feat: 完善每日氢耗明细导出与质量标记

This commit is contained in:
lingniu
2026-09-06 02:35:36 +08:00
parent e402eb5e60
commit 9fa3d81777
22 changed files with 237 additions and 48 deletions
@@ -1,7 +1,7 @@
openapi: 3.0.3
info:
title: 车辆数据开放平台 API
version: 1.6.0
version: 1.7.0
license:
name: Proprietary
description: |
@@ -20,7 +20,7 @@ paths:
post:
tags: [合作方数据接口]
summary: 查询车辆单日用氢量
description: plateNumbers 省略或传空数组时,返回该应用在查询自然日有效授权的全部车辆。
description: plateNumbers 省略或传空数组时,返回该应用在查询自然日有效授权的全部车辆。SUSPECT 计算结果保留用氢量并以 DATA_ANOMALY 输出,同时返回质量原因。
operationId: queryDailyHydrogenConsumption
security:
- AppKeyAuth: []
@@ -619,7 +619,7 @@ components:
type: number
format: double
nullable: true
description: 单日用氢量,kg;无数据时为 null
description: 单日用氢量,kgOK 和 SUSPECT 计算结果均返回数值,无数据时为 null
calculationPhase:
type: string
enum: [PRELIMINARY, FINAL]
@@ -627,6 +627,13 @@ components:
algorithmVersion:
type: string
description: 氢耗计算算法版本
qualityStatus:
type: string
enum: [OK, SUSPECT, NO_DATA]
description: 氢耗计算质量状态
qualityReason:
type: string
description: 质量判定原因;SUSPECT 或 NO_DATA 时供调用方解释和审计
status:
$ref: '#/components/schemas/DataStatus'
MileageResult:
@@ -51,6 +51,8 @@ type HydrogenResult struct {
HydrogenConsumptionKg *float64 `json:"hydrogenConsumptionKg"`
CalculationPhase string `json:"calculationPhase,omitempty"`
AlgorithmVersion string `json:"algorithmVersion,omitempty"`
QualityStatus string `json:"qualityStatus,omitempty"`
QualityReason string `json:"qualityReason,omitempty"`
Status string `json:"status"`
}
@@ -288,6 +290,7 @@ type DailyHydrogen struct {
ConsumptionKg float64
SampleCount int
QualityStatus string
QualityReason string
CalculationPhase string
AlgorithmVersion string
}
@@ -312,7 +312,7 @@ func (r *MySQLRepository) DailyHydrogen(ctx context.Context, vins []string, date
return map[string]DailyHydrogen{}, nil
}
query, args := inQuery(`
SELECT vin,DATE_FORMAT(stat_date,'%Y-%m-%d'),consumption_kg,sample_count,quality_status,
SELECT vin,DATE_FORMAT(stat_date,'%Y-%m-%d'),consumption_kg,sample_count,quality_status,quality_reason,
calculation_phase,algorithm_version
FROM vehicle_open_daily_energy
WHERE energy_type='HYDROGEN' AND stat_date=? AND vin IN (%s)`, date, vins)
@@ -324,7 +324,7 @@ WHERE energy_type='HYDROGEN' AND stat_date=? AND vin IN (%s)`, date, vins)
out := make(map[string]DailyHydrogen, len(vins))
for rows.Next() {
var value DailyHydrogen
if err := rows.Scan(&value.VIN, &value.Date, &value.ConsumptionKg, &value.SampleCount, &value.QualityStatus, &value.CalculationPhase, &value.AlgorithmVersion); err != nil {
if err := rows.Scan(&value.VIN, &value.Date, &value.ConsumptionKg, &value.SampleCount, &value.QualityStatus, &value.QualityReason, &value.CalculationPhase, &value.AlgorithmVersion); err != nil {
return nil, err
}
out[value.VIN] = value
@@ -394,10 +394,17 @@ func (s *Service) QueryHydrogen(ctx context.Context, appKey, traceID string, req
if value, ok := values[vehicle.VIN]; ok {
item.CalculationPhase = value.CalculationPhase
item.AlgorithmVersion = value.AlgorithmVersion
if strings.EqualFold(value.QualityStatus, "OK") {
item.QualityStatus = value.QualityStatus
item.QualityReason = value.QualityReason
switch {
case strings.EqualFold(value.QualityStatus, "OK"):
consumption := round3(value.ConsumptionKg)
item.HydrogenConsumptionKg = &consumption
item.Status = StatusNormal
case strings.EqualFold(value.QualityStatus, "SUSPECT"):
consumption := round3(value.ConsumptionKg)
item.HydrogenConsumptionKg = &consumption
item.Status = StatusDataAnomaly
}
}
results = append(results, item)
@@ -294,6 +294,32 @@ func TestExternalHydrogenAndMileageQueriesPreserveRequestedVehicles(t *testing.T
}
}
func TestExternalHydrogenQueryPublishesSuspectCalculationAsDataAnomaly(t *testing.T) {
repository := &fakeRepository{
app: AppCredential{ID: 7, Name: "partner"},
vehicles: map[string]AuthorizedVehicle{
"粤A12345": {VIN: "LTEST32960VIN0001", Plate: "粤A12345"},
},
hydrogen: map[string]DailyHydrogen{
"LTEST32960VIN0001": {
VIN: "LTEST32960VIN0001", ConsumptionKg: 4.491, QualityStatus: "SUSPECT",
QualityReason: "燃料电池未工作期间持续压降", CalculationPhase: "FINAL", AlgorithmVersion: trustedHydrogenAlgorithmVersion,
},
},
}
service := NewService(repository)
service.now = func() time.Time { return time.Date(2026, 8, 26, 12, 0, 0, 0, time.FixedZone("CST", 8*3600)) }
result, err := service.QueryHydrogen(context.Background(), "0123456789abcdef0123456789abcdef", "trace-suspect", QueryRequest{
PlateNumbers: []string{"粤A12345"}, Date: "2026-08-26",
})
if err != nil {
t.Fatal(err)
}
if len(result) != 1 || result[0].HydrogenConsumptionKg == nil || *result[0].HydrogenConsumptionKg != 4.491 || result[0].Status != StatusDataAnomaly || result[0].QualityStatus != "SUSPECT" || result[0].QualityReason == "" {
