Review catch from argus on #2770: with the terminal hook gone, cancel
spares the DAG's tail node so it can report the cancellation — which
leaves that node `Pending` until the scheduler's next pass.
`post_rebuild_queue_cancel` emits its snapshot synchronously, and
`rollup_state` ranked `Queued` above `Cancelled`, so the operator who
just cancelled a DAG saw it go back to **Queued**: "the cancel didn't
take". Asserted in `cancel_clears_queued_dag`, which failed before this.
Fixing it surfaced an older disagreement. `builds.js::rollupState` has
always been `failed > cancelled > running > queued`; the Rust was
`failed > running > queued > cancelled`. The two had silently diverged
under a doc-comment claiming they agree. Harmless until now only because
cancelled nodes never coexisted with live ones — a spared tail running
over cancelled work would have rendered `Running` host-side and
`Cancelled` in the dashboard.
The JS was the correct side, so the Rust moves to match it exactly:
`Failed > Cancelled > Running > Queued > Done`. No frontend change.
The queue carried a per-DAG `HookKind` that fired an inline side effect
from outside the graph when a container rolled up terminal. mara asked
three times why this could not be an ordinary node; the answer in the
code was a doc-comment claiming a node could not work, and it was wrong.
`DepWhen::AfterAny` already existed with two live users, and a weak edge
is satisfied by a `Cancelled` dep, so a tail node runs on success,
failure and cancel alike. What was genuinely missing was smaller than a
hook: a node had no way to learn how the work it followed ended.
So: `Claim` now carries `deps: Vec<DepOutcome>`, snapshotted at claim
time from the graph the scheduler already holds (no `hive-jobq` change).
`Claim::deps_state()` / `deps_error()` roll that up, and two new kinds
consume it — `ResolveApproval { approval_id }` and `EmitRebuilt { agent }`.
Templates append one as a group-root with `AfterAny` edges onto the DAG's
other group roots; a root's state is its subtree's roll-up, so that
covers every node without fanning out to each of them.
Deleted: `HookKind`, `DagSpec.hook`, `NodeKind::Dag.hook`, `DagMeta.hook`,
`TerminalDag`, `terminal_dag()`, `terminal_summary()`, `dag_agents()`,
`dag_rollup()`, `fire_terminal_hook()`, `run_terminal_hook()`,
`emit_rebuilt()`. `complete_node` returns `()`.
Load-bearing details:
- `JobQueue::cancel` spares tail nodes instead of cancelling the whole
subtree, and returns `bool`. Without this a cancelled approval DAG
would dangle its approval forever — the hazard `tests.rs` already
named. The spared tail's deps are `Cancelled`, which satisfies its weak
edge, so the scheduler claims it and it resolves the row as cancelled.
`hive-jobq` anticipated exactly this: `cancel_node`'s doc already says
to settle afterwards so "a weak-edge terminal node observing the
cancellation" can advance.
- The existing `complete(container)` call after cancelling is kept and is
deliberately a no-op when a tail was spared (a non-terminal child parks
the container back in `Finishing`), so power ops still settle
synchronously with no branch.
- `DeployTail` is NOT `is_tail()`: it does real compensating work, and a
cancelled DAG has nothing to compensate.
- `exec::failure_reason` falls back to `first_error(dag_id)` because a
group root that rolled up `Failed` from a child carries no error of its
own — without it every tail-reported failure would lose its reason.
- `EmitRebuilt` is per agent, so a multi-agent DAG reports each agent's
own outcome rather than painting all of them with the DAG roll-up.
- `ResolveApproval` is agentless: the approval row already names its
agent, and that is also what lets one tail close a multi-agent DAG.
Transients-derived-from-running-nodes and the frontend's node-kind
strings stay out of this change; they touch iris's slice and review
better next to their own diff.
`Template` was a DAG-level enum that three different things read back
out: `terminal_hook()` mapped it to a side effect, the retention pass
bucketed history by it, and a tracing field printed it. None of those
needed a *label* — they needed the two facts the label happened to
encode. So the enum was a lossy stand-in for intent, and every new DAG
shape had to pick the variant whose inferred behaviour matched, whether
or not the name fit (`reparent` rode `MetaUpdate` for exactly this
reason, with a 10-line comment apologising for it).
