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reports.tenantenergycategory   F

Complexity

Total Complexity 108

Size/Duplication

Total Lines 567
Duplicated Lines 98.24 %

Importance

Changes 0
Metric Value
eloc 417
dl 557
loc 567
rs 2
c 0
b 0
f 0
wmc 108

3 Methods

Rating   Name   Duplication   Size   Complexity  
A Reporting.__init__() 3 3 1
F Reporting.on_get() 535 535 106
A Reporting.on_options() 3 3 1

How to fix   Duplicated Code    Complexity   

Duplicated Code

Duplicate code is one of the most pungent code smells. A rule that is often used is to re-structure code once it is duplicated in three or more places.

Common duplication problems, and corresponding solutions are:

Complexity

 Tip:   Before tackling complexity, make sure that you eliminate any duplication first. This often can reduce the size of classes significantly.

Complex classes like reports.tenantenergycategory 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 falcon
2
import simplejson as json
3
import mysql.connector
4
import config
5
from datetime import datetime, timedelta, timezone
6
import utilities
7
from decimal import *
8
9
10 View Code Duplication
class Reporting:
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11
    @staticmethod
12
    def __init__():
13
        pass
14
15
    @staticmethod
16
    def on_options(req, resp):
17
        resp.status = falcon.HTTP_200
18
19
    ####################################################################################################################
20
    # PROCEDURES
21
    # Step 1: valid parameters
22
    # Step 2: query the tenant
23
    # Step 3: query energy categories
24
    # Step 4: query associated sensors
25
    # Step 5: query associated points
26
    # Step 6: query base period energy input
27
    # Step 7: query reporting period energy input
28
    # Step 8: query tariff data
29
    # Step 9: query associated sensors and points data
30
    # Step 10: construct the report
31
    ####################################################################################################################
32
    @staticmethod
33
    def on_get(req, resp):
34
        print(req.params)
35
        tenant_id = req.params.get('tenantid')
36
        period_type = req.params.get('periodtype')
37
        base_start_datetime_local = req.params.get('baseperiodstartdatetime')
38
        base_end_datetime_local = req.params.get('baseperiodenddatetime')
39
        reporting_start_datetime_local = req.params.get('reportingperiodstartdatetime')
40
        reporting_end_datetime_local = req.params.get('reportingperiodenddatetime')
41
42
        ################################################################################################################
43
        # Step 1: valid parameters
44
        ################################################################################################################
45
        if tenant_id is None:
46
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_TENANT_ID')
47
        else:
48
            tenant_id = str.strip(tenant_id)
49
            if not tenant_id.isdigit() or int(tenant_id) <= 0:
50
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_TENANT_ID')
51
52
        if period_type is None:
53
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_PERIOD_TYPE')
54
        else:
55
            period_type = str.strip(period_type)
56
            if period_type not in ['hourly', 'daily', 'monthly', 'yearly']:
57
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_PERIOD_TYPE')
58
59
        timezone_offset = int(config.utc_offset[1:3]) * 60 + int(config.utc_offset[4:6])
60
        if config.utc_offset[0] == '-':
61
            timezone_offset = -timezone_offset
62
63
        base_start_datetime_utc = None
64
        if base_start_datetime_local is not None and len(str.strip(base_start_datetime_local)) > 0:
65
            base_start_datetime_local = str.strip(base_start_datetime_local)
66
            try:
67
                base_start_datetime_utc = datetime.strptime(base_start_datetime_local,
68
                                                            '%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \
69
                    timedelta(minutes=timezone_offset)
70
            except ValueError:
71
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
72
                                       description="API.INVALID_BASE_PERIOD_BEGINS_DATETIME")
73
74
        base_end_datetime_utc = None
75
        if base_end_datetime_local is not None and len(str.strip(base_end_datetime_local)) > 0:
76
            base_end_datetime_local = str.strip(base_end_datetime_local)
77
            try:
78
                base_end_datetime_utc = datetime.strptime(base_end_datetime_local,
79
                                                          '%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \
80
                    timedelta(minutes=timezone_offset)
81
            except ValueError:
82
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
83
                                       description="API.INVALID_BASE_PERIOD_ENDS_DATETIME")
84
85
        if base_start_datetime_utc is not None and base_end_datetime_utc is not None and \
86
                base_start_datetime_utc >= base_end_datetime_utc:
87
