Files
Felis/cmd/felis/apply.go

348 lines
12 KiB
Go

package main
import (
"context"
"encoding/json"
"errors"
"flag"
"fmt"
"io"
"os"
"os/signal"
"strings"
"syscall"
"felis.lolicon.best/internal/apis/felis/v1alpha1"
"felis.lolicon.best/internal/naming"
corev1 "k8s.io/api/core/v1"
apierrors "k8s.io/apimachinery/pkg/api/errors"
"k8s.io/apimachinery/pkg/api/resource"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"sigs.k8s.io/controller-runtime/pkg/client"
)
// cmdApply creates a MinecraftServer CRD from a JSON form.
//
// It is an operator-only direct CRD create path — it does NOT seed Postgres
// business rows (ownership, alias, image whitelist, audit), so the resulting
// server is claimable only if those rows are seeded separately. For normal
// provisioning prefer the Web form or felis-api.
//
// Usage: felis apply -f server.json [-n minecraft]
//
// This is a DIRECT Kubernetes write — it does not go through felis-api. It
// requires a kubeconfig or in-cluster identity with "create minecraftservers"
// permission in the target namespace. Subdomain duplicates are checked against
// existing CRDs in the target namespace (same check as the web form's
// Cluster.GetBySubdomain).
// applyRequest is the CLI-facing server creation form. It mirrors the Web
// form's field shape (createServerRequest) so the two provisioners stay
// structurally aligned, but validation differs: here we validate the CRD
// resource shape only — image whitelist admission, PG alias seeding, quota, and
// audit are the API's business layer and are NOT performed.
type applyRequest struct {
Name string `json:"name"`
Subdomain string `json:"subdomain"`
DisplayName string `json:"displayName,omitempty"`
Image string `json:"image"`
Memory string `json:"memory"`
Storage string `json:"storage"`
AutostartPolicy string `json:"autostartPolicy,omitempty"`
Resources *resourceRequest `json:"resources,omitempty"`
}
// resourceRequest mirrors the API's resourceRequest.
type resourceRequest struct {
CPU string `json:"cpu,omitempty"`
CPURequest string `json:"cpuRequest,omitempty"`
Memory string `json:"memory,omitempty"`
MemoryRequest string `json:"memoryRequest,omitempty"`
}
func cmdApply(args []string, stdout, stderr io.Writer) int {
fs := flag.NewFlagSet("apply", flag.ContinueOnError)
fs.SetOutput(stderr)
file := fs.String("f", "", "path to JSON server form (required; use - for stdin)")
namespace := fs.String("n", "minecraft", "Kubernetes namespace")
if err := fs.Parse(args); err != nil {
return 2
}
if *file == "" {
fmt.Fprintln(stderr, "felis apply: missing required flag -f; use -f server.json or -f - for stdin")
return 2
}
var raw []byte
var err error
if *file == "-" {
raw, err = io.ReadAll(os.Stdin)
} else {
raw, err = os.ReadFile(*file)
}
if err != nil {
fmt.Fprintf(stderr, "felis apply: read: %v\n", err)
return 1
}
dec := json.NewDecoder(strings.NewReader(string(raw)))
dec.DisallowUnknownFields()
var req applyRequest
if err := dec.Decode(&req); err != nil {
fmt.Fprintf(stderr, "felis apply: invalid JSON: %v\n", err)
return 1
}
// Drain the decoder: a second Decode must hit io.EOF — anything else
// (another value, trailing garbage like ] or }) means the input is not
// exactly one valid form.
if err := dec.Decode(&struct{}{}); err == nil || !errors.Is(err, io.EOF) {
fmt.Fprintln(stderr, "felis apply: invalid JSON: unexpected data after the server form")
return 1
}
// Build the CRD from the form. This validates the resource shape but does
// NOT perform image whitelist admission or PG seeding (API business layer).
ms, err := buildMinecraftServerFromApplyRequest(req, *namespace)
if err != nil {
fmt.Fprintf(stderr, "felis apply: %v\n", err)
return 1
}
// ------- K8s client (one context, one client) -------
// The operator runs this on the node, where the kubeconfig is k3s's own file and
// neither $KUBECONFIG nor ~/.kube is set. buildSystemServerClient falls back to that
// file and names what it tried; ctrl.GetConfigOrDie exited 1 there without a word,
// because controller-runtime's logger is never set up in a CLI command.
ctx, stop := signal.NotifyContext(context.Background(), os.Interrupt, syscall.SIGTERM)
defer stop()
cl, err := buildSystemServerClient()
if err != nil {
fmt.Fprintf(stderr, "felis apply: %v\n", err)
return 1
}
// Subdomain duplicate check: the web form queries GetBySubdomain before
// creating; we list all CRDs in the namespace and check spec.subdomain.
