dual-licensed as above, without any additional terms or conditions.

Third-party software bundled or linked by Chanora is listed in NOTICE with its own licenses. The complete legal review of the dependency tree (DEC-012) must complete before any public/store release. See:

docs/governance/product-decision-register.md
docs/security/dependency-and-supply-chain-report.md
docs/legal/trademark-and-attribution-review.md
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