872ffcaf25
P07a/b/c — Runtime abstraction interface + 5 implementations.
Runtime interface (internal/runtime/runtime.go, REQ-078):
- Runtime interface { Prepare, Start, Stop, Status }. Alloc struct carries
Runtime field (changeable on migration per R-004). Registry keyed by
runtime.one_of. DefaultRegistry(transport) registers all 5.
Process (internal/runtime/process.go):
- ProcessRuntime wraps os/exec (LOCAL testing only; production uses systemd
emitter). SIGTERM grace 10s then SIGKILL.
Podman (internal/runtime/podman.go):
- PodmanRuntime via sshpush.Transport. podman pull/run/stop/rm/inspect.
Wasm (internal/runtime/wasm.go, gate C-01 SATISFIED):
- WasmRuntime uses wasmtime CLI (apt-installed on peer) via SSH exec. NO CGO
— does NOT import bytecodealliance/wasmtime-go. CGO_ENABLED=0 build
passes. D-002 cross-compile story preserved. D-187 recorded.
PVE (internal/runtime/pve.go):
- PveVMRuntime (qm create/start/stop/status) + PveCTRuntime (pct
create/start/stop/status) via sshpush.Transport. VMID = hash(alloc.ID)%99999.
C-01 evaluation: internal/runtime/C01_WASMTIME_CGO_EVAL.md. Auto-decision
(full autonomy): wasmtime remains primary; CLI-via-SSH avoids CGO entirely.
D-187 in PROJECT.md.
23 packages pass, 20 bats pass, gofmt clean, verify-reqs 90 consistent.
92.7% coverage on internal/runtime.
---ci---
project: orca
phase: P07a/b/c
milestone: v0.9
status: execute
---/ci---
343 lines
10 KiB
Go
343 lines
10 KiB
Go
package runtime
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import (
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"context"
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"testing"
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"time"
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)
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// TestPveVMRuntime_HappyPath verifies the qm lifecycle.
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func TestPveVMRuntime_HappyPath(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm create", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("qm start", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("qm shutdown", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("qm stop", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("qm status", func(cmd string) ([]byte, int) {
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return []byte("status: running\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "local:vmdir/disk.qcow2", "", srv.addr())
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ctx, cancel := withTimeout(10 * time.Second)
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defer cancel()
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if err := v.Prepare(ctx, a); err != nil {
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t.Fatalf("Prepare: %v", err)
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}
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pid, err := v.Start(ctx, a)
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if err != nil {
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t.Fatalf("Start: %v", err)
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}
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if pid <= 0 {
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t.Fatalf("pid = %d, want > 0", pid)
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}
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st, err := v.Status(ctx, a)
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if err != nil {
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t.Fatalf("Status: %v", err)
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}
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if st != StateRunning {
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t.Errorf("Status = %q, want running", st)
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}
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if err := v.Stop(ctx, a); err != nil {
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t.Fatalf("Stop: %v", err)
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}
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}
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// TestPveVMRuntime_StatusStopped verifies Status maps "stopped".
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func TestPveVMRuntime_StatusStopped(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm status", func(cmd string) ([]byte, int) {
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return []byte("status: stopped\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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st, _ := v.Status(context.Background(), a)
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if st != StateStopped {
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t.Errorf("Status = %q, want stopped", st)
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}
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}
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// TestPveVMRuntime_StatusUnknown verifies Status returns pending on
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// unrecognized output.
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func TestPveVMRuntime_StatusUnknown(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm status", func(cmd string) ([]byte, int) {
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return []byte("weird state\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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st, _ := v.Status(context.Background(), a)
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if st != StatePending {
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t.Errorf("Status = %q, want pending", st)
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}
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}
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// TestPveVMRuntime_PrepareNoImage verifies Prepare errors with no disk.
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func TestPveVMRuntime_PrepareNoImage(t *testing.T) {
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v := NewPveVMRuntime(nil)
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a := allocNoImage("pve-vm")
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if err := v.Prepare(context.Background(), a); err == nil {
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t.Error("Prepare with no disk should error")
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}
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}
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// TestPveVMRuntime_PrepareNilRuntime verifies Prepare errors when
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// the Spec has no Runtime block at all.
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func TestPveVMRuntime_PrepareNilRuntime(t *testing.T) {
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v := NewPveVMRuntime(nil)
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a := &Alloc{ID: "x", Runtime: "pve-vm", Spec: nil}
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if err := v.Prepare(context.Background(), a); err == nil {
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t.Error("Prepare with nil spec should error")
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}
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}
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// TestPveVMRuntime_StartError verifies Start propagates qm start errors.
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func TestPveVMRuntime_StartError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm start", func(cmd string) ([]byte, int) {
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return []byte("already running\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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if _, err := v.Start(context.Background(), a); err == nil {
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t.Error("Start with qm error should error")
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}
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}
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// TestPveVMRuntime_StopError verifies Stop errors on qm stop failure.
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func TestPveVMRuntime_StopError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm shutdown", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("qm stop", func(cmd string) ([]byte, int) {
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return []byte("vm locked\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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if err := v.Stop(context.Background(), a); err == nil {
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t.Error("Stop with qm error should error")
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}
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}
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// TestPveVMRuntime_StatusError verifies Status returns failed on qm
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// status error.
