A holder by derivation is recorded before an assignment can unsettle it (hq 170) #162

Merged
mesh-admin merged 1 commits from fix/170-a-derived-holder-is-recorded into main 2026-09-30 12:44:14 +00:00
5 changed files with 232 additions and 2 deletions
+10
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@@ -46,6 +46,13 @@ func assign(ctx context.Context, open *stores, node, module string) (string, err
return "", err
}
defer release()
// **Before the new assignment can unsettle a seat somebody holds only by being alone**
// (novox/hq 04-ISSUES/170): what the mesh derived so far is written down, and then the
// assignment resolves against a record rather than against a coincidence.
settled, err := recordDerivedHolders(ctx, open)
if err != nil {
return "", err
}
fresh, err := open.inventory.Assign(ctx, node, module)
if err != nil {
return "", err
@@ -57,6 +64,9 @@ func assign(ctx context.Context, open *stores, node, module string) (string, err
node, module), nil
}
said := fmt.Sprintf("%s is assigned %s", node, module)
for _, line := range settled {
said += "\n " + line
}
plan, _, err := planFor(ctx, open, node)
if err != nil {
// Kept, and still refused. Both halves are the answer, and the rest of the mesh is still
+92
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@@ -0,0 +1,92 @@
package main
import (
"context"
"fmt"
"sort"
"github.com/novox/mesh-controller/internal/catalogue"
)
// recordDerivedHolders writes down who holds each mesh-scoped seat that nobody was ever recorded
// as holding.
//
// **A seat held by derivation is a seat held by accident of being alone** (novox/hq
// 04-ISSUES/170). ADR 0131 lets a holder on record settle a seat, and lets any other assignment
// whose module could hold it stand beside the holder, eligible and silent. But a seat nobody
// ever handed over has no record, so its holder is whichever assignment happened to be the sole
// claimant — and the day a second one is assigned, both claim, both are refused, and the first
// one's whole machine stops resolving. That is what assigning a second postgres did to the
// control plane's own store.
//
// So the mesh writes the derived answer down before it acts on an assignment: for every
// mesh-scoped seat with exactly one resolved holder and nothing on record, that holder is
// recorded as the standing one — the same record `seat <name> --to <node>/<module>` makes by
// hand, made from what the mesh already resolved. A seat with two derived claimants is left
// alone: that is the ambiguity a person settles, and recording either would be guessing.
//
// Node-scoped seats are untouched: a record is one holder per seat, and a node-scoped seat has
// one holder per machine (ADR 0121), so there is nothing for a record to settle there.
func recordDerivedHolders(ctx context.Context, open *stores) ([]string, error) {
inv := open.inventory
shelf, err := inv.Catalogue(ctx)
if err != nil {
return nil, err
}
// exclude nobody: every node's claims, resolved with the holdings on record.
world, err := theRestOfTheMesh(ctx, inv, shelf, "")
if err != nil {
return nil, err
}
recorded, err := inv.Holdings(ctx)
if err != nil {
return nil, err
}
// A record is a row against a seat the store knows. A seat it does not — a mesh whose seats
// were never seeded, a seat a module declares for itself — stays held by derivation, as it
// always was; a missing row is not a reason an assignment fails.
known, err := inv.Seats(ctx)
if err != nil {
return nil, err
}
recordable := map[string]bool{}
for _, s := range known {
recordable[s.Name] = true
}
onRecord := map[string]bool{}
for _, h := range recorded {
if s, ok := catalogue.SeatNamed(h.Claim); ok {
onRecord[s.Name] = true
}
}
holders := map[string][]catalogue.Held{}
for _, h := range world.Held {
if h.Scope != catalogue.ScopeMesh {
continue
}
s, ok := catalogue.SeatNamed(h.Claim)
if !ok || onRecord[s.Name] || !recordable[s.Name] {
continue
}
holders[s.Name] = append(holders[s.Name], h)
}
names := make([]string, 0, len(holders))
for name := range holders {
names = append(names, name)
}
sort.Strings(names)
var said []string
for _, name := range names {
if len(holders[name]) != 1 {
continue
}
h := holders[name][0]
if err := inv.HoldSeat(ctx, name, catalogue.ScopeMesh, h.Node, h.Module); err != nil {
return said, err
}
said = append(said, fmt.Sprintf(
"recorded %s on %s as the standing holder of %s, which it held only by being alone",
h.Module, h.Node, name))
}
return said, nil
}
+110
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@@ -0,0 +1,110 @@
package main
import (
"strings"
"testing"
"github.com/novox/mesh-controller/internal/catalogue"
)
// A seat nobody ever handed over is held by whichever assignment happened to be alone — and the
// day a second module able to hold it is assigned, both claimed, both were refused, and the first
// one's machine stopped resolving (novox/hq 04-ISSUES/170). The mesh now writes the derived holder
// down before it acts, so the second assignment stands beside the holder on record.
