combined_equipment_energy_input_item.worker()   F
last analyzed

Complexity

Conditions 155

Size

Total Lines 516
Code Lines 357

Duplication

Lines 516
Ratio 100 %

Importance

Changes 0
Metric Value
eloc 357
dl 516
loc 516
rs 0
c 0
b 0
f 0
cc 155
nop 1

How to fix   Long Method    Complexity   

Long Method

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:

Complexity

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 random
2
import time
3
from datetime import datetime, timedelta
4
from decimal import Decimal
5
from multiprocessing import Pool
6
7
import mysql.connector
8
9
import config
10
11
12
########################################################################################################################
13
# PROCEDURES
14
# Step 1: get all combined equipments
15
# Step 2: Create multiprocessing pool to call worker in parallel
16
########################################################################################################################
17
18
19 View Code Duplication
def main(logger):
0 ignored issues
show
Duplication introduced by
This code seems to be duplicated in your project.
Loading history...
20
21
    while True:
22
        # the outermost while loop
23
        ################################################################################################################
24
        # Step 1: get all combined equipments
25
        ################################################################################################################
26
        cnx_system_db = None
27
        cursor_system_db = None
28
        try:
29
            cnx_system_db = mysql.connector.connect(**config.myems_system_db)
30
            cursor_system_db = cnx_system_db.cursor()
31
        except Exception as e:
32
            logger.error("Error in step 1.1 of combined_equipment_energy_input_item.main " + str(e))
33
            if cursor_system_db:
34
                cursor_system_db.close()
35
            if cnx_system_db:
36
                cnx_system_db.close()
37
            # sleep and continue the outer loop to reconnect the database
38
            time.sleep(60)
39
            continue
40
        print("Connected to MyEMS System Database")
41
42
        combined_equipment_list = list()
43
        try:
44
            cursor_system_db.execute(" SELECT id, name "
45
                                     " FROM tbl_combined_equipments "
46
                                     " ORDER BY id ")
47
            rows_combined_equipments = cursor_system_db.fetchall()
48
49
            if rows_combined_equipments is None or len(rows_combined_equipments) == 0:
50
                print("There isn't any combined equipments ")
51
                # sleep and continue the outer loop to reconnect the database
52
                time.sleep(60)
53
                continue
54
55
            for row in rows_combined_equipments:
56
                combined_equipment_list.append({"id": row[0], "name": row[1]})
57
58
        except Exception as e:
59
            logger.error("Error in step 1.2 of combined_equipment_energy_input_item.main " + str(e))
60
            # sleep and continue the outer loop to reconnect the database
61
            time.sleep(60)
62
            continue
63
        finally:
64
            if cursor_system_db:
65
                cursor_system_db.close()
66
            if cnx_system_db:
67
                cnx_system_db.close()
68
69
        print("Got all combined equipments in MyEMS System Database")
70
71
        # shuffle the combined equipment list for randomly calculating the meter hourly value
72
        random.shuffle(combined_equipment_list)
73
74
        ################################################################################################################
75
        # Step 2: Create multiprocessing pool to call worker in parallel
76
        ################################################################################################################
77
        p = Pool(processes=config.pool_size)
78
        error_list = p.map(worker, combined_equipment_list)
79
        p.close()
80
        p.join()
81
82
        for error in error_list:
83
            if error is not None and len(error) > 0:
84
                logger.error(error)
85
86
        print("go to sleep 300 seconds...")
87
        time.sleep(300)
88
        print("wake from sleep, and continue to work...")
89
    # end of outer while
90
91
92
########################################################################################################################
93
# PROCEDURES:
94
#   Step 1: get all input meters associated with the combined equipment
95
#   Step 2: get all input virtual meters associated with the combined equipment
96
#   Step 3: get all input offline meters associated with the combined equipment
97
#   Step 4: get all equipments associated with the combined equipment
98
#   Step 5: determine start datetime and end datetime to aggregate
99
#   Step 6: for each meter in list, get energy input data from energy database
100
#   Step 7: for each virtual meter in list, get energy input data from energy database
101
