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kanade_shared/
manifest.rs

1use serde::{Deserialize, Serialize};
2
3use crate::ipc::jobs::JobCategory;
4use crate::wire::{RunAs, Shell, Staleness};
5
6/// YAML job manifest (= registered "what to run", v0.18.0+).
7///
8/// Owns only script-intrinsic fields. **Who** (`target`), **how to
9/// phase fanout** (`rollout`), and **when to stagger start**
10/// (`jitter`) all moved to the Schedule / exec request side — same
11/// script can now be fired against different targets / rollouts
12/// without copying the script body.
13///
14/// #492: these types are READ fleet-wide (agents decode them from
15/// BUCKET_JOBS / BUCKET_SCHEDULES and inside live Commands), so they
16/// must tolerate unknown fields — `deny_unknown_fields` here made a
17/// gradually-upgrading fleet's OLD agents reject the whole object
18/// the moment a newer backend added any field. Operator typo
19/// protection (the old reason for the attribute) lives at the WRITE
20/// boundaries instead: `kanade job/schedule create` and the backend
21/// POST extractor parse via [`crate::strict`], which rejects unknown
22/// keys with their full paths. The wire rule: new fields always get
23/// `#[serde(default)]` (+ `skip_serializing_if` while old readers
24/// may still be strict).
25#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
26pub struct Manifest {
27    pub id: String,
28    pub version: String,
29    #[serde(default)]
30    pub description: Option<String>,
31    pub execute: Execute,
32    #[serde(default)]
33    pub require_approval: bool,
34    /// Opt-in marker that this job produces a JSON inventory fact
35    /// payload on stdout. When present, the backend's results
36    /// projector parses `ExecResult.stdout` as JSON and upserts an
37    /// `inventory_facts` row keyed by `(pc_id, manifest.id)`. The
38    /// `display` sub-config drives the SPA's Inventory page render.
39    #[serde(default)]
40    pub inventory: Option<InventoryHint>,
41    /// Issue #246: opt-in marker that this job emits per-line
42    /// observability events on stdout (one JSON `ObsEvent` per
43    /// newline). When present, the agent — after the script exits
44    /// successfully — parses each non-empty stdout line as an
45    /// `ObsEvent`, publishes it on `obs.<pc_id>` via the
46    /// `obs_outbox`, and (intentionally) **omits the stdout from
47    /// the `ExecResult`** so the timeline data doesn't double up
48    /// in `execution_results.stdout` (which would multiply rows
49    /// by ~50/day/PC of noise).
50    ///
51    /// Distinct from `inventory:` (single JSON object → projector
52    /// upsert) — events are append-only timeline points consumed
53    /// by the dedicated `obs_events` table.
54    #[serde(default)]
55    pub emit: Option<EmitConfig>,
56    /// #290: opt-in marker that this job is an operator-defined
57    /// **health check** whose result feeds the Client App's Health
58    /// tab over KLP (`StateSnapshot.checks`). The script prints a
59    /// free-form JSON object on stdout (like any inventory job); the
60    /// agent reads the [`CheckHint::status_field`] value dynamically
61    /// into a [`crate::ipc::state::Check`] named `check.name`.
62    /// Cadence / windows / conditions come from
63    /// the job's Schedule (exactly like inventory) — there is
64    /// deliberately no interval here. **Composes with `inventory:`**:
65    /// the script's stdout is one JSON object, so a check can also
66    /// carry an `inventory:` block to project the rest of that object
67    /// (incl. `explode` sub-tables) for SPA fleet-querying. Only
68    /// `emit:` (NDJSON stdout) is incompatible.
69    #[serde(default)]
70    pub check: Option<CheckHint>,
71    /// v0.26: Layer 2 staleness policy (SPEC.md §2.6.2). Controls
72    /// what the agent does at fire time when it can't verify the
73    /// `script_current` / `script_status` KV values are fresh —
74    /// especially relevant for `runs_on: agent` schedules where
75    /// the agent may fire from cache while offline. Defaults to
76    /// `Staleness::Cached` (silently use cached values), which
77    /// matches every pre-v0.26 Manifest.
78    #[serde(default)]
79    pub staleness: Staleness,
80    /// #291: opt-in marker that this job is offered to **end users**
81    /// in the Client App's job tabs over KLP (`jobs.list` →
82    /// `jobs.execute`). Parallel to [`inventory`] / [`check`] /
83    /// [`emit`]: the block's mere presence is the opt-in, and it
84    /// groups the end-user presentation fields (name / category /
85    /// icon) that only make sense for a user-facing job. `None`
86    /// (the default) ⇒ an operator-only job — inventory, checks,
87    /// scheduled maintenance — that never surfaces in the catalog.
88    ///
89    /// The agent re-reads this at every `jobs.list` / `jobs.execute`
90    /// (SPEC §2.1), so removing the block takes a job out of a
91    /// running client on its next action.
92    ///
93    /// [`inventory`]: Manifest::inventory
94    /// [`check`]: Manifest::check
95    /// [`emit`]: Manifest::emit
96    #[serde(default, skip_serializing_if = "Option::is_none")]
97    pub client: Option<ClientHint>,
98}
99
100/// "Who + how + when-to-stagger" — the fanout-plan side of an exec.
101/// Used both as the POST `/api/exec/{job_id}` body and as the embedded
102/// `target` / `rollout` / `jitter` slot on [`Schedule`]. Centralising
103/// here keeps the validation + serialisation logic in one place.
104#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default)]
105pub struct FanoutPlan {
106    #[serde(default)]
107    pub target: Target,
108    /// Optional wave rollout — when present, the backend publishes
109    /// each wave's group subject on its own delay schedule instead
110    /// of fanning out the `target` block in one go. `target` then
111    /// only labels the deploy for the audit log.
112    #[serde(default, skip_serializing_if = "Option::is_none")]
113    pub rollout: Option<Rollout>,
114    /// Optional humantime jitter; agent uses it to randomise
115    /// execution start. Lives here (not on the script) so different
116    /// schedules / ad-hoc fires of the same job can pick different
117    /// stagger windows.
118    #[serde(default, skip_serializing_if = "Option::is_none")]
119    pub jitter: Option<String>,
120    /// Absolute time the scheduler stamps on each emitted Command
121    /// when this exec was driven by a [`Schedule`] with
122    /// `starting_deadline`. Agents receiving a Command after this
123    /// instant publish a synthetic skipped-result instead of
124    /// running the script. `None` (default) = no deadline / catch
125    /// up whenever delivered. Operators don't usually set this
126    /// directly — the scheduler computes it from `tick_at +
127    /// starting_deadline`.
128    #[serde(default, skip_serializing_if = "Option::is_none")]
129    pub deadline_at: Option<chrono::DateTime<chrono::Utc>>,
130}
131
132/// Manifest sub-section: how the SPA should render the inventory
133/// facts this job produces. Each field name (`field`) is a top-level
134/// key in the stdout JSON, e.g. `hostname`, `ram_gb`.
135///
136/// Two render modes:
137///   * `display` — vertical "field / value" per PC, used by the
138///     `/inventory?pc=<id>` detail view. ALL columns the operator
139///     wants visible on the detail page.
140///   * `summary` — horizontal table across the fleet (row = PC,
141///     column = field) on `/inventory`. Optional; when omitted the
142///     SPA falls back to `display`, but operators usually want a
143///     trimmer "hostname / OS / CPU / RAM" set for the fleet view.
144#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
145pub struct InventoryHint {
146    /// Detail-view columns, in order.
147    pub display: Vec<DisplayField>,
148    /// Optional fleet-list columns (row = PC). Defaults to `display`
149    /// when omitted, but operators usually pick a 3-5 column subset.
150    #[serde(default, skip_serializing_if = "Option::is_none")]
151    pub summary: Option<Vec<DisplayField>>,
152    /// v0.31 / #40: payload arrays that should be exploded into
153    /// per-element rows of a derived SQLite table. Lets operators
154    /// answer cross-PC questions ("which PCs still have Chrome <
155    /// 120?", "C: >90% full") with normal SQL filters + indexes
156    /// instead of grepping JSON. The projector creates the derived
157    /// table on register and replaces this PC's rows on each result
158    /// (DELETE WHERE pc_id=? AND job_id=? + bulk INSERT). See
159    /// [`ExplodeSpec`] for the per-spec schema.
160    #[serde(default, skip_serializing_if = "Option::is_none")]
161    pub explode: Option<Vec<ExplodeSpec>>,
162    /// v0.35 / #93: top-level scalar fields whose changes the
163    /// projector logs to `inventory_history` (one event per
164    /// changed field per scan). Pairs with `explode[].track_history`
165    /// — that covers array elements; this covers single-valued
166    /// fields like `ram_bytes` / `os_version` / `cpu_model` /
167    /// `os_build` that operators want to track for "did the RAM
168    /// get upgraded?" / "when did Win 11 land on this PC?" /
169    /// "BIOS / firmware bumped?" questions. Field name = `field_path`
170    /// in the history row, `identity_json` is NULL, `before_json`
171    /// / `after_json` each carry `{"value": <prior or new value>}`.
172    /// First-ever observation of a scalar (no prior facts row)
173    /// emits `added`; subsequent value changes emit `changed`. No
174    /// `removed` events — a scalar disappearing from the payload
175    /// is rare and the operator can still see the last value via
176    /// the `before_json` of the most recent change.
177    #[serde(default, skip_serializing_if = "Option::is_none")]
178    pub history_scalars: Option<Vec<String>>,
179}
180
181/// Manifest sub-section (#290): marks a job as an operator-defined
182/// **health check**. Parallel to [`InventoryHint`] / `EmitConfig`.
183/// The stdout contract is a free-form JSON object (same as any
184/// inventory job) from which the agent reads `status_field` /
185/// `detail_field` to build the KLP [`crate::ipc::state::Check`] shown
186/// on the Client App's Health tab.
187///
188/// There is deliberately **no timing field** — when / how often /
189/// in which window a check runs is driven by the job's Schedule,
190/// exactly like inventory jobs, so operators get the full `when:` /
191/// rollout / `runs_on` expressiveness for free.
192///
193/// A check's stdout is a **free-form inventory object** (arbitrary
194/// key/value pairs + arrays) — same as any inventory job — that also
195/// carries a status field. `check:` adds only the health semantics on
196/// top: which field is the ok/warn/fail/unknown status, an optional
197/// one-line summary field, and a remediation job. Everything else
198/// (rich per-PC detail, `explode` sub-tables like a software list) is
199/// driven by a co-present [`InventoryHint`] and rendered with the
200/// SAME display logic the SPA Inventory page uses — on the Client App
201/// too. This keeps checks maximally expressive without a bespoke
202/// payload type.
203#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
204pub struct CheckHint {
205    /// Stable check id → [`Check.name`](crate::ipc::state::Check),
206    /// the SPA/Client React key + analytics label. Unique within the
207    /// fleet's check set.
208    pub name: String,
209    /// Top-level stdout field whose string value
210    /// (`ok`/`warn`/`fail`/`unknown`) becomes the Health-tab light
211    /// ([`CheckStatus`](crate::ipc::state::CheckStatus)). Defaults to
212    /// `"status"`; a missing / unparseable value → `unknown`.
213    #[serde(default = "default_status_field")]
214    pub status_field: String,
215    /// Top-level stdout field used as the Health-tab row's one-line
216    /// summary. Defaults to `"detail"`; absent in the payload → no
217    /// detail line (the rich breakdown lives in the inventory view).
218    #[serde(default = "default_detail_field")]
219    pub detail_field: String,
220    /// Optional remediation job id →
221    /// [`Check.troubleshoot`](crate::ipc::state::Check). The Client
222    /// App shows a "修復する" button when present; that job must be
223    /// `user_invokable`.
224    #[serde(default, skip_serializing_if = "Option::is_none")]
225    pub troubleshoot: Option<String>,
226    /// #290 PR-E: when `true` (default), the backend also projects this
227    /// check's `status` / `detail` into the `check_status` table so the
228    /// operator SPA gets a fleet-wide compliance view for free — no
229    /// `inventory:` block needed. Set `fleet: false` for a client-only
230    /// check the operator doesn't want surfaced across the fleet.
231    #[serde(default = "default_fleet")]
232    pub fleet: bool,
233}
234
235fn default_status_field() -> String {
236    "status".to_string()
237}
238
239fn default_detail_field() -> String {
240    "detail".to_string()
241}
242
243fn default_fleet() -> bool {
244    true
245}
246
247/// Manifest sub-section (#291): marks a job as **user-invokable**
248/// from the Client App and carries how it presents to the end user.
249/// Parallel to [`InventoryHint`] / [`CheckHint`] / `EmitConfig` —
250/// the block's presence is the opt-in (no separate boolean), and its
251/// required fields (`name`, `category`) are enforced by serde at
252/// parse time, so a half-filled catalog entry fails
253/// `kanade job create` instead of rendering a nameless / tab-less row.
254///
255/// The agent maps this 1:1 into the KLP
256/// [`UserInvokableJob`](crate::ipc::jobs::UserInvokableJob) wire shape
257/// that `jobs.list` returns; the Client App renders one row per job in
258/// the tab named by `category`.
259#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
260pub struct ClientHint {
261    /// End-user-facing title for the job row. The operator-internal
262    /// `Manifest::id` slug is rarely what an end user should read, so
263    /// this is required (and validated non-empty by
264    /// [`Manifest::validate`]). Maps to `UserInvokableJob::display_name`.
265    pub name: String,
266    /// Optional one-line subtitle under `name` in the Client App.
267    /// Distinct from the operator-facing top-level
268    /// [`Manifest::description`] — this one is written for the end
269    /// user. Maps to `UserInvokableJob::display_description`.
270    #[serde(default, skip_serializing_if = "Option::is_none")]
271    pub description: Option<String>,
272    /// Which Client App tab the job lives in (`software_update` →
273    /// アップデート, `troubleshoot` → 困ったとき, `catalog` → software
274    /// catalog). Required — without it the agent can't place the job
275    /// in a tab.
276    pub category: JobCategory,
277    /// Optional icon hint for the job row — a lucide-react icon name
278    /// or a `data:` URL. `None` ⇒ the Client App falls back to the
279    /// category's default icon. Surfaced verbatim in
280    /// `jobs.list[].icon`.
281    #[serde(default, skip_serializing_if = "Option::is_none")]
282    pub icon: Option<String>,
283}
284
285/// Issue #246 — `emit:` manifest block for jobs whose stdout is
286/// NDJSON observability events (one `ObsEvent` per line). Parallel
287/// to `inventory:` but for the append-only timeline pipeline; see
288/// `Manifest::emit` for the full contract.
289#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
290pub struct EmitConfig {
291    /// What kind of payload the agent should expect on stdout. Only
292    /// `events` is defined today (parses each non-empty line as
293    /// `ObsEvent` and publishes on `obs.<pc_id>`); future variants
294    /// (e.g. metrics streams, structured trace events) plug in here.
295    #[serde(rename = "type")]
296    pub kind: EmitKind,
297    /// Operator hint for where the script keeps its own state — the
298    /// watermark file the PowerShell / sh body reads + writes
299    /// between runs so it only emits NEW events since the last
300    /// poll. The agent doesn't read this; it's documentation that
301    /// the SPA (and `kanade job edit`) can surface to operators
302    /// reviewing the manifest. Optional; the script is allowed to
303    /// keep state anywhere (registry, env, etc.) — the field's
304    /// presence makes the convention discoverable.
305    #[serde(default, skip_serializing_if = "Option::is_none")]
306    pub watermark_path: Option<String>,
307}
308
309/// `emit.type` enum. Lowercase serde so manifests read
310/// `type: events` rather than `Events`.
311#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq)]
312#[serde(rename_all = "lowercase")]
313pub enum EmitKind {
314    /// Per-line `ObsEvent` JSON. Agent parses + publishes on
315    /// `obs.<pc_id>`, drops the stdout from the resulting
316    /// `ExecResult`.
317    Events,
318}
319
320/// v0.31 / #40: declarative "flatten this JSON array into a real
321/// SQLite table" spec on an inventory manifest. The projector
322/// creates the table on first registration (CREATE TABLE IF NOT
323/// EXISTS + indexes) and writes a row per element of
324/// `payload[field]` on every result, scoped by (pc_id, job_id) so
325/// each PC's rows replace cleanly without a per-PC schema.
326#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
327pub struct ExplodeSpec {
328    /// JSON array key under the payload to explode. E.g. `"apps"`
329    /// for `payload: { apps: [{...}, {...}] }`.
330    pub field: String,
331    /// Derived SQLite table name. Operators choose this — pick
332    /// something namespaced + stable (`inventory_sw_apps`, not
333    /// `apps`) so multiple inventory manifests don't collide on a
334    /// generic name.
335    pub table: String,
336    /// Element-level fields that uniquely identify a row inside one
337    /// PC's payload. The full PK is `(pc_id, job_id) + these
338    /// columns`. Required — operators must think about uniqueness
339    /// (e.g. `["name", "source"]` for installed apps because the
340    /// same name appears in multiple uninstall hives).
341    ///
342    /// v0.31 / #41: same tuple drives history identity. When
343    /// `track_history` is on, the projector serialises these
344    /// fields' values into `inventory_history.identity_json` for
345    /// every change event, so queries like "every PC that ever
346    /// installed Chrome (any source)" filter on identity_json
347    /// content without a per-manifest schema.
348    pub primary_key: Vec<String>,
349    /// Per-element fields that become columns in the derived table.
350    pub columns: Vec<ExplodeColumn>,
351    /// v0.31 / #41: when true (default false), the projector
352    /// diffs each PC's incoming payload against the prior rows
353    /// for the same (pc_id, job_id) BEFORE the DELETE-then-INSERT
354    /// replace, and writes added / removed / changed events into
355    /// `inventory_history`. Lets operators answer time-dimension
356    /// questions ("when did Chrome 120 first appear on PC X?",
357    /// "what's the Win 11 23H2 rollout curve") without storing
358    /// per-scan snapshots. Off by default so operators opt in
359    /// per-spec — history has a real storage cost on long-lived
360    /// deployments (mitigated by the 90-day default retention
361    /// sweeper, see `cleanup` module).
362    #[serde(default)]
363    pub track_history: bool,
364}
365
366/// One column in an [`ExplodeSpec`]'s derived table.
367#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
368pub struct ExplodeColumn {
369    /// JSON key under each array element. Becomes the column name
370    /// in the derived SQLite table — we don't rename.
371    pub field: String,
372    /// SQLite affinity: `"text"` (default), `"integer"`, `"real"`.
373    /// Storage maps directly via `sqlx::query.bind(...)`; type
374    /// mismatches at INSERT-time fail loudly rather than silently
375    /// dropping the row.
376    #[serde(default, skip_serializing_if = "Option::is_none")]
377    #[serde(rename = "type")]
378    pub kind: Option<String>,
379    /// When true, the projector creates a `CREATE INDEX` on this
380    /// column at table-creation time. Boost for the common-filter
381    /// columns (`name`, `version`) — operators mark them
382    /// explicitly, the projector won't guess.
383    #[serde(default)]
384    pub index: bool,
385}
386
387#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
388pub struct DisplayField {
389    /// Top-level key in the stdout JSON.
390    pub field: String,
391    /// Human-readable column header.
392    pub label: String,
393    /// Optional render hint — `"number"`, `"bytes"`, `"timestamp"`,
394    /// or `"table"` (#39). Defaults to plain text rendering on the
395    /// SPA side. `"table"` expects the field's value to be a JSON
396    /// array of objects and renders a nested sub-table on the
397    /// per-PC detail page using `columns` as the schema; the fleet
398    /// summary view falls back to showing the row count for
399    /// `"table"` cells so the wide list stays compact.
400    #[serde(default, skip_serializing_if = "Option::is_none")]
401    #[serde(rename = "type")]
402    pub kind: Option<String>,
403    /// v0.30 / #39: when `kind == "table"`, the SPA renders the
404    /// field's value (an array of objects like
405    /// `disks: [{ device_id, size_bytes, ... }]`) as a nested
406    /// sub-table using these columns. Each column is itself a
407    /// `DisplayField`, so the nested cells reuse the same render
408    /// hints (`bytes`, `number`, `timestamp`) — no parallel format
409    /// pipeline. Ignored for any other `kind`.
410    #[serde(default, skip_serializing_if = "Option::is_none")]
411    pub columns: Option<Vec<DisplayField>>,
412}
413
414#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
415pub struct Rollout {
416    #[serde(default)]
417    pub strategy: RolloutStrategy,
418    pub waves: Vec<Wave>,
419}
420
421#[derive(
422    Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq, Default,
423)]
424#[serde(rename_all = "lowercase")]
425pub enum RolloutStrategy {
426    #[default]
427    Wave,
428}
429
430#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
431pub struct Wave {
432    pub group: String,
433    /// humantime delay measured from the deploy's publish time. wave[0]
434    /// typically has "0s"; subsequent waves use minutes / hours.
435    pub delay: String,
436}
437
438#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default)]
439pub struct Target {
440    #[serde(default)]
441    pub groups: Vec<String>,
442    #[serde(default)]
443    pub pcs: Vec<String>,
444    #[serde(default)]
445    pub all: bool,
446}
447
448impl Target {
449    /// At least one of all / groups / pcs is set.
450    pub fn is_specified(&self) -> bool {
451        self.all || !self.groups.is_empty() || !self.pcs.is_empty()
452    }
453}
454
455#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
456pub struct Execute {
457    pub shell: ExecuteShell,
458    /// Inline script body. Mutually exclusive with [`script_file`]
459    /// and [`script_object`]; exactly one of the three must be set
460    /// (enforced by [`Execute::validate_script_source`] at the
461    /// write-side parse boundaries — `kanade job create` and
462    /// `POST /api/jobs`).
463    ///
464    /// Empty string is treated as **unset** so operators can swap
465    /// to a `script_file:` / `script_object:` alternative just by
466    /// commenting out the body, without having to also drop the
467    /// `script:` key entirely.
468    ///
469    /// [`script_file`]: Self::script_file
470    /// [`script_object`]: Self::script_object
471    #[serde(default, skip_serializing_if = "Option::is_none")]
472    pub script: Option<String>,
473    /// Repo-local file path resolved by the operator-side CLI at
474    /// `kanade job create` time. The CLI reads the file, slots its
475    /// contents into `script`, and clears this field before
476    /// POSTing — so the backend / agents never see `script_file`
477    /// in stored manifests. SPEC §2.4.1.
478    ///
479    /// Resolver lands in a follow-up PR
480    /// (yukimemi/kanade#210); today this field passes parse-time
481    /// validation but the operator-side CLI bails with "not yet
482    /// implemented" until the resolver ships, so manifests that
483    /// reach the backend with `script_file` set are treated as a
484    /// schema-bug.
485    #[serde(default, skip_serializing_if = "Option::is_none")]
486    pub script_file: Option<String>,
487    /// Object Store reference (`<name>/<version>`) into the
488    /// `scripts` bucket (`OBJECT_SCRIPTS`). Agents fetch the body
489    /// at Execute time via `/api/script-objects/{name}/{version}`
490    /// and cache it locally. SPEC §2.4.1.