t.Fatalf("suspect hydrogen result = %#v", result)
}
}
func TestDailyQueriesWithoutPlatesReturnAllAuthorizedVehicles(t *testing.T) {
repository := &fakeRepository{
app: AppCredential{ID: 7, Name: "partner"},
@@ -933,16 +933,18 @@ func replaceHydrogenDailyStats(ctx context.Context, db *sql.DB, date string, sco
INSERT INTO vehicle_open_daily_energy(
vin,stat_date,energy_type,source_endpoint,consumption_kg,unit,first_mass_kg,last_mass_kg,
sample_count,refuel_count,quality_status,quality_reason,calculated_at,
refuel_amount_kg,
raw_consumption_kg,battery_soc_delta_pct,battery_discharge_kwh,battery_equivalent_kg,
soc_balanced_consumption_kg,mixed_mileage_km,pure_electric_mileage_km,
consumption_kg_per_100km,soc_balanced_kg_per_100km,charge_count,valid_segment_count,
consumption_kg_per_100km,soc_balanced_kg_per_100km,charge_count,charge_energy_kwh,valid_segment_count,
invalid_segment_count,algorithm_version,calculation_phase,parameter_json,evidence_json
) VALUES(?,?,'HYDROGEN',?,?,'kg',?,?,?,?,?,?,NOW(3),?,?,?,?,?,?,?,?,?,?,?,?,?,'FINAL',?,?)`,
) VALUES(?,?,'HYDROGEN',?,?,'kg',?,?,?,?,?,?,NOW(3),?,?,?,?,?,?,?,?,?,?,?,?,?,?,?,'FINAL',?,?)`,
stat.VIN, stat.Date, stat.Source, stat.ConsumptionKg, stat.FirstMassKg, stat.LastMassKg,
stat.SampleCount, stat.RefuelCount, stat.QualityStatus, stat.QualityReason,
stat.RefuelAmountKg,
stat.ConsumptionKg, stat.BatterySOCDeltaPct, stat.BatteryDischargeKWh, stat.BatteryEquivalentKg,
stat.SOCBalancedConsumptionKg, stat.MixedMileageKm, stat.PureElectricMileageKm,
stat.ConsumptionKgPer100Km, stat.SOCBalancedKgPer100Km, stat.ChargeCount, stat.QualifiedSegmentCount,
stat.ConsumptionKgPer100Km, stat.SOCBalancedKgPer100Km, stat.ChargeCount, stat.ChargeEnergyKWh, stat.QualifiedSegmentCount,
stat.InvalidSegmentCount, stat.CalculationParameters.AlgorithmVersion, parameterJSON, evidenceJSON,
); err != nil {
return err
@@ -355,8 +355,8 @@ func TestReplaceHydrogenDailyStatsForVINDeletesOnlyScopedVehicle(t *testing.T) {
WillReturnResult(sqlmock.NewResult(0, 1))
mock.ExpectExec(regexp.QuoteMeta("INSERT INTO vehicle_open_daily_energy(")).
WithArgs(vin, "2026-08-12", "source-a", 8.691, 7.64, 10.515, 2803, 2, "OK", "",
8.691, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
0.0, 8.691, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0.0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
WillReturnResult(sqlmock.NewResult(1, 1))
mock.ExpectCommit()
err = ReplaceHydrogenDailyStatsForVIN(context.Background(), db, "2026-08-12", vin, []HydrogenDailyStat{{
@@ -388,9 +388,9 @@ func TestReplaceHydrogenDailyStatsForVINsDeletesOnlyScopedBrandVehicles(t *testi
WillReturnResult(sqlmock.NewResult(0, 2))
mock.ExpectExec(regexp.QuoteMeta("INSERT INTO vehicle_open_daily_energy(")).
WithArgs(stat.VIN, stat.Date, stat.Source, stat.ConsumptionKg, stat.FirstMassKg, stat.LastMassKg,
stat.SampleCount, 0, stat.QualityStatus, "", stat.ConsumptionKg,
stat.SampleCount, 0, stat.QualityStatus, "", 0.0, stat.ConsumptionKg,
sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0.0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
WillReturnResult(sqlmock.NewResult(1, 1))
mock.ExpectCommit()
@@ -425,8 +425,8 @@ func TestReplaceHydrogenDailyStatsAndSeedStreamIsAtomic(t *testing.T) {
WithArgs("2026-08-19").WillReturnResult(sqlmock.NewResult(0, 0))
mock.ExpectExec(regexp.QuoteMeta("INSERT INTO vehicle_open_daily_energy(")).
WithArgs(vin, "2026-08-19", "source-a", 2.6, 12.0, 9.4, 500, 1, "OK", "",
2.6, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 2, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
0.0, 2.6, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0.0, 2, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
WillReturnResult(sqlmock.NewResult(1, 1))
mock.ExpectExec(regexp.QuoteMeta("INSERT INTO vehicle_open_hydrogen_segment_stream_state(")).
WithArgs(vin, "2026-08-19", "source-a", 2.6, 2.6, 500, 1, 0, 460, 2, 9.4, last.ObservedAt, "", sqlmock.AnyArg(), "OK", "").
@@ -469,8 +469,8 @@ func TestReplaceHydrogenDailyStatsAndSeedStreamSkipsMissingWatermark(t *testing.
WithArgs("2026-09-04").WillReturnResult(sqlmock.NewResult(0, 0))
mock.ExpectExec(regexp.QuoteMeta("INSERT INTO vehicle_open_daily_energy(")).
WithArgs(stat.VIN, stat.Date, stat.Source, 0.0, 0.0, 0.0, 0, 0, stat.QualityStatus, stat.QualityReason,
0.0, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
0.0, 0.0, sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), sqlmock.AnyArg(), 0.0, 0.0,
sqlmock.AnyArg(), sqlmock.AnyArg(), 0, 0.0, 0, 0, "", sqlmock.AnyArg(), sqlmock.AnyArg()).
