Renaming `pub type Job` fixed the definition and left every use site
reading `b` and `job` — including `job: super::JobBuilder`, where the
parameter still asserted it was a job while its type said otherwise.
The propagation is what the issue was about, so the parameters are the
half that matters at a call site.
Two spots deliberately untouched: `auto_update`'s `sort_by(|a, b| …)`
comparator, and the prose that means the job *queue* (main.rs's
"Job-queue scheduler", scheduler.rs's "not this module's job any more",
the "grown job rejected" log).
315 tests pass unchanged.
A JobBuilder holds pending nodes that are not in the graph yet — it is
the thing you declare into. Naming the alias Job claimed it was the work
itself, and the name propagated into every parameter derived from it
(job: super::Job in run_node read as if it carried the DAG).
Prose uses meaning the job *queue* are left alone: main.rs's "Job-queue
scheduler" comment and the docs/coordinator.md reference.
315 tests pass unchanged.
RebuildOpts held one real parameter (relock) and one single-call-site
flag (graceful). The struct justified itself as swap-protection for two
positional bools; with graceful out of the signature there is nothing
left to swap.
graceful stays an internal switch rather than moving to the caller: it
re-parents the stop root (StopForUpdate goes from part_of(prebuild) to
part_of(signal)) rather than prepending nodes, so a caller could only
declare it by being handed the subtree's internals — and that nesting
keeps the agent lease continuous across the whole stop.
run_meta_lock no longer returns options: both fields were a pure
function of the sweep flag its caller had just passed in.
315 tests pass unchanged.
DagSpec described the graph the templates were about to build, one layer
below the templates themselves. Per #2972 the templates should be that
unit, so the spec type is gone and every declarer writes onto the job
builder directly.
- delete DagSpec<F> and its hand-written Debug impl
- submit(source, reason, declare: impl FnOnce(&Job)) replaces the
pre-built-spec signature; submit_and_emit follows
- all six templates take &Job; the Source is now the caller's to pass,
which spawn and approval_deploy previously hardcoded while the other
four did not
- power_dag dissolves into stop_nodes/start_nodes/restart_nodes, which
borrow their targets instead of owning them
315 tests pass unchanged.
Two review findings on the resources-at-construction change.
argus: `workers::auto_update`'s boot sweep constructs nodes through
`templates::node` too, and it was not converted. With the kind-derived
declaration gone, its sweep `MetaLock` and its per-agent `Reconcile`
silently declared no resources at all — so a boot reconcile no longer
held the agent lease and could race another DAG's container ops, and the
sweep's meta commit could land inside another node's staged deploy
window. Nothing failed to compile: removing an implicit behaviour from a
helper is invisible at every call site that relied on it.
The declarations now live in a pure `boot_nodes`, split out of
`submit_boot_tree` so they can be exercised without a `Coordinator`.
That path is the only place job nodes are built outside `job_queue/`,
which is exactly why it had no coverage; `boot_sweep_nodes_declare_
their_own_resources` closes that, asserting against declared graph edges
rather than against the kind.
mara: `templates::node` is a redundant redirect now that it no longer
derives resources — deleted, and its 43 call sites use `Job::node`
directly. The reasoning it documented moved to the module docs of
`templates.rs` and `resource.rs`, which is where it stays true.
Resources were derived from the node's kind: `templates::node` called
`NodeKind::resource_deps()`, which fanned out to `needs_build_slot` /
`needs_lease` / `needs_meta_window`. That made the requirement a property
of the *kind*, so a kind that happened to run under an ancestor already
holding the resource could get away with declaring nothing.
Three did. `Start`, `Stop` and `PostSwap` appear in none of the three
predicates, and that was only safe because one construction site fans
them out from inside a lease-holding `Reconcile` — a fact about today's
DAG shape, not about the nodes.
Each of the 41 construction sites now says what it holds. `Start` /
`Stop` / `PostSwap` declare the agent lease; per the contract that is a
re-entrant borrow, which a new test pins rather than argues.
`running_transients` reads the node's declared deps instead of
re-deriving from the kind. That closes the blank-pill gap: the pill went
blank during container start, stop and the post-swap tail because the
declaration was missing, not because the filter was wrong.
The deleted predicates carried the only written record of three design
decisions; each moved to the `Resource` variant it constrains rather than
dying with its function.
Three findings from the operator's review, all correct.
