Review of 083: a message the store cannot take is held and retried on a ticker, not slept on, so enrolments are answered meanwhile; a newer one per subject supersedes; the password is replaced after the spend; the same presenter may finish after a lost answer; upgrades retry only on the store
This commit is contained in:
@@ -28,13 +28,15 @@ type following struct{ open *stores }
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func (f following) Upgraded(ctx context.Context, u link.Upgraded) error {
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func (f following) Upgraded(ctx context.Context, u link.Upgraded) error {
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inv := f.open.inventory
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inv := f.open.inventory
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// The store read first, and an outage there said as one, so the announcement is held and asked
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// again (novox/hq issue 083). Only here: a push that fails further down is not asked again.
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decision, err := inv.UpgradeOf(ctx, u.Module)
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decision, err := inv.UpgradeOf(ctx, u.Module)
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if err != nil {
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if err != nil {
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return err
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return notNow(err)
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}
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}
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on, err := inv.Running(ctx, u.Module)
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on, err := inv.Running(ctx, u.Module)
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if err != nil {
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if err != nil {
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return err
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return notNow(err)
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}
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}
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if len(on) == 0 {
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if len(on) == 0 {
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fmt.Printf("%s moved to %s; no machine runs it\n", u.Module, shortCommit(u.Commit))
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fmt.Printf("%s moved to %s; no machine runs it\n", u.Module, shortCommit(u.Commit))
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@@ -194,3 +196,12 @@ func (f following) Announceable(ctx context.Context) ([]link.Announcement, error
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}
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}
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return out, nil
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return out, nil
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}
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}
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// notNow marks a store that could not be read right now, so the announcement is held rather than
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// lost; anything else is returned as it was.
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func notNow(err error) error {
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if inventory.Unreachable(err) {
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return fmt.Errorf("%w: %w", link.ErrTryAgain, err)
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}
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return err
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}
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@@ -413,10 +413,18 @@ func TestATokenIsClaimedByOnePresenterAndSpentOnlyByIt(t *testing.T) {
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if err := inv.Spend(ctx, issued.Secret, "key-a"); err != nil {
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if err := inv.Spend(ctx, issued.Secret, "key-a"); err != nil {
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t.Fatalf("the presenter holding the claim could not spend it: %v", err)
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t.Fatalf("the presenter holding the claim could not spend it: %v", err)
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}
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}
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for _, by := range []string{"key-a", "key-b"} {
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// Spent: nobody else may claim it, ever.
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if _, err := inv.Claim(ctx, issued.Secret, by); !errors.Is(err, ErrTokenRefused) {
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if _, err := inv.Claim(ctx, issued.Secret, "key-b"); !errors.Is(err, ErrTokenRefused) {
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t.Fatalf("a spent token was claimed again by %s: %v", by, err)
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t.Fatalf("a spent token was claimed by another presenter: %v", err)
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}
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}
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// But the presenter that spent it may, and spend it again: its spend reached the store and the
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// answer did not reach the node, which asked again — refusing it would lock out a machine the
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// mesh holds as enrolled.
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if _, err := inv.Claim(ctx, issued.Secret, "key-a"); err != nil {
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t.Fatalf("the presenter whose answer was lost after its spend was refused: %v", err)
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}
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if err := inv.Spend(ctx, issued.Secret, "key-a"); err != nil {
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t.Fatalf("spending again by the same presenter failed: %v", err)
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}
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}
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}
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}
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+27
-16
@@ -203,15 +203,6 @@ func (i *Inventory) IssueToken(ctx context.Context, nodeName string, validFor ti
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// token that had expired.
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// token that had expired.
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var ErrTokenRefused = errors.New("that token cannot be used")
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var ErrTokenRefused = errors.New("that token cannot be used")
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// Redeem spends a token and reports which node it was for.
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//
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// It does not issue an identity. What a node presents afterwards to prove it is that node is not
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// decided anywhere (novox/hq ADR 0004 names the property, not the mechanism), and guessing at it
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// in a migration is the most expensive guess available here.
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//
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// The update is the check: one statement that both finds a live token and marks it used, so two
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// simultaneous redemptions of one secret cannot both succeed. Reading first and writing second
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// would leave exactly that gap.
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// ClaimLease is how long a claimed token is held for the one presenter that claimed it. Long
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// ClaimLease is how long a claimed token is held for the one presenter that claimed it. Long
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// enough for an enrolment to be tried again through a store restart; short enough that a host
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// enough for an enrolment to be tried again through a store restart; short enough that a host
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// which gave up and was started over, with keys of its own, is not kept waiting long.
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// which gave up and was started over, with keys of its own, is not kept waiting long.
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@@ -224,12 +215,17 @@ var ErrTokenInUse = errors.New("the token is being used by another enrolment")
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// Claim takes a token for one presenter — `by`, which names the key presenting it — for the length
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// Claim takes a token for one presenter — `by`, which names the key presenting it — for the length
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// of a lease, and says which node it enrols. The same presenter may claim it again, as may anyone
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// of a lease, and says which node it enrols. The same presenter may claim it again, as may anyone
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// once the lease has lapsed; nothing is spent until Spend (novox/hq 04-ISSUES/083).
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// once the lease has lapsed; nothing is spent until Spend (novox/hq 04-ISSUES/083).
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//
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// A token this same presenter already spent is claimed again too: its spend reached the store and
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// the answer did not reach the node, which asked again. Refusing it then would lock out a machine
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// the mesh holds as enrolled — with the key it is still presenting.
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func (i *Inventory) Claim(ctx context.Context, secret, by string) (Node, error) {
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func (i *Inventory) Claim(ctx context.Context, secret, by string) (Node, error) {
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var id string
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var id string
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err := i.store.Pool().QueryRow(ctx,
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err := i.store.Pool().QueryRow(ctx,
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`update enrolment_token set claimed_by = $2, claimed_until = now() + $3::interval
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`update enrolment_token set claimed_by = $2, claimed_until = now() + $3::interval
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where secret = $1 and redeemed is null and expires > now()
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where secret = $1 and expires > now()
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and (claimed_by is null or claimed_by = $2 or claimed_until < now())
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and ((redeemed is null and (claimed_by is null or claimed_by = $2 or claimed_until < now()))
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or (redeemed is not null and claimed_by = $2))
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returning node`, hashSecret(secret), by, ClaimLease.String()).Scan(&id)
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returning node`, hashSecret(secret), by, ClaimLease.String()).Scan(&id)
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if errors.Is(err, pgx.ErrNoRows) {
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if errors.Is(err, pgx.ErrNoRows) {
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// Unusable, or held by someone else — told apart, because the second passes.