#   Step 8: for each offline meter in list, get energy input data from energy database
102
#   Step 9: for each equipment in list, get energy input data from energy database
103
#   Step 10: determine common time slot to aggregate
104
#   Step 11: aggregate energy data in the common time slot by energy items and hourly
105
#   Step 12: save energy data to energy database
106
#
107
# NOTE: returns None or the error string because that the logger object cannot be passed in as parameter
108
########################################################################################################################
109
110 View Code Duplication
def worker(combined_equipment):
0 ignored issues
show
Duplication introduced by
This code seems to be duplicated in your project.
Loading history...
111
    ####################################################################################################################
112
    # Step 1: get all input meters associated with the combined equipment
113
    ####################################################################################################################
114
    print("Step 1: get all input meters associated with the combined equipment " + str(combined_equipment['name']))
115
116
    meter_list = list()
117
    cnx_system_db = None
118
    cursor_system_db = None
119
    try:
120
        cnx_system_db = mysql.connector.connect(**config.myems_system_db)
121
        cursor_system_db = cnx_system_db.cursor()
122
    except Exception as e:
123
        error_string = "Error in step 1.1 of combined_equipment_energy_input_item.worker " + str(e)
124
        if cursor_system_db:
125
            cursor_system_db.close()
126
        if cnx_system_db:
127
            cnx_system_db.close()
128
        print(error_string)
129
        return error_string
130
131
    try:
132
        cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id "
133
                                 " FROM tbl_meters m, tbl_combined_equipments_meters em "
134
                                 " WHERE m.id = em.meter_id "
135
                                 "       AND m.is_counted = 1 "
136
                                 "       AND m.energy_item_id is NOT NULL "
137
                                 "       AND em.is_output = 0 "
138
                                 "       AND em.combined_equipment_id = %s ",
139
                                 (combined_equipment['id'],))
140
        rows_meters = cursor_system_db.fetchall()
141
142
        if rows_meters is not None and len(rows_meters) > 0:
143
            for row in rows_meters:
144
                meter_list.append({"id": row[0],
145
                                   "name": row[1],
146
                                   "energy_item_id": row[2]})
147
148
    except Exception as e:
149
        error_string = "Error in step 1.2 of combined_equipment_energy_input_item.worker " + str(e)
150
        if cursor_system_db:
151
            cursor_system_db.close()
152
        if cnx_system_db:
153
            cnx_system_db.close()
154
        print(error_string)
155
        return error_string
156
157
    ####################################################################################################################
158
    # Step 2: get all input virtual meters associated with the combined equipment
159
    ####################################################################################################################
160
    print("Step 2: get all input virtual meters associated with the combined equipment")
161
    virtual_meter_list = list()
162
163
    try:
164
        cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id "
165
                                 " FROM tbl_virtual_meters m, tbl_combined_equipments_virtual_meters em "
166
                                 " WHERE m.id = em.virtual_meter_id "
167
                                 "       AND m.energy_item_id is NOT NULL "
168
                                 "       AND m.is_counted = 1 "
169
                                 "       AND em.is_output = 0 "
170
                                 "       AND em.combined_equipment_id = %s ",
171
                                 (combined_equipment['id'],))
172
        rows_virtual_meters = cursor_system_db.fetchall()
173
174
        if rows_virtual_meters is not None and len(rows_virtual_meters) > 0:
175
            for row in rows_virtual_meters:
176
                virtual_meter_list.append({"id": row[0],
177
                                           "name": row[1],
178
                                           "energy_item_id": row[2]})
179
180
    except Exception as e:
181
        error_string = "Error in step 2.1 of combined_equipment_energy_input_item.worker " + str(e)
182
        if cursor_system_db:
183
            cursor_system_db.close()
184
        if cnx_system_db:
185
            cnx_system_db.close()
186
        print(error_string)
187
        return error_string
188
189
    ####################################################################################################################
190
