package metrics import ( "math/rand" "testing" "time" ) func BenchmarkMeter(b *testing.B) { m := NewMeter() b.ResetTimer() for i := 0; i < b.N; i++ { m.Mark(1) } } func TestGetOrRegisterMeter(t *testing.T) { r := NewRegistry() NewRegisteredMeter("foo", r).Mark(47) if m := GetOrRegisterMeter("foo", r); m.Count() != 47 { t.Fatal(m.Count()) } } func TestMeterDecay(t *testing.T) { m := newStandardMeter() m.Mark(1) rateMean := m.RateMean() time.Sleep(100 * time.Millisecond) if m.RateMean() >= rateMean { t.Error("m.RateMean() didn't decrease") } } func TestMeterNonzero(t *testing.T) { m := NewMeter() m.Mark(3) if count := m.Count(); count != 3 { t.Errorf("m.Count(): 3 != %v\n", count) } } func TestMeterSnapshot(t *testing.T) { r := rand.New(rand.NewSource(time.Now().Unix())) m := NewMeter() m.Mark(r.Int63()) // RateMean() updates every millisecond, so we test Count(). if snapshot := m.Snapshot(); m.Count() != snapshot.Count() { t.Fatal(snapshot) } } func TestMeterZero(t *testing.T) { m := NewMeter() if count := m.Count(); count != 0 { t.Errorf("m.Count(): 0 != %v\n", count) } } func TestMeterRepeat(t *testing.T) { m := NewMeter() for i := 0; i < 101; i++ { m.Mark(int64(i)) } if count := m.Count(); count != 5050 { t.Errorf("m.Count(): 5050 != %v\n", count) } for i := 0; i < 101; i++ { m.Mark(int64(i)) } if count := m.Count(); count != 10100 { t.Errorf("m.Count(): 10100 != %v\n", count) } }