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
88
                                   description='API.INVALID_BASE_PERIOD_ENDS_DATETIME')
89
90
        if reporting_start_datetime_local is None:
91
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
92
                                   description="API.INVALID_REPORTING_PERIOD_BEGINS_DATETIME")
93
        else:
94
            reporting_start_datetime_local = str.strip(reporting_start_datetime_local)
95
            try:
96
                reporting_start_datetime_utc = datetime.strptime(reporting_start_datetime_local,
97
                                                                 '%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \
98
                    timedelta(minutes=timezone_offset)
99
            except ValueError:
100
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
101
                                       description="API.INVALID_REPORTING_PERIOD_BEGINS_DATETIME")
102
103
        if reporting_end_datetime_local is None:
104
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
105
                                   description="API.INVALID_REPORTING_PERIOD_ENDS_DATETIME")
106
        else:
107
            reporting_end_datetime_local = str.strip(reporting_end_datetime_local)
108
            try:
109
                reporting_end_datetime_utc = datetime.strptime(reporting_end_datetime_local,
110
                                                               '%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \
111
                    timedelta(minutes=timezone_offset)
112
            except ValueError:
113
                raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
114
                                       description="API.INVALID_REPORTING_PERIOD_ENDS_DATETIME")
115
116
        if reporting_start_datetime_utc >= reporting_end_datetime_utc:
117
            raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST',
118
                                   description='API.INVALID_REPORTING_PERIOD_ENDS_DATETIME')
119
120
        ################################################################################################################
121
        # Step 2: query the tenant
122
        ################################################################################################################
123
        cnx_system = mysql.connector.connect(**config.myems_system_db)
124
        cursor_system = cnx_system.cursor()
125
126
        cnx_energy = mysql.connector.connect(**config.myems_energy_db)
127
        cursor_energy = cnx_energy.cursor()
128
129
        cnx_historical = mysql.connector.connect(**config.myems_historical_db)
130
        cursor_historical = cnx_historical.cursor()
131
132
        cursor_system.execute(" SELECT id, name, area, cost_center_id "
133
                              " FROM tbl_tenants "
134
                              " WHERE id = %s ", (tenant_id,))
135
        row_tenant = cursor_system.fetchone()
136
        if row_tenant is None:
137
            if cursor_system:
138
                cursor_system.close()
139
            if cnx_system:
140
                cnx_system.disconnect()
141
142
            if cursor_energy:
143
                cursor_energy.close()
144
            if cnx_energy:
145
                cnx_energy.disconnect()
146
147
            if cnx_historical:
148
                cnx_historical.close()
149
            if cursor_historical:
150
                cursor_historical.disconnect()
151
            raise falcon.HTTPError(falcon.HTTP_404, title='API.NOT_FOUND', description='API.TENANT_NOT_FOUND')
152
153
        tenant = dict()
154
        tenant['id'] = row_tenant[0]
155
        tenant['name'] = row_tenant[1]
156
        tenant['area'] = row_tenant[2]
157
        tenant['cost_center_id'] = row_tenant[3]
158
159
        ################################################################################################################
160
        # Step 3: query energy categories
161
        ################################################################################################################
162
        energy_category_set = set()
163
        # query energy categories in base period
164
        cursor_energy.execute(" SELECT DISTINCT(energy_category_id) "
165
                              " FROM tbl_tenant_input_category_hourly "
166
                              " WHERE tenant_id = %s "
167
                              "     AND start_datetime_utc >= %s "
168
                              "     AND start_datetime_utc < %s ",
169
                              (tenant['id'], base_start_datetime_utc, base_end_datetime_utc))
170
        rows_energy_categories = cursor_energy.fetchall()
171
        if rows_energy_categories is not None or len(rows_energy_categories) > 0:
172
            for row_energy_category in rows_energy_categories:
173
                energy_category_set.add(row_energy_category[0])
174
175
        # query energy categories in reporting period
176
        cursor_energy.execute(" SELECT DISTINCT(energy_category_id) "
177
                              " FROM tbl_tenant_input_category_hourly "
178
                              " WHERE tenant_id = %s "
179
                              "     AND start_datetime_utc >= %s "
180
                              "     AND start_datetime_utc < %s ",