func aSeatedStore() catalogue.Manifest {
return catalogue.Manifest{Module: "store", Version: "1",
Provides: []catalogue.Offer{{Name: "postgres-database", Scope: catalogue.ScopeMesh}},
Serves: map[string]map[string]any{"postgres-database": {"port": 5432}},
Claims: []catalogue.Claim{{Name: "mesh-store", Scope: catalogue.ScopeMesh}}}
}
func TestASecondEligibleHolderStandsBesideTheOneHeldByBeingAlone(t *testing.T) {
open := aMesh(t)
ctx := t.Context()
// Every deploy seeds the mesh's own seats; a record is a row against one of them.
if _, err := open.inventory.SeedSeats(ctx, catalogue.DefaultSeats()); err != nil {
t.Fatal(err)
}
register(t, open, aSeatedStore())
if _, err := assign(ctx, open, "anchor", "store"); err != nil {
t.Fatal(err)
}
said, err := assign(ctx, open, "laptop", "store")
if err != nil {
t.Fatalf("a second store, eligible for the seat, was refused:\n%s\n%v", said, err)
}
if strings.Contains(said, "cannot be worked out") {
t.Fatalf("assigning a second store unsettled the first one's machine:\n%s", said)
}
if !strings.Contains(said, "recorded store on anchor as the standing holder of mesh-store") {
t.Fatalf("the holder by derivation was not written down:\n%s", said)
}
holdings, err := open.inventory.Holdings(ctx)
if err != nil {
t.Fatal(err)
}
var found bool
for _, h := range holdings {
if h.Claim == "mesh-store" {
found = true
if h.Node != "anchor" || h.Module != "store" {
t.Fatalf("mesh-store is recorded on %s/%s, not on the one that held it", h.Node, h.Module)
}
}
}
if !found {
t.Fatalf("mesh-store has no holder on record after assigning: %v", holdings)
}
// And the record decides from here: the anchor's plan holds the seat, the laptop's does not.
for node, holds := range map[string]bool{"anchor": true, "laptop": false} {
plan, _, err := planFor(ctx, open, node)
if err != nil {
t.Fatalf("%s no longer resolves: %v", node, err)
}
var claimed bool
for _, c := range plan.Claims {
if c.Claim == "mesh-store" {
claimed = true
}
}
if claimed != holds {
t.Fatalf("%s holds mesh-store: %v, want %v", node, claimed, holds)
}
}
}
func TestAHolderOnRecordIsNotRewrittenByDerivation(t *testing.T) {
open := aMesh(t)
ctx := t.Context()
if _, err := open.inventory.SeedSeats(ctx, catalogue.DefaultSeats()); err != nil {
t.Fatal(err)
}
register(t, open, aSeatedStore())
for _, node := range []string{"anchor", "laptop"} {
if _, err := assign(ctx, open, node, "store"); err != nil {
t.Fatal(err)
}
}
// A person hands the seat to the laptop. From here the record decides, and what the mesh
// derives must never write over it.
if err := open.inventory.HoldSeat(ctx, "mesh-store", catalogue.ScopeMesh, "laptop", "store"); err != nil {
t.Fatal(err)
}
said, err := recordDerivedHolders(ctx, open)
if err != nil {
t.Fatal(err)
}
if len(said) != 0 {
t.Fatalf("a seat on record was written again from derivation: %v", said)
}
holdings, _ := open.inventory.Holdings(ctx)
for _, h := range holdings {
if h.Claim == "mesh-store" && h.Node != "laptop" {
t.Fatalf("the record moved to %s", h.Node)
}
}
}
+13
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@@ -158,3 +158,16 @@ func TestAStoreRowWithoutAProtocolKeepsTheCompiledOne(t *testing.T) {
t.Fatalf("the store's own columns were not kept: %+v", got)
}
}
func TestARefusalWithNothingOnRecordNamesTheHandover(t *testing.T) {
busSeatDelivering(t, "mesh-bus")
elsewhere := []Held{{Claim: "mesh-broker", Scope: ScopeMesh, Node: "anchor", Module: "old-broker"}}
_, problems := checkClaims([]Manifest{newBroker()}, Node{Name: "laptop"}, elsewhere, nil)
if len(problems) != 1 {
t.Fatalf("two derived claimants across machines were not refused: %v", problems)
}
if !strings.Contains(problems[0], "`seat mesh-broker --to anchor/old-broker`") {
t.Fatalf("the refusal does not name the handover that records the holder: %s", problems[0])
}
}
+7 -2
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@@ -707,9 +707,14 @@ func checkClaims(modules []Manifest, node Node, elsewhere []Held, holdings []Hel
}
switch h.Scope {
case ScopeMesh:
// Both claim and nobody is on record, or this refusal could not have happened.
// The remedy is the handover that records the holder (novox/hq ADR 0131,
// 04-ISSUES/170), so it is named here rather than left to be found.
problems = append(problems, fmt.Sprintf(
"%s on %s claims %q, which %s on %s already holds — one per mesh",
h.Module, node.Name, h.Claim, e.Module, e.Node))
"%s on %s claims %q, which %s on %s already holds — one per mesh. Nothing is "+
"on record for it; `seat %s --to %s/%s` records the holder, and the other "+
"assignment then stands beside it, eligible and silent",
h.Module, node.Name, h.Claim, e.Module, e.Node, h.Claim, e.Node, e.Module))
case ScopeSite:
if node.Site != "" && node.Site == e.Site {
problems = append(problems, fmt.Sprintf(