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// Unusable, or held by someone else — told apart, because the second passes.
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@@ -237,8 +233,12 @@ func (i *Inventory) Claim(ctx context.Context, secret, by string) (Node, error)
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probe := i.store.Pool().QueryRow(ctx,
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probe := i.store.Pool().QueryRow(ctx,
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`select true from enrolment_token
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`select true from enrolment_token
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where secret = $1 and redeemed is null and expires > now()`, hashSecret(secret)).Scan(&held)
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where secret = $1 and redeemed is null and expires > now()`, hashSecret(secret)).Scan(&held)
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if probe == nil && held {
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switch {
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case probe == nil && held:
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return Node{}, ErrTokenInUse
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return Node{}, ErrTokenInUse
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case probe != nil && !errors.Is(probe, pgx.ErrNoRows):
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// The store went away between the two questions: "not now", not a refusal.
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return Node{}, probe
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}
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}
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return Node{}, ErrTokenRefused
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return Node{}, ErrTokenRefused
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}
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}
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@@ -251,12 +251,13 @@ func (i *Inventory) Claim(ctx context.Context, secret, by string) (Node, error)
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return n, err
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return n, err
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}
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}
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// Spend makes a claimed token used, only for the presenter holding the claim. The last write of an
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// Spend makes a claimed token used, only for the presenter holding the claim. The last write to the
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// enrolment, so a token is spent exactly when the node it enrolled is complete.
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// store in an enrolment, so a token is spent exactly when the node it enrolled is complete. Spent
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// again by the same presenter is not an error: an answer lost after the first spend.
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func (i *Inventory) Spend(ctx context.Context, secret, by string) error {
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func (i *Inventory) Spend(ctx context.Context, secret, by string) error {
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tag, err := i.store.Pool().Exec(ctx,
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tag, err := i.store.Pool().Exec(ctx,
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`update enrolment_token set redeemed = now()
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`update enrolment_token set redeemed = coalesce(redeemed, now())
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where secret = $1 and redeemed is null and claimed_by = $2`, hashSecret(secret), by)
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where secret = $1 and claimed_by = $2`, hashSecret(secret), by)
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if err != nil {
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if err != nil {
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return err
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return err
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}
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}
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@@ -266,6 +267,16 @@ func (i *Inventory) Spend(ctx context.Context, secret, by string) error {
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return nil
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return nil
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}
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}
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// Redeem spends a token in one step and reports which node it was for. Enrolment claims and then
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// spends (Claim, Spend); this is the one-step form, kept for what spends a token outright.
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//
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// It does not issue an identity. What a node presents afterwards to prove it is that node is not
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// decided anywhere (novox/hq ADR 0004 names the property, not the mechanism), and guessing at it
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// in a migration is the most expensive guess available here.
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//
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// The update is the check: one statement that both finds a live token and marks it used, so two
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// simultaneous redemptions of one secret cannot both succeed. Reading first and writing second
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// would leave exactly that gap.
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func (i *Inventory) Redeem(ctx context.Context, secret string) (Node, error) {
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func (i *Inventory) Redeem(ctx context.Context, secret string) (Node, error) {
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var id string
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var id string
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err := i.store.Pool().QueryRow(ctx,
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err := i.store.Pool().QueryRow(ctx,
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+28
-21
@@ -30,12 +30,15 @@ type Enrolment struct {
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Broker broker.Broker
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Broker broker.Broker
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}
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}
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// Enrol spends the token and records what the node presented.
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// Enrol records what the node presented and spends the token.
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//
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//
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// Order matters and it is the order things become irreversible. The token is spent first, in a
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// Order matters and it is the order things become irreversible (novox/hq issue 083). The token is
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// single statement that both finds and marks it, so two machines racing on one secret produce one
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// claimed first, in a single statement that both finds it and holds it for this presenter's key, so
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// winner. Only then is a key recorded — because recording a key for a node whose token turned out
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// two machines racing on one secret produce one holder. Then everything the node presented is
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// to be spent would leave the mesh believing a machine that never had the right to join.
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// written — each write an overwrite, so an attempt interrupted by the store going away can be made
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// again by the same presenter. Then the token is spent. Last, the token's secret stops being the
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// node's broker password: done after the spend, because a password replaced by an attempt that
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// then failed would be one nobody holds, and the node could not even log in to ask again.
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func (e Enrolment) Enrol(ctx context.Context, request EnrolRequest) (reply EnrolReply, err error) {
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func (e Enrolment) Enrol(ctx context.Context, request EnrolRequest) (reply EnrolReply, err error) {
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secret, public, profile := request.Secret, ed25519.PublicKey(request.PublicKey), request.Profile
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secret, public, profile := request.Secret, ed25519.PublicKey(request.PublicKey), request.Profile
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@@ -81,21 +84,6 @@ func (e Enrolment) Enrol(ctx context.Context, request EnrolRequest) (reply Enrol
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Signer: key.Public,
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Signer: key.Public,
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}
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}
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// The token's secret was the broker password up to this moment, which is what let this
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// connection exist at all. It is replaced now, so the one-time thing stays one-time and the
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// credential the node keeps for years is not the one that was pasted into a terminal.
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if e.Management != nil {
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password, err := freshPassword()
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if err != nil {
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return EnrolReply{}, err
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}
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if err := e.Management.CreateNodeAccount(ctx, node.Name, password); err != nil {
|
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return EnrolReply{}, fmt.Errorf(
|
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"%s's broker password could not be replaced: %w", node.Name, err)
|
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}
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reply.Password = password
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}
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// Recorded before the profile because the overlay is the first declaration this node will
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// Recorded before the profile because the overlay is the first declaration this node will
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// receive, and without this key the mesh cannot compose one. A node enrolled with no overlay
|
// receive, and without this key the mesh cannot compose one. A node enrolled with no overlay
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// key is a node the graph skips — an ordinary in-between state, and one worth leaving as
|
// key is a node the graph skips — an ordinary in-between state, and one worth leaving as
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@@ -124,11 +112,30 @@ func (e Enrolment) Enrol(ctx context.Context, request EnrolRequest) (reply Enrol
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}
|
}
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||||||
}
|
}
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||||||
|
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// Spent last, so a token is used exactly when the node it enrolled is complete.
|
// Spent once the node is complete in the store.
