Files
screen_cast/docs/PHASES.md
T
fegger 013c2519dc docs: record real two-machine validation of Phase 6 on the Pi
The full chain — mDNS discovery, signaling negotiation, RTP over
Wi-Fi, software H.264 decode, and fullscreen KMSDRM letterboxed
rendering — is confirmed working on a real two-machine setup
(desktop -> Raspberry Pi Zero 2 W headless receiver). The probe
gradient appeared on the Pi's display.
2026-09-07 14:09:30 +02:00

3.6 KiB

Development Phases

This file breaks the project into incremental milestones. Each phase produces a working, testable slice of functionality. Do not start a phase until the previous one is validated.

Phase 1 — Project Skeleton

Goal: configure, compile, and run tests with no real dependencies.

  • Meson build files (meson.build, meson_options.txt).
  • Public module headers with namespace sc.
  • Unit test that exercises a trivial utility function.
  • README.md with build instructions.

Validation: meson setup build && meson compile -C build && meson test -C build.

Phase 2 — Software H.264 Encode / Decode

Goal: encode raw pixel buffers to H.264 and decode them back, purely with FFmpeg software paths.

  • Add libavcodec, libavutil, libswscale dependencies.
  • Implement EncoderFactory::create() and Encoder::encode().
  • Implement DecoderFactory::create() and Decoder::decode().
  • Round-trip test: synthetic RGB frames → H.264 → decoded RGB.

Validation: unit test produces visually/structurally correct round-trip frames.

Phase 3 — PipeWire Screen Capture

Goal: capture the desktop and feed frames into the encoder.

  • Add libpipewire-0.3 dependency.
  • Implement CaptureFactory::create() using the xdg-desktop-portal.
  • Wire CaptureSession::next_frame()Encoder::encode() in a local smoke test that just writes a few encoded frames to disk.

Validation: manual run on a real Linux desktop session produces a valid H.264 bitstream.

Phase 4 — RTP Framing

Goal: packetize NAL units into RTP and depacketize them.

  • Implement RtpHeader and RtpPacket serialize/parse.
  • Add H.264 NAL splitting and FU-A fragmentation.
  • Unit test for serialization, fragmentation, and reassembly.

Validation: unit tests cover single-NAL and fragmented packet paths.

Phase 5 — Local UDP Sender → Receiver Loopback

Goal: send RTP packets over UDP and render the result locally.

  • Implement RtpTransport with ASIO or raw UDP sockets.
  • Wire sender pipeline: capture → encode → RTP → localhost UDP.
  • Wire receiver pipeline: localhost UDP → RTP → decode → renderer.
  • Add SDL2/SDL3 dependency and a minimal Renderer.

Validation: screencast --send and screencast --receive on the same machine show the captured desktop in a window.

Phase 6 — LAN Signaling and Discovery

Goal: two peers on the same LAN can find each other and negotiate a session.

  • Implement mDNS/DNS-SD discovery with Avahi.
  • Implement JSON signaling (newline-delimited JSON over TCP for now; the WebSocket transport is deferred to Phase 7 with its dependency).
  • Extend CLI with --peer and --discover.

Validation: two peers connect without hard-coded IP addresses. Validated over loopback AND on real two-machine hardware: a Raspberry Pi Zero 2 W (Wi-Fi, headless KMSDRM, systemd autostart) was discovered, negotiated with, and streamed to from the desktop; the receiver rendered a synthetic feed fullscreen on its display. On that network the LAN's 6to4 addresses are unreachable between peers, so senders try all discovered addresses in reachability order (private IPv4 first).

Phase 7 — Resilience and Polish

Goal: loss recovery, hardware acceleration, and packaging.

  • NACK / PLI feedback loop.
  • Jitter buffer on the receiver.
  • VAAPI/NVENC hardware encode probes and fallback.
  • Optional GUI target behind meson -Dgui=true.
  • .desktop file, icon, packaging notes.

Validation: sustained streaming under packet loss; hardware accel smoke where available.

Current phase

Phase 7 — Resilience and Polish.