Files

357 lines
11 KiB
Go

package platform
import (
"context"
"encoding/json"
"encoding/xml"
"fmt"
"os"
"os/exec"
"path/filepath"
"strings"
"time"
"git.casaderoll.de/michael/urbm/internal/model"
)
type WorkloadManager struct {
RuntimeDir string
FindmntPath string
LsblkPath string
Stat func(string) (os.FileInfo, error)
}
type Workload struct {
ID string `json:"id"`
Name string `json:"name"`
Status string `json:"status"`
}
type WorkloadDiscovery struct {
Available bool `json:"available"`
Message string `json:"message,omitempty"`
Items []Workload `json:"items"`
}
type Prepared struct {
Sources []string
Stopped []model.Source
MetadataDir string
Kind model.JobType
}
func (w *WorkloadManager) Discover(ctx context.Context, kind model.JobType) (WorkloadDiscovery, error) {
switch kind {
case model.JobDocker:
if _, err := os.Stat("/var/run/docker.sock"); err != nil {
return WorkloadDiscovery{Available: false, Message: "Docker is not enabled or is not running on this Unraid server.", Items: []Workload{}}, nil
}
output, err := exec.CommandContext(ctx, "docker", "ps", "-a", "--format", "{{json .}}").Output()
if err != nil {
return WorkloadDiscovery{}, fmt.Errorf("environment: list Docker containers: %w", err)
}
var result []Workload
for _, line := range strings.Split(strings.TrimSpace(string(output)), "\n") {
if strings.TrimSpace(line) == "" {
continue
}
var item struct {
ID string `json:"ID"`
Names string `json:"Names"`
Status string `json:"Status"`
}
if err := json.Unmarshal([]byte(line), &item); err != nil {
return WorkloadDiscovery{}, fmt.Errorf("environment: decode Docker container list: %w", err)
}
result = append(result, Workload{ID: item.Names, Name: item.Names, Status: item.Status})
}
message := ""
if len(result) == 0 {
message = "Docker is active, but no containers are configured."
}
return WorkloadDiscovery{Available: true, Message: message, Items: result}, nil
case model.JobVM:
if !unraidServiceEnabled("/boot/config/domain.cfg") {
return WorkloadDiscovery{Available: false, Message: "The Unraid VM Manager is not enabled. Enable VMs under Settings > VM Manager to select virtual machines.", Items: []Workload{}}, nil
}
output, err := exec.CommandContext(ctx, "virsh", "list", "--all", "--name").Output()
if err != nil {
return WorkloadDiscovery{}, fmt.Errorf("environment: VM Manager is enabled but virtual machines could not be listed: %w", err)
}
var result []Workload
for _, name := range strings.Split(strings.TrimSpace(string(output)), "\n") {
name = strings.TrimSpace(name)
if name == "" {
continue
}
state, _ := exec.CommandContext(ctx, "virsh", "domstate", name).Output()
result = append(result, Workload{ID: name, Name: name, Status: strings.TrimSpace(string(state))})
}
message := ""
if len(result) == 0 {
message = "The VM Manager is active, but no virtual machines are configured."