WillReturnResult(sqlmock.NewResult(1, 1))
mock.ExpectCommit()
@@ -17,21 +17,21 @@ func TestProductionStoreHydrogenDailyEvidenceReturnsParametersIntervalsAndRawEve
"vin", "plate", "date", "source_endpoint", "raw_consumption_kg", "battery_soc_delta_pct",
"battery_discharge_kwh", "battery_equivalent_kg", "soc_balanced_consumption_kg",
"mixed_mileage_km", "pure_electric_mileage_km", "consumption_kg_per_100km", "soc_balanced_kg_per_100km",
"sample_count", "refuel_count", "charge_count", "valid_segment_count", "invalid_segment_count",
"sample_count", "refuel_count", "refuel_amount_kg", "charge_count", "charge_energy_kwh", "valid_segment_count", "invalid_segment_count",
"quality_status", "quality_reason", "algorithm_version", "parameter_json", "evidence_json", "calculated_at",
}
parameterJSON := `{"batteryCapacityKWh":21.04,"hydrogenEnergyKWhPerKg":16,"algorithmVersion":"PRESSURE_NIST_SEGMENT_MEDIAN_5_SOC_BALANCE_V2"}`
evidenceJSON := `[{"index":1,"type":"MIXED","startEventId":"event-start","endEventId":"event-end","rawHydrogenConsumptionKg":3.1,"sampleCount":120,"qualityStatus":"OK","qualityReason":""}]`
mock.ExpectQuery("SELECT h.vin").WithArgs("LTEST000000000001", "2026-08-26").WillReturnRows(sqlmock.NewRows(columns).AddRow(
"LTEST000000000001", "粤A12345", "2026-08-26", "factory-a", 3.1, -2.0, 0.421, 0.026, 3.126,
56.2, 32.5, 5.516, 5.562, 120, 1, 1, 1, 0, "OK", "", "PRESSURE_NIST_SEGMENT_MEDIAN_5_SOC_BALANCE_V2",
56.2, 32.5, 5.516, 5.562, 120, 1, 8.976, 1, 12.5, 1, 0, "OK", "", "PRESSURE_NIST_SEGMENT_MEDIAN_5_SOC_BALANCE_V2",
[]byte(parameterJSON), []byte(evidenceJSON), "2026-08-27 00:05:00.000",
))
result, found, err := (&ProductionStore{db: db}).HydrogenDailyEvidence(context.Background(), "LTEST000000000001", "2026-08-26")
if err != nil || !found {
t.Fatalf("found=%v err=%v", found, err)
}
if result.Parameters.BatteryCapacityKWh != 21.04 || len(result.Intervals) != 1 || result.Intervals[0].StartEventID != "event-start" || result.Intervals[0].EndEventID != "event-end" {
if result.Parameters.BatteryCapacityKWh != 21.04 || result.RefuelAmountKg == nil || *result.RefuelAmountKg != 8.976 || result.ChargeEnergyKWh == nil || *result.ChargeEnergyKWh != 12.5 || len(result.Intervals) != 1 || result.Intervals[0].StartEventID != "event-start" || result.Intervals[0].EndEventID != "event-end" {
t.Fatalf("result=%#v", result)
}
if err := mock.ExpectationsWereMet(); err != nil {
@@ -1885,8 +1885,16 @@ type DailyMileageRow struct {
HydrogenConsumptionKgPer100Km *float64 `json:"hydrogenConsumptionKgPer100Km,omitempty"`
HydrogenSOCBalancedKg *float64 `json:"hydrogenSocBalancedKg,omitempty"`
HydrogenSOCBalancedKgPer100Km *float64 `json:"hydrogenSocBalancedKgPer100Km,omitempty"`
PureElectricMileageKm *float64 `json:"pureElectricMileageKm,omitempty"`
MixedMileageKm *float64 `json:"mixedMileageKm,omitempty"`
BatterySOCDeltaPct *float64 `json:"batterySocDeltaPct,omitempty"`
ChargeCount *int `json:"chargeCount,omitempty"`
ChargeEnergyKWh *float64 `json:"chargeEnergyKWh,omitempty"`
RefuelCount *int `json:"refuelCount,omitempty"`
RefuelAmountKg *float64 `json:"refuelAmountKg,omitempty"`
HydrogenEvidenceAvailable bool `json:"hydrogenEvidenceAvailable,omitempty"`
HydrogenQualityStatus string `json:"hydrogenQualityStatus,omitempty"`
HydrogenQualityReason string `json:"hydrogenQualityReason,omitempty"`
HydrogenAlgorithmVersion string `json:"hydrogenAlgorithmVersion,omitempty"`
Source string `json:"source"`
AnomalySeverity string `json:"anomalySeverity,omitempty"`
@@ -1949,7 +1957,9 @@ type HydrogenDailyEvidence struct {
SOCBalancedKgPer100Km *float64 `json:"socBalancedKgPer100Km,omitempty"`
SampleCount int `json:"sampleCount"`
RefuelCount int `json:"refuelCount"`
RefuelAmountKg *float64 `json:"refuelAmountKg,omitempty"`
ChargeCount int `json:"chargeCount"`
ChargeEnergyKWh *float64 `json:"chargeEnergyKWh,omitempty"`
ValidSegmentCount int `json:"validSegmentCount"`
InvalidSegmentCount int `json:"invalidSegmentCount"`
QualityStatus string `json:"qualityStatus"`
@@ -559,7 +559,7 @@ LEFT JOIN vehicle_identity_binding b ON b.vin = m.vin
LEFT JOIN vehicle_open_daily_energy h
ON h.vin COLLATE utf8mb4_unicode_ci = m.vin COLLATE utf8mb4_unicode_ci
AND h.stat_date = m.stat_date
AND h.energy_type = 'HYDROGEN' AND h.quality_status = 'OK'
AND h.energy_type = 'HYDROGEN' AND h.quality_status IN ('OK','SUSPECT')
WHERE ` + strings.Join(where, " AND ")
if query.Get("deduplicate") == "1" || strings.EqualFold(query.Get("deduplicate"), "true") {
selectionOrder := `m.daily_mileage_km DESC, m.protocol ASC`
@@ -581,8 +581,16 @@ WHERE ` + strings.Join(where, " AND ")
`MAX(h.consumption_kg_per_100km) AS hydrogen_consumption_kg_per_100km, ` +
`MAX(h.soc_balanced_consumption_kg) AS hydrogen_soc_balanced_kg, ` +
`MAX(h.soc_balanced_kg_per_100km) AS hydrogen_soc_balanced_kg_per_100km, ` +
`MAX(h.pure_electric_mileage_km) AS pure_electric_mileage_km, ` +
