From 3ddfa12fbc43e80e99e4959fbac8881eaa8e3ca3 Mon Sep 17 00:00:00 2001
From: jinpengyong <jpy123456>
Date: Mon, 17 Jan 2022 16:22:44 +0800
Subject: [PATCH] Merge remote-tracking branch 'origin/dev' into dev_

---
 screen-api/src/main/java/com/moral/api/service/impl/CityAqiServiceImpl.java |  286 ++++++++++++++++++++++++++++++++++++++++++++++----------
 1 files changed, 232 insertions(+), 54 deletions(-)

diff --git a/screen-api/src/main/java/com/moral/api/service/impl/CityAqiServiceImpl.java b/screen-api/src/main/java/com/moral/api/service/impl/CityAqiServiceImpl.java
index 746fcbb..be28219 100644
--- a/screen-api/src/main/java/com/moral/api/service/impl/CityAqiServiceImpl.java
+++ b/screen-api/src/main/java/com/moral/api/service/impl/CityAqiServiceImpl.java
@@ -13,6 +13,10 @@
 import com.moral.api.entity.SysArea;
 import com.moral.api.mapper.CityAqiMapper;
 import com.moral.api.mapper.ForecastMapper;
+import com.moral.api.pojo.dto.cityAQI.CityPollutionLevel;
+import com.moral.api.pojo.dto.cityAQI.ConcentrationAndPercent;
+import com.moral.api.pojo.form.aqi.AirQualityComparisonForm;
+import com.moral.api.pojo.vo.cityAQI.AirQualityComparisonVO;
 import com.moral.api.service.CityAqiDailyService;
 import com.moral.api.service.CityAqiMonthlyService;
 import com.moral.api.service.CityAqiService;
@@ -817,64 +821,11 @@
         return result;
     }
 
-    /**
-     * @Description: ������6������������
-     * @Param: [cityAqiList]
-     * @return: java.util.Map<java.lang.String, java.lang.Double>
-     * ���������key���sensorCode,value������
-     * @Author: ���������
-     * @Date: 2021/11/2
-     */
-    private Map<String, Object> calculate6ParamAvg(List<CityAqi> cityAqiList) {
-        Double co = calculateSensorAvg(cityAqiList, "CO");
-        Double pm2_5 = calculateSensorAvg(cityAqiList, "PM2_5");
-        Double pm10 = calculateSensorAvg(cityAqiList, "PM10");
-        Double so2 = calculateSensorAvg(cityAqiList, "SO2");
-        Double no2 = calculateSensorAvg(cityAqiList, "NO2");
-        Double o3 = calculateSensorAvg(cityAqiList, "O3");
-        Map<String, Object> result = new HashMap<>();
-        result.put(Constants.SENSOR_CODE_CO, co);
-        result.put(Constants.SENSOR_CODE_NO2, no2);
-        result.put(Constants.SENSOR_CODE_SO2, so2);
-        result.put(Constants.SENSOR_CODE_O3, o3);
-        result.put(Constants.SENSOR_CODE_PM25, pm2_5);
-        result.put(Constants.SENSOR_CODE_PM10, pm10);
-        return result;
-    }
-
-    /**
-     * @Description: ������������������������
-     * @Param: [cityAqiList, sensor]
-     * ���sensor���������������������������
-     * @return: java.lang.Double
-     * @Author: ���������
-     * @Date: 2021/11/2
-     */
-    private Double calculateSensorAvg(List<CityAqi> cityAqiList, String sensor) {
-        Double sum = 0d;
-        int num = 0;
-        for (CityAqi cityAqi : cityAqiList) {
-            String value = cityAqi.getValue();
-            if (value == null)
-                continue;
-            Map<String, Object> valueMap = JSON.parseObject(value, Map.class);
-            Object sensorValueObject = valueMap.get(sensor);
-            if (sensorValueObject == null)
-                continue;
-            Double sensorValue = Double.valueOf(sensorValueObject.toString());
-            sum = MathUtils.add(sum, sensorValue);
-            num++;
-        }
-        if (num == 0)
-            return null;
-        Double avg = MathUtils.division(sum, num, 2);
-        return avg;
-    }
 
     /**
      * @Description: ������������������������
      * @Param: [regionCode]
-     * @return: java.util.Map<java.lang.String, java.lang.Object>
+     * @return: java.util.Map<java.lang.String                                                               ,                                                                                                                               java.lang.Object>
      * @Author: ���������
      * @Date: 2021/10/28
      */
@@ -1000,6 +951,161 @@
         return result;
     }
 
+    @Override
+    public List<AirQualityComparisonVO> queryAirQualityComparison(AirQualityComparisonForm form) {
+        //������
+        Integer regionCode = form.getRegionCode();
+        String regionType = form.getRegionType();