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||||||
if err := e.Inventory.Spend(ctx, secret, by); err != nil {
|
if err := e.Inventory.Spend(ctx, secret, by); err != nil {
|
||||||
return EnrolReply{}, fmt.Errorf("%s was written and its token could not be spent: %w", node.Name, err)
|
return EnrolReply{}, fmt.Errorf("%s was written and its token could not be spent: %w", node.Name, err)
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// The token's secret was the broker password up to this moment, which is what let this
|
||||||
|
// connection exist at all. It is replaced now, so the one-time thing stays one-time and the
|
||||||
|
// credential the node keeps for years is not the one that was pasted into a terminal. After
|
||||||
|
// the spend and not before: a replaced password on an attempt that failed would be held by
|
||||||
|
// nobody. If the broker will not take it now, the enrolment still stands — the node keeps
|
||||||
|
// the token's secret as its password, which it is told, and which is said here.
|
||||||
|
if e.Management != nil {
|
||||||
|
password, err := freshPassword()
|
||||||
|
if err != nil {
|
||||||
|
return EnrolReply{}, err
|
||||||
|
}
|
||||||
|
if err := e.Management.CreateNodeAccount(ctx, node.Name, password); err != nil {
|
||||||
|
log.Printf("%s is enrolled and its broker password could not be replaced, so it keeps "+
|
||||||
|
"the token's secret as its password: %v", node.Name, err)
|
||||||
|
} else {
|
||||||
|
reply.Password = password
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
if profile != nil {
|
if profile != nil {
|
||||||
// Not fatal if it fails. The profile is what the control plane needs in order to decide
|
// Not fatal if it fails. The profile is what the control plane needs in order to decide
|
||||||
// what this machine should run, and it is reported again on every connection — so losing
|
// what this machine should run, and it is reported again on every connection — so losing
|
||||||
|
|||||||
@@ -20,85 +20,85 @@ func (a *saidTo) Nack(_ uint64, _ bool, requeue bool) error {
|
|||||||
return nil
|
return nil
|
||||||
}
|
}
|
||||||
func (a *saidTo) Reject(uint64, bool) error { return nil }
|
func (a *saidTo) Reject(uint64, bool) error { return nil }
|
||||||
|
func (a *saidTo) unsettled() bool { return !a.acked && !a.nacked }
|
||||||
|
|
||||||
type heardWith struct{ err error }
|
type heardWith struct{ err error }
|
||||||
|
|
||||||
func (h heardWith) Heard(context.Context, Report) error { return h.err }
|
func (h heardWith) Heard(context.Context, Report) error { return h.err }
|
||||||
|
|
||||||
func aReport(t *testing.T, to *saidTo) amqp.Delivery {
|
// switchable answers with whatever it is set to — the store away, then back.
|
||||||
|
type switchable struct{ err error }
|
||||||
|
|
||||||
|
func (h *switchable) Heard(context.Context, Report) error { return h.err }
|
||||||
|
|
||||||
|
var tag uint64
|
||||||
|
|
||||||
|
func aReport(t *testing.T, to *saidTo, node, declared string) amqp.Delivery {
|
||||||
t.Helper()
|
t.Helper()
|
||||||
body, err := json.Marshal(Report{Node: "anchor", Applied: []string{"store"}})
|
body, err := json.Marshal(Report{Node: node, Declared: declared, Applied: []string{"store"}})
|
||||||
if err != nil {
|
if err != nil {
|
||||||
t.Fatal(err)
|
t.Fatal(err)
|
||||||
}
|
}
|
||||||
return amqp.Delivery{Acknowledger: to, RoutingKey: KeyReport, Body: body}
|
tag++
|
||||||
|
return amqp.Delivery{Acknowledger: to, RoutingKey: KeyReport, Body: body, DeliveryTag: tag}
|
||||||
}
|
}
|
||||||
|
|
||||||
// A report the store could not take right now goes back to the broker to be asked again; one the
|
func quiet() *log.Logger { return log.New(io.Discard, "", 0) }
|
||||||
// store answered no to is acknowledged, or it would come back for ever (novox/hq issue 082).
|
|
||||||
func TestAReportTheStoreCouldNotTakeIsKeptAndOneItRefusedIsNot(t *testing.T) {
|
|
||||||
quiet := log.New(io.Discard, "", 0)
|
|
||||||
|
|
||||||
notNow := &saidTo{}
|
// A report the store could not take right now is held, unsettled, and recorded when the store is
|
||||||
s := &Server{listener: heardWith{err: errors.Join(ErrTryAgain, errors.New("starting up"))}, log: quiet, again: 1}
|
// back; one the store answered no to is acknowledged; one recorded is acknowledged (issue 082, 083).
|
||||||
s.handleReport(context.Background(), aReport(t, notNow))
|
func TestAReportTheStoreCouldNotTakeIsHeldAndOneItRefusedIsNot(t *testing.T) {
|
||||||
if notNow.acked || !notNow.nacked || !notNow.requeued {
|
store := &switchable{err: errors.Join(ErrTryAgain, errors.New("starting up"))}
|
||||||
t.Fatalf("a report the store could not take yet was not handed back to be asked again: %+v", notNow)
|
s := &Server{listener: store, log: quiet()}
|
||||||
|
held := &saidTo{}
|
||||||
|
s.handleReport(context.Background(), aReport(t, held, "anchor", "d1"))
|
||||||
|
if !held.unsettled() || len(s.parked) != 1 {
|
||||||
|
t.Fatalf("a report the store could not take was not held: %+v, %d held", held, len(s.parked))
|
||||||
|
}
|
||||||
|
store.err = nil
|
||||||
|
s.retryHeld(context.Background())
|
||||||
|
if !held.acked || len(s.parked) != 0 {
|
||||||
|
t.Fatalf("a held report was not recorded once the store was back: %+v, %d held", held, len(s.parked))
|
||||||
}
|
}
|
||||||
|
|
||||||
refused := &saidTo{}
|
refused := &saidTo{}
|
||||||
s = &Server{listener: heardWith{err: errors.New("a report named no node")}, log: quiet, again: 1}
|
s = &Server{listener: heardWith{err: errors.New("a report named no node")}, log: quiet()}
|
||||||
s.handleReport(context.Background(), aReport(t, refused))
|
s.handleReport(context.Background(), aReport(t, refused, "anchor", "d1"))
|
||||||
if !refused.acked || refused.nacked {
|
if !refused.acked || refused.nacked {
|
||||||
t.Fatalf("a report the store answered no to was not acknowledged, so it would spin: %+v", refused)
|
t.Fatalf("a report the store answered no to was not acknowledged: %+v", refused)
|
||||||
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
recorded := &saidTo{}
|
// A newer report from the same node supersedes one of its reports still held: recorded after the
|
||||||
s = &Server{listener: heardWith{}, log: quiet}
|
// newer, the older would overwrite what the node is doing now.
