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releases.go
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releases.go
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package empire
import (
"fmt"
"time"
"github.com/jinzhu/gorm"
"github.com/remind101/empire/pkg/headerutil"
"github.com/remind101/empire/pkg/timex"
"github.com/remind101/empire/procfile"
"github.com/remind101/empire/twelvefactor"
"golang.org/x/net/context"
)
// Release is a combination of a Config and a Slug, which form a deployable
// release. Releases are generally considered immutable, the only operation that
// changes a release is when altering the Quantity or Constraints inside the
// Formation.
type Release struct {
// A unique uuid to identify this release.
ID string
// An auto incremented ID for this release, scoped to the application.
Version int
// The id of the application that this release relates to.
AppID string
// The application that this release relates to.
App *App
// The id of the config that this release uses.
ConfigID string
// The config that this release uses.
Config *Config
// The id of the slug that this release uses.
SlugID string
// The Slug that this release uses.
Slug *Slug
// The process formation to use.
Formation Formation
// A description for the release. Usually contains the reason for why
// the release was created (e.g. deployment, config changes, etc).
Description string
// The time that this release was created.
CreatedAt *time.Time
}
// Procfile returns the Procfile that generated this Release.
func (r *Release) Procfile() (procfile.Procfile, error) {
return r.Slug.ParsedProcfile()
}
// BeforeCreate sets created_at before inserting.
func (r *Release) BeforeCreate() error {
t := timex.Now()
r.CreatedAt = &t
return nil
}
// ReleasesQuery is a scope implementation for common things to filter releases
// by.
type ReleasesQuery struct {
// If provided, an app to filter by.
App *App
// If provided, a version to filter by.
Version *int
// If provided, uses the limit and sorting parameters specified in the range.
Range headerutil.Range
}
// scope implements the scope interface.
func (q ReleasesQuery) scope(db *gorm.DB) *gorm.DB {
var scope composedScope
if app := q.App; app != nil {
scope = append(scope, fieldEquals("app_id", app.ID))
}
if version := q.Version; version != nil {
scope = append(scope, fieldEquals("version", *version))
}
scope = append(scope, inRange(q.Range.WithDefaults(q.DefaultRange())))
return scope.scope(db)
}
// DefaultRange returns the default headerutil.Range used if values aren't
// provided.
func (q ReleasesQuery) DefaultRange() headerutil.Range {
sort, order := "version", "desc"
return headerutil.Range{
Sort: &sort,
Order: &order,
}
}
// releasesService is a service for creating and rolling back a Release.
type releasesService struct {
*Empire
}
// CreateAndRelease creates a new release then submits it to the scheduler.
func (s *releasesService) CreateAndRelease(ctx context.Context, db *gorm.DB, r *Release, ss twelvefactor.StatusStream) (*Release, error) {
r, err := s.Create(ctx, db, r)
if err != nil {
return r, err
}
// Schedule the new release onto the cluster.
return r, s.Release(ctx, r, ss)
}
// Create creates a new release.
func (s *releasesService) Create(ctx context.Context, db *gorm.DB, r *Release) (*Release, error) {
// Lock all releases for the given application to ensure that the
// release version is updated automically.
if err := db.Exec(`select 1 from releases where app_id = ? for update`, r.App.ID).Error; err != nil {
return r, err
}
// During rollbacks, we can just provide the existing Formation for the
// old release. For new releases, we need to create a new formation by
// merging the formation from the extracted Procfile, and the Formation
// from the existing release.
if r.Formation == nil {
if err := buildFormation(db, r); err != nil {
return r, err
}
}
return releasesCreate(db, r)
}
// Rolls back to a specific release version.
func (s *releasesService) Rollback(ctx context.Context, db *gorm.DB, opts RollbackOpts) (*Release, error) {
app, version := opts.App, opts.Version
r, err := releasesFind(db, ReleasesQuery{App: app, Version: &version})
if err != nil {
return nil, err
}
desc := fmt.Sprintf("Rollback to v%d", version)
desc = appendMessageToDescription(desc, opts.User, opts.Message)
return s.CreateAndRelease(ctx, db, &Release{
App: app,
Config: r.Config,
Slug: r.Slug,
Formation: r.Formation,
Description: desc,
}, nil)
}
// Release submits a release to the scheduler.
