Files
LocalAI/core/services/worker/lifecycle.go
T
mudler's LocalAI [bot]andEttore Di Giacinto 82c191afad fix(distributed): keep model replicas config-consistent (#11664)
* docs: design configurable copy buffering

Document the context-aware copy buffer option and its validation plan.

Assisted-by: Codex:gpt-5

* docs: design durable distributed staging operations

Assisted-by: Codex:gpt-5

* docs: design distributed model config revisions

Assisted-by: Codex:GPT-5 [apply_patch] [exec_command]

* feat(config): add stable model revisions

Hash typed model configuration and effective protobuf options deterministically for distributed revision comparisons.

Assisted-by: Codex:GPT-5 [apply_patch] [exec_command]

* feat(worker): acknowledge exact model stops

Assisted-by: Codex:GPT-5 [apply_patch] [exec_command]

* feat(nodes): track model config revisions

Assisted-by: Codex:GPT-5 [apply_patch]

* fix(distributed): retry quarantined model cleanup

Stop quarantined replicas by exact process identity, retain failed cleanup as durable capped retries, and compare-and-delete only the claimed registry row. Process one sufficiently leased row at a time so multiple frontends cannot duplicate slow cleanup work.

Assisted-by: Codex:gpt-5

* fix(distributed): bind loads to config revisions

Assisted-by: Codex: GPT-5 [OpenAI Codex]

* fix(modeladmin): apply config revisions consistently

Route model edits, patches, state changes, deletion, and peer refreshes through the same revision lifecycle. Quarantine stale replicas before exact cleanup and report durable pending cleanup without failing successful config writes.

Assisted-by: Codex: GPT-5 [OpenAI Codex]

* feat(distributed): expose model config revision state

Document replica revision observability and durable cleanup behavior. Keep pending cleanup explicit in model mutation responses and verify endpoint contracts expose revision state without serialized load options.

Assisted-by: Codex:GPT-5 [OpenAI Codex]

* test(distributed): cover model revision convergence

Exercise cross-frontend quarantine, stale replay rejection, exact cleanup retry, worker re-registration, and current-generation replica convergence against the distributed PostgreSQL harness.

Assisted-by: Codex:gpt-5

* fix(distributed): pass config revision CI checks

Keep configured gallery sources out of authoritative runtime snapshots only after validating their real schema, and harden rollback snapshots against symlink races and non-regular files.

Assisted-by: Codex: GPT-5 [OpenAI Codex]

---------

Co-authored-by: Ettore Di Giacinto <mudler@localai.io>
2026-08-22 22:44:03 +02:00