    # Step 3: get all input offline meters associated with the combined equipment
191
    ####################################################################################################################
192
    print("Step 3: get all input offline meters associated with the combined equipment")
193
194
    offline_meter_list = list()
195
196
    try:
197
        cursor_system_db.execute(" SELECT m.id, m.name, m.energy_item_id "
198
                                 " FROM tbl_offline_meters m, tbl_combined_equipments_offline_meters em "
199
                                 " WHERE m.id = em.offline_meter_id "
200
                                 "       AND m.energy_item_id is NOT NULL "
201
                                 "       AND m.is_counted = 1 "
202
                                 "       AND em.is_output = 0 "
203
                                 "       AND em.combined_equipment_id = %s ",
204
                                 (combined_equipment['id'],))
205
        rows_offline_meters = cursor_system_db.fetchall()
206
207
        if rows_offline_meters is not None and len(rows_offline_meters) > 0:
208
            for row in rows_offline_meters:
209
                offline_meter_list.append({"id": row[0],
210
                                           "name": row[1],
211
                                           "energy_item_id": row[2]})
212
213
    except Exception as e:
214
        error_string = "Error in step 3.1 of combined_equipment_energy_input_item.worker " + str(e)
215
        if cursor_system_db:
216
            cursor_system_db.close()
217
        if cnx_system_db:
218
            cnx_system_db.close()
219
        print(error_string)
220
        return error_string
221
222
    ####################################################################################################################
223
    # Step 4: get all equipments associated with the combined equipment
224
    ####################################################################################################################
225
    print("Step 4: get all equipments associated with the combined equipment")
226
227
    equipment_list = list()
228
229
    try:
230
        cursor_system_db.execute(" SELECT e.id, e.name "
231
                                 " FROM tbl_equipments e, tbl_combined_equipments_equipments ce "
232
                                 " WHERE e.id = ce.equipment_id "
233
                                 "       AND e.is_input_counted = 1 "
234
                                 "       AND ce.combined_equipment_id = %s ",
235
                                 (combined_equipment['id'],))
236
        rows_equipments = cursor_system_db.fetchall()
237
238
        if rows_equipments is not None and len(rows_equipments) > 0:
239
            for row in rows_equipments:
240
                equipment_list.append({"id": row[0],
241
                                       "name": row[1]})
242
243
    except Exception as e:
244
        error_string = "Error in step 4 of combined_equipment_energy_input_item.worker " + str(e)
245
        print(error_string)
246
        return error_string
247
    finally:
248
        if cursor_system_db:
249
            cursor_system_db.close()
250
        if cnx_system_db:
251
            cnx_system_db.close()
252
253
    ####################################################################################################################
254
    # stop to the next combined equipment if this combined equipment is empty
255
    ####################################################################################################################
256
    if (meter_list is None or len(meter_list) == 0) and \
257
            (virtual_meter_list is None or len(virtual_meter_list) == 0) and \
258
            (offline_meter_list is None or len(offline_meter_list) == 0) and \
259
            (equipment_list is None or len(equipment_list) == 0):
260
        print("This is an empty combined equipment ")
261
        return None
262
263
    ####################################################################################################################
264
    # Step 5: determine start datetime and end datetime to aggregate
265
    ####################################################################################################################
266
    print("Step 5: determine start datetime and end datetime to aggregate")
267
    cnx_energy_db = None
268
    cursor_energy_db = None
269
    try:
270
        cnx_energy_db = mysql.connector.connect(**config.myems_energy_db)
271
        cursor_energy_db = cnx_energy_db.cursor()
272
    except Exception as e:
273
        error_string = "Error in step 5.1 of combined_equipment_energy_input_item.worker " + str(e)
274
        if cursor_energy_db:
275
            cursor_energy_db.close()
276
        if cnx_energy_db:
277
            cnx_energy_db.close()
278
        print(error_string)
279
        return error_string
280
281
    try:
282
        query = (" SELECT MAX(start_datetime_utc) "
283
                 " FROM tbl_combined_equipment_input_item_hourly "
284