`MAX(h.mixed_mileage_km) AS mixed_mileage_km, ` +
`MAX(h.battery_soc_delta_pct) AS battery_soc_delta_pct, ` +
`MAX(h.charge_count) AS charge_count, ` +
`MAX(h.charge_energy_kwh) AS charge_energy_kwh, ` +
`MAX(h.refuel_count) AS refuel_count, ` +
`MAX(h.refuel_amount_kg) AS refuel_amount_kg, ` +
`MAX(CASE WHEN h.evidence_json IS NOT NULL THEN 1 ELSE 0 END) AS hydrogen_evidence_available, ` +
`COALESCE(MAX(h.quality_status), '') AS hydrogen_quality_status, ` +
`COALESCE(MAX(h.quality_reason), '') AS hydrogen_quality_reason, ` +
`COALESCE(MAX(h.algorithm_version), '') AS hydrogen_algorithm_version, ` +
`COALESCE(SUBSTRING_INDEX(GROUP_CONCAT(m.protocol ORDER BY ` + selectionOrder + `), ',', 1), '') AS protocol ` +
groupSQL + ` ORDER BY m.stat_date DESC, m.vin ASC LIMIT ? OFFSET ?`,
@@ -601,8 +609,9 @@ WHERE ` + strings.Join(where, " AND ")
`COALESCE(m.latest_total_mileage_km - m.daily_mileage_km, 0) AS start_mileage_km, ` +
`COALESCE(m.latest_total_mileage_km, 0) AS end_mileage_km, m.daily_mileage_km, ` +
`COALESCE(m.pure_hydrogen_mileage_km, 0), h.consumption_kg, h.consumption_kg_per_100km, h.soc_balanced_consumption_kg, ` +
`h.soc_balanced_kg_per_100km, CASE WHEN h.evidence_json IS NOT NULL THEN 1 ELSE 0 END, ` +
`COALESCE(h.quality_status, ''), COALESCE(h.algorithm_version, ''), m.protocol ` +
`h.soc_balanced_kg_per_100km, h.pure_electric_mileage_km, h.mixed_mileage_km, h.battery_soc_delta_pct, ` +
`h.charge_count, h.charge_energy_kwh, h.refuel_count, h.refuel_amount_kg, CASE WHEN h.evidence_json IS NOT NULL THEN 1 ELSE 0 END, ` +
`COALESCE(h.quality_status, ''), COALESCE(h.quality_reason, ''), COALESCE(h.algorithm_version, ''), m.protocol ` +
fromSQL + ` ORDER BY m.stat_date DESC, m.vin ASC, m.protocol ASC LIMIT ? OFFSET ?`,
Args: args,
CountText: `SELECT COUNT(*) ` + fromSQL,
@@ -1153,10 +1153,12 @@ func (s *ProductionStore) DailyMileage(ctx context.Context, query url.Values) (P
items := make([]DailyMileageRow, 0)
for rows.Next() {
var row DailyMileageRow
var hydrogen, physicalRate, balanced, balancedRate sql.NullFloat64
var hydrogen, physicalRate, balanced, balancedRate, pureElectric, mixed, socDelta, chargeEnergy, refuelAmount sql.NullFloat64
var chargeCount, refuelCount sql.NullInt64
var evidenceAvailable int
if err := rows.Scan(&row.VIN, &row.Plate, &row.Date, &row.StartMileageKm, &row.EndMileageKm, &row.DailyMileageKm, &row.PureHydrogenMileageKm,
&hydrogen, &physicalRate, &balanced, &balancedRate, &evidenceAvailable, &row.HydrogenQualityStatus, &row.HydrogenAlgorithmVersion, &row.Source); err != nil {
&hydrogen, &physicalRate, &balanced, &balancedRate, &pureElectric, &mixed, &socDelta, &chargeCount, &chargeEnergy, &refuelCount, &refuelAmount,
&evidenceAvailable, &row.HydrogenQualityStatus, &row.HydrogenQualityReason, &row.HydrogenAlgorithmVersion, &row.Source); err != nil {
return Page[DailyMileageRow]{}, err
}
if hydrogen.Valid {
@@ -1177,6 +1179,19 @@ func (s *ProductionStore) DailyMileage(ctx context.Context, query url.Values) (P
value := balancedRate.Float64
row.HydrogenSOCBalancedKgPer100Km = &value
}
row.PureElectricMileageKm = nullableFloatPointer(pureElectric)
row.MixedMileageKm = nullableFloatPointer(mixed)
row.BatterySOCDeltaPct = nullableFloatPointer(socDelta)
if chargeCount.Valid {
value := int(chargeCount.Int64)
row.ChargeCount = &value
}
row.ChargeEnergyKWh = nullableFloatPointer(chargeEnergy)
if refuelCount.Valid {
value := int(refuelCount.Int64)
row.RefuelCount = &value
}
row.RefuelAmountKg = nullableFloatPointer(refuelAmount)
row.HydrogenEvidenceAvailable = evidenceAvailable == 1
items = append(items, row)
}
@@ -1195,20 +1210,21 @@ func (s *ProductionStore) HydrogenDailyEvidence(ctx context.Context, vin, date s
h.source_endpoint,COALESCE(h.raw_consumption_kg,h.consumption_kg),h.battery_soc_delta_pct,
h.battery_discharge_kwh,h.battery_equivalent_kg,h.soc_balanced_consumption_kg,
h.mixed_mileage_km,h.pure_electric_mileage_km,h.consumption_kg_per_100km,h.soc_balanced_kg_per_100km,
h.sample_count,h.refuel_count,h.charge_count,h.valid_segment_count,h.invalid_segment_count,
h.sample_count,h.refuel_count,h.refuel_amount_kg,h.charge_count,h.charge_energy_kwh,h.valid_segment_count,h.invalid_segment_count,
h.quality_status,h.quality_reason,h.algorithm_version,h.parameter_json,h.evidence_json,
DATE_FORMAT(h.calculated_at,'%Y-%m-%d %H:%i:%s.%f')
FROM vehicle_open_daily_energy h
LEFT JOIN vehicle_identity_binding b ON b.vin=h.vin
LEFT JOIN vehicle_identity_binding b
ON b.vin COLLATE utf8mb4_unicode_ci = h.vin COLLATE utf8mb4_unicode_ci
WHERE h.vin=? AND h.stat_date=? AND h.energy_type='HYDROGEN'
LIMIT 1`, vin, date)
var result HydrogenDailyEvidence
var socDelta, discharge, equivalent, balanced, physicalRate, balancedRate sql.NullFloat64
var socDelta, discharge, equivalent, balanced, physicalRate, balancedRate, refuelAmount, chargeEnergy sql.NullFloat64
var parameterJSON, evidenceJSON []byte
if err := row.Scan(
