Conditions | 155 |
Total Lines | 515 |
Code Lines | 355 |
Lines | 515 |
Ratio | 100 % |
Changes | 0 |
Small methods make your code easier to understand, in particular if combined with a good name. Besides, if your method is small, finding a good name is usually much easier.
For example, if you find yourself adding comments to a method's body, this is usually a good sign to extract the commented part to a new method, and use the comment as a starting point when coming up with a good name for this new method.
Commonly applied refactorings include:
If many parameters/temporary variables are present:
Complex classes like combined_equipment_energy_input_item.worker() often do a lot of different things. To break such a class down, we need to identify a cohesive component within that class. A common approach to find such a component is to look for fields/methods that share the same prefixes, or suffixes.
Once you have determined the fields that belong together, you can apply the Extract Class refactoring. If the component makes sense as a sub-class, Extract Subclass is also a candidate, and is often faster.
1 | import time |
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108 | View Code Duplication | def worker(combined_equipment): |
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109 | #################################################################################################################### |
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110 | # Step 1: get all input meters associated with the combined equipment |
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111 | #################################################################################################################### |
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112 | print("Step 1: get all input meters associated with the combined equipment " + str(combined_equipment['name'])) |
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113 | |||
114 | meter_list = list() |
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115 | cnx_system_db = None |
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116 | cursor_system_db = None |
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117 | try: |
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118 | cnx_system_db = mysql.connector.connect(**config.myems_system_db) |
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119 | cursor_system_db = cnx_system_db.cursor() |
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120 | except Exception as e: |
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121 | error_string = "Error in step 1.1 of combined_equipment_energy_input_item.worker " + str(e) |
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122 | if cursor_system_db: |
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123 | cursor_system_db.close() |
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124 | if cnx_system_db: |
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125 | cnx_system_db.close() |
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126 | print(error_string) |
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127 | return error_string |
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128 | |||
129 | try: |
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130 | cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id " |
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131 | " FROM tbl_meters m, tbl_combined_equipments_meters em " |
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132 | " WHERE m.id = em.meter_id " |
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133 | " AND m.is_counted = true " |
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134 | " AND m.energy_item_id is NOT NULL " |
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135 | " AND em.is_output = false " |
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136 | " AND em.combined_equipment_id = %s ", |
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137 | (combined_equipment['id'],)) |
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138 | rows_meters = cursor_system_db.fetchall() |
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139 | |||
140 | if rows_meters is not None and len(rows_meters) > 0: |
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141 | for row in rows_meters: |
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142 | meter_list.append({"id": row[0], |
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143 | "name": row[1], |
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144 | "energy_item_id": row[2]}) |
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145 | |||
146 | except Exception as e: |
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147 | error_string = "Error in step 1.2 of combined_equipment_energy_input_item.worker " + str(e) |
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148 | if cursor_system_db: |
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149 | cursor_system_db.close() |
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150 | if cnx_system_db: |
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151 | cnx_system_db.close() |
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152 | print(error_string) |
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153 | return error_string |
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154 | |||
155 | #################################################################################################################### |
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156 | # Step 2: get all input virtual meters associated with the combined equipment |
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157 | #################################################################################################################### |
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158 | print("Step 2: get all input virtual meters associated with the combined equipment") |
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159 | virtual_meter_list = list() |
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160 | |||
161 | try: |
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162 | cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id " |
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163 | " FROM tbl_virtual_meters m, tbl_combined_equipments_virtual_meters em " |
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164 | " WHERE m.id = em.virtual_meter_id " |
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165 | " AND m.energy_item_id is NOT NULL " |