+        Date startDate = form.getStartDate();
+        Date endDate = form.getEndDate();
+        Date comparisonStartDate = form.getComparisonStartDate();
+        Date comparisonEndDate = form.getComparisonEndDate();
+        String dateType = form.getDateType();
+        //������������/������
+        List<SysArea> areas = getSysAreasByRegionType(regionType, regionCode);
+        if (ObjectUtils.isEmpty(areas))
+            return null;
+        List<AirQualityComparisonVO> vos = new ArrayList<>();
+        for (SysArea area : areas) {
+            //������������������������������������6������������������
+            Map<String, Object> data = getDataByTimeTypeAndRegionCode(dateType, startDate, endDate, area.getAreaCode());
+            Map<String, Object> comparisonData = getDataByTimeTypeAndRegionCode(dateType, comparisonStartDate, comparisonEndDate, area.getAreaCode());
+            if (ObjectUtils.isEmpty(data) || ObjectUtils.isEmpty(comparisonData))
+                continue;
+            //���������������������������������������
+            CityPollutionLevel days = cityAqiDailyService.calculateDaysByTimeAndSysArea(area, startDate, endDate);
+            CityPollutionLevel comparisonDays = cityAqiDailyService.calculateDaysByTimeAndSysArea(area, comparisonStartDate, comparisonEndDate);
+            int fineDays = days.getExcellentWeatherDays() + days.getGoodWeatherDays();
+            int serverDays = days.getSeriousWeatherDays() + days.getServerWeatherDays();
+            int comparisonFineDays = comparisonDays.getExcellentWeatherDays() + comparisonDays.getGoodWeatherDays();
+            int comparisonServerDays = comparisonDays.getSeriousWeatherDays() + comparisonDays.getServerWeatherDays();
+            //������6������������������
+            Map<String, ConcentrationAndPercent> sixParamAndComIndexResult = contrastSixParamAndComIndex(data, comparisonData);
+            //������������������������������������������
+            ConcentrationAndPercent fine = contrastDays(fineDays, comparisonFineDays);
+            ConcentrationAndPercent server = contrastDays(serverDays, comparisonServerDays);
+            //������������������
+            AirQualityComparisonVO vo = new AirQualityComparisonVO();
+            vo.setFineDays(fine);
+            vo.setServerDays(server);
+            vo.setCO(sixParamAndComIndexResult.get("CO"));
+            vo.setO3(sixParamAndComIndexResult.get("O3"));
+            vo.setPM25(sixParamAndComIndexResult.get("PM2_5"));
+            vo.setPM10(sixParamAndComIndexResult.get("PM10"));
+            vo.setSO2(sixParamAndComIndexResult.get("SO2"));
+            vo.setNO2(sixParamAndComIndexResult.get("NO2"));
+            vo.setCompositeIndex(sixParamAndComIndexResult.get("compositeIndex"));
+            vo.setCityName(area.getAreaName());
+            vos.add(vo);
+        }
+        return vos;
+    }
+
+    /**
+     * @Description: ������6������������������������������������
+     * @Param: [data, comparisonData]
+     * @return: java.util.Map<java.lang.String                               ,                               com.moral.api.pojo.dto.cityAQI.ConcentrationAndPercent>
+     * @Author: ���������
+     * @Date: 2022/1/17
+     */
+    private Map<String, ConcentrationAndPercent> contrastSixParamAndComIndex(Map<String, Object> data, Map<String, Object> comparisonData) {
+        Map<String, ConcentrationAndPercent> result = new HashMap<>();
+        result.put("CO", contrastParam(Double.parseDouble(data.get("CO").toString()), Double.parseDouble(comparisonData.get("CO").toString()), "CO"));
+        result.put("NO2", contrastParam(Double.parseDouble(data.get("NO2").toString()), Double.parseDouble(comparisonData.get("NO2").toString()), "NO2"));
+        result.put("SO2", contrastParam(Double.parseDouble(data.get("SO2").toString()), Double.parseDouble(comparisonData.get("SO2").toString()), "SO2"));
+        result.put("O3", contrastParam(Double.parseDouble(data.get("O3").toString()), Double.parseDouble(comparisonData.get("O3").toString()), "O3"));
+        result.put("PM2_5", contrastParam(Double.parseDouble(data.get("PM2_5").toString()), Double.parseDouble(comparisonData.get("PM2_5").toString()), "PM2_5"));