|
||||||
s.handleReport(context.Background(), aReport(t, recorded))
|
func TestANewerReportSupersedesAHeldOneFromTheSameNode(t *testing.T) {
|
||||||
if !recorded.acked || recorded.nacked {
|
s := &Server{listener: heardWith{err: errors.Join(ErrTryAgain, errors.New("starting up"))}, log: quiet()}
|
||||||
t.Fatalf("a recorded report was not acknowledged: %+v", recorded)
|
older, newer, other := &saidTo{}, &saidTo{}, &saidTo{}
|
||||||
|
s.handleReport(context.Background(), aReport(t, older, "anchor", "d1"))
|
||||||
|
s.handleReport(context.Background(), aReport(t, other, "laptop", "d7"))
|
||||||
|
s.handleReport(context.Background(), aReport(t, newer, "anchor", "d2"))
|
||||||
|
if !older.acked {
|
||||||
|
t.Fatalf("the older report was not set aside by the newer: %+v", older)
|
||||||
|
}
|
||||||
|
if !newer.unsettled() || !other.unsettled() || len(s.parked) != 2 {
|
||||||
|
t.Fatalf("the newer report and another node's were not both held: newer %+v other %+v, %d held",
|
||||||
|
newer, other, len(s.parked))
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
// A store that has not come back within the bound is not restarting: the report is let go, loudly,
|
// A store that has not come back within the bound is not restarting: the report is let go, loudly,
|
||||||
// rather than holding every enrolment and report behind it for ever (novox/hq issue 082, review).
|
// rather than held for ever.
|
||||||
func TestAReportIsLetGoOnceTheStoreHasBeenGoneTooLong(t *testing.T) {
|
func TestAReportIsLetGoOnceTheStoreHasBeenGoneTooLong(t *testing.T) {
|
||||||
quiet := log.New(io.Discard, "", 0)
|
|
||||||
s := &Server{listener: heardWith{err: errors.Join(ErrTryAgain, errors.New("connection refused"))},
|
s := &Server{listener: heardWith{err: errors.Join(ErrTryAgain, errors.New("connection refused"))},
|
||||||
log: quiet, again: 1, giveUp: time.Millisecond}
|
log: quiet(), giveUp: time.Millisecond}
|
||||||
|
held := &saidTo{}
|
||||||
first := &saidTo{}
|
s.handleReport(context.Background(), aReport(t, held, "anchor", "d1"))
|
||||||
s.handleReport(context.Background(), aReport(t, first))
|
if !held.unsettled() {
|
||||||
if !first.requeued {
|
t.Fatalf("the first failure was not held: %+v", held)
|
||||||
t.Fatalf("the first failure was not handed back: %+v", first)
|
|
||||||
}
|
}
|
||||||
time.Sleep(5 * time.Millisecond)
|
time.Sleep(5 * time.Millisecond)
|
||||||
later := &saidTo{}
|
s.retryHeld(context.Background())
|
||||||
s.handleReport(context.Background(), aReport(t, later))
|
if !held.acked || len(s.parked) != 0 {
|
||||||
if !later.acked || later.nacked {
|
t.Fatalf("a report past the bound was not let go: %+v, %d held", held, len(s.parked))
|
||||||
t.Fatalf("a report past the bound was not let go, so it would hold the queue for ever: %+v", later)
|
|
||||||
}
|
|
||||||
// Let go, and forgotten: the same report arriving fresh starts a new clock.
|
|
||||||
again := &saidTo{}
|
|
||||||
s.handleReport(context.Background(), aReport(t, again))
|
|
||||||
if !again.requeued {
|
|
||||||
t.Fatalf("a report let go was not forgotten, so its next arrival is given no chance: %+v", again)
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
// Shutting down does not wait out the pause.
|
|
||||||
func TestAReportBeingTriedAgainDoesNotHoldUpShutdown(t *testing.T) {
|
|
||||||
quiet := log.New(io.Discard, "", 0)
|
|
||||||
s := &Server{listener: heardWith{err: errors.Join(ErrTryAgain, errors.New("starting up"))},
|
|
||||||
log: quiet, again: time.Hour}
|
|
||||||
ctx, cancel := context.WithCancel(context.Background())
|
|
||||||
cancel()
|
|
||||||
done := make(chan struct{})
|
|
||||||
go func() { s.handleReport(ctx, aReport(t, &saidTo{})); close(done) }()
|
|
||||||
select {
|
|
||||||
case <-done:
|
|
||||||
case <-time.After(5 * time.Second):
|
|
||||||
t.Fatal("a cancelled context still waited out the pause")
|
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|||||||
+135
-80
@@ -55,29 +55,40 @@ type Server struct {
|
|||||||
log *log.Logger
|
log *log.Logger
|
||||||
upgrader Upgrader
|
upgrader Upgrader
|
||||||
replayer Replayer
|
replayer Replayer
|
||||||
// again is how long a report the store could not take waits before it is handed back to
|
// Messages the store could not take right now, held unacknowledged and tried again on a
|
||||||
// the broker; zero means TryAgainAfter. giveUp is how long one report is kept trying before
|
// ticker, by subject (novox/hq issues 082, 083). again is the ticker's interval, zero meaning
|
||||||
// it is let go; zero means GiveUpAfter. waiting is when each report still trying first failed.
|
// TryAgainAfter; giveUp is how long one is kept, zero meaning GiveUpAfter.
|
||||||
again time.Duration
|
again time.Duration
|
||||||
giveUp time.Duration
|
giveUp time.Duration
|
||||||
waiting map[string]time.Time
|
parked map[string]*held
|
||||||
|
}
|
||||||
|
|
||||||
|
// held is one message the store could not take, kept to be tried again.