Replace the inference with a declaration: `DagSpec.hook:
Option<HookKind>`. Only the builder assembling a DAG knows why it did
so, so only the builder can say what should happen when it settles.
`run_terminal_hook` becomes a field read, and `reparent`'s apology
becomes `hook: None`.
Hook assignment is byte-identical to the old precedence rule
(`approval_id.is_some()` wins, then `Rebuild | PermChange`), checked
site by site; `meta_update` is the only builder with a variable
approval id and so the only remaining conditional.
Retention loses the per-template bucket with the enum that keyed it.
The dashboard renders one recent-builds list, so one flat newest-first
cap (`MAX_HISTORY_DAGS`) bounds it. `HISTORY_GRACE_SECS` goes too — it
existed to stop a burst of same-template DAGs evicting each other
inside one poll interval, which is not a failure mode a flat cap has.
That takes `snapshot_capped()` and the `snapshot_no_grace()` test hook
with it.
The queue is runtime-only (empty graph on boot), so the serde changes
carry no migration risk.
The DagView / NodeView / Source / State / PermPayload types only ever
travel on the host admin socket and the dashboard channels hive-c0re
serves off the same snapshot; their whole consumer set is hive-c0re,
hivectl and the socket protocol crate itself. Living in hive-sh4re made
the five other crates that depend on it carry job-queue types they never
name.
Pure move: git mv of the module plus the import sweep, no type changes.
hive-sh4re keeps its own chrono (wire_time still needs it).
The revert hook is dead by construction, so it can only ever be wrong.
DAG state `Cancelled` has exactly one producer: `JobQueue::cancel`, which
refuses unless every work node is still `Pending`. A cancel *cascade*
(some node failed, downstream cancelled) rolls up `Failed` instead —
`dag_rollup` short-circuits on any failed subtree node. So on a DAG that
reaches `Cancelled`, no node ever executed: the `SetWanted` head provably
never ran and `wanted` still reads whatever the operator last set it to.
There is therefore nothing to revert, and `revert_intent` did not revert
anything — it wrote `Wanted::from_running(observed)`, i.e. the agent's
*observed* state, over an intent the DAG never touched. Harmless when
observed already matched, silent corruption otherwise: cancel a queued
start for an agent that is down but `wanted = Up` (crashed, or caught
mid-bounce) and the intent flips to `Offline`, leaving it
deliberately-stopped as far as reconcile and crash-watch are concerned.
The hook made sense when `set_wanted` was a pre-submit side effect
written before the DAG ran; moving it into the DAG as a node left the
hook vestigial.
Drop `HookKind::RevertIntent`, `revert_intent`, and the power-op arm of
`terminal_hook` — start / stop / graceful-stop now settle with no
terminal hook, same as restart always did. The test asserts the general
statement across restart/stop/start x graceful x running: stop and start
carry a `SetWanted` head, and cancelling them still fires no hook.
`terminal_hook` mapped `Restart` / `GracefulRestart` to `RevertIntent`, but
a restart never writes `wanted` — `restart_chain` deliberately has no
`SetWanted` head, so the tail `Reconcile` converges to the agent's existing
intent and a deliberately-stopped agent isn't forced up by a hive-wide
restart.
`revert_intent` writes `Wanted::from_running(observed)` unconditionally on a
cancelled DAG. So for an agent that is `wanted = Up` but currently down
(crashed, or caught behind another queued op), submitting a restart and then
cancelling it writes `wanted = Offline` — reverting an intent the DAG never
touched, to a value nobody asked for. Reconcile and crash-watch both then
read the agent as deliberately-stopped and leave it down.
It's invisible for a running agent, since `from_running(true)` equals the
intent already on file, which is why it went unnoticed. `cancel` only
succeeds while every node is still `Pending`, so the reachable window is
exactly "queued restart + observed != intent" — precisely when someone
restarts and then thinks better of it.
Drop both restart templates from the `RevertIntent` arm; they fall through
to no terminal hook, which is correct for a DAG that writes no intent.
Document the invariant on `HookKind::RevertIntent` and on `revert_intent`
itself: the hook writes *observed* state, so dispatching it for a template
with no `SetWanted` head doesn't restore an intent, it invents one.
Test covers all four restart shapes (graceful x running), asserting both
that the spec carries no `SetWanted` and that a cancelled restart dispatches
no hook, with a contrast arm pinning stop's revert in place.
