Derive the guard from taken modules only: their published private-network ports and their manifests' guards (hq ADR 0103)

This commit is contained in:
2026-09-22 17:58:37 +02:00
parent 28b7fb81ba
commit 8db66e9532
4 changed files with 182 additions and 24 deletions
+58 -3
View File
@@ -59,6 +59,8 @@ func anchorRendering(adopted bool) Rendering {
Mesh: []string{"10.42.0.1"},
Foundation: []int{5671},
Adopted: adopted,
// Genesis takes the foundation's modules.
Taken: map[string]bool{"postgres": true, "lavinmq": true},
}
}
@@ -151,8 +153,9 @@ func TestAnAdoptedNodeLoadsNoFilterOfTheMeshs(t *testing.T) {
if guard == nil || got[GuardUnitID()] == nil || got[GuardRunningID()] == nil {
t.Fatalf("no guard: %v", keys(got))
}
if guard["content"] != AsGuard([]int{5432, 15672}) {
t.Fatalf("the guard does not guard the store and the management port:\n%s", guard["content"])
if guard["content"] != AsGuard([]int{5432, 5672, 15672}) {
t.Fatalf("the guard does not guard the store, the broker and its management port:\n%s",
guard["content"])
}
if !reflect.DeepEqual(got[GuardRunningID()]["restart-on"], []any{GuardID(), GuardUnitID()}) {
t.Fatalf("the guard is not reloaded when its table changes: %v", got[GuardRunningID()])
@@ -252,7 +255,7 @@ func TestAGivenPortIsUsedEverywhereThePortIs(t *testing.T) {
if o := got["adoption.opening-tcp-5433-forwarded"]; o == nil || o["to"] != 5432 {
t.Fatalf("no opening for the given port: %v", keys(got))
}
if guard := got[GuardID()]["content"]; guard != AsGuard([]int{5433, 15673}) {
if guard := got[GuardID()]["content"]; guard != AsGuard([]int{5433, 5672, 15673}) {
t.Fatalf("the guard does not guard the given ports:\n%s", guard)
}
}
@@ -281,3 +284,55 @@ func TestAGivenPortIsTheNodesAndReachesSomething(t *testing.T) {
t.Fatalf("a given port is called stray: %v", stray)
}
}
// novox/hq ADR 0103: the guard is derived, and from taken modules only — every machine port a taken
// module publishes that the filter admits from the private network only, and the ports its
// manifest guards. A module assigned but not taken is not guarded: its port may still be the
// predecessor's.
func TestTheGuardIsDerivedFromTakenModulesOnly(t *testing.T) {
guardOf := func(with Rendering) string {
t.Helper()
composed, err := anAdoptedAnchor().Compose(with)
if err != nil {
t.Fatal(err)
}
content, _ := byID(composed.Resources)[GuardID()]["content"].(string)
return content
}
// The broker taken, the store not: the broker's plain port follows from its listens (from
// the mesh, published), its management port from its manifest; the store is not guarded, and
// neither is the bus, which the mesh needs from everywhere.
with := anchorRendering(true)
with.Taken = map[string]bool{"lavinmq": true}
if got := guardOf(with); got != AsGuard([]int{5672, 15672}) {
t.Fatalf("the guard is not the taken broker's ports:\n%s", got)
}
// A taken module publishing a port admitted from everywhere is not guarded; one admitted from
// the mesh is. The registry is exposed everywhere on this node, and hello-web listens from
// everywhere.
with.Taken = map[string]bool{"distribution": true, "hello-web": true}
if got := guardOf(with); got != "" {
t.Fatalf("a port admitted from everywhere is guarded:\n%s", got)
}
with.Settings = nil
if got := guardOf(with); got != AsGuard([]int{5000}) {
t.Fatalf("the registry, from the mesh only, is not guarded:\n%s", got)
}
// Nothing taken, nothing guarded — and no guard at all rather than an empty set.
with = anchorRendering(true)
with.Taken = nil
if got := guardOf(with); got != "" {
t.Fatalf("an untaken store is guarded:\n%s", got)
}
// A given port is followed: where the machine put it is what is refused.
with = anchorRendering(true)
with.Given = map[string]map[int]int{"lavinmq": {5672: 5682, 15672: 15673}}
with.Ports["lavinmq"] = map[int]int{5671: 5671, 5672: 5682}
if got := guardOf(with); got != AsGuard([]int{5432, 5682, 15673}) {
t.Fatalf("the guard does not follow the given ports:\n%s", got)
}
}
+75 -20
View File
@@ -138,6 +138,11 @@ type Rendering struct {
// port the software uses (novox/hq ADR 0100) — the foundation's ports, as genesis chose them.