}
return WorkloadDiscovery{Available: true, Message: message, Items: result}, nil
default:
return WorkloadDiscovery{}, fmt.Errorf("validation: unsupported workload type %q", kind)
}
}
func unraidServiceEnabled(path string) bool {
data, err := os.ReadFile(path)
if err != nil {
return false
}
for _, line := range strings.Split(string(data), "\n") {
parts := strings.SplitN(strings.TrimSpace(line), "=", 2)
if len(parts) == 2 && parts[0] == "SERVICE" {
return strings.Trim(strings.TrimSpace(parts[1]), "\"'") == "enable"
}
}
return false
}
func (w *WorkloadManager) Prepare(ctx context.Context, job model.Job) (Prepared, error) {
prepared := Prepared{Kind: job.Type}
for _, source := range job.Sources {
if source.Path != "" {
prepared.Sources = append(prepared.Sources, source.Path)
}
}
if job.Type != model.JobDocker && job.Type != model.JobVM {
return prepared, nil
}
metadataDir, err := os.MkdirTemp(w.RuntimeDir, "metadata-"+job.ID+"-")
if err != nil {
return prepared, err
}
prepared.MetadataDir = metadataDir
prepared.Sources = append(prepared.Sources, metadataDir)
if job.Type == model.JobDocker {
if _, err := os.Stat("/boot/config/plugins/dockerMan/templates-user"); err == nil {
prepared.Sources = append(prepared.Sources, "/boot/config/plugins/dockerMan/templates-user")
}
}
for _, source := range job.Sources {
if source.WorkloadID == "" {
continue
}
discovered, err := w.captureMetadata(ctx, job.Type, source.WorkloadID, metadataDir)
if err != nil {
w.Cleanup(context.Background(), prepared)
return Prepared{}, err
}
prepared.Sources = append(prepared.Sources, discovered...)
if job.Consistency.Mode == "stop" {
if err := w.stop(ctx, job.Type, source.WorkloadID, time.Duration(job.ShutdownSecs)*time.Second); err != nil {
w.Cleanup(context.Background(), prepared)
return Prepared{}, err
}
prepared.Stopped = append(prepared.Stopped, source)
}
}
prepared.Sources = uniqueStrings(prepared.Sources)
return prepared, nil
}
func (w *WorkloadManager) FlashDevice(ctx context.Context) (string, error) {
findmnt := w.FindmntPath
if findmnt == "" {
findmnt = "findmnt"
}
output, err := exec.CommandContext(ctx, findmnt, "--noheadings", "--output", "SOURCE", "--target", "/boot").Output()
if err != nil {
return "", fmt.Errorf("source: determine USB flash partition: %w", err)
}
partition := strings.TrimSpace(string(output))
if index := strings.IndexByte(partition, '['); index >= 0 {
partition = partition[:index]
}
partition = filepath.Clean(partition)
if !strings.HasPrefix(partition, "/dev/") || strings.ContainsAny(partition, "\r\n\x00") {
return "", fmt.Errorf("source: /boot is not backed by a device: %q", partition)
}
lsblk := w.LsblkPath
if lsblk == "" {
lsblk = "lsblk"
}
output, err = exec.CommandContext(ctx, lsblk, "--noheadings", "--output", "PKNAME", "--", partition).Output()
if err != nil {
return "", fmt.Errorf("source: determine USB flash device for %s: %w", partition, err)
}
parent := strings.TrimSpace(string(output))
device := partition
if parent != "" {
if strings.ContainsAny(parent, "/\r\n\x00") {
return "", fmt.Errorf("source: invalid USB flash parent device %q", parent)
}
device = filepath.Join("/dev", parent)
}
stat := w.Stat
if stat == nil {
stat = os.Stat
}
info, err := stat(device)
if err != nil {
return "", fmt.Errorf("source: access USB flash device %s: %w", device, err)
}
if info.Mode()&os.ModeDevice == 0 {
return "", fmt.Errorf("source: USB flash source %s is not a block device", device)
}
return device, nil
}
func (w *WorkloadManager) Cleanup(ctx context.Context, prepared Prepared) error {
if _, hasDeadline := ctx.Deadline(); !hasDeadline {
var cancel context.CancelFunc
ctx, cancel = context.WithTimeout(ctx, 5*time.Second)
defer cancel()
}
var first error
for i := len(prepared.Stopped) - 1; i >= 0; i-- {
source := prepared.Stopped[i]