Fixeshyperhive/hyperhive#2710
The `step` label was taken off the wire in #2661, when each deploy phase
became a first-class DAG node. Since then it has been written but never
read: `NodeRuntime` derives only `Debug, Default, Clone` — no serde — so
the field could not reach any client, and the only reads of it were the
dedup checks inside its own setters. This deletes the machinery.
Removed:
- `NodeRuntime.step`, `set_step`, `set_step_running`, and the
`rt.step = None` clear in `complete_node`. `NodeRuntime` keeps its
remaining `build_log_id` field (deliberately still a struct — collapsing
it to a bare `Option<i64>` would churn every call site for no gain).
- `Ctx::step` and its ~15 call sites in `job_queue/exec.rs`. `Ctx` itself
stays: it is the build-log sink, which `run_prebuild` and `run_swap`
still use.
- `Coordinator::set_queue_step` and its 11 callers in `actions.rs`.
- `JobQueue::running_node_of`, reachable only from `set_queue_step`.
- `swap_update`'s `on_step` parameter and its one body call.
- The `set_step_only_on_running_and_signals_change` test.
Dropping the calls orphaned parameters, which are removed with their call
sites: `ctx` on ten executors that used it only as a step sink, and
`queue_entry_id` on `run_deploy_merge_verify` / `run_deploy_apply` /
`run_finalize_deploy` plus both `coord` and `queue_entry_id` on
`prepare_applied_target`. `run_deploy_tail` KEEPS its `queue_entry_id` —
that one has a genuine surviving use (the build-log link in the failure
comment posted to the PR).
One behavioural change, called out so it is not mistaken for a dropped
dashboard refresh: `Ctx::step` and `set_queue_step` each emitted a
`rebuild_queue_changed` snapshot when the label changed, and those
emissions go away with them. This is safe — the snapshot payload has no
step field, so those pushes carried nothing a client could observe. Real
state transitions still emit from the scheduler's claim and completion
paths, from `submit`, and from the three `actions.rs` sites. Net effect is
strictly fewer redundant SSE pushes.
Docs: `docs/coordinator.md` still listed `step` as a `NodeView` wire field
and `docs/web-ui/dashboard.md` documented a cyan `↳ <step>` sub-line under
each queue row. Neither has existed since #2661 — both corrected here, plus
the `job_queue/model.rs` module doc.
Not touched: `frontend/packages/dashboard/src/system-sections.css` has a
dead `.rqe-step` rule with no JS referencing it. Left for the frontend
owner rather than deleted here.
Closes: #2664
Add NodeView::parent to the wire (hive-sh4re + hive-c0re dag_view), then
render the recursive parent/child tree in the dashboard build queue instead
of the previous flat chain/fan-out layout.
Wire change (hive-sh4re, hive-c0re):
- NodeView gains parent: Option<NodeId> (skip_serializing_if = None)
- dag_view() projects node.parent, filtering out the Dag container id
(top-level work nodes become parent: None on the wire)
Frontend (builds.js):
- Replace nodeComponents + splitFanOut with buildNodeTree (uses parent
edges directly) + topoSort helper (orders siblings by deps)
- renderTreeNode walks the tree depth-first, rendering indented rows
with └─/├─ connectors and agent label per chip
- Flat chains and fan-out heuristics are gone; structure comes straight
from the scheduler's parent axis
Closes: none (parent issue tracked in forge)
A paused agent keeps its container, its claude session and its
dashboard/todo servers up, but stops driving turns. Messages queue
unacked and are drained on resume.
The whole protocol is a single marker file, `<harness>/paused`. That
directory is already a bind-mount shared between host and container, so
both sides just stat the same path: the harness reads it to decide
whether to drive a turn, hive-c0re reads it to render the badge and
writes/removes it for `hivectl pause|resume`. No new wire protocol, no
container round-trip, and it is sticky across restarts by construction.
Not calling `recv_next` while paused *is* the queueing semantic, so
there is no fencing to get wrong: reminders buffer in their unbounded
channel, the todo `Notify` permit coalesces, and a `request_next_turn`
that raced the pause survives because the gate sits above
`self_continue.take()`.
Graceful stop is handled host-side rather than in the harness: a paused
agent provably has no turn in flight, so `run_signal` skips the fence
entirely instead of eating the full `GRACEFUL_STOP_TIMEOUT` waiting for
a checkpoint turn that will never run.