+        result.put("PM10", contrastParam(Double.parseDouble(data.get("PM10").toString()), Double.parseDouble(comparisonData.get("PM10").toString()), "PM10"));
+        result.put("compositeIndex", contrastParam(Double.parseDouble(data.get("compositeIndex").toString()), Double.parseDouble(comparisonData.get("compositeIndex").toString()), "compositeIndex"));
+        return result;
+    }
+
+    /**
+     * @Description: ������6������������������������/���������������������
+     * @Param: [data, comparisonData]
+     * @return: com.moral.api.pojo.dto.cityAQI.ConcentrationAndPercent
+     * @Author: ���������
+     * @Date: 2022/1/17
+     */
+    private ConcentrationAndPercent contrastParam(Double data, Double comparisonData, String sensor) {
+        double percentD = MathUtils.division(data - comparisonData, comparisonData, 4);
+        String percent = MathUtils.mul(percentD,100d) + "%";
+        ConcentrationAndPercent concentrationAndPercent = new ConcentrationAndPercent();
+        concentrationAndPercent.setPercent(percent);
+        if (sensor.equals("CO")) {//CO���������������������
+            Double CO = AmendUtils.sciCal(data, 1);
+            concentrationAndPercent.setConcentration(CO.toString());
+        }else if (sensor.equals("compositeIndex")){
+            concentrationAndPercent.setConcentration(data.toString());
+        }else{
+            Double sensorD = AmendUtils.sciCal(data, 0);
+            Integer sensorI = new Double(sensorD).intValue();
+            concentrationAndPercent.setConcentration(sensorI.toString());
+        }
+        return concentrationAndPercent;
+    }
+
+    /**
+     * @Description: ���������������������������������
+     * @Param: [days, comparisonDays]
+     * @return: com.moral.api.pojo.dto.cityAQI.ConcentrationAndPercent
+     * @Author: ���������
+     * @Date: 2022/1/17
+     */
+    private ConcentrationAndPercent contrastDays(Integer days, Integer comparisonDays) {
+        ConcentrationAndPercent concentrationAndPercent = new ConcentrationAndPercent();
+        concentrationAndPercent.setConcentration(days.toString());
+        Integer result = days - comparisonDays;
+        concentrationAndPercent.setPercent(result.toString() + "���");
+        return concentrationAndPercent;
+    }
+
+    /**
+     * @Description: ���������������������������������6������������������������������������������������������������������������
+     * @Param: [comparisonType, startDate, endDate, regionCode]
+     * @return: java.util.Map<java.lang.String                                                               ,                                                               java.lang.Object>
+     * @Author: ���������
+     * @Date: 2022/1/17
+     */
+    private Map<String, Object> getDataByTimeTypeAndRegionCode(String TimeType, Date startDate, Date endDate, Integer regionCode) {
+        Map<String, Object> data;
+        if (Constants.MONTH.equals(TimeType) && (!DateUtils.isCurrentMonth(startDate) || !DateUtils.isCurrentYear(startDate))) {//��������������� ���������������
+            List<CityAqiMonthly> cityAqis = cityAqiMonthlyService.getCityAqiMonthByRegionCodeAndTime(regionCode, startDate, endDate);
+            if (ObjectUtils.isEmpty(cityAqis))
+                return null;
+            data = JSON.parseObject(cityAqis.get(0).getValue(), Map.class);
+        } else if (Constants.YEAR.equals(TimeType) && (!DateUtils.isCurrentYear(startDate))) {//��������������� ���������������
+            List<CityAqiYearly> cityAqis = cityAqiYearlyService.getCityAqiYearlyByRegionCodeAndTime(regionCode, startDate, endDate);
+            if (ObjectUtils.isEmpty(cityAqis))
+                return null;
+            data = JSON.parseObject(cityAqis.get(0).getValue(), Map.class);
+        } else {//���������������������
+            List<CityAqiDaily> cityAqis = cityAqiDailyService.getCityAqiDailyByRegionCodeAndTime(regionCode, startDate, endDate);
+            if (ObjectUtils.isEmpty(cityAqis))
+                return null;
+            List<CityAqi> newCityAqis = new ArrayList<>();
+            List<Map<String, Object>> dailyDataMaps = new ArrayList<>();
+            cityAqis.forEach((value) -> {
+                newCityAqis.add(new CityAqi(value));
+                dailyDataMaps.add(JSON.parseObject(value.getValue(), Map.class));