if err := w.start(ctx, prepared.Kind, source.WorkloadID); err != nil && first == nil {
first = err
}
}
if prepared.MetadataDir != "" {
_ = os.RemoveAll(prepared.MetadataDir)
}
return first
}
func (w *WorkloadManager) captureMetadata(ctx context.Context, kind model.JobType, id, dir string) ([]string, error) {
var cmd *exec.Cmd
var name string
if kind == model.JobDocker {
cmd, name = exec.CommandContext(ctx, "docker", "inspect", id), "docker-"+safeName(id)+".json"
} else {
cmd, name = exec.CommandContext(ctx, "virsh", "dumpxml", id), "vm-"+safeName(id)+".xml"
}
output, err := cmd.Output()
if err != nil {
return nil, fmt.Errorf("source: capture metadata for %s: %w", id, err)
}
if err := os.WriteFile(filepath.Join(dir, name), output, 0600); err != nil {
return nil, err
}
if kind == model.JobDocker {
var inspected []struct {
Mounts []struct {
Type string `json:"Type"`
Source string `json:"Source"`
} `json:"Mounts"`
}
if err := json.Unmarshal(output, &inspected); err != nil {
return nil, fmt.Errorf("source: decode docker metadata: %w", err)
}
var paths []string
if len(inspected) > 0 {
for _, mount := range inspected[0].Mounts {
if mount.Type == "bind" && filepath.IsAbs(mount.Source) {
paths = append(paths, mount.Source)
}
}
}
return paths, nil
}
var domain struct {
OS struct {
NVRAM string `xml:"nvram"`
} `xml:"os"`
Devices struct {
Disks []struct {
Device string `xml:"device,attr"`
Source struct {
File string `xml:"file,attr"`
Dev string `xml:"dev,attr"`
} `xml:"source"`
} `xml:"disk"`
} `xml:"devices"`
}
if err := xml.Unmarshal(output, &domain); err != nil {
return nil, fmt.Errorf("source: decode vm metadata: %w", err)
}
paths := []string{}
if filepath.IsAbs(strings.TrimSpace(domain.OS.NVRAM)) {
paths = append(paths, strings.TrimSpace(domain.OS.NVRAM))
}
for _, disk := range domain.Devices.Disks {
if disk.Device != "disk" && disk.Device != "lun" {
continue
}
path := disk.Source.File
if path == "" {
path = disk.Source.Dev
}
if filepath.IsAbs(path) {
paths = append(paths, path)
}
}
return paths, nil
}
func (w *WorkloadManager) stop(ctx context.Context, kind model.JobType, id string, timeout time.Duration) error {
if timeout <= 0 {
timeout = 120 * time.Second
}
if kind == model.JobDocker {
seconds := fmt.Sprint(int(timeout.Seconds()))
if err := exec.CommandContext(ctx, "docker", "stop", "--time", seconds, id).Run(); err != nil {
return fmt.Errorf("source: stop docker %s: %w", id, err)
}
return nil
}
if err := exec.CommandContext(ctx, "virsh", "shutdown", id).Run(); err != nil {
return fmt.Errorf("source: shutdown vm %s: %w", id, err)
}
deadline := time.Now().Add(timeout)
for time.Now().Before(deadline) {
output, _ := exec.CommandContext(ctx, "virsh", "domstate", id).Output()
if strings.Contains(strings.ToLower(string(output)), "shut off") {
return nil
}
select {
case <-ctx.Done():
return ctx.Err()
case <-time.After(2 * time.Second):
}
}
return fmt.Errorf("source: vm %s did not stop before timeout", id)
}
func (w *WorkloadManager) start(ctx context.Context, kind model.JobType, id string) error {
if kind == model.JobDocker {
return exec.CommandContext(ctx, "docker", "start", id).Run()
}
return exec.CommandContext(ctx, "virsh", "start", id).Run()
}
func safeName(value string) string {
value = strings.Map(func(r rune) rune {
if r >= 'a' && r <= 'z' || r >= 'A' && r <= 'Z' || r >= '0' && r <= '9' || r == '-' || r == '_' {
return r
}
return '_'
}, value)
if value == "" {
return "workload"
}
return value
}
func uniqueStrings(values []string) []string {
seen := make(map[string]struct{}, len(values))
result := make([]string, 0, len(values))
for _, value := range values {
value = filepath.Clean(value)
if _, exists := seen[value]; exists {
continue
}
seen[value] = struct{}{}
result = append(result, value)
}
return result
}