1. Two insert_job's. Graph::insert_job had no caller outside hive-jobq's
own tests -- production only ever went through Scheduler::insert_job.
It existed because the graph-level one got written first. Deleted; the
tests moved onto a Scheduler, which is where insertion belongs anyway.
2. insert_job was not atomic, and the previous commit made that worse: a
forward edge or forward parent surfaced mid-loop, leaving the nodes
before it in the graph, and resolve_wanted ran after every insert, so
an unknown handle failed once the whole job was already committed.
The module documented this under "Partial insertion" instead of fixing
it -- prose describing a hole is not a design.
All three are decidable from what the builder holds, so
check_declaration_order now runs before the first insert and the loop
indexes ids directly. A malformed job leaves the graph untouched.
What remains mid-insert is the graph's own rejection (out-of-group
dep, empty DepWhen); closing that needs a dry-run validate on Graph,
which is a separate change.
3. DagSpec no longer boxes its recipe: it is generic over the closure,
which travels from the template that built it straight into submit.
The box bought type inference, and paying for it costs annotations --
`|b: &Job|` at each declaration site (the field needs an HRTB, and an
unannotated closure binds one lifetime) and `+ use<>` on each
returning signature (or the opaque type captures the caller's borrows).
Erasure is still needed where several recipe shapes share one type:
the boxed Declare stays for the executor's append_subgraph, and a test
table uses an erase() helper.
Follows the jobq change: a builder can no longer be constructed or
inserted outside `hive_jobq`, so `DagSpec` cannot hold one. It carries a
`Declare` — `Box<dyn FnOnce(&Job) + Send>` — and the queue runs it
against a builder jobq owns, at the moment it inserts.
`NodeOutput.append_subgraph` becomes `Vec<Declare>` for the same reason,
and this is where the shape was always heading: that field's doc already
said an executor "cannot reach the queue, so it hands the declaration
back", while its type was a `Vec<Job>` the executor had built itself.
The rejected `build_nodes -> Vec<NodeSpec>` was the first version of that
escape hatch; a recipe is the last one, because there is no job-shaped
value to hand over at all.
Templates and the power-op assemblers move their owned data into the
closure and are otherwise unchanged — `rebuild_nodes`, `node` and the
tail helpers already took `&Job` and returned handles, so only each
template's outermost frame moved.
Two `Debug` impls are hand-written: a closure has nothing to show, and
its nodes do not exist until the queue runs it. `NodeOutput` reports how
many subgraphs were emitted, `DagSpec` its source and reason.
`append_subgraph`'s `is_empty()` early-return is gone — you cannot ask a
recipe whether it will declare anything without running it. It now
inserts and returns an empty id list if nothing was declared, which
takes the queue lock in a case that previously skipped it.
The two in-DAG-growth tests build `Declare`s now, so they exercise the
shape an executor actually produces rather than one only a test could
construct. 45 job-queue tests unchanged and passing.
Every template built a `Vec<NodeSpec>` whose edges and parents were
positional indices into that vector, so a shape was expressed as
arithmetic: `base + 1`, `stop_root + 2`, `sfu + 1`, and a
`reconcile_index()` helper that read the emitted vector's length to find
out where its own last node had landed. `concat_subgraphs` existed
solely to rebase one per-agent subgraph's indices onto another's.
Templates now declare into a `hive_jobq::JobBuilder` and hold the
handles they get back, so an edge names the node it waits on. The
arithmetic is gone, and with it:
- `NodeSpec` and the job-queue's own index-based `Dep`.
- `insert_group`'s index resolution — it wraps `Scheduler::insert_job`.
- `concat_subgraphs` — per-agent chains share one builder and each keeps
its own root, so independence is structural rather than computed.
- `reconcile_index` and `dep_index`.
- `templates::validate` and its petgraph toposort. It rejected dangling
deps and cycles; both are now unrepresentable, since a handle only
exists for an already-declared node and every edge therefore points
backwards. (petgraph stays in the tree for `agent_config::topology`.)
`NodeOutput.append_subgraph` becomes `Vec<Job>`: an executor cannot
reach the queue, so it hands back declarations and the scheduler inserts
them under its own lock. That is what the in-DAG growth path always
wanted — a transferable declaration, not a vector of specs.
Resource declaration is unchanged in behaviour: the `templates::node`
helper applies `NodeKind::resource_deps()` at the construction site, so
every node still declares what its kind needs. Moving that declaration
to the call sites is #2818's job; this leaves it one place to delete.
