The two items aimed at pointing GUI at a real veloxd instead of mockd.
rpc/event_hub — per-subscription fan-out shared by both transports.
subscribe() registers a connection with no interest; set_filter()
(session.subscribe, replaces not adds) turns on event kinds and an
optional per-task id filter; publish() delivers a pre-built
notification to every matching subscriber. session.subscribe on both
UdsServer and WsServer now does the real thing — registers/updates a
subscription, tears it down in close_conn.
sched/scheduler — the on_engine_state hook now actually publishes:
- transition() is the one place a task's row changes state; it reads
the store's own prior row for previousState (authoritative
regardless of engine/scheduler timing), writes the error columns,
and — when a hub is supplied — publishes event.task.state with
{taskId, state, previousState, summary, error}. Wired into every
transition: scheduler-driven (admission -> probing, resume ->
connecting, pause) and engine-reported (on_engine_state).
- progress_snapshot(): one row per task the engine is tracking
(EnginePort::progress(), a new interface method backed by
DownloadHandle::progress()), plus a store side-effect
(Tasks::update_progress) so download.list/get stay current between
state transitions. Returns rows; does NOT publish itself — batching
into one array message is the caller's job, per the schema's
x-maxRateHz: 4 and AGENT-DAEMON.md item 5 ("one message per task per
tick burns a core"). main.cpp's 250 ms timerfd is that caller: one
event.task.progress per tick, only when there's something to say.
dispatcher::on_download_add now publishes event.task.added (schema:
"summary is always present so a client can insert the row without a
follow-up download.get").
store/categories, store/queues — the two D3 handlers GUI's panels
call. category.list projects the six seeded built-ins; queue.list
derives taskIds from tasks.queue_id/queue_position (Queue's own schema
note: a queue's stored row never carries membership, download.update
/ queue.reorder do).
Verified live end to end against tools/testserver: a subscribed client
sees event.task.added on add, then the full event.task.state sequence
(queued -> probing -> connecting -> downloading -> assembling ->
verifying -> complete) with correct previousState at every step, and
real category.list / queue.list results.
Tests: event_hub (filter-by-kind, filter-by-task-id, replace-not-add,
unsubscribe), store_categories_queues, plus new sched_scheduler cases
for event.task.state publishing and progress_snapshot's store
side-effect. 38 daemon/cli tests green; sched_scheduler / event_hub /
ws_server / uds_roundtrip TSan-clean.
deferrals.md: D5 mostly closed (event.task.removed and the
still-unpublished events wait on their owning D3 handlers); D3 down to
the remaining download.* verbs, rules/settings/limiter/schedule,
queue mutation, category mutation, grabber, media.
Co-Authored-By: Claude Sonnet 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Upd9WhG9oppieig5nRDLig
VeloxDispatcher now takes a store::Db& and three handlers are real:
- download.list -> store::Tasks::list (filter / sort / paging in SQL) ->
to_summary per row. No more empty-table stub.
- download.add -> resolve saveDir (spec, else saveTo.defaultDir; ~ expanded)
and the leaf (spec.filename, else the URL's last segment percent-decoded,
else download.bin) -> fs::resolve_target against canonicalize_root'd
saveTo.allowedRoots. Any path-destination failure is -32011 with the
*original* saveDir in data.path. On success a TaskRow is inserted in
state `queued` (or `new` for startMode "manual") and {taskId, state}
returned. The scheduler that would then admit it is D4.
- download.get -> store::Tasks::get; a real -32010 + data.taskId for an
unknown id, else a TaskDetail (segmentDetail empty until the engine
segments the task, which the schema permits).
util/time.hpp: now_iso() factored out of ws_server.cpp.
main.cpp constructs the dispatcher with the opened db. The three
integration tests build an in-memory migrated db for it; velox.client
now drives the full slice through the CLI — add outside roots -> -32011
with data.path, add into an allowed root -> a task that download.list
shows and download.get details, unknown id -> -32010. Verified with the
real binaries: velox add persists, velox ls shows it, it survives a
daemon restart, /etc is refused.
ASan+UBSan and TSan clean; 34 daemon/cli tests green. deferrals.md:
D2 down to just download.probe; D3 down to categories/queues/rules/
settings/limiter/schedule.
Co-Authored-By: Claude Sonnet 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Upd9WhG9oppieig5nRDLig
The scriptable client, built now rather than last: it is how the daemon
gets exercised before the GUI is pointed at it (AGENT-DAEMON.md).
- src/client — synchronous blocking RPC over the Unix socket: resolve
$XDG_RUNTIME_DIR/velox/velox.sock, connect, session.hello, one framed
request/reply per call. Distinguishes transport failure (exit 3) from
a daemon-returned error (exit 1).
- src/main — subcommands add/ls/pause/resume/rm; --json prints the raw
JSON-RPC result or error; --dir/--out/--segments on add;
--delete-file on rm. Usage errors exit 2.
ls works end to end against veloxd today (empty table). add and the
bulk verbs reach the daemon and surface its "not implemented" (-32603)
cleanly until the store lands — the plumbing is done, the commands
light up as handlers do.
Test velox.client: the real Client against an in-process UdsServer —
no-daemon path, session.hello, download.list, and a not-implemented
method surfacing as an RPC error rather than a transport error.
ASan+UBSan clean; full tree (21 tests, incl. conformance) green.
Co-Authored-By: Claude Sonnet 5 <[email protected]>
Claude-Session: https://claude.ai/code/session_01Upd9WhG9oppieig5nRDLig
Lays out Velox Download Manager (IDM-class download manager for Ubuntu
26.04) as a monorepo ready for parallel lane development. No implementation
code by design.
- docs/: architecture, roadmap M0-M7, IDM-parity GUI spec, engine design,
Firefox extension spec, risks/spikes, packaging
- contracts/: wire-contract skeleton (JSON Schema + fixture templates) —
the single synchronization point between lanes
- docs/agents/: one brief per lane (PROTO, CORE, DAEMON, GUI, EXT, PKG/QA)
with owned directories, build order and definition of done
- CLAUDE.md: rules of engagement — lane ownership, layering, non-negotiables
- CMake scaffolding with dev/tsan/release/ci presets
Two environment findings shape the design: Firefox here is the Mozilla snap
(native-messaging risk, so the extension carries a loopback-WebSocket
fallback), and Wayland forbids passive clipboard monitoring (so clipboard
capture is explicit-action-first).
Co-Authored-By: Claude Opus 5 <[email protected]>