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214 lines
8.7 KiB
Go
214 lines
8.7 KiB
Go
package registry
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import (
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"context"
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"log"
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"os"
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"strconv"
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"time"
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"github.com/Molecule-AI/molecule-monorepo/platform/internal/db"
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"github.com/Molecule-AI/molecule-monorepo/platform/internal/events"
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"github.com/Molecule-AI/molecule-monorepo/platform/internal/models"
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)
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// ProvisionTimeoutEmitter is the narrow broadcaster dependency the sweeper
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// needs. Defined locally so the registry package stays event-bus agnostic
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// (same pattern as OfflineHandler in healthsweep.go).
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type ProvisionTimeoutEmitter interface {
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RecordAndBroadcast(ctx context.Context, eventType string, workspaceID string, payload interface{}) error
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}
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// DefaultProvisioningTimeout is how long a workspace may sit in
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// status='provisioning' before the sweeper flips it to 'failed'.
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// Default for non-hermes runtimes (claude-code, codex, openclaw, etc.)
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// which cold-boot in <5 min. The container-launch path
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// has its own 3-minute context timeout (provisioner.ProvisionTimeout)
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// but that only bounds the docker API call — a container that started
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// but crashes before /registry/register never triggers that path and
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// would sit in provisioning forever. 10 minutes covers pathological
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// image-pull + user-data execution on a cold EC2 worker while still
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// getting well ahead of the "15+ minute" stuck state users see in
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// production.
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const DefaultProvisioningTimeout = 10 * time.Minute
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// HermesProvisioningTimeout matches the CP bootstrap-watcher's
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// runtime-aware deadline (cp#245) for hermes workspaces: 25 min watcher
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// + 5 min sweep slack. Hermes cold-boot does apt + uv + Python venv +
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// Node + hermes-agent install — 13–25 min on slow apt mirrors is
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// normal. Without this, the sweep would flip the workspace to 'failed'
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// at 10 min while the watcher (and the workspace itself) is still
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// happily progressing through install. Issue #1843 follow-up: a
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// healthy 10.5-min hermes boot was killed by the 10-min sweep on
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// 2026-04-26, breaking #2061's E2E.
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const HermesProvisioningTimeout = 30 * time.Minute
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// DefaultProvisionSweepInterval is how often the sweeper polls. Same cadence
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// as the hibernation monitor — cheap and bounded by the provisioning-state
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// query which hits the primary key / status partial index.
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const DefaultProvisionSweepInterval = 30 * time.Second
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// RuntimeTimeoutLookup returns the per-runtime provision timeout in
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// seconds when a template's config.yaml declared
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// `runtime_config.provision_timeout_seconds`, else zero (= "no override,
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// fall through to runtime defaults below"). Same shape as
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// runtimeProvisionTimeoutsCache.get in handlers — wired through main.go
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// so this package stays template-discovery agnostic.
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//
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// Why an interface instead of importing the cache directly: registry
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// already sits below handlers in the import graph (handlers → registry,
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// not the reverse). A function-typed argument keeps that flow.
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type RuntimeTimeoutLookup func(runtime string) int
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// provisioningTimeoutFor picks the per-runtime sweep deadline. Resolution
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// order:
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//
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// 1. PROVISION_TIMEOUT_SECONDS env — global override, ops-debug only.
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// 2. Template manifest override (lookup) — what the canvas spinner
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// also reads via #2054 phase 2. Without this, a template that
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// declared `runtime_config.provision_timeout_seconds: 900` would
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// still get killed by the sweeper at the 10-min hardcoded floor —
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// a real wiring gap that drove every claude-code burst on a cold
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// EC2 to false-positive timeout.
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// 3. Hermes special-case (CP bootstrap-watcher 25 min + 5 min slack).
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// 4. DefaultProvisioningTimeout (10 min) for everything else.
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//
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// lookup may be nil (during package tests, or before main.go has wired
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// it) — falls through to the legacy hermes/default split.
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func provisioningTimeoutFor(runtime string, lookup RuntimeTimeoutLookup) time.Duration {
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if v := os.Getenv("PROVISION_TIMEOUT_SECONDS"); v != "" {
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if n, err := strconv.Atoi(v); err == nil && n > 0 {
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return time.Duration(n) * time.Second
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}
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}
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if lookup != nil {
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if secs := lookup(runtime); secs > 0 {
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return time.Duration(secs) * time.Second
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}
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}
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if runtime == "hermes" {
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return HermesProvisioningTimeout
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}
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return DefaultProvisioningTimeout
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}
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// StartProvisioningTimeoutSweep periodically scans for workspaces stuck in
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// `status='provisioning'` past the timeout window, flips them to `failed`,
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// and broadcasts a WORKSPACE_PROVISION_TIMEOUT event so the canvas can
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// render a fail-state instead of the indefinite cosmetic "Provisioning
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// Timeout" banner.
