The facts write the suffix the control plane composed the names with, handed down rather than written twice (review of issue 079); the fixture is keyed as production keys it
This commit is contained in:
@@ -13,6 +13,7 @@ import (
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"github.com/novox/mesh-controller/internal/catalogue"
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"github.com/novox/mesh-controller/internal/inventory"
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"github.com/novox/mesh-controller/internal/licences"
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"github.com/novox/mesh-controller/internal/overlay"
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"net"
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"strconv"
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)
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@@ -481,7 +482,7 @@ func declarationWith(ctx context.Context, open *stores, node string,
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return plan.Declaration(catalogue.Rendering{
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Settings: settings, Generators: gens, Grants: grants, Needed: needed, Ports: ports,
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Certificate: certificate, Authority: authority, Mesh: private, Names: names,
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Foundation: foundation, Kept: kept})
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Suffix: overlay.Suffix(), Foundation: foundation, Kept: kept})
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}
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// routeNamesInTheMesh is every routed name and the address of the node that serves it (novox/hq
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@@ -92,6 +92,10 @@ type Rendering struct {
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// mesh" resolves to. Passed in for the same reason grants are: who else is on the network is
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// a fact about the mesh, and resolution answers questions about one machine.
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Mesh []string
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// Suffix is what a machine's internal name ends in, as the control plane composed Names —
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// `internal` unless the operator chose another — so a fact writing those names does not
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// compose it a second time.
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Suffix string
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// Kept is every operator-sealed secret in the mesh, for a module that `keeps` them. Nil when
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// nothing on this node keeps them, or the mesh has no operator key.
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@@ -524,7 +528,7 @@ func (r Resolution) Declaration(with Rendering) ([]map[string]any, error) {
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// plane's; making a name resolve is the module's software. Emitted as ordinary files under
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// this module's name, so they are applied, reported and removed exactly as anything else
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// it declares.
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given, err := FactsInto(m, r, with.Names)
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given, err := FactsInto(m, r, with.Names, with.Suffix)
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if err != nil {
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return nil, err
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}
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+18
-14
@@ -36,7 +36,7 @@ const (
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// **A closed list.** A module asking for a fact the mesh does not have is asking for a file nobody
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// will write, and finding that out on a machine — as a daemon that starts, reads nothing, and
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// answers no queries — is worse than being told where the manifest is.
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var facts = map[string]func(Resolution, map[string]string) string{
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var facts = map[string]func(Resolution, map[string]string, string) string{
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FactNodeNames: nodeNames,
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FactNodeZones: nodeZones,
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}
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@@ -45,7 +45,7 @@ var facts = map[string]func(Resolution, map[string]string) string{
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//
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// The module owns everything after the file exists: loading it, restarting on it, what a resolver
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// does with it. This only puts it there.
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func FactsInto(m Manifest, r Resolution, addresses map[string]string) ([]map[string]any, error) {
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func FactsInto(m Manifest, r Resolution, addresses map[string]string, suffix string) ([]map[string]any, error) {
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if len(m.Facts) == 0 {
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return nil, nil
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}
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@@ -70,7 +70,7 @@ func FactsInto(m Manifest, r Resolution, addresses map[string]string) ([]map[str
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}
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out = append(out, map[string]any{
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"id": "fact-" + name, "type": "file", "path": path, "mode": "0644",
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"content": write(r, addresses),
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"content": write(r, addresses, suffix),
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})
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}
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return out, nil
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@@ -92,7 +92,7 @@ func spokenFacts() string {
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// and does not yet know where it is, which is the ordinary state between adding a machine and it
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// joining. Writing the name anyway would give a name that resolves to nothing, and a connection to
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// that hangs; leaving it out fails at once and says the name is unknown.
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func nodeNames(r Resolution, addresses map[string]string) string {
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func nodeNames(r Resolution, addresses map[string]string, suffix string) string {
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var b strings.Builder
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b.WriteString("# Generated by the mesh. Do not edit — this file is replaced whenever a machine\n")
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b.WriteString("# joins or leaves, and an edit would survive until then and vanish.\n\n")
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@@ -106,7 +106,7 @@ func nodeNames(r Resolution, addresses map[string]string) string {
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b.WriteString("\n")
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for _, name := range sortedNames(addresses) {
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at := addresses[name]
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internal, bare := meshName(name)
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internal, bare := meshName(name, suffix)
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// Its mesh name resolves to its address on the private network rather than to loopback,
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// so a service binding the name it was given stays reachable from everywhere else.
