package basic import ( "testing" "time" ) // 对齐网格是导出行为(等时线按整刻度取值)的契约,取值本身写成字面量以免与实际生成函数互相自证。 func TestGreatestTimeContourAlignedLevelsGridContracts(t *testing.T) { tt := func(hour, minute int) float64 { return UTC2TT(Date2JD(time.Date(2024, 1, 1, hour, minute, 0, 0, time.UTC))) } cases := []struct { name string start, end float64 step time.Duration maxLevels int want []string }{ { name: "起点在刻度之间时从下一个整刻度开始", start: tt(0, 7), end: tt(2, 7), step: 30 * time.Minute, maxLevels: 64, want: []string{"2024-01-01T00:30:00Z", "2024-01-01T01:00:00Z", "2024-01-01T01:30:00Z", "2024-01-01T02:00:00Z"}, }, { name: "起点恰在刻度上时不重复生成该刻度", start: tt(0, 30), end: tt(2, 0), step: 30 * time.Minute, maxLevels: 64, want: []string{"2024-01-01T00:30:00Z", "2024-01-01T01:00:00Z", "2024-01-01T01:30:00Z", "2024-01-01T02:00:00Z"}, }, { name: "终点恰在刻度上时包含终点", start: tt(0, 7), end: tt(1, 30), step: 30 * time.Minute, maxLevels: 64, want: []string{"2024-01-01T00:30:00Z", "2024-01-01T01:00:00Z", "2024-01-01T01:30:00Z"}, }, { name: "上限截断", start: tt(0, 7), end: tt(5, 7), step: 30 * time.Minute, maxLevels: 3, want: []string{"2024-01-01T00:30:00Z", "2024-01-01T01:00:00Z", "2024-01-01T01:30:00Z"}, }, { name: "窗口内没有整刻度时为空", start: tt(0, 1), end: tt(0, 20), step: time.Hour, maxLevels: 64, want: nil, }, { name: "非正步长或倒置窗口为空", start: tt(0, 7), end: tt(2, 7), step: 0, maxLevels: 64, want: nil, }, } for _, testCase := range cases { levels := greatestTimeContourAlignedLevels(testCase.start, testCase.end, testCase.step, testCase.maxLevels) if len(levels) != len(testCase.want) { t.Fatalf("%s: %d levels, want %d", testCase.name, len(levels), len(testCase.want)) } for index, level := range levels { got := level.at.UTC().Format(time.RFC3339) if got != testCase.want[index] { t.Fatalf("%s: level %d at %s, want %s", testCase.name, index, got, testCase.want[index]) } // 标注时刻与求根时刻必须成对:TT 往返 1 ULP 内一致。 if roundTrip := greatestTimeContourUTCToTT(level.at); roundTrip != level.tt { t.Fatalf("%s: level %d tt %.9f != %.9f", testCase.name, index, level.tt, roundTrip) } } } }