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//
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// The sweep is idempotent: the UPDATE's WHERE clause re-checks both status
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// and age under the same row lock, so a workspace that raced to `online` or
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// was restarted while the sweep was scanning will not get flipped.
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func StartProvisioningTimeoutSweep(ctx context.Context, emitter ProvisionTimeoutEmitter, interval time.Duration, lookup RuntimeTimeoutLookup) {
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if emitter == nil {
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log.Println("Provision-timeout sweep: emitter is nil — skipping (no one to broadcast to)")
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return
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}
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if interval <= 0 {
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interval = DefaultProvisionSweepInterval
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}
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ticker := time.NewTicker(interval)
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defer ticker.Stop()
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log.Printf("Provision-timeout sweep: started (interval=%s, timeout=%s default / %s hermes / per-runtime manifest override=%v)",
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interval, DefaultProvisioningTimeout, HermesProvisioningTimeout, lookup != nil)
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for {
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select {
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case <-ctx.Done():
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return
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case <-ticker.C:
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sweepStuckProvisioning(ctx, emitter, lookup)
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}
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}
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}
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// sweepStuckProvisioning is one tick of the sweeper. Exported-for-test via
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// the package boundary: keep all time.Now reads inside so tests can drive it
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// deterministically by seeding updated_at rather than manipulating time.
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//
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// Runtime-aware: the per-workspace timeout depends on `runtime`. Hermes
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// gets 30 min (matching the CP bootstrap-watcher's 25-min deadline + 5
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// min slack); everything else gets 10 min. Without this distinction a
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// healthy hermes cold-boot at 10–25 min got killed mid-install by this
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// sweep, leaving an incoherent "marked failed but actually working"
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// state. See bootstrap_watcher.go's bootstrapTimeoutFn for the
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// canonical CP-side gating.
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func sweepStuckProvisioning(ctx context.Context, emitter ProvisionTimeoutEmitter, lookup RuntimeTimeoutLookup) {
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// We can't pre-filter by age in SQL because the threshold depends
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// on the row's runtime. Pull every provisioning row + its runtime
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// + its age, evaluate per-row in Go. Still cheap — the
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// status='provisioning' row count is bounded (workspaces in
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// flight, not historical) and the partial index on status keeps
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// it fast.
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rows, err := db.DB.QueryContext(ctx, `
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SELECT id, COALESCE(runtime, ''), EXTRACT(EPOCH FROM (now() - updated_at))::int
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FROM workspaces
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WHERE status = 'provisioning'
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`)
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if err != nil {
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log.Printf("Provision-timeout sweep: query error: %v", err)
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return
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}
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defer rows.Close()
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type candidate struct {
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id string
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runtime string
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ageSec int
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}
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var ids []candidate
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for rows.Next() {
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var c candidate
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if err := rows.Scan(&c.id, &c.runtime, &c.ageSec); err == nil {
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ids = append(ids, c)
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}
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}
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if err := rows.Err(); err != nil {
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log.Printf("Provision-timeout sweep: rows error: %v", err)
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}
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for _, c := range ids {
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timeout := provisioningTimeoutFor(c.runtime, lookup)
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timeoutSec := int(timeout / time.Second)
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if c.ageSec < timeoutSec {
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continue
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}
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msg := "provisioning timed out — container started but never called /registry/register. Check container logs and network connectivity to the platform."
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res, err := db.DB.ExecContext(ctx, `
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UPDATE workspaces
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SET status = $4,
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last_sample_error = $2,
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updated_at = now()
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WHERE id = $1
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AND status = 'provisioning'
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AND updated_at < now() - ($3 || ' seconds')::interval
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`, c.id, msg, timeoutSec, models.StatusFailed)
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if err != nil {
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log.Printf("Provision-timeout sweep: failed to flip %s to failed: %v", c.id, err)
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continue
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}
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affected, _ := res.RowsAffected()
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if affected == 0 {
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// Raced with restart / register — no harm, just skip.
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continue
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}
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log.Printf("Provision-timeout sweep: %s (runtime=%q) stuck in provisioning > %s — marked failed", c.id, c.runtime, timeout)
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// Emit as WORKSPACE_PROVISION_FAILED, not _TIMEOUT, because the
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// canvas event handler only flips node state on the _FAILED case.
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// A separate event type was considered but the UI reaction is
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// identical either way — operators who need to distinguish can
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// tell from the `source` payload field.
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if emitErr := emitter.RecordAndBroadcast(ctx, string(events.EventWorkspaceProvisionFailed), c.id, map[string]interface{}{
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"error": msg,
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"timeout_secs": timeoutSec,
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"runtime": c.runtime,
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"source": "provision_timeout_sweep",
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}); emitErr != nil {
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log.Printf("Provision-timeout sweep: broadcast failed for %s: %v", c.id, emitErr)
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}
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}
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}
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