|
||||||
|
type held struct {
|
||||||
|
delivery amqp.Delivery
|
||||||
|
retry func(context.Context, amqp.Delivery)
|
||||||
|
what string
|
||||||
|
first time.Time
|
||||||
}
|
}
|
||||||
|
|
||||||
// ErrTryAgain marks a listener's failure as "not now": what it was given is worth keeping and
|
// ErrTryAgain marks a listener's failure as "not now": what it was given is worth keeping and
|
||||||
// asking again, as when the store is restarting (novox/hq issue 082).
|
// asking again, as when the store is restarting (novox/hq issue 082).
|
||||||
var ErrTryAgain = errors.New("not now, try again")
|
var ErrTryAgain = errors.New("not now, try again")
|
||||||
|
|
||||||
// TryAgainAfter is the pause before a report the store could not take goes back to the broker.
|
// TryAgainAfter is how often messages the store could not take are tried again. A store comes
|
||||||
// The consumer takes one message at a time, so without it a restarting store would be asked in
|
// back in seconds, and a report a few seconds late is still current.
|
||||||
// a tight loop; a store comes back in seconds, and a report a few seconds late is still current.
|
|
||||||
const TryAgainAfter = 2 * time.Second
|
const TryAgainAfter = 2 * time.Second
|
||||||
|
|
||||||
// GiveUpAfter bounds how long one report holds the queue. The consumer takes one message at a
|
// GiveUpAfter bounds how long one message is kept trying. A store that has not come back in this
|
||||||
// time, so a report being tried again holds every enrolment, build result and other report
|
// long is not restarting, and the message is let go with a line saying it was lost.
|
||||||
// behind it; a store that has not come back in this long is not restarting, and holding the
|
|
||||||
// mesh's control queue for it would turn one lost report into a mesh that answers nothing.
|
|
||||||
const GiveUpAfter = 2 * time.Minute
|
const GiveUpAfter = 2 * time.Minute
|
||||||
|
|
||||||
|
// Prefetch is how many messages the broker hands the control plane before it has settled them.
|
||||||
|
// More than one because a message the store could not take is held, unsettled, while the loop goes
|
||||||
|
// on answering others — an enrolment above all, which a host is waiting on (novox/hq issue 083).
|
||||||
|
// Bounded, because what is held is also what the broker has not kept on its own disk as pending.
|
||||||
|
const Prefetch = 64
|
||||||
|
|
||||||
// Records tells the server where to keep build results.
|
// Records tells the server where to keep build results.
|
||||||
//
|
//
|
||||||
// Set after Connect rather than passed to it, because a control plane that only publishes — the
|
// Set after Connect rather than passed to it, because a control plane that only publishes — the
|
||||||
@@ -206,10 +217,11 @@ func (s *Server) Close() {
|
|||||||
// receive half of what it expects — a fault this project has already had, between a module's
|
// receive half of what it expects — a fault this project has already had, between a module's
|
||||||
// daemon and its capability server.
|
// daemon and its capability server.
|
||||||
func (s *Server) Serve(ctx context.Context) error {
|
func (s *Server) Serve(ctx context.Context) error {
|
||||||
// Prefetch of one. The control plane writes to a database per message, and a burst of
|
// A bounded prefetch rather than one. The loop still takes messages one at a time; what the
|
||||||
// enrolments delivered all at once would be held in memory rather than left on the broker,
|
// prefetch buys is that a message the store could not take can be held while the loop goes on
|
||||||
// which is the one place they survive a restart.
|
// to the next, instead of every enrolment waiting behind it (novox/hq issue 083). Anything held
|
||||||
if err := s.channel.Qos(1, 0, false); err != nil {
|
// goes back to the broker if the control plane stops, because nothing held is acknowledged.
|
||||||
|
if err := s.channel.Qos(Prefetch, 0, false); err != nil {
|
||||||
return err
|
return err
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -250,10 +262,19 @@ func (s *Server) Serve(ctx context.Context) error {
|
|||||||
s.log.Printf("consuming %s, bound to %s/%s", UpgradeQueue, EventsExchange, KeyModuleUpgraded)
|
s.log.Printf("consuming %s, bound to %s/%s", UpgradeQueue, EventsExchange, KeyModuleUpgraded)
|
||||||
}
|
}
|
||||||
|
|
||||||
|
again := s.again
|
||||||
|
if again == 0 {
|
||||||
|
again = TryAgainAfter
|
||||||
|
}
|
||||||
|
ticker := time.NewTicker(again)
|
||||||
|
defer ticker.Stop()
|
||||||
|
|
||||||
for {
|
for {
|
||||||
select {
|
select {
|
||||||
case <-ctx.Done():
|
case <-ctx.Done():
|
||||||
return nil
|
return nil
|
||||||
|
case <-ticker.C:
|
||||||
|
s.retryHeld(ctx)
|
||||||
case delivery, ok := <-catchups:
|
case delivery, ok := <-catchups:
|
||||||
if !ok {
|
if !ok {
|
||||||
if catchups != nil {
|
if catchups != nil {
|
||||||
@@ -334,13 +355,17 @@ func (s *Server) handleReport(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
_ = delivery.Reject(false)
|
_ = delivery.Reject(false)
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
|
// A node's newer report supersedes one of its older reports still held: the older is its
|
||||||
|
// past, and recorded after the newer it would overwrite what the node is doing now.
|
||||||
|
subject := "report " + report.Node
|
||||||
|
s.supersede(subject, delivery)
|
||||||
if s.listener != nil {
|
if s.listener != nil {
|
||||||
if err := s.listener.Heard(context.Background(), report); err != nil {
|
if err := s.listener.Heard(context.Background(), report); err != nil {
|
||||||
// Kept, not acknowledged, while the store cannot take it: the node reports an apply
|
// Held, not acknowledged, while the store cannot take it: the node reports an apply
|
||||||
// once, and a report lost here is a node the mesh never hears from again — the store
|
// once, and a report lost here is a node the mesh never hears from again — the store
|
||||||
// restarting under the adoption that node just applied lost exactly that (issue 082).
|
// restarting under the adoption that node just applied lost exactly that (issue 082).