491    ///
492    /// Resolver lands in the same follow-up PR as `script_file`;
493    /// today this field passes parse-time validation but the
494    /// backend / agent exec paths bail with "not yet implemented"
495    /// when they see it.
496    #[serde(default, skip_serializing_if = "Option::is_none")]
497    pub script_object: Option<String>,
498    /// humantime duration string (e.g. "30s", "10m"). Script-intrinsic
499    /// — represents how long this script reasonably takes to run.
500    pub timeout: String,
501    /// Token + session combination the agent uses to launch the
502    /// script (v0.21). Default = [`RunAs::System`] (Session 0,
503    /// LocalSystem privileges, no GUI) — matches pre-v0.21 behavior.
504    #[serde(default)]
505    pub run_as: RunAs,
506    /// Working directory for the spawned child (v0.21.1). When
507    /// unset, the child inherits the agent's cwd — on Windows that
508    /// means `%SystemRoot%\System32` for the prod service, which is
509    /// almost never what operators actually want. Use an absolute
510    /// path; relative paths are passed through to the OS verbatim.
511    /// `%PROGRAMDATA%` works for `run_as: system`; for `run_as: user`
512    /// you'd want `%USERPROFILE%` (but expansion happens in the
513    /// shell, so write `$env:USERPROFILE` for PowerShell, or set
514    /// it via teravars before `kanade job create`).
515    #[serde(default, skip_serializing_if = "Option::is_none")]
516    pub cwd: Option<String>,
517}
518
519impl Execute {
520    /// Treat an empty `script:` body as "intentionally unset". Operators
521    /// commenting out a block-scalar tend to leave the key behind, and
522    /// failing the validator on `script: ""` would surprise them.
523    fn has_inline_script(&self) -> bool {
524        matches!(&self.script, Some(s) if !s.is_empty())
525    }
526
527    /// Enforce that exactly one of `script` / `script_file` /
528    /// `script_object` is set. Called at the write-side parse
529    /// boundaries (CLI `kanade job create` + backend
530    /// `POST /api/jobs`) so ambiguous YAML is rejected before it
531    /// reaches the JOBS KV. Read paths (projector, agent
532    /// scheduler, list endpoints) skip this check — they only ever
533    /// see what the write path already validated.
534    pub fn validate_script_source(&self) -> Result<(), String> {
535        let inline = self.has_inline_script();
536        let file = self.script_file.is_some();
537        let obj = self.script_object.is_some();
538        let set = [inline, file, obj].into_iter().filter(|b| *b).count();
539        match set {
540            1 => Ok(()),
541            0 => Err("execute: one of `script`, `script_file`, `script_object` must be set".into()),
542            _ => Err(format!(
543                "execute: only one of `script` / `script_file` / `script_object` may be set \
544                 (got script={inline}, script_file={file}, script_object={obj})"
545            )),
546        }
547    }
548}
549
550impl Manifest {
551    /// Cross-field semantic checks that don't fit into pure serde
552    /// derive. Currently delegates to
553    /// [`Execute::validate_script_source`] — see that method's
554    /// docs for the rationale on which call sites should run this.
555    pub fn validate(&self) -> Result<(), String> {
556        self.execute.validate_script_source()?;
557        // Stdout-format compatibility. `inventory:` and `check:` both
558        // consume the SAME single JSON object — they COMPOSE: a check
559        // can extract `status`/`detail` for the Health tab while the
560        // projector explodes the rest into SPA sub-tables. `emit:` is
561        // different — its stdout is NDJSON and the agent omits it from
562        // the result entirely — so it can't be paired with either.
563        if self.emit.is_some() && (self.inventory.is_some() || self.check.is_some()) {
564            return Err(
565                "`emit:` is incompatible with `inventory:` / `check:` — emit's stdout is NDJSON \
566                 timeline events (and omitted from the result), while inventory/check read a \
567                 single JSON object from stdout"
568                    .to_string(),
569            );
570        }
571        // A check's `name` is the Health-tab row id (React key); the
572        // field names tell the agent where to read status/detail.
573        // An empty value is an invisible runtime bug, and the serde
574        // defaults don't guard an operator who writes `status_field:
575        // ""` explicitly — reject all three here.
576        if let Some(check) = &self.check {
577            for (label, value) in [
578                ("check.name", &check.name),
579                ("check.status_field", &check.status_field),
580                ("check.detail_field", &check.detail_field),
581            ] {
582                if value.trim().is_empty() {
583                    return Err(format!("{label} must not be empty"));
584                }
585            }
586            // A present-but-blank `troubleshoot` is a broken
587            // remediation job id (the "修復する" button would target
588            // an empty manifest id) — reject it too.
589            if let Some(troubleshoot) = &check.troubleshoot {
590                if troubleshoot.trim().is_empty() {
591                    return Err("check.troubleshoot must not be empty when set".to_string());
592                }
593            }
594        }
595        // #291: a `client:` job is rendered in the Client App's
596        // catalog (`jobs.list` → `jobs.execute`). serde already makes
597        // `name` + `category` required at parse time; the only gap is
598        // a present-but-blank `name`, which would render an empty row
599        // title — reject it like the other display-id fields.
600        if let Some(client) = &self.client {
601            if client.name.trim().is_empty() {
602                return Err("client.name must not be empty".to_string());
603            }
604            // Optional display fields, when present, must be
605            // meaningful: a blank `description` renders an empty
606            // subtitle and a blank `icon` is a dangling lucide name.
607            // Same present-but-blank guard the `check:` block applies
608            // to its optional `troubleshoot` id.
609            for (label, value) in [
610                ("client.description", &client.description),
611                ("client.icon", &client.icon),
612            ] {
613                if let Some(v) = value {
614                    if v.trim().is_empty() {
615                        return Err(format!("{label} must not be empty when set"));
616                    }
617                }
618            }
619        }
620        Ok(())
621    }
622}
623
624#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq)]
625#[serde(rename_all = "lowercase")]
626pub enum ExecuteShell {
627    Powershell,
628    Cmd,
629}
630
631impl From<ExecuteShell> for Shell {
632    fn from(s: ExecuteShell) -> Self {
633        match s {
634            ExecuteShell::Powershell => Shell::Powershell,
635            ExecuteShell::Cmd => Shell::Cmd,
636        }
637    }
638}
639
640#[cfg(test)]
641mod tests {
642    use super::*;
643
644    /// The example check-job + schedule YAMLs shipped under `configs/`
645    /// must stay valid as the schema evolves (#290 PR-C). `include_str!`
646    /// pins them at compile time so a breaking edit fails `cargo test`
647    /// rather than only `kanade job create` at deploy time.
648    #[test]
649    fn example_check_job_yamls_parse_and_validate() {
650        let jobs = [
651            (
652                "check-bitlocker",
653                include_str!("../../../configs/jobs/check-bitlocker.yaml"),
654            ),
655            (
656                "check-av-signature",
657                include_str!("../../../configs/jobs/check-av-signature.yaml"),
658            ),
659            (
660                "check-cert-expiry",
661                include_str!("../../../configs/jobs/check-cert-expiry.yaml"),
662            ),
663        ];
664        for (name, yaml) in jobs {
665            let m: Manifest =
666                serde_yaml::from_str(yaml).unwrap_or_else(|e| panic!("{name} parse: {e}"));
667            m.validate()
668                .unwrap_or_else(|e| panic!("{name} validate: {e}"));
669            let check = m
670                .check
671                .as_ref()
672                .unwrap_or_else(|| panic!("{name} must carry a check: hint"));
673            assert!(!check.name.trim().is_empty(), "{name} check.name empty");
674            // These three examples all read admin-only WMI namespaces,
675            // so they run_as system. NOTE: that's a property of these
676            // particular checks, NOT of the `check:` contract — a check
677            // probing user-session state could legitimately run_as user.
678            assert_eq!(
679                m.execute.run_as,
680                RunAs::System,
681                "{name} should run_as system"
682            );
683        }
684    }
685
686    /// The example user-invokable job YAMLs (#291) shipped under
687    /// `configs/jobs/` must stay valid as the `client:` schema
688    /// evolves. `include_str!` pins them at compile time so a breaking
689    /// edit fails `cargo test`, not `kanade job create` at deploy.
690    #[test]
691    fn example_client_job_yamls_parse_and_validate() {
692        let jobs = [
693            (
694                "fix-teams-cache",
695                JobCategory::Troubleshoot,
696                include_str!("../../../configs/jobs/fix-teams-cache.yaml"),
697            ),
698            (
699                "chrome-update",
700                JobCategory::SoftwareUpdate,
701                include_str!("../../../configs/jobs/chrome-update.yaml"),
702            ),
703            (
704                "install-slack",
705                JobCategory::Catalog,
706                include_str!("../../../configs/jobs/install-slack.yaml"),
707            ),
708        ];
709        for (id, category, yaml) in jobs {
710            let m: Manifest =
711                serde_yaml::from_str(yaml).unwrap_or_else(|e| panic!("{id} parse: {e}"));
712            m.validate()
713                .unwrap_or_else(|e| panic!("{id} validate: {e}"));
714            assert_eq!(m.id, id, "{id} id mismatch");
715            let client = m
716                .client
717                .as_ref()
718                .unwrap_or_else(|| panic!("{id} must carry a client: block"));
719            assert!(!client.name.trim().is_empty(), "{id} client.name empty");
720            assert_eq!(client.category, category, "{id} category");
721        }
722    }
723
724    #[test]
725    fn example_check_schedule_yamls_parse_and_validate() {
726        let schedules = [
727            (
728                "check-bitlocker",
729                include_str!("../../../configs/schedules/check-bitlocker.yaml"),
730            ),
731            (
732                "check-av-signature",
733                include_str!("../../../configs/schedules/check-av-signature.yaml"),
734            ),
735            (
736                "check-cert-expiry",
737                include_str!("../../../configs/schedules/check-cert-expiry.yaml"),
738            ),
739        ];
740        for (name, yaml) in schedules {
741            let s: Schedule =
742                serde_yaml::from_str(yaml).unwrap_or_else(|e| panic!("{name} schedule parse: {e}"));
743            s.validate()
744                .unwrap_or_else(|e| panic!("{name} schedule validate: {e}"));
745            assert_eq!(s.job_id, name, "{name} schedule must reference its job");
746        }
747    }
748
749    #[test]
750    fn target_is_specified_requires_at_least_one_field() {
751        let empty = Target::default();
752        assert!(!empty.is_specified());
753
754        let with_all = Target {
755            all: true,
756            ..Target::default()
757        };
758        assert!(with_all.is_specified());
759
760        let with_groups = Target {
761            groups: vec!["canary".into()],
762            ..Target::default()
763        };
764        assert!(with_groups.is_specified());
765
766        let with_pcs = Target {
767            pcs: vec!["pc-01".into()],
768            ..Target::default()
769        };
770        assert!(with_pcs.is_specified());
771    }
772
773    #[test]
774    fn manifest_deserialises_minimal_yaml() {
775        // Matches jobs/echo-test.yaml. v0.18: no target/rollout/jitter
776        // — those live on the schedule / exec request now.
777        let yaml = r#"
778id: echo-test
779version: 0.0.1
780execute:
781  shell: powershell
782  script: "echo 'kanade'"
783  timeout: 30s
784"#;
785        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
786        assert_eq!(m.id, "echo-test");
787        assert_eq!(m.version, "0.0.1");
788        assert!(matches!(m.execute.shell, ExecuteShell::Powershell));
789        assert_eq!(
790            m.execute.script.as_deref().map(str::trim),
791            Some("echo 'kanade'")
792        );
793        assert!(m.execute.script_file.is_none());
794        assert!(m.execute.script_object.is_none());
795        assert_eq!(m.execute.timeout, "30s");
796        assert!(!m.require_approval);
797        m.validate()
798            .expect("inline-script manifest passes validation");
799    }
800
801    #[test]
802    fn manifest_parses_check_job_and_validates() {
803        // An operator-defined health check (#290): a `check:` hint +
804        // a PowerShell script that prints {status, detail}.
805        let yaml = r#"
806id: check-bitlocker
807version: 0.1.0
808execute:
809  shell: powershell
810  run_as: system
811  timeout: 15s
812  script: |
813    [pscustomobject]@{ status = 'ok'; detail = 'all volumes protected' } | ConvertTo-Json -Compress
814check:
815  name: bitlocker
816  troubleshoot: fix-bitlocker
817"#;
818        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
819        let check = m.check.as_ref().expect("check hint present");
820        assert_eq!(check.name, "bitlocker");
821        assert_eq!(check.troubleshoot.as_deref(), Some("fix-bitlocker"));
822        // Field names default to the conventional "status" / "detail".
823        assert_eq!(check.status_field, "status");
824        assert_eq!(check.detail_field, "detail");
825        assert!(m.inventory.is_none() && m.emit.is_none());
826        m.validate().expect("check-only manifest passes validation");
827    }
828
829    #[test]
830    fn manifest_check_defaults_and_custom_fields() {
831        // Minimal: only `name`; status/detail fields default.
832        let m: Manifest = serde_yaml::from_str(
833            r#"
834id: check-disk
835version: 0.1.0
836execute:
837  shell: powershell
838  script: "[pscustomobject]@{ status = 'ok' } | ConvertTo-Json -Compress"
839  timeout: 10s
840check:
841  name: disk_free
842"#,
843        )
844        .expect("parse");
845        let c = m.check.as_ref().unwrap();
846        assert_eq!(c.name, "disk_free");
847        assert_eq!(c.status_field, "status");
848        assert_eq!(c.detail_field, "detail");
849        assert!(c.troubleshoot.is_none());
850        m.validate().expect("validates");
851
852        // The operator can point status/detail at any field of their
853        // free-form inventory object.
854        let m2: Manifest = serde_yaml::from_str(
855            r#"
856id: check-custom
857version: 0.1.0
858execute:
859  shell: powershell
860  script: "echo x"
861  timeout: 10s
862check:
863  name: patch_level
864  status_field: compliance
865  detail_field: summary
866"#,
867        )
868        .expect("parse");
869        let c2 = m2.check.as_ref().unwrap();
870        assert_eq!(c2.status_field, "compliance");
871        assert_eq!(c2.detail_field, "summary");
872    }
873
874    #[test]
875    fn manifest_allows_check_composed_with_inventory() {
876        // `check:` + `inventory:` COMPOSE on the same stdout object:
877        // status/detail → Health tab, the rest → SPA projection +
878        // explode sub-tables. Must pass validation.
879        let yaml = r#"
880id: check-bitlocker-detailed
881version: 0.1.0
882execute:
883  shell: powershell
884  script: "echo x"
885  timeout: 10s
886check:
887  name: bitlocker
888inventory:
889  display:
890    - { field: status, label: Status }
891"#;
892        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
893        assert!(m.check.is_some() && m.inventory.is_some());
894        m.validate().expect("check + inventory compose");
895    }
896
897    #[test]
898    fn manifest_rejects_check_combined_with_emit() {
899        // `emit:` stdout is NDJSON (and omitted from the result), so
900        // it can't pair with `check:` (which needs a single JSON
901        // object on stdout).
902        let yaml = r#"
903id: bad-mix
904version: 0.1.0
905execute:
906  shell: powershell
907  script: "echo x"
908  timeout: 10s
909check:
910  name: bitlocker
911emit:
912  type: events
913"#;
914        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
915        let err = m.validate().expect_err("emit + check must fail");
916        assert!(err.contains("incompatible"), "err: {err}");
917    }
918
919    #[test]
920    fn manifest_rejects_emit_combined_with_inventory() {
921        // The other half of the emit-incompatibility condition.
922        let yaml = r#"
923id: bad-mix-2
924version: 0.1.0
925execute:
926  shell: powershell
927  script: "echo x"
928  timeout: 10s
929emit:
930  type: events
931inventory:
932  display:
933    - { field: status, label: Status }
934"#;
935        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
936        let err = m.validate().expect_err("emit + inventory must fail");
937        assert!(err.contains("incompatible"), "err: {err}");
938    }
939
940    #[test]
941    fn manifest_rejects_empty_check_field_names() {
942        // Empty name / status_field / detail_field are invisible
943        // runtime bugs (empty React key, agent reads the wrong field)
944        // — reject them even though serde supplies non-empty defaults.
945        let base = |inner: &str| {
946            format!(
947                "id: c\nversion: 0.1.0\nexecute:\n  shell: powershell\n  script: \"echo x\"\n  timeout: 10s\ncheck:\n{inner}"
948            )
949        };
950        for inner in [
951            "  name: \"\"\n",
952            "  name: ok\n  status_field: \"\"\n",
953            "  name: ok\n  detail_field: \"   \"\n",
954            // present-but-blank troubleshoot → broken remediation id.
955            "  name: ok\n  troubleshoot: \"  \"\n",
956        ] {
957            let m: Manifest = serde_yaml::from_str(&base(inner)).expect("parse");
958            let err = m.validate().expect_err("empty field must fail");
959            assert!(err.contains("must not be empty"), "err: {err}");
960        }
961    }
962
963    #[test]
964    fn manifest_client_absent_by_default() {
965        // A plain operator job (the overwhelming majority) carries no
966        // `client:` block, so it never surfaces in the end-user
967        // catalog.
968        let yaml = r#"
969id: echo-test
970version: 0.0.1
971execute:
972  shell: powershell
973  script: "echo 'kanade'"
974  timeout: 30s
975"#;
976        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
977        assert!(m.client.is_none());
978        m.validate().expect("operator-only job validates");
979    }
980
981    #[test]
982    fn manifest_client_parses_and_validates() {
983        // The Client App "困ったとき" remediation job shape: a
984        // user-invokable troubleshoot job with the end-user fields the
985        // KLP `jobs.list` wire needs, grouped under `client:`.
986        let yaml = r#"
987id: fix-teams-cache
988version: 1.0.0
989execute:
990  shell: powershell
991  script: "echo clearing"
992  timeout: 60s
993client:
994  name: "Teams のキャッシュをクリア"
995  description: "Teams が重いときに試してください"
996  category: troubleshoot
997  icon: brush-cleaning
998"#;
999        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
1000        let c = m.client.as_ref().expect("client block present");
1001        assert_eq!(c.name, "Teams のキャッシュをクリア");
1002        assert_eq!(
1003            c.description.as_deref(),
1004            Some("Teams が重いときに試してください")
1005        );
1006        assert_eq!(c.category, JobCategory::Troubleshoot);
1007        assert_eq!(c.icon.as_deref(), Some("brush-cleaning"));
1008        m.validate().expect("user-invokable job validates");
1009    }
1010
1011    #[test]
1012    fn manifest_client_minimal_only_name_and_category() {
1013        // description + icon are optional; name + category are the
1014        // serde-required minimum.
1015        let yaml = r#"
1016id: install-slack
1017version: 1.0.0
1018execute:
1019  shell: powershell
1020  script: "echo install"
1021  timeout: 600s
1022client:
1023  name: Slack
1024  category: catalog
1025"#;
1026        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
1027        let c = m.client.as_ref().expect("client present");
1028        assert_eq!(c.category, JobCategory::Catalog);
1029        assert!(c.description.is_none() && c.icon.is_none());
1030        m.validate().expect("minimal client validates");
1031    }
1032
1033    #[test]
1034    fn manifest_client_rejects_blank_name() {
1035        // serde guarantees `name`/`category` are present; the one gap
1036        // is a present-but-blank name → empty catalog row title.
1037        let yaml = r#"
1038id: j
1039version: 1.0.0
1040execute:
1041  shell: powershell
1042  script: "echo x"
1043  timeout: 30s
1044client:
1045  name: "   "
1046  category: catalog
1047"#;
1048        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
1049        let err = m.validate().expect_err("blank name must fail");
1050        assert!(err.contains("client.name"), "err: {err}");
1051    }
1052
1053    #[test]
1054    fn manifest_client_rejects_blank_optional_fields() {
1055        // description / icon are optional, but a present-but-blank
1056        // value is a bug (empty subtitle / dangling icon name) — reject
1057        // it, mirroring the check: block's troubleshoot guard.
1058        for (field, line) in [
1059            ("client.description", "  description: \"  \"\n"),
1060            ("client.icon", "  icon: \"\"\n"),
1061        ] {
1062            let yaml = format!(
1063                "id: j\nversion: 1.0.0\nexecute:\n  shell: powershell\n  script: \"echo x\"\n  timeout: 30s\nclient:\n  name: A\n  category: catalog\n{line}"
1064            );
1065            let m: Manifest = serde_yaml::from_str(&yaml).expect("parse");
1066            let err = m.validate().expect_err("blank optional field must fail");
1067            assert!(err.contains(field), "expected {field} in err: {err}");
1068        }
1069    }
1070
1071    #[test]
1072    fn manifest_client_requires_category_at_parse() {
1073        // A `client:` block missing `category` is a hard parse error
1074        // (serde required field) — no manual validate() needed.
1075        let yaml = r#"
1076id: j
1077version: 1.0.0
1078execute:
1079  shell: powershell
1080  script: "echo x"
1081  timeout: 30s
1082client:
1083  name: "A job"
1084"#;
1085        let r: Result<Manifest, _> = serde_yaml::from_str(yaml);
1086        assert!(
1087            r.is_err(),
1088            "missing category must be a parse error, got {r:?}"
1089        );
1090    }
1091
1092    #[test]
1093    fn manifest_client_rejects_unknown_field() {
1094        // #492: the strict create boundary catches a fat-fingered
1095        // `displayname:` (with its path) instead of silently
1096        // dropping it; the tolerant read path accepts it.
1097        let yaml = r#"
1098id: j
1099version: 1.0.0
1100execute:
1101  shell: powershell
1102  script: "echo x"
1103  timeout: 30s
1104client:
1105  name: "A job"
1106  category: catalog
1107  displayname: oops
1108"#;
1109        let r = crate::strict::from_yaml_str::<Manifest>(yaml);
1110        let err = r.expect_err("unknown client field must be rejected at the write boundary");
1111        // serde_ignored renders the Option layer as `?`:
1112        // `client.?.displayname`. Assert on the leaf key.
1113        assert!(err.contains("displayname"), "{err}");
1114        // The READ path tolerates the same payload (gradual-upgrade
1115        // contract: an old agent must accept a newer writer's field).