181
                              (tenant['id'], reporting_start_datetime_utc, reporting_end_datetime_utc))
182
        rows_energy_categories = cursor_energy.fetchall()
183
        if rows_energy_categories is not None or len(rows_energy_categories) > 0:
184
            for row_energy_category in rows_energy_categories:
185
                energy_category_set.add(row_energy_category[0])
186
187
        # query all energy categories in base period and reporting period
188
        cursor_system.execute(" SELECT id, name, unit_of_measure, kgce, kgco2e "
189
                              " FROM tbl_energy_categories "
190
                              " ORDER BY id ", )
191
        rows_energy_categories = cursor_system.fetchall()
192
        if rows_energy_categories is None or len(rows_energy_categories) == 0:
193
            if cursor_system:
194
                cursor_system.close()
195
            if cnx_system:
196
                cnx_system.disconnect()
197
198
            if cursor_energy:
199
                cursor_energy.close()
200
            if cnx_energy:
201
                cnx_energy.disconnect()
202
203
            if cnx_historical:
204
                cnx_historical.close()
205
            if cursor_historical:
206
                cursor_historical.disconnect()
207
            raise falcon.HTTPError(falcon.HTTP_404,
208
                                   title='API.NOT_FOUND',
209
                                   description='API.ENERGY_CATEGORY_NOT_FOUND')
210
        energy_category_dict = dict()
211
        for row_energy_category in rows_energy_categories:
212
            if row_energy_category[0] in energy_category_set:
213
                energy_category_dict[row_energy_category[0]] = {"name": row_energy_category[1],
214
                                                                "unit_of_measure": row_energy_category[2],
215
                                                                "kgce": row_energy_category[3],
216
                                                                "kgco2e": row_energy_category[4]}
217
218
        ################################################################################################################
219
        # Step 4: query associated sensors
220
        ################################################################################################################
221
        point_list = list()
222
        cursor_system.execute(" SELECT p.id, p.name, p.units, p.object_type  "
223
                              " FROM tbl_tenants t, tbl_sensors s, tbl_tenants_sensors ts, "
224
                              "      tbl_points p, tbl_sensors_points sp "
225
                              " WHERE t.id = %s AND t.id = ts.tenant_id AND ts.sensor_id = s.id "
226
                              "       AND s.id = sp.sensor_id AND sp.point_id = p.id "
227
                              " ORDER BY p.id ", (tenant['id'], ))
228
        rows_points = cursor_system.fetchall()
229
        if rows_points is not None and len(rows_points) > 0:
230
            for row in rows_points:
231
                point_list.append({"id": row[0], "name": row[1], "units": row[2], "object_type": row[3]})
232
233
        ################################################################################################################
234
        # Step 5: query associated points
235
        ################################################################################################################
236
        cursor_system.execute(" SELECT p.id, p.name, p.units, p.object_type  "
237
                              " FROM tbl_tenants t, tbl_tenants_points tp, tbl_points p "
238
                              " WHERE t.id = %s AND t.id = tp.tenant_id AND tp.point_id = p.id "
239
                              " ORDER BY p.id ", (tenant['id'], ))
240
        rows_points = cursor_system.fetchall()
241
        if rows_points is not None and len(rows_points) > 0:
242
            for row in rows_points:
243
                point_list.append({"id": row[0], "name": row[1], "units": row[2], "object_type": row[3]})
244
245
        ################################################################################################################
246
        # Step 6: query base period energy input
247
        ################################################################################################################
248
        base = dict()
249
        if energy_category_set is not None and len(energy_category_set) > 0:
250
            for energy_category_id in energy_category_set:
251
                kgce = energy_category_dict[energy_category_id]['kgce']
252
                kgco2e = energy_category_dict[energy_category_id]['kgco2e']
253
254
                base[energy_category_id] = dict()
255
                base[energy_category_id]['timestamps'] = list()
256
                base[energy_category_id]['values'] = list()
257
                base[energy_category_id]['subtotal'] = Decimal(0.0)
258
                base[energy_category_id]['subtotal_in_kgce'] = Decimal(0.0)
259
                base[energy_category_id]['subtotal_in_kgco2e'] = Decimal(0.0)
260
261
                cursor_energy.execute(" SELECT start_datetime_utc, actual_value "