                 " WHERE combined_equipment_id = %s ")
285
        cursor_energy_db.execute(query, (combined_equipment['id'],))
286
        row_datetime = cursor_energy_db.fetchone()
287
        start_datetime_utc = datetime.strptime(config.start_datetime_utc, '%Y-%m-%d %H:%M:%S')
288
        start_datetime_utc = start_datetime_utc.replace(minute=0, second=0, microsecond=0, tzinfo=None)
289
290
        if row_datetime is not None and len(row_datetime) > 0 and isinstance(row_datetime[0], datetime):
291
            # replace second and microsecond with 0
292
            # note: do not replace minute in case of calculating in half hourly
293
            start_datetime_utc = row_datetime[0].replace(second=0, microsecond=0, tzinfo=None)
294
            # start from the next time slot
295
            start_datetime_utc += timedelta(minutes=config.minutes_to_count)
296
297
        end_datetime_utc = datetime.utcnow().replace(second=0, microsecond=0, tzinfo=None)
298
299
        print("start_datetime_utc: " + start_datetime_utc.isoformat()[0:19]
300
              + "end_datetime_utc: " + end_datetime_utc.isoformat()[0:19])
301
302
    except Exception as e:
303
        error_string = "Error in step 5.2 of combined_equipment_energy_input_item.worker " + str(e)
304
        if cursor_energy_db:
305
            cursor_energy_db.close()
306
        if cnx_energy_db:
307
            cnx_energy_db.close()
308
        print(error_string)
309
        return error_string
310
311
    ####################################################################################################################
312
    # Step 6: for each meter in list, get energy input data from energy database
313
    ####################################################################################################################
314
    energy_meter_hourly = dict()
315
    try:
316
        if meter_list is not None and len(meter_list) > 0:
317
            for meter in meter_list:
318
                meter_id = str(meter['id'])
319
320
                query = (" SELECT start_datetime_utc, actual_value "
321
                         " FROM tbl_meter_hourly "
322
                         " WHERE meter_id = %s "
323
                         "       AND start_datetime_utc >= %s "
324
                         "       AND start_datetime_utc < %s "
325
                         " ORDER BY start_datetime_utc ")
326
                cursor_energy_db.execute(query, (meter_id, start_datetime_utc, end_datetime_utc,))
327
                rows_energy_values = cursor_energy_db.fetchall()
328
                if rows_energy_values is None or len(rows_energy_values) == 0:
329
                    energy_meter_hourly[meter_id] = None
330
                else:
331
                    energy_meter_hourly[meter_id] = dict()
332
                    for row_energy_value in rows_energy_values:
333
                        energy_meter_hourly[meter_id][row_energy_value[0]] = row_energy_value[1]
334
    except Exception as e:
335
        error_string = "Error in step 6.1 of combined_equipment_energy_input_item.worker " + str(e)
336
        if cursor_energy_db:
337
            cursor_energy_db.close()
338
        if cnx_energy_db:
339
            cnx_energy_db.close()
340
        print(error_string)
341
        return error_string
342
343
    ####################################################################################################################
344
    # Step 7: for each virtual meter in list, get energy input data from energy database
345
    ####################################################################################################################
346
    energy_virtual_meter_hourly = dict()
347
    if virtual_meter_list is not None and len(virtual_meter_list) > 0:
348
        try:
349
            for virtual_meter in virtual_meter_list:
350
                virtual_meter_id = str(virtual_meter['id'])
351
352
                query = (" SELECT start_datetime_utc, actual_value "
353
                         " FROM tbl_virtual_meter_hourly "
354
                         " WHERE virtual_meter_id = %s "
355
                         "       AND start_datetime_utc >= %s "
356
                         "       AND start_datetime_utc < %s "
357
                         " ORDER BY start_datetime_utc ")
358
                cursor_energy_db.execute(query, (virtual_meter_id, start_datetime_utc, end_datetime_utc,))
359
                rows_energy_values = cursor_energy_db.fetchall()
360
                if rows_energy_values is None or len(rows_energy_values) == 0:
361
                    energy_virtual_meter_hourly[virtual_meter_id] = None
362
                else:
363
                    energy_virtual_meter_hourly[virtual_meter_id] = dict()
364
                    for row_energy_value in rows_energy_values:
365
                        energy_virtual_meter_hourly[virtual_meter_id][row_energy_value[0]] = row_energy_value[1]
366
        except Exception as e:
367
            error_string = "Error in step 7.1 of combined_equipment_energy_input_item.worker " + str(e)
368
            if cursor_energy_db:
369