Three tests went with the guard they covered — they hand-built malformed
specs out of indices, which is the representation that made those shapes
possible. Two more now read a DAG's shape off the queue rather than out
of a spec vector, which is where it is observable. The remaining 45
job-queue tests are unchanged and still pass: lease serialization,
roll-up, cancel-cascade, in-DAG growth and per-agent concurrency all
behave as before.
The dashboard pill was declared once per DAG at submit time, so a rebuild
reported `rebuilding` for its entire life — through the prebuild, the
stop, the swap, the tail and the reconcile. It named the intent of the
request, not what was happening.
It is now read off the nodes actually running. A node lights a pill when
it is `Running` and declares the agent's own resource. Declaring is the
test, not targeting: `Prebuild` and `MetaSync` name an agent but are
lease-exempt on purpose (the container keeps serving), so they must not
light one. It is also not the lease *owner* — `resource_state()` answers
"who holds the slot", which is a different question from "what is
running", and a descendant that borrows an ancestor's grant never
appears in that map.
`TransientKind` is gone entirely rather than being re-derived. The label
is the node's own wire tag (`NodeKind::as_str`) — the same vocabulary
`NodeView.kind` already ships, so a pill and a DAG node name an operation
identically and there is no second taxonomy to keep in step. Work with no
node behind it (destroy, migration) supplies its own literal.
`DagSpec::transient`, `Claim::transient`, `DagMeta::transient` and
`NodeKind::Dag`'s `transient` field all go with it.
## the safety half, which is deliberately not the display half
`crash_watch::is_deliberate_stop` used to match a `TransientKind` to
decide whether a vanished container was intentional or a crash. That made
a pill's display vocabulary decide an alerting question, so renaming or
adding a label would silently move the alerting boundary.
`TransientState` now carries two independent fields: `label` (rendered,
nothing branches on it) and `deliberate_stop` (read only by the crash
watcher). The producer sets the second, because the producer is the only
thing that knows — it is not recoverable from the first.
For queue work that value is `NodeKind::takes_container_down()`, and it
is emphatically not "holds a lease": `Create` and `Start` hold the
agent's lease exactly like `Stop` does, and a container dying *while
starting* is a real crash that must keep reporting as one. The default is
`false` on purpose — a wrong `false` costs a spurious crash event, a
wrong `true` swallows a real crash silently.
## known cost, accepted on the issue
A restart no longer reads `restarting`. No `NodeKind` is unique to a
restart — `restart_chain` reuses `Signal` / `StopForUpdate` / `Drain` /
`Reconcile` — because "restart" is a property of the DAG's shape, not of
any node. A restart now reads `signal` / `stop_for_update`, then the
agent returns.
`Start` / `Stop` / `PostSwap` run inside a lease-holding ancestor and
re-declare nothing, so they light no pill and the agent reads idle for
those windows. Closing that is the resources-where-constructed work
(#2818), not this change.
Checked with clippy (`--all-targets -D warnings`), `cargo test -p
hive-c0re -p hive-jobq` (321 + 40 passed) and `nix fmt`.
Second of the `Dag` field removals, and the same shape as the first:
`DagSpec`/`NodeKind::Dag` carried an `inputs: Vec<String>` that exactly
one node ever read. Both reads live inside `run_meta_lock` — the
`meta::lock_update` call and the `meta_update_cascade_agents` fan-out —
so the list now rides `NodeKind::MetaLock` itself.
The executor stops touching `Claim` for this node entirely: its dispatch
arm already destructured `MetaLock { sweep, fanout }`, so `inputs` joins
them and the `claim` parameter, which had no other use, is gone.
Falls out of that:
- `Claim::inputs` and `DagMeta::inputs` delete.
- `dag_view`'s DAG-level projection onto the `MetaLock` node reads the
payload instead. The wire `NodeView::inputs` is unchanged: still
populated on the `meta_lock` node alone.
- the boot sweep names no inputs (it bumps `hyperhive` alone via
`lock_update_hyperhive`), which the construction site now says out loud
rather than leaving implicit in an empty DAG-level field.
Checked with clippy (`--all-targets -D warnings`), `cargo test -p
hive-c0re` (320 passed) and `nix fmt`. No option surface is touched, so
no nix-eval gate.