`paused` is reported on `ContainerView` / `AgentStatusRow` for the
dashboard, orthogonal to `running` and reported for stopped containers
too.
Closes: hyperhive/hyperhive issue 2271
The config-PR deploy's apply node still did the whole container rebuild
inline, through the last surviving `lifecycle::rebuild_no_meta` call. It
now merges, opens the two-phase meta deploy, and returns the ordinary
rebuild chain as a subgraph the scheduler grafts into the live DAG under
it. A new `FinalizeDeploy` node, gated on that graft, plants the deploy
tag and commits the staged lock.
Net effect: "did the agent come back up?" is answered by `Reconcile`
succeeding, the same way it is for every other rebuild, instead of by a
fused inline start — and each deploy phase is its own queue node, so the
dashboard shows which one is running.
The grafted nodes root on the apply node, so they land inside
`DeployWindow`'s subtree and re-enter the meta window and build slot it
already holds rather than deadlocking against them. The new happy-path
test runs on a one-slot queue specifically to pin that down.
`FinalizeDeploy`'s two git writes are fatal, deliberately: they are what
tells `DeployTail` a deploy confirmed good, so a node that merely warned
on them could report success while leaving the tail looking at the git
state of a failure — and the tail would then roll a good deploy back.
The trailing `meta::finalize_deploy` stays warn-only, since by then the
container already runs the new config.
The `failed/<id>` annotated tag moves into the tail, which is now the
only place holding a failed deploy. It reads the reason off the DAG via
a new `JobQueue::first_error`, and is gated on `main` having actually
moved — the rollback ref is parked *before* the merge, so its existence
alone does not mean a merge happened, and a pre-merge rejection must not
tag the previous, innocent head.
Removing the last inline rebuild orphaned a chain of now-dead code:
`rebuild_no_meta`, `container_exists`, `Coordinator::set_queue_build_log`
and `JobQueue::set_build_log_id_running`, all deleted here.
Two cases, both pinning the load-bearing property that the tail is
reached on every path: a failed apply (AfterAny dep is terminal) and a
failed verify (apply is cancel-cascaded, tail still claimable). Both
assert the DAG rolls up to Failed — an Ok tail must not launder a failed
deploy into a success.
Non-derivable per-node payload rides the node that owns it. Tagging all
four deploy nodes with the approval id would render the same card four
times in `dag_view`.
Also fix `set_queue_step`'s doc comment, which claimed the DAG-id lookup
was exact because approval DAGs are single-node. They are not anymore;
what actually holds is that the chain is strictly sequential with the
root parked in Finishing, so at most one node is ever Running.
`run_approval_merge_config_pr` and `run_merge_config_pr` are gone; the
three phases are `run_deploy_merge_verify` (drift gate, fetch, verify —
mutates nothing), `run_deploy_apply` (merge + build) and
`run_deploy_tail` (compensation + push).
The rollback state is a git ref in the applied repo
(`refs/hyperhive/rollback/<approval-id>`) rather than a value handed
between nodes, because hive-c0re can restart between the apply and the
tail and the tail still has to know what to undo.
Rolling `main` back on a *successful* deploy is the worst thing the tail
can do, so it is guarded twice: the apply drops the rollback ref before
it plants `deployed/<id>`, and the tail refuses to compensate at all if
`deployed/<id>` resolves. It takes two independent git failures to get
there.
`run_deploy_tail` returns nothing and warns on every error — a failing
compensation must not mask the deploy's own verdict, which the terminal
hook takes from the DAG's roll-up.
A config-PR deploy was one opaque node that fetched, verified, merged,
built and compensated. That shape made three things impossible: the
nix-heavy phases could not take the meta window without the cheap ones
holding it too, a crash mid-build left no node to run the rollback, and
the dashboard could only ever show "deploying" for the whole thing.
Replace it with a `DeployWindow` group root over `MergeVerify ->
DeployApply` (AfterOk) plus a `DeployTail` hanging off the apply with
AfterAny, so the tail runs whether the apply succeeded, failed, or was
cancel-cascaded by a failing verify.
The two-phase approval deploy keeps a bumped `flake.lock` staged
uncommitted for the whole container build, so no other meta mutation may
land inside that span — until now enforced by a process-global
`meta::exclusive()` mutex held inside each executor fn.