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166 | " AND m.is_counted = true " |
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167 | " AND em.is_output = false " |
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168 | " AND em.combined_equipment_id = %s ", |
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169 | (combined_equipment['id'],)) |
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170 | rows_virtual_meters = cursor_system_db.fetchall() |
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171 | |||
172 | if rows_virtual_meters is not None and len(rows_virtual_meters) > 0: |
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173 | for row in rows_virtual_meters: |
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174 | virtual_meter_list.append({"id": row[0], |
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175 | "name": row[1], |
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176 | "energy_item_id": row[2]}) |
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177 | |||
178 | except Exception as e: |
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179 | error_string = "Error in step 2.1 of combined_equipment_energy_input_item.worker " + str(e) |
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180 | if cursor_system_db: |
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181 | cursor_system_db.close() |
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182 | if cnx_system_db: |
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183 | cnx_system_db.close() |
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184 | print(error_string) |
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185 | return error_string |
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186 | |||
187 | #################################################################################################################### |
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188 | # Step 3: get all input offline meters associated with the combined equipment |
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189 | #################################################################################################################### |
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190 | print("Step 3: get all input offline meters associated with the combined equipment") |
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191 | |||
192 | offline_meter_list = list() |
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193 | |||
194 | try: |
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195 | cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id " |
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196 | " FROM tbl_offline_meters m, tbl_combined_equipments_offline_meters em " |
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197 | " WHERE m.id = em.offline_meter_id " |
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198 | " AND m.energy_item_id is NOT NULL " |
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199 | " AND m.is_counted = true " |
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200 | " AND em.is_output = false " |
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201 | " AND em.combined_equipment_id = %s ", |
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202 | (combined_equipment['id'],)) |
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203 | rows_offline_meters = cursor_system_db.fetchall() |
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204 | |||
205 | if rows_offline_meters is not None and len(rows_offline_meters) > 0: |
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206 | for row in rows_offline_meters: |
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207 | offline_meter_list.append({"id": row[0], |
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208 | "name": row[1], |
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209 | "energy_item_id": row[2]}) |
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210 | |||
211 | except Exception as e: |
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212 | error_string = "Error in step 3.1 of combined_equipment_energy_input_item.worker " + str(e) |
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213 | print(error_string) |
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214 | return error_string |
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215 | finally: |
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216 | if cursor_system_db: |
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217 | cursor_system_db.close() |
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218 | if cnx_system_db: |
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219 | cnx_system_db.close() |
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220 | |||
221 | #################################################################################################################### |
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222 | # Step 4: get all equipments associated with the combined equipment |
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223 | #################################################################################################################### |
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224 | print("Step 4: get all equipments associated with the combined equipment") |
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225 | |||
226 | equipment_list = list() |
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227 | |||
228 | try: |
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229 | cursor_system_db.execute(" SELECT e.id, e.name " |
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230 | " FROM tbl_equipments e, tbl_combined_equipments_equipments ce " |
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231 | " WHERE e.id = ce.equipment_id " |
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232 | " AND e.is_input_counted = true " |
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233 | " AND ce.combined_equipment_id = %s ", |
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234 | (combined_equipment['id'],)) |
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235 | rows_equipments = cursor_system_db.fetchall() |
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236 | |||
237 | if rows_equipments is not None and len(rows_equipments) > 0: |
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238 | for row in rows_equipments: |
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239 | equipment_list.append({"id": row[0], |