`DagSpec`/`NodeKind::Dag` carried an `Option<i64>` approval id that four
deploy phases read back out through `Claim`, via a fallible helper whose
error ("approval deploy dag N has no approval_id") described a state the
type system should have forbidden. Two other templates (`spawn`,
`meta_update`) set the field for nothing: their approval is resolved by
the `ResolveApproval` tails, which already carry the id themselves.
So the id moves onto the nodes that actually need it —
`DeployWindow` / `MergeVerify` / `DeployApply` / `FinalizeDeploy` /
`DeployTail` each take an `i64`, the same way `ResolveApproval` always
has. `templates::approval_deploy` builds all of them in one place with
the value in hand, and `deploy_rebuild_nodes` takes it as a parameter so
the `FinalizeDeploy` it appends at runtime is constructed the same way.
Falls out of that:
- `deploy_approval_id` and its runtime error path delete; each executor
takes the id from its own node payload at dispatch.
- `run_deploy_window` had nothing left to do but validate that id, so the
node joins `Dag` on the shared no-op arm.
- `Claim::approval_id` and `DagMeta::approval_id` delete.
- `dag_view`'s DAG-level projection onto `DeployWindow` reads the payload
instead. The wire `NodeView::approval_id` is unchanged: still set on
the deploy root alone, so the dashboard still renders one approval link
per DAG rather than one per phase.
No option surface is touched, so there is no nix-eval gate here; checked
with clippy (`--all-targets -D warnings`), `cargo test -p hive-c0re`
(320 passed) and `nix fmt`.
A host restart brings hive-c0re up and the startup sweep rebuilds every
stale agent. Until now that stop was mechanical: `StopForUpdate` hung
straight off `Prebuild`, so an agent that was mid-turn when the host went
down had its turn cut off rather than finished.
The sweep now builds the same `Signal` -> `Drain` -> `StopForUpdate` chain
a graceful `hivectl restart` already uses, reusing the existing nodes and
`GRACEFUL_STOP_TIMEOUT` unchanged. Cost is bounded: the per-agent drains
overlap, so the sweep waits one timeout in total rather than one per agent.
`Signal` parents the rest of the stop instead of sitting beside it. All
three of `Signal` / `Drain` / `StopForUpdate` declare the agent lease, and
a resource is held across its holder's whole subtree — as siblings each
would take the lease separately, leaving a window between them for another
DAG to claim the agent mid-bounce.
Scope is the boot sweep alone: a manual rebuild, a meta-update cascade
child and a deploy all still stop mechanically, and a test pins that shape.
`rebuild_nodes` takes a `RebuildOpts` struct rather than a second
positional `bool`, which two adjacent flags would have made easy to swap at
a call site. Its callers no longer hard-code the subgraph's length either:
the `EmitRebuilt` tails and `FinalizeDeploy` used literal indices that
silently encoded "this builder emits exactly six nodes with `Reconcile`
last", which a variable-length subgraph turns into a wrong-node edge rather
than a compile error. They read the index off the emitted list now.
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 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.
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.
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.
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.
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).
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.
- deploy-window gate (meta::exclusive) + path-limited meta commits:
a perm/lock/topology commit can no longer sweep an ApprovalDeploy's
staged flake.lock and neuter abort_deploy (regression test included)
- cancel surfaces now buffer terminal roll-ups the scheduler drains,
so a queued approval DAG cancelled by the operator resolves its
approval instead of dangling, and cancelled power ops revert their
wanted flip to the observed state
- hivectl restart / restart-all ride the queue (lease serialization,
transient guard) and restart sets wanted=Up like the old kill+start
- exactly one Rebuilt event per rebuild DAG, emitted at terminal
- StopForUpdate pre-seeds a missing agent_power row from the pre-stop
observation so a rebuild can't strand an unknown agent offline
- history trim keeps terminal fan-out parents with live children
- audit_log back on db::open; swarm.js badge for reconcile DAGs
jobs are now DAGs of primitive nodes (prebuild, stop-for-update, swap,
reconcile, signal, drain, ...) driven by one scheduler with N build
slots + per-agent lifecycle leases. per-agent power intent (wanted
up/offline) is durable in agent_power.sqlite; Reconcile nodes converge
observed state to it. kills the graceful-stop watcher thread, the
deferred-start follow-up, and the cascade pre-enqueue (fan-out on
MetaLock completion instead). tracker: #2166