A `MutexGuard` cannot outlive the fn that takes it, which is what blocks
decomposing the opaque `ApprovalDeploy` node into scheduler-visible
sub-nodes: the window has to span them. Replace the mutex with
`Resource::MetaWindow`, a global capacity-1 queue resource declared by
every meta-mutating node kind (`NodeKind::needs_meta_window`). Resources
are held by a subtree root across its whole subtree, so a later increment
can hang the deploy's phases under one window-holding parent.
Same global serialisation as before, and the scheduler now blocks a node
from being claimed rather than parking a worker on a mutex.
Split the rebuild's meta preamble out of `Prebuild` into a new `MetaSync`
node. `Prebuild` must NOT hold the window: the old mutex was deliberately
scoped to drop before the multi-minute toplevel build, which only reads
the store, and a cap-1 global held across it would serialise every
agent's rebuild behind every other's. `MetaSync` is a sibling root that
`Prebuild` deps `AfterOk` on — not its parent, since a parent's resource
covers its whole subtree and would reintroduce exactly that problem.
Queue tests: shape assertions gain the extra node, which is the point of
the change (phases become nodes). The concurrency invariants are intact
but observed one step later — the `MetaSync` heads take turns on the
window, exactly as the runtime mutex made them, so those tests now
complete the heads before asserting that the prebuilds overlap.
Two tests asserted the old behaviour where completed nodes/DAGs stayed
in the snapshot. Under the redesign, Done nodes are filtered off the wire
(a fully-Done DAG disappears; a Failed one lingers + is history-capped):
- failed_node test: the completed reconcile is Done → assert it's absent,
not Done-present (its run is already verified by the claim).
- history-eviction test: fail the nodes so the DAGs linger (Done ones
would vanish), then assert the grace window + per-template cap.
The raw-graph wire drops the inline build_log_id; the client fetches a
node's captured output on demand. Two handlers resolve node id -> log-row
id (JobQueue::build_log_id_of, now keyed by the wire u64) then delegate to
the existing get_full / raw handlers: /api/build-log/<node_id> serves the
BuildLogFull JSON ({stdout, stderr} + header), /raw serves text/plain.
404 when the node has no linked log.
Reconcile with mara + argus's review on the frontend PR (#2660):
- DagView regains started_at/finished_at (DateTime<Utc>), computed
host-side as min/max over ALL subtree nodes (including the Done ones
filtered off the wire). The client can't derive these — the
earliest/only-started node is often Done and absent — so the backend
sets them, per mara's call.
- NodeView gains has_log: bool = build_log_id.is_some(), the precise
old 'node has a captured build log' guard so the dashboard only shows
a log link for nodes that actually produce one.
Now that Template is internal to hive-c0re (not a pub wire enum), the
dead-code lint flags the two variants nothing ever constructs. Removed
them + their as_str arms; terminal_hook's catch-all arm is unaffected.
- server::await_dags: a DAG is settled when gone from the snapshot (fully
Done) or present with all nodes terminal; pending only with a non-terminal
node (DagView no longer carries a rolled-up state).
- DagView::rollup_state() added to hive-sh4re — the shared node-set roll-up
derivation every Rust consumer uses.
- JobQueue::build_log_id_of(node_id) — the node_id -> build_logs lookup the
query endpoint will use; tests assert log-id via it now.
- tests: derive roll-up state; drop the off-wire step/build_log_id wire asserts.
hive-c0re side of the raw-graph wire: dag_view now projects the slim
DagView, reading started_at/finished_at/error straight off the
hive_jobq Node (removes the node_rt double-write from #2645), excludes
Done nodes, and rides approval_id/inputs on the owning node. Template
moved into hive-c0re (model.rs) — no longer on the wire. Still WIP:
build-log endpoint + hivectl derive + compile fixes to follow.
Node gains started_at/finished_at (chrono DateTime<Utc>, serialized
RFC 3339 on the wire per hive_sh4re::wire_time) plus error (String).
Graph::set_state self-stamps started_at on the first Running transition
and finished_at on the first terminal one, via an internal now_utc()
clock (keeps settle/complete signatures stable). Outcome::Failed(String)
carries the failure reason, set on the terminal transition.
hive-c0re complete_node builds Outcome::Failed(msg); its node_rt
side-table stays i64 for now (double-write) until #2637 reads the Node.