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240 | "name": row[1]}) |
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241 | |||
242 | except Exception as e: |
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243 | error_string = "Error in step 4 of combined_equipment_energy_input_item.worker " + str(e) |
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244 | print(error_string) |
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245 | return error_string |
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246 | finally: |
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247 | if cursor_system_db: |
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248 | cursor_system_db.close() |
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249 | if cnx_system_db: |
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250 | cnx_system_db.close() |
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251 | |||
252 | #################################################################################################################### |
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253 | # stop to the next combined equipment if this combined equipment is empty |
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254 | #################################################################################################################### |
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255 | if (meter_list is None or len(meter_list) == 0) and \ |
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256 | (virtual_meter_list is None or len(virtual_meter_list) == 0) and \ |
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257 | (offline_meter_list is None or len(offline_meter_list) == 0) and \ |
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258 | (equipment_list is None or len(equipment_list) == 0): |
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259 | print("This is an empty combined equipment ") |
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260 | return None |
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261 | |||
262 | #################################################################################################################### |
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263 | # Step 5: determine start datetime and end datetime to aggregate |
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264 | #################################################################################################################### |
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265 | print("Step 5: determine start datetime and end datetime to aggregate") |
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266 | cnx_energy_db = None |
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267 | cursor_energy_db = None |
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268 | try: |
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269 | cnx_energy_db = mysql.connector.connect(**config.myems_energy_db) |
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270 | cursor_energy_db = cnx_energy_db.cursor() |
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271 | except Exception as e: |
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272 | error_string = "Error in step 5.1 of combined_equipment_energy_input_item.worker " + str(e) |
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273 | if cursor_energy_db: |
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274 | cursor_energy_db.close() |
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275 | if cnx_energy_db: |
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276 | cnx_energy_db.close() |
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277 | print(error_string) |
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278 | return error_string |
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279 | |||
280 | try: |
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281 | query = (" SELECT MAX(start_datetime_utc) " |
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282 | " FROM tbl_combined_equipment_input_item_hourly " |
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283 | " WHERE combined_equipment_id = %s ") |
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284 | cursor_energy_db.execute(query, (combined_equipment['id'],)) |
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285 | row_datetime = cursor_energy_db.fetchone() |
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286 | start_datetime_utc = datetime.strptime(config.start_datetime_utc, '%Y-%m-%d %H:%M:%S') |
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287 | start_datetime_utc = start_datetime_utc.replace(minute=0, second=0, microsecond=0, tzinfo=None) |
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288 | |||
289 | if row_datetime is not None and len(row_datetime) > 0 and isinstance(row_datetime[0], datetime): |
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290 | # replace second and microsecond with 0 |
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291 | # note: do not replace minute in case of calculating in half hourly |
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292 | start_datetime_utc = row_datetime[0].replace(second=0, microsecond=0, tzinfo=None) |
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293 | # start from the next time slot |
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294 | start_datetime_utc += timedelta(minutes=config.minutes_to_count) |
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295 | |||
296 | end_datetime_utc = datetime.utcnow().replace(second=0, microsecond=0, tzinfo=None) |
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297 | |||
298 | print("start_datetime_utc: " + start_datetime_utc.isoformat()[0:19] |
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299 | + "end_datetime_utc: " + end_datetime_utc.isoformat()[0:19]) |
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300 | |||
301 | except Exception as e: |
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302 | error_string = "Error in step 5.2 of combined_equipment_energy_input_item.worker " + str(e) |
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303 | if cursor_energy_db: |
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304 | cursor_energy_db.close() |
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305 | if cnx_energy_db: |
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306 | cnx_energy_db.close() |
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307 | print(error_string) |
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308 | return error_string |
