evcc-io/core/planner/helper_test.go

152 lines
4.7 KiB
Go

package planner
import (
"math/rand/v2"
"testing"
"time"
"github.com/benbjohnson/clock"
"github.com/evcc-io/evcc/api"
"github.com/evcc-io/evcc/tariff"
"github.com/samber/lo"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
func TestSplitPrecondition(t *testing.T) {
clock := clock.NewMock()
rr := rates([]float64{1, 2, 3, 4}, clock.Now(), tariff.SlotDuration)
rates, precond := splitPreconditionSlots(rr, clock.Now().Add(3*tariff.SlotDuration))
assert.Equal(t, rr[0:3], rates, "rates")
assert.Equal(t, rr[3:], precond, "precond")
}
func TestSlotHasSuccessor(t *testing.T) {
plan := rates([]float64{20, 60, 10, 80, 40, 90}, time.Now(), time.Hour)
last := plan[len(plan)-1]
rand.Shuffle(len(plan)-1, func(i, j int) {
plan[i], plan[j] = plan[j], plan[i]
})
for i := range plan {
if plan[i] != last {
require.True(t, SlotHasSuccessor(plan[i], plan))
}
}
require.False(t, SlotHasSuccessor(last, plan))
}
func TestIsFirst(t *testing.T) {
clock := clock.NewMock()
plan := rates([]float64{20, 60, 10, 80, 40, 90}, clock.Now(), time.Hour)
first := plan[0]
rand.Shuffle(len(plan), func(i, j int) {
plan[i], plan[j] = plan[j], plan[i]
})
for i := 1; i < len(plan); i++ {
if plan[i] != first {
require.False(t, IsFirst(plan[i], plan))
}
}
require.True(t, IsFirst(first, plan))
// ensure single slot is always first
require.True(t, IsFirst(first, []api.Rate{first}))
}
func TestDuration(t *testing.T) {
now := time.Now()
plan := api.Rates{
{Start: now, End: now.Add(time.Hour)},
{Start: now.Add(time.Hour), End: now.Add(time.Hour)}, // zero - without impact
{Start: now.Add(2 * time.Hour), End: now.Add(3 * time.Hour)},
}
require.Equal(t, 2*time.Hour, Duration(plan))
require.Equal(t, time.Duration(0), Duration(api.Rates{}))
}
func TestAverageCost(t *testing.T) {
now := time.Now()
plan := api.Rates{
{Start: now, End: now.Add(30 * time.Minute), Value: 10.0}, // 0.5h * 10 = 5
{Start: now, End: now, Value: 999.0}, // zero - ignored
{Start: now.Add(30 * time.Minute), End: now.Add(2 * time.Hour), Value: 20.0}, // 1.5h * 20 = 30
}
require.Equal(t, 17.5, AverageCost(plan)) // (5 + 30) / 2h = 17.5
require.Equal(t, 0.0, AverageCost(api.Rates{}))
require.Equal(t, 0.0, AverageCost(api.Rates{{Start: now, End: now, Value: 10}}))
}
func TestStartEnd(t *testing.T) {
now := time.Now()
plan := api.Rates{
{Start: now.Add(2 * time.Hour), End: now.Add(3 * time.Hour)},
{Start: now, End: now.Add(time.Hour)},
}
require.Equal(t, now, Start(plan))
require.Equal(t, now.Add(3*time.Hour), End(plan))
require.True(t, Start(api.Rates{}).IsZero())
require.True(t, End(api.Rates{}).IsZero())
}
func TestSlotAt(t *testing.T) {
now := time.Now()
plan := api.Rates{
{Start: now, End: now.Add(time.Hour), Value: 1},
{Start: now.Add(time.Hour), End: now.Add(2 * time.Hour), Value: 2},
}
require.Equal(t, 1.0, SlotAt(now.Add(30*time.Minute), plan).Value)
require.Equal(t, 2.0, SlotAt(now.Add(90*time.Minute), plan).Value)
require.True(t, SlotAt(now.Add(3*time.Hour), plan).IsZero())
}
// TestFindContinuousWindowFlatRates ensures that equal-cost windows always select the
// latest slot. The current slot is clamped to now, hence its cost is summed from
// different addends than the aligned slots and must not decide the comparison.
func TestFindContinuousWindowFlatRates(t *testing.T) {
day := time.Date(2025, 1, 1, 0, 0, 0, 0, time.UTC)
rr := rates(lo.RepeatBy(3*96, func(int) float64 { return 0.291 }), day, tariff.SlotDuration)
target := day.Add(2 * 24 * time.Hour).Add(6*time.Hour + 45*time.Minute)
for _, tc := range []struct {
now time.Duration
duration time.Duration
}{
{16*time.Hour + 45*time.Minute + 35*time.Second, 15*time.Minute + 30*time.Second + 464868247},
{16*time.Hour + 45*time.Minute + 37*time.Second, 15*time.Minute + 30*time.Second + 239819456},
{16*time.Hour + 46*time.Minute + 2*time.Second, 26*time.Minute + 39*time.Second + 438201128},
} {
now := day.Add(tc.now)
plan := findContinuousWindow(clampRates(rr, now, target), tc.duration, target)
require.NotEmpty(t, plan)
latest := target.Add(-tc.duration).Truncate(tariff.SlotDuration)
assert.Equal(t, latest, Start(plan), "now %v, duration %v", now, tc.duration)
}
}
func BenchmarkFindContinuousWindow(b *testing.B) {
rr := rates(lo.RepeatBy(96, func(i int) float64 {
return float64(i)
}), time.Now(), tariff.SlotDuration)
for b.Loop() {
findContinuousWindow(rr, 4*tariff.SlotDuration, rr[len(rr)-1].End)
}
}
func BenchmarkOptimalPlan(b *testing.B) {
rr := rates(lo.RepeatBy(96, func(i int) float64 {
return float64(i)
}), time.Now(), tariff.SlotDuration)
for b.Loop() {
optimalPlan(rr, 4*tariff.SlotDuration, rr[len(rr)-1].End)
}
}