                cursor_energy_db.close()
370
            if cnx_energy_db:
371
                cnx_energy_db.close()
372
            print(error_string)
373
            return error_string
374
375
    ####################################################################################################################
376
    # Step 8: for each offline meter in list, get energy input data from energy database
377
    ####################################################################################################################
378
    energy_offline_meter_hourly = dict()
379
    if offline_meter_list is not None and len(offline_meter_list) > 0:
380
        try:
381
            for offline_meter in offline_meter_list:
382
                offline_meter_id = str(offline_meter['id'])
383
384
                query = (" SELECT start_datetime_utc, actual_value "
385
                         " FROM tbl_offline_meter_hourly "
386
                         " WHERE offline_meter_id = %s "
387
                         "       AND start_datetime_utc >= %s "
388
                         "       AND start_datetime_utc < %s "
389
                         " ORDER BY start_datetime_utc ")
390
                cursor_energy_db.execute(query, (offline_meter_id, start_datetime_utc, end_datetime_utc,))
391
                rows_energy_values = cursor_energy_db.fetchall()
392
                if rows_energy_values is None or len(rows_energy_values) == 0:
393
                    energy_offline_meter_hourly[offline_meter_id] = None
394
                else:
395
                    energy_offline_meter_hourly[offline_meter_id] = dict()
396
                    for row_energy_value in rows_energy_values:
397
                        energy_offline_meter_hourly[offline_meter_id][row_energy_value[0]] = row_energy_value[1]
398
399
        except Exception as e:
400
            error_string = "Error in step 8.1 of combined_equipment_energy_input_item.worker " + str(e)
401
            if cursor_energy_db:
402
                cursor_energy_db.close()
403
            if cnx_energy_db:
404
                cnx_energy_db.close()
405
            print(error_string)
406
            return error_string
407
408
    ####################################################################################################################
409
    # Step 9: for each equipment in list, get energy input data from energy database
410
    ####################################################################################################################
411
    energy_equipment_hourly = dict()
412
    if equipment_list is not None and len(equipment_list) > 0:
413
        try:
414
            for equipment in equipment_list:
415
                equipment_id = str(equipment['id'])
416
                query = (" SELECT start_datetime_utc, energy_item_id, actual_value "
417
                         " FROM tbl_equipment_input_item_hourly "
418
                         " WHERE equipment_id = %s "
419
                         "       AND start_datetime_utc >= %s "
420
                         "       AND start_datetime_utc < %s "
421
                         " ORDER BY start_datetime_utc ")
422
                cursor_energy_db.execute(query, (equipment_id, start_datetime_utc, end_datetime_utc,))
423
                rows_energy_values = cursor_energy_db.fetchall()
424
                if rows_energy_values is None or len(rows_energy_values) == 0:
425
                    energy_equipment_hourly[equipment_id] = None
426
                else:
427
                    energy_equipment_hourly[equipment_id] = dict()
428
                    for row_value in rows_energy_values:
429
                        current_datetime_utc = row_value[0]
430
                        if current_datetime_utc not in energy_equipment_hourly[equipment_id]:
431
                            energy_equipment_hourly[equipment_id][current_datetime_utc] = dict()
432
                        energy_item_id = row_value[1]
433
                        actual_value = row_value[2]
434
                        energy_equipment_hourly[equipment_id][current_datetime_utc][energy_item_id] = \
435
                            actual_value
436
        except Exception as e:
437
            error_string = "Error in step 9 of combined_equipment_energy_input_item.worker " + str(e)
438
            if cursor_energy_db:
439
                cursor_energy_db.close()
440
            if cnx_energy_db:
441
                cnx_energy_db.close()
442
            print(error_string)
443
            return error_string
444
445
    ####################################################################################################################
446
    # Step 10: determine common time slot to aggregate
447
    ####################################################################################################################
448
449
    common_start_datetime_utc = start_datetime_utc
450
    common_end_datetime_utc = end_datetime_utc
451
452
    print("Getting common time slot of energy values for all meters")
453
    if energy_meter_hourly is not None and len(energy_meter_hourly) > 0:
