The Go runtime answers $SRV.PING, $SRV.INFO and $SRV.STATS (and per name and id) in the io.nats.micro.v1 format with what it serves at the moment it is asked: one service per runtime process, since the bus admits one reply per request from each responder, and one endpoint per tool per subject, its metadata saying module, seat, scope, machine, description, schema and whether the module is interchangeable. Serving is unchanged. The console gathers one $SRV.INFO request's answers instead of asking the catalogue's roster and each module's tools, and reads the controller's records as JSON for what should have answered: an assignment with tools that did not announce is named, a module without tools never is. The text parsers of node list and module list are gone. Packages share the test bus: go test -p 1.
148 lines
4.0 KiB
Go
148 lines
4.0 KiB
Go
// Package meshtest raises what the controller would, for tests against a real bus: the ASSIGNMENTS
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// and EVENTS streams, memberships issued by hand, and a fixture's path.
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//
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// **The packages share one bus, so run them one at a time: `go test -p 1 ./...`.** Each test raises
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// the streams afresh, and the console discovers every runtime that announces itself on the bus
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// (novox/hq ADR 0197) — a runtime from another package's test is, correctly, found.
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package meshtest
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import (
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"encoding/json"
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"os"
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"path/filepath"
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"runtime"
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"strings"
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"testing"
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"time"
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"github.com/nats-io/nats.go"
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"github.com/novox/mesh-tools/node-tools/internal/bus"
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)
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// URL is the test bus, or the test is skipped.
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func URL(t *testing.T) string {
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t.Helper()
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url := os.Getenv("MESH_TEST_NATS")
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if url == "" {
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t.Skip("MESH_TEST_NATS unset")
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}
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return url
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}
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// Mesh is the controller's job, done by hand.
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type Mesh struct {
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nc *nats.Conn
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js nats.JetStreamContext
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}
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// New raises the streams afresh.
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func New(t *testing.T) *Mesh {
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t.Helper()
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nc, err := nats.Connect(URL(t))
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if err != nil {
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t.Fatal(err)
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}
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js, _ := nc.JetStream()
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for _, s := range []string{"ASSIGNMENTS", "EVENTS"} {
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_ = js.DeleteStream(s)
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}
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if _, err := js.AddStream(&nats.StreamConfig{Name: "ASSIGNMENTS", Subjects: []string{"mesh.assignment.>"},
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MaxMsgsPerSubject: 1, AllowDirect: true}); err != nil {
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t.Fatal(err)
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}
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if _, err := js.AddStream(&nats.StreamConfig{Name: "EVENTS", Subjects: []string{"mesh.mod.*.event.>"}}); err != nil {
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t.Fatal(err)
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}
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t.Cleanup(nc.Close)
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return &Mesh{nc: nc, js: js}
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}
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// Issue publishes a membership.
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func (m *Mesh) Issue(t *testing.T, mem bus.Membership) {
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t.Helper()
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body, _ := json.Marshal(mem)
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if _, err := m.js.Publish(bus.MembershipSubject(mem.Node, mem.Module), body); err != nil {
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t.Fatal(err)
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}
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}
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// NextEvent is the subject the next event under a pattern lands on.
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func (m *Mesh) NextEvent(t *testing.T, pattern string) <-chan string {
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t.Helper()
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ch := make(chan string, 1)
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sub, err := m.nc.Subscribe(pattern, func(msg *nats.Msg) {
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select {
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case ch <- msg.Subject:
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default:
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}
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})
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if err != nil {
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t.Fatal(err)
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}
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t.Cleanup(func() { _ = sub.Unsubscribe() })
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_ = m.nc.Flush()
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return ch
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}
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// MembershipOf is a membership as the controller issues one on a machine.
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func MembershipOf(module, node string, plain bool, seats map[string][]string) bus.Membership {
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own := "mesh.mod." + module
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serves := []bus.Served{{Subject: own + ".tool.{tool}." + node}}
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if plain {
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serves = append(serves, bus.Served{Subject: own + ".tool.{tool}", Queue: "serve." + module})
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}
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var verbs []bus.SeatVerb
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for seat, vs := range seats {
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for _, v := range vs {
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verbs = append(verbs, bus.SeatVerb{Seat: seat, Verb: v, Subject: "mesh.seat." + seat + ".tool." + v + "." + node})
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}
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}
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return bus.Membership{Node: node, Module: module, Serves: serves, Seats: verbs,
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Emits: own + ".event.{event}", Tools: own + ".tool.tools"}
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}
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// Fixture is a path in node-tools/test/fixtures, which these tests share with the TypeScript ones.
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func Fixture(name string) string {
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_, here, _, _ := runtime.Caller(0)
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return filepath.Join(filepath.Dir(here), "..", "..", "test", "fixtures", name)
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}
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// Until retries while the bus answers "no responders" — something not yet served.
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func Until(t *testing.T, try func() error) {
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t.Helper()
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var err error
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for i := 0; i < 50; i++ {
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if err = try(); err == nil {
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return
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}
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time.Sleep(100 * time.Millisecond)
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}
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t.Fatal(err)
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}
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// Logs collects what the runtime says.
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type Logs struct{ lines []string }
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// Logf is a logger that keeps the lines.
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func (l *Logs) Logf(format string, args ...any) {
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l.lines = append(l.lines, sprintf(format, args...))
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}
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// Has says whether a line contains every fragment.
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func (l *Logs) Has(fragments ...string) bool {
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for _, line := range l.lines {
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all := true
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for _, f := range fragments {
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all = all && strings.Contains(line, f)
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}
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if all {
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return true
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}
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}
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return false
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}
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// All is every line.
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func (l *Logs) All() string { return strings.Join(l.lines, "\n") }
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