&result.VIN, &result.Plate, &result.Date, &result.Source, &result.RawConsumptionKg,
&socDelta, &discharge, &equivalent, &balanced, &result.MixedMileageKm, &result.PureElectricMileageKm,
&physicalRate, &balancedRate, &result.SampleCount, &result.RefuelCount, &result.ChargeCount,
&physicalRate, &balancedRate, &result.SampleCount, &result.RefuelCount, &refuelAmount, &result.ChargeCount, &chargeEnergy,
&result.ValidSegmentCount, &result.InvalidSegmentCount, &result.QualityStatus, &result.QualityReason,
&result.AlgorithmVersion, &parameterJSON, &evidenceJSON, &result.CalculatedAt,
); err != nil {
@@ -1223,6 +1239,8 @@ LIMIT 1`, vin, date)
result.SOCBalancedConsumptionKg = nullableFloatPointer(balanced)
result.ConsumptionKgPer100Km = nullableFloatPointer(physicalRate)
result.SOCBalancedKgPer100Km = nullableFloatPointer(balancedRate)
result.RefuelAmountKg = nullableFloatPointer(refuelAmount)
result.ChargeEnergyKWh = nullableFloatPointer(chargeEnergy)
result.Intervals = []HydrogenIntervalEvidenceRow{}
if len(parameterJSON) > 0 {
if err := json.Unmarshal(parameterJSON, &result.Parameters); err != nil {
@@ -6,12 +6,52 @@ import (
"database/sql/driver"
"errors"
"io"
"net/url"
"strings"
"testing"
"github.com/DATA-DOG/go-sqlmock"
)
func TestProductionStoreDailyMileageReturnsSuspectHydrogenExportDetails(t *testing.T) {
db, mock, err := sqlmock.New()
if err != nil {
t.Fatal(err)
}
defer db.Close()
columns := []string{
"vin", "plate", "date", "start_mileage_km", "end_mileage_km", "daily_mileage_km", "pure_hydrogen_mileage_km",
"hydrogen_consumption_kg", "hydrogen_consumption_kg_per_100km", "hydrogen_soc_balanced_kg", "hydrogen_soc_balanced_kg_per_100km",
"pure_electric_mileage_km", "mixed_mileage_km", "battery_soc_delta_pct", "charge_count", "charge_energy_kwh",
"refuel_count", "refuel_amount_kg", "hydrogen_evidence_available", "hydrogen_quality_status", "hydrogen_quality_reason",
"hydrogen_algorithm_version", "protocol",
}
mock.ExpectQuery("SELECT m.vin").
WithArgs(20, 0).
WillReturnRows(sqlmock.NewRows(columns).AddRow(
"LB9A32A29R0LS1423", "粤AGR9816", "2026-08-26", 23119.8, 23333.1, 213.3, 213.3,
4.491, 2.106, 4.544, 2.130, 0.0, 213.3, -4.0, 1, 12.5,
1, 8.976, 1, "SUSPECT", "疑似管路泄压", "PRESSURE_NIST_VALID_BOUNDARY_CHARGE_CYCLE_V3_5", "GB32960",
))
page, err := (&ProductionStore{db: db}).DailyMileage(context.Background(), url.Values{"skipCount": {"1"}})
if err != nil {
t.Fatal(err)
}
if len(page.Items) != 1 {
t.Fatalf("items=%#v", page.Items)
}
row := page.Items[0]
if row.HydrogenConsumptionKg == nil || *row.HydrogenConsumptionKg != 4.491 || row.HydrogenQualityStatus != "SUSPECT" || row.HydrogenQualityReason == "" ||
row.ChargeCount == nil || *row.ChargeCount != 1 || row.ChargeEnergyKWh == nil || *row.ChargeEnergyKWh != 12.5 ||
row.RefuelCount == nil || *row.RefuelCount != 1 || row.RefuelAmountKg == nil || *row.RefuelAmountKg != 8.976 {
t.Fatalf("row=%#v", row)
}
if err := mock.ExpectationsWereMet(); err != nil {
t.Fatal(err)
}
}
func init() {
sql.Register("tdengine_missing_table_test", missingTableDriver{})
sql.Register("ops_health_test", opsHealthDriver{})
@@ -485,9 +485,9 @@ func TestBuildDailyMileageSQL(t *testing.T) {
if !strings.Contains(built.Text, "m.pure_hydrogen_mileage_km") {
t.Fatalf("daily mileage must return pure hydrogen mileage: %s", built.Text)
}
for _, want := range []string{"vehicle_open_daily_energy h", "h.vin COLLATE utf8mb4_unicode_ci = m.vin COLLATE utf8mb4_unicode_ci", "h.energy_type = 'HYDROGEN'", "h.quality_status = 'OK'", "h.consumption_kg"} {
for _, want := range []string{"vehicle_open_daily_energy h", "h.vin COLLATE utf8mb4_unicode_ci = m.vin COLLATE utf8mb4_unicode_ci", "h.energy_type = 'HYDROGEN'", "h.quality_status IN ('OK','SUSPECT')", "h.consumption_kg", "h.charge_energy_kwh", "h.refuel_amount_kg", "h.quality_reason"} {
if !strings.Contains(built.Text, want) {
t.Fatalf("daily mileage must return quality-approved hydrogen consumption, missing %q: %s", want, built.Text)
t.Fatalf("daily mileage must return calculated hydrogen details, missing %q: %s", want, built.Text)
}
}
if !strings.Contains(built.CountText, "COUNT(*)") || strings.Contains(built.CountText, "LIMIT") {
@@ -5586,6 +5586,19 @@ func (s *Service) DailyMileage(ctx context.Context, query url.Values) (Page[Dail
result.Items[index].PureHydrogenMileageKm = 0
result.Items[index].HydrogenConsumptionKg = nil
result.Items[index].HydrogenConsumptionKgPer100Km = nil
result.Items[index].HydrogenSOCBalancedKg = nil
result.Items[index].HydrogenSOCBalancedKgPer100Km = nil
result.Items[index].PureElectricMileageKm = nil
result.Items[index].MixedMileageKm = nil
result.Items[index].BatterySOCDeltaPct = nil
result.Items[index].ChargeCount = nil
result.Items[index].ChargeEnergyKWh = nil
result.Items[index].RefuelCount = nil
result.Items[index].RefuelAmountKg = nil
result.Items[index].HydrogenEvidenceAvailable = false
result.Items[index].HydrogenQualityStatus = ""