|
||||||
what := fmt.Sprintf("%s's report of declaration %s", report.Node, report.Declared)
|
what := fmt.Sprintf("%s's report of declaration %s", report.Node, report.Declared)
|
||||||
if s.tryLater(ctx, delivery, what, err) {
|
if s.tryLater(delivery, subject, what, err, s.handle) {
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
// Said rather than swallowed. A report the mesh heard and failed to write down is a
|
// Said rather than swallowed. A report the mesh heard and failed to write down is a
|
||||||
@@ -357,59 +382,82 @@ func (s *Server) handleReport(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
default:
|
default:
|
||||||
s.log.Printf("%s applied %d resource(s)", report.Node, len(report.Applied))
|
s.log.Printf("%s applied %d resource(s)", report.Node, len(report.Applied))
|
||||||
}
|
}
|
||||||
s.settled(delivery)
|
s.settled(subject, delivery)
|
||||||
_ = delivery.Ack(false)
|
_ = delivery.Ack(false)
|
||||||
}
|
}
|
||||||
|
|
||||||
// tryLater hands a message the store could not take right now back to the broker, to be asked
|
// tryLater holds a message the store could not take right now, to be tried again on the ticker,
|
||||||
// again after a pause, and says whether it did (novox/hq issues 082, 083).
|
// and says whether it did (novox/hq issues 082, 083).
|
||||||
//
|
//
|
||||||
// "Right now" is the store unreachable or restarting — ErrTryAgain from a listener, or an error
|
// "Right now" is the store unreachable or restarting — ErrTryAgain from a listener, or an error the
|
||||||
// the inventory reads as an outage. Anything else is an answer, and is left to the caller to
|
// inventory reads as an outage. Anything else is an answer, and is left to the caller to settle.
|
||||||
// settle. One message holds its queue at most giveUpAfter: the consumer takes one message at a
|
// Held means unacknowledged and set aside: the loop goes on to the next message, so an enrolment a
|
||||||
// time, so a message tried again holds everything behind it, and a store that has not come back
|
// host is waiting on is answered while a report waits for the store. One message is held at most
|
||||||
// in that long is not restarting. Past it, the message is let go with a line saying it was lost.
|
// giveUpAfter; past it, it is let go with a line saying it was lost, and the caller settles it.
|
||||||
func (s *Server) tryLater(ctx context.Context, delivery amqp.Delivery, what string, err error) bool {
|
func (s *Server) tryLater(delivery amqp.Delivery, subject, what string, err error,
|
||||||
|
retry func(context.Context, amqp.Delivery)) bool {
|
||||||
if !errors.Is(err, ErrTryAgain) && !inventory.Unreachable(err) {
|
if !errors.Is(err, ErrTryAgain) && !inventory.Unreachable(err) {
|
||||||
return false
|
return false
|
||||||
}
|
}
|
||||||
key := waitingKey(delivery)
|
if s.parked == nil {
|
||||||
if s.waiting == nil {
|
s.parked = map[string]*held{}
|
||||||
s.waiting = map[string]time.Time{}
|
|
||||||
}
|
}
|
||||||
first, seen := s.waiting[key]
|
h, ok := s.parked[subject]
|
||||||
if !seen {
|
if !ok || h.delivery.DeliveryTag != delivery.DeliveryTag {
|
||||||
first = time.Now()
|
h = &held{delivery: delivery, retry: retry, what: what, first: time.Now()}
|
||||||
s.waiting[key] = first
|
s.parked[subject] = h
|
||||||
|
s.log.Printf("could not keep %s yet; holding it to try again: %v", what, err)
|
||||||
|
return true
|
||||||
}
|
}
|
||||||
if time.Since(first) >= s.giveUpAfter() {
|
if time.Since(h.first) >= s.giveUpAfter() {
|
||||||
delete(s.waiting, key)
|
delete(s.parked, subject)
|
||||||
s.log.Printf("LOST %s: the store has not come back in %s, and the queue cannot wait longer: %v",
|
s.log.Printf("LOST %s: the store has not come back in %s: %v", what, s.giveUpAfter(), err)
|
||||||
what, s.giveUpAfter(), err)
|
|
||||||
return false
|
return false
|
||||||
}
|
}
|
||||||
again := s.again
|
|
||||||
if again == 0 {
|
|
||||||
again = TryAgainAfter
|
|
||||||
}
|
|
||||||
s.log.Printf("could not keep %s yet, and will again in %s: %v", what, again, err)
|
|
||||||
select {
|
|
||||||
case <-ctx.Done():
|
|
||||||
case <-time.After(again):
|
|
||||||
}
|
|
||||||
_ = delivery.Nack(false, true)
|
|
||||||
return true
|
return true
|
||||||
}
|
}
|
||||||
|
|
||||||
// settled forgets a message's time spent waiting, once it has been handled either way.
|
// supersede drops a message held for a subject when a newer one for it arrives: the older is
|
||||||
func (s *Server) settled(delivery amqp.Delivery) { delete(s.waiting, waitingKey(delivery)) }
|
// acknowledged, because acting on it after the newer would undo the newer.
|
||||||
|
func (s *Server) supersede(subject string, newer amqp.Delivery) {
|
||||||
|
h, ok := s.parked[subject]
|
||||||
|
if !ok || h.delivery.DeliveryTag == newer.DeliveryTag {
|
||||||
|
return
|
||||||
|
}
|
||||||
|
delete(s.parked, subject)
|
||||||
|
s.log.Printf("set aside %s: a newer one arrived", h.what)
|
||||||
|
_ = h.delivery.Ack(false)
|
||||||
|
}
|
||||||
|
|
||||||
// waitingKey is a message by its content: the same message handed back is the same key.
|
// settled forgets a message once it has been handled either way.
|
||||||
func waitingKey(delivery amqp.Delivery) string {
|
func (s *Server) settled(subject string, delivery amqp.Delivery) {
|
||||||
sum := sha256.Sum256(append([]byte(delivery.RoutingKey+"\x00"), delivery.Body...))
|
if h, ok := s.parked[subject]; ok && h.delivery.DeliveryTag == delivery.DeliveryTag {
|
||||||
|
delete(s.parked, subject)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
// digest names a message by its content.
|
||||||
|
func digest(body []byte) string {
|
||||||
|
sum := sha256.Sum256(body)
|
||||||
return hex.EncodeToString(sum[:])
|
return hex.EncodeToString(sum[:])
|
||||||
}
|
}
|
||||||
|
|
||||||
|
// retryHeld tries every held message again. Each handler holds it again, settles it, or lets it
|
||||||
|
// go past the bound.
