Step 5 of the connectivity order. Every node's internal name resolves to its overlay address, on every node, computed centrally because it needs every node at once. Under `.internal`, which IANA reserved for exactly this in 2024 -- a name there can never collide with a public one, so an internal name that leaks into a public resolver fails rather than reaching a stranger's machine. The suffix is settable for a mesh that wants its own. Delivered in the same declaration as the peer list rather than a second one. A node holding the peers and not the names, or the reverse, is half on the network for as long as that lasts. This is not the /etc/hosts floor the design removes. That floor existed because a node had to reach the mesh's database before its own DNS worked -- a fallback for a circularity that is now gone. This is the mechanism: the complete set of names, generated whole and owned by the mesh, rather than a patch written underneath something else. A resolver daemon becomes necessary when names are wanted that are not one-per-node, and that is not yet true. A node resolves its own name to its overlay address rather than a loopback, because a service binding to the name it was given would otherwise listen somewhere nothing else can reach -- and the failure would appear on every other machine rather than that one. A node with no address gets no name. A name resolving to nothing is worse than no name: connecting to an address that does not answer hangs, where a name that does not resolve fails at once and says which name it was. Found while writing it: a test asserting every file in the declaration is mode 0600 would have forced /etc/hosts to 0600 and broken every lookup on the machine, to protect a file that is not secret. Verified in the lab: three machines, nine name lookups, each resolving to the right overlay address and reaching it.
226 lines
9.6 KiB
Go
226 lines
9.6 KiB
Go
package overlay
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import (
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"encoding/json"
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"fmt"
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"strings"
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"testing"
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)
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func declarationFor(t *testing.T, node Node, peers []Peer) (string, []map[string]any) {
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t.Helper()
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raw, err := Declaration(node, peers, nil, "")
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if err != nil {
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t.Fatal(err)
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}
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var d struct {
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Declaration int `json:"declaration"`
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Resources []map[string]any `json:"resources"`
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}
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if err := json.Unmarshal(raw, &d); err != nil {
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t.Fatal(err)
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}
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if d.Declaration != 1 {
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t.Fatalf("declaration version %d", d.Declaration)
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}
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for _, r := range d.Resources {
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if r["type"] == "file" {
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return r["content"].(string), d.Resources
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}
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}
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t.Fatal("the declaration has no configuration file in it")
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return "", nil
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}
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func TestNoPrivateKeyEverTravels(t *testing.T) {
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// The property the whole design rests on: the node generated its keypair and kept the private
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// half, so the mesh composes a configuration for a node it cannot impersonate. A private key
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// appearing here would mean the control plane had one — and a copy of its database would then
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// be every node's network identity.
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config, _ := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"},
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[]Peer{{Name: "anchor", Key: "HUB", Allowed: "10.42.0.0/16", Endpoint: "198.51.100.1:51820"}})
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if strings.Contains(config, "PrivateKey") {
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t.Error("the configuration carries a PrivateKey line; the mesh must never hold one")
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}
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if !strings.Contains(config, "private-key "+DefaultKeyPath) {
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t.Error("the configuration does not point at the key file the node wrote, so the " +
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"interface would come up with no key at all")
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}
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}
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func TestTheDeclarationUsesOnlyShapesTheHostAlreadyHas(t *testing.T) {
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// Connectivity needs nothing new from tier 0, and that is worth holding: the host does not
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// know what a private network is, and should not learn.
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_, resources := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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allowed := map[string]bool{"package": true, "file": true, "service": true,
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"directory": true, "container": true, "action": true}
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for _, r := range resources {
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if !allowed[r["type"].(string)] {
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t.Errorf("the overlay declaration uses %q, which the host does not have", r["type"])
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}
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}
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}
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func TestTheInterfaceComesBackAfterAReboot(t *testing.T) {
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// A node whose overlay only exists while something is watching is not a node that survives
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// being switched off and on — and it would come back unreachable, which is the worst way to
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// come back.
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_, resources := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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for _, r := range resources {
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if r["type"] == "service" {
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if r["boot"] != "enabled" {
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t.Error("the overlay interface is not enabled at boot")
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}
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if r["state"] != "running" {
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t.Error("the overlay interface is not asked to be running")
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}
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return
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}
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}
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t.Error("nothing in the declaration brings the interface up")
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}
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func TestTheConfigurationIsNotWorldReadable(t *testing.T) {
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// It lists every peer's key and endpoint, which is a map of the mesh. Not secret the way a
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// private key is, and not something to leave readable on a machine somebody else also uses.
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// The peer list specifically, not every file. `/etc/hosts` is in here too and must be
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// world-readable, or nothing on the machine resolves anything — a check that swept all files
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// would force it to 0600 and break the machine to protect a file that is not secret.
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_, resources := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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for _, r := range resources {
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if r["id"] == "overlay-config" && r["mode"] != "0600" {
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t.Errorf("the peer list is mode %v", r["mode"])
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}
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if r["id"] == "mesh-names" && r["mode"] != "0644" {
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t.Errorf("the name file is mode %v; nothing on the machine could read it", r["mode"])
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}
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}
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}
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func TestAPeerThatCannotBeDialledSaysSo(t *testing.T) {
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// A [Peer] with no Endpoint is correct and looks like a mistake. Saying why stops somebody
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// helpfully adding one that cannot work.
