a8b19227d5
Deep review of all 22 workspace crates (~52k LOC across 117 files). - docs/architecture.md: system design, crate map, data flow, concurrency model - docs/improvement-plan.md: 19 prioritized improvements (P0-P3) - CLAUDE.md: updated crate layout (added missing crates), added review observations documenting strengths and areas for improvement https://claude.ai/code/session_01CtmH5WraR6fjmt5Rx7ooEv Signed-off-by: Claude <noreply@anthropic.com>
131 lines
6.7 KiB
Markdown
131 lines
6.7 KiB
Markdown
# CLAUDE.md
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This file provides guidance to Claude Code (claude.ai/code) when working with code in this repository.
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## Commands
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```bash
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# Build
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cargo build --release
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# Run tests
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cargo test
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# Lint
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cargo clippy
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# Run a single test (by name pattern)
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cargo test <test_name>
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# Run tests for a specific crate
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cargo test -p trx-core
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# Generate example config
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./target/release/trx-server --print-config > trx-server.toml
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./target/release/trx-client --print-config > trx-client.toml
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# Run server
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./target/release/trx-server --config trx-server.toml
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# or via CLI args:
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./target/release/trx-server -r ft817 "/dev/ttyUSB0 9600"
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# Run client
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./target/release/trx-client --config trx-client.toml
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```
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## Crate Layout
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This is a Cargo workspace. All crates live under `src/`:
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```
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src/
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trx-core/ # Core types, traits, state machine, controller (~3,500 LOC)
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trx-protocol/ # Client↔server protocol DTOs, auth, codec, mapping (~1,100 LOC)
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trx-app/ # Shared application helpers (config paths, logging init)
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trx-reporting/ # PSKReporter UDP uplink + APRS-IS TCP uplink (~1,150 LOC)
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trx-server/ # Server binary: rig_task, audio pipeline, listener (~3,700 LOC)
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trx-backend/ # Backend abstraction trait + factory + dummy
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trx-backend-ft817/ # Yaesu FT-817 binary CAT (BCD encoding)
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trx-backend-ft450d/ # Yaesu FT-450D ASCII CAT
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trx-backend-soapysdr/ # SoapySDR RX with full DSP pipeline (~5,000+ LOC)
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trx-client/ # Client binary: remote connection, frontend spawning (~1,500 LOC)
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trx-frontend/ # Frontend trait (FrontendSpawner), runtime context
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trx-frontend-http/ # Web UI: REST API, SSE, WebSocket audio, session auth
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trx-frontend-http-json/ # JSON-over-TCP control frontend
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trx-frontend-rigctl/ # Hamlib-compatible rigctl TCP interface
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trx-configurator/ # Interactive setup wizard
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decoders/
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trx-aprs/ # APRS packet decoder (AX.25 + APRS-IS)
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trx-cw/ # CW (Morse) decoder (Goertzel tone detection)
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trx-ftx/ # Pure Rust FTx decoder (FT8/FT4/FT2, LDPC/OSD) (~3,000+ LOC)
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trx-wspr/ # WSPR weak-signal decoder
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trx-ais/ # AIS maritime transponder decoder
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trx-rds/ # RDS decoder for WFM (~2,000 LOC)
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trx-vdes/ # VDES maritime data exchange decoder (~1,300 LOC)
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trx-decode-log/ # JSON Lines file logging with date rotation
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```
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## Architecture
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The project is split into a **server** (connects to the radio hardware) and a **client** (exposes user-facing frontends). They communicate over a JSON TCP connection (default port 4530). Audio streams over a separate TCP connection (default port 4531) using Opus encoding.
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### Data flow
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```
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Radio hardware
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↕ serial/TCP
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trx-server (rig_task.rs)
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↕ trx-protocol JSON-TCP (port 4530)
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trx-client (remote_client.rs)
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↕ internal channels
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Frontends: HTTP (8080), rigctl (4532), http-json (ephemeral)
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```
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### trx-core controller
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The rig controller (`src/trx-core/src/rig/controller/`) is the central state management component:
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- **`machine.rs`** — `RigMachineState` enum with states: `Disconnected`, `Connecting`, `Initializing`, `PoweredOff`, `Ready`, `Transmitting`, `Error`
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- **`handlers.rs`** — `RigCommandHandler` trait; commands: `SetFreq`, `SetMode`, `SetPtt`, `PowerOn/Off`, `ToggleVfo`, `Lock/Unlock`, `GetSnapshot`, etc.