result.Items[index].HydrogenQualityReason = ""
result.Items[index].HydrogenAlgorithmVersion = ""
}
}
return result, nil
@@ -571,10 +571,15 @@ func (s *projectionCountingStore) LatestRealtimeFrames(_ context.Context, query
type hydrogenMetricsStore struct{ *MockStore }
func (s *hydrogenMetricsStore) DailyMileage(context.Context, url.Values) (Page[DailyMileageRow], error) {
consumption, rate := 3.1, 5.5
consumption, rate, pureElectric, mixed, socDelta, chargeEnergy, refuelAmount := 3.1, 5.5, 32.5, 56.2, -2.0, 12.5, 8.976
chargeCount, refuelCount := 1, 1
return Page[DailyMileageRow]{Items: []DailyMileageRow{{
VIN: "LB9A32A24R0LS1426", Date: "2026-07-13", DailyMileageKm: 88.7,
PureHydrogenMileageKm: 56.2, HydrogenConsumptionKg: &consumption, HydrogenConsumptionKgPer100Km: &rate,
HydrogenSOCBalancedKg: &consumption, PureElectricMileageKm: &pureElectric, MixedMileageKm: &mixed,
BatterySOCDeltaPct: &socDelta, ChargeCount: &chargeCount, ChargeEnergyKWh: &chargeEnergy,
RefuelCount: &refuelCount, RefuelAmountKg: &refuelAmount, HydrogenEvidenceAvailable: true,
HydrogenQualityStatus: "SUSPECT", HydrogenQualityReason: "疑似管路泄压", HydrogenAlgorithmVersion: "V3_5",
}}}, nil
}
@@ -623,7 +628,8 @@ func TestHydrogenConsumptionMetricsAreNotExposedToCustomerAccounts(t *testing.T)
if err != nil {
t.Fatal(err)
}
if len(daily.Items) != 1 || daily.Items[0].PureHydrogenMileageKm != 0 || daily.Items[0].HydrogenConsumptionKg != nil || daily.Items[0].HydrogenConsumptionKgPer100Km != nil {
if len(daily.Items) != 1 || daily.Items[0].PureHydrogenMileageKm != 0 || daily.Items[0].HydrogenConsumptionKg != nil || daily.Items[0].HydrogenConsumptionKgPer100Km != nil ||
daily.Items[0].ChargeEnergyKWh != nil || daily.Items[0].RefuelAmountKg != nil || daily.Items[0].HydrogenQualityStatus != "" || daily.Items[0].HydrogenEvidenceAvailable {
t.Fatalf("customer daily mileage exposed hydrogen metrics: %+v", daily.Items)
}
summary, err := service.MileageStatistics(customer, query)
@@ -136,7 +136,7 @@ function LimitsGuide() {
function APIReference({ kind }: { kind: "hydrogen" | "mileage" }) {
const product = products[kind === "hydrogen" ? 0 : 1];
const fields = kind === "hydrogen" ? `"hydrogenConsumptionKg": 12.315,\n "calculationPhase": "FINAL",\n "algorithmVersion": "PRESSURE_NIST_VALID_BOUNDARY_CHARGE_CYCLE_V3_5"` : `"dailyMileageKm": 182.437,\n "totalMileageKm": 12345.679,\n "dataTime": "2026-07-19T23:58:45+08:00",\n "updatedAt": "2026-07-20T05:10:00+08:00",\n "sourceProtocol": "GB32960"`;
const fields = kind === "hydrogen" ? `"hydrogenConsumptionKg": 12.315,\n "calculationPhase": "FINAL",\n "algorithmVersion": "PRESSURE_NIST_VALID_BOUNDARY_CHARGE_CYCLE_V3_5",\n "qualityStatus": "OK",\n "qualityReason": ""` : `"dailyMileageKm": 182.437,\n "totalMileageKm": 12345.679,\n "dataTime": "2026-07-19T23:58:45+08:00",\n "updatedAt": "2026-07-20T05:10:00+08:00",\n "sourceProtocol": "GB32960"`;
return <>
<h1>{product.name}</h1><p className="docs-lead">{product.description} AppKey</p>
<Endpoint method={product.method} path={product.path} />
@@ -150,7 +150,7 @@ function APIReference({ kind }: { kind: "hydrogen" | "mileage" }) {
"protocolPriority": ["JT808", "GB32960", "MQTT"]` : ""}
}`} />
{kind === "mileage" && <><h2 id="协议优先级"></h2><p><code>protocolPriority</code> <code>GB32960</code><code>MQTT</code><code>JT808</code></p><h2 id="缺日补齐"></h2><p><code>dailyMileageKm</code> 0沿<code>updatedAt</code> NO_DATA</p></>}
<h2 id="响应字段"></h2><table className="docs-table"><thead><tr><th></th><th></th><th></th></tr></thead><tbody>{kind === "mileage" && <tr><td><code>vin</code></td><td>string</td><td> VIN</td></tr>}<tr><td><code>plateNumber</code></td><td>string</td><td></td></tr><tr><td><code>date</code></td><td>string</td><td></td></tr><tr><td><code>{kind === "hydrogen" ? "hydrogenConsumptionKg" : "dailyMileageKm"}</code></td><td>number | null</td><td>{kind === "hydrogen" ? "用氢量,单位 kg" : "当日行驶里程,单位 km"}</td></tr>{kind === "hydrogen" && <><tr><td><code>calculationPhase</code></td><td>string</td><td> PRELIMINARY FINAL</td></tr><tr><td><code>algorithmVersion</code></td><td>string</td><td></td></tr></>}{kind === "mileage" && <><tr><td><code>totalMileageKm</code></td><td>number | null</td><td></td></tr><tr><td><code>dataTime</code></td><td>date-time | null</td><td></td></tr><tr><td><code>updatedAt</code></td><td>date-time | null</td><td></td></tr><tr><td><code>sourceProtocol</code></td><td>string | null</td><td> GB32960MQTT JT808NO_DATA null</td></tr></>}<tr><td><code>status</code></td><td>string</td><td>NORMAL NO_DATA</td></tr></tbody></table>
