mirror of
https://github.com/smallstep/certificates.git
synced 2024-11-11 07:11:00 +00:00
411 lines
12 KiB
Go
411 lines
12 KiB
Go
package acme
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import (
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"context"
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"crypto/x509"
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"encoding/json"
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"sort"
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"strings"
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"time"
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"github.com/pkg/errors"
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"github.com/smallstep/certificates/authority/provisioner"
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"github.com/smallstep/nosql"
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)
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var defaultOrderExpiry = time.Hour * 24
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// Order contains order metadata for the ACME protocol order type.
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type Order struct {
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Status string `json:"status"`
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Expires string `json:"expires,omitempty"`
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Identifiers []Identifier `json:"identifiers"`
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NotBefore string `json:"notBefore,omitempty"`
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NotAfter string `json:"notAfter,omitempty"`
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Error interface{} `json:"error,omitempty"`
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Authorizations []string `json:"authorizations"`
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Finalize string `json:"finalize"`
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Certificate string `json:"certificate,omitempty"`
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ID string `json:"-"`
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}
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// ToLog enables response logging.
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func (o *Order) ToLog() (interface{}, error) {
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b, err := json.Marshal(o)
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if err != nil {
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return nil, ServerInternalErr(errors.Wrap(err, "error marshaling order for logging"))
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}
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return string(b), nil
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}
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// GetID returns the Order ID.
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func (o *Order) GetID() string {
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return o.ID
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}
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// OrderOptions options with which to create a new Order.
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type OrderOptions struct {
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AccountID string `json:"accID"`
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Identifiers []Identifier `json:"identifiers"`
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NotBefore time.Time `json:"notBefore"`
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NotAfter time.Time `json:"notAfter"`
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backdate time.Duration
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defaultDuration time.Duration
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}
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type order struct {
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ID string `json:"id"`
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AccountID string `json:"accountID"`
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Created time.Time `json:"created"`
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Expires time.Time `json:"expires,omitempty"`
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Status string `json:"status"`
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Identifiers []Identifier `json:"identifiers"`
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NotBefore time.Time `json:"notBefore,omitempty"`
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NotAfter time.Time `json:"notAfter,omitempty"`
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Error *Error `json:"error,omitempty"`
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Authorizations []string `json:"authorizations"`
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Certificate string `json:"certificate,omitempty"`
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}
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// newOrder returns a new Order type.
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func newOrder(db nosql.DB, ops OrderOptions) (*order, error) {
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id, err := randID()
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if err != nil {
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return nil, err
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}
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authzs := make([]string, len(ops.Identifiers))
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for i, identifier := range ops.Identifiers {
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az, err := newAuthz(db, ops.AccountID, identifier)
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if err != nil {
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return nil, err
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}
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authzs[i] = az.getID()
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}
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now := clock.Now()
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var backdate time.Duration
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nbf := ops.NotBefore
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if nbf.IsZero() {
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nbf = now
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backdate = -1 * ops.backdate
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}
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naf := ops.NotAfter
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if naf.IsZero() {
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naf = nbf.Add(ops.defaultDuration)
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}
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o := &order{
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ID: id,
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AccountID: ops.AccountID,
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Created: now,
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Status: StatusPending,
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Expires: now.Add(defaultOrderExpiry),
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Identifiers: ops.Identifiers,
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NotBefore: nbf.Add(backdate),
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NotAfter: naf,
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Authorizations: authzs,
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}
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if err := o.save(db, nil); err != nil {
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return nil, err
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}
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// Update the "order IDs by account ID" index //
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oids, err := getOrderIDsByAccount(db, ops.AccountID)
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if err != nil {
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return nil, err
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}
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newOids := append(oids, o.ID)
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if err = orderIDs(newOids).save(db, oids, o.AccountID); err != nil {
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db.Del(orderTable, []byte(o.ID))
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return nil, err
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}
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return o, nil
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}
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type orderIDs []string
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// save is used to update the list of orderIDs keyed by ACME account ID
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// stored in the database.
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//
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// This method always converts empty lists to 'nil' when storing to the DB. We
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// do this to avoid any confusion between an empty list and a nil value in the
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// db.