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config, _ := declarationFor(t, Node{Name: "anchor", Key: "HUB", Address: "10.42.0.1",
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Endpoint: "198.51.100.1:51820", Hub: true},
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[]Peer{{Name: "laptop", Key: "PUB", Allowed: "10.42.0.2/32", Why: "routes through this hub"}})
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if strings.Contains(config, "Endpoint =") {
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t.Error("an endpoint was written for a peer that has none")
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}
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if !strings.Contains(config, "cannot be dialled") {
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t.Error("the file does not say why that peer has no endpoint")
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}
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}
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func TestTheFileSaysNotToEditIt(t *testing.T) {
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// It is replaced whenever the graph changes. An edit survives until then and vanishes, which
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// is worse than never being applied — the machine works, then stops, and nothing changed
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// that anybody remembers.
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config, _ := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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if !strings.Contains(config, "Do not edit") {
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t.Error("a generated file does not say it is generated")
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}
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}
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func TestANodeWithNoAddressIsRefused(t *testing.T) {
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// Rather than a configuration with a blank address, which wg-quick would reject on the
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// machine, at boot, where the failure is much harder to see.
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if _, err := Declaration(Node{Name: "laptop", Key: "PUB"}, nil, nil, ""); err == nil {
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t.Fatal("a node with no overlay address was given a configuration")
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}
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}
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func TestOnlyAReachableNodeListens(t *testing.T) {
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// A ListenPort on a node nothing can dial is a port open for no reason.
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config, _ := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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if strings.Contains(config, "ListenPort") {
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t.Error("a node that cannot be dialled was told to listen")
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}
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config, _ = declarationFor(t, Node{Name: "anchor", Key: "HUB", Address: "10.42.0.1",
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Endpoint: "198.51.100.1:51820"}, nil)
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if !strings.Contains(config, "ListenPort = 51820") {
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t.Error("a reachable node does not listen on the port its endpoint names")
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}
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}
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func TestTheServiceIsRestartedWhenThePeerListChanges(t *testing.T) {
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// The fault this exists to catch, found in the lab the moment a third node arrived: a running
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// WireGuard interface does not re-read its configuration. The file was replaced, the service
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// was already running so nothing reloaded it, and every existing node kept a network that no
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// longer matched the mesh — while looking entirely successful.
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//
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// So the declaration has to verify what the interface is *carrying*, not what the file says.
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//
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// And it must be declared state rather than a command: the host refuses an action arriving
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// over the link (novox/hq ADR 0005), correctly, which is how this shape was arrived at. There
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// is a test below that no action is ever in here.
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_, resources := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"},
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[]Peer{{Name: "anchor", Key: "HUBKEY", Allowed: "10.42.0.0/16"}})
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for _, r := range resources {
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if r["type"] != "service" {
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continue
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}
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reflects := fmt.Sprint(r["restart-on"])
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if !strings.Contains(reflects, "overlay-config") {
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t.Errorf("the interface does not restart when its configuration changes: %v", reflects)
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}
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return
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}
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t.Error("nothing in the declaration brings the interface up")
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}
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func TestTheOverlayDeclarationCarriesNoAction(t *testing.T) {
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// The link may not carry an action, and the host refuses a declaration containing one — whole,
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// not in part. An overlay declaration with an action in it does not half-apply: it leaves the
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// node with no network at all.
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_, resources := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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for _, r := range resources {
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if r["type"] == "action" {
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t.Errorf("the declaration contains an action (%v); the host will refuse the whole "+
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"thing and the node will have no network", r["id"])
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}
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}
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}
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func TestTheHubForwardsAndNobodyElseDoes(t *testing.T) {
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// A hub carries traffic between its spokes, and Linux does not forward packets unless told
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// to. Without it every spoke reaches the hub perfectly and no spoke reaches any other — which
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// is how it failed in the lab, and it presents as a peering problem rather than a kernel
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// setting, so it is worth being sure of.
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hub, _ := declarationFor(t, Node{Name: "anchor", Key: "HUB", Address: "10.42.0.1",
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Endpoint: "198.51.100.1:51820", Hub: true}, nil)
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if !strings.Contains(hub, "ip_forward=1") {
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t.Error("the hub does not enable forwarding, so its spokes cannot reach each other")
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}
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if !strings.Contains(hub, "ip_forward=0") {
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t.Error("the hub never stops forwarding; a machine that stops being the hub would keep " +
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"passing traffic it is no longer part of")
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}
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// And past the machine's own firewall. Any node with a container runtime has FORWARD set to
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// DROP by Docker, so enabling ip_forward alone changes nothing — which is exactly how it
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// failed, with every spoke reaching the hub and no spoke reaching any other.
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// Checked as PostUp specifically. "contains FORWARD" passes on the PostDown line alone,
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// which would leave a hub that tears down rules it never put up.
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if !strings.Contains(hub, "PostUp = command -v iptables") {
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t.Error("the hub does not open its own firewall, so a container runtime's DROP policy " +
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"silently eats everything it was supposed to carry")
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}
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if !strings.Contains(hub, "PostDown = command -v iptables") {
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t.Error("the hub never removes those rules, so a machine that stops being the hub keeps " +
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"passing traffic it is no longer part of")
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}
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spoke, _ := declarationFor(t, Node{Name: "laptop", Key: "PUB", Address: "10.42.0.2"}, nil)
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if strings.Contains(spoke, "FORWARD") {
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t.Error("a spoke was given forwarding rules it has no use for")
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}
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if strings.Contains(spoke, "ip_forward") {
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t.Error("a spoke was told to forward packets, which is not its job and widens what a " +
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"compromised one could do")
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}
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}
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