262
                                      " FROM tbl_tenant_input_category_hourly "
263
                                      " WHERE tenant_id = %s "
264
                                      "     AND energy_category_id = %s "
265
                                      "     AND start_datetime_utc >= %s "
266
                                      "     AND start_datetime_utc < %s "
267
                                      " ORDER BY start_datetime_utc ",
268
                                      (tenant['id'],
269
                                       energy_category_id,
270
                                       base_start_datetime_utc,
271
                                       base_end_datetime_utc))
272
                rows_tenant_hourly = cursor_energy.fetchall()
273
274
                rows_tenant_periodically = utilities.aggregate_hourly_data_by_period(rows_tenant_hourly,
275
                                                                                     base_start_datetime_utc,
276
                                                                                     base_end_datetime_utc,
277
                                                                                     period_type)
278
                for row_tenant_periodically in rows_tenant_periodically:
279
                    current_datetime_local = row_tenant_periodically[0].replace(tzinfo=timezone.utc) + \
280
                                             timedelta(minutes=timezone_offset)
281
                    if period_type == 'hourly':
282
                        current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S')
283
                    elif period_type == 'daily':
284
                        current_datetime = current_datetime_local.strftime('%Y-%m-%d')
285
                    elif period_type == 'monthly':
286
                        current_datetime = current_datetime_local.strftime('%Y-%m')
287
                    elif period_type == 'yearly':
288
                        current_datetime = current_datetime_local.strftime('%Y')
289
290
                    actual_value = Decimal(0.0) if row_tenant_periodically[1] is None else row_tenant_periodically[1]
291
                    base[energy_category_id]['timestamps'].append(current_datetime)
0 ignored issues
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introduced by
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292
                    base[energy_category_id]['values'].append(actual_value)
293
                    base[energy_category_id]['subtotal'] += actual_value
294
                    base[energy_category_id]['subtotal_in_kgce'] += actual_value * kgce
295
                    base[energy_category_id]['subtotal_in_kgco2e'] += actual_value * kgco2e
296
297
        ################################################################################################################
298
        # Step 8: query reporting period energy input
299
        ################################################################################################################
300
        reporting = dict()
301
        if energy_category_set is not None and len(energy_category_set) > 0:
302
            for energy_category_id in energy_category_set:
303
                kgce = energy_category_dict[energy_category_id]['kgce']
304
                kgco2e = energy_category_dict[energy_category_id]['kgco2e']
305
306
                reporting[energy_category_id] = dict()
307
                reporting[energy_category_id]['timestamps'] = list()
308
                reporting[energy_category_id]['values'] = list()
309
                reporting[energy_category_id]['subtotal'] = Decimal(0.0)
310
                reporting[energy_category_id]['subtotal_in_kgce'] = Decimal(0.0)
311
                reporting[energy_category_id]['subtotal_in_kgco2e'] = Decimal(0.0)
312
                reporting[energy_category_id]['toppeak'] = Decimal(0.0)
313
                reporting[energy_category_id]['onpeak'] = Decimal(0.0)
314
                reporting[energy_category_id]['midpeak'] = Decimal(0.0)
315
                reporting[energy_category_id]['offpeak'] = Decimal(0.0)
316
317
                cursor_energy.execute(" SELECT start_datetime_utc, actual_value "
318
                                      " FROM tbl_tenant_input_category_hourly "
319
                                      " WHERE tenant_id = %s "
320
                                      "     AND energy_category_id = %s "
321
                                      "     AND start_datetime_utc >= %s "
322
                                      "     AND start_datetime_utc < %s "
323
                                      " ORDER BY start_datetime_utc ",
324
                                      (tenant['id'],
325
                                       energy_category_id,
326
                                       reporting_start_datetime_utc,
327
                                       reporting_end_datetime_utc))
328
                rows_tenant_hourly = cursor_energy.fetchall()
329
330
                rows_tenant_periodically = utilities.aggregate_hourly_data_by_period(rows_tenant_hourly,
331
                                                                                     reporting_start_datetime_utc,
332