Toward #2637: the jobq graph becomes the source of truth for per-node
lifecycle so the queue can be sent to the client as-is.
Replace the in-tree scheduler with the domain-agnostic hive-jobq crate
(merged in #2615): parent-axis grouping + borrow/subtree-reservation
resource model + roll-up completion (State::Finishing).
Host adaptation:
- NodeSpec gains an explicit `parent` axis; templates declare grouping +
sibling ordering directly (deps order execution, parent groups a subtree
whose resource the descendants borrow).
- Rebuild is a nested two-root subtree: Prebuild (root, owns the build slot
for the whole subtree, lease-exempt) -> StopForUpdate (child, owns the
agent lease) -> Swap/PostSwap (children, borrow both); Reconcile is a
separate top-level root (AfterAny Prebuild) so it survives the cancel-
cascade of any failed step (recovery-start invariant) and converges to
the persisted `wanted` on a fresh lease. This is the multi-root
correction to the single-root-chain sketch: node0=root broke lease-
exemption (hoisting the lease onto Prebuild) and recovery-reconcile
(root failure cancels all children).
- Spawn / perm-change / power-ops (stop/start/restart) group-rooted the
same way; per-agent power-op subgraphs stay independent roots so a
multi-agent DAG runs them concurrently, each on its own lease.
- insert_group honours the explicit parent axis (no lease hoisting); the
DAG terminal node deps AfterAny on every group root and runs once the
whole op rolls up. Drop the old Graph::add_dep terminal wiring.
36/36 job_queue tests, full hive-c0re suite green, clippy --all-targets.
A per-agent lifecycle lease gates that agent's container globally across
concurrent DAGs, so it should be held for exactly as long as the agent's
work in a DAG is in flight, no longer. settle() previously freed every
lease a DAG held only at whole-DAG terminal, so a multi-agent DAG (a
hive-wide restart) kept agent A's container locked until B and C also
finished, blocking any other DAG wanting A.
Now free each agent's lease the moment its own subgraph within the DAG is
terminal (no live node still targets it), and drop that agent's dashboard
transient pill on the same edge via a new per-agent release channel. A
single-agent DAG is unaffected: its agent's subgraph goes terminal exactly
when the whole DAG does, so behaviour is identical.
Since the boot sweep (#2450) and meta-update cascade (#2476) became
single DAGs that grow subgraphs in-place, nothing constructs the old
fan-out anchors/parents anymore:
- NodeKind::Noop (the old boot_root grouping anchor) — no constructors.
- Template::StartupSweep / Source::StartupSweep (the old fan-out parent
template + cascade-child source) — replaced by Template::Boot and
Source::AutoUpdate/MetaUpdate respectively.
Drops the three variants + their as_str arms + the Noop executor arm, and
refreshes the stale fan-out/anchor doc comments (Boot/MetaUpdate/Source
docs, coordinator.md, dashboard.md). Frontend: the queue-kind glyph moves
from the dead startup_sweep to boot (which had none), and the dead
rqe-source-startup_sweep style is dropped.
No behaviour change — pure dead-variant removal.
append_subgraph is the multi-node/multi-agent generalisation of the
single-node append_node, so the two in-DAG-growth channels collapse to
one: the Reconcile planner now emits its mechanical Start/Stop as a
single-node append_subgraph rooted on the reconcile node (stamping
claim.agent on the NodeSpec, which append_node inherited implicitly).
Removes NodeOutput.append_nodes + its scheduler drain loop and
JobQueue::append_node. No behaviour change — a channel unification.
With the meta-update cascade (#2476) and startup sweep (#2450) folded
into single DAGs that grow per-agent subgraphs via append_subgraph,
nothing links parent/child DAGs anymore — parent_id is dead.
hive-c0re: drop parent_id from Dag/DagSpec (+ the DagView copy); delete
append_children and cancel_children (no callers); simplify trim_history
(no more terminal-parent-with-live-children guard — a one-big-DAG is
terminal only when its whole graph settles); drop the rebuild() parent_id
param; QueueDag returns just the polled DAG (no fan-out children to
gather). hive-sh4re: drop the DagView.parent_id wire field.
frontend: a multi-step op is one DAG now, so renderRebuildQueue drops the
childrenOf/orphans cross-DAG grouping and renders each entry flat; its
per-agent subgraphs render as nodes within the one row (split by deps).