<h2 id="响应字段"></h2><table className="docs-table"><thead><tr><th></th><th></th><th></th></tr></thead><tbody>{kind === "mileage" && <tr><td><code>vin</code></td><td>string</td><td> VIN</td></tr>}<tr><td><code>plateNumber</code></td><td>string</td><td></td></tr><tr><td><code>date</code></td><td>string</td><td></td></tr><tr><td><code>{kind === "hydrogen" ? "hydrogenConsumptionKg" : "dailyMileageKm"}</code></td><td>number | null</td><td>{kind === "hydrogen" ? "用氢量,单位 kgSUSPECT 结果也会返回数值" : "当日行驶里程,单位 km"}</td></tr>{kind === "hydrogen" && <><tr><td><code>calculationPhase</code></td><td>string</td><td> PRELIMINARY FINAL</td></tr><tr><td><code>algorithmVersion</code></td><td>string</td><td></td></tr><tr><td><code>qualityStatus</code></td><td>string</td><td>OKSUSPECT NO_DATA</td></tr><tr><td><code>qualityReason</code></td><td>string</td><td>便</td></tr></>}{kind === "mileage" && <><tr><td><code>totalMileageKm</code></td><td>number | null</td><td></td></tr><tr><td><code>dataTime</code></td><td>date-time | null</td><td></td></tr><tr><td><code>updatedAt</code></td><td>date-time | null</td><td></td></tr><tr><td><code>sourceProtocol</code></td><td>string | null</td><td> GB32960MQTT JT808NO_DATA null</td></tr></>}<tr><td><code>status</code></td><td>string</td><td>NORMALDATA_ANOMALY NO_DATA</td></tr></tbody></table>
<h2 id="响应示例"></h2><CodeBlock language="json" value={`{
"code": "SUCCESS",
"message": "success",
@@ -912,8 +912,16 @@ export interface DailyMileageRow {
hydrogenConsumptionKgPer100Km?: number | null;
hydrogenSocBalancedKg?: number | null;
hydrogenSocBalancedKgPer100Km?: number | null;
pureElectricMileageKm?: number | null;
mixedMileageKm?: number | null;
batterySocDeltaPct?: number | null;
chargeCount?: number | null;
chargeEnergyKWh?: number | null;
refuelCount?: number | null;
refuelAmountKg?: number | null;
hydrogenEvidenceAvailable?: boolean;
hydrogenQualityStatus?: string;
hydrogenQualityReason?: string;
hydrogenAlgorithmVersion?: string;
source: string;
anomalySeverity?: string;
@@ -934,7 +942,7 @@ export interface HydrogenDailyEvidence {
batterySocDeltaPct?: number; batteryDischargeKWh?: number; batteryEquivalentKg?: number;
socBalancedConsumptionKg?: number; mixedMileageKm: number; pureElectricMileageKm: number;
consumptionKgPer100Km?: number; socBalancedKgPer100Km?: number; sampleCount: number;
refuelCount: number; chargeCount: number; validSegmentCount: number; invalidSegmentCount: number;
refuelCount: number; refuelAmountKg?: number; chargeCount: number; chargeEnergyKWh?: number; validSegmentCount: number; invalidSegmentCount: number;
qualityStatus: string; qualityReason: string; algorithmVersion: string; calculatedAt: string;
parameters: {
batteryCapacityKWh: number; hydrogenEnergyKWhPerKg: number; powerOnDelaySeconds: number;
@@ -14,7 +14,7 @@ test('creates a styled numeric mileage workbook with formulas and frozen panes',
{ vin: 'LTEST000000000002', plate: '粤A54321', brandName: '飞驰', modelName: 'FSQ' }
],
mileageRows: [
{ vin: 'LTEST000000000001', plate: '粤A12345', date: '2026-07-13', startMileageKm: 100, endMileageKm: 188.7, dailyMileageKm: 88.7, pureHydrogenMileageKm: 56.2, hydrogenConsumptionKg: 3.1, hydrogenConsumptionKgPer100Km: 5.5, source: 'GB32960' },
{ vin: 'LTEST000000000001', plate: '粤A12345', date: '2026-07-13', startMileageKm: 100, endMileageKm: 188.7, dailyMileageKm: 88.7, pureHydrogenMileageKm: 56.2, pureElectricMileageKm: 32.5, mixedMileageKm: 56.2, hydrogenConsumptionKg: 3.1, hydrogenConsumptionKgPer100Km: 5.5, hydrogenSocBalancedKg: 3.126, batterySocDeltaPct: -2, chargeCount: 1, chargeEnergyKWh: 12.5, refuelCount: 1, refuelAmountKg: 8.976, hydrogenQualityStatus: 'SUSPECT', hydrogenQualityReason: '疑似管路泄压', source: 'GB32960' },
{ vin: 'LTEST000000000001', plate: '粤A12345', date: '2026-07-14', startMileageKm: 188.7, endMileageKm: 293.3, dailyMileageKm: 104.6, pureHydrogenMileageKm: 72.2, hydrogenConsumptionKg: 4.2, hydrogenConsumptionKgPer100Km: 5.8, source: 'GB32960' }
],
sources: [
@@ -43,12 +43,12 @@ test('creates a styled numeric mileage workbook with formulas and frozen panes',
expect((sheet as unknown as { conditionalFormattings: unknown[] }).conditionalFormattings).toHaveLength(1);
const hydrogenSheet = workbook.getWorksheet('氢能明细')!;
expect(hydrogenSheet.getRow(1).values).toEqual([
undefined, '日期', '车牌', 'VIN', '品牌', '车型', '总里程 (km)', '纯里程 (km)', '耗氢 (kg)', '百公里纯氢耗 (kg/100km)', '来源'
undefined, '日期', '车牌', 'VIN', '品牌', '车型', '每日氢耗 (kg/100km)', '结果状态', '总里程 (km)', '纯里程 (km)', '混动里程 (km)', '电SOC差值 (百分点)', '充电次数', '充电量 (kWh)', '加氢次数', '加氢量 (kg)', '修正用氢量 (kg)', '原因', '物理用氢量 (kg)', '来源'
]);
expect(hydrogenSheet.getRow(2).values).toEqual([
undefined, '2026-07-13', '粤A12345', 'LTEST000000000001', '现代', 'XCIENT', 88.7, 56.2, 3.1, 5.5, 'GB32960'
undefined, '2026-07-13', '粤A12345', 'LTEST000000000001', '现代', 'XCIENT', 5.5, 'SUSPECT', 88.7, 32.5, 56.2, -2, 1, 12.5, 1, 8.976, 3.126, '疑似管路泄压', 3.1, 'GB32960'
]);
expect(hydrogenSheet.autoFilter).toEqual({ from: { row: 1, column: 1 }, to: { row: 3, column: 10 } });
expect(hydrogenSheet.autoFilter).toEqual({ from: { row: 1, column: 1 }, to: { row: 3, column: 19 } });
expect((await workbook.xlsx.writeBuffer()).byteLength).toBeGreaterThan(5_000);
});
@@ -106,6 +106,16 @@ test('terminates the workbook worker when an active export is cancelled', async