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309 | |||
310 | #################################################################################################################### |
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311 | # Step 6: for each meter in list, get energy input data from energy database |
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312 | #################################################################################################################### |
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313 | energy_meter_hourly = dict() |
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314 | try: |
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315 | if meter_list is not None and len(meter_list) > 0: |
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316 | for meter in meter_list: |
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317 | meter_id = str(meter['id']) |
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318 | |||
319 | query = (" SELECT start_datetime_utc, actual_value " |
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320 | " FROM tbl_meter_hourly " |
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321 | " WHERE meter_id = %s " |
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322 | " AND start_datetime_utc >= %s " |
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323 | " AND start_datetime_utc < %s " |
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324 | " ORDER BY start_datetime_utc ") |
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325 | cursor_energy_db.execute(query, (meter_id, start_datetime_utc, end_datetime_utc,)) |
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326 | rows_energy_values = cursor_energy_db.fetchall() |
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327 | if rows_energy_values is None or len(rows_energy_values) == 0: |
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328 | energy_meter_hourly[meter_id] = None |
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329 | else: |
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330 | energy_meter_hourly[meter_id] = dict() |
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331 | for row_energy_value in rows_energy_values: |
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332 | energy_meter_hourly[meter_id][row_energy_value[0]] = row_energy_value[1] |
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333 | except Exception as e: |
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334 | error_string = "Error in step 6.1 of combined_equipment_energy_input_item.worker " + str(e) |
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335 | if cursor_energy_db: |
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336 | cursor_energy_db.close() |
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337 | if cnx_energy_db: |
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338 | cnx_energy_db.close() |
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339 | print(error_string) |
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340 | return error_string |
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341 | |||
342 | #################################################################################################################### |
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343 | # Step 7: for each virtual meter in list, get energy input data from energy database |
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344 | #################################################################################################################### |
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345 | energy_virtual_meter_hourly = dict() |
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346 | if virtual_meter_list is not None and len(virtual_meter_list) > 0: |
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347 | try: |
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348 | for virtual_meter in virtual_meter_list: |
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349 | virtual_meter_id = str(virtual_meter['id']) |
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350 | |||
351 | query = (" SELECT start_datetime_utc, actual_value " |
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352 | " FROM tbl_virtual_meter_hourly " |
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353 | " WHERE virtual_meter_id = %s " |
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354 | " AND start_datetime_utc >= %s " |
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355 | " AND start_datetime_utc < %s " |
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356 | " ORDER BY start_datetime_utc ") |
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357 | cursor_energy_db.execute(query, (virtual_meter_id, start_datetime_utc, end_datetime_utc,)) |
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358 | rows_energy_values = cursor_energy_db.fetchall() |
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359 | if rows_energy_values is None or len(rows_energy_values) == 0: |
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360 | energy_virtual_meter_hourly[virtual_meter_id] = None |
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361 | else: |
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362 | energy_virtual_meter_hourly[virtual_meter_id] = dict() |
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363 | for row_energy_value in rows_energy_values: |
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364 | energy_virtual_meter_hourly[virtual_meter_id][row_energy_value[0]] = row_energy_value[1] |
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365 | except Exception as e: |
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366 | error_string = "Error in step 7.1 of combined_equipment_energy_input_item.worker " + str(e) |
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367 | if cursor_energy_db: |
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368 | cursor_energy_db.close() |
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369 | if cnx_energy_db: |
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370 | cnx_energy_db.close() |
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371 | print(error_string) |
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372 | return error_string |
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373 | |||
374 | #################################################################################################################### |