                                                                                     reporting_end_datetime_utc,
333
                                                                                     period_type)
334
                for row_tenant_periodically in rows_tenant_periodically:
335
                    current_datetime_local = row_tenant_periodically[0].replace(tzinfo=timezone.utc) + \
336
                                             timedelta(minutes=timezone_offset)
337
                    if period_type == 'hourly':
338
                        current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S')
339
                    elif period_type == 'daily':
340
                        current_datetime = current_datetime_local.strftime('%Y-%m-%d')
341
                    elif period_type == 'monthly':
342
                        current_datetime = current_datetime_local.strftime('%Y-%m')
343
                    elif period_type == 'yearly':
344
                        current_datetime = current_datetime_local.strftime('%Y')
345
346
                    actual_value = Decimal(0.0) if row_tenant_periodically[1] is None else row_tenant_periodically[1]
347
                    reporting[energy_category_id]['timestamps'].append(current_datetime)
348
                    reporting[energy_category_id]['values'].append(actual_value)
349
                    reporting[energy_category_id]['subtotal'] += actual_value
350
                    reporting[energy_category_id]['subtotal_in_kgce'] += actual_value * kgce
351
                    reporting[energy_category_id]['subtotal_in_kgco2e'] += actual_value * kgco2e
352
353
                energy_category_tariff_dict = utilities.get_energy_category_peak_types(tenant['cost_center_id'],
354
                                                                                       energy_category_id,
355
                                                                                       reporting_start_datetime_utc,
356
                                                                                       reporting_end_datetime_utc)
357
                for row in rows_tenant_hourly:
358
                    peak_type = energy_category_tariff_dict.get(row[0], None)
359
                    if peak_type == 'toppeak':
360
                        reporting[energy_category_id]['toppeak'] += row[1]
361
                    elif peak_type == 'onpeak':
362
                        reporting[energy_category_id]['onpeak'] += row[1]
363
                    elif peak_type == 'midpeak':
364
                        reporting[energy_category_id]['midpeak'] += row[1]
365
                    elif peak_type == 'offpeak':
366
                        reporting[energy_category_id]['offpeak'] += row[1]
367
368
        ################################################################################################################
369
        # Step 9: query tariff data
370
        ################################################################################################################
371
        parameters_data = dict()
372
        parameters_data['names'] = list()
373
        parameters_data['timestamps'] = list()
374
        parameters_data['values'] = list()
375
        if energy_category_set is not None and len(energy_category_set) > 0:
376
            for energy_category_id in energy_category_set:
377
                energy_category_tariff_dict = utilities.get_energy_category_tariffs(tenant['cost_center_id'],
378
                                                                                    energy_category_id,
379
                                                                                    reporting_start_datetime_utc,
380
                                                                                    reporting_end_datetime_utc)
381
                tariff_timestamp_list = list()
382
                tariff_value_list = list()
383
                for k, v in energy_category_tariff_dict.items():
384
                    # convert k from utc to local
385
                    k = k + timedelta(minutes=timezone_offset)
386
                    tariff_timestamp_list.append(k.isoformat()[0:19][0:19])
387
                    tariff_value_list.append(v)
388
389
                parameters_data['names'].append('TARIFF-' + energy_category_dict[energy_category_id]['name'])
390
                parameters_data['timestamps'].append(tariff_timestamp_list)
391
                parameters_data['values'].append(tariff_value_list)
392
393
        ################################################################################################################
394
        # Step 10: query associated sensors and points data
395
        ################################################################################################################
396
        for point in point_list:
397
            point_values = []
398
            point_timestamps = []
399
            if point['object_type'] == 'ANALOG_VALUE':
400
                query = (" SELECT utc_date_time, actual_value "
401
                         " FROM tbl_analog_value "
402
                         " WHERE point_id = %s "
403
                         "       AND utc_date_time BETWEEN %s AND %s "
404
                         " ORDER BY utc_date_time ")
