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import falcon |
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import simplejson as json |
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import mysql.connector |
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import config |
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from datetime import datetime, timedelta, timezone |
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from core import utilities |
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from decimal import Decimal |
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import excelexporters.tenantenergyitem |
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View Code Duplication |
class Reporting: |
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@staticmethod |
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def __init__(): |
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pass |
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@staticmethod |
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def on_options(req, resp): |
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resp.status = falcon.HTTP_200 |
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#################################################################################################################### |
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# PROCEDURES |
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# Step 1: valid parameters |
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# Step 2: query the tenant |
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# Step 3: query energy items |
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# Step 4: query associated sensors |
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# Step 5: query associated points |
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# Step 6: query base period energy input |
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# Step 7: query reporting period energy input |
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# Step 8: query tariff data |
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# Step 9: query associated sensors and points data |
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# Step 10: construct the report |
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#################################################################################################################### |
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@staticmethod |
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def on_get(req, resp): |
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print(req.params) |
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tenant_id = req.params.get('tenantid') |
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period_type = req.params.get('periodtype') |
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base_start_datetime_local = req.params.get('baseperiodstartdatetime') |
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base_end_datetime_local = req.params.get('baseperiodenddatetime') |
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reporting_start_datetime_local = req.params.get('reportingperiodstartdatetime') |
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reporting_end_datetime_local = req.params.get('reportingperiodenddatetime') |
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################################################################################################################ |
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# Step 1: valid parameters |
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################################################################################################################ |
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if tenant_id is None: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_TENANT_ID') |
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else: |
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tenant_id = str.strip(tenant_id) |
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if not tenant_id.isdigit() or int(tenant_id) <= 0: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_TENANT_ID') |
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if period_type is None: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_PERIOD_TYPE') |
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else: |
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period_type = str.strip(period_type) |
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if period_type not in ['hourly', 'daily', 'monthly', 'yearly']: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', description='API.INVALID_PERIOD_TYPE') |
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timezone_offset = int(config.utc_offset[1:3]) * 60 + int(config.utc_offset[4:6]) |
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if config.utc_offset[0] == '-': |
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timezone_offset = -timezone_offset |
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base_start_datetime_utc = None |
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if base_start_datetime_local is not None and len(str.strip(base_start_datetime_local)) > 0: |
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base_start_datetime_local = str.strip(base_start_datetime_local) |
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try: |
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base_start_datetime_utc = datetime.strptime(base_start_datetime_local, |
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'%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \ |
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timedelta(minutes=timezone_offset) |
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except ValueError: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_BASE_PERIOD_START_DATETIME") |
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base_end_datetime_utc = None |
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if base_end_datetime_local is not None and len(str.strip(base_end_datetime_local)) > 0: |
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base_end_datetime_local = str.strip(base_end_datetime_local) |
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try: |
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base_end_datetime_utc = datetime.strptime(base_end_datetime_local, |
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'%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \ |
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timedelta(minutes=timezone_offset) |
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except ValueError: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_BASE_PERIOD_END_DATETIME") |
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if base_start_datetime_utc is not None and base_end_datetime_utc is not None and \ |
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base_start_datetime_utc >= base_end_datetime_utc: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description='API.INVALID_BASE_PERIOD_END_DATETIME') |
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if reporting_start_datetime_local is None: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_REPORTING_PERIOD_START_DATETIME") |
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else: |
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reporting_start_datetime_local = str.strip(reporting_start_datetime_local) |
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try: |
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reporting_start_datetime_utc = datetime.strptime(reporting_start_datetime_local, |
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'%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \ |
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timedelta(minutes=timezone_offset) |
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except ValueError: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_REPORTING_PERIOD_START_DATETIME") |
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if reporting_end_datetime_local is None: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_REPORTING_PERIOD_END_DATETIME") |
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else: |
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reporting_end_datetime_local = str.strip(reporting_end_datetime_local) |
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try: |
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reporting_end_datetime_utc = datetime.strptime(reporting_end_datetime_local, |
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'%Y-%m-%dT%H:%M:%S').replace(tzinfo=timezone.utc) - \ |
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timedelta(minutes=timezone_offset) |
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except ValueError: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description="API.INVALID_REPORTING_PERIOD_END_DATETIME") |
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if reporting_start_datetime_utc >= reporting_end_datetime_utc: |
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raise falcon.HTTPError(falcon.HTTP_400, title='API.BAD_REQUEST', |
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description='API.INVALID_REPORTING_PERIOD_END_DATETIME') |
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################################################################################################################ |
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# Step 2: query the tenant |
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################################################################################################################ |
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cnx_system = mysql.connector.connect(**config.myems_system_db) |
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cursor_system = cnx_system.cursor() |
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cnx_energy = mysql.connector.connect(**config.myems_energy_db) |
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cursor_energy = cnx_energy.cursor() |
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cnx_historical = mysql.connector.connect(**config.myems_historical_db) |
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cursor_historical = cnx_historical.cursor() |
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cursor_system.execute(" SELECT id, name, area, cost_center_id " |
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" FROM tbl_tenants " |
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" WHERE id = %s ", (tenant_id,)) |
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row_tenant = cursor_system.fetchone() |
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if row_tenant is None: |
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if cursor_system: |
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cursor_system.close() |
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if cnx_system: |
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cnx_system.disconnect() |
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if cursor_energy: |
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cursor_energy.close() |
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if cnx_energy: |
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cnx_energy.disconnect() |
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if cnx_historical: |
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cnx_historical.close() |
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if cursor_historical: |
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cursor_historical.disconnect() |
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raise falcon.HTTPError(falcon.HTTP_404, title='API.NOT_FOUND', description='API.TENANT_NOT_FOUND') |
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tenant = dict() |
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tenant['id'] = row_tenant[0] |
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tenant['name'] = row_tenant[1] |
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tenant['area'] = row_tenant[2] |
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tenant['cost_center_id'] = row_tenant[3] |
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################################################################################################################ |
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# Step 3: query energy items |
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################################################################################################################ |
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energy_item_set = set() |
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# query energy items in base period |
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cursor_energy.execute(" SELECT DISTINCT(energy_item_id) " |
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" FROM tbl_tenant_input_item_hourly " |
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" WHERE tenant_id = %s " |
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" AND start_datetime_utc >= %s " |
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" AND start_datetime_utc < %s ", |
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(tenant['id'], base_start_datetime_utc, base_end_datetime_utc)) |
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rows_energy_items = cursor_energy.fetchall() |
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if rows_energy_items is not None or len