Removed the dead rqe-child style + isChild plumbing.
Docs + the child-DAG queue tests updated/removed to match.
MetaLock's non-sweep completion now grows one rebuild subgraph per
affected agent into the same DAG (append_subgraph), replacing the
fan-out-child-DAGs + cancel_children dance. Drops NodeOutput.fanout and
scheduler's fanout_specs. meta_update DAG carries Rebuilding transient so
each cascade agent gets crash-watch suppression at Swap (the property the
old child Rebuild DAGs held via their own transient); MetaLock head needs
no lease so the pseudo-agent gets no pill.
append_children/parent_id and child-DAG tests are intentionally left for
the #2453 capstone.
The boot is now ONE DAG, assembled inline in submit_boot_tree — no boot_root
Noop anchor, no per-agent child DAGs, no display-only parent_id grouping: a
sweep MetaLock root (only when something is stale) that grows one rebuild
subgraph per stale agent into the same DAG (via append_subgraph, previous
commit), plus one Reconcile root per drifted agent (independent — a boot
reconcile needs no lock bump).
- submit_boot_tree builds the DagSpec inline; removed the single-use
templates::{boot_root, startup_sweep} builders (inlined per the operator's
"don't force single-use shapes into templates.rs" steer).
- fanout_specs simplified to the meta-update cascade path only — the startup
sweep no longer fans out child DAGs, so its branch was dead.
- test: append_subgraph_roots_on_emitter_and_rebases_local_deps.
Vestigial after this (deliberately left as follow-ups, flagged in the PR):
NodeKind::Noop is now unconstructed (contained to hive-c0re, removable);
Template::StartupSweep is unconstructed but a hive-sh4re wire type
(frontend-coordinated removal).
First half of making the startup sweep one DAG. Adds the runtime
subgraph-append machinery and switches the sweep MetaLock from fanning out
child Rebuild DAGs to growing one rebuild subgraph per stale agent into the
same DAG:
- JobQueue::append_subgraph(dag_id, nodes, dep_on) — the multi-node,
multi-agent generalisation of append_node: rebases a subgraph's local deps
onto the DAG's id space and roots it on the emitting node.
- NodeOutput.append_subgraph: Vec<Vec<NodeSpec>> — the executor→scheduler
channel for it; scheduler drains it before completing the emitting node
(same ordering as append_nodes).
- run_meta_lock sweep branch returns the stale agents' rebuild_nodes
subgraphs via append_subgraph instead of fanout.
Follow-up commit collapses submit_boot_tree (drop boot_root + per-agent
reconcile child DAGs) so the whole boot is one DAG built inline.
Hive-wide `stop` / `start` / `restart` emit ONE DAG with a per-agent
subgraph each (concurrent on their own leases) instead of N DAGs — and each
subgraph is now built dynamically from the agent's live running state rather
than a fixed template shape:
- online agent: the full stop→reconcile (restart: stop-for-update→reconcile)
chain; `graceful` prepends signal→drain.
- offline agent: just `SetWanted → Reconcile` (nothing to quiesce/stop; a
restart of a down agent is really a start).
The head `SetWanted` (intent) and tail `Reconcile` (convergence guarantee)
are always present; only the mechanical `Signal`/`Drain`/`StopForUpdate`
nodes are state-conditional. Keeping `Reconcile` in every shape closes the
TOCTOU window — a race-up between the `is_running` read and node exec is
still converged in-DAG (with `StopForUpdate`-noop as the backstop) — with no
reliance on an external reconcile sweep.
The state-aware assembly needs an async `is_running` read, so it moves out
of the pure/sync `templates.rs` into `submit.rs`, layered as pure
`*_chain(running)` → pure `*_spec(targets)` (the unit-test seam) → async
`*_many` (reads live state + submits). `templates.rs` keeps only the shared
pure primitives (`node`/`after_ok`/`rebuild_nodes`).
Callers await the now-async submit fns (server, dashboard, socket_server).
Tests exercise both the online and offline shapes via the pure `*_spec`
seam. docs/coordinator.md shapes updated.