454
        for meter_id, energy_hourly in energy_meter_hourly.items():
455
            if energy_hourly is None or len(energy_hourly) == 0:
456
                common_start_datetime_utc = None
457
                common_end_datetime_utc = None
458
                break
459
            else:
460
                if common_start_datetime_utc < min(energy_hourly.keys()):
461
                    common_start_datetime_utc = min(energy_hourly.keys())
462
                if common_end_datetime_utc > max(energy_hourly.keys()):
463
                    common_end_datetime_utc = max(energy_hourly.keys())
464
465
    print("Getting common time slot of energy values for all virtual meters")
466
    if common_start_datetime_utc is not None and common_end_datetime_utc is not None:
467
        if energy_virtual_meter_hourly is not None and len(energy_virtual_meter_hourly) > 0:
468
            for meter_id, energy_hourly in energy_virtual_meter_hourly.items():
469
                if energy_hourly is None or len(energy_hourly) == 0:
470
                    common_start_datetime_utc = None
471
                    common_end_datetime_utc = None
472
                    break
473
                else:
474
                    if common_start_datetime_utc < min(energy_hourly.keys()):
475
                        common_start_datetime_utc = min(energy_hourly.keys())
476
                    if common_end_datetime_utc > max(energy_hourly.keys()):
477
                        common_end_datetime_utc = max(energy_hourly.keys())
478
479
    print("Getting common time slot of energy values for all offline meters")
480
    if common_start_datetime_utc is not None and common_end_datetime_utc is not None:
481
        if energy_offline_meter_hourly is not None and len(energy_offline_meter_hourly) > 0:
482
            for meter_id, energy_hourly in energy_offline_meter_hourly.items():
483
                if energy_hourly is None or len(energy_hourly) == 0:
484
                    common_start_datetime_utc = None
485
                    common_end_datetime_utc = None
486
                    break
487
                else:
488
                    if common_start_datetime_utc < min(energy_hourly.keys()):
489
                        common_start_datetime_utc = min(energy_hourly.keys())
490
                    if common_end_datetime_utc > max(energy_hourly.keys()):
491
                        common_end_datetime_utc = max(energy_hourly.keys())
492
493
    print("Getting common time slot of energy values for all equipments")
494
    if common_start_datetime_utc is not None and common_end_datetime_utc is not None:
495
        if energy_equipment_hourly is not None and len(energy_equipment_hourly) > 0:
496
            for equipment_id, energy_hourly in energy_equipment_hourly.items():
497
                if energy_hourly is None or len(energy_hourly) == 0:
498
                    common_start_datetime_utc = None
499
                    common_end_datetime_utc = None
500
                    break
501
                else:
502
                    if common_start_datetime_utc < min(energy_hourly.keys()):
503
                        common_start_datetime_utc = min(energy_hourly.keys())
504
                    if common_end_datetime_utc > max(energy_hourly.keys()):
505
                        common_end_datetime_utc = max(energy_hourly.keys())
506
507
    if (energy_meter_hourly is None or len(energy_meter_hourly) == 0) and \
508
            (energy_virtual_meter_hourly is None or len(energy_virtual_meter_hourly) == 0) and \
509
            (energy_offline_meter_hourly is None or len(energy_offline_meter_hourly) == 0) and \
510
            (energy_equipment_hourly is None or len(energy_equipment_hourly) == 0):
511
        # There isn't any energy data
512
        print("There isn't any energy data")
513
        # continue the for combined equipment loop to the next combined equipment
514
        print("continue the for combined equipment loop to the next combined equipment")
515
        if cursor_energy_db:
516
            cursor_energy_db.close()
517
        if cnx_energy_db:
518
            cnx_energy_db.close()
519
        return None
520
521
    print("common_start_datetime_utc: " + str(common_start_datetime_utc))
522
    print("common_end_datetime_utc: " + str(common_end_datetime_utc))
523
524
    ####################################################################################################################
525
    # Step 11: aggregate energy data in the common time slot by energy items and hourly
526
    ####################################################################################################################
527
528
    print("Step 11: aggregate energy data in the common time slot by energy items and hourly")
529
    aggregated_values = list()
530
    try:
531
        current_datetime_utc = common_start_datetime_utc
532
        while common_start_datetime_utc is not None \
533
                and common_end_datetime_utc is not None \
534
                and current_datetime_utc <= common_end_datetime_utc:
535
            aggregated_value = dict()