+            });
+            //������������
+            data = calculate6ParamAvg(newCityAqis);
+            //���������������
+            data.put("CO", Double.parseDouble(data.remove(Constants.SENSOR_CODE_CO).toString()));
+            data.put("NO2", Double.parseDouble(data.remove(Constants.SENSOR_CODE_NO2).toString()));
+            data.put("SO2", Double.parseDouble(data.remove(Constants.SENSOR_CODE_SO2).toString()));
+            data.put("O3", Double.parseDouble(data.remove(Constants.SENSOR_CODE_O3).toString()));
+            data.put("PM2_5", Double.parseDouble(data.remove(Constants.SENSOR_CODE_PM25).toString()));
+            data.put("PM10", Double.parseDouble(data.remove(Constants.SENSOR_CODE_PM10).toString()));
+            //������������������
+            Double compositeIndex = ComprehensiveIndexUtils.dailyData(data);
+            data.put("compositeIndex", compositeIndex);
+        }
+        return data;
+    }
+
+
     //������������������
     private void sortByField(List<Map<String, Object>> list, String sortField) {
         list.sort((o1, o2) -> {
@@ -1030,4 +1136,76 @@
         }
         return result;
     }
+
+    /**
+     * @Description: ���������������������������������������������������������
+     * @Param: [regionType, regionCode]
+     * @return: java.util.List<com.moral.api.entity.SysArea>
+     * @Author: ���������
+     * @Date: 2022/1/14
+     */
+    private List<SysArea> getSysAreasByRegionType(String regionType, Integer regionCode) {
+        List<SysArea> areas;
+        if (regionType.equals(Constants.TWENTY_EIGHT_CITIES)) {
+            SpecialCitiesProperties properties = new SpecialCitiesProperties();
+            areas = properties.getTwentyEightCities();
+        } else {
+            areas = sysAreaService.getChildren(regionCode);
+        }
+        return areas;
+    }
+
+    /**
+     * @Description: ������6������������
+     * @Param: [cityAqiList]
+     * @return: java.util.Map<java.lang.String                                                               ,                                                                                                                               java.lang.Double>
+     * ���������key���sensorCode,value������
+     * @Author: ���������
+     * @Date: 2021/11/2
+     */
+    private Map<String, Object> calculate6ParamAvg(List<CityAqi> cityAqiList) {
+        Double co = calculateSensorAvg(cityAqiList, "CO");
+        Double pm2_5 = calculateSensorAvg(cityAqiList, "PM2_5");
+        Double pm10 = calculateSensorAvg(cityAqiList, "PM10");
+        Double so2 = calculateSensorAvg(cityAqiList, "SO2");
+        Double no2 = calculateSensorAvg(cityAqiList, "NO2");
+        Double o3 = calculateSensorAvg(cityAqiList, "O3");
+        Map<String, Object> result = new HashMap<>();
+        result.put(Constants.SENSOR_CODE_CO, co);
+        result.put(Constants.SENSOR_CODE_NO2, no2);
+        result.put(Constants.SENSOR_CODE_SO2, so2);
+        result.put(Constants.SENSOR_CODE_O3, o3);
+        result.put(Constants.SENSOR_CODE_PM25, pm2_5);
+        result.put(Constants.SENSOR_CODE_PM10, pm10);
+        return result;
+    }
+
+    /**
+     * @Description: ������������������������
+     * @Param: [cityAqiList, sensor]
+     * ���sensor���������������������������
+     * @return: java.lang.Double
+     * @Author: ���������
+     * @Date: 2021/11/2
+     */
+    private Double calculateSensorAvg(List<CityAqi> cityAqiList, String sensor) {
+        Double sum = 0d;
+        int num = 0;
+        for (CityAqi cityAqi : cityAqiList) {
+            String value = cityAqi.getValue();
+            if (value == null)
+                continue;
+            Map<String, Object> valueMap = JSON.parseObject(value, Map.class);
+            Object sensorValueObject = valueMap.get(sensor);
+            if (sensorValueObject == null)
+                continue;
+            Double sensorValue = Double.valueOf(sensorValueObject.toString());
+            sum = MathUtils.add(sum, sensorValue);
+            num++;
+        }
+        if (num == 0)
+            return null;
+        Double avg = MathUtils.division(sum, num, 2);
+        return avg;
+    }
 }

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