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375 | # Step 8: for each offline meter in list, get energy input data from energy database |
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376 | #################################################################################################################### |
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377 | energy_offline_meter_hourly = dict() |
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378 | if offline_meter_list is not None and len(offline_meter_list) > 0: |
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379 | try: |
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380 | for offline_meter in offline_meter_list: |
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381 | offline_meter_id = str(offline_meter['id']) |
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382 | |||
383 | query = (" SELECT start_datetime_utc, actual_value " |
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384 | " FROM tbl_offline_meter_hourly " |
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385 | " WHERE offline_meter_id = %s " |
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386 | " AND start_datetime_utc >= %s " |
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387 | " AND start_datetime_utc < %s " |
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388 | " ORDER BY start_datetime_utc ") |
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389 | cursor_energy_db.execute(query, (offline_meter_id, start_datetime_utc, end_datetime_utc,)) |
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390 | rows_energy_values = cursor_energy_db.fetchall() |
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391 | if rows_energy_values is None or len(rows_energy_values) == 0: |
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392 | energy_offline_meter_hourly[offline_meter_id] = None |
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393 | else: |
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394 | energy_offline_meter_hourly[offline_meter_id] = dict() |
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395 | for row_energy_value in rows_energy_values: |
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396 | energy_offline_meter_hourly[offline_meter_id][row_energy_value[0]] = row_energy_value[1] |
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397 | |||
398 | except Exception as e: |
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399 | error_string = "Error in step 8.1 of combined_equipment_energy_input_item.worker " + str(e) |
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400 | if cursor_energy_db: |
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401 | cursor_energy_db.close() |
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402 | if cnx_energy_db: |
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403 | cnx_energy_db.close() |
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404 | print(error_string) |
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405 | return error_string |
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406 | |||
407 | #################################################################################################################### |
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408 | # Step 9: for each equipment in list, get energy input data from energy database |
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409 | #################################################################################################################### |
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410 | energy_equipment_hourly = dict() |
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411 | if equipment_list is not None and len(equipment_list) > 0: |
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412 | try: |
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413 | for equipment in equipment_list: |
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414 | equipment_id = str(equipment['id']) |
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415 | query = (" SELECT start_datetime_utc, energy_category_id, actual_value " |
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416 | " FROM tbl_equipment_input_item_hourly " |
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417 | " WHERE equipment_id = %s " |
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418 | " AND start_datetime_utc >= %s " |
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419 | " AND start_datetime_utc < %s " |
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420 | " ORDER BY start_datetime_utc ") |
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421 | cursor_energy_db.execute(query, (equipment_id, start_datetime_utc, end_datetime_utc,)) |
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422 | rows_energy_values = cursor_energy_db.fetchall() |
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423 | if rows_energy_values is None or len(rows_energy_values) == 0: |
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424 | energy_equipment_hourly[equipment_id] = None |
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425 | else: |
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426 | energy_equipment_hourly[equipment_id] = dict() |
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427 | for row_value in rows_energy_values: |
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428 | current_datetime_utc = row_value[0] |
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429 | if current_datetime_utc not in energy_equipment_hourly[equipment_id]: |
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430 | energy_equipment_hourly[equipment_id][current_datetime_utc] = dict() |
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431 | energy_category_id = row_value[1] |
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432 | actual_value = row_value[2] |
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433 | energy_equipment_hourly[equipment_id][current_datetime_utc][energy_category_id] = \ |
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434 | actual_value |
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435 | except Exception as e: |
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436 | error_string = "Error in step 9 of combined_equipment_energy_input_item.worker " + str(e) |
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437 | if cursor_energy_db: |
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438 | cursor_energy_db.close() |
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439 | if cnx_energy_db: |