- multi_agent_restart_is_one_dag_with_concurrent_per_agent_subgraphs:
two agents restart in one DAG; both SetWanted heads are roots, each
acquiring its own agent's lease concurrently. Existing single-agent
shape/lease tests updated for the templates::restart(&[..], graceful)
signature.
- coordinator.md + templates.rs module doc: restart takes an agent list;
a hive-wide restart is one DAG with N per-agent subgraphs.
A hive-wide restart was N separate single-agent DAGs (one submit::restart
per agent). Now that agent is per-node (#2445), make it ONE DAG with a
per-agent restart subgraph each.
- templates::restart takes an agent list: each agent gets an independent
subgraph (a head SetWanted(Up) root, then its restart chain), so the N
subgraphs run concurrently on their own leases. One agent = the ordinary
single-agent restart; unifies the old restart + graceful_restart fns.
- submit::restart / graceful_restart stay as single-agent wrappers over
the new submit::restart_many(agents, graceful).
- server.rs handle_restart_all + handle_restart_scoped submit one
restart_many call instead of looping per agent. Infra containers
unchanged (no lease/DAG, synchronous).
Scope: restart + restart-all only. Broad stop+start is the same pattern
(stop/start templates take agent lists) — a follow-up increment.
The durable 'wanted' power intent was written by submit::{start,stop,
restart,graceful_restart,graceful_stop} as a synchronous pre-submit side
effect, then read by the DAG's tail Reconcile. That's not crash-safe
(a crash between the write and the enqueue loses it) and, with agent now
per-node, can't be per-agent in a DAG that spans agents.
Move it into the DAG as a head SetWanted node:
- NodeKind::SetWanted { up } + run_set_wanted executor (fails the node on
a write error, unlike the old warn-and-continue, so a stale intent
never reaches Reconcile).
- LEASE-NEEDING, not lease-exempt: it takes the agent lease so a power-op
DAG's intent-write + reconcile is atomic per-agent. If it were exempt,
two racing ops (restart vs stop) would run both intent-writes up front
and clobber each other before either reconciled — defeating the point
of moving the write into the DAG. (In stale_start the lease is thus held
across the head Prebuild, but that's a no-op there: the agent is down so
prebuild is skipped.)
- templates: explicit SetWanted node 0 on restart/graceful_restart/
graceful_stop, plus dedicated start/stop templates (SetWanted -> Reconcile)
and stale_start (SetWanted(Up) -> rebuild subgraph, reusing rebuild_nodes).
No compose helper / rebuild variant. reconcile_only is now boot-only.
- submit.rs: drop the set_wanted side effect; the stale-rev shape decision
(start vs stale_start) stays submit-side.
All 33 job_queue tests pass (shape/lease tests updated for the head node).
Agent was a single field on Dag/DagSpec, making a DAG structurally
one-agent — a multi-agent op could only ever be N separate DAGs. Move it
onto Node/NodeSpec (and the NodeView wire type), drop it from Dag/DagSpec
(and DagView): a DAG can now span agents.
- lifecycle lease keys on the node's agent, still globally exclusive per
agent across all DAGs (Inner.leases unchanged in shape). A DAG holds one
lease per distinct agent it touches; settle() frees each at DAG-terminal
(per-agent-subgraph early release is a follow-up, only observable with
multi-agent DAGs).
- transient guard keyed (dag_id, agent); cancel-revert + Rebuilt events
walk TerminalDag.agents.
- submit-time dedup removed (a multi-agent DAG has no single agent to key
on); every submit enqueues a fresh DAG. Whether dedup needs reintroducing
is tracked in a follow-up sub-issue.
- templates gain a node(agent, kind, deps) helper stamping the agent onto
every node; meta templates stamp "hyperhive".
Templates stay single-agent in this PR — behaviour is unchanged, only the
representation + wire shape. Multi-agent DAG emission (restart/restart-all/
broad stop+start as one DAG) and the SetWanted-as-a-node change are
follow-ups off #2439.
mara's review on #2436: no submit-await-submit composition, even
server-side. Adds Template::GracefulRestart (Signal -> Drain ->
StopForUpdate -> Reconcile, wanted=Up) mirroring how Restart already
does StopForUpdate -> Reconcile, plus submit::graceful_restart and
templates::graceful_restart. handle_restart_scoped now submits exactly
one DAG per agent up front for both the graceful and non-graceful
case -- no await_dags in the loop anymore.