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func (oids orderIDs) save(db nosql.DB, old orderIDs, accID string) error {
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var (
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err error
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oldb []byte
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newb []byte
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)
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if len(old) == 0 {
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oldb = nil
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} else {
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oldb, err = json.Marshal(old)
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if err != nil {
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return ServerInternalErr(errors.Wrap(err, "error marshaling old order IDs slice"))
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}
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}
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if len(oids) == 0 {
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newb = nil
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} else {
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newb, err = json.Marshal(oids)
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if err != nil {
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return ServerInternalErr(errors.Wrap(err, "error marshaling new order IDs slice"))
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}
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}
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_, swapped, err := db.CmpAndSwap(ordersByAccountIDTable, []byte(accID), oldb, newb)
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switch {
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case err != nil:
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return ServerInternalErr(errors.Wrapf(err, "error storing order IDs for account %s", accID))
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case !swapped:
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return ServerInternalErr(errors.Errorf("error storing order IDs "+
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"for account %s; order IDs changed since last read", accID))
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default:
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return nil
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}
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}
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func (o *order) save(db nosql.DB, old *order) error {
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var (
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err error
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oldB []byte
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)
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if old == nil {
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oldB = nil
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} else {
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if oldB, err = json.Marshal(old); err != nil {
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return ServerInternalErr(errors.Wrap(err, "error marshaling old acme order"))
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}
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}
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newB, err := json.Marshal(o)
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if err != nil {
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return ServerInternalErr(errors.Wrap(err, "error marshaling new acme order"))
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}
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_, swapped, err := db.CmpAndSwap(orderTable, []byte(o.ID), oldB, newB)
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switch {
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case err != nil:
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return ServerInternalErr(errors.Wrap(err, "error storing order"))
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case !swapped:
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return ServerInternalErr(errors.New("error storing order; " +
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"value has changed since last read"))
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default:
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return nil
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}
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}
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// updateStatus updates order status if necessary.
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func (o *order) updateStatus(db nosql.DB) (*order, error) {
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_newOrder := *o
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newOrder := &_newOrder
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now := time.Now().UTC()
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switch o.Status {
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case StatusInvalid:
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return o, nil
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case StatusValid:
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return o, nil
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case StatusReady:
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// check expiry
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if now.After(o.Expires) {
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newOrder.Status = StatusInvalid
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newOrder.Error = MalformedErr(errors.New("order has expired"))
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break
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}
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return o, nil
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case StatusPending:
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// check expiry
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if now.After(o.Expires) {
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newOrder.Status = StatusInvalid
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newOrder.Error = MalformedErr(errors.New("order has expired"))
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break
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}
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var count = map[string]int{
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StatusValid: 0,
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StatusInvalid: 0,
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StatusPending: 0,
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}
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for _, azID := range o.Authorizations {
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az, err := getAuthz(db, azID)
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if err != nil {
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return nil, err
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}
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if az, err = az.updateStatus(db); err != nil {
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return nil, err
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}
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st := az.getStatus()
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count[st]++
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}
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switch {
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case count[StatusInvalid] > 0:
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newOrder.Status = StatusInvalid
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// No change in the order status, so just return the order as is -
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// without writing any changes.
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case count[StatusPending] > 0:
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return newOrder, nil
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case count[StatusValid] == len(o.Authorizations):
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newOrder.Status = StatusReady
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default:
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return nil, ServerInternalErr(errors.New("unexpected authz status"))
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}
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default:
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return nil, ServerInternalErr(errors.Errorf("unrecognized order status: %s", o.Status))
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}
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if err := newOrder.save(db, o); err != nil {
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return nil, err
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}
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return newOrder, nil
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}
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// finalize signs a certificate if the necessary conditions for Order completion
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// have been met.
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func (o *order) finalize(db nosql.DB, csr *x509.CertificateRequest, auth SignAuthority, p Provisioner) (*order, error) {
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var err error
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if o, err = o.updateStatus(db); err != nil {
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return nil, err
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}
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switch o.Status {
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case StatusInvalid:
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return nil, OrderNotReadyErr(errors.Errorf("order %s has been abandoned", o.ID))
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case StatusValid:
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return o, nil
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case StatusPending:
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return nil, OrderNotReadyErr(errors.Errorf("order %s is not ready", o.ID))
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case StatusReady:
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break
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default:
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return nil, ServerInternalErr(errors.Errorf("unexpected status %s for order %s", o.Status, o.ID))
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}
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// RFC8555: The CSR MUST indicate the exact same set of requested
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// identifiers as the initial newOrder request. Identifiers of type "dns"
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// MUST appear either in the commonName portion of the requested subject
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// name or in an extensionRequest attribute [RFC2985] requesting a
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// subjectAltName extension, or both.
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if csr.Subject.CommonName != "" {
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csr.DNSNames = append(csr.DNSNames, csr.Subject.CommonName)
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}
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csr.DNSNames = uniqueLowerNames(csr.DNSNames)
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orderNames := make([]string, len(o.Identifiers))
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for i, n := range o.Identifiers {
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orderNames[i] = n.Value
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}
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orderNames = uniqueLowerNames(orderNames)
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// Validate identifier names against CSR alternative names.