func (s *releasesService) Release(ctx context.Context, release *Release, ss twelvefactor.StatusStream) error {
a, err := newSchedulerApp(release)
if err != nil {
return err
}
return s.Scheduler.Submit(ctx, a, ss)
}
func (s *releasesService) ReleaseApp(ctx context.Context, db *gorm.DB, app *App, ss twelvefactor.StatusStream) error {
release, err := releasesFind(db, ReleasesQuery{App: app})
if err != nil {
if err == gorm.RecordNotFound {
return ErrNoReleases
}
return err
}
if release == nil {
return nil
}
return s.Release(ctx, release, ss)
}
// Restart will find the last release for an app and submit it to the scheduler
// to restart the app.
func (s *releasesService) Restart(ctx context.Context, db *gorm.DB, app *App) error {
return s.Scheduler.Restart(ctx, app.ID, nil)
}
// These associations are always available on a Release.
var releasesPreload = preload("App", "Config", "Slug")
// releasesFind returns the first matching release.
func releasesFind(db *gorm.DB, scope scope) (*Release, error) {
var release Release
scope = composedScope{releasesPreload, scope}
if err := first(db, scope, &release); err != nil {
return &release, err
}
return &release, nil
}
// releases returns all releases matching the scope.
func releases(db *gorm.DB, scope scope) ([]*Release, error) {
var releases []*Release
scope = composedScope{releasesPreload, scope}
return releases, find(db, scope, &releases)
}
func releasesUpdate(db *gorm.DB, release *Release) error {
return db.Save(release).Error
}
func buildFormation(db *gorm.DB, release *Release) error {
var existing Formation
// Get the old release, so we can copy the Formation.
last, err := releasesFind(db, ReleasesQuery{App: release.App})
if err != nil {
if err != gorm.RecordNotFound {
return err
}
} else {
existing = last.Formation
}
f, err := release.Slug.Formation()
if err != nil {
return err
}
release.Formation = f.Merge(existing)
return nil
}
// currentFormations gets the current formations for an app
func currentFormation(db *gorm.DB, app *App) (Formation, error) {
// Get the current release
current, err := releasesFind(db, ReleasesQuery{App: app})
if err != nil {
return nil, err
}
f := current.Formation
return f, nil
}
// ReleasesLastVersion returns the last ReleaseVersion for the given App.
func releasesLastVersion(db *gorm.DB, appID string) (int, error) {
var version int
rows, err := db.Raw(`select version from releases where app_id = ? order by version desc`, appID).Rows()
if err != nil {
return version, err
}
defer rows.Close()
for rows.Next() {
err := rows.Scan(&version)
return version, err
}
return version, nil
}
// releasesCreate creates a new Release and inserts it into the database.
func releasesCreate(db *gorm.DB, release *Release) (*Release, error) {
// Get the last release version for this app.
v, err := releasesLastVersion(db, release.App.ID)
if err != nil {
return release, err
}
// Increment the release version.
release.Version = v + 1
if err := db.Create(release).Error; err != nil {
return release, err
}
return release, nil
}
func newSchedulerApp(release *Release) (*twelvefactor.Manifest, error) {
var processes []*twelvefactor.Process
for name, p := range release.Formation {
if p.NoService {
// If the entry is marked as "NoService", don't send it
// to the backend.
continue
}
if p.Quantity < 0 {
// If the process is scaled to a negative value, don't
// send it to the backend.