1116        let m: Manifest = serde_yaml::from_str(yaml).expect("tolerant read");
1117        assert_eq!(m.client.as_ref().map(|c| c.name.as_str()), Some("A job"));
1118    }
1119
1120    fn execute_with(
1121        script: Option<&str>,
1122        script_file: Option<&str>,
1123        script_object: Option<&str>,
1124    ) -> Execute {
1125        Execute {
1126            shell: ExecuteShell::Powershell,
1127            script: script.map(str::to_owned),
1128            script_file: script_file.map(str::to_owned),
1129            script_object: script_object.map(str::to_owned),
1130            timeout: "30s".into(),
1131            run_as: RunAs::default(),
1132            cwd: None,
1133        }
1134    }
1135
1136    #[test]
1137    fn validate_accepts_inline_script() {
1138        let e = execute_with(Some("echo hi"), None, None);
1139        assert!(e.validate_script_source().is_ok());
1140    }
1141
1142    #[test]
1143    fn validate_accepts_script_file_alone() {
1144        let e = execute_with(None, Some("scripts/cleanup.ps1"), None);
1145        assert!(e.validate_script_source().is_ok());
1146    }
1147
1148    #[test]
1149    fn validate_accepts_script_object_alone() {
1150        let e = execute_with(None, None, Some("cleanup/1.0.0"));
1151        assert!(e.validate_script_source().is_ok());
1152    }
1153
1154    #[test]
1155    fn validate_treats_empty_inline_script_as_unset() {
1156        // `script: ""` + `script_object` set is the natural shape
1157        // when an operator comments out the YAML block-scalar body
1158        // but leaves the key. Should pass.
1159        let e = execute_with(Some(""), None, Some("cleanup/1.0.0"));
1160        assert!(e.validate_script_source().is_ok());
1161    }
1162
1163    #[test]
1164    fn validate_rejects_zero_sources() {
1165        let e = execute_with(None, None, None);
1166        let err = e.validate_script_source().unwrap_err();
1167        assert!(err.contains("must be set"), "got: {err}");
1168    }
1169
1170    #[test]
1171    fn validate_rejects_empty_inline_only() {
1172        let e = execute_with(Some(""), None, None);
1173        let err = e.validate_script_source().unwrap_err();
1174        assert!(err.contains("must be set"), "got: {err}");
1175    }
1176
1177    #[test]
1178    fn validate_rejects_inline_plus_file() {
1179        let e = execute_with(Some("echo hi"), Some("scripts/cleanup.ps1"), None);
1180        let err = e.validate_script_source().unwrap_err();
1181        assert!(err.contains("only one of"), "got: {err}");
1182    }
1183
1184    #[test]
1185    fn validate_rejects_inline_plus_object() {
1186        let e = execute_with(Some("echo hi"), None, Some("cleanup/1.0.0"));
1187        let err = e.validate_script_source().unwrap_err();
1188        assert!(err.contains("only one of"), "got: {err}");
1189    }
1190
1191    #[test]
1192    fn validate_rejects_file_plus_object() {
1193        let e = execute_with(None, Some("scripts/cleanup.ps1"), Some("cleanup/1.0.0"));
1194        let err = e.validate_script_source().unwrap_err();
1195        assert!(err.contains("only one of"), "got: {err}");
1196    }
1197
1198    #[test]
1199    fn validate_rejects_all_three() {
1200        let e = execute_with(
1201            Some("echo hi"),
1202            Some("scripts/cleanup.ps1"),
1203            Some("cleanup/1.0.0"),
1204        );
1205        let err = e.validate_script_source().unwrap_err();
1206        assert!(err.contains("only one of"), "got: {err}");
1207    }
1208
1209    #[test]
1210    fn manifest_deserialises_script_object_yaml() {
1211        // SPEC §2.4.1 example shape with the Object Store
1212        // reference picked over inline.
1213        let yaml = r#"
1214id: cleanup-disk-temp
1215version: 1.0.1
1216execute:
1217  shell: powershell
1218  script_object: cleanup-disk-temp/1.0.1
1219  timeout: 600s
1220"#;
1221        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
1222        assert_eq!(
1223            m.execute.script_object.as_deref(),
1224            Some("cleanup-disk-temp/1.0.1")
1225        );
1226        assert!(m.execute.script.is_none());
1227        m.validate()
1228            .expect("script_object-only manifest passes validation");
1229    }
1230
1231    #[test]
1232    fn manifest_rejects_typo_in_script_field_name() {
1233        // #492: the strict create boundary catches `script_objectt`
1234        // and similar fat-fingers (with the full path) instead of
1235        // letting them silently fall through to "all three unset".
1236        let yaml = r#"
1237id: typo
1238version: 1.0.0
1239execute:
1240  shell: powershell
1241  script_objectt: oops
1242  timeout: 30s
1243"#;
1244        let err = crate::strict::from_yaml_str::<Manifest>(yaml)
1245            .expect_err("typo'd execute field must be rejected at the write boundary");
1246        assert!(err.contains("execute.script_objectt"), "{err}");
1247    }
1248
1249    #[test]
1250    fn schedule_carries_target_and_rollout() {
1251        let yaml = r#"
1252id: hourly-cleanup-canary
1253when:
1254  per_pc: { every: 1h }
1255job_id: cleanup
1256enabled: true
1257target:
1258  groups: [canary, wave1]
1259jitter: 30s
1260rollout:
1261  strategy: wave
1262  waves:
1263    - { group: canary, delay: 0s }
1264    - { group: wave1,  delay: 5s }
1265"#;
1266        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
1267        assert_eq!(s.id, "hourly-cleanup-canary");
1268        assert_eq!(s.job_id, "cleanup");
1269        assert_eq!(s.plan.target.groups, vec!["canary", "wave1"]);
1270        assert_eq!(s.plan.jitter.as_deref(), Some("30s"));
1271        let rollout = s.plan.rollout.expect("rollout present");
1272        assert_eq!(rollout.waves.len(), 2);
1273        assert_eq!(rollout.waves[0].group, "canary");
1274        assert_eq!(rollout.waves[1].delay, "5s");
1275        assert_eq!(rollout.strategy, RolloutStrategy::Wave);
1276    }
1277
1278    #[test]
1279    fn schedule_minimal_target_all() {
1280        let yaml = r#"
1281id: kitting
1282when:
1283  per_pc: once
1284enabled: true
1285job_id: scheduled-echo
1286target: { all: true }
1287"#;
1288        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
1289        assert_eq!(s.id, "kitting");
1290        assert_eq!(s.when, When::PerPc(PerPolicy::Once(OnceLiteral::Once)));
1291        assert!(s.enabled);
1292        assert_eq!(s.job_id, "scheduled-echo");
1293        assert!(s.plan.target.all);
1294        assert!(s.plan.rollout.is_none());
1295        assert!(s.plan.jitter.is_none());
1296        assert!(s.active.is_empty());
1297    }
1298
1299    #[test]
1300    fn schedule_enabled_defaults_to_true() {
1301        let yaml = r#"
1302id: x
1303when:
1304  per_pc: once
1305job_id: y
1306target: { all: true }
1307"#;
1308        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
1309        assert!(s.enabled);
1310    }
1311
1312    // ---- `when` parsing (#418 Phase 1) ----
1313
1314    fn schedule_yaml_with(when_block: &str) -> String {
1315        format!(
1316            r#"
1317id: x
1318when:
1319{when_block}
1320job_id: y
1321target: {{ all: true }}
1322"#
1323        )
1324    }
1325
1326    #[test]
1327    fn when_per_pc_every_parses_unquoted_humantime() {
1328        // `6h` is digit-led but non-numeric → YAML string, same as
1329        // the old `cooldown: 6h` convention. No quotes needed.
1330        let s: Schedule =
1331            serde_yaml::from_str(&schedule_yaml_with("  per_pc: { every: 6h }")).expect("parse");
1332        assert_eq!(
1333            s.when,
1334            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() }))
1335        );
1336    }
1337
1338    #[test]
1339    fn when_per_target_every_parses() {
1340        let s: Schedule = serde_yaml::from_str(&schedule_yaml_with("  per_target: { every: 24h }"))
1341            .expect("parse");
1342        assert_eq!(
1343            s.when,
1344            When::PerTarget(PerPolicy::Every(EverySpec {
1345                every: "24h".into()
1346            }))
1347        );
1348    }
1349
1350    #[test]
1351    fn when_per_target_once_parses() {
1352        // Falls out of the shared PerPolicy shape and decide_fire
1353        // already implements it ("any one pc succeeds → skip the
1354        // target forever"), so it is allowed, not rejected.
1355        let s: Schedule =
1356            serde_yaml::from_str(&schedule_yaml_with("  per_target: once")).expect("parse");
1357        assert_eq!(s.when, When::PerTarget(PerPolicy::Once(OnceLiteral::Once)));
1358    }
1359
1360    #[test]
1361    fn when_calendar_time_parses() {
1362        let s: Schedule = serde_yaml::from_str(&schedule_yaml_with(
1363            "  calendar:\n    at: \"09:00\"\n    days: [mon-fri]",
1364        ))
1365        .expect("parse");
1366        match &s.when {
1367            When::Calendar(c) => {
1368                assert_eq!(c.at, "09:00");
1369                assert_eq!(c.days, vec!["mon-fri"]);
1370            }
1371            other => panic!("expected calendar, got {other:?}"),
1372        }
1373    }
1374
1375    #[test]
1376    fn when_calendar_days_default_empty() {
1377        let s: Schedule =
1378            serde_yaml::from_str(&schedule_yaml_with("  calendar:\n    at: \"09:00\""))
1379                .expect("parse");
1380        match &s.when {
1381            When::Calendar(c) => assert!(c.days.is_empty(), "days defaults to empty (= daily)"),
1382            other => panic!("expected calendar, got {other:?}"),
1383        }
1384    }
1385
1386    #[test]
1387    fn when_calendar_datetime_parses_all_separators() {
1388        // one-shot: date+time in hyphen / ISO-T / slash forms
1389        for at in ["2026-06-10 09:00", "2026-06-10T09:00", "2026/06/10 09:00"] {
1390            let block = format!("  calendar:\n    at: \"{at}\"");
1391            let s: Schedule = serde_yaml::from_str(&schedule_yaml_with(&block))
1392                .unwrap_or_else(|e| panic!("parse '{at}': {e}"));
1393            match &s.when {
1394                When::Calendar(c) => {
1395                    use chrono::Datelike;
1396                    let p = c.parse_at().expect("parse_at");
1397                    let d = p.date.expect("datetime at carries a date");
1398                    assert_eq!((d.year(), d.month(), d.day()), (2026, 6, 10), "for '{at}'");
1399                }
1400                other => panic!("expected calendar, got {other:?}"),
1401            }
1402        }
1403    }
1404
1405    #[test]
1406    fn when_rejects_bad_once_keyword() {
1407        // `onec` must be a parse error, not a silently-absorbed
1408        // string (OnceLiteral is a single-variant enum for exactly
1409        // this reason).
1410        let r: Result<Schedule, _> = serde_yaml::from_str(&schedule_yaml_with("  per_pc: onec"));
1411        assert!(r.is_err(), "expected parse error, got {r:?}");
1412    }
1413
1414    #[test]
1415    fn when_rejects_unknown_key_in_every() {
1416        // `{ evry: 6h }` still fails on the tolerant read path: the
1417        // required `every` key is missing, so no PerPolicy variant
1418        // matches (#492 removed deny_unknown_fields, but required
1419        // keys keep the untagged disambiguation honest).
1420        let r: Result<Schedule, _> =
1421            serde_yaml::from_str(&schedule_yaml_with("  per_pc: { evry: 6h }"));
1422        assert!(r.is_err(), "expected parse error, got {r:?}");
1423    }
1424
1425    #[test]
1426    fn when_rejects_unknown_variant() {
1427        let r: Result<Schedule, _> =
1428            serde_yaml::from_str(&schedule_yaml_with("  per_galaxy: once"));
1429        assert!(r.is_err(), "expected parse error, got {r:?}");
1430    }
1431
1432    #[test]
1433    fn when_rejects_old_top_level_cron_field() {
1434        // Pre-#418 shape: top-level `cron:` + no `when:`. Must fail
1435        // loudly (missing `when`), which is what turns stale KV
1436        // blobs into warn-skips after the upgrade.
1437        let yaml = r#"
1438id: x
1439cron: "* * * * * *"
1440job_id: y
1441target: { all: true }
1442"#;
1443        let r: Result<Schedule, _> = serde_yaml::from_str(yaml);
1444        assert!(r.is_err(), "expected parse error, got {r:?}");
1445    }
1446
1447    #[test]
1448    fn when_rejects_retired_cron_escape_hatch() {
1449        // #418 Phase 2 retired `when: { cron: "..." }`. A raw cron
1450        // is now an unknown variant → parse error (operators use the
1451        // calendar form instead).
1452        let r: Result<Schedule, _> =
1453            serde_yaml::from_str(&schedule_yaml_with("  cron: \"0 0 9 * * mon-fri\""));
1454        assert!(
1455            r.is_err(),
1456            "expected parse error for retired cron, got {r:?}"
1457        );
1458    }
1459
1460    #[test]
1461    fn when_round_trips_json_and_yaml() {
1462        // Round-trip through the full Schedule: that is the wire
1463        // unit for both stores (JSON catalog KV + YAML mirror), and
1464        // it exercises the singleton_map field attribute that keeps
1465        // serde_yaml on the map shape instead of `!per_pc` tags.
1466        for when in [
1467            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1468            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1469            When::PerTarget(PerPolicy::Once(OnceLiteral::Once)),
1470            When::PerTarget(PerPolicy::Every(EverySpec {
1471                every: "24h".into(),
1472            })),
1473            calendar("09:00", &["mon-fri"]),
1474            calendar("2026-06-10 09:00", &[]),
1475            When::On(vec![OnTrigger::Startup]),
1476            When::On(vec![OnTrigger::Startup, OnTrigger::Logon]),
1477            When::On(vec![OnTrigger::Lock, OnTrigger::Unlock]),
1478        ] {
1479            // Event triggers are agent-only; the rest validate on backend.
1480            let runs_on = if matches!(when, When::On(_)) {
1481                RunsOn::Agent
1482            } else {
1483                RunsOn::Backend
1484            };
1485            let s = schedule_with(when.clone(), runs_on);
1486
1487            let json = serde_json::to_string(&s).expect("json serialise");
1488            let back: Schedule = serde_json::from_str(&json).expect("json deserialise");
1489            assert_eq!(back.when, when, "json round-trip for {when}");
1490
1491            let yaml = serde_yaml::to_string(&s).expect("yaml serialise");
1492            assert!(
1493                !yaml.contains('!'),
1494                "yaml must use the map shape, not tags: {yaml}"
1495            );
1496            let back: Schedule = serde_yaml::from_str(&yaml).expect("yaml deserialise");
1497            assert_eq!(back.when, when, "yaml round-trip for {when}");
1498        }
1499    }
1500
1501    #[test]
1502    fn when_once_serialises_as_bare_keyword() {
1503        // The wire shape operators see in the YAML mirror must stay
1504        // the ergonomic `per_pc: once`, not a one-variant map.
1505        let json = serde_json::to_value(When::PerPc(PerPolicy::Once(OnceLiteral::Once)))
1506            .expect("serialise");
1507        assert_eq!(json, serde_json::json!({ "per_pc": "once" }));
1508    }
1509
1510    #[test]
1511    fn when_displays_operator_summary() {
1512        for (when, expected) in [
1513            (
1514                When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1515                "per_pc once",
1516            ),
1517            (
1518                When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1519                "per_pc every 6h",
1520            ),
1521            (
1522                When::PerTarget(PerPolicy::Every(EverySpec {
1523                    every: "24h".into(),
1524                })),
1525                "per_target every 24h",
1526            ),
1527            (calendar("09:00", &["mon-fri"]), "at 09:00 [mon-fri]"),
1528            (calendar("2026-06-10 09:00", &[]), "at 2026-06-10 09:00"),
1529            (When::On(vec![OnTrigger::Startup]), "on [startup]"),
1530            (
1531                When::On(vec![OnTrigger::Startup, OnTrigger::Logon]),
1532                "on [startup,logon]",
1533            ),
1534            (
1535                When::On(vec![OnTrigger::Lock, OnTrigger::Unlock]),
1536                "on [lock,unlock]",
1537            ),
1538        ] {
1539            assert_eq!(when.to_string(), expected);
1540        }
1541    }
1542
1543    // ---- lowering (#418: when → engine vocabulary) ----
1544
1545    fn schedule_with(when: When, runs_on: RunsOn) -> Schedule {
1546        Schedule {
1547            id: "x".into(),
1548            when,
1549            job_id: "y".into(),
1550            plan: FanoutPlan::default(),
1551            active: Active::default(),
1552            constraints: Constraints::default(),
1553            on_failure: OnFailure::default(),
1554            tz: ScheduleTz::default(),
1555            starting_deadline: None,
1556            runs_on,
1557            enabled: true,
1558        }
1559    }
1560
1561    fn calendar(at: &str, days: &[&str]) -> When {
1562        When::Calendar(CalendarSpec {
1563            at: at.into(),
1564            days: days.iter().map(|d| (*d).to_string()).collect(),
1565        })
1566    }
1567
1568    #[test]
1569    fn next_calendar_fire_returns_next_utc_occurrence() {
1570        use chrono::TimeZone;
1571        // Daily 09:00, evaluated in UTC. From 08:00 the same day, the
1572        // next strict occurrence is 09:00 that day.
1573        let mut s = schedule_with(calendar("09:00", &[]), RunsOn::Backend);
1574        s.tz = ScheduleTz::Utc;
1575        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 9, 8, 0, 0).unwrap();
1576        let next = s.next_calendar_fire(now).expect("calendar has a next fire");
1577        assert_eq!(
1578            next,
1579            chrono::Utc.with_ymd_and_hms(2026, 6, 9, 9, 0, 0).unwrap()
1580        );
1581    }
1582
1583    #[test]
1584    fn next_calendar_fire_is_strictly_after_now() {
1585        use chrono::TimeZone;
1586        // Standing exactly on a fire instant must preview the *next*
1587        // one (inclusive = false), not the one firing right now.
1588        let mut s = schedule_with(calendar("09:00", &[]), RunsOn::Backend);
1589        s.tz = ScheduleTz::Utc;
1590        let on_fire = chrono::Utc.with_ymd_and_hms(2026, 6, 9, 9, 0, 0).unwrap();
1591        let next = s
1592            .next_calendar_fire(on_fire)
1593            .expect("calendar has a next fire");
1594        assert_eq!(
1595            next,
1596            chrono::Utc.with_ymd_and_hms(2026, 6, 10, 9, 0, 0).unwrap()
1597        );
1598    }
1599
1600    #[test]
1601    fn next_calendar_fire_none_for_reconcile_shapes() {
1602        // `per_pc` / `per_target` lower to the every-minute poll cron —
1603        // no discrete upcoming event to preview, so `None`.
1604        let now = chrono::Utc::now();
1605        for when in [
1606            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1607            When::PerTarget(PerPolicy::Once(OnceLiteral::Once)),
1608            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1609            When::PerTarget(PerPolicy::Every(EverySpec {
1610                every: "24h".into(),
1611            })),
1612        ] {
1613            let s = schedule_with(when, RunsOn::Backend);
1614            assert!(
1615                s.next_calendar_fire(now).is_none(),
1616                "reconcile shapes have no calendar fire",
1617            );
1618        }
1619    }
1620
1621    // ---- preview_fires (#418 dry-run / preview) ----
1622
1623    fn cal_utc(at: &str, days: &[&str]) -> Schedule {
1624        let mut s = schedule_with(calendar(at, days), RunsOn::Backend);
1625        s.tz = ScheduleTz::Utc; // host-independent assertions
1626        s
1627    }
1628
1629    #[test]
1630    fn preview_lists_next_calendar_occurrences() {
1631        use chrono::TimeZone;
1632        // Weekday 09:00, from Wed 2026-06-10 00:00 UTC: the next five
1633        // fires skip the weekend (Sat 13 / Sun 14).
1634        let s = cal_utc("09:00", &["mon-fri"]);
1635        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 10, 0, 0, 0).unwrap();
1636        let got = s.preview_fires(now, 5);
1637        let want: Vec<_> = [
1638            (2026, 6, 10), // Wed
1639            (2026, 6, 11), // Thu
1640            (2026, 6, 12), // Fri
1641            (2026, 6, 15), // Mon (skips Sat 13 / Sun 14)
1642            (2026, 6, 16), // Tue
1643        ]
1644        .iter()
1645        .map(|(y, m, d)| chrono::Utc.with_ymd_and_hms(*y, *m, *d, 9, 0, 0).unwrap())
1646        .collect();
1647        assert_eq!(got, want);
1648    }
1649
1650    #[test]
1651    fn preview_handles_nth_and_last_weekday() {
1652        use chrono::TimeZone;
1653        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 1, 0, 0, 0).unwrap();
1654        // 2nd Tuesday (Patch Tuesday): Jun 9, Jul 14 2026.
1655        let nth = cal_utc("09:00", &["tue#2"]).preview_fires(now, 2);
1656        assert_eq!(
1657            nth,
1658            vec![
1659                chrono::Utc.with_ymd_and_hms(2026, 6, 9, 9, 0, 0).unwrap(),
1660                chrono::Utc.with_ymd_and_hms(2026, 7, 14, 9, 0, 0).unwrap(),
1661            ]
1662        );
1663        // Last Friday of the month: Jun 26, Jul 31 2026.
1664        let last = cal_utc("22:00", &["friL"]).preview_fires(now, 2);
1665        assert_eq!(
1666            last,
1667            vec![
1668                chrono::Utc.with_ymd_and_hms(2026, 6, 26, 22, 0, 0).unwrap(),
1669                chrono::Utc.with_ymd_and_hms(2026, 7, 31, 22, 0, 0).unwrap(),
1670            ]
1671        );
1672    }
1673
1674    #[test]
1675    fn preview_is_empty_for_reconcile_and_zero_count() {
1676        let now = chrono::Utc::now();
1677        // reconcile shapes have no discrete fire times
1678        let recon = schedule_with(
1679            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1680            RunsOn::Backend,
1681        );
1682        assert!(recon.preview_fires(now, 5).is_empty());
1683        // count == 0 yields nothing even for a calendar
1684        assert!(cal_utc("09:00", &[]).preview_fires(now, 0).is_empty());
1685    }
1686
1687    #[test]
1688    fn preview_skips_outside_active_window() {
1689        use chrono::TimeZone;
1690        // Daily 09:00, active only [2026-06-15, 2026-06-17). Occurrences
1691        // before `from` are skipped; `until` is exclusive, so 06-17's
1692        // fire is out — leaving exactly the 15th and 16th.
1693        let mut s = cal_utc("09:00", &[]);
1694        s.active = Active {
1695            from: Some("2026-06-15".into()),
1696            until: Some("2026-06-17".into()),
1697        };
1698        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 10, 0, 0, 0).unwrap();
1699        let got = s.preview_fires(now, 5);
1700        assert_eq!(
1701            got,
1702            vec![
1703                chrono::Utc.with_ymd_and_hms(2026, 6, 15, 9, 0, 0).unwrap(),
1704                chrono::Utc.with_ymd_and_hms(2026, 6, 16, 9, 0, 0).unwrap(),
1705            ]
1706        );
1707    }
1708
1709    #[test]
1710    fn preview_empty_when_calendar_time_outside_window() {
1711        use chrono::TimeZone;
1712        // Fires at 09:00 but the maintenance window is overnight — it can
1713        // never run, so the preview is empty (matches
1714        // `calendar_outside_window`), and the scan still terminates.