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func TestPveVMRuntime_StatusError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm status", func(cmd string) ([]byte, int) {
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return []byte("no such vm\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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st, err := v.Status(context.Background(), a)
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if err == nil {
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t.Error("Status with qm error should error")
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}
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if st != StateFailed {
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t.Errorf("Status = %q, want failed", st)
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}
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}
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// TestPveVMRuntime_PrepareError verifies Prepare propagates qm create
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// errors.
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func TestPveVMRuntime_PrepareError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("qm create", func(cmd string) ([]byte, int) {
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return []byte("vmid already exists\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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v := NewPveVMRuntime(tr)
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a := allocWithNode("pve-vm", "img", "", srv.addr())
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if err := v.Prepare(context.Background(), a); err == nil {
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t.Error("Prepare with qm create error should error")
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}
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}
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// --- PveCTRuntime ---
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func TestPveCTRuntime_HappyPath(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct create", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("pct start", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("pct shutdown", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("pct stop", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("pct status", func(cmd string) ([]byte, int) {
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return []byte("status: running\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "local:vztmpl/alpine.tar.xz", "", srv.addr())
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ctx, cancel := withTimeout(10 * time.Second)
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defer cancel()
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if err := c.Prepare(ctx, a); err != nil {
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t.Fatalf("Prepare: %v", err)
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}
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pid, err := c.Start(ctx, a)
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if err != nil {
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t.Fatalf("Start: %v", err)
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}
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if pid <= 0 {
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t.Fatalf("pid = %d, want > 0", pid)
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}
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st, err := c.Status(ctx, a)
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if err != nil {
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t.Fatalf("Status: %v", err)
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}
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if st != StateRunning {
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t.Errorf("Status = %q, want running", st)
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}
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if err := c.Stop(ctx, a); err != nil {
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t.Fatalf("Stop: %v", err)
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}
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}
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// TestPveCTRuntime_StatusStopped verifies pct status stopped.
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func TestPveCTRuntime_StatusStopped(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct status", func(cmd string) ([]byte, int) {
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return []byte("status: stopped\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "tmpl", "", srv.addr())
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st, _ := c.Status(context.Background(), a)
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if st != StateStopped {
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t.Errorf("Status = %q, want stopped", st)
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}
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}
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// TestPveCTRuntime_StatusUnknown verifies pending on unrecognized
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// output.
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func TestPveCTRuntime_StatusUnknown(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct status", func(cmd string) ([]byte, int) {
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return []byte("unknown\n"), 0
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "tmpl", "", srv.addr())
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st, _ := c.Status(context.Background(), a)
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if st != StatePending {
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t.Errorf("Status = %q, want pending", st)
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}
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}
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// TestPveCTRuntime_PrepareNoImage verifies Prepare errors with no
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// template.
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func TestPveCTRuntime_PrepareNoImage(t *testing.T) {
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c := NewPveCTRuntime(nil)
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a := allocNoImage("pve-ct")
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if err := c.Prepare(context.Background(), a); err == nil {
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t.Error("Prepare with no template should error")
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}
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}
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// TestPveCTRuntime_PrepareNilRuntime verifies Prepare errors on nil
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// spec.
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func TestPveCTRuntime_PrepareNilRuntime(t *testing.T) {
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c := NewPveCTRuntime(nil)
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a := &Alloc{ID: "x", Runtime: "pve-ct", Spec: nil}
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if err := c.Prepare(context.Background(), a); err == nil {
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t.Error("Prepare with nil spec should error")
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}
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}
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// TestPveCTRuntime_StartError verifies Start errors on pct start fail.
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func TestPveCTRuntime_StartError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct start", func(cmd string) ([]byte, int) {
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return []byte("already running\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "tmpl", "", srv.addr())
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if _, err := c.Start(context.Background(), a); err == nil {
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t.Error("Start with pct error should error")
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}
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}
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// TestPveCTRuntime_StopError verifies Stop errors on pct stop fail.
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func TestPveCTRuntime_StopError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct shutdown", func(cmd string) ([]byte, int) { return nil, 0 })
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srv.setHandler("pct stop", func(cmd string) ([]byte, int) {
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return []byte("container locked\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "tmpl", "", srv.addr())
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if err := c.Stop(context.Background(), a); err == nil {
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t.Error("Stop with pct error should error")
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}
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}
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// TestPveCTRuntime_StatusError verifies Status failed on pct status
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// error.
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func TestPveCTRuntime_StatusError(t *testing.T) {
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srv := newFakeServer(t)
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defer srv.close()
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srv.setHandler("pct status", func(cmd string) ([]byte, int) {
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return []byte("no such container\n"), 1
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})
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tr := realTransport(t, srv)
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defer tr.Close()
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c := NewPveCTRuntime(tr)
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a := allocWithNode("pve-ct", "tmpl", "", srv.addr())
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st, err := c.Status(context.Background(), a)
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if err == nil {
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t.Error("Status with pct error should error")
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}
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if st != StateFailed {
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t.Errorf("Status = %q, want failed", st)
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}
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}
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// TestVMIDFor verifies the VMID is deterministic and within range.
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func TestVMIDFor(t *testing.T) {
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a := &Alloc{ID: "alloc-1"}
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id := vmidFor(a)
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if id < 100 || id > 99999 {
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t.Errorf("vmidFor = %d, want in [100, 99999]", id)
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}
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// stability
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if vmidFor(a) != id {
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t.Error("vmidFor not stable")
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}
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// two allocs should differ
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b := &Alloc{ID: "alloc-2"}
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if vmidFor(b) == id {
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t.Logf("note: two allocs collided on vmid (rare but allowed)")
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}
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}
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