377 lines
15 KiB
Go

package worker
import (
"context"
"encoding/json"
"fmt"
"maps"
"net"
"slices"
"syscall"
"github.com/mudler/LocalAI/core/gallery"
"github.com/mudler/LocalAI/core/services/messaging"
grpc "github.com/mudler/LocalAI/pkg/grpc"
"github.com/mudler/xlog"
)
// subscribeLifecycleEvents wires every NATS subject this worker accepts to its
// per-event handler method. Each handler lives on *backendSupervisor below;
// keeping the dispatcher to a single line per subject makes adding a new
// subject a 2-line patch (one line here, one new method) instead of grafting
// onto a monolith.
func (s *backendSupervisor) subscribeLifecycleEvents() error {
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeBackendInstall(s.nodeID), s.handleBackendInstall); err != nil {
return fmt.Errorf("subscribing to backend install events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeBackendUpgrade(s.nodeID), s.handleBackendUpgrade); err != nil {
return fmt.Errorf("subscribing to backend upgrade events: %w", err)
}
if _, err := s.nats.Subscribe(messaging.SubjectNodeBackendStop(s.nodeID), s.handleBackendStop); err != nil {
return fmt.Errorf("subscribing to backend stop events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeBackendDelete(s.nodeID), s.handleBackendDelete); err != nil {
return fmt.Errorf("subscribing to backend delete events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeBackendList(s.nodeID), s.handleBackendList); err != nil {
return fmt.Errorf("subscribing to backend list events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeModelsRunning(s.nodeID), s.handleModelsRunning); err != nil {
return fmt.Errorf("subscribing to models running events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeModelUnload(s.nodeID), s.handleModelUnload); err != nil {
return fmt.Errorf("subscribing to model unload events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeModelStop(s.nodeID), s.handleModelStop); err != nil {
return fmt.Errorf("subscribing to model stop events: %w", err)
}
if _, err := s.nats.SubscribeReply(messaging.SubjectNodeModelDelete(s.nodeID), s.handleModelDelete); err != nil {
return fmt.Errorf("subscribing to model delete events: %w", err)
}
if _, err := s.nats.Subscribe(messaging.SubjectNodeStop(s.nodeID), s.handleNodeStop); err != nil {
return fmt.Errorf("subscribing to node stop events: %w", err)
}
return nil
}
func (s *backendSupervisor) handleModelStop(data []byte, reply func([]byte)) {
var req messaging.ModelStopRequest
if err := json.Unmarshal(data, &req); err != nil {
replyJSON(reply, messaging.ModelStopReply{Error: fmt.Sprintf("invalid request: %v", err)})
return
}
replyJSON(reply, s.stopModelExact(req))
}
// handleBackendInstall is the NATS callback for backend.install — install
// backend (idempotent: skips download if binary exists on disk) + start gRPC
// process (request-reply).
//
// Each request runs in its own goroutine so that a slow install on one
// backend does NOT head-of-line-block install requests for unrelated
// backends arriving on the same subscription. Per-backend serialization
// is provided by lockBackend so two requests targeting the same on-disk
// artifact don't race the gallery directory.
func (s *backendSupervisor) handleBackendInstall(data []byte, reply func([]byte)) {
go func() {
xlog.Info("Received NATS backend.install event")
var req messaging.BackendInstallRequest
if err := json.Unmarshal(data, &req); err != nil {
resp := messaging.BackendInstallReply{Success: false, Error: fmt.Sprintf("invalid request: %v", err)}
replyJSON(reply, resp)
return
}
release := s.lockBackend(req.Backend)
defer release()
// req.Force=true is the legacy path used by pre-2026-05-08 masters
// that don't know about backend.upgrade. Honor it so a rolling
// update with new worker + old master keeps working; new masters
// send to backend.upgrade instead.
addr, err := s.installBackend(req, req.Force)
if err != nil {
xlog.Error("Failed to install backend via NATS", "error", err)
resp := messaging.BackendInstallReply{Success: false, Error: err.Error()}
replyJSON(reply, resp)
return
}
advertiseAddr := addr
advAddr := s.cfg.advertiseAddr()
if advAddr != addr {
_, port, err := net.SplitHostPort(addr)
if err != nil {
xlog.Error("Failed to parse backend listen address; using it unchanged", "addr", addr, "error", err)
} else if advertiseHost, _, err := net.SplitHostPort(advAddr); err != nil {
xlog.Error("Failed to parse worker advertise address; using backend listen address", "addr", advAddr, "error", err)
} else {
advertiseAddr = net.JoinHostPort(advertiseHost, port)
}
}
resp := messaging.BackendInstallReply{Success: true, Address: advertiseAddr}
replyJSON(reply, resp)
}()
}
// handleBackendUpgrade is the NATS callback for backend.upgrade — force-reinstall
// a backend (request-reply). Lives on its own subscription so a multi-minute