// metadata.name already receives K8s AlreadyExists enforcement on create,
// so a name collision surfaces cleanly — but subdomain has no such native
// uniqueness, so it must be checked explicitly.
if err := checkSubdomainUnique(ctx, cl, *namespace, req.Subdomain); err != nil {
fmt.Fprintf(stderr, "felis apply: %v\n", err)
return 1
}
if err := cl.Create(ctx, ms); err != nil {
if apierrors.IsAlreadyExists(err) {
fmt.Fprintf(stderr, "felis apply: server %q already exists\n", req.Name)
return 1
}
fmt.Fprintf(stderr, "felis apply: create: %v\n", err)
return 1
}
fmt.Fprintf(stdout, "created MinecraftServer %s/%s (subdomain=%s, image=%s, memory=%s, storage=%s, policy=%s)\n",
*namespace, req.Name, req.Subdomain, req.Image, resourcesMemoryString(ms.Spec.Resources), ms.Spec.Storage.Size, ms.Spec.AutostartPolicy)
fmt.Fprintln(stderr, "note: Postgres business rows (ownership / alias / whitelist / audit) were NOT seeded — prefer Web/API for normal provisioning")
return 0
}
// buildMinecraftServerFromApplyRequest validates the request and constructs a
// MinecraftServer CRD. It is a pure function (no K8s, no I/O) so it can be
// tested without a cluster. It validates: name/subdomain format, required
// fields, policy enum, positive K8s quantities, request ≤ limit, and the §22
// memory ceiling. The returned CRD is always DesiredState=Stopped and unowned
// (ownership is established by a later claim).
func buildMinecraftServerFromApplyRequest(req applyRequest, namespace string) (*v1alpha1.MinecraftServer, error) {
// ---- name & subdomain ----
if err := naming.ValidateServerName(req.Name); err != nil {
return nil, fmt.Errorf("invalid name: %w", err)
}
if err := naming.ValidateServerName(req.Subdomain); err != nil {
return nil, fmt.Errorf("invalid subdomain: %w", err)
}
displayName, err := naming.CleanDisplayName(req.DisplayName)
if err != nil {
return nil, fmt.Errorf("invalid displayName: %w", err)
}
if strings.TrimSpace(req.Image) == "" {
return nil, fmt.Errorf("image is required")
}
// ---- autostart policy ----
policy, err := parseApplyAutostartPolicy(req.AutostartPolicy)
if err != nil {
return nil, err
}
// ---- resources (§22 ceiling) ----
memQ, err := parseApplyPositiveQuantity(req.Memory, "memory")
if err != nil {
return nil, err
}
limits := corev1.ResourceList{corev1.ResourceMemory: memQ}
requests := corev1.ResourceList{corev1.ResourceMemory: memQ}
if req.Resources != nil {
if req.Resources.Memory != "" {
q, err := parseApplyPositiveQuantity(req.Resources.Memory, "resources.memory")
if err != nil {
return nil, err
}
limits[corev1.ResourceMemory] = q
}
if req.Resources.MemoryRequest != "" {
q, err := parseApplyPositiveQuantity(req.Resources.MemoryRequest, "resources.memoryRequest")
if err != nil {
return nil, err
}
requests[corev1.ResourceMemory] = q
}
if req.Resources.CPU != "" {
q, err := parseApplyPositiveQuantity(req.Resources.CPU, "resources.cpu")
if err != nil {
return nil, err
}
limits[corev1.ResourceCPU] = q
}
if req.Resources.CPURequest != "" {
q, err := parseApplyPositiveQuantity(req.Resources.CPURequest, "resources.cpuRequest")
if err != nil {
return nil, err
}
requests[corev1.ResourceCPU] = q
}
}
if err := validateResourceCeilings(requests, limits); err != nil {
return nil, err
}
memLim, ok := limits[corev1.ResourceMemory]
if !ok || memLim.IsZero() {
return nil, fmt.Errorf("internal error: refusing to create a server without a memory ceiling")
}
// ---- storage ----
storageQ, err := parseApplyPositiveQuantity(req.Storage, "storage")
if err != nil {
return nil, err
}
return &v1alpha1.MinecraftServer{
ObjectMeta: metav1.ObjectMeta{
Name: req.Name,
Namespace: namespace,
},
Spec: v1alpha1.MinecraftServerSpec{
Subdomain: req.Subdomain,
DisplayName: displayName,
Image: req.Image,
JavaMemory: deriveApplyJavaHeap(memLim),
DesiredState: v1alpha1.DesiredStopped,
AutostartPolicy: policy,
Storage: v1alpha1.StorageSpec{Size: storageQ.String()},
Resources: corev1.ResourceRequirements{Limits: limits, Requests: requests},
// The rest matches what felis-api's create writes (K8sCluster.CreateServer):
// fall back to the login gate while stopped, RCON on (readiness, the
// player count and the console all ride it; the operator mints the
// password), and the default idle stop.