continue
}
process, err := newSchedulerProcess(release, name, p)
if err != nil {
return nil, err
}
processes = append(processes, process)
}
env := environment(release.Config.Vars)
env["EMPIRE_APPID"] = release.App.ID
env["EMPIRE_APPNAME"] = release.App.Name
env["EMPIRE_RELEASE"] = fmt.Sprintf("v%d", release.Version)
labels := map[string]string{
"empire.app.id": release.App.ID,
"empire.app.name": release.App.Name,
"empire.app.release": fmt.Sprintf("v%d", release.Version),
}
return &twelvefactor.Manifest{
AppID: release.App.ID,
Name: release.App.Name,
Release: fmt.Sprintf("v%d", release.Version),
Processes: processes,
Env: env,
Labels: labels,
}, nil
}
func newSchedulerProcess(release *Release, name string, p Process) (*twelvefactor.Process, error) {
env := make(map[string]string)
for k, v := range p.Environment {
env[k] = v
}
env["EMPIRE_PROCESS"] = name
env["EMPIRE_PROCESS_SCALE"] = fmt.Sprintf("%d", p.Quantity)
env["SOURCE"] = fmt.Sprintf("%s.%s.v%d", release.App.Name, name, release.Version)
labels := map[string]string{
"empire.app.process": name,
}
var (
exposure *twelvefactor.Exposure
err error
)
// For `web` processes defined in the standard procfile, we'll
// generate a default exposure setting and also set the PORT
// environment variable for backwards compatability.
if name == webProcessType && len(p.Ports) == 0 {
exposure = standardWebExposure(release.App)
env["PORT"] = "8080"
} else {
exposure, err = processExposure(release.App, name, p)
if err != nil {
return nil, err
}
}
quantity := p.Quantity
if release.App.Maintenance {
quantity = 0
}
return &twelvefactor.Process{
Type: name,
Env: env,
Labels: labels,
Command: []string(p.Command),
Image: release.Slug.Image,
Quantity: quantity,
Memory: uint(p.Memory),
CPUShares: uint(p.CPUShare),
Nproc: uint(p.Nproc),
Exposure: exposure,
Schedule: processSchedule(name, p),
ECS: p.ECS,
}, nil
}
// environment coerces a Vars into a map[string]string.
func environment(vars Vars) map[string]string {
env := make(map[string]string)
for k, v := range vars {
env[string(k)] = string(*v)
}
return env
}
// standardWebExposure generates a scheduler.Exposure for a web process in the
// standard Procfile format.
func standardWebExposure(app *App) *twelvefactor.Exposure {
ports := []twelvefactor.Port{
{
Container: 8080,
Host: 80,
Protocol: &twelvefactor.HTTP{},
},
}
// If a certificate is attached to the "web" process, add an SSL port.
if cert, ok := app.Certs[webProcessType]; ok {
ports = append(ports, twelvefactor.Port{
Container: 8080,
Host: 443,
Protocol: &twelvefactor.HTTPS{
Cert: cert,
},
})
}
return &twelvefactor.Exposure{
External: app.Exposure == exposePublic,
Ports: ports,
}
}
func processExposure(app *App, name string, process Process) (*twelvefactor.Exposure, error) {
// No ports == not exposed
if len(process.Ports) == 0 {
return nil, nil
}
var ports []twelvefactor.Port
for _, p := range process.Ports {
var protocol twelvefactor.Protocol
switch p.Protocol {
case "http":
protocol = &twelvefactor.HTTP{}
case "https":
cert, ok := app.Certs[name]
if !ok {
return nil, &NoCertError{Process: name}
}
protocol = &twelvefactor.HTTPS{
Cert: cert,
}
case "tcp":
protocol = &twelvefactor.TCP{}
case "ssl":
cert, ok := app.Certs[name]
if !ok {
return nil, &NoCertError{Process: name}
}
protocol = &twelvefactor.SSL{
Cert: cert,
}
}
ports = append(ports, twelvefactor.Port{
Host: p.Host,
Container: p.Container,
Protocol: protocol,
})
}
return &twelvefactor.Exposure{
External: app.Exposure == exposePublic,
Ports: ports,
}, nil
}
func processSchedule(name string, p Process) twelvefactor.Schedule {
if p.Cron != nil {
return twelvefactor.CRONSchedule(*p.Cron)
}
return nil
}
func appendMessageToDescription(main string, user *User, message string) string {
var formatted string
if message != "" {
formatted = fmt.Sprintf(": '%s'", message)
}
return fmt.Sprintf("%s (%s%s)", main, user.Name, formatted)
}