// download here does NOT block the install fast-path subscription on the same
// worker.
func (s *backendSupervisor) handleBackendUpgrade(data []byte, reply func([]byte)) {
go func() {
xlog.Info("Received NATS backend.upgrade event")
var req messaging.BackendUpgradeRequest
if err := json.Unmarshal(data, &req); err != nil {
resp := messaging.BackendUpgradeReply{Success: false, Error: fmt.Sprintf("invalid request: %v", err)}
replyJSON(reply, resp)
return
}
release := s.lockBackend(req.Backend)
defer release()
// stopped is meaningful even on the error paths: it lists processes
// already terminated (and ports already recycled) before the failure, so
// the controller must drop those rows regardless of the outcome.
stopped, err := s.upgradeBackend(req)
if err != nil {
xlog.Error("Failed to upgrade backend via NATS", "error", err)
replyJSON(reply, messaging.BackendUpgradeReply{
Success: false,
Error: err.Error(),
StoppedProcessKeys: stopped,
ReportsStoppedProcesses: true,
})
return
}
replyJSON(reply, messaging.BackendUpgradeReply{
Success: true,
StoppedProcessKeys: stopped,
ReportsStoppedProcesses: true,
})
}()
}
// handleBackendStop is the NATS callback for backend.stop — stop a specific
// backend process (fire-and-forget, no reply expected).
func (s *backendSupervisor) handleBackendStop(data []byte) {
req, stopAll, err := decodeBackendStopRequest(data)
if err != nil {
xlog.Error("Ignoring malformed NATS backend.stop event", "error", err)
return
}
if stopAll {
xlog.Info("Received NATS backend.stop event (all)", "force", req.Force)
s.stopAllBackends(req.Force)
return
}
xlog.Info("Received NATS backend.stop event", "backend", req.Backend, "force", req.Force)
// The identifier may be a backend name, a model name, or an exact
// modelID#replica key depending on the publisher; resolveStopTargets
// handles all three. stopBackend alone resolves only the model meanings.
for _, key := range s.resolveStopTargets(req.Backend) {
if err := s.stopBackendExact(key, req.Force); err != nil {
xlog.Error("Failed to stop backend process", "backend", req.Backend, "processKey", key, "error", err)
}
}
}
func decodeBackendStopRequest(data []byte) (messaging.BackendStopRequest, bool, error) {
if len(data) == 0 {
return messaging.BackendStopRequest{}, true, nil
}
var req messaging.BackendStopRequest
if err := json.Unmarshal(data, &req); err != nil {
return messaging.BackendStopRequest{}, false, fmt.Errorf("decoding backend stop request: %w", err)
}
return req, req.Backend == "", nil
}
// handleBackendDelete is the NATS callback for backend.delete — stop the
// backend process if running, then remove its files from disk (request-reply).
func (s *backendSupervisor) handleBackendDelete(data []byte, reply func([]byte)) {
var req messaging.BackendDeleteRequest
if err := json.Unmarshal(data, &req); err != nil {
resp := messaging.BackendDeleteReply{Success: false, Error: fmt.Sprintf("invalid request: %v", err)}
replyJSON(reply, resp)
return
}
xlog.Info("Received NATS backend.delete event", "backend", req.Backend)
// Resolve the backend's identity (concrete name + alias) BEFORE touching
// the filesystem: DeleteBackendFromSystem removes the metadata.json that
// carries the alias, and a model loaded via the alias records the alias as
// its process's backend name.
identity := s.backendIdentity(req.Backend)
// Stop every process started for this backend. Processes are keyed by
// modelID#replica, so the lookup must match the recorded backend name — a
// lookup by backend name alone resolved to nothing and left the process
// running with its directory deleted underneath it.
keys := s.resolveProcessKeysForBackend(identity)
if len(keys) == 0 {
// Not an error: deleting a backend that was never loaded is routine.
// But log it — silence here is what made the orphan case invisible.
xlog.Info("Deleting backend with no matching running process",
"backend", req.Backend, "identity", slices.Sorted(maps.Keys(identity)))
}
// Accumulate the processes we actually terminate. Every stop hands a gRPC
// port back to this worker's allocator while the controller still holds a
// NodeModel row for that address, so the controller needs these keys to
// drop those rows before the port is re-bound by an unrelated backend. A
// key is appended only after its process is confirmed gone, which is what
// lets the controller trust the list on the partial-failure replies below.
stopped := make([]string, 0, len(keys))
deleteReply := func(success bool, errMsg string) messaging.BackendDeleteReply {
return messaging.BackendDeleteReply{
Success: success,
Error: errMsg,
StoppedProcessKeys: stopped,
ReportsStoppedProcesses: true,
}
}
for _, key := range keys {
if err := s.stopBackendExact(key, false); err != nil {
// We knew about this process and could not kill it. Replying
// success would repeat the original defect: the operator is told
// "backend deleted" while the process keeps serving requests.