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440 | cnx_energy_db.close() |
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441 | print(error_string) |
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442 | return error_string |
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443 | |||
444 | #################################################################################################################### |
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445 | # Step 10: determine common time slot to aggregate |
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446 | #################################################################################################################### |
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447 | |||
448 | common_start_datetime_utc = start_datetime_utc |
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449 | common_end_datetime_utc = end_datetime_utc |
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450 | |||
451 | print("Getting common time slot of energy values for all meters") |
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452 | if energy_meter_hourly is not None and len(energy_meter_hourly) > 0: |
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453 | for meter_id, energy_hourly in energy_meter_hourly.items(): |
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454 | if energy_hourly is None or len(energy_hourly) == 0: |
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455 | common_start_datetime_utc = None |
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456 | common_end_datetime_utc = None |
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457 | break |
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458 | else: |
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459 | if common_start_datetime_utc < min(energy_hourly.keys()): |
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460 | common_start_datetime_utc = min(energy_hourly.keys()) |
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461 | if common_end_datetime_utc > max(energy_hourly.keys()): |
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462 | common_end_datetime_utc = max(energy_hourly.keys()) |
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463 | |||
464 | print("Getting common time slot of energy values for all virtual meters") |
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465 | if common_start_datetime_utc is not None and common_start_datetime_utc is not None: |
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466 | if energy_virtual_meter_hourly is not None and len(energy_virtual_meter_hourly) > 0: |
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467 | for meter_id, energy_hourly in energy_virtual_meter_hourly.items(): |
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468 | if energy_hourly is None or len(energy_hourly) == 0: |
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469 | common_start_datetime_utc = None |
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470 | common_end_datetime_utc = None |
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471 | break |
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472 | else: |
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473 | if common_start_datetime_utc < min(energy_hourly.keys()): |
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474 | common_start_datetime_utc = min(energy_hourly.keys()) |
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475 | if common_end_datetime_utc > max(energy_hourly.keys()): |
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476 | common_end_datetime_utc = max(energy_hourly.keys()) |
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477 | |||
478 | print("Getting common time slot of energy values for all offline meters") |
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479 | if common_start_datetime_utc is not None and common_start_datetime_utc is not None: |
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480 | if energy_offline_meter_hourly is not None and len(energy_offline_meter_hourly) > 0: |
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481 | for meter_id, energy_hourly in energy_offline_meter_hourly.items(): |
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482 | if energy_hourly is None or len(energy_hourly) == 0: |
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483 | common_start_datetime_utc = None |
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484 | common_end_datetime_utc = None |
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485 | break |
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486 | else: |
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487 | if common_start_datetime_utc < min(energy_hourly.keys()): |
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488 | common_start_datetime_utc = min(energy_hourly.keys()) |
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489 | if common_end_datetime_utc > max(energy_hourly.keys()): |
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490 | common_end_datetime_utc = max(energy_hourly.keys()) |
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491 | |||
492 | print("Getting common time slot of energy values for all equipments") |
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493 | if common_start_datetime_utc is not None and common_start_datetime_utc is not None: |
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494 | if energy_equipment_hourly is not None and len(energy_equipment_hourly) > 0: |
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495 | for equipment_id, energy_hourly in energy_equipment_hourly.items(): |
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496 | if energy_hourly is None or len(energy_hourly) == 0: |
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497 | common_start_datetime_utc = None |
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498 | common_end_datetime_utc = None |
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499 | break |
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500 | else: |
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501 | if common_start_datetime_utc < min(energy_hourly.keys()): |
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502 | common_start_datetime_utc = min(energy_hourly.keys()) |
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503 | if common_end_datetime_utc > max(energy_hourly.keys()): |
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504 | common_end_datetime_utc = max(energy_hourly.keys()) |
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505 | |||