1715        let mut s = cal_utc("09:00", &[]);
1716        s.constraints = Constraints {
1717            window: Some("22:00-05:00".into()),
1718            ..Constraints::default()
1719        };
1720        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 10, 0, 0, 0).unwrap();
1721        assert!(s.preview_fires(now, 5).is_empty());
1722        // Every candidate tick is rejected, so this also exercises the
1723        // SCAN_CAP bound: a large `count` must still terminate (and
1724        // return empty) rather than spin (claude #578 review).
1725        assert!(s.preview_fires(now, 50).is_empty());
1726    }
1727
1728    #[test]
1729    fn preview_past_one_shot_is_empty() {
1730        use chrono::TimeZone;
1731        // A dated one-shot whose instant has passed never fires again.
1732        let s = cal_utc("2026-06-10 09:00", &[]);
1733        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 11, 0, 0, 0).unwrap();
1734        assert!(s.preview_fires(now, 5).is_empty());
1735        // …but from before it, the single future fire shows up.
1736        let before = chrono::Utc.with_ymd_and_hms(2026, 6, 1, 0, 0, 0).unwrap();
1737        assert_eq!(
1738            s.preview_fires(before, 5),
1739            vec![chrono::Utc.with_ymd_and_hms(2026, 6, 10, 9, 0, 0).unwrap()]
1740        );
1741    }
1742
1743    #[test]
1744    fn lowering_matches_the_418_table() {
1745        let cases = [
1746            (
1747                When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1748                (POLL_CRON, ExecMode::OncePerPc, None),
1749            ),
1750            (
1751                When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1752                (POLL_CRON, ExecMode::OncePerPc, Some("6h")),
1753            ),
1754            (
1755                When::PerTarget(PerPolicy::Once(OnceLiteral::Once)),
1756                (POLL_CRON, ExecMode::OncePerTarget, None),
1757            ),
1758            (
1759                When::PerTarget(PerPolicy::Every(EverySpec {
1760                    every: "24h".into(),
1761                })),
1762                (POLL_CRON, ExecMode::OncePerTarget, Some("24h")),
1763            ),
1764            // calendar repeating → 6-field cron
1765            (
1766                calendar("09:00", &["mon-fri"]),
1767                ("0 0 9 * * mon-fri", ExecMode::EveryTick, None),
1768            ),
1769            // calendar daily (no days) → DOW *
1770            (
1771                calendar("18:30", &[]),
1772                ("0 30 18 * * *", ExecMode::EveryTick, None),
1773            ),
1774            // calendar one-shot → 7-field year cron
1775            (
1776                calendar("2026-06-10 09:00", &[]),
1777                ("0 0 9 10 6 * 2026", ExecMode::EveryTick, None),
1778            ),
1779        ];
1780        for (when, (cron, mode, cooldown)) in cases {
1781            let l = schedule_with(when.clone(), RunsOn::Backend).lowered();
1782            assert_eq!(l.cron, cron, "cron for {when}");
1783            assert_eq!(l.mode, mode, "mode for {when}");
1784            assert_eq!(l.cooldown.as_deref(), cooldown, "cooldown for {when}");
1785        }
1786    }
1787
1788    #[test]
1789    fn lowered_carries_schedule_tz() {
1790        for (tz, want) in [
1791            (ScheduleTz::Local, ScheduleTz::Local),
1792            (ScheduleTz::Utc, ScheduleTz::Utc),
1793        ] {
1794            let mut s = schedule_with(calendar("09:00", &["mon-fri"]), RunsOn::Backend);
1795            s.tz = tz;
1796            assert_eq!(s.lowered().tz, want, "calendar carries tz");
1797            // reconcile shapes carry tz too (for the active-window check)
1798            let mut s = schedule_with(
1799                When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1800                RunsOn::Backend,
1801            );
1802            s.tz = tz;
1803            assert_eq!(s.lowered().tz, want, "reconcile carries tz");
1804        }
1805    }
1806
1807    #[test]
1808    fn poll_cron_is_accepted_by_the_engine_parser() {
1809        // POLL_CRON is system-generated — if the engine's parser
1810        // ever rejected it every reconcile schedule would die at
1811        // register time. Validate it with the same croner config
1812        // (Seconds::Required, dom_and_dow, year optional).
1813        croner::parser::CronParser::builder()
1814            .seconds(croner::parser::Seconds::Required)
1815            .dom_and_dow(true)
1816            .build()
1817            .parse(POLL_CRON)
1818            .expect("POLL_CRON must parse");
1819    }
1820
1821    // ---- Schedule::validate() (#418 decision F) ----
1822
1823    #[test]
1824    fn validate_accepts_reconcile_shapes() {
1825        for when in [
1826            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1827            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
1828            When::PerTarget(PerPolicy::Once(OnceLiteral::Once)),
1829            When::PerTarget(PerPolicy::Every(EverySpec {
1830                every: "24h".into(),
1831            })),
1832        ] {
1833            schedule_with(when.clone(), RunsOn::Backend)
1834                .validate()
1835                .unwrap_or_else(|e| panic!("{when} should validate: {e}"));
1836        }
1837    }
1838
1839    #[test]
1840    fn validate_accepts_per_pc_on_agent() {
1841        schedule_with(
1842            When::PerPc(PerPolicy::Every(EverySpec { every: "1h".into() })),
1843            RunsOn::Agent,
1844        )
1845        .validate()
1846        .expect("per_pc + agent is the offline-inventory shape");
1847    }
1848
1849    // ---- #418 event triggers (when: { on }) ----
1850
1851    #[test]
1852    fn validate_accepts_event_on_agent() {
1853        for triggers in [
1854            vec![OnTrigger::Startup],
1855            vec![OnTrigger::Logon],
1856            vec![OnTrigger::Lock],
1857            vec![OnTrigger::Unlock],
1858            vec![
1859                OnTrigger::Startup,
1860                OnTrigger::Logon,
1861                OnTrigger::Lock,
1862                OnTrigger::Unlock,
1863            ],
1864        ] {
1865            schedule_with(When::On(triggers), RunsOn::Agent)
1866                .validate()
1867                .expect("when.on is valid on runs_on: agent");
1868        }
1869    }
1870
1871    #[test]
1872    fn validate_rejects_event_on_backend() {
1873        let err = schedule_with(When::On(vec![OnTrigger::Startup]), RunsOn::Backend)
1874            .validate()
1875            .unwrap_err();
1876        assert!(err.contains("when.on"), "got: {err}");
1877        assert!(err.contains("runs_on: agent"), "got: {err}");
1878    }
1879
1880    #[test]
1881    fn validate_rejects_empty_event_list() {
1882        let err = schedule_with(When::On(vec![]), RunsOn::Agent)
1883            .validate()
1884            .unwrap_err();
1885        assert!(err.contains("when.on"), "got: {err}");
1886        assert!(err.contains("at least one"), "got: {err}");
1887    }
1888
1889    #[test]
1890    fn event_schedule_lowers_to_event_mode_and_is_event() {
1891        let s = schedule_with(When::On(vec![OnTrigger::Startup]), RunsOn::Agent);
1892        assert!(s.is_event());
1893        assert_eq!(s.lowered().mode, ExecMode::Event);
1894        assert_eq!(s.event_triggers(), &[OnTrigger::Startup]);
1895        // non-event schedules report no triggers.
1896        let cal = schedule_with(calendar("09:00", &[]), RunsOn::Backend);
1897        assert!(!cal.is_event());
1898        assert!(cal.event_triggers().is_empty());
1899    }
1900
1901    #[test]
1902    fn validate_rejects_per_target_on_agent() {
1903        let err = schedule_with(
1904            When::PerTarget(PerPolicy::Every(EverySpec {
1905                every: "24h".into(),
1906            })),
1907            RunsOn::Agent,
1908        )
1909        .validate()
1910        .unwrap_err();
1911        assert!(err.contains("per_target"), "got: {err}");
1912        assert!(err.contains("runs_on: agent"), "got: {err}");
1913
1914        // per_target: once is also backend-only.
1915        let err = schedule_with(
1916            When::PerTarget(PerPolicy::Once(OnceLiteral::Once)),
1917            RunsOn::Agent,
1918        )
1919        .validate()
1920        .unwrap_err();
1921        assert!(err.contains("per_target"), "got (once): {err}");
1922        assert!(err.contains("runs_on: agent"), "got (once): {err}");
1923    }
1924
1925    #[test]
1926    fn validate_rejects_bad_every_duration() {
1927        let err = schedule_with(
1928            When::PerPc(PerPolicy::Every(EverySpec { every: "6x".into() })),
1929            RunsOn::Backend,
1930        )
1931        .validate()
1932        .unwrap_err();
1933        assert!(err.contains("when.every"), "got: {err}");
1934    }
1935
1936    #[test]
1937    fn validate_rejects_bad_jitter_and_starting_deadline() {
1938        let mut s = schedule_with(
1939            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1940            RunsOn::Backend,
1941        );
1942        s.plan.jitter = Some("5x".into());
1943        let err = s.validate().unwrap_err();
1944        assert!(err.contains("jitter"), "got: {err}");
1945
1946        let mut s = schedule_with(
1947            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
1948            RunsOn::Backend,
1949        );
1950        s.starting_deadline = Some("soon".into());
1951        let err = s.validate().unwrap_err();
1952        assert!(err.contains("starting_deadline"), "got: {err}");
1953    }
1954
1955    #[test]
1956    fn validate_accepts_calendar_shapes() {
1957        for when in [
1958            calendar("09:00", &["mon-fri"]),   // weekday morning
1959            calendar("00:00", &["sun"]),       // weekly
1960            calendar("18:30", &[]),            // daily
1961            calendar("2026-06-10 09:00", &[]), // one-shot
1962            calendar("2026/12/25 00:00", &[]), // one-shot, slash form
1963        ] {
1964            schedule_with(when.clone(), RunsOn::Backend)
1965                .validate()
1966                .unwrap_or_else(|e| panic!("{when} should validate: {e}"));
1967        }
1968    }
1969
1970    #[test]
1971    fn validate_rejects_bad_at() {
1972        for bad in ["25:00", "09:60", "9", "noon", "2026-13-01 09:00"] {
1973            let err = schedule_with(calendar(bad, &[]), RunsOn::Backend)
1974                .validate()
1975                .unwrap_err();
1976            assert!(err.contains("when.at"), "for '{bad}', got: {err}");
1977        }
1978    }
1979
1980    #[test]
1981    fn validate_rejects_datetime_at_with_days() {
1982        // A dated `at` is a one-shot — pairing it with days is a
1983        // contradiction (the date already pins the day).
1984        let err = schedule_with(calendar("2026-06-10 09:00", &["mon"]), RunsOn::Backend)
1985            .validate()
1986            .unwrap_err();
1987        assert!(
1988            err.contains("one-shot") && err.contains("days"),
1989            "got: {err}"
1990        );
1991    }
1992
1993    #[test]
1994    fn validate_rejects_bad_day_name() {
1995        // A garbage DOW token is caught by the days pre-flight and
1996        // reported against `when.days`, not the confusing
1997        // "when.at lowered to invalid cron" (claude #432 review).
1998        let err = schedule_with(calendar("09:00", &["funday"]), RunsOn::Backend)
1999            .validate()
2000            .unwrap_err();
2001        assert!(err.contains("when.days"), "got: {err}");
2002        assert!(err.contains("funday"), "names the bad token: {err}");
2003        // a degenerate range like `mon-` reports the whole token, not
2004        // a cryptic empty part (claude #432 follow-up)
2005        let err = schedule_with(calendar("09:00", &["mon-"]), RunsOn::Backend)
2006            .validate()
2007            .unwrap_err();
2008        assert!(err.contains("'mon-'"), "names the whole token: {err}");
2009        // valid names / ranges / numeric / * all pass
2010        for ok in [
2011            calendar("09:00", &["mon-fri"]),
2012            calendar("09:00", &["mon", "wed", "sun"]),
2013            calendar("09:00", &["1-5"]),
2014        ] {
2015            schedule_with(ok.clone(), RunsOn::Backend)
2016                .validate()
2017                .unwrap_or_else(|e| panic!("{ok} should validate: {e}"));
2018        }
2019    }
2020
2021    #[test]
2022    fn validate_accepts_nth_weekday() {
2023        // #418: nth-weekday (Patch Tuesday). validate() also lowers to
2024        // a cron and parses it with croner, so passing here proves the
2025        // whole chain — token → DOW field → engine-acceptable cron.
2026        for ok in [
2027            calendar("09:00", &["tue#2"]),          // 2nd Tuesday
2028            calendar("09:00", &["fri#1"]),          // 1st Friday
2029            calendar("03:00", &["sun#5"]),          // 5th Sunday
2030            calendar("09:00", &["tue#2", "thu#2"]), // a list of nths
2031            calendar("09:00", &["2#2"]),            // numeric DOW + ordinal
2032            // Case-insensitive both sides: validate lowercases, croner
2033            // upper-cases the whole pattern before aliasing (claude #547).
2034            calendar("09:00", &["TUE#2"]),
2035        ] {
2036            schedule_with(ok.clone(), RunsOn::Backend)
2037                .validate()
2038                .unwrap_or_else(|e| panic!("{ok} should validate: {e}"));
2039        }
2040    }
2041
2042    #[test]
2043    fn validate_rejects_bad_nth_weekday() {
2044        // ordinal out of 1..5, a range with #, and a bad day before #.
2045        for bad in ["tue#0", "tue#6", "tue#x", "mon-fri#2", "funday#2"] {
2046            let err = schedule_with(calendar("09:00", &[bad]), RunsOn::Backend)
2047                .validate()
2048                .unwrap_err();
2049            assert!(err.contains("when.days"), "for '{bad}', got: {err}");
2050        }
2051    }
2052
2053    #[test]
2054    fn validate_accepts_last_weekday() {
2055        // #418: last-weekday (`friL` = last Friday). Like the nth case,
2056        // validate() lowers to a cron and round-trips it through croner,
2057        // so passing proves token → DOW field → engine-acceptable cron
2058        // with the verified last-<dow>-of-month semantics.
2059        for ok in [
2060            calendar("09:00", &["friL"]),         // last Friday
2061            calendar("03:00", &["sunL"]),         // last Sunday
2062            calendar("22:00", &["5L"]),           // numeric DOW + last
2063            calendar("00:00", &["0L"]),           // numeric Sunday (0…
2064            calendar("00:00", &["7L"]),           // …and its 7 alias)
2065            calendar("09:00", &["monL", "friL"]), // a list of last-weekdays
2066            // Case-insensitive both the weekday and the `L` suffix:
2067            // validate lowercases the day, croner upper-cases the whole
2068            // pattern before aliasing (claude #547).
2069            calendar("09:00", &["FRIL"]),
2070            calendar("09:00", &["fril"]),
2071        ] {
2072            schedule_with(ok.clone(), RunsOn::Backend)
2073                .validate()
2074                .unwrap_or_else(|e| panic!("{ok} should validate: {e}"));
2075        }
2076    }
2077
2078    #[test]
2079    fn validate_rejects_bad_last_weekday() {
2080        // bare `L` (no weekday — a footgun croner reads as Saturday), a
2081        // range with L, a bad day before L, and an internal space that
2082        // would otherwise leak a malformed cron downstream (gemini #560).
2083        for bad in ["L", "l", "mon-friL", "fundayL", "8L", "*L", "fri L"] {
2084            let err = schedule_with(calendar("09:00", &[bad]), RunsOn::Backend)
2085                .validate()
2086                .unwrap_err();
2087            assert!(err.contains("when.days"), "for '{bad}', got: {err}");
2088        }
2089    }
2090
2091    #[test]
2092    fn calendar_oneshot_instant_detects_past() {
2093        use chrono::TimeZone;
2094        // a dated `at` resolves to an absolute instant…
2095        let c = CalendarSpec {
2096            at: "2024-01-01 09:00".into(),
2097            days: vec![],
2098        };
2099        let t = c
2100            .oneshot_instant(ScheduleTz::Utc)
2101            .expect("one-shot instant");
2102        assert_eq!(
2103            t,
2104            chrono::Utc.with_ymd_and_hms(2024, 1, 1, 9, 0, 0).unwrap()
2105        );
2106        assert!(t < chrono::Utc::now(), "2024 is in the past");
2107        // …while a repeating (time-only) calendar has no instant
2108        let rep = CalendarSpec {
2109            at: "09:00".into(),
2110            days: vec!["mon-fri".into()],
2111        };
2112        assert!(rep.oneshot_instant(ScheduleTz::Utc).is_none());
2113    }
2114
2115    fn schedule_with_active(from: Option<&str>, until: Option<&str>) -> Schedule {
2116        let mut s = schedule_with(
2117            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2118            RunsOn::Backend,
2119        );
2120        s.active = Active {
2121            from: from.map(str::to_owned),
2122            until: until.map(str::to_owned),
2123        };
2124        s
2125    }
2126
2127    #[test]
2128    fn validate_accepts_active_window() {
2129        schedule_with_active(Some("2026-07-01"), Some("2026-08-01T12:00:00+09:00"))
2130            .validate()
2131            .expect("date + rfc3339 bounds should validate");
2132    }
2133
2134    #[test]
2135    fn validate_rejects_unparseable_active_bound() {
2136        let err = schedule_with_active(Some("July 1st"), None)
2137            .validate()
2138            .unwrap_err();
2139        assert!(err.contains("active"), "got: {err}");
2140    }
2141
2142    #[test]
2143    fn validate_rejects_from_not_before_until() {
2144        let err = schedule_with_active(Some("2026-08-01"), Some("2026-07-01"))
2145            .validate()
2146            .unwrap_err();
2147        assert!(err.contains("strictly before"), "got: {err}");
2148
2149        let err = schedule_with_active(Some("2026-07-01"), Some("2026-07-01"))
2150            .validate()
2151            .unwrap_err();
2152        assert!(err.contains("strictly before"), "got: {err}");
2153    }
2154
2155    // ---- Active window semantics ----
2156
2157    #[test]
2158    fn active_window_is_half_open() {
2159        use chrono::TimeZone;
2160        let active = Active {
2161            from: Some("2026-07-01".into()),
2162            until: Some("2026-08-01".into()),
2163        };
2164        // UTC tz so the date bounds are UTC midnight.
2165        let at = |y, m, d, h| chrono::Utc.with_ymd_and_hms(y, m, d, h, 0, 0).unwrap();
2166        let c = |t| active.contains(t, ScheduleTz::Utc);
2167        assert!(!c(at(2026, 6, 30, 23)), "before from");
2168        assert!(c(at(2026, 7, 1, 0)), "at from (inclusive)");
2169        assert!(c(at(2026, 7, 15, 12)), "inside");
2170        assert!(!c(at(2026, 8, 1, 0)), "at until (exclusive)");
2171        assert!(!c(at(2026, 8, 2, 0)), "after until");
2172    }
2173
2174    #[test]
2175    fn active_empty_window_is_always_active() {
2176        assert!(Active::default().contains(chrono::Utc::now(), ScheduleTz::Local));
2177    }
2178
2179    #[test]
2180    fn active_rfc3339_bound_honours_offset_regardless_of_tz() {
2181        use chrono::TimeZone;
2182        let active = Active {
2183            from: Some("2026-07-01T09:00:00+09:00".into()),
2184            until: None,
2185        };
2186        // RFC3339 carries its own offset → tz arg is ignored.
2187        // 09:00 JST = 00:00 UTC.
2188        for tz in [ScheduleTz::Utc, ScheduleTz::Local] {
2189            assert!(
2190                !active.contains(
2191                    chrono::Utc
2192                        .with_ymd_and_hms(2026, 6, 30, 23, 59, 0)
2193                        .unwrap(),
2194                    tz
2195                )
2196            );
2197            assert!(active.contains(
2198                chrono::Utc.with_ymd_and_hms(2026, 7, 1, 0, 0, 0).unwrap(),
2199                tz
2200            ));
2201        }
2202    }
2203
2204    #[test]
2205    fn active_date_bound_respects_tz() {
2206        // A bare `YYYY-MM-DD` bound is midnight *in the schedule's
2207        // tz* (#418 Phase 2). The UTC interpretation is exact and
2208        // host-independent; assert that precisely.
2209        use chrono::TimeZone;
2210        let utc = Active::parse_bound("2026-07-01", ScheduleTz::Utc).expect("utc");
2211        assert_eq!(
2212            utc,
2213            chrono::Utc.with_ymd_and_hms(2026, 7, 1, 0, 0, 0).unwrap()
2214        );
2215
2216        // The local interpretation must equal what chrono::Local
2217        // computes for the same wall-clock midnight — proves the tz
2218        // path is wired to the host zone (the magnitude vs UTC is
2219        // host-dependent, so we compare against Local directly rather
2220        // than hard-coding the JST offset, keeping CI green on UTC
2221        // runners).
2222        let local = Active::parse_bound("2026-07-01", ScheduleTz::Local).expect("local");
2223        let want = chrono::Local
2224            .with_ymd_and_hms(2026, 7, 1, 0, 0, 0)
2225            .single()
2226            .expect("local midnight is unambiguous")
2227            .with_timezone(&chrono::Utc);
2228        assert_eq!(local, want, "date bound resolved in host-local tz");
2229    }
2230
2231    #[test]
2232    fn active_empty_is_skipped_when_serialising() {
2233        let s = schedule_with(
2234            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2235            RunsOn::Backend,
2236        );
2237        let json = serde_json::to_value(&s).expect("serialise");
2238        assert!(
2239            json.get("active").is_none(),
2240            "empty active must not appear on the wire: {json}"
2241        );
2242    }
2243
2244    // ---- constraints.window (#418 Phase 3) ----
2245
2246    fn with_window(win: &str) -> Schedule {
2247        let mut s = schedule_with(
2248            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
2249            RunsOn::Backend,
2250        );
2251        s.constraints.window = Some(win.into());
2252        s
2253    }
2254
2255    #[test]
2256    fn constraints_window_parses_and_round_trips() {
2257        let yaml = r#"
2258id: x
2259when:
2260  per_pc: { every: 6h }
2261job_id: y
2262target: { all: true }
2263constraints:
2264  window: "22:00-05:00"
2265"#;
2266        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
2267        assert_eq!(s.constraints.window.as_deref(), Some("22:00-05:00"));
2268        let back: Schedule =
2269            serde_json::from_str(&serde_json::to_string(&s).expect("ser")).expect("de");
2270        assert_eq!(back.constraints.window.as_deref(), Some("22:00-05:00"));
2271    }
2272
2273    #[test]
2274    fn constraints_empty_is_skipped_when_serialising() {
2275        let s = schedule_with(
2276            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2277            RunsOn::Backend,
2278        );
2279        let json = serde_json::to_value(&s).expect("serialise");
2280        assert!(
2281            json.get("constraints").is_none(),
2282            "empty constraints must not appear on the wire: {json}"
2283        );
2284    }
2285
2286    #[test]
2287    fn window_no_constraint_always_allows() {
2288        let c = Constraints::default();
2289        assert!(c.allows(chrono::Utc::now(), ScheduleTz::Local));
2290    }
2291
2292    #[test]
2293    fn window_same_day_is_half_open() {
2294        use chrono::TimeZone;
2295        let s = with_window("09:00-17:00");
2296        let at = |h, m| chrono::Utc.with_ymd_and_hms(2026, 6, 9, h, m, 0).unwrap();
2297        let a = |t| s.constraints.allows(t, ScheduleTz::Utc);
2298        assert!(!a(at(8, 59)), "before start");
2299        assert!(a(at(9, 0)), "at start (inclusive)");
2300        assert!(a(at(16, 59)), "inside");
2301        assert!(!a(at(17, 0)), "at end (exclusive)");
2302        assert!(!a(at(23, 0)), "after end");
2303    }
2304
2305    #[test]
2306    fn window_crossing_midnight() {
2307        use chrono::TimeZone;
2308        let s = with_window("22:00-05:00");
2309        let at = |h, m| chrono::Utc.with_ymd_and_hms(2026, 6, 9, h, m, 0).unwrap();
2310        let a = |t| s.constraints.allows(t, ScheduleTz::Utc);
2311        assert!(a(at(22, 0)), "at start tonight");
2312        assert!(a(at(23, 30)), "late tonight");
2313        assert!(a(at(3, 0)), "early tomorrow");
2314        assert!(!a(at(5, 0)), "at end (exclusive)");
2315        assert!(!a(at(12, 0)), "midday outside");
2316        assert!(!a(at(21, 59)), "just before start");
2317    }
2318
2319    #[test]
2320    fn window_respects_tz() {
2321        // The same instant is inside the window under one tz and may
2322        // be outside under another. Compare UTC vs Local via the
2323        // host's own offset (kept CI-green on UTC runners like the
2324        // active tz test does).