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if len(csr.DNSNames) != len(orderNames) {
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return nil, BadCSRErr(errors.Errorf("CSR names do not match identifiers exactly: CSR names = %v, Order names = %v", csr.DNSNames, orderNames))
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}
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for i := range csr.DNSNames {
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if csr.DNSNames[i] != orderNames[i] {
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return nil, BadCSRErr(errors.Errorf("CSR names do not match identifiers exactly: CSR names = %v, Order names = %v", csr.DNSNames, orderNames))
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}
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}
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if len(csr.IPAddresses) > 0 {
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return nil, BadCSRErr(errors.Errorf("CSR contains IP Address SANs, but should only contain DNS Names"))
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}
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if len(csr.EmailAddresses) > 0 {
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return nil, BadCSRErr(errors.Errorf("CSR contains Email Address SANs, but should only contain DNS Names"))
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}
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if len(csr.URIs) > 0 {
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return nil, BadCSRErr(errors.Errorf("CSR contains URI SANs, but should only contain DNS Names"))
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}
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// Get authorizations from the ACME provisioner.
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ctx := provisioner.NewContextWithMethod(context.Background(), provisioner.SignMethod)
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signOps, err := p.AuthorizeSign(ctx, "")
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if err != nil {
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return nil, ServerInternalErr(errors.Wrapf(err, "error retrieving authorization options from ACME provisioner"))
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}
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// Create and store a new certificate.
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certChain, err := auth.Sign(csr, provisioner.Options{
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NotBefore: provisioner.NewTimeDuration(o.NotBefore),
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NotAfter: provisioner.NewTimeDuration(o.NotAfter),
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}, signOps...)
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if err != nil {
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return nil, ServerInternalErr(errors.Wrapf(err, "error generating certificate for order %s", o.ID))
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}
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cert, err := newCert(db, CertOptions{
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AccountID: o.AccountID,
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OrderID: o.ID,
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Leaf: certChain[0],
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Intermediates: certChain[1:],
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})
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if err != nil {
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return nil, err
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}
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_newOrder := *o
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newOrder := &_newOrder
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newOrder.Certificate = cert.ID
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newOrder.Status = StatusValid
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if err := newOrder.save(db, o); err != nil {
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return nil, err
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}
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return newOrder, nil
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}
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// getOrder retrieves and unmarshals an ACME Order type from the database.
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func getOrder(db nosql.DB, id string) (*order, error) {
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b, err := db.Get(orderTable, []byte(id))
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if nosql.IsErrNotFound(err) {
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return nil, MalformedErr(errors.Wrapf(err, "order %s not found", id))
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} else if err != nil {
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return nil, ServerInternalErr(errors.Wrapf(err, "error loading order %s", id))
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}
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var o order
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if err := json.Unmarshal(b, &o); err != nil {
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return nil, ServerInternalErr(errors.Wrap(err, "error unmarshaling order"))
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}
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return &o, nil
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}
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// toACME converts the internal Order type into the public acmeOrder type for
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// presentation in the ACME protocol.
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func (o *order) toACME(ctx context.Context, db nosql.DB, dir *directory) (*Order, error) {
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azs := make([]string, len(o.Authorizations))
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for i, aid := range o.Authorizations {
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azs[i] = dir.getLink(ctx, AuthzLink, true, aid)
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}
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ao := &Order{
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Status: o.Status,
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Expires: o.Expires.Format(time.RFC3339),
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Identifiers: o.Identifiers,
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NotBefore: o.NotBefore.Format(time.RFC3339),
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NotAfter: o.NotAfter.Format(time.RFC3339),
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Authorizations: azs,
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Finalize: dir.getLink(ctx, FinalizeLink, true, o.ID),
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ID: o.ID,
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}
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if o.Certificate != "" {
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ao.Certificate = dir.getLink(ctx, CertificateLink, true, o.Certificate)
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}
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return ao, nil
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}
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// uniqueLowerNames returns the set of all unique names in the input after all
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// of them are lowercased. The returned names will be in their lowercased form
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// and sorted alphabetically.
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func uniqueLowerNames(names []string) (unique []string) {
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nameMap := make(map[string]int, len(names))
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for _, name := range names {
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nameMap[strings.ToLower(name)] = 1
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}
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unique = make([]string, 0, len(nameMap))
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for name := range nameMap {
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unique = append(unique, name)
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}
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sort.Strings(unique)
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return
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}
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