405
                cursor_historical.execute(query, (point['id'],
406
                                                  reporting_start_datetime_utc,
407
                                                  reporting_end_datetime_utc))
408
                rows = cursor_historical.fetchall()
409
410
                if rows is not None and len(rows) > 0:
411
                    for row in rows:
412
                        current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \
413
                                                 timedelta(minutes=timezone_offset)
414
                        current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S')
415
                        point_timestamps.append(current_datetime)
416
                        point_values.append(row[1])
417
418
            elif point['object_type'] == 'ENERGY_VALUE':
419
                query = (" SELECT utc_date_time, actual_value "
420
                         " FROM tbl_energy_value "
421
                         " WHERE point_id = %s "
422
                         "       AND utc_date_time BETWEEN %s AND %s "
423
                         " ORDER BY utc_date_time ")
424
                cursor_historical.execute(query, (point['id'],
425
                                                  reporting_start_datetime_utc,
426
                                                  reporting_end_datetime_utc))
427
                rows = cursor_historical.fetchall()
428
429
                if rows is not None and len(rows) > 0:
430
                    for row in rows:
431
                        current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \
432
                                                 timedelta(minutes=timezone_offset)
433
                        current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S')
434
                        point_timestamps.append(current_datetime)
435
                        point_values.append(row[1])
436
            elif point['object_type'] == 'DIGITAL_VALUE':
437
                query = (" SELECT utc_date_time, actual_value "
438
                         " FROM tbl_digital_value "
439
                         " WHERE point_id = %s "
440
                         "       AND utc_date_time BETWEEN %s AND %s ")
441
                cursor_historical.execute(query, (point['id'],
442
                                                  reporting_start_datetime_utc,
443
                                                  reporting_end_datetime_utc))
444
                rows = cursor_historical.fetchall()
445
446
                if rows is not None and len(rows) > 0:
447
                    for row in rows:
448
                        current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \
449
                                                 timedelta(minutes=timezone_offset)
450
                        current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S')
451
                        point_timestamps.append(current_datetime)
452
                        point_values.append(row[1])
453
454
            parameters_data['names'].append(point['name'] + ' (' + point['units'] + ')')
455
            parameters_data['timestamps'].append(point_timestamps)
456
            parameters_data['values'].append(point_values)
457
458
        ################################################################################################################
459
        # Step 12: construct the report
460
        ################################################################################################################
461
        if cursor_system:
462
            cursor_system.close()
463
        if cnx_system:
464
            cnx_system.disconnect()
465
466
        if cursor_energy:
467
            cursor_energy.close()
468
        if cnx_energy:
469
            cnx_energy.disconnect()
470
471
        result = dict()
472
473
        result['tenant'] = dict()
474
        result['tenant']['name'] = tenant['name']
475
        result['tenant']['area'] = tenant['area']
476
477
        result['base_period'] = dict()
478
        result['base_period']['names'] = list()
479
        result['base_period']['units'] = list()
480
        result['base_period']['timestamps'] = list()
481
        result['base_period']['values'] = list()
482
        result['base_period']['subtotals'] = list()
483
        result['base_period']['subtotals_in_kgce'] = list()
484
        result['base_period']['subtotals_in_kgco2e'] = list()
485
        result['base_period']['total_in_kgce'] = Decimal(0.0)
486
        result['base_period']['total_in_kgco2e'] = Decimal(0.0)
487
        if energy_category_set is not None and len(energy_category_set) > 0:
488
            for energy_category_id in energy_category_set:
489
                result['base_period']['names'].append(energy_category_dict[energy_category_id]['name'])
490
                result['base_period']['units'].append(energy_category_dict[energy_category_id]['unit_of_measure'])
491
                result['base_period']['timestamps'].append(base[energy_category_id]['timestamps'])
492
                result['base_period']['values'].append(base[energy_category_id]['values'])
493
                result['base_period']['subtotals'].append(base[energy_category_id]['subtotal'])
494