2325        use chrono::TimeZone;
2326        let s = with_window("09:00-17:00");
2327        let noon_utc = chrono::Utc.with_ymd_and_hms(2026, 6, 9, 12, 0, 0).unwrap();
2328        // Under UTC, 12:00 is inside 09:00-17:00.
2329        assert!(s.constraints.allows(noon_utc, ScheduleTz::Utc));
2330        // Under Local, the verdict tracks the host wall-clock time;
2331        // assert it matches a direct wall_time membership check.
2332        let local_t = noon_utc.with_timezone(&chrono::Local).time();
2333        let in_local = local_t >= chrono::NaiveTime::from_hms_opt(9, 0, 0).unwrap()
2334            && local_t < chrono::NaiveTime::from_hms_opt(17, 0, 0).unwrap();
2335        assert_eq!(s.constraints.allows(noon_utc, ScheduleTz::Local), in_local);
2336    }
2337
2338    #[test]
2339    fn validate_accepts_good_window() {
2340        for w in ["09:00-17:00", "22:00-05:00", "00:00-23:59"] {
2341            with_window(w)
2342                .validate()
2343                .unwrap_or_else(|e| panic!("'{w}' should validate: {e}"));
2344        }
2345    }
2346
2347    #[test]
2348    fn validate_rejects_bad_window() {
2349        for bad in ["9-5", "22:00", "22:00-22:00", "25:00-05:00", "09:00_17:00"] {
2350            let err = with_window(bad).validate().unwrap_err();
2351            assert!(
2352                err.contains("constraints.window"),
2353                "for '{bad}', got: {err}"
2354            );
2355        }
2356    }
2357
2358    // ---- constraints.skip_dates (#418 holiday exclusion) ----
2359
2360    fn with_skip_dates(dates: &[&str]) -> Schedule {
2361        let mut s = schedule_with(calendar("09:00", &[]), RunsOn::Backend);
2362        s.tz = ScheduleTz::Utc; // host-independent date assertions
2363        s.constraints.skip_dates = dates.iter().map(|d| (*d).to_string()).collect();
2364        s
2365    }
2366
2367    #[test]
2368    fn allows_blocks_listed_skip_date() {
2369        use chrono::TimeZone;
2370        let s = with_skip_dates(&["2026-06-10", "2026-12-25"]);
2371        // Any time on a listed date is blocked (whole day).
2372        let on = chrono::Utc.with_ymd_and_hms(2026, 6, 10, 9, 0, 0).unwrap();
2373        assert!(!s.constraints.allows(on, ScheduleTz::Utc));
2374        let on_midnight = chrono::Utc.with_ymd_and_hms(2026, 12, 25, 0, 0, 0).unwrap();
2375        assert!(!s.constraints.allows(on_midnight, ScheduleTz::Utc));
2376        // A date not in the list fires normally.
2377        let off = chrono::Utc.with_ymd_and_hms(2026, 6, 11, 9, 0, 0).unwrap();
2378        assert!(s.constraints.allows(off, ScheduleTz::Utc));
2379    }
2380
2381    #[test]
2382    fn allows_corrupt_skip_date_fails_closed() {
2383        use chrono::TimeZone;
2384        // A garbled entry (only reachable via hand-edited KV) blocks
2385        // rather than silently re-enabling fires — same posture as a
2386        // corrupt window.
2387        let s = with_skip_dates(&["not-a-date"]);
2388        let any = chrono::Utc.with_ymd_and_hms(2026, 6, 11, 9, 0, 0).unwrap();
2389        assert!(!s.constraints.allows(any, ScheduleTz::Utc));
2390    }
2391
2392    #[test]
2393    fn validate_accepts_good_skip_dates() {
2394        with_skip_dates(&["2026-01-01", "2026-12-25", "2027-05-03"])
2395            .validate()
2396            .expect("well-formed skip dates should validate");
2397    }
2398
2399    #[test]
2400    fn validate_rejects_bad_skip_date() {
2401        for bad in ["2026-13-01", "01-01-2026", "nope", "2026/01/01"] {
2402            let err = with_skip_dates(&[bad]).validate().unwrap_err();
2403            assert!(
2404                err.contains("constraints.skip_dates"),
2405                "for '{bad}', got: {err}"
2406            );
2407        }
2408    }
2409
2410    #[test]
2411    fn preview_skips_holidays() {
2412        use chrono::TimeZone;
2413        // Daily 09:00 with two of the next five days marked as holidays
2414        // — preview drops exactly those, since it gates on `allows`.
2415        let mut s = cal_utc("09:00", &[]);
2416        s.constraints.skip_dates = vec!["2026-06-11".into(), "2026-06-13".into()];
2417        let now = chrono::Utc.with_ymd_and_hms(2026, 6, 10, 0, 0, 0).unwrap();
2418        let got = s.preview_fires(now, 4);
2419        let want: Vec<_> = [
2420            (2026, 6, 10),
2421            (2026, 6, 12), // skips 06-11
2422            (2026, 6, 14), // skips 06-13
2423            (2026, 6, 15),
2424        ]
2425        .iter()
2426        .map(|(y, m, d)| chrono::Utc.with_ymd_and_hms(*y, *m, *d, 9, 0, 0).unwrap())
2427        .collect();
2428        assert_eq!(got, want);
2429    }
2430
2431    // ---- constraints.max_concurrent (#418) ----
2432
2433    fn with_max_concurrent(max: u32, runs_on: RunsOn) -> Schedule {
2434        let mut s = schedule_with(
2435            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
2436            runs_on,
2437        );
2438        s.constraints.max_concurrent = Some(max);
2439        s
2440    }
2441
2442    #[test]
2443    fn validate_accepts_backend_max_concurrent() {
2444        with_max_concurrent(5, RunsOn::Backend)
2445            .validate()
2446            .expect("backend max_concurrent should validate");
2447    }
2448
2449    #[test]
2450    fn validate_rejects_max_concurrent_on_agent() {
2451        // Decision E: a central running-instance cap needs a central
2452        // counter, which agents don't have.
2453        let err = with_max_concurrent(5, RunsOn::Agent)
2454            .validate()
2455            .unwrap_err();
2456        assert!(err.contains("constraints.max_concurrent"), "got: {err}");
2457        assert!(err.contains("runs_on: agent"), "got: {err}");
2458    }
2459
2460    #[test]
2461    fn validate_rejects_zero_max_concurrent() {
2462        let err = with_max_concurrent(0, RunsOn::Backend)
2463            .validate()
2464            .unwrap_err();
2465        assert!(err.contains("max_concurrent must be >= 1"), "got: {err}");
2466    }
2467
2468    #[test]
2469    fn max_concurrent_round_trips_and_skips_when_absent() {
2470        let s = with_max_concurrent(3, RunsOn::Backend);
2471        let json = serde_json::to_value(&s.constraints).expect("ser");
2472        assert_eq!(json.get("max_concurrent").and_then(|v| v.as_u64()), Some(3));
2473        // A schedule with no constraints omits the whole block.
2474        let bare = schedule_with(
2475            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2476            RunsOn::Backend,
2477        );
2478        assert!(bare.constraints.is_empty());
2479    }
2480
2481    #[test]
2482    fn window_fail_closed_on_corrupt_blob() {
2483        // A malformed window (only reachable via a hand-edited KV
2484        // blob — validate() rejects it at create) must BLOCK, not
2485        // silently allow fires during a change-freeze (gemini #452).
2486        let s = with_window("22:00_05:00");
2487        assert!(
2488            !s.constraints.allows(chrono::Utc::now(), ScheduleTz::Utc),
2489            "corrupt window fails closed"
2490        );
2491        // …and the scheduler can surface why it's stuck.
2492        assert!(
2493            s.bad_window().is_some(),
2494            "bad_window reports the parse error"
2495        );
2496        assert!(with_window("22:00-05:00").bad_window().is_none());
2497    }
2498
2499    #[test]
2500    fn calendar_outside_window_is_flagged() {
2501        // at 09:00 can never fall in 22:00-05:00 → never fires.
2502        let mut s = schedule_with(calendar("09:00", &["mon-fri"]), RunsOn::Backend);
2503        s.constraints.window = Some("22:00-05:00".into());
2504        assert!(s.calendar_outside_window(), "09:00 is not in 22:00-05:00");
2505
2506        // at 23:00 IS inside the overnight window → fine.
2507        let mut s = schedule_with(calendar("23:00", &[]), RunsOn::Backend);
2508        s.constraints.window = Some("22:00-05:00".into());
2509        assert!(!s.calendar_outside_window(), "23:00 is in 22:00-05:00");
2510
2511        // reconcile shapes are never flagged (they poll every minute).
2512        let mut s = schedule_with(
2513            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
2514            RunsOn::Backend,
2515        );
2516        s.constraints.window = Some("22:00-05:00".into());
2517        assert!(!s.calendar_outside_window(), "reconcile is unaffected");
2518
2519        // no window → never flagged.
2520        let s = schedule_with(calendar("09:00", &[]), RunsOn::Backend);
2521        assert!(!s.calendar_outside_window());
2522    }
2523
2524    // ---- on_failure.retry (#418 Phase 4) ----
2525
2526    fn with_retry(max: u32, backoff: &str) -> Schedule {
2527        let mut s = schedule_with(
2528            When::PerPc(PerPolicy::Every(EverySpec { every: "6h".into() })),
2529            RunsOn::Backend,
2530        );
2531        s.on_failure.retry = Some(Retry {
2532            max,
2533            backoff: backoff.into(),
2534        });
2535        s
2536    }
2537
2538    #[test]
2539    fn on_failure_parses_and_round_trips() {
2540        let yaml = r#"
2541id: x
2542when:
2543  per_pc: { every: 6h }
2544job_id: y
2545target: { all: true }
2546on_failure:
2547  retry: { max: 3, backoff: 10m }
2548"#;
2549        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
2550        let r = s.on_failure.retry.as_ref().expect("retry present");
2551        assert_eq!(r.max, 3);
2552        assert_eq!(r.backoff, "10m");
2553        let back: Schedule =
2554            serde_json::from_str(&serde_json::to_string(&s).expect("ser")).expect("de");
2555        assert_eq!(back.on_failure, s.on_failure);
2556    }
2557
2558    #[test]
2559    fn on_failure_empty_is_skipped_when_serialising() {
2560        let s = schedule_with(
2561            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2562            RunsOn::Backend,
2563        );
2564        let json = serde_json::to_value(&s).expect("serialise");
2565        assert!(
2566            json.get("on_failure").is_none(),
2567            "empty on_failure must not appear on the wire: {json}"
2568        );
2569    }
2570
2571    #[test]
2572    fn validate_accepts_good_retry() {
2573        for (max, backoff) in [(1, "30s"), (3, "10m"), (10, "1h")] {
2574            with_retry(max, backoff)
2575                .validate()
2576                .unwrap_or_else(|e| panic!("retry {{max:{max}, backoff:{backoff}}}: {e}"));
2577        }
2578    }
2579
2580    #[test]
2581    fn validate_rejects_bad_backoff() {
2582        let err = with_retry(3, "soon").validate().unwrap_err();
2583        assert!(err.contains("on_failure.retry.backoff"), "got: {err}");
2584    }
2585
2586    #[test]
2587    fn validate_rejects_sub_second_backoff() {
2588        // "500ms" parses as humantime but lowers to 0s on the wire —
2589        // reject it so the operator doesn't get a silent no-wait
2590        // (coderabbit #466).
2591        for bad in ["500ms", "0s", "999ms"] {
2592            let err = with_retry(3, bad).validate().unwrap_err();
2593            assert!(
2594                err.contains("on_failure.retry.backoff must be >= 1s"),
2595                "for '{bad}', got: {err}"
2596            );
2597        }
2598    }
2599
2600    #[test]
2601    fn validate_rejects_out_of_range_max() {
2602        for bad in [0u32, 11, 1000] {
2603            let err = with_retry(bad, "10m").validate().unwrap_err();
2604            assert!(
2605                err.contains("on_failure.retry.max"),
2606                "for max={bad}, got: {err}"
2607            );
2608        }
2609    }
2610
2611    #[test]
2612    fn lowered_retry_reduces_backoff_to_seconds() {
2613        let s = with_retry(3, "10m");
2614        let spec = s.on_failure.lowered_retry().expect("a retry policy");
2615        assert_eq!(spec.max, 3);
2616        assert_eq!(spec.backoff_secs, 600);
2617    }
2618
2619    #[test]
2620    fn lowered_retry_is_none_without_policy() {
2621        let s = schedule_with(
2622            When::PerPc(PerPolicy::Once(OnceLiteral::Once)),
2623            RunsOn::Backend,
2624        );
2625        assert!(s.on_failure.lowered_retry().is_none());
2626    }
2627
2628    // ---- global change-freeze (#418 Phase 5) ----
2629
2630    #[test]
2631    fn freeze_empty_window_is_always_active() {
2632        // The big-red-button shape: no bounds = frozen until cleared.
2633        let f = Freeze::default();
2634        assert!(f.is_active(chrono::Utc::now()));
2635    }
2636
2637    #[test]
2638    fn freeze_window_is_half_open() {
2639        use chrono::TimeZone;
2640        let f = Freeze {
2641            from: Some("2026-12-20T00:00:00+00:00".into()),
2642            until: Some("2027-01-05T00:00:00+00:00".into()),
2643            reason: Some("year-end".into()),
2644            tz: ScheduleTz::Utc,
2645        };
2646        let at = |y, mo, d| chrono::Utc.with_ymd_and_hms(y, mo, d, 0, 0, 0).unwrap();
2647        assert!(!f.is_active(at(2026, 12, 19)), "before from = not frozen");
2648        assert!(f.is_active(at(2026, 12, 20)), "from is inclusive");
2649        assert!(f.is_active(at(2026, 12, 31)), "inside window");
2650        assert!(!f.is_active(at(2027, 1, 5)), "until is exclusive");
2651        assert!(!f.is_active(at(2027, 1, 6)), "after until = not frozen");
2652    }
2653
2654    #[test]
2655    fn freeze_fails_closed_on_corrupt_bound() {
2656        // A freeze is a safety switch: an unparseable bound (only
2657        // reachable via a hand-edited KV blob) must read as FROZEN, not
2658        // "fire normally" (coderabbit #472) — the opposite of `active`,
2659        // which fail-opens.
2660        let f = Freeze {
2661            from: Some("not-a-date".into()),
2662            until: None,
2663            reason: None,
2664            tz: ScheduleTz::Utc,
2665        };
2666        assert!(f.is_active(chrono::Utc::now()), "corrupt bound → frozen");
2667    }
2668
2669    #[test]
2670    fn freeze_validate_accepts_good_bounds() {
2671        Freeze {
2672            from: Some("2026-12-20".into()),
2673            until: Some("2027-01-05T12:00:00+09:00".into()),
2674            reason: None,
2675            tz: ScheduleTz::Local,
2676        }
2677        .validate()
2678        .expect("date + rfc3339 bounds should validate");
2679        // Empty (indefinite) freeze is valid.
2680        Freeze::default().validate().expect("empty freeze is valid");
2681    }
2682
2683    #[test]
2684    fn freeze_validate_rejects_bad_bound_and_inverted_window() {
2685        let err = Freeze {
2686            from: Some("never".into()),
2687            ..Default::default()
2688        }
2689        .validate()
2690        .unwrap_err();
2691        assert!(err.contains("freeze:"), "got: {err}");
2692
2693        let inverted = Freeze {
2694            from: Some("2027-01-05".into()),
2695            until: Some("2026-12-20".into()),
2696            ..Default::default()
2697        }
2698        .validate()
2699        .unwrap_err();
2700        assert!(inverted.contains("freeze.from"), "got: {inverted}");
2701    }
2702
2703    #[test]
2704    fn freeze_round_trips_and_skips_empty_fields() {
2705        let f = Freeze {
2706            from: None,
2707            until: Some("2027-01-05".into()),
2708            reason: Some("INC-1234".into()),
2709            tz: ScheduleTz::Utc,
2710        };
2711        let json = serde_json::to_value(&f).expect("serialise");
2712        assert!(json.get("from").is_none(), "empty from omitted: {json}");
2713        let back: Freeze = serde_json::from_value(json).expect("round-trip");
2714        assert_eq!(back, f);
2715    }
2716
2717    #[test]
2718    fn shipped_schedule_configs_parse_and_validate() {
2719        // Every YAML under configs/schedules/ must parse with the
2720        // current Schedule serde AND pass validate() — keeps the
2721        // shipped examples from drifting out of sync with the model
2722        // (#418 removed back-compat, so drift = broken at create).
2723        let dir = std::path::Path::new(env!("CARGO_MANIFEST_DIR")).join("../../configs/schedules");
2724        let mut seen = 0;
2725        for entry in std::fs::read_dir(&dir).expect("read configs/schedules") {
2726            let path = entry.expect("dir entry").path();
2727            if path.extension().and_then(|e| e.to_str()) != Some("yaml") {
2728                continue;
2729            }
2730            let body = std::fs::read_to_string(&path).expect("read yaml");
2731            let s: Schedule = serde_yaml::from_str(&body)
2732                .unwrap_or_else(|e| panic!("{} failed to parse: {e}", path.display()));
2733            s.validate()
2734                .unwrap_or_else(|e| panic!("{} failed validate(): {e}", path.display()));
2735            seen += 1;
2736        }
2737        assert!(seen > 0, "no schedule YAMLs found in {}", dir.display());
2738    }
2739
2740    // ---- pre-existing enum wire formats (unchanged by #418) ----
2741
2742    #[test]
2743    fn exec_mode_serialises_snake_case() {
2744        for (mode, expected) in [
2745            (ExecMode::EveryTick, "every_tick"),
2746            (ExecMode::OncePerPc, "once_per_pc"),
2747            (ExecMode::OncePerTarget, "once_per_target"),
2748        ] {
2749            let s = serde_json::to_value(mode).expect("serialise");
2750            assert_eq!(s, serde_json::Value::String(expected.into()));
2751            let back: ExecMode = serde_json::from_value(serde_json::Value::String(expected.into()))
2752                .expect("deserialise");
2753            assert_eq!(back, mode, "round-trip for {expected}");
2754        }
2755    }
2756
2757    #[test]
2758    fn schedule_runs_on_defaults_to_backend() {
2759        let yaml = r#"
2760id: x
2761when:
2762  per_pc: once
2763job_id: y
2764target: { all: true }
2765"#;
2766        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
2767        assert_eq!(s.runs_on, RunsOn::Backend);
2768    }
2769
2770    #[test]
2771    fn schedule_runs_on_agent_parses() {
2772        let yaml = r#"
2773id: offline-inv
2774when:
2775  per_pc: { every: 1h }
2776job_id: inventory-hw
2777target: { all: true }
2778runs_on: agent
2779"#;
2780        let s: Schedule = serde_yaml::from_str(yaml).expect("parse");
2781        assert_eq!(s.runs_on, RunsOn::Agent);
2782        assert_eq!(s.lowered().mode, ExecMode::OncePerPc);
2783    }
2784
2785    #[test]
2786    fn runs_on_serialises_snake_case() {
2787        for (mode, expected) in [(RunsOn::Backend, "backend"), (RunsOn::Agent, "agent")] {
2788            let s = serde_json::to_value(mode).expect("serialise");
2789            assert_eq!(s, serde_json::Value::String(expected.into()));
2790            let back: RunsOn = serde_json::from_value(serde_json::Value::String(expected.into()))
2791                .expect("deserialise");
2792            assert_eq!(back, mode);
2793        }
2794    }
2795
2796    #[test]
2797    fn execute_shell_into_wire_shell() {
2798        assert_eq!(Shell::from(ExecuteShell::Powershell), Shell::Powershell);
2799        assert_eq!(Shell::from(ExecuteShell::Cmd), Shell::Cmd);
2800    }
2801
2802    #[test]
2803    fn manifest_staleness_defaults_to_cached() {
2804        let yaml = r#"
2805id: x
2806version: 1.0.0
2807execute:
2808  shell: powershell
2809  script: "echo"
2810  timeout: 1s
2811"#;
2812        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
2813        assert_eq!(m.staleness, Staleness::Cached);
2814    }
2815
2816    #[test]
2817    fn manifest_strict_staleness_parses() {
2818        let yaml = r#"
2819id: urgent-patch
2820version: 2.5.1
2821execute:
2822  shell: powershell
2823  script: Install-Hotfix
2824  timeout: 5m
2825staleness:
2826  mode: strict
2827  max_cache_age: 0s
2828"#;
2829        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
2830        match m.staleness {
2831            Staleness::Strict { max_cache_age } => assert_eq!(max_cache_age, "0s"),
2832            other => panic!("expected strict, got {other:?}"),
2833        }
2834    }
2835
2836    #[test]
2837    fn manifest_unchecked_staleness_parses() {
2838        let yaml = r#"
2839id: legacy
2840version: 0.1.0
2841execute:
2842  shell: cmd
2843  script: "echo"
2844  timeout: 1s
2845staleness:
2846  mode: unchecked
2847"#;
2848        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
2849        assert_eq!(m.staleness, Staleness::Unchecked);
2850    }
2851
2852    #[test]
2853    fn missing_required_field_errors() {
2854        // `id` missing.
