Files
mesh-controller/internal/catalogue/seats.go
T
jschoubben fb87f9f7d6 The mesh-broker seat delivers nothing
The bus is the only broker (novox/hq ADR 0117): messaging is subjects on it,
scoped by a module's own emits/consumes, not a server handed out as a
provision. So the seat joins mesh-controller and the-catalogue in delivering
no interface. Full suite green.
2026-09-26 19:34:14 +02:00

154 lines
5.8 KiB
Go

package catalogue
import (
"fmt"
"sort"
"strings"
)
// The seats a mesh can have (novox/hq ADR 0110).
//
// **A closed set, defined here rather than by whoever claims one.** Until this, a well-formed name
// became a seat by being claimed, so nothing could say which seats a mesh has or who fills them:
// `the-showcase` and `the-build-machine` were each invented by the module claiming it. The set is
// what a person reads to learn what a mesh can have, so an entry nobody argued for is an entry
// nobody can explain — the same reason every shape in the host's vocabulary names its decision.
//
// A seat is held by a module assignment. What the mesh knows about a holder is what it knows about
// that assignment; nothing about holders is kept here or anywhere else.
// Seat is one role the mesh defines.
type Seat struct {
// Name is what a manifest claims.
Name string
// Scope is where there may be only one holder.
Scope string
// Delivers is the provision the seat's holder answers for, or empty. A seat that delivers a
// provision may only be held by a module providing it at the seat's scope, and its holder is
// what a requirement for that provision resolves to when several modules provide it.
Delivers string
// Decision is the record that made it a seat.
Decision string
}
// seats is the whole set, in the order a person reads it: the mesh's own, then a node's.
var seats = []Seat{
{Name: "mesh-controller", Scope: ScopeMesh, Decision: "novox/hq ADR 0079"},
{Name: "mesh-store", Scope: ScopeMesh, Delivers: "postgres-database", Decision: "novox/hq ADR 0079"},
// The bus is the only broker (novox/hq ADR 0117): a module's messaging is subjects on it,
// scoped by its own emits/consumes, not a server handed out as a provision. So this seat
// delivers nothing, like mesh-controller and the-catalogue. The `amqp` interface — a private
// broker per consumer — retires with the compatibility broker.
{Name: "mesh-broker", Scope: ScopeMesh, Decision: "novox/hq ADR 0079"},
{Name: "the-artifact-store", Scope: ScopeMesh, Delivers: "artifact-store", Decision: "novox/hq ADR 0075"},
{Name: "the-catalogue", Scope: ScopeMesh, Decision: "novox/hq ADR 0110"},
{Name: "npm-package-registry", Scope: ScopeMesh, Delivers: "npm-package-registry", Decision: "novox/hq ADR 0109"},
{Name: "git", Scope: ScopeMesh, Delivers: "git", Decision: "novox/hq ADR 0111"},
{Name: "the-build-machine", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-dns-port", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-intrusion-prevention", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-packet-filter", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-private-network", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-resolver-configuration", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
{Name: "the-showcase", Scope: ScopeNode, Decision: "novox/hq ADR 0110"},
}
// Seats is every seat the mesh defines, in reading order.
func Seats() []Seat {
return append([]Seat(nil), seats...)
}
// SeatNamed is the seat a claim names, if the mesh defines one.
func SeatNamed(name string) (Seat, bool) {
for _, s := range seats {
if s.Name == name {
return s, true
}
}
return Seat{}, false
}
// SeatDelivering is the seat whose holder answers for a provision, if there is one.
func SeatDelivering(provision string) (Seat, bool) {
if provision == "" {
return Seat{}, false
}
for _, s := range seats {
if s.Delivers == provision {
return s, true
}
}
return Seat{}, false
}
// claimProblems is what is wrong with a manifest's claims against the set.
//
// Three refusals, each naming the seat: a seat the mesh does not define, a seat claimed at another
// scope, and a seat that delivers a provision claimed by a module that does not provide it — which
// would make the module the mesh's answer for something it cannot answer.
func claimProblems(m Manifest) []string {
var problems []string
for _, c := range m.Claims {
seat, known := SeatNamed(c.Name)
if !known {
problems = append(problems, fmt.Sprintf(
"%s claims %q, which is not a seat this mesh defines (novox/hq ADR 0110) — "+
"the seats are: %s", m.Module, c.Name, seatNames()))
continue
}
if c.At() != seat.Scope {
problems = append(problems, fmt.Sprintf(
"%s claims %s at scope %q, and %s is a %s seat",
m.Module, c.Name, c.At(), c.Name, seat.Scope))
}
if seat.Delivers != "" && !providesAt(m, seat.Delivers, seat.Scope) {
problems = append(problems, fmt.Sprintf(
"%s claims %s, whose holder answers for %q, and %s does not provide %q at %s scope",
m.Module, c.Name, seat.Delivers, m.Module, seat.Delivers, seat.Scope))
}
}
return problems
}
func providesAt(m Manifest, provision, scope string) bool {
for _, o := range m.Provides {
if o.Name == provision && o.At() == scope {
return true
}
}
return false
}
func seatNames() string {
names := make([]string, 0, len(seats))
for _, s := range seats {
names = append(names, s.Name)
}
sort.Strings(names)
return strings.Join(names, ", ")
}
// HolderAmong is which of several providers of a provision holds the seat that delivers it.
//
// Found by the (node, module) pair, because a provider is identified by both (novox/hq to-be 23):
// two modules on one node could both provide a provision, and only the one holding the seat
// answers for it. Nothing when no seat delivers the provision, when nobody holds
// it, or when the holder is not among the providers offered.
func HolderAmong(provision string, providers []Provider, held []Held) (Provider, bool) {
seat, delivered := SeatDelivering(provision)
if !delivered {
return Provider{}, false
}
for _, h := range held {
if h.Claim != seat.Name || h.Scope != seat.Scope {
continue
}
for _, p := range providers {
if p.Node == h.Node && p.Module == h.Module {
return p, true
}
}
}
return Provider{}, false
}