536
            aggregated_value['start_datetime_utc'] = current_datetime_utc
537
            aggregated_value['meta_data'] = dict()
538
539
            if meter_list is not None and len(meter_list) > 0:
540
                for meter in meter_list:
541
                    meter_id = str(meter['id'])
542
                    energy_item_id = meter['energy_item_id']
543
                    actual_value = energy_meter_hourly[meter_id].get(current_datetime_utc, Decimal(0.0))
544
                    aggregated_value['meta_data'][energy_item_id] = \
545
                        aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value
546
547
            if virtual_meter_list is not None and len(virtual_meter_list) > 0:
548
                for virtual_meter in virtual_meter_list:
549
                    virtual_meter_id = str(virtual_meter['id'])
550
                    energy_item_id = virtual_meter['energy_item_id']
551
                    actual_value = energy_virtual_meter_hourly[virtual_meter_id].get(current_datetime_utc, Decimal(0.0))
552
                    aggregated_value['meta_data'][energy_item_id] = \
553
                        aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value
554
555
            if offline_meter_list is not None and len(offline_meter_list) > 0:
556
                for offline_meter in offline_meter_list:
557
                    offline_meter_id = str(offline_meter['id'])
558
                    energy_item_id = offline_meter['energy_item_id']
559
                    actual_value = energy_offline_meter_hourly[offline_meter_id].get(current_datetime_utc, Decimal(0.0))
560
                    aggregated_value['meta_data'][energy_item_id] = \
561
                        aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value
562
563
            if equipment_list is not None and len(equipment_list) > 0:
564
                for equipment in equipment_list:
565
                    equipment_id = str(equipment['id'])
566
                    meta_data_dict = energy_equipment_hourly[equipment_id].get(current_datetime_utc, None)
567
                    if meta_data_dict is not None and len(meta_data_dict) > 0:
568
                        for energy_item_id, actual_value in meta_data_dict.items():
569
                            aggregated_value['meta_data'][energy_item_id] = \
570
                                aggregated_value['meta_data'].get(energy_item_id, Decimal(0.0)) + actual_value
571
572
            aggregated_values.append(aggregated_value)
573
574
            current_datetime_utc += timedelta(minutes=config.minutes_to_count)
575
576
    except Exception as e:
577
        error_string = "Error in step 11 of combined_equipment_energy_input_item.worker " + str(e)
578
        if cursor_energy_db:
579
            cursor_energy_db.close()
580
        if cnx_energy_db:
581
            cnx_energy_db.close()
582
        print(error_string)
583
        return error_string
584
585
    ####################################################################################################################
586
    # Step 12: save energy data to energy database
587
    ####################################################################################################################
588
    print("Step 12: save energy data to energy database")
589
590
    while len(aggregated_values) > 0:
591
        insert_100 = aggregated_values[:100]
592
        aggregated_values = aggregated_values[100:]
593
        try:
594
            add_values = (" INSERT INTO tbl_combined_equipment_input_item_hourly "
595
                          "             (combined_equipment_id, "
596
                          "              energy_item_id, "
597
                          "              start_datetime_utc, "
598
                          "              actual_value) "
599
                          " VALUES  ")
600
601
            for aggregated_value in insert_100:
602
                for energy_item_id, actual_value in aggregated_value['meta_data'].items():
603
                    add_values += " (" + str(combined_equipment['id']) + ","
604
                    add_values += " " + str(energy_item_id) + ","
605
                    add_values += "'" + aggregated_value['start_datetime_utc'].isoformat()[0:19] + "',"
606
                    add_values += str(actual_value) + "), "
607
            # print("add_values:" + add_values)
608
            # trim ", " at the end of string and then execute
609
            cursor_energy_db.execute(add_values[:-2])
610
            cnx_energy_db.commit()
611
612
        except Exception as e:
613
            error_string = "Error in step 12.1 of combined_equipment_energy_input_item.worker " + str(e)
614
            print(error_string)
615
            if cursor_energy_db:
616
                cursor_energy_db.close()
617
            if cnx_energy_db:
618
                cnx_energy_db.close()
619
            return error_string
620
621
    if cursor_energy_db:
622
        cursor_energy_db.close()
623
    if cnx_energy_db:
624
        cnx_energy_db.close()
625
    return None
626