| Filename | Latest commit message | Latest commit date |
|---|---|---|
Destroy was a straight-line async fn with no queue node behind it, so
nothing in the graph could answer "is this container going down on
purpose?". That gap is why an imperative crash-watch suppression guard
existed: an RAII handle held for the operation's duration, a second way
to say what every other lifecycle op already says through its node.
Reuse the existing Stop node rather than teaching a new node to stop
things:
Stop -> DestroyContainer -> (PurgeState) -> DestroyBookkeeping
Stop already declares takes_container_down honestly, so the suppression
is now derived from the graph like every other op's. It also turns the
precondition into an edge: DestroyContainer runs only under a completed
Stop, so it operates on an already-stopped container and carries
takes_container_down = false permanently. A container still alive at
that point is a real bug and stays loud instead of being absorbed by a
flag -- which matters because a wrong true silently swallows a crash
while a wrong false only costs a spurious event.
Removes suppress_crash_watch, CrashWatchSuppression, crash_suppressed,
crash_watch_suppressed and NO_NODE_LABEL. The migration call sites went
with the obsolete startup migrations, so destroy was the last caller and
intent now has exactly one home.
destroy() becomes a submit-and-return, matching every sibling endpoint
(rebuild, kill, restart, start, pause, resume) -- it was the only
lifecycle op that awaited its work. The container rescan moves into the
bookkeeping tail, so ContainerRemoved now arrives after the 200 rather
than before it.
Also drops an orphaned doc-comment in coordinator.rs: two stacked blocks
where only the second described crash_suppressed, the first documenting
a field that no longer exists. Removing the field would have re-pointed
it at recent_transient.
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||
| .. | ||
| src | ||
| Cargo.toml | ||
| README.md | ||
hive-c0re
The unprivileged host daemon (runs as hive-core). Owns the sqlite
broker, the approval/question/schedule queues, the generic job-DAG
queue, container lifecycle, gateway/forge/matrix provisioning,
per-container stats, and the axum operator dashboard. Largest crate in
the workspace — bin-only, no separate lib.
When to use it
Host-level, cross-container orchestration: spawning/rebuilding/
destroying agent containers, the approval flow, dashboard-visible
state, provisioning per-agent forge/matrix/gateway accounts. Agent-side
behavior (turn loop, MCP tools) lives in hive-agent/hive-agent-mcp
instead — this daemon only talks to agents over the socket wire types
in hive-sh4re.
Shape
Cohesive clusters live in directory submodules, each re-exported at
the crate root (crate::broker::… keeps resolving regardless of which
subdirectory a module actually lives in). One line each — read the
module's own //! doc-comment for real detail, don't expect this file
to track it:
dashboard/— the operator dashboard (containers, approvals, schedules, questions, logs, topology).job_queue/— the job-DAG queue + desired-state reconciliation (docs/coordinator.md).lifecycle/—nixos-containerlifecycle + per-agent config flake generation.stores/— sqlite-backed stores (broker, queues, audit, power).workers/— background sweeps (crash watch, scheduled prompts, auto-update, knowledge sync).agent_config/— per-agent registries (tool groups, capabilities, resource limits, topology).stats/— dashboard metrics aggregation + OTEL export.socket_server/— the unix-socket request server shared by per-agent + manager sockets.forge/— optional Forgejo wiring (docs/forge.md).coordinator.rs— top-level wiring forserve.meta.rs,migrate.rs— the meta flake + schema/state migrations.matrix.rs,gateway_nginx.rs,webhook_secret.rs,priv_client.rs— matrix provisioning, gateway vhosts, webhook secrets, and thehive-privclient respectively.
See the top-level CLAUDE.md/docs/ index for the full reading-path
map.