wisski-cloud-distillery/internal/dis/component/exporter/snapshot.go
2023-11-02 12:05:13 +01:00

234 lines
6.3 KiB
Go

package exporter
import (
"context"
"fmt"
"io"
"os"
"path/filepath"
"time"
"github.com/FAU-CDI/wisski-distillery/internal/dis/component"
"github.com/FAU-CDI/wisski-distillery/internal/models"
"github.com/FAU-CDI/wisski-distillery/internal/wisski"
"github.com/FAU-CDI/wisski-distillery/internal/wisski/ingredient/locker"
"github.com/FAU-CDI/wisski-distillery/pkg/logging"
"github.com/rs/zerolog"
"github.com/tkw1536/pkglib/collection"
"github.com/tkw1536/pkglib/contextx"
"github.com/tkw1536/pkglib/status"
"golang.org/x/exp/maps"
"golang.org/x/exp/slices"
)
// SnapshotDescription is a description for a snapshot
type SnapshotDescription struct {
Dest string // destination path
Keepalive bool // should we keep the instance alive while making the snapshot?
Parts []string // SnapshotName()s of the components to include.
}
// Snapshot represents the result of generating a snapshot
type Snapshot struct {
Description SnapshotDescription
Instance models.Instance
// Start and End Time of the snapshot
StartTime time.Time
EndTime time.Time
// Generic Panic that may have occured
ErrPanic interface{}
ErrStart error
ErrStop error
// Errors holds errors for each component
Errors map[string]error
// Logs contains logfiles for each component
Logs map[string]string
// List of files included
WithManifest
// snapshotables that are running and not running
partsRunning []component.Snapshotable `json:"-"`
partsStopped []component.Snapshotable `json:"-"`
}
// Snapshot creates a new snapshot of this instance into dest
func (exporter *Exporter) NewSnapshot(ctx context.Context, instance *wisski.WissKI, progress io.Writer, desc SnapshotDescription) (snapshot Snapshot) {
logging.LogMessage(progress, "Locking instance")
if !instance.Locker().TryLock(ctx) {
err := locker.Locked
fmt.Fprintln(progress, err)
fmt.Fprintln(progress, "Aborting snapshot creation")
return Snapshot{
ErrPanic: err,
}
}
defer func() {
logging.LogMessage(progress, "Unlocking instance")
ctx, cancel := contextx.Anyways(ctx, time.Second)
defer cancel()
instance.Locker().Unlock(ctx)
}()
// setup the snapshot
snapshot.Description = desc
exporter.resolveParts(ctx, desc.Parts, &snapshot)
snapshot.Instance = instance.Instance
// capture anything critical, and write the end time
defer func() {
snapshot.ErrPanic = recover()
}()
// do the create keeping track of time!
logging.LogOperation(func() error {
snapshot.StartTime = time.Now().UTC()
wboxerr, wboxmsg := snapshot.makeParts(ctx, progress, exporter, instance, false)
bboxerr, bboxlog := snapshot.makeParts(ctx, progress, exporter, instance, true)
snapshot.EndTime = time.Now().UTC()
// collection all the errors and logs
snapshot.Errors = collection.Append(wboxerr, bboxerr)
snapshot.Logs = collection.Append(wboxmsg, bboxlog)
return nil
}, progress, "Writing snapshot files")
slices.Sort(snapshot.Manifest)
return
}
// resolveParts resolves parts, and writes it into snapshot.Description.Parts.
// Also sets up snapshot.partsRunning and snapshot.partsStopped.
// sends a warning about unknown parts into the logger in context.
func (snapshots *Exporter) resolveParts(ctx context.Context, parts []string, snapshot *Snapshot) {
partMap := make(map[string]component.Snapshotable, len(snapshots.dependencies.Snapshotable))
for _, part := range snapshots.dependencies.Snapshotable {
partMap[part.SnapshotName()] = part
}
// filter the parts (if requested)
if len(parts) != 0 {
keys := make(map[string]struct{}, len(parts))
for _, part := range parts {
keys[part] = struct{}{}
}
// delete all the parts which weren't explicitly requested
for part := range partMap {
if _, ok := keys[part]; !ok {
delete(partMap, part)
} else {
delete(keys, part)
}
}
// throw a warning for unknown parts
for key := range keys {
zerolog.Ctx(ctx).Warn().Str("part", key).Msg("ignoring unknown snapshot part")
}
}
// sort the names of all requested parts
snapshot.Description.Parts = maps.Keys(partMap)
slices.Sort(snapshot.Description.Parts)
// and setup the map for running and stopped parts!
for _, name := range snapshot.Description.Parts {
part := partMap[name]
if part.SnapshotNeedsRunning() {
snapshot.partsRunning = append(snapshot.partsRunning, part)
} else {
snapshot.partsStopped = append(snapshot.partsStopped, part)
}
}
}
func (snapshot *Snapshot) makeParts(ctx context.Context, progress io.Writer, snapshots *Exporter, instance *wisski.WissKI, needsRunning bool) (errmap map[string]error, logmap map[string]string) {
if !needsRunning && !snapshot.Description.Keepalive {
stack := instance.Barrel().Stack()
logging.LogMessage(progress, "Stopping instance")
snapshot.ErrStop = stack.Down(ctx, progress)
defer func() {
logging.LogMessage(progress, "Starting instance")
snapshot.ErrStart = stack.Up(ctx, progress)
}()
}
// handle writing the manifest!
manifest, done := snapshot.handleManifest(snapshot.Description.Dest)
defer done()
// create a new status
st := status.NewWithCompat(progress, 0)
st.Start()
defer st.Stop()
// get the components
var comps []component.Snapshotable
if needsRunning {
comps = snapshot.partsRunning
} else {
comps = snapshot.partsStopped
}
// run each of the parts
errors, ids := status.Group[component.Snapshotable, error]{
PrefixString: func(item component.Snapshotable, index int) string {
return fmt.Sprintf("[snapshot %q]: ", item.Name())
},
PrefixAlign: true,
Handler: func(sc component.Snapshotable, index int, writer io.Writer) error {
return sc.Snapshot(
instance.Instance,
component.NewStagingContext(
ctx,
writer,
filepath.Join(snapshot.Description.Dest, sc.SnapshotName()),
manifest,
),
)
},
ResultString: status.DefaultErrorString[component.Snapshotable],
}.Use(st, comps)
// keep all the log files
files := st.Keep()
// store errors and logs
errmap = make(map[string]error, len(comps))
logmap = make(map[string]string, len(comps))
for i, wc := range comps {
name := wc.SnapshotName()
errmap[name] = errors[i]
// read the logfile
logfile := files[ids[i]]
bytes, err := os.ReadFile(logfile)
if err != nil {
zerolog.Ctx(ctx).Err(err).Str("component", name).Msg("unable to copy logfile")
continue
}
// delete it, but store the content in the results
os.Remove(logfile)
logmap[name] = string(bytes)
}
return
}