|
||||||
|
func (s *Server) retryHeld(ctx context.Context) {
|
||||||
|
for _, h := range s.snapshot() {
|
||||||
|
h.retry(ctx, h.delivery)
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
func (s *Server) snapshot() []*held {
|
||||||
|
out := make([]*held, 0, len(s.parked))
|
||||||
|
for _, h := range s.parked {
|
||||||
|
out = append(out, h)
|
||||||
|
}
|
||||||
|
return out
|
||||||
|
}
|
||||||
|
|
||||||
func (s *Server) giveUpAfter() time.Duration {
|
func (s *Server) giveUpAfter() time.Duration {
|
||||||
if s.giveUp == 0 {
|
if s.giveUp == 0 {
|
||||||
return GiveUpAfter
|
return GiveUpAfter
|
||||||
@@ -445,9 +493,8 @@ func (s *Server) handleEnrol(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
s.reply(ctx, delivery, reply)
|
s.reply(ctx, delivery, reply)
|
||||||
|
|
||||||
// Acknowledged after the reply is sent, so a control plane that dies mid-answer leaves the
|
// Acknowledged after the reply is sent, so a control plane that dies mid-answer leaves the
|
||||||
// request on the broker rather than having consumed it silently. Enrolment is idempotent
|
// request on the broker rather than having consumed it silently. Asked again by the same
|
||||||
// only in the sense that the token is spent — a redelivery gets the refusal, which is
|
// presenter, an enrolment finishes: the token is held for its key and spent last (issue 083).
|
||||||
// correct and visible, where a lost request is neither.
|
|
||||||
_ = delivery.Ack(false)
|
_ = delivery.Ack(false)
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -493,18 +540,20 @@ func (s *Server) handleBuilt(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
_ = delivery.Reject(false)
|
_ = delivery.Reject(false)
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
|
// Each build result its own subject: none supersedes another, and recording one twice is
|
||||||
|
// harmless — the build is kept by its id.
|
||||||
|
subject := "build " + digest(delivery.Body)
|
||||||
if err := s.recorder.Built(ctx, result); err != nil {
|
if err := s.recorder.Built(ctx, result); err != nil {
|
||||||
// Kept while the store cannot take it: a build result lost here is never announced, and
|
// Held while the store cannot take it: a build result lost here is never announced (083).
|
||||||
// recording one twice is harmless — the build is kept by its id (issue 083).
|
if s.tryLater(delivery, subject, fmt.Sprintf("a build result from %s", result.On), err, s.handle) {
|
||||||
if s.tryLater(ctx, delivery, fmt.Sprintf("a build result from %s", result.On), err) {
|
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
s.log.Printf("cannot keep a build result from %s: %v", result.On, err)
|
s.log.Printf("cannot keep a build result from %s: %v", result.On, err)
|
||||||
s.settled(delivery)
|
s.settled(subject, delivery)
|
||||||
_ = delivery.Reject(false)
|
_ = delivery.Reject(false)
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
s.settled(delivery)
|
s.settled(subject, delivery)
|
||||||
switch {
|
switch {
|
||||||
case result.Failed != "":
|
case result.Failed != "":
|
||||||
s.log.Printf("%s could not build %s", result.On, result.Repository)
|
s.log.Printf("%s could not build %s", result.On, result.Repository)
|
||||||
@@ -518,13 +567,16 @@ func (s *Server) handleBuilt(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
//
|
//
|
||||||
// Acknowledged after the work. A replay that fails for a reason other than the store is not one
|
// Acknowledged after the work. A replay that fails for a reason other than the store is not one
|
||||||
// that succeeds by being handed the same request again, so that is acknowledged and said; but a
|
// that succeeds by being handed the same request again, so that is acknowledged and said; but a
|
||||||
// store that could not be read right now is asked again after a pause, bounded, rather than the
|
// store that could not be read right now is held and asked again, bounded, rather than the
|
||||||
// request lost until the catalogue next restarts (issue 083).
|
// request lost until the catalogue next restarts (issue 083). One request stands for all: a newer
|
||||||
|
// one supersedes one still held.
|
||||||
func (s *Server) catchingUp(ctx context.Context, delivery amqp.Delivery) {
|
func (s *Server) catchingUp(ctx context.Context, delivery amqp.Delivery) {
|
||||||
requeued := false
|
const subject = "catch-up"
|
||||||
|
s.supersede(subject, delivery)
|
||||||
|
holding := false
|
||||||
defer func() {
|
defer func() {
|
||||||
if !requeued {
|
if !holding {
|
||||||
s.settled(delivery)
|
s.settled(subject, delivery)
|
||||||
_ = delivery.Ack(false)
|
_ = delivery.Ack(false)
|
||||||
}
|
}
|
||||||
}()
|
}()
|
||||||
@@ -534,8 +586,8 @@ func (s *Server) catchingUp(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
}
|
}
|
||||||
announcements, err := s.replayer.Announceable(ctx)
|
announcements, err := s.replayer.Announceable(ctx)
|
||||||
if err != nil {
|
if err != nil {
|
||||||
if s.tryLater(ctx, delivery, "a catalogue's request to catch up", err) {
|
if s.tryLater(delivery, subject, "a catalogue's request to catch up", err, s.catchingUp) {
|
||||||
requeued = true
|
holding = true
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
s.log.Printf("a catalogue asked to catch up and the mesh could not read its builds: %v", err)
|
s.log.Printf("a catalogue asked to catch up and the mesh could not read its builds: %v", err)
|
||||||
@@ -560,19 +612,24 @@ func (s *Server) catchingUp(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
//
|
//
|
||||||
// **Acknowledged whatever happens, but one thing.** A failure here is usually the control plane
|
// **Acknowledged whatever happens, but one thing.** A failure here is usually the control plane
|
||||||
// being unable to act on an upgrade — a machine that cannot be resolved, a broker that will not
|
// being unable to act on an upgrade — a machine that cannot be resolved, a broker that will not
|
||||||
// take a declaration — and none of those get better by being handed the same message again.
|
// take a declaration — and none of those get better by being handed the same message again. The
|
||||||
// Requeuing those would put a poison message at the head of a durable queue and stop every
|
// one exception is the upgrader saying the store could not be read for the moment (ErrTryAgain):
|
||||||
// upgrade behind it. The one exception is the store unreachable for the moment, which does get
|
// that is held and asked again, bounded (novox/hq issue 083). Only the upgrader's word counts
|
||||||
// better: that is asked again after a pause, for a bounded time (novox/hq issue 083).
