Implements the hypervisor design's Phase 1: a second runtime.Runtime backend (QEMU) that runs each service component as a Nanos unikernel VM instead of a podman container, selected per-component via a new runtime = "unikernel" service-def field. - internal/runtime/qemu.go: QEMURuntime. Pull extracts the ELF from the OCI image; Run does `ops build` + boots qemu-system-x86_64 with KVM, user-mode net port-forwards, QMP control socket and serial console log; Stop/Remove/Inspect/List/Logs map onto VM lifecycle + state dir. - proto/registry/servicedef: add runtime, memory_mb, vcpus fields (registry migration 5). - agent: holds both runtimes; runtimeFor() selects per component; listAllContainers() merges containers + VMs so drift/status see both. Unikernel runtime auto-enables on nodes with /dev/kvm + ops. Validated end-to-end on straylight: a test service deploys via `mcp deploy --direct`, boots as a Nanos unikernel, serves HTTP through the agent port-forward, and reports running via `mcp status`/`mcp logs`. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
144 lines
3.8 KiB
Go
144 lines
3.8 KiB
Go
package agent
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import (
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"context"
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"fmt"
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"git.wntrmute.dev/mc/mcp/internal/registry"
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"git.wntrmute.dev/mc/mcp/internal/runtime"
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)
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// Recover recreates containers from the agent's registry for all services
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// whose desired state is "running" but which don't have a running container
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// in podman. This is the recovery path after a podman database loss (e.g.,
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// after a UID change or podman reset).
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//
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// Recover does NOT pull images — it assumes the images are cached locally.
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// If an image is missing, that component is skipped with a warning.
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func (a *Agent) Recover(ctx context.Context) error {
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services, err := registry.ListServices(a.DB)
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if err != nil {
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return fmt.Errorf("list services: %w", err)
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}
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// Get the list of currently running containers from podman.
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running, err := a.listAllContainers(ctx)
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if err != nil {
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a.Logger.Warn("cannot list containers, assuming none running", "err", err)
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running = nil
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}
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runningSet := make(map[string]bool)
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for _, c := range running {
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runningSet[c.Name] = true
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}
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var recovered, skipped, already int
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for _, svc := range services {
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if !svc.Active {
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continue
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}
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comps, err := registry.ListComponents(a.DB, svc.Name)
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if err != nil {
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a.Logger.Warn("list components", "service", svc.Name, "err", err)
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continue
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}
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for _, comp := range comps {
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if comp.DesiredState != "running" {
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continue
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}
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containerName := svc.Name + "-" + comp.Name
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if comp.Name == svc.Name {
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containerName = svc.Name
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}
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// Skip if container is already running.
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if runningSet[containerName] {
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already++
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continue
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}
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a.Logger.Info("recovering container",
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"service", svc.Name,
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"component", comp.Name,
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"image", comp.Image,
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)
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rt := a.runtimeFor(comp.Runtime)
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// Remove any stale container with the same name.
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_ = rt.Remove(ctx, containerName)
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// Build the container spec from the registry.
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spec := runtime.ContainerSpec{
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Name: containerName,
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Image: comp.Image,
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Network: comp.Network,
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User: comp.UserSpec,
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Restart: comp.Restart,
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Volumes: comp.Volumes,
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Cmd: comp.Cmd,
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MemoryMB: comp.MemoryMB,
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VCPUs: comp.VCPUs,
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}
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// Allocate ports from routes if the component has routes.
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if len(comp.Routes) > 0 && a.PortAlloc != nil {
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ports, env, allocErr := a.allocateRoutePorts(svc.Name, comp.Name, comp.Routes)
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if allocErr != nil {
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a.Logger.Warn("allocate route ports", "container", containerName, "err", allocErr)
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spec.Ports = comp.Ports
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} else {
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spec.Ports = append(comp.Ports, ports...)
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spec.Env = append(spec.Env, env...)
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}
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} else {
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spec.Ports = comp.Ports
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}
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if err := rt.Run(ctx, spec); err != nil {
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a.Logger.Error("recover container failed",
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"container", containerName,
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"err", err,
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)
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skipped++
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continue
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}
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// Re-register mc-proxy routes.
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if a.Proxy != nil && len(comp.Routes) > 0 {
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hostPorts, hpErr := registry.GetRouteHostPorts(a.DB, svc.Name, comp.Name)
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if hpErr == nil {
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if proxyErr := a.Proxy.RegisterRoutes(ctx, svc.Name, comp.Routes, hostPorts); proxyErr != nil {
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a.Logger.Warn("re-register routes", "service", svc.Name, "err", proxyErr)
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}
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}
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}
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// Provision TLS certs if needed.
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if a.Certs != nil && hasL7Routes(comp.Routes) {
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hostnames := l7Hostnames(svc.Name, comp.Routes)
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if certErr := a.Certs.EnsureCert(ctx, svc.Name, hostnames); certErr != nil {
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a.Logger.Warn("cert provisioning", "service", svc.Name, "err", certErr)
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}
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}
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recovered++
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a.Logger.Info("container recovered", "container", containerName)
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}
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}
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a.Logger.Info("recovery complete",
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"recovered", recovered,
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"skipped", skipped,
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"already_running", already,
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)
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return nil
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}
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// hasL7Routes and l7Hostnames are defined in deploy.go.
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