xlog.Error("Failed to stop backend process during delete; aborting delete",
"backend", req.Backend, "processKey", key, "error", err)
replyJSON(reply, deleteReply(false, fmt.Sprintf("could not stop running process %s: %v", key, err)))
return
}
stopped = append(stopped, key)
}
// Delete the backend files
if err := gallery.DeleteBackendFromSystem(s.systemState, req.Backend); err != nil {
xlog.Warn("Failed to delete backend files", "backend", req.Backend, "error", err)
replyJSON(reply, deleteReply(false, err.Error()))
return
}
// Re-register backends after deletion
if err := gallery.RegisterBackends(s.systemState, s.ml); err != nil {
xlog.Error("Failed to refresh registered backends after deletion", "backend", req.Backend, "error", err)
replyJSON(reply, deleteReply(false, err.Error()))
return
}
replyJSON(reply, deleteReply(true, ""))
}
// handleBackendList is the NATS callback for backend.list — reply with the
// installed backends from this node's gallery (request-reply).
func (s *backendSupervisor) handleBackendList(data []byte, reply func([]byte)) {
xlog.Info("Received NATS backend.list event")
backends, err := gallery.ListSystemBackends(s.systemState)
if err != nil {
resp := messaging.BackendListReply{Error: err.Error()}
replyJSON(reply, resp)
return
}
var infos []messaging.NodeBackendInfo
for name, b := range backends {
// Drop synthetic alias rows: ListSystemBackends emits an entry
// keyed by the alias name that re-uses the chosen concrete's
// metadata. The frontend can't reconstruct that aliasing
// faithfully from a flat NodeBackendInfo, and for upgrade
// detection it would surface as a phantom `<alias>` install
// pointing at the dev concrete's URI/digest — tricking the
// upgrade check into flagging the non-dev gallery entry of the
// same alias. Concrete and meta entries always have
// `name == b.Metadata.Name`, so this drops aliases only.
if b.Metadata != nil && b.Metadata.Name != "" && name != b.Metadata.Name {
continue
}
info := messaging.NodeBackendInfo{
Name: name,
IsSystem: b.IsSystem,
IsMeta: b.IsMeta,
}
if b.Metadata != nil {
info.InstalledAt = b.Metadata.InstalledAt
info.GalleryURL = b.Metadata.GalleryURL
info.Version = b.Metadata.Version
info.URI = b.Metadata.URI
info.Digest = b.Metadata.Digest
}
infos = append(infos, info)
}
resp := messaging.BackendListReply{Backends: infos}
replyJSON(reply, resp)
}
// handleModelUnload is the NATS callback for model.unload — call gRPC Free()
// to release GPU memory without killing the backend process (request-reply).
func (s *backendSupervisor) handleModelUnload(data []byte, reply func([]byte)) {
xlog.Info("Received NATS model.unload event")
var req messaging.ModelUnloadRequest
if err := json.Unmarshal(data, &req); err != nil {
resp := messaging.ModelUnloadReply{Success: false, Error: fmt.Sprintf("invalid request: %v", err)}
replyJSON(reply, resp)
return
}
// Find the backend address for this model's backend type
// The request includes an Address field if the router knows which process to target
targetAddr := req.Address
if targetAddr == "" {
// Fallback: try all running backends
s.mu.Lock()
for _, bp := range s.processes {
targetAddr = bp.addr
break
}
s.mu.Unlock()
}
if targetAddr != "" {
// Best-effort bounded gRPC Free(). A model.unload request must not
// occupy the NATS reply handler forever when a backend is wedged.
client := grpc.NewClientWithToken(targetAddr, false, nil, false, s.cfg.RegistrationToken)
freeCtx, cancel := context.WithTimeout(context.Background(), workerBackendFreeTimeout)
if err := client.Free(freeCtx); err != nil {
xlog.Warn("Free() failed during model.unload", "error", err, "addr", targetAddr)
}
cancel()
}
resp := messaging.ModelUnloadReply{Success: true}
replyJSON(reply, resp)
}
// handleModelDelete is the NATS callback for model.delete — remove model
// files from disk (request-reply).
func (s *backendSupervisor) handleModelDelete(data []byte, reply func([]byte)) {
xlog.Info("Received NATS model.delete event")
var req messaging.ModelDeleteRequest
if err := json.Unmarshal(data, &req); err != nil {
replyJSON(reply, messaging.ModelDeleteReply{Success: false, Error: "invalid request"})
return
}
if err := gallery.DeleteStagedModelFiles(s.cfg.ModelsPath, req.ModelName); err != nil {
xlog.Warn("Failed to delete model files", "model", req.ModelName, "error", err)
replyJSON(reply, messaging.ModelDeleteReply{Success: false, Error: err.Error()})
return
}
replyJSON(reply, messaging.ModelDeleteReply{Success: true})
}
// handleNodeStop is the NATS callback for node.stop — trigger the normal
// shutdown path via sigCh so deferred cleanup runs (fire-and-forget).
func (s *backendSupervisor) handleNodeStop(data []byte) {
xlog.Info("Received NATS stop event — signaling shutdown")
select {
case s.sigCh <- syscall.SIGTERM:
default:
xlog.Debug("Shutdown already signaled, ignoring duplicate stop")
}
}