|
// here, not an error that merely looks like an outage — a push that timed out on the second
|
||||||
|
// machine is not asked again, or the first would be pushed every few seconds for two minutes.
|
||||||
|
// A newer move of the same module supersedes one still held.
|
||||||
func (s *Server) upgraded(ctx context.Context, delivery amqp.Delivery) {
|
func (s *Server) upgraded(ctx context.Context, delivery amqp.Delivery) {
|
||||||
requeued := false
|
var u Upgraded
|
||||||
|
_ = json.Unmarshal(delivery.Body, &u)
|
||||||
|
subject := "upgrade " + u.Module
|
||||||
|
s.supersede(subject, delivery)
|
||||||
|
holding := false
|
||||||
defer func() {
|
defer func() {
|
||||||
if !requeued {
|
if !holding {
|
||||||
s.settled(delivery)
|
s.settled(subject, delivery)
|
||||||
_ = delivery.Ack(false)
|
_ = delivery.Ack(false)
|
||||||
}
|
}
|
||||||
}()
|
}()
|
||||||
var u Upgraded
|
|
||||||
if err := json.Unmarshal(delivery.Body, &u); err != nil {
|
if err := json.Unmarshal(delivery.Body, &u); err != nil {
|
||||||
s.log.Printf("an upgrade announcement could not be read: %v", err)
|
s.log.Printf("an upgrade announcement could not be read: %v", err)
|
||||||
return
|
return
|
||||||
@@ -582,11 +639,9 @@ func (s *Server) upgraded(ctx context.Context, delivery amqp.Delivery) {
|
|||||||
return
|
return
|
||||||
}
|
}
|
||||||
if err := s.upgrader.Upgraded(ctx, u); err != nil {
|
if err := s.upgrader.Upgraded(ctx, u); err != nil {
|
||||||
// A store that could not be read right now is asked again, bounded: acting on an upgrade
|
if errors.Is(err, ErrTryAgain) &&
|
||||||
// twice pushes the same declarations twice, which converges (issue 083). Any other
|
s.tryLater(delivery, subject, fmt.Sprintf("%s's move to %s", u.Module, short(u.Commit)), err, s.upgraded) {
|
||||||
// failure is acknowledged, as before — requeued, it would stop every upgrade behind it.
|
holding = true
|
||||||
if s.tryLater(ctx, delivery, fmt.Sprintf("%s's move to %s", u.Module, short(u.Commit)), err) {
|
|
||||||
requeued = true
|
|
||||||
return
|
return
|
||||||
}
|
}
|
||||||
s.log.Printf("%s moved to %s and the mesh could not act on it: %v",
|
s.log.Printf("%s moved to %s and the mesh could not act on it: %v",
|
||||||
|
|||||||
@@ -42,10 +42,13 @@ func a(t *testing.T, to *settledAs, key string, v any) amqp.Delivery {
|
|||||||
if err != nil {
|
if err != nil {
|
||||||
t.Fatal(err)
|
t.Fatal(err)
|
||||||
}
|
}
|
||||||
return amqp.Delivery{Acknowledger: to, RoutingKey: key, Body: body}
|
tag++
|
||||||
|
return amqp.Delivery{Acknowledger: to, RoutingKey: key, Body: body, DeliveryTag: tag}
|
||||||
}
|
}
|
||||||
|
|
||||||
func quietServer() *Server { return &Server{log: log.New(io.Discard, "", 0), again: 1} }
|
func quietServer() *Server { return &Server{log: log.New(io.Discard, "", 0)} }
|
||||||
|
|
||||||
|
func (a *settledAs) held() bool { return !a.acked && !a.nacked && !a.rejected }
|
||||||
|
|
||||||
// A build result the store could not take right now is handed back; one it refused is rejected,
|
// A build result the store could not take right now is handed back; one it refused is rejected,
|
||||||
// as before; one it kept is acknowledged.
|
// as before; one it kept is acknowledged.
|
||||||
@@ -56,7 +59,7 @@ func TestABuildResultWaitsOutARestartingStore(t *testing.T) {
|
|||||||
err error
|
err error
|
||||||
want func(*settledAs) bool
|
want func(*settledAs) bool
|
||||||
}{
|
}{
|
||||||
{"restarting", restarting, func(s *settledAs) bool { return s.requeued && !s.acked && !s.rejected }},
|
{"restarting", restarting, func(s *settledAs) bool { return s.held() }},
|
||||||
{"refused", errors.New("no such module"), func(s *settledAs) bool { return s.rejected && !s.nacked }},
|
{"refused", errors.New("no such module"), func(s *settledAs) bool { return s.rejected && !s.nacked }},
|
||||||
{"kept", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
{"kept", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
} {
|
} {
|
||||||
@@ -79,7 +82,8 @@ func TestAnUpgradeWaitsOutARestartingStoreAndNothingElse(t *testing.T) {
|
|||||||
err error
|
err error
|
||||||
want func(*settledAs) bool
|
want func(*settledAs) bool
|
||||||
}{
|
}{
|
||||||
{"restarting", restarting, func(s *settledAs) bool { return s.requeued && !s.acked }},
|
{"the store away, said by the upgrader", errors.Join(ErrTryAgain, restarting), func(s *settledAs) bool { return s.held() }},
|
||||||
|
{"a push that timed out", context.DeadlineExceeded, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
{"cannot act", errors.New("anchor cannot be resolved"), func(s *settledAs) bool { return s.acked && !s.nacked }},
|
{"cannot act", errors.New("anchor cannot be resolved"), func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
{"acted", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
{"acted", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
} {
|
} {
|
||||||
@@ -101,7 +105,7 @@ func TestACatchUpWaitsOutARestartingStore(t *testing.T) {
|
|||||||
err error
|
err error
|
||||||
want func(*settledAs) bool
|
want func(*settledAs) bool
|
||||||
}{
|
}{
|
||||||
{"restarting", restarting, func(s *settledAs) bool { return s.requeued && !s.acked }},
|
{"restarting", restarting, func(s *settledAs) bool { return s.held() }},
|
||||||
{"unreadable", errors.New("a build row is malformed"), func(s *settledAs) bool { return s.acked && !s.nacked }},
|
{"unreadable", errors.New("a build row is malformed"), func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
{"nothing to replay", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
{"nothing to replay", nil, func(s *settledAs) bool { return s.acked && !s.nacked }},
|
||||||
} {
|
} {
|
||||||
|
|||||||
Reference in New Issue
Block a user