                result['base_period']['subtotals_in_kgce'].append(base[energy_category_id]['subtotal_in_kgce'])
495
                result['base_period']['subtotals_in_kgco2e'].append(base[energy_category_id]['subtotal_in_kgco2e'])
496
                result['base_period']['total_in_kgce'] += base[energy_category_id]['subtotal_in_kgce']
497
                result['base_period']['total_in_kgco2e'] += base[energy_category_id]['subtotal_in_kgco2e']
498
499
        result['reporting_period'] = dict()
500
        result['reporting_period']['names'] = list()
501
        result['reporting_period']['energy_category_ids'] = list()
502
        result['reporting_period']['units'] = list()
503
        result['reporting_period']['timestamps'] = list()
504
        result['reporting_period']['values'] = list()
505
        result['reporting_period']['subtotals'] = list()
506
        result['reporting_period']['subtotals_in_kgce'] = list()
507
        result['reporting_period']['subtotals_in_kgco2e'] = list()
508
        result['reporting_period']['subtotals_per_unit_area'] = list()
509
        result['reporting_period']['toppeaks'] = list()
510
        result['reporting_period']['onpeaks'] = list()
511
        result['reporting_period']['midpeaks'] = list()
512
        result['reporting_period']['offpeaks'] = list()
513
        result['reporting_period']['increment_rates'] = list()
514
        result['reporting_period']['total_in_kgce'] = Decimal(0.0)
515
        result['reporting_period']['total_in_kgco2e'] = Decimal(0.0)
516
        result['reporting_period']['increment_rate_in_kgce'] = Decimal(0.0)
517
        result['reporting_period']['increment_rate_in_kgco2e'] = Decimal(0.0)
518
519
        if energy_category_set is not None and len(energy_category_set) > 0:
520
            for energy_category_id in energy_category_set:
521
                result['reporting_period']['names'].append(energy_category_dict[energy_category_id]['name'])
522
                result['reporting_period']['energy_category_ids'].append(energy_category_id)
523
                result['reporting_period']['units'].append(energy_category_dict[energy_category_id]['unit_of_measure'])
524
                result['reporting_period']['timestamps'].append(reporting[energy_category_id]['timestamps'])
525
                result['reporting_period']['values'].append(reporting[energy_category_id]['values'])
526
                result['reporting_period']['subtotals'].append(reporting[energy_category_id]['subtotal'])
527
                result['reporting_period']['subtotals_in_kgce'].append(
528
                    reporting[energy_category_id]['subtotal_in_kgce'])
529
                result['reporting_period']['subtotals_in_kgco2e'].append(
530
                    reporting[energy_category_id]['subtotal_in_kgco2e'])
531
                result['reporting_period']['subtotals_per_unit_area'].append(
532
                    reporting[energy_category_id]['subtotal'] / tenant['area'] if tenant['area'] > 0.0 else None)
533
                result['reporting_period']['toppeaks'].append(reporting[energy_category_id]['toppeak'])
534
                result['reporting_period']['onpeaks'].append(reporting[energy_category_id]['onpeak'])
535
                result['reporting_period']['midpeaks'].append(reporting[energy_category_id]['midpeak'])
536
                result['reporting_period']['offpeaks'].append(reporting[energy_category_id]['offpeak'])
537
                result['reporting_period']['increment_rates'].append(
538
                    (reporting[energy_category_id]['subtotal'] - base[energy_category_id]['subtotal']) /
539
                    base[energy_category_id]['subtotal']
540
                    if base[energy_category_id]['subtotal'] > 0.0 else None)
541
                result['reporting_period']['total_in_kgce'] += reporting[energy_category_id]['subtotal_in_kgce']
542
                result['reporting_period']['total_in_kgco2e'] += reporting[energy_category_id]['subtotal_in_kgco2e']
543
544
        result['reporting_period']['total_in_kgco2e_per_unit_area'] = \
545
            result['reporting_period']['total_in_kgce'] / tenant['area'] if tenant['area'] > 0.0 else None
546
547
        result['reporting_period']['increment_rate_in_kgce'] = \
548
            (result['reporting_period']['total_in_kgce'] - result['base_period']['total_in_kgce']) / \
549
            result['base_period']['total_in_kgce'] \
550
            if result['base_period']['total_in_kgce'] > Decimal(0.0) else None
551
552
        result['reporting_period']['total_in_kgce_per_unit_area'] = \
553
            result['reporting_period']['total_in_kgco2e'] / tenant['area'] if tenant['area'] > 0.0 else None
554
555
        result['reporting_period']['increment_rate_in_kgco2e'] = \
556
            (result['reporting_period']['total_in_kgco2e'] - result['base_period']['total_in_kgco2e']) / \
557
            result['base_period']['total_in_kgco2e'] \
558
            if result['base_period']['total_in_kgco2e'] > Decimal(0.0) else None
559
560
        result['parameters'] = {
561
            "names": parameters_data['names'],
562
            "timestamps": parameters_data['timestamps'],
563
            "values": parameters_data['values']
564
        }
565
566
        resp.body = json.dumps(result)
567