pureHydrogenMileageKm: undefined,
hydrogenConsumptionKg: undefined,
hydrogenConsumptionKgPer100Km: undefined,
hydrogenSocBalancedKg: undefined,
pureElectricMileageKm: undefined,
mixedMileageKm: undefined,
batterySocDeltaPct: undefined,
chargeCount: undefined,
chargeEnergyKWh: undefined,
refuelCount: undefined,
refuelAmountKg: undefined,
hydrogenQualityStatus: undefined,
hydrogenQualityReason: undefined,
source: 'GB32960'
}]);
controller.abort();
@@ -90,6 +90,16 @@ export function createMileageExportStream(input: Omit<MileageExportInput, 'vehic
pureHydrogenMileageKm: row.pureHydrogenMileageKm,
hydrogenConsumptionKg: row.hydrogenConsumptionKg,
hydrogenConsumptionKgPer100Km: row.hydrogenConsumptionKgPer100Km,
hydrogenSocBalancedKg: row.hydrogenSocBalancedKg,
pureElectricMileageKm: row.pureElectricMileageKm,
mixedMileageKm: row.mixedMileageKm,
batterySocDeltaPct: row.batterySocDeltaPct,
chargeCount: row.chargeCount,
chargeEnergyKWh: row.chargeEnergyKWh,
refuelCount: row.refuelCount,
refuelAmountKg: row.refuelAmountKg,
hydrogenQualityStatus: row.hydrogenQualityStatus,
hydrogenQualityReason: row.hydrogenQualityReason,
source: row.source
}))
});
@@ -137,7 +137,12 @@ export async function createMileageWorkbook(input: MileageExportInput) {
views: [{ state: 'frozen', ySplit: 1, activeCell: 'A2', showGridLines: false }],
properties: { defaultRowHeight: 21 }
});
hydrogenSheet.addRow(['日期', '车牌', 'VIN', '品牌', '车型', '总里程 (km)', '纯氢里程 (km)', '耗氢 (kg)', '百公里纯氢耗 (kg/100km)', '来源']);
const hydrogenHeaders = [
'日期', '车牌', 'VIN', '品牌', '车型', '每日氢耗 (kg/100km)', '结果状态', '总里程 (km)',
'纯电里程 (km)', '混动里程 (km)', '电SOC差值 (百分点)', '充电次数', '充电量 (kWh)', '加氢次数', '加氢量 (kg)',
'修正用氢量 (kg)', '原因', '物理用氢量 (kg)', '来源'
];
hydrogenSheet.addRow(hydrogenHeaders);
const hydrogenHeader = hydrogenSheet.getRow(1);
hydrogenHeader.height = 30;
hydrogenHeader.eachCell((cell) => {
@@ -156,26 +161,36 @@ export async function createMileageWorkbook(input: MileageExportInput) {
value.vin,
vehicle?.brandName || '待维护',
vehicle?.modelName || '待维护',
value.dailyMileageKm,
value.pureHydrogenMileageKm ?? null,
value.hydrogenConsumptionKg ?? null,
value.hydrogenConsumptionKgPer100Km ?? null,
value.hydrogenQualityStatus || 'NO_DATA',
value.dailyMileageKm,
value.pureElectricMileageKm ?? null,
value.mixedMileageKm ?? null,
value.batterySocDeltaPct ?? null,
value.chargeCount ?? null,
value.chargeEnergyKWh ?? null,
value.refuelCount ?? null,
value.refuelAmountKg ?? null,
value.hydrogenSocBalancedKg ?? null,
value.hydrogenQualityReason || '',
value.hydrogenConsumptionKg ?? null,
value.source ?? ''
]);
row.height = 24;
row.eachCell({ includeEmpty: true }, (cell, columnNumber) => {
cell.font = { name: columnNumber === 3 ? 'Consolas' : 'Microsoft YaHei', size: columnNumber === 3 ? 9 : 10, color: { argb: 'FF34445A' } };
cell.alignment = { vertical: 'middle', horizontal: columnNumber >= 6 && columnNumber <= 9 ? 'right' : 'left' };
cell.alignment = { vertical: 'middle', horizontal: columnNumber >= 6 && columnNumber <= 16 ? 'right' : 'left' };
cell.fill = { type: 'pattern', pattern: 'solid', fgColor: { argb: index % 2 ? 'FFF9FBFD' : 'FFFFFFFF' } };
cell.border = { bottom: { style: 'thin', color: { argb: 'FFE6ECF3' } } };
if (columnNumber >= 6 && columnNumber <= 9) cell.numFmt = '#,##0.0';
if ([6, 8, 9, 10, 11, 13, 15, 16, 18].includes(columnNumber)) cell.numFmt = '#,##0.000';
if ([12, 14].includes(columnNumber)) cell.numFmt = '0';
});
});
[13, 15, 24, 18, 24, 15, 17, 14, 27, 16].forEach((width, index) => {
[13, 15, 24, 18, 24, 22, 14, 15, 17, 17, 22, 12, 17, 12, 16, 19, 52, 19, 16].forEach((width, index) => {
hydrogenSheet.getColumn(index + 1).width = width;
});
if (energyRows.length) {
hydrogenSheet.autoFilter = { from: { row: 1, column: 1 }, to: { row: energyRows.length + 1, column: 10 } };
hydrogenSheet.autoFilter = { from: { row: 1, column: 1 }, to: { row: energyRows.length + 1, column: hydrogenHeaders.length } };
}
hydrogenSheet.headerFooter.oddFooter = sheet.headerFooter.oddFooter;
return workbook;
@@ -899,6 +899,8 @@ function HydrogenEvidenceSheet({ target, onClose }: { target?: HydrogenEvidenceT
<div><dt></dt><dd>-{data.parameters.pureElectricDropMpa}MPa / {data.parameters.pureElectricWindowSeconds}s</dd></div>
<div><dt></dt><dd>{data.sampleCount}</dd></div>
<div><dt> / </dt><dd>{data.refuelCount} / {data.chargeCount}</dd></div>
<div><dt></dt><dd>{data.refuelAmountKg == null ? '—' : `${evidenceNumber(data.refuelAmountKg)} kg`}</dd></div>
<div><dt></dt><dd>{data.chargeEnergyKWh == null ? '—' : `${evidenceNumber(data.chargeEnergyKWh)} kWh`}</dd></div>
<div><dt></dt><dd>{data.invalidSegmentCount}</dd></div>
<div><dt></dt><dd>{data.calculatedAt}</dd></div>
</dl>
@@ -0,0 +1,3 @@
ALTER TABLE vehicle_open_daily_energy
ADD COLUMN refuel_amount_kg DECIMAL(18,3) NULL AFTER refuel_count,
ADD COLUMN charge_energy_kwh DECIMAL(18,3) NULL AFTER charge_count;