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fmt.Fprintf(&b, "%s\t%s\t%s", at, internal, bare)
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@@ -122,12 +122,12 @@ func nodeNames(r Resolution, addresses map[string]string) string {
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//
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// `*.homer.internal` is homer, which is the whole rule: if homer is at an address, so is anything
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// homer serves. A module wanting this runs the resolver; the mesh only says what is true.
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func nodeZones(_ Resolution, addresses map[string]string) string {
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func nodeZones(_ Resolution, addresses map[string]string, suffix string) string {
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var b strings.Builder
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b.WriteString("# Generated by the mesh. Do not edit — this file is replaced whenever a machine\n")
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b.WriteString("# joins or leaves, and an edit would survive until then and vanish.\n\n")
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for _, name := range sortedNames(addresses) {
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internal, _ := meshName(name)
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internal, _ := meshName(name, suffix)
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fmt.Fprintf(&b, "address=/%s/%s\n", internal, addresses[name])
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}
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return b.String()
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@@ -135,14 +135,18 @@ func nodeZones(_ Resolution, addresses map[string]string) string {
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// meshName is a machine's internal name and its bare one, from either. The control plane keys
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// the names it hands a resolution by the internal name (`homer.internal`), the same map a
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// container gets as its hosts; a caller that keys by the bare name gets the same answer. Written
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// once, because the alternative was `homer.internal.internal` on every machine.
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func meshName(name string) (internal, bare string) {
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const suffix = ".internal"
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if strings.HasSuffix(name, suffix) {
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return name, strings.TrimSuffix(name, suffix)
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// container gets as its hosts; a caller that keys by the bare name gets the same answer. The
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// suffix is the one the control plane composed those names with, handed down rather than written
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// here a second time — the alternative was `homer.internal.internal` on every machine.
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func meshName(name, suffix string) (internal, bare string) {
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if suffix == "" {
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suffix = "internal"
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}
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return name + suffix, name
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dotted := "." + strings.TrimPrefix(suffix, ".")
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if strings.HasSuffix(name, dotted) {
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return name, strings.TrimSuffix(name, dotted)
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}
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return name + dotted, name
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}
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func sortedNames(addresses map[string]string) []string {
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@@ -5,11 +5,12 @@ import (
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"testing"
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)
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var threeMachines = map[string]string{"homer": "10.42.0.1", "marge": "10.42.0.2", "bart": ""}
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// Keyed by the internal name, as the control plane hands them (issue 079).
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var threeMachines = map[string]string{"homer.internal": "10.42.0.1", "marge.internal": "10.42.0.2", "bart.internal": ""}
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// **`*.homer.internal` is homer. That is the whole rule.**
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func TestEveryMachineIsAWildcardUnderItsOwnName(t *testing.T) {
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out := nodeZones(Resolution{Node: "homer"}, threeMachines)
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out := nodeZones(Resolution{Node: "homer"}, threeMachines, "")
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for _, want := range []string{
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"address=/homer.internal/10.42.0.1",
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"address=/marge.internal/10.42.0.2",
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@@ -27,8 +28,8 @@ func TestEveryMachineIsAWildcardUnderItsOwnName(t *testing.T) {
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// unknown, which is a thing somebody can act on.
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func TestAMachineWithNoAddressIsNotNamed(t *testing.T) {
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for _, out := range []string{
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nodeNames(Resolution{Node: "homer"}, threeMachines),
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nodeZones(Resolution{Node: "homer"}, threeMachines),
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nodeNames(Resolution{Node: "homer"}, threeMachines, ""),
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nodeZones(Resolution{Node: "homer"}, threeMachines, ""),
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} {
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if strings.Contains(out, "bart") {
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t.Fatalf("a machine with no address was named, so its name resolves to nothing:\n%s", out)
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@@ -39,7 +40,7 @@ func TestAMachineWithNoAddressIsNotNamed(t *testing.T) {
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// A machine's own mesh name points at its address on the private network, not at loopback — or a
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// service binding the name it was given is unreachable from everywhere else.
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func TestAMachinesOwnNameIsItsMeshAddress(t *testing.T) {
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out := nodeNames(Resolution{Node: "homer"}, threeMachines)
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out := nodeNames(Resolution{Node: "homer"}, threeMachines, "")
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var line string
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for _, l := range strings.Split(out, "\n") {
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if strings.Contains(l, "homer.internal") {
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@@ -58,7 +59,7 @@ func TestAMachinesOwnNameIsItsMeshAddress(t *testing.T) {
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// A module says where it wants a fact, and is given a file.