2855        let yaml = r#"
2856version: 1.0.0
2857target: { all: true }
2858execute:
2859  shell: powershell
2860  script: "echo"
2861  timeout: 1s
2862"#;
2863        let r: Result<Manifest, _> = serde_yaml::from_str(yaml);
2864        assert!(r.is_err(), "expected error, got {:?}", r);
2865    }
2866
2867    #[test]
2868    fn display_field_table_kind_round_trips_with_nested_columns() {
2869        // #39: `type: table` + `columns:` on a DisplayField gets
2870        // round-tripped through serde so the SPA receives the
2871        // nested schema verbatim. Nested columns themselves are
2872        // DisplayFields so they can carry `type: bytes` /
2873        // `type: number` for cell formatting.
2874        let yaml = r#"
2875id: inv-hw
2876version: 1.0.0
2877execute:
2878  shell: powershell
2879  script: "echo"
2880  timeout: 60s
2881inventory:
2882  display:
2883    - field: hostname
2884      label: Hostname
2885    - field: disks
2886      label: Disks
2887      type: table
2888      columns:
2889        - field: device_id
2890          label: Drive
2891        - field: size_bytes
2892          label: Size
2893          type: bytes
2894        - field: free_bytes
2895          label: Free
2896          type: bytes
2897        - field: file_system
2898          label: FS
2899"#;
2900        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
2901        let inv = m.inventory.as_ref().expect("inventory hint");
2902        let disks = inv
2903            .display
2904            .iter()
2905            .find(|d| d.field == "disks")
2906            .expect("disks display row");
2907        assert_eq!(disks.kind.as_deref(), Some("table"));
2908        let cols = disks.columns.as_ref().expect("table needs columns");
2909        assert_eq!(cols.len(), 4);
2910        assert_eq!(cols[1].field, "size_bytes");
2911        assert_eq!(cols[1].kind.as_deref(), Some("bytes"));
2912    }
2913
2914    #[test]
2915    fn display_field_scalar_kind_keeps_columns_none() {
2916        // Defensive: when type is a scalar (`bytes` / `number` /
2917        // `timestamp`) the `columns` field stays None — the SPA
2918        // uses its presence as the "render nested table" signal,
2919        // so it must not leak in via serde defaults.
2920        let yaml = r#"
2921id: x
2922version: 1.0.0
2923execute:
2924  shell: powershell
2925  script: "echo"
2926  timeout: 5s
2927inventory:
2928  display:
2929    - { field: ram_bytes, label: RAM, type: bytes }
2930"#;
2931        let m: Manifest = serde_yaml::from_str(yaml).expect("parse");
2932        let inv = m.inventory.as_ref().unwrap();
2933        assert!(inv.display[0].columns.is_none());
2934    }
2935
2936    // ---- checked-in JSON Schema freshness (docs/schemas/) ----
2937
2938    /// The JSON Schemas under `docs/schemas/` must match what
2939    /// `schema_for!` produces today — a Cargo.lock-style freshness guard
2940    /// so a `Schedule` / `Manifest` field change can't silently drift
2941    /// the operator-facing schema. The SPA editor, the backend
2942    /// `/api/schemas/*` endpoints, and these files all read the same
2943    /// derived shape; this test fails CI if the checked-in copy lags.
2944    /// Regenerate with:
2945    ///   `UPDATE_SCHEMAS=1 cargo test -p kanade-shared schema_files_are_current`
2946    #[test]
2947    fn schema_files_are_current() {
2948        assert_schema_file("schedule.schema.json", &schemars::schema_for!(Schedule));
2949        assert_schema_file("job.schema.json", &schemars::schema_for!(Manifest));
2950    }
2951
2952    fn assert_schema_file(name: &str, schema: &schemars::Schema) {
2953        let generated = serde_json::to_string_pretty(schema).expect("serialize schema") + "\n";
2954        let path = std::path::Path::new(env!("CARGO_MANIFEST_DIR"))
2955            .join("../../docs/schemas")
2956            .join(name);
2957        if std::env::var_os("UPDATE_SCHEMAS").is_some() {
2958            std::fs::create_dir_all(path.parent().unwrap()).expect("mkdir docs/schemas");
2959            std::fs::write(&path, &generated).unwrap_or_else(|e| panic!("write {path:?}: {e}"));
2960            return;
2961        }
2962        // Normalize CRLF→LF before comparing: `.gitattributes` already
2963        // pins these files to `eol=lf`, but a stray CRLF working-tree
2964        // copy (autocrlf, a tool rewrite) shouldn't turn a *content*-
2965        // freshness check into a confusing line-ending failure — that's
2966        // .gitattributes' job, not this test's (gemini #588).
2967        let on_disk = std::fs::read_to_string(&path)
2968            .unwrap_or_else(|e| {
2969                panic!(
2970                    "read {path:?}: {e}\n\
2971                     generate it with: UPDATE_SCHEMAS=1 cargo test -p kanade-shared schema_files_are_current"
2972                )
2973            })
2974            .replace("\r\n", "\n");
2975        assert_eq!(
2976            on_disk, generated,
2977            "{name} is stale — a Schedule/Manifest schema change isn't reflected in docs/schemas/. \
2978             Refresh with: UPDATE_SCHEMAS=1 cargo test -p kanade-shared schema_files_are_current"
2979        );
2980    }
2981}
2982
2983/// Periodic schedule (spec §2.4.3). v0.18.0 carries the fanout plan
2984/// (target + optional rollout + optional jitter) inline; the
2985/// referenced job (`job_id` → [`BUCKET_JOBS`]) supplies only the
2986/// script body. Two schedules of the same job can target different
2987/// groups on different cadences without copying the manifest.
2988///
2989/// #418 Phase 1: the cadence is the single [`When`] field. The old
2990/// `cron` × `mode` × `cooldown` × `auto_disable_when_done` quartet
2991/// is gone (no back-compat — pre-Phase-1 KV blobs fail to parse and
2992/// are warn-skipped; re-`schedule create` to upgrade them). The
2993/// engine underneath is unchanged: [`Schedule::lowered`] maps `when`
2994/// onto the same (cron, ExecMode, cooldown) trio the scheduler and
2995/// `decide_fire` always ran on.
2996#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone)]
2997pub struct Schedule {
2998    pub id: String,
2999    /// When to fire — a reconcile cadence (`per_pc` / `per_target`)
3000    /// or a calendar time trigger (`at` / `days`). See [`When`].
3001    ///
3002    /// `singleton_map`: serde_yaml 0.9 renders externally-tagged
3003    /// enums as `!per_pc` YAML tags by default; this keeps the
3004    /// operator-facing map shape (`when: { per_pc: once }`). JSON
3005    /// output is identical either way, and the schemars schema
3006    /// (external tagging = oneOf of single-key objects) already
3007    /// matches the singleton-map wire shape.
3008    #[serde(with = "serde_yaml::with::singleton_map")]
3009    #[schemars(with = "When")]
3010    pub when: When,
3011    /// Key into [`crate::kv::BUCKET_JOBS`]. Must equal a registered
3012    /// Manifest's `id`.
3013    pub job_id: String,
3014    /// Who + how-to-phase + when-to-stagger. The Manifest doesn't
3015    /// carry these any more — same job + different fanout = different
3016    /// schedule.
3017    #[serde(flatten)]
3018    pub plan: FanoutPlan,
3019    /// Optional validity window. Outside `[from, until)` the
3020    /// schedule is dormant — still registered, still visible, but
3021    /// every tick is skipped (deleted ≠ dormant: a campaign that
3022    /// ended stays inspectable and can be re-armed by editing the
3023    /// window). Checked at tick time on both the backend scheduler
3024    /// and the agent's local scheduler.
3025    #[serde(default, skip_serializing_if = "Active::is_empty")]
3026    pub active: Active,
3027    /// #418 operational constraints gating *when within an active
3028    /// period* a fire may happen: a maintenance `window`, a fleet
3029    /// `max_concurrent` cap, and `skip_dates` (holiday exclusion). The
3030    /// wall-clock ones are evaluated in the schedule's `tz`; future
3031    /// `require` (env gates) lands in the same namespace. Checked at
3032    /// tick time on both schedulers (and surfaced by `preview`).
3033    #[serde(default, skip_serializing_if = "Constraints::is_empty")]
3034    pub constraints: Constraints,
3035    /// #418 Phase 4: what to do after a fire's script comes back
3036    /// failed. Currently just `retry` (fixed-backoff in-process
3037    /// re-run); future `notify` / `disable` join the same namespace.
3038    /// Applied fire-side in `handle_command` (the retry policy is
3039    /// lowered onto every Command this schedule produces), so it
3040    /// covers both `runs_on` locations.
3041    #[serde(default, skip_serializing_if = "OnFailure::is_empty")]
3042    pub on_failure: OnFailure,
3043    /// #418 Phase 2: the timezone this schedule's wall-clock fields
3044    /// are evaluated in — both the calendar `at` firing time AND the
3045    /// `active.{from,until}` window bounds. `local` (default) = the
3046    /// running host's TZ (the agent's for `runs_on: agent`, the
3047    /// backend server's otherwise); `utc` for TZ-independent
3048    /// schedules. Reconcile shapes (`per_pc`/`per_target`) ignore it
3049    /// for firing (poll cron runs every minute regardless) but still
3050    /// honor it for the `active` window.
3051    #[serde(default)]
3052    pub tz: ScheduleTz,
3053    /// v0.22: optional humantime window after a cron tick during
3054    /// which the Command is still considered "live". The scheduler
3055    /// computes `tick_at + starting_deadline` and stamps it onto
3056    /// each Command as `deadline_at`; agents skip Commands they
3057    /// receive after that absolute time. `None` (default) = no
3058    /// deadline, meaning a Command queued in the broker / stream
3059    /// during agent downtime runs whenever the agent reconnects —
3060    /// good for kitting / inventory / cleanup. Set this for
3061    /// time-of-day notifications, lunch reminders, etc., where
3062    /// "fire 3 hours late" would be wrong.
3063    #[serde(default, skip_serializing_if = "Option::is_none")]
3064    pub starting_deadline: Option<String>,
3065    /// v0.23: where does the cron tick happen? `Backend` (default,
3066    /// historical) = backend's scheduler fires Commands via NATS;
3067    /// agents passively receive. `Agent` = each targeted agent runs
3068    /// its own internal cron and fires locally, so the schedule
3069    /// keeps ticking even when the broker is unreachable (laptop on
3070    /// the train, broker maintenance window, full WAN outage). The
3071    /// two locations are mutually exclusive — when `Agent`, the
3072    /// backend scheduler stays out and just keeps the definition in
3073    /// KV for agents to read.
3074    #[serde(default)]
3075    pub runs_on: RunsOn,
3076    #[serde(default = "default_true")]
3077    pub enabled: bool,
3078}
3079
3080/// v0.23 — where the cron tick fires from.
3081#[derive(
3082    Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq, Default,
3083)]
3084#[serde(rename_all = "snake_case")]
3085pub enum RunsOn {
3086    /// Backend's central scheduler ticks and publishes Commands to
3087    /// NATS. Historical default, what every pre-v0.23 schedule
3088    /// uses. Agent offline ⇒ Command queued in STREAM_EXEC; agent
3089    /// reconnects ⇒ catch-up via [`command_replay`](crate)
3090    /// (see kanade-agent's command_replay module).
3091    #[default]
3092    Backend,
3093    /// Each targeted agent runs the cron tick locally. Survives
3094    /// broker / WAN outages. Best for laptops / mobile devices that
3095    /// roam off the corporate network. Agent must be online for the
3096    /// initial schedule + job-catalog pull, but once cached the
3097    /// agent fires the script standalone.
3098    Agent,
3099}
3100
3101/// Per-pc/per-target dedup semantics for a [`Schedule`] (v0.19).
3102#[derive(
3103    Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq, Default,
3104)]
3105#[serde(rename_all = "snake_case")]
3106pub enum ExecMode {
3107    /// Fire on every cron tick at the whole target. Historical
3108    /// (pre-v0.19) behavior; no dedup.
3109    #[default]
3110    EveryTick,
3111    /// Fire at each pc until that pc succeeds; then skip it until
3112    /// the optional cooldown elapses (or forever if no cooldown).
3113    /// Use for kitting / first-boot / per-pc compliance checks.
3114    OncePerPc,
3115    /// Fire at the whole target until **any** pc succeeds; then
3116    /// skip the whole target until the optional cooldown elapses
3117    /// (or forever if no cooldown). Use for "one delegate is
3118    /// enough" tasks like license check-in.
3119    OncePerTarget,
3120    /// #418 OS-native event trigger (`when: { on: [...] }`). There is
3121    /// no cron — the agent fires it from an OS event source (boot /
3122    /// session-change), not a tick — so the scheduler skips
3123    /// `tokio-cron` registration for it. Each event occurrence fires
3124    /// once, gated by the standard freeze / active / window /
3125    /// skip_dates checks.
3126    Event,
3127}
3128
3129/// #418 Phase 1 — the single "when does this fire" axis.
3130///
3131/// Replaces the old `cron` + `mode` + `cooldown` trio whose
3132/// interactions were implicit (cron doubled as both a real
3133/// time-of-day trigger and a reconcile poll period; contradictory
3134/// combinations silently no-opped). Two shapes:
3135///
3136/// * **reconcile** (`per_pc` / `per_target`) — desired-state: "each
3137///   pc (or one delegate) should have run this within `every`".
3138///   The poll period is system-generated ([`POLL_CRON`], every
3139///   minute) and no longer the operator's concern.
3140/// * **calendar** (`{ at, days }`) — a wall-clock time trigger
3141///   (#418 Phase 2, replacing the old raw-cron escape hatch). Fires
3142///   the whole target at the given time, no dedup. `at: "09:00"` +
3143///   `days` repeats; `at: "2026-06-10 09:00"` (a date+time) fires
3144///   exactly once. Evaluated in the schedule's top-level `tz`.
3145#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, PartialEq, Eq)]
3146#[serde(rename_all = "snake_case")]
3147pub enum When {
3148    /// Fire at each targeted pc: `once` (kitting — succeed once,
3149    /// skip forever, forever catching brand-new / re-imaged pcs)
3150    /// or `{ every: <humantime> }` (patrol — re-arm per pc after
3151    /// the interval).
3152    PerPc(PerPolicy),
3153    /// Fire until **any** one pc of the target succeeds, then skip
3154    /// the whole target (`once`) or re-arm after `every`. Needs
3155    /// fleet-wide completion data, so it is backend-only —
3156    /// `runs_on: agent` + `per_target` is rejected by
3157    /// [`Schedule::validate`].
3158    PerTarget(PerPolicy),
3159    /// Calendar time trigger: `{ at: "09:00", days: [mon-fri] }`
3160    /// (repeating) or `{ at: "2026-06-10 09:00" }` (one-shot). Fires
3161    /// the whole target at that wall-clock time in the schedule's
3162    /// `tz` — no dedup, no cooldown.
3163    Calendar(CalendarSpec),
3164    /// #418 OS-native event trigger: `when: { on: [startup, logon] }`.
3165    /// Fires when the agent observes the listed OS event(s) rather than
3166    /// on a clock — there is no cron. `runs_on: agent` only (the agent
3167    /// owns the event source); [`Schedule::validate`] rejects it on
3168    /// `backend` and rejects an empty list. Each event occurrence fires
3169    /// once, gated by the same freeze / active / `constraints.window` /
3170    /// `skip_dates` checks as the cron path. `startup` fires once per OS
3171    /// boot (deduped via the host boot time); a `starting_deadline`, if
3172    /// set, limits it to "agent came up within that long after boot".
3173    On(Vec<OnTrigger>),
3174}
3175
3176/// An OS event the agent can fire a schedule on (#418 `when: { on }`).
3177/// `network_change` is a planned follow-up.
3178#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq, Hash)]
3179#[serde(rename_all = "snake_case")]
3180pub enum OnTrigger {
3181    /// Once per OS boot (the agent's first run for that boot). Catches
3182    /// freshly-imaged / reinstalled hosts at their next startup.
3183    Startup,
3184    /// On an interactive-session user logon — console, RDP, or
3185    /// auto-logon (Windows `WTS_SESSION_LOGON`). Does not fire for
3186    /// service / network / batch logons (no interactive session).
3187    Logon,
3188    /// When the workstation is locked (Win+L / idle lock; Windows
3189    /// `WTS_SESSION_LOCK`). Use for step-away compliance / cleanup.
3190    Lock,
3191    /// When the workstation is unlocked — the user returns to a locked
3192    /// session (Windows `WTS_SESSION_UNLOCK`). Use to re-check
3193    /// compliance / refresh state when work resumes.
3194    Unlock,
3195}
3196
3197/// Calendar time trigger (#418 Phase 2). `at` is either a time of
3198/// day (`"HH:MM"`, repeating — combine with `days`) or a full
3199/// date+time (`"YYYY-MM-DD HH:MM"`, a one-shot that fires once and
3200/// never again). Evaluated in the schedule's top-level `tz`.
3201#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, PartialEq, Eq)]
3202pub struct CalendarSpec {
3203    /// `"HH:MM"` (24h) for a repeating trigger, or
3204    /// `"YYYY-MM-DD HH:MM"` (hyphen / slash / `T` separators all
3205    /// accepted) for a one-shot. Parsed lazily —
3206    /// [`Schedule::validate`] rejects garbage at create time.
3207    pub at: String,
3208    /// Day-of-week filter for a time-of-day `at`: `["mon-fri"]`,
3209    /// `["mon","wed","fri"]`, … (passed verbatim to the cron DOW
3210    /// field, so ranges and names both work). An **nth-weekday**
3211    /// `["tue#2"]` fires only on the 2nd Tuesday of each month
3212    /// ("Patch Tuesday"); the ordinal is `1..5`. A **last-weekday**
3213    /// `["friL"]` fires only on the last Friday of each month (handy
3214    /// for monthly maintenance). Empty = every day. Must be empty
3215    /// when `at` carries a date (the date already pins the day).
3216    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3217    pub days: Vec<String>,
3218}
3219
3220/// Parsed `CalendarSpec.at`: the wall-clock minute/hour, plus the
3221/// date for a one-shot (`None` = repeating time-of-day).
3222struct ParsedAt {
3223    minute: u32,
3224    hour: u32,
3225    date: Option<chrono::NaiveDate>,
3226}
3227
3228impl CalendarSpec {
3229    /// Parse `at`: a date+time (`YYYY-MM-DD HH:MM`, hyphen / slash /
3230    /// `T` separators) is a one-shot; a bare `HH:MM` is repeating.
3231    fn parse_at(&self) -> Result<ParsedAt, String> {
3232        use chrono::Timelike;
3233        let s = self.at.trim();
3234        for fmt in ["%Y-%m-%d %H:%M", "%Y-%m-%dT%H:%M", "%Y/%m/%d %H:%M"] {
3235            if let Ok(dt) = chrono::NaiveDateTime::parse_from_str(s, fmt) {
3236                return Ok(ParsedAt {
3237                    minute: dt.minute(),
3238                    hour: dt.hour(),
3239                    date: Some(dt.date()),
3240                });
3241            }
3242        }
3243        if let Ok(t) = chrono::NaiveTime::parse_from_str(s, "%H:%M") {
3244            return Ok(ParsedAt {
3245                minute: t.minute(),
3246                hour: t.hour(),
3247                date: None,
3248            });
3249        }
3250        Err(format!(
3251            "when.at: unparseable '{}' (want HH:MM or YYYY-MM-DD HH:MM)",
3252            self.at
3253        ))
3254    }
3255
3256    /// Pre-flight check on the `days` tokens so a bad day name gives
3257    /// a `when.days:`-scoped error instead of croner's confusing
3258    /// "when.at lowered to invalid cron" (claude #432 review). Each
3259    /// token is a day name (`mon`..`sun`), a numeric DOW (`0`..`7`),
3260    /// `*`, a `-` range of those, an **nth-weekday** like `tue#2`
3261    /// (2nd Tuesday of the month — "Patch Tuesday"), or a
3262    /// **last-weekday** like `friL` (last Friday of the month).
3263    fn validate_days(&self) -> Result<(), String> {
3264        const NAMES: [&str; 7] = ["mon", "tue", "wed", "thu", "fri", "sat", "sun"];
3265        let is_day = |p: &str| NAMES.contains(&p) || p.parse::<u8>().is_ok_and(|n| n <= 7);
3266        for tok in &self.days {
3267            // Report the whole token on a malformed range like `mon-`
3268            // (which would otherwise split to a cryptic empty part —
3269            // claude #432 follow-up).
3270            let invalid = |reason: &str| {
3271                Err(format!(
3272                    "when.days: invalid day token '{tok}' ({reason}; \
3273                     want mon..sun, 0-7, a range like mon-fri, an nth-weekday \
3274                     like tue#2, a last-weekday like friL, or *)"
3275                ))
3276            };
3277            // #418: nth-weekday suffix (`tue#2` = 2nd Tuesday). Croner
3278            // accepts `<dow>#<n>` (n = 1..5) in the DOW field, and
3279            // `to_cron` passes the token through verbatim, so the
3280            // engine fires only on that occurrence. It's a single
3281            // weekday + ordinal — not combinable with a range.
3282            if let Some((day_part, nth_part)) = tok.split_once('#') {
3283                // Normalize once and use `d` consistently (gemini #547);
3284                // the outer `invalid` already echoes the raw `tok`.
3285                let d = day_part.trim().to_ascii_lowercase();
3286                if d.contains('-') || !is_day(&d) {
3287                    return invalid("the part before # must be a single weekday");
3288                }
3289                match nth_part.trim().parse::<u8>() {
3290                    Ok(n) if (1..=5).contains(&n) => {}
3291                    _ => return invalid("the # ordinal must be 1..5 (e.g. tue#2 = 2nd Tuesday)"),
3292                }
3293                continue;
3294            }
3295            // #418: last-weekday suffix (`friL` = last Friday of the
3296            // month — the monthly-maintenance sibling of Patch Tuesday).
3297            // Croner accepts `<dow>L` in the DOW field with verified
3298            // last-<dow>-of-month semantics, and `to_cron` passes it
3299            // through verbatim. A single weekday + `L` — bare `L` and
3300            // ranges are rejected (croner would read bare `L` as
3301            // Saturday, which is a confusing footgun).
3302            if let Some(day_part) = tok.strip_suffix(['L', 'l']) {
3303                // No `.trim()`: a cron DOW token can't carry internal
3304                // whitespace, so `"fri L"` must be *rejected* here (its
3305                // strip leaves `"fri "`, and `is_day` catches the space)
3306                // rather than trimmed into a clean `"fri"` that then
3307                // produces a malformed `fri L` cron downstream and a
3308                // confusing croner error (gemini #560).