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- **`events.rs`** — `RigListener` trait and `RigEventEmitter` for broadcasting frequency/mode/PTT/state/meter/lock/power changes
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- **`policies.rs`** — `RetryPolicy` (`ExponentialBackoff`, `FixedDelay`, `NoRetry`) and `PollingPolicy` (`AdaptivePolling`, `FixedPolling`, `NoPolling`)
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### Decoders
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Signal decoders run as background tasks in `trx-server`, consuming decoded audio. `trx-ftx` provides the FT8/FT4/FT2 decoder in pure Rust. Decoded frames can be forwarded to PSKReporter and APRS-IS (IGate) uplinks, or logged via `trx-decode-log`.
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## Commit Format
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```
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[<type>](<crate>): <description>
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```
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Types: `feat`, `fix`, `docs`, `style`, `refactor`, `test`, `chore`. Use `(trx-rs)` for repo-wide changes. Sign commits with `git commit -s`. Write isolated commits per crate.
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## Codebase Review Observations
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Full architecture documentation: `docs/architecture.md`
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Improvement plan: `docs/improvement-plan.md`
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### Strengths
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- **Explicit state machine**: `RigMachineState` FSM prevents invalid states with a deterministic transition table and exhaustive matching. Well-tested with lifecycle, error recovery, and invalid transition tests.
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- **Trait-based polymorphism**: Clean abstraction boundaries (`RigCat`, `RigSdr`, `AudioSource`, `RigListener`, `RigCommandHandler`, `CommandExecutor`, `TokenValidator`, `FrontendSpawner`) enable loose coupling and testability.
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- **Multi-rig architecture**: Per-rig task isolation with `HashMap<rig_id, RigHandle>` routing, per-rig state/spectrum/audio watch channels, and backward-compatible single-rig mode.
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- **Async concurrency model**: Proper use of tokio channels -- `watch` for state snapshots, `broadcast` for PCM/decode fan-out, `mpsc` for commands. No mutex contention on hot paths.
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- **Comprehensive SDR support**: Full DSP pipeline with multi-mode demodulation (SSB, AM, SAM, FM, WFM, AIS, VDES), virtual channel management, squelch, noise blanker, spectrum FFT, RDS decoding.
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- **Pure Rust decoders**: FT8/FT4/FT2, APRS, CW, WSPR, AIS, VDES, RDS -- all implemented without C FFI dependencies.
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- **Good test coverage** in protocol layer: codec, mapping, auth all have thorough unit tests with round-trip verification.
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- **Feature-gated backends**: ft817, ft450d, soapysdr compiled conditionally to minimize binary size.
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### Areas for Improvement
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- **FrontendRuntimeContext** (`trx-frontend/src/lib.rs`) is a 60+ field god-struct mixing audio, decode, auth, UI config, and per-rig routing. Should be decomposed into sub-structs.
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- **Dual command enums**: `ClientCommand` and `RigCommand` are near-identical 40+ variant enums with mechanical 1:1 mapping in `mapping.rs`. Adding a command requires 4-file changes.
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- **Command handler boilerplate**: 11 implementations of `RigCommandHandler` follow identical patterns across 500+ lines. A macro could reduce this to ~100 lines.
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- **No integration tests** for `rig_task.rs` (1050 lines) or `audio.rs` (850+ lines) -- the most critical server components.
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- **No command execution timeouts** at the `CommandExecutor` level. Backend stalls propagate up. The 10s timeout only exists at the rig_task layer.
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- **Event emitter not panic-safe**: If one `RigListener` panics, remaining listeners in the notification loop are skipped.
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- **Sparse structured logging** in trx-core: only one `debug!()` call. State transitions, command execution, and retries are not instrumented.
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- **No command rate limiting**: rapid-fire commands from clients can overwhelm slow serial CAT interfaces.
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