two/internal/vm/delete.go
GnomeZworc 8a04f6f7f6
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f-46: dhcpbackend: drive dnsmasq or the built-in server through one interface #46
internal/subnet et internal/vm ne parlent plus à dnsmasq en direct mais à une
interface Backend, choisie au démarrage par dhcp.backend. Le défaut restant
dnsmasq, un agent.yml de 0.1.0 se comporte à l'identique ; ValidBackend refuse
toute autre valeur que dnsmasq ou two.

Les entrées ip→mac sont écrites hors du backend : elles font autorité pour les
deux, internal/vm/data.go les lisant par GetMACForIP quel que soit le serveur.
D'où l'extraction de dhcp.Entries, que GenerateConfig mêlait à l'écriture du
fichier dnsmasq.

Reservation porte Index et DefaultRoute : dnsmasq en dérive ses tags et n'en
pose que sur les interfaces sans route par défaut, le backend two transmet le
drapeau tel quel. La notion de tag ne remonte plus jusqu'à internal/vm.

Two.ConfigureSubnet sonde get-state avant de pousser la configuration : le job
systemd d'une unit Type=simple est done dès le fork, avant que la socket
existe. TeardownSubnet arrête l'unit avant de supprimer le .state.

Le backend two est testé contre un vrai serveur sur une vraie socket. Onze
mutations, toutes détectées.

Signed-off-by: GnomeZworc <nicolas.boufidjeline@g3e.fr>
2026-09-08 21:49:33 +02:00

110 lines
2.6 KiB
Go

package vm
import (
"fmt"
"os"
"path/filepath"
"time"
configuration "git.g3e.fr/syonad/two/internal/config/agent"
"git.g3e.fr/syonad/two/internal/dhcpbackend"
"git.g3e.fr/syonad/two/internal/iptables"
"git.g3e.fr/syonad/two/internal/metadata"
"git.g3e.fr/syonad/two/internal/netif"
"git.g3e.fr/syonad/two/internal/netns"
"git.g3e.fr/syonad/two/internal/qmp"
"git.g3e.fr/syonad/two/internal/state"
"github.com/dgraph-io/badger/v4"
)
func StopVM(db *badger.DB, name string, cfg *configuration.Config) error {
current, err := state.Get(db, "vm/"+name)
if err != nil {
return err
}
if current != state.Deleting {
return nil
}
d, err := loadVM(db, name)
if err != nil {
return err
}
nic := d.primary()
backend, err := dhcpbackend.New(cfg)
if err != nil {
return err
}
socketPath := filepath.Join(cfg.QEMU.QMPDir, name+".sock")
if _, err := os.Stat(socketPath); err == nil {
// socket présent : tenter l'arrêt gracieux
if _, err := qmp.Send(socketPath, []string{`{"execute":"system_powerdown"}`}); err == nil {
waitQMPDead(socketPath,
time.Duration(cfg.Dispatcher.TimeoutSeconds)*time.Second,
time.Duration(cfg.Dispatcher.PollSeconds)*time.Second,
)
}
// connexion QMP échouée : QEMU déjà mort
}
// socket absent ou QEMU déjà arrêté : cleanup direct
if err := netns.Call(nic.vpcName, func() error {
for _, n := range d.nics {
if err := iptables.DeleteMetadataRedirect(n.ip, nic.interfaceIP, d.metadataPort); err != nil {
return fmt.Errorf("interface %d: %w", n.index, err)
}
}
return nil
}); err != nil {
return fmt.Errorf("delete metadata redirect: %w", err)
}
if err := metadata.StopMetadata(name, cfg, false); err != nil {
return fmt.Errorf("stop metadata: %w", err)
}
for _, n := range d.nics {
if err := netif.DeleteTap(n.tapID, n.vpcName); err != nil {
return fmt.Errorf("delete tap of interface %d: %w", n.index, err)
}
}
if err := removeDHCPFiles(d, name, backend); err != nil {
return err
}
if d.uefi {
varsPath := filepath.Join(cfg.QEMU.UEFIVarsDir, name+"-uefi-vars.fd")
os.Remove(varsPath)
}
return state.Set(db, "vm/"+name, state.Deleted)
}
func removeDHCPFiles(d vmData, name string, backend dhcpbackend.Backend) error {
for _, f := range dhcpReservations(d) {
if err := backend.DelVM(f.subnet, name, f.reservations); err != nil {
return err
}
}
return nil
}
func waitQMPDead(socketPath string, timeout, poll time.Duration) {
timer := time.After(timeout)
for {
select {
case <-timer:
qmp.Send(socketPath, []string{`{"execute":"quit"}`})
return
case <-time.After(poll):
if _, err := qmp.Send(socketPath, nil); err != nil {
return
}
}
}
}