506 | if (energy_meter_hourly is None or len(energy_meter_hourly) == 0) and \ |
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507 | (energy_virtual_meter_hourly is None or len(energy_virtual_meter_hourly) == 0) and \ |
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508 | (energy_offline_meter_hourly is None or len(energy_offline_meter_hourly) == 0) and \ |
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509 | (energy_equipment_hourly is None or len(energy_equipment_hourly) == 0): |
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510 | # There isn't any energy data |
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511 | print("There isn't any energy data") |
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512 | # continue the for combined equipment loop to the next combined equipment |
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513 | print("continue the for combined equipment loop to the next combined equipment") |
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514 | if cursor_energy_db: |
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515 | cursor_energy_db.close() |
||
516 | if cnx_energy_db: |
||
517 | cnx_energy_db.close() |
||
518 | return None |
||
519 | |||
520 | print("common_start_datetime_utc: " + str(common_start_datetime_utc)) |
||
521 | print("common_end_datetime_utc: " + str(common_end_datetime_utc)) |
||
522 | |||
523 | #################################################################################################################### |
||
524 | # Step 11: aggregate energy data in the common time slot by energy items and hourly |
||
525 | #################################################################################################################### |
||
526 | |||
527 | print("Step 11: aggregate energy data in the common time slot by energy items and hourly") |
||
528 | aggregated_values = list() |
||
529 | try: |
||
530 | current_datetime_utc = common_start_datetime_utc |
||
531 | while common_start_datetime_utc is not None \ |
||
532 | and common_end_datetime_utc is not None \ |
||
533 | and current_datetime_utc <= common_end_datetime_utc: |
||
534 | aggregated_value = dict() |
||
535 | aggregated_value['start_datetime_utc'] = current_datetime_utc |
||
536 | aggregated_value['meta_data'] = dict() |
||
537 | |||
538 | if meter_list is not None and len(meter_list) > 0: |
||
539 | for meter in meter_list: |
||
540 | meter_id = str(meter['id']) |
||
541 | energy_item_id = meter['energy_item_id'] |
||
542 | actual_value = energy_meter_hourly[meter_id].get(current_datetime_utc, Decimal(0.0)) |
||
543 | aggregated_value['meta_data'][energy_item_id] = \ |
||
544 | aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value |
||
545 | |||
546 | if virtual_meter_list is not None and len(virtual_meter_list) > 0: |
||
547 | for virtual_meter in virtual_meter_list: |
||
548 | virtual_meter_id = str(virtual_meter['id']) |
||
549 | energy_item_id = virtual_meter['energy_item_id'] |
||
550 | actual_value = energy_virtual_meter_hourly[virtual_meter_id].get(current_datetime_utc, Decimal(0.0)) |
||
551 | aggregated_value['meta_data'][energy_item_id] = \ |
||
552 | aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value |
||
553 | |||
554 | if offline_meter_list is not None and len(offline_meter_list) > 0: |
||
555 | for offline_meter in offline_meter_list: |
||
556 | offline_meter_id = str(offline_meter['id']) |
||
557 | energy_item_id = offline_meter['energy_item_id'] |
||
558 | actual_value = energy_offline_meter_hourly[offline_meter_id].get(current_datetime_utc, Decimal(0.0)) |
||
559 | aggregated_value['meta_data'][energy_item_id] = \ |
||
560 | aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value |
||
561 | |||
562 | if equipment_list is not None and len(equipment_list) > 0: |
||
563 | for equipment in equipment_list: |
||
564 | equipment_id = str(equipment['id']) |
||
565 | meta_data_dict = energy_equipment_hourly[equipment_id].get(current_datetime_utc, None) |
||
566 | if meta_data_dict is not None and len(meta_data_dict) > 0: |
||
567 | for energy_category_id, actual_value in meta_data_dict.items(): |
||
568 | aggregated_value['meta_data'][energy_category_id] = \ |
||
569 | aggregated_value['meta_data'].get(energy_category_id, Decimal(0.0)) + actual_value |
||
570 | |||
571 | aggregated_values.append(aggregated_value) |
||
572 | |||
573 | current_datetime_utc += timedelta(minutes=config.minutes_to_count) |
||
574 | |||
575 | except Exception as e: |
||
576 | error_string = "Error in step 11 of combined_equipment_energy_input_item.worker " + str(e) |
||
577 | if cursor_energy_db: |
||
578 | cursor_energy_db.close() |
||
579 | if cnx_energy_db: |
||
580 | cnx_energy_db.close() |
||
581 | print(error_string) |
||
582 | return error_string |
||
583 | |||
584 | #################################################################################################################### |
||
585 | # Step 12: save energy data to energy database |
||
586 | #################################################################################################################### |
||
587 | print("Step 12: save energy data to energy database") |
||
588 | |||
589 | if len(aggregated_values) > 0: |
||
590 | try: |
||
591 | add_values = (" INSERT INTO tbl_combined_equipment_input_item_hourly " |
||
592 | " (combined_equipment_id, " |
||
593 | " energy_item_id, " |
||
594 | " start_datetime_utc, " |
||
595 | " actual_value) " |
||
596 | " VALUES ") |
||
597 | |||
598 | for aggregated_value in aggregated_values: |
||
599 | for energy_item_id, actual_value in aggregated_value['meta_data'].items(): |
||
600 | add_values += " (" + str(combined_equipment['id']) + "," |
||
601 | add_values += " " + str(energy_item_id) + "," |
||
602 | add_values += "'" + aggregated_value['start_datetime_utc'].isoformat()[0:19] + "'," |
||
603 | add_values += str(actual_value) + "), " |
||
604 | print("add_values:" + add_values) |
||
605 | # trim ", " at the end of string and then execute |
||
606 | cursor_energy_db.execute(add_values[:-2]) |
||
607 | cnx_energy_db.commit() |
||
608 | |||
609 | except Exception as e: |
||
610 | error_string = "Error in step 12.1 of combined_equipment_energy_input_item.worker " + str(e) |
||
611 | print(error_string) |
||
612 | return error_string |
||
613 | finally: |
||
614 | if cursor_energy_db: |
||
615 | cursor_energy_db.close() |
||
616 | if cnx_energy_db: |
||
617 | cnx_energy_db.close() |
||
618 | else: |
||
619 | if cursor_energy_db: |
||
620 | cursor_energy_db.close() |
||
621 | if cnx_energy_db: |
||
622 | cnx_energy_db.close() |
||
623 |