3309                let d = day_part.to_ascii_lowercase();
3310                if d.is_empty() {
3311                    return invalid("`L` (last-weekday) needs a weekday before it, e.g. friL");
3312                }
3313                if d.contains('-') || !is_day(&d) {
3314                    return invalid(
3315                        "the part before L must be a single weekday (e.g. friL = last Friday)",
3316                    );
3317                }
3318                continue;
3319            }
3320            for part in tok.split('-') {
3321                let p = part.trim().to_ascii_lowercase();
3322                if p.is_empty() {
3323                    return invalid("empty range bound");
3324                }
3325                if p != "*" && !is_day(&p) {
3326                    return invalid(&format!("'{part}' is not a day"));
3327                }
3328            }
3329        }
3330        Ok(())
3331    }
3332
3333    /// For a one-shot (`at` carries a date), the absolute instant it
3334    /// fires in `tz`. `None` for a repeating calendar. Used to warn
3335    /// about a one-shot whose date is already in the past (it would
3336    /// never fire).
3337    pub fn oneshot_instant(&self, tz: ScheduleTz) -> Option<chrono::DateTime<chrono::Utc>> {
3338        let p = self.parse_at().ok()?;
3339        let date = p.date?;
3340        let naive = date.and_hms_opt(p.hour, p.minute, 0)?;
3341        tz.naive_to_utc(naive)
3342    }
3343
3344    /// The wall-clock time-of-day this calendar fires at (`None` if
3345    /// `at` is unparseable — validate() guards that). Used to detect
3346    /// a calendar whose fire time can never fall inside its
3347    /// `constraints.window` (claude #452 review).
3348    pub fn fire_time(&self) -> Option<chrono::NaiveTime> {
3349        let p = self.parse_at().ok()?;
3350        chrono::NaiveTime::from_hms_opt(p.hour, p.minute, 0)
3351    }
3352
3353    /// Lower to the cron string the scheduler engine runs. Repeating
3354    /// → 6-field `0 {min} {hour} * * {dow}`; one-shot → 7-field
3355    /// `0 {min} {hour} {day} {month} * {year}` (a past year never
3356    /// fires — that's what makes it one-shot).
3357    fn to_cron(&self) -> Result<String, String> {
3358        use chrono::Datelike;
3359        let ParsedAt { minute, hour, date } = self.parse_at()?;
3360        match date {
3361            Some(d) => {
3362                if !self.days.is_empty() {
3363                    return Err(
3364                        "when.at with a date is a one-shot and cannot be combined with days".into(),
3365                    );
3366                }
3367                Ok(format!(
3368                    "0 {minute} {hour} {} {} * {}",
3369                    d.day(),
3370                    d.month(),
3371                    d.year()
3372                ))
3373            }
3374            None => {
3375                let dow = if self.days.is_empty() {
3376                    "*".to_string()
3377                } else {
3378                    self.validate_days()?;
3379                    self.days.join(",")
3380                };
3381                Ok(format!("0 {minute} {hour} * * {dow}"))
3382            }
3383        }
3384    }
3385}
3386
3387/// The timezone a schedule's wall-clock fields (`when.at`,
3388/// `active.{from,until}`) are evaluated in (#418 Phase 2).
3389#[derive(
3390    Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq, Default,
3391)]
3392#[serde(rename_all = "snake_case")]
3393pub enum ScheduleTz {
3394    /// The running host's local timezone — the agent's for
3395    /// `runs_on: agent`, the backend server's otherwise. Default.
3396    #[default]
3397    Local,
3398    /// UTC — for timezone-independent schedules.
3399    Utc,
3400}
3401
3402impl ScheduleTz {
3403    /// Interpret a naive (zoneless) datetime as being in this tz and
3404    /// convert to UTC. On a DST *fold* (the local time occurs twice
3405    /// when clocks go back) we pick `.earliest()` rather than
3406    /// rejecting it; `None` is reserved for a true DST *gap* (a local
3407    /// time that never exists). `Utc` is fixed-offset so neither ever
3408    /// happens; `Local` is whatever timezone the running host is set
3409    /// to and *can* hit a gap/fold on any DST-observing host — not
3410    /// just the JST we run today (gemini + claude #432 review).
3411    fn naive_to_utc(self, naive: chrono::NaiveDateTime) -> Option<chrono::DateTime<chrono::Utc>> {
3412        use chrono::TimeZone;
3413        match self {
3414            ScheduleTz::Utc => Some(chrono::DateTime::from_naive_utc_and_offset(
3415                naive,
3416                chrono::Utc,
3417            )),
3418            ScheduleTz::Local => chrono::Local
3419                .from_local_datetime(&naive)
3420                .earliest()
3421                .map(|dt| dt.with_timezone(&chrono::Utc)),
3422        }
3423    }
3424
3425    /// The wall-clock time-of-day `now` reads as in this tz — used by
3426    /// [`Constraints::allows`] to test a maintenance window
3427    /// (#418 Phase 3). `Utc` is the naive UTC time; `Local` is the
3428    /// running host's local time.
3429    fn wall_time(self, now: chrono::DateTime<chrono::Utc>) -> chrono::NaiveTime {
3430        match self {
3431            ScheduleTz::Utc => now.time(),
3432            ScheduleTz::Local => now.with_timezone(&chrono::Local).time(),
3433        }
3434    }
3435
3436    /// The wall-clock *date* `now` reads as in this tz — used by
3437    /// [`Constraints::allows`] to test `skip_dates` (#418 holiday
3438    /// exclusion). Same tz semantics as [`Self::wall_time`].
3439    fn wall_date(self, now: chrono::DateTime<chrono::Utc>) -> chrono::NaiveDate {
3440        match self {
3441            ScheduleTz::Utc => now.date_naive(),
3442            ScheduleTz::Local => now.with_timezone(&chrono::Local).date_naive(),
3443        }
3444    }
3445
3446    /// Stable lowercase wire/display label (`local` / `utc`) — matches
3447    /// the serde `snake_case` representation. Used for the preview
3448    /// response's `tz` field so the JSON shape isn't coupled to the
3449    /// `Debug` repr (claude #578 review).
3450    pub fn as_str(self) -> &'static str {
3451        match self {
3452            ScheduleTz::Local => "local",
3453            ScheduleTz::Utc => "utc",
3454        }
3455    }
3456}
3457
3458impl std::fmt::Display for ScheduleTz {
3459    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3460        f.write_str(self.as_str())
3461    }
3462}
3463
3464/// `once` vs `{ every: <humantime> }` — shared by `per_pc` /
3465/// `per_target`. Untagged so the YAML stays the bare keyword or a
3466/// one-key map, nothing more ceremonial.
3467#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, PartialEq, Eq)]
3468#[serde(untagged)]
3469pub enum PerPolicy {
3470    /// The bare string `once`: succeed once, then skip permanently
3471    /// (cooldown = infinity).
3472    Once(OnceLiteral),
3473    /// Re-arm after the humantime interval, e.g. `{ every: 6h }`.
3474    Every(EverySpec),
3475}
3476
3477/// Single-variant enum so serde accepts exactly the string `once`
3478/// (a free-form `String` would swallow typos like `onec`).
3479#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Copy, PartialEq, Eq)]
3480#[serde(rename_all = "snake_case")]
3481pub enum OnceLiteral {
3482    Once,
3483}
3484
3485/// `{ every: <humantime> }`. Standalone struct (not an inline
3486/// struct variant). `{ evry: 6h }` still fails to parse (the
3487/// required `every` key is missing), and the create boundaries
3488/// reject the unknown `evry` via [`crate::strict`] with its path —
3489/// while agents reading a future writer's extra fields tolerate
3490/// them (#492).
3491#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, PartialEq, Eq)]
3492pub struct EverySpec {
3493    /// Humantime interval (`10m`, `6h`, `1d`...). Parsed lazily —
3494    /// [`Schedule::validate`] rejects garbage at create time.
3495    pub every: String,
3496}
3497
3498impl PerPolicy {
3499    /// The cooldown this policy lowers to: `once` = `None`
3500    /// (permanent skip), `every` = the interval.
3501    fn cooldown(&self) -> Option<String> {
3502        match self {
3503            PerPolicy::Once(_) => None,
3504            PerPolicy::Every(EverySpec { every }) => Some(every.clone()),
3505        }
3506    }
3507}
3508
3509impl std::fmt::Display for When {
3510    /// Operator-facing one-liner (`per_pc once` / `per_pc every 6h`
3511    /// / `at 09:00 [mon-fri]` / `at 2026-06-10 09:00`) for log
3512    /// lines, audit payloads and the API's `ScheduleSummary`.
3513    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
3514        let policy = |p: &PerPolicy| match p {
3515            PerPolicy::Once(_) => "once".to_string(),
3516            PerPolicy::Every(EverySpec { every }) => format!("every {every}"),
3517        };
3518        match self {
3519            When::PerPc(p) => write!(f, "per_pc {}", policy(p)),
3520            When::PerTarget(p) => write!(f, "per_target {}", policy(p)),
3521            When::Calendar(c) if c.days.is_empty() => write!(f, "at {}", c.at),
3522            When::Calendar(c) => write!(f, "at {} [{}]", c.at, c.days.join(",")),
3523            When::On(triggers) => {
3524                let names: Vec<&str> = triggers.iter().map(|t| t.as_str()).collect();
3525                write!(f, "on [{}]", names.join(","))
3526            }
3527        }
3528    }
3529}
3530
3531impl OnTrigger {
3532    /// Lowercase wire/display label (matches the serde `snake_case`).
3533    pub fn as_str(self) -> &'static str {
3534        match self {
3535            OnTrigger::Startup => "startup",
3536            OnTrigger::Logon => "logon",
3537            OnTrigger::Lock => "lock",
3538            OnTrigger::Unlock => "unlock",
3539        }
3540    }
3541}
3542
3543/// Optional validity window for a [`Schedule`] (#418 decision G).
3544/// Half-open `[from, until)`; either bound may be omitted. Bounds
3545/// are `YYYY-MM-DD` (= that day's 00:00 in the schedule's `tz`) or
3546/// full RFC3339 (offset is honored as-is, `tz` ignored). Kept as
3547/// strings so the JSON Schema the SPA editor consumes stays two
3548/// plain string fields, mirroring `jitter` / `starting_deadline`.
3549///
3550/// #418 Phase 2: bounds are evaluated in the schedule's top-level
3551/// `tz` (was UTC-only in Phase 1) so `tz: local` makes both the
3552/// calendar `at` AND the `active` window local — one consistent
3553/// timezone per schedule.
3554#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default, PartialEq, Eq)]
3555pub struct Active {
3556    /// Dormant before this instant.
3557    #[serde(default, skip_serializing_if = "Option::is_none")]
3558    pub from: Option<String>,
3559    /// Dormant from this instant on (exclusive).
3560    #[serde(default, skip_serializing_if = "Option::is_none")]
3561    pub until: Option<String>,
3562}
3563
3564impl Active {
3565    /// `skip_serializing_if` helper — an empty window means "always
3566    /// active" and is omitted from the wire format entirely.
3567    pub fn is_empty(&self) -> bool {
3568        self.from.is_none() && self.until.is_none()
3569    }
3570
3571    /// Parse one bound: RFC3339 first (offset honored, `tz`
3572    /// ignored), then bare `YYYY-MM-DD` (00:00 in `tz`).
3573    pub fn parse_bound(s: &str, tz: ScheduleTz) -> Result<chrono::DateTime<chrono::Utc>, String> {
3574        if let Ok(dt) = chrono::DateTime::parse_from_rfc3339(s) {
3575            return Ok(dt.with_timezone(&chrono::Utc));
3576        }
3577        if let Ok(d) = chrono::NaiveDate::parse_from_str(s, "%Y-%m-%d") {
3578            let midnight = d.and_hms_opt(0, 0, 0).expect("00:00:00 is always valid");
3579            return tz.naive_to_utc(midnight).ok_or_else(|| {
3580                format!("active: bound '{s}' falls in a DST gap for the schedule's tz")
3581            });
3582        }
3583        Err(format!(
3584            "active: unparseable bound '{s}' (want YYYY-MM-DD or RFC3339)"
3585        ))
3586    }
3587
3588    /// Is `now` inside the window? Unparseable bounds are treated
3589    /// as absent here (fail-open) — [`Schedule::validate`] is the
3590    /// place that rejects them loudly; this runs on every tick and
3591    /// must never panic on a stale KV blob.
3592    pub fn contains(&self, now: chrono::DateTime<chrono::Utc>, tz: ScheduleTz) -> bool {
3593        let bound = |s: &Option<String>| s.as_deref().and_then(|s| Self::parse_bound(s, tz).ok());
3594        if bound(&self.from).is_some_and(|from| now < from) {
3595            return false;
3596        }
3597        if bound(&self.until).is_some_and(|until| now >= until) {
3598            return false;
3599        }
3600        true
3601    }
3602}
3603
3604/// Operational constraints on a [`Schedule`] (#418 Phase 3). Where
3605/// [`Active`] decides *over what date range* a schedule is live,
3606/// `Constraints` decides *when, within an active period,* a fire is
3607/// allowed. `window` (a maintenance time-of-day window) and
3608/// `max_concurrent` (a fleet-wide running-instance cap) so far;
3609/// `require` (env gates) joins this struct in a later phase.
3610#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default, PartialEq, Eq)]
3611pub struct Constraints {
3612    /// `"HH:MM-HH:MM"` wall-clock window (evaluated in the schedule's
3613    /// `tz`). Fires outside it are skipped — mainly for reconcile
3614    /// cadences ("patrol every 6h, but only fire overnight") and
3615    /// daytime change-freezes. `start > end` crosses midnight
3616    /// (`"22:00-05:00"` = 22:00 through 05:00 next morning). Parsed
3617    /// lazily; [`Schedule::validate`] rejects garbage at create time.
3618    #[serde(default, skip_serializing_if = "Option::is_none")]
3619    pub window: Option<String>,
3620    /// Fleet-wide cap on how many instances of this schedule's job may
3621    /// run **at the same time** (#418 "同時実行ハード上限"). The
3622    /// backend scheduler counts the job's still-in-flight runs
3623    /// (`execution_results.finished_at IS NULL`) each tick and only
3624    /// dispatches to as many remaining pcs as there are free slots —
3625    /// a rolling window that refills as runs complete. Useful for
3626    /// disk/CPU/network-heavy jobs you don't want hammering the whole
3627    /// fleet at once.
3628    ///
3629    /// **Backend-only** (it needs a central counter): combining it
3630    /// with `runs_on: agent` is rejected by [`Schedule::validate`]
3631    /// (#418 decision E — "中央上限には中央が要る"). Most meaningful
3632    /// for `per_pc` reconcile cadences, where the poll re-ticks and
3633    /// refills slots. `None` (default) = no cap.
3634    #[serde(default, skip_serializing_if = "Option::is_none")]
3635    pub max_concurrent: Option<u32>,
3636    /// Calendar dates the schedule must **not** fire on — holidays,
3637    /// blackout days, one-off freeze dates (#418 "祝日除外"). Each is
3638    /// `YYYY-MM-DD`, evaluated as a wall-clock date in the schedule's
3639    /// `tz`. Applies to every `when` shape (a reconcile cadence skips
3640    /// the whole day; a calendar fire landing on the date is
3641    /// suppressed) and is honored by both the live scheduler and
3642    /// `preview`, since both gate on [`Constraints::allows`]. Empty
3643    /// (default) = no skips. Operator-supplied: there is no built-in
3644    /// holiday calendar — list the dates you care about. Parsed lazily;
3645    /// [`Schedule::validate`] rejects a malformed date at create time.
3646    #[serde(default, skip_serializing_if = "Vec::is_empty")]
3647    pub skip_dates: Vec<String>,
3648}
3649
3650impl Constraints {
3651    /// `skip_serializing_if` helper — empty constraints are omitted
3652    /// from the wire format entirely.
3653    pub fn is_empty(&self) -> bool {
3654        self.window.is_none() && self.max_concurrent.is_none() && self.skip_dates.is_empty()
3655    }
3656
3657    /// The first unparseable `skip_dates` entry, if any — the
3658    /// scheduler logs it at register time so a fail-closed
3659    /// (never-firing) schedule from a hand-edited KV blob is
3660    /// diagnosable, mirroring [`Schedule::bad_window`].
3661    pub fn bad_skip_date(&self) -> Option<String> {
3662        self.skip_dates.iter().find_map(|s| {
3663            chrono::NaiveDate::parse_from_str(s.trim(), "%Y-%m-%d")
3664                .err()
3665                .map(|e| format!("constraints.skip_dates: invalid date '{s}': {e}"))
3666        })
3667    }
3668
3669    /// Parse `"HH:MM-HH:MM"` into `(start, end)`. Equal bounds are an
3670    /// error (a zero-width or all-day window is ambiguous — write no
3671    /// window for "always").
3672    pub fn parse_window(s: &str) -> Result<(chrono::NaiveTime, chrono::NaiveTime), String> {
3673        let (a, b) = s
3674            .split_once('-')
3675            .ok_or_else(|| format!("constraints.window: '{s}' must be 'HH:MM-HH:MM'"))?;
3676        let parse = |part: &str| {
3677            chrono::NaiveTime::parse_from_str(part.trim(), "%H:%M")
3678                .map_err(|e| format!("constraints.window: invalid time '{}': {e}", part.trim()))
3679        };
3680        let (start, end) = (parse(a)?, parse(b)?);
3681        if start == end {
3682            return Err(format!(
3683                "constraints.window: start and end are equal ('{s}'); omit window for 'always'"
3684            ));
3685        }
3686        Ok((start, end))
3687    }
3688
3689    /// Is a fire allowed at `now` (evaluated in `tz`)? No window =
3690    /// always allowed. Half-open `[start, end)`; `start > end`
3691    /// crosses midnight.
3692    ///
3693    /// **Fail-closed** on an unparseable window (returns `false`,
3694    /// gemini #452 review): a window is a *restrictive* constraint
3695    /// (change-freeze / overnight-only), so a corrupt one must NOT
3696    /// silently allow fires during the restricted hours. Bad windows
3697    /// are rejected at create time by [`Schedule::validate`]; this
3698    /// only bites a hand-edited KV blob, where blocking is the safe
3699    /// direction. The scheduler warns at register time
3700    /// ([`Schedule::bad_window`]) so a stuck schedule is diagnosable.
3701    /// The tick path never panics regardless.
3702    pub fn allows(&self, now: chrono::DateTime<chrono::Utc>, tz: ScheduleTz) -> bool {
3703        // #418 holiday / blackout dates: never fire on a listed wall
3704        // date (in `tz`). Checked before the window since a skipped day
3705        // overrides any within-window allowance. Fail-closed on a
3706        // corrupt entry (same posture as `window`): a skip date is a
3707        // *restrictive* constraint, so a garbled one must not silently
3708        // re-enable fires — it blocks until fixed (`validate` rejects it
3709        // at create time; `bad_skip_date` lets the scheduler warn).
3710        if !self.skip_dates.is_empty() {
3711            let today = tz.wall_date(now);
3712            let blocked = self.skip_dates.iter().any(|s| {
3713                match chrono::NaiveDate::parse_from_str(s.trim(), "%Y-%m-%d") {
3714                    Ok(d) => d == today,
3715                    Err(_) => true, // corrupt entry → fail-closed (block)
3716                }
3717            });
3718            if blocked {
3719                return false;
3720            }
3721        }
3722        match self.window.as_deref() {
3723            // No window → always allowed.
3724            None => true,
3725            // Window set: membership, or fail-closed if unparseable
3726            // (`window_contains` returns None for a corrupt window).
3727            Some(_) => self.window_contains(tz.wall_time(now)).unwrap_or(false),
3728        }
3729    }
3730
3731    /// Membership of a wall-clock time-of-day in the window. `None`
3732    /// when there is no window or it's unparseable (callers decide
3733    /// the failure direction). `start > end` crosses midnight.
3734    fn window_contains(&self, t: chrono::NaiveTime) -> Option<bool> {
3735        let (start, end) = Self::parse_window(self.window.as_deref()?).ok()?;
3736        Some(if start <= end {
3737            start <= t && t < end
3738        } else {
3739            t >= start || t < end
3740        })
3741    }
3742}
3743
3744/// What to do when a fire's script fails (#418 Phase 4 — the "高"
3745/// retry/backoff gap). Where [`Constraints`] gates *whether* a fire
3746/// happens, `OnFailure` decides what happens *after* one ran and
3747/// came back bad. Only `retry` so far; future `notify` / `disable`
3748/// would join the same namespace.
3749#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default, PartialEq, Eq)]
3750pub struct OnFailure {
3751    /// Re-run the script in-process when it exits non-zero (or times
3752    /// out), up to a cap, with a fixed backoff between attempts.
3753    /// `None` (default) = no retry: a failed run is published as-is
3754    /// and (for reconcile cadences) simply re-fires on the next poll
3755    /// tick. See [`Retry`].
3756    #[serde(default, skip_serializing_if = "Option::is_none")]
3757    pub retry: Option<Retry>,
3758}
3759
3760impl OnFailure {
3761    /// `skip_serializing_if` helper — an empty policy is omitted from
3762    /// the wire format entirely.
3763    pub fn is_empty(&self) -> bool {
3764        self.retry.is_none()
3765    }
3766
3767    /// Lower the operator-facing `retry` (humantime backoff) onto the
3768    /// engine vocabulary the agent's executor runs on (backoff in
3769    /// whole seconds). Single seam shared by the backend command
3770    /// builder and the agent's local scheduler so the two stamp the
3771    /// same [`crate::wire::RetrySpec`] onto every Command. Returns
3772    /// `None` when there is no retry policy or the backoff is
3773    /// unparseable (validate() rejects the latter at create time;
3774    /// this stays fail-safe = "no retry" for a hand-edited KV blob
3775    /// rather than panicking on the fire path).
3776    pub fn lowered_retry(&self) -> Option<crate::wire::RetrySpec> {
3777        let r = self.retry.as_ref()?;
3778        let backoff_secs = humantime::parse_duration(&r.backoff).ok()?.as_secs();
3779        Some(crate::wire::RetrySpec {
3780            max: r.max,
3781            backoff_secs,
3782        })
3783    }
3784}
3785
3786/// Fixed-backoff retry policy (#418 Phase 4). `max` is the number of
3787/// *additional* attempts after the first run (so `max: 3` = up to 4
3788/// total executions); `backoff` is the humantime delay slept between
3789/// attempts. The retry happens fire-side (inside `kanade fire` /
3790/// `handle_command`) on every OS for the PoC — the Windows-native
3791/// "restart on failure" Task Scheduler path is deferred to the
3792/// native-delegation phase (#418 decision H).
3793#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, PartialEq, Eq)]
3794pub struct Retry {
3795    /// Max additional attempts after the first failure. Bounded
3796    /// `1..=10` by [`Schedule::validate`] — a typo'd `max: 1000`
3797    /// with a short backoff would otherwise pin a flapping script in
3798    /// a tight loop for the whole window.
