Files
mesh-catalog/modules/bluetooth/cmd/bluetooth-tools/kit_test.go
T
jochen 3b43a1ef4d bluetooth: the stack, its daemon, and the devices as tools (hq to-be 42 phase 2.9)
bluez and bluez-utils, and bluetooth.service running and enabled. On both
workstations bluez is installed only as a dependency; declaring it keeps a
clean-up from taking it.

Nine Go tools over bluetoothctl: controller, power, devices with battery
where reported, a bounded scan, connect, disconnect, trust, pair (an agent
that confirms nothing, for headphones) and remove. An act whose output says
it failed is an error whatever the exit status, and one bluez refuses the
account is repeated through sudo -n.
2026-10-04 13:02:23 +02:00

148 lines
4.6 KiB
Go

package main
// Tests of kit.go, the same in each workstation module.
import (
"strings"
"testing"
"time"
)
// fake records the commands asked and answers each from a function of the command line.
type fake struct {
asked []Cmd
answer func(line string, c Cmd) Result
}
func (f *fake) runner() Runner {
return func(c Cmd) Result {
f.asked = append(f.asked, c)
name, args := argv(c)
line := strings.TrimSpace(name + " " + strings.Join(args, " "))
if f.answer == nil {
return Result{}
}
return f.answer(line, c)
}
}
func (f *fake) lines() []string {
out := []string{}
for _, c := range f.asked {
name, args := argv(c)
out = append(out, strings.TrimSpace(name+" "+strings.Join(args, " ")))
}
return out
}
// using installs a fake runner and a non-root uid for one test.
func using(t *testing.T, answer func(line string, c Cmd) Result) *fake {
t.Helper()
f := &fake{answer: answer}
wasRun, wasUID := run, euid
run, euid = f.runner(), func() int { return 1000 }
t.Cleanup(func() { run, euid = wasRun, wasUID })
return f
}
func ok(stdout string) Result { return Result{Stdout: stdout} }
func TestKitAnActThatNeedsRootGoesThroughSudoWithoutAPromptUnlessAlreadyRoot(t *testing.T) {
was := euid
defer func() { euid = was }()
euid = func() int { return 1000 }
if name, args := argv(Cmd{Name: "x", Args: []string{"a"}, Root: true}); name != "sudo" || strings.Join(args, " ") != "-n x a" {
t.Fatalf("not root: %s %v", name, args)
}
if name, _ := argv(Cmd{Name: "x"}); name != "x" {
t.Fatalf("a read is run as the account: %s", name)
}
euid = func() int { return 0 }
if name, _ := argv(Cmd{Name: "x", Root: true}); name != "x" {
t.Fatalf("as root no sudo: %s", name)
}
}
func TestKitAFailureIsNamedByHowItFailed(t *testing.T) {
was := euid
defer func() { euid = was }()
euid = func() int { return 1000 }
cases := []struct {
c Cmd
r Result
want string
}{
{Cmd{Name: "nothere"}, Result{Status: 127, Error: "not-found"}, "not installed"},
{Cmd{Name: "x", Root: true}, Result{Status: 127, Error: "not-found"}, "sudo is not installed"},
{Cmd{Name: "x", Root: true}, Result{Status: 1, Stderr: "sudo: a password is required\n"}, "sudo -n refused"},
{Cmd{Name: "x", Root: true}, Result{Status: 1, Stderr: "sudo: x: command not found\n"}, "x is not installed"},
{Cmd{Name: "x"}, Result{Status: 124, Error: "timeout"}, "within 20s"},
{Cmd{Name: "x", Args: []string{"y"}}, Result{Status: 3, Stderr: "boom\n"}, "x y exited 3: boom"},
{Cmd{Name: "x"}, Result{Status: 3}, "said nothing"},
}
for _, k := range cases {
err := failure(k.c, k.r)
if err == nil || !strings.Contains(err.Error(), k.want) {
t.Errorf("%+v: %v, want %q", k.r, err, k.want)
}
}
}
func TestKitOutputIsBoundedAndSaysSo(t *testing.T) {
var w bounded
big := strings.Repeat("a", MostOutput+10)
n, _ := w.Write([]byte(big))
if n != len(big) || w.b.Len() != MostOutput || !w.cut {
t.Fatalf("kept %d of %d, cut %v", w.b.Len(), len(big), w.cut)
}
}
func TestKitTheRealRunnerRunsEndsAndReportsAMissingProgram(t *testing.T) {
r := execRun(Cmd{Name: "sh", Args: []string{"-c", "echo out; echo err >&2; exit 3"}})
if r.Status != 3 || strings.TrimSpace(r.Stdout) != "out" || strings.TrimSpace(r.Stderr) != "err" {
t.Fatalf("%+v", r)
}
r = execRun(Cmd{Name: "sh", Args: []string{"-c", "sleep 5 & sleep 5"}, Timeout: 200 * time.Millisecond})
if r.Error != "timeout" {
t.Fatalf("a slow command: %+v", r)
}
r = execRun(Cmd{Name: "no-such-program-anywhere"})
if r.Error != "not-found" {
t.Fatalf("a missing program: %+v", r)
}
r = execRun(Cmd{Name: "cat", Stdin: "given"})
if r.Stdout != "given" {
t.Fatalf("stdin: %+v", r)
}
start := time.Now()
r = execRun(Cmd{Name: "sh", Args: []string{"-c", "echo kept; (sleep 3 &) ; exit 0"}, Detached: true})
if r.Status != 0 || strings.TrimSpace(r.Stdout) != "kept" || time.Since(start) > 2*time.Second {
t.Fatalf("a detached command returns when it exits, not when its child does: %+v after %s", r, time.Since(start))
}
}
func TestKitArgumentsAreReadStrictly(t *testing.T) {
args := map[string]any{"s": "x", "n": float64(5), "f": 1.5, "b": true, "l": []any{"a", "b"}}
if _, err := text(args, "missing"); err == nil {
t.Error("a missing required string")
}
if n, _ := optWhole(args, "n", 1, 1, 3); n != 3 {
t.Errorf("held to most: %d", n)
}
if _, err := optWhole(args, "n", 1, 6, 9); err == nil {
t.Error("below least")
}
if _, err := optWhole(args, "f", 1, 0, 9); err == nil {
t.Error("a fraction")
}
if l, _ := optList(args, "l"); len(l) != 2 {
t.Errorf("list: %v", l)
}
if b, _ := optFlag(args, "b", false); !b {
t.Error("flag")
}
if err := plainName("name", "--all"); err == nil {
t.Error("an option as a name")
}
}