// They win over anything the mesh would assign and over a manifest's own long-form mapping.
Given map[string]map[int]int
// Taken is the modules taken on this adopted node (novox/hq ADR 0100). The guard is derived
// from these only (ADR 0103): a port of a module assigned but not taken may still be the
// predecessor's.
Taken map[string]bool
}
// machinePort is where a module's port lives on this machine, or the port itself when the mesh has
@@ -586,50 +591,100 @@ func (r Resolution) compose(with Rendering, owner map[string]string) ([]map[stri
// First, before anything a module declares: what the mesh needs reachable, then its guard.
// The order a machine applies is the order written here.
ours := Openings(rules, with.Foundation, Published(out))
ours = append(ours, GuardResources(r.guarded(out, owner, with))...)
ours = append(ours, GuardResources(r.guarded(out, owner, rules, with))...)
out = append(ours, out...)
}
return out, nil
}
// guarded is the machine ports of every guarded port of the modules here: where each module's
// container publishes it, as composed — or where the machine put it when no container does.
func (r Resolution) guarded(out []map[string]any, owner map[string]string, with Rendering) []int {
// guarded is what the mesh's guard refuses on an adopted node (novox/hq ADR 0103): derived, and
// for taken modules only.
//
// For each taken module, every machine port its containers publish that the filter would admit
// from the private network only — a published port is forwarded, not received, so a found
// firewall filtering only what it receives never sees it — together with the ports the module's
// manifest guards explicitly (the store's port, the broker's management port), wherever the
// machine put them. A port of a module assigned but not taken is not guarded: it may still be the
// predecessor's, serving the predecessor's other machines. The foundation's ports are admitted
// from everywhere and are never guarded.
func (r Resolution) guarded(out []map[string]any, owner map[string]string, rules []Rule,
with Rendering) []int {
meshOnly := map[int]bool{}
for _, rule := range rules {
if rule.Protocol == "tcp" && rule.From == FromMesh {
meshOnly[rule.Port] = true
}
}
for _, port := range with.Foundation {
delete(meshOnly, port)
}
seen := map[int]bool{}
var ports []int
guard := func(at int) {
if !seen[at] {
seen[at] = true
ports = append(ports, at)
}
}
for _, m := range r.Modules {
if !with.Taken[m.Module] {
continue
}
var mine []map[string]any
for _, resource := range out {
if owner[fmt.Sprint(resource["id"])] == m.Module {
mine = append(mine, resource)
}
}
for outer := range Published(mine)["tcp"] {
if meshOnly[outer] {
guard(outer)
}
}
for _, want := range m.Guards {
at := with.machinePort(m.Module, want)
for _, resource := range out {
if owner[fmt.Sprint(resource["id"])] != m.Module ||
fmt.Sprint(resource["type"]) != "container" {
for _, resource := range mine {
if fmt.Sprint(resource["type"]) != "container" {
continue
}
listed, _ := resource["ports"].([]any)
for _, entry := range listed {
parts := strings.Split(strings.TrimSpace(fmt.Sprint(entry)), ":")
if len(parts) < 2 {
continue
}
inner, err := strconv.Atoi(strings.SplitN(parts[len(parts)-1], "/", 2)[0])
if err != nil || inner != want {
continue
}
if outer, err := strconv.Atoi(parts[len(parts)-2]); err == nil {
outer, inner, _, ok := mapping(fmt.Sprint(entry))
if ok && inner == want {
at = outer
}
}
}
if !seen[at] {
seen[at] = true
ports = append(ports, at)
}
guard(at)
}
}
sort.Ints(ports)
return ports
}
// mapping reads a container's port mapping — `[address:]outer:inner[/protocol]`, the address
// possibly an IPv6 one in brackets — indexing from the end, so an address's own colons never
// shift the ports. Not ok for a short form or anything that is not a mapping.
func mapping(written string) (outer, inner int, address string, ok bool) {
written = strings.TrimSpace(written)
if cut := strings.LastIndex(written, "/"); cut >= 0 {
written = written[:cut]
}
parts := strings.Split(written, ":")
if len(parts) < 2 {
return 0, 0, "", false
}
inner, err := strconv.Atoi(parts[len(parts)-1])
if err != nil {
return 0, 0, "", false
}
outer, err = strconv.Atoi(parts[len(parts)-2])
if err != nil {
return 0, 0, "", false
}
return outer, inner, strings.Join(parts[:len(parts)-2], ":"), true
}
// Rules is the rule set this node's filter is derived from: every module's listens, what was
// computed for this machine, and each module's per-node exposure. The same answer whether the node
// is adopted or converged — the one loads it as a filter, the other declares it as openings.