3799    pub max: u32,
3800    /// Humantime delay slept between attempts (`"10m"`, `"30s"`).
3801    pub backoff: String,
3802}
3803
3804/// Fleet-wide change-freeze (#418 Phase 5 — the "メンテナンス窓 /
3805/// 変更凍結" gap's global half). Where [`Constraints::window`] is a
3806/// *per-schedule* time-of-day gate, a `Freeze` is a *single, fleet-
3807/// global* "stop all automated change" switch the operator flips
3808/// during an incident or a year-end change-freeze. It lives in its
3809/// own KV singleton ([`crate::kv::KEY_FREEZE`]); when present and
3810/// active, both the backend scheduler and every agent's local
3811/// scheduler skip *every* fire.
3812///
3813/// Shapes:
3814/// * `{}` (no bounds) — frozen indefinitely until the operator
3815///   clears it (incident "big red button").
3816/// * `{ from, until }` — frozen only within `[from, until)`,
3817///   evaluated in `tz` (planned change-freeze; auto-thaws).
3818///
3819/// The KV key being *absent* means "not frozen" — so clearing the
3820/// freeze is a KV delete, and `is_active` only ever runs on a freeze
3821/// the operator actually set.
3822#[derive(Serialize, Deserialize, schemars::JsonSchema, Debug, Clone, Default, PartialEq, Eq)]
3823pub struct Freeze {
3824    /// Frozen from this instant (RFC3339 or bare `YYYY-MM-DD` in
3825    /// `tz`). `None` ⇒ frozen from the beginning of time.
3826    #[serde(default, skip_serializing_if = "Option::is_none")]
3827    pub from: Option<String>,
3828    /// Thawed from this instant on, exclusive. `None` ⇒ frozen with
3829    /// no scheduled end (manual clear required).
3830    #[serde(default, skip_serializing_if = "Option::is_none")]
3831    pub until: Option<String>,
3832    /// Operator-supplied note surfaced on the freeze-skip log and the
3833    /// SPA banner ("year-end change freeze", "INC-1234"). Advisory.
3834    #[serde(default, skip_serializing_if = "Option::is_none")]
3835    pub reason: Option<String>,
3836    /// Timezone the bare-date bounds are evaluated in (RFC3339 bounds
3837    /// carry their own offset). Defaults to host-local like a
3838    /// schedule's `tz`.
3839    #[serde(default)]
3840    pub tz: ScheduleTz,
3841}
3842
3843impl Freeze {
3844    /// Is the fleet frozen at `now`? An empty window (`from`/`until`
3845    /// both absent) is frozen unconditionally; otherwise membership of
3846    /// `[from, until)` in `tz`. Half-open like [`Active::contains`],
3847    /// but **fails CLOSED** on an unparseable bound — a freeze is a
3848    /// safety switch, so a corrupt window (only reachable via a
3849    /// hand-edited KV blob; `validate` rejects it at set time) must
3850    /// mean "frozen", not "fire normally" (coderabbit #472). This is
3851    /// the one deliberate divergence from `active`'s fail-OPEN
3852    /// behaviour, where an unparseable bound dormant-skips a schedule.
3853    pub fn is_active(&self, now: chrono::DateTime<chrono::Utc>) -> bool {
3854        // Parse a bound; an unparseable one short-circuits the whole
3855        // check to `true` (frozen) via the closure's `None` sentinel
3856        // handled below.
3857        let bound = |s: &Option<String>| -> Result<Option<chrono::DateTime<chrono::Utc>>, ()> {
3858            match s.as_deref() {
3859                None => Ok(None),
3860                Some(raw) => Active::parse_bound(raw, self.tz).map(Some).map_err(|_| ()),
3861            }
3862        };
3863        let (from, until) = match (bound(&self.from), bound(&self.until)) {
3864            (Ok(f), Ok(u)) => (f, u),
3865            // Any corrupt bound → fail closed (frozen).
3866            _ => return true,
3867        };
3868        if from.is_some_and(|f| now < f) {
3869            return false;
3870        }
3871        if until.is_some_and(|u| now >= u) {
3872            return false;
3873        }
3874        true
3875    }
3876
3877    /// Reject unparseable bounds / `from >= until` at set time (the
3878    /// API + CLI counterpart to [`Schedule::validate`]).
3879    pub fn validate(&self) -> Result<(), String> {
3880        let from = self
3881            .from
3882            .as_deref()
3883            .map(|s| Active::parse_bound(s, self.tz))
3884            .transpose()
3885            .map_err(|e| e.replace("active:", "freeze:"))?;
3886        let until = self
3887            .until
3888            .as_deref()
3889            .map(|s| Active::parse_bound(s, self.tz))
3890            .transpose()
3891            .map_err(|e| e.replace("active:", "freeze:"))?;
3892        if let (Some(f), Some(u)) = (from, until) {
3893            if f >= u {
3894                return Err(format!(
3895                    "freeze.from ({}) must be strictly before freeze.until ({})",
3896                    self.from.as_deref().unwrap_or_default(),
3897                    self.until.as_deref().unwrap_or_default(),
3898                ));
3899            }
3900        }
3901        Ok(())
3902    }
3903}
3904
3905/// The system-generated poll cadence every reconcile-shaped `when`
3906/// lowers to. Operators never write this: the real inter-run
3907/// spacing is the `every` cooldown; this only bounds "how soon do
3908/// we notice somebody is due" (#418 decision B took the poll
3909/// period away from the operator).
3910pub const POLL_CRON: &str = "0 * * * * *";
3911
3912/// What a [`When`] lowers to — the exact (cron, mode, cooldown)
3913/// trio the pre-#418 engine ran on. Keeping the engine vocabulary
3914/// unchanged is what lets Phase 1 swap the operator surface without
3915/// touching the tick / dedup machinery.
3916pub struct Lowered {
3917    /// Cron handed to `tokio-cron-scheduler` — [`POLL_CRON`] for
3918    /// reconcile shapes, a 6/7-field cron for calendar shapes.
3919    pub cron: String,
3920    /// Dedup semantics for `decide_fire`.
3921    pub mode: ExecMode,
3922    /// Humantime re-arm interval (`None` = succeed once, skip
3923    /// forever).
3924    pub cooldown: Option<String>,
3925    /// Timezone to evaluate `cron` in (#418 Phase 2). The scheduler
3926    /// passes this to `Job::new_async_tz`. Reconcile shapes carry
3927    /// the schedule's tz too even though POLL_CRON is tz-agnostic,
3928    /// so the same value drives the `active`-window check.
3929    pub tz: ScheduleTz,
3930}
3931
3932impl Schedule {
3933    /// The error message if this schedule's `constraints.window` is
3934    /// set but unparseable, else `None`. The scheduler logs this at
3935    /// register time so a fail-closed (never-firing) schedule from a
3936    /// hand-edited KV blob is diagnosable (gemini #452 review).
3937    pub fn bad_window(&self) -> Option<String> {
3938        let w = self.constraints.window.as_deref()?;
3939        Constraints::parse_window(w).err()
3940    }
3941
3942    /// True when this is a `calendar` schedule whose fire time can
3943    /// never fall inside its `constraints.window` — the cron fires,
3944    /// the window check rejects it, and (firing only at that
3945    /// time-of-day) it effectively never runs. An easy misconfig to
3946    /// set up by accident; the scheduler warns at register time
3947    /// (claude #452 review). Reconcile shapes poll every minute, so
3948    /// they always catch the window opening and aren't affected.
3949    pub fn calendar_outside_window(&self) -> bool {
3950        let When::Calendar(c) = &self.when else {
3951            return false;
3952        };
3953        let Some(t) = c.fire_time() else {
3954            return false;
3955        };
3956        matches!(self.constraints.window_contains(t), Some(false))
3957    }
3958
3959    /// Up to `count` future instants this schedule will fire, as
3960    /// absolute UTC, strictly after `now` — the dry-run / preview
3961    /// surface (#418 "ドライラン / プレビュー"). Only **calendar**
3962    /// schedules have discrete fire times; reconcile shapes
3963    /// (`per_pc`/`per_target`) poll every minute gated by cooldown, so
3964    /// they return an empty vec and the caller describes the cadence
3965    /// instead. Occurrences outside the `active.{from,until}` window or
3966    /// the `constraints.window` are **skipped**, so the list reflects
3967    /// when the schedule will ACTUALLY run, not the raw cron ticks.
3968    /// Evaluated in the schedule's `tz`, exactly like the scheduler's
3969    /// `Job::new_async_tz`, and with the same croner config the
3970    /// scheduler / [`Schedule::validate`] use, so a preview can never
3971    /// disagree with a real fire. A schedule that can never fire (a
3972    /// calendar time wholly outside its window, a past one-shot,
3973    /// `enabled: false` is *not* considered here — callers gate on
3974    /// `enabled` separately) yields an empty vec.
3975    pub fn preview_fires(
3976        &self,
3977        now: chrono::DateTime<chrono::Utc>,
3978        count: usize,
3979    ) -> Vec<chrono::DateTime<chrono::Utc>> {
3980        use croner::parser::{CronParser, Seconds};
3981        if !matches!(self.when, When::Calendar(_)) {
3982            return Vec::new();
3983        }
3984        // Same lowering + croner config as `next_calendar_fire` and the
3985        // live scheduler, so a preview can never disagree with a real
3986        // fire. `preview_fires` adds the N-occurrence walk and the
3987        // active / window filtering on top of that single seam.
3988        let lowered = self.lowered();
3989        let Ok(cron) = CronParser::builder()
3990            .seconds(Seconds::Required)
3991            .dom_and_dow(true)
3992            .build()
3993            .parse(&lowered.cron)
3994        else {
3995            return Vec::new();
3996        };
3997        let accept = |utc: chrono::DateTime<chrono::Utc>| {
3998            self.active.contains(utc, self.tz) && self.constraints.allows(utc, self.tz)
3999        };
4000        match self.tz {
4001            ScheduleTz::Utc => Self::next_occurrences(&cron, now, count, accept),
4002            ScheduleTz::Local => {
4003                Self::next_occurrences(&cron, now.with_timezone(&chrono::Local), count, accept)
4004            }
4005        }
4006    }
4007
4008    /// Walk croner forward from `after` collecting up to `count`
4009    /// accepted occurrences (converted to UTC). Generic over the tz the
4010    /// cron is evaluated in so `preview_fires` can run it in either
4011    /// `Utc` or `Local` without duplicating the loop.
4012    fn next_occurrences<Tz>(
4013        cron: &croner::Cron,
4014        after: chrono::DateTime<Tz>,
4015        count: usize,
4016        accept: impl Fn(chrono::DateTime<chrono::Utc>) -> bool,
4017    ) -> Vec<chrono::DateTime<chrono::Utc>>
4018    where
4019        Tz: chrono::TimeZone,
4020    {
4021        // Bound the scan so an `active`/window dead-end (every future
4022        // tick rejected) can't spin forever: ~4096 raw ticks covers
4023        // >10y of a daily calendar while staying instant for croner.
4024        const SCAN_CAP: usize = 4096;
4025        let mut out = Vec::with_capacity(count.min(SCAN_CAP));
4026        let mut cursor = after;
4027        let mut scanned = 0usize;
4028        while out.len() < count && scanned < SCAN_CAP {
4029            scanned += 1;
4030            let Ok(next) = cron.find_next_occurrence(&cursor, false) else {
4031                break;
4032            };
4033            let utc = next.with_timezone(&chrono::Utc);
4034            if accept(utc) {
4035                out.push(utc);
4036            }
4037            // `find_next_occurrence(.., inclusive = false)` already
4038            // advances strictly past `cursor`, so handing it `next`
4039            // verbatim gets the following occurrence — no manual +1s
4040            // nudge (and `DateTime<Tz>` is `Copy`, so no clone).
4041            cursor = next;
4042        }
4043        out
4044    }
4045
4046    /// Lower the operator-facing `when` onto the engine vocabulary.
4047    /// Single seam shared by the backend scheduler and the agent's
4048    /// local scheduler so the two can never drift.
4049    pub fn lowered(&self) -> Lowered {
4050        let tz = self.tz;
4051        match &self.when {
4052            When::PerPc(p) => Lowered {
4053                cron: POLL_CRON.into(),
4054                mode: ExecMode::OncePerPc,
4055                cooldown: p.cooldown(),
4056                tz,
4057            },
4058            When::PerTarget(p) => Lowered {
4059                cron: POLL_CRON.into(),
4060                mode: ExecMode::OncePerTarget,
4061                cooldown: p.cooldown(),
4062                tz,
4063            },
4064            // `to_cron` only fails on a malformed `at` (rejected by
4065            // validate() at create time). For a hand-edited KV blob
4066            // that slipped past, emit a deliberately-invalid cron so
4067            // register()'s Job::new_async_tz fails → warn+skip,
4068            // rather than firing at the wrong time.
4069            When::Calendar(c) => Lowered {
4070                cron: c
4071                    .to_cron()
4072                    .unwrap_or_else(|_| "# invalid calendar at".into()),
4073                mode: ExecMode::EveryTick,
4074                cooldown: None,
4075                tz,
4076            },
4077            // Event triggers have no cron — the agent fires them from an
4078            // OS event source. The `# event-trigger` cron is never
4079            // registered (the scheduler branches on `is_event()` first),
4080            // but keep it deliberately-invalid as a belt-and-suspenders
4081            // so a stray registration would fail rather than misfire.
4082            When::On(_) => Lowered {
4083                cron: "# event-trigger (no cron)".into(),
4084                mode: ExecMode::Event,
4085                cooldown: None,
4086                tz,
4087            },
4088        }
4089    }
4090
4091    /// True when this schedule fires from an OS event (`when: { on }`)
4092    /// rather than a clock — the agent skips `tokio-cron` registration
4093    /// for these and drives them from boot / session-change instead.
4094    pub fn is_event(&self) -> bool {
4095        matches!(self.when, When::On(_))
4096    }
4097
4098    /// The OS event triggers this schedule listens for, or `&[]` when it
4099    /// is not an event schedule.
4100    pub fn event_triggers(&self) -> &[OnTrigger] {
4101        match &self.when {
4102            When::On(t) => t,
4103            _ => &[],
4104        }
4105    }
4106
4107    /// The next absolute (UTC) time this schedule fires, or `None` when
4108    /// it has no discrete upcoming fire to preview.
4109    ///
4110    /// Used by the KLP `maintenance.list` preview ("what's about to
4111    /// happen on my PC", SPEC §2.1). Returns `None` for:
4112    ///
4113    /// - reconcile shapes (`per_pc` / `per_target`) — they lower to the
4114    ///   every-minute [`POLL_CRON`] and re-converge state continuously,
4115    ///   so "next fire" is always ~60s away and means nothing to a user
4116    ///   previewing upcoming maintenance;
4117    /// - a calendar schedule whose lowered cron won't parse (a
4118    ///   hand-edited KV blob that slipped past [`Schedule::validate`]);
4119    /// - a cron with no future occurrence.
4120    ///
4121    /// The wall-clock fire is evaluated in the schedule's own `tz`
4122    /// (matching the live tick's `Job::new_async_tz`) then normalised
4123    /// to UTC for the wire. `inclusive = false`: strictly the *next*
4124    /// fire after `now`, never one matching the current instant.
4125    pub fn next_calendar_fire(
4126        &self,
4127        now: chrono::DateTime<chrono::Utc>,
4128    ) -> Option<chrono::DateTime<chrono::Utc>> {
4129        if !matches!(self.when, When::Calendar(_)) {
4130            return None;
4131        }
4132        let lowered = self.lowered();
4133        // Same parser configuration tokio-cron-scheduler 0.15 uses
4134        // internally, so this can never compute a fire the live
4135        // scheduler wouldn't (seconds required, DOM-and-DOW honored).
4136        let cron = croner::parser::CronParser::builder()
4137            .seconds(croner::parser::Seconds::Required)
4138            .dom_and_dow(true)
4139            .build()
4140            .parse(&lowered.cron)
4141            .ok()?;
4142        match lowered.tz {
4143            ScheduleTz::Utc => cron.find_next_occurrence(&now, false).ok(),
4144            ScheduleTz::Local => {
4145                let now_local = now.with_timezone(&chrono::Local);
4146                cron.find_next_occurrence(&now_local, false)
4147                    .ok()
4148                    .map(|t| t.with_timezone(&chrono::Utc))
4149            }
4150        }
4151    }
4152
4153    /// Cross-field semantic checks that don't fit pure serde derive
4154    /// — the [`Manifest::validate`] counterpart (#418 decision F;
4155    /// pre-Phase-1 a broken schedule was accepted at create time
4156    /// and silently warn-skipped at tick time). Run at every create
4157    /// site: `kanade schedule create` (client-side) and
4158    /// `POST /api/schedules`. The job_id-exists check lives in the
4159    /// API handler instead — it needs the JOBS KV.
4160    pub fn validate(&self) -> Result<(), String> {
4161        if matches!(self.runs_on, RunsOn::Agent) && matches!(self.when, When::PerTarget(_)) {
4162            return Err(
4163                "when.per_target needs fleet-wide completion data and is backend-only; \
4164                 it cannot be combined with runs_on: agent (each agent self-schedules, \
4165                 so per-target dedup would be deduping across a target of 1)"
4166                    .into(),
4167            );
4168        }
4169        // #418 event triggers: the agent owns the OS event source
4170        // (boot / session-change), so `when: { on }` is agent-only and
4171        // needs at least one trigger.
4172        if let When::On(triggers) = &self.when {
4173            if !matches!(self.runs_on, RunsOn::Agent) {
4174                return Err(
4175                    "when.on (OS event trigger) is fired by the agent's own event \
4176                     source, so it requires runs_on: agent"
4177                        .into(),
4178                );
4179            }
4180            if triggers.is_empty() {
4181                return Err(
4182                    "when.on must list at least one trigger (e.g. [startup, logon])".into(),
4183                );
4184            }
4185        }
4186        if let Some(cd) = self.lowered().cooldown.as_deref() {
4187            humantime::parse_duration(cd)
4188                .map_err(|e| format!("when.every: invalid duration '{cd}': {e}"))?;
4189        }
4190        if let When::Calendar(c) = &self.when {
4191            // Lower the calendar form to its cron (catches a bad `at`
4192            // and the date+days conflict), then validate that cron
4193            // with the same parser configuration tokio-cron-scheduler
4194            // 0.15 uses internally (croner, seconds required,
4195            // DOM-and-DOW both honored, year optional) — create-time
4196            // validation can never accept what register() rejects.
4197            let cron = c.to_cron()?;
4198            croner::parser::CronParser::builder()
4199                .seconds(croner::parser::Seconds::Required)
4200                .dom_and_dow(true)
4201                .build()
4202                .parse(&cron)
4203                .map_err(|e| format!("when.at lowered to invalid cron '{cron}': {e}"))?;
4204        }
4205        // The other humantime strings on the schedule (claude #419
4206        // review): runtime degrades gracefully on both (bad jitter →
4207        // silent no-op, bad starting_deadline → warn + skipped tick),
4208        // but "rejected at create time" should cover every field the
4209        // operator can typo, not just `when`.
4210        if let Some(j) = &self.plan.jitter {
4211            humantime::parse_duration(j)
4212                .map_err(|e| format!("jitter: invalid duration '{j}': {e}"))?;
4213        }
4214        if let Some(sd) = &self.starting_deadline {
4215            humantime::parse_duration(sd)
4216                .map_err(|e| format!("starting_deadline: invalid duration '{sd}': {e}"))?;
4217        }
4218        let from = self
4219            .active
4220            .from
4221            .as_deref()
4222            .map(|s| Active::parse_bound(s, self.tz))
4223            .transpose()?;
4224        let until = self
4225            .active
4226            .until
4227            .as_deref()
4228            .map(|s| Active::parse_bound(s, self.tz))
4229            .transpose()?;
4230        if let (Some(f), Some(u)) = (from, until) {
4231            if f >= u {
4232                return Err(format!(
4233                    "active.from ({}) must be strictly before active.until ({})",
4234                    self.active.from.as_deref().unwrap_or_default(),
4235                    self.active.until.as_deref().unwrap_or_default(),
4236                ));
4237            }
4238        }
4239        // #418 Phase 3: a bad maintenance window is rejected at create
4240        // time (parse_window also catches equal bounds).
4241        if let Some(w) = self.constraints.window.as_deref() {
4242            Constraints::parse_window(w)?;
4243        }
4244        // #418 holiday exclusion: reject a malformed skip date at create
4245        // time so the fail-closed `allows` path only ever bites a
4246        // hand-edited KV blob, not a fresh `kanade schedule create`.
4247        if let Some(err) = self.constraints.bad_skip_date() {
4248            return Err(err);
4249        }
4250        // #418: constraints.max_concurrent is a central running-instance
4251        // cap, so it needs the backend's counter — reject it on
4252        // runs_on: agent (decision E), and reject a meaningless 0.
4253        if let Some(mc) = self.constraints.max_concurrent {
4254            // Check the structural incompatibility (agent has no central
4255            // counter) before the value range, so a `max_concurrent: 0`
4256            // + `runs_on: agent` combo reports the more fundamental
4257            // problem first (claude #542).
4258            if matches!(self.runs_on, RunsOn::Agent) {
4259                return Err(
4260                    "constraints.max_concurrent needs a central counter and is backend-only; \
4261                     it cannot be combined with runs_on: agent (each agent self-schedules, \
4262                     so there is no fleet-wide count to cap against)"
4263                        .into(),
4264                );
4265            }
4266            if mc == 0 {
4267                return Err(
4268                    "constraints.max_concurrent must be >= 1 (0 would never fire; \
4269                     omit it for no cap)"
4270                        .into(),
4271                );
4272            }
4273        }
4274        // #418 Phase 4: a bad on_failure.retry is rejected at create
4275        // time — backoff must be valid humantime, and max is bounded
4276        // so a typo can't pin a flapping script in a tight loop.
4277        if let Some(r) = &self.on_failure.retry {
4278            let backoff = humantime::parse_duration(&r.backoff).map_err(|e| {
4279                format!(
4280                    "on_failure.retry.backoff: invalid duration '{}': {e}",
4281                    r.backoff
4282                )
4283            })?;
4284            // The wire form lowers backoff to whole seconds, so a
4285            // sub-second value would silently become a 0s no-wait
4286            // (coderabbit #466). Reject it rather than honour a backoff
4287            // the operator can't actually get.
4288            if backoff.as_secs() < 1 {
4289                return Err(format!(
4290                    "on_failure.retry.backoff must be >= 1s (got '{}'); sub-second backoffs \
4291                     round to 0 on the wire",
4292                    r.backoff
4293                ));
4294            }
4295            if !(1..=10).contains(&r.max) {
4296                return Err(format!(
4297                    "on_failure.retry.max must be 1..=10 (got {}); it counts additional \
4298                     attempts after the first run",
4299                    r.max
4300                ));
4301            }
4302        }
4303        Ok(())
4304    }
4305}
4306
4307fn default_true() -> bool {
4308    true
4309}