FallbackServer: naming.SystemLoginServer,
Rcon: v1alpha1.RconSpec{
Enabled: true,
SecretRef: v1alpha1.SecretKeyRef{
Name: naming.RconSecretName(req.Name),
Key: naming.RconSecretKey,
},
},
Idle: v1alpha1.DefaultIdle(),
},
}, nil
}
// checkSubdomainUnique lists all MinecraftServers in namespace and rejects the
// request if any CRD already carries the given spec.subdomain. metadata.name
// uniqueness is enforced by K8s on Create, but spec.subdomain must be checked
// here because two CRDs with different names could otherwise share a subdomain.
// It reuses the caller's context and K8s client.
func checkSubdomainUnique(ctx context.Context, cl client.Client, namespace, subdomain string) error {
var list v1alpha1.MinecraftServerList
if err := cl.List(ctx, &list, client.InNamespace(namespace)); err != nil {
return fmt.Errorf("list servers: %w", err)
}
for i := range list.Items {
if list.Items[i].Spec.Subdomain == subdomain {
return fmt.Errorf("subdomain %q is already in use by server %q", subdomain, list.Items[i].Name)
}
}
return nil
}
// validateResourceCeilings checks that every resource request is ≤ its limit;
// Kubernetes would reject the CRD anyway, but we fail fast with a clear message.
func validateResourceCeilings(requests, limits corev1.ResourceList) error {
for name, lim := range limits {
req, ok := requests[name]
if !ok {
continue
}
if req.Cmp(lim) > 0 {
return fmt.Errorf("%s request %s exceeds limit %s", name, req.String(), lim.String())
}
}
return nil
}
// resourcesMemoryString returns the memory limit as a human-readable string
// for the success log.
func resourcesMemoryString(rr corev1.ResourceRequirements) string {
if m, ok := rr.Limits[corev1.ResourceMemory]; ok {
return m.String()
}
return "?"
}
// ---- pure helpers (K8s-free, testable) ----
func parseApplyAutostartPolicy(s string) (v1alpha1.AutostartPolicy, error) {
switch s {
case "":
return v1alpha1.AutostartOwnerOnly, nil
case string(v1alpha1.AutostartOwnerOnly):
return v1alpha1.AutostartOwnerOnly, nil
case string(v1alpha1.AutostartPublic):
return v1alpha1.AutostartPublic, nil
case string(v1alpha1.AutostartAllowlist):
return v1alpha1.AutostartAllowlist, nil
default:
return "", fmt.Errorf("invalid autostartPolicy %q (want ownerOnly, public, or allowlist)", s)
}
}
func parseApplyPositiveQuantity(s, field string) (resource.Quantity, error) {
q, err := resource.ParseQuantity(s)
if err != nil {
return resource.Quantity{}, fmt.Errorf("invalid %s quantity %q: %v", field, s, err)
}
if q.Sign() <= 0 {
return resource.Quantity{}, fmt.Errorf("%s must be a positive quantity", field)
}
return q, nil
}
func deriveApplyJavaHeap(limit resource.Quantity) string {
const mib = int64(1024 * 1024)
bytes := limit.Value()
reserve := bytes / 4
if floor := 512 * mib; reserve < floor {
reserve = floor
}
if half := bytes / 2; reserve > half {
reserve = half
}
heapMiB := (bytes - reserve) / mib
if heapMiB < 1 {
heapMiB = 1
}
return fmt.Sprintf("%dM", heapMiB)
}