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func TestAModuleIsGivenTheFactsItAskedFor(t *testing.T) {
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m := Manifest{Module: "dnsmasq", Facts: map[string]string{FactNodeZones: "/etc/mesh/zones.conf"}}
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given, err := FactsInto(m, Resolution{Node: "homer"}, threeMachines)
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given, err := FactsInto(m, Resolution{Node: "homer"}, threeMachines, "")
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if err != nil {
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t.Fatal(err)
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}
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@@ -77,7 +78,7 @@ func TestAModuleIsGivenTheFactsItAskedFor(t *testing.T) {
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// starts, reads a file nobody wrote, and answers no queries is a much worse way to find out.
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func TestAskingForAFactTheMeshDoesNotHaveIsRefused(t *testing.T) {
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m := Manifest{Module: "dnsmasq", Facts: map[string]string{"the-weather": "/etc/weather"}}
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_, err := FactsInto(m, Resolution{}, nil)
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_, err := FactsInto(m, Resolution{}, nil, "")
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if err == nil {
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t.Fatal("a module asked for something nobody computes and was given nothing, silently")
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}
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@@ -91,7 +92,7 @@ func TestAskingForAFactTheMeshDoesNotHaveIsRefused(t *testing.T) {
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// And a relative path is refused, or a module decides where the mesh writes on a machine.
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func TestAFactMustBeAskedForAtAnAbsolutePath(t *testing.T) {
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m := Manifest{Module: "dnsmasq", Facts: map[string]string{FactNodeNames: "etc/hosts"}}
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if _, err := FactsInto(m, Resolution{}, nil); err == nil {
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if _, err := FactsInto(m, Resolution{}, nil, ""); err == nil {
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t.Fatal("a relative path was accepted")
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}
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}
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@@ -103,18 +104,32 @@ func TestAFactMustBeAskedForAtAnAbsolutePath(t *testing.T) {
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func TestNamesKeyedByInternalNameAreNotSuffixedTwice(t *testing.T) {
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internal := map[string]string{"homer.internal": "10.42.0.1", "marge.internal": "10.42.0.2"}
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bare := map[string]string{"homer": "10.42.0.1", "marge": "10.42.0.2"}
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if a, b := nodeZones(Resolution{Node: "homer"}, internal), nodeZones(Resolution{Node: "homer"}, bare); a != b {
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if a, b := nodeZones(Resolution{Node: "homer"}, internal, ""), nodeZones(Resolution{Node: "homer"}, bare, ""); a != b {
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t.Fatalf("the zones differ by how the names were keyed:\n%s\n---\n%s", a, b)
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}
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if a, b := nodeNames(Resolution{Node: "homer"}, internal), nodeNames(Resolution{Node: "homer"}, bare); a != b {
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if a, b := nodeNames(Resolution{Node: "homer"}, internal, ""), nodeNames(Resolution{Node: "homer"}, bare, ""); a != b {
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t.Fatalf("the hosts differ by how the names were keyed:\n%s\n---\n%s", a, b)
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}
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zones := nodeZones(Resolution{Node: "homer"}, internal)
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zones := nodeZones(Resolution{Node: "homer"}, internal, "")
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if strings.Contains(zones, "internal.internal") || !strings.Contains(zones, "address=/homer.internal/10.42.0.1") {
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t.Fatalf("the zones carry a doubled suffix or miss the name:\n%s", zones)
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}
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hosts := nodeNames(Resolution{Node: "homer"}, internal)
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hosts := nodeNames(Resolution{Node: "homer"}, internal, "")
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if !strings.Contains(hosts, "10.42.0.1\thomer.internal\thomer\t# this machine") {
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t.Fatalf("the hosts line for the machine itself is not name, bare name and the mark:\n%s", hosts)
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}
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}
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// The suffix the control plane composed the names with is the one the facts write — an operator
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// who chose another does not get `.internal` appended to it.
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func TestTheFactsWriteTheSuffixTheNamesWereComposedWith(t *testing.T) {
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names := map[string]string{"homer.lan": "10.42.0.1"}
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zones := nodeZones(Resolution{Node: "homer"}, names, "lan")
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if !strings.Contains(zones, "address=/homer.lan/10.42.0.1") || strings.Contains(zones, "internal") {
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t.Fatalf("the zones do not carry the operator's suffix as given:\n%s", zones)
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}
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hosts := nodeNames(Resolution{Node: "homer"}, names, "lan")
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if !strings.Contains(hosts, "10.42.0.1\thomer.lan\thomer\t# this machine") {
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t.Fatalf("the hosts line does not carry the operator's suffix as given:\n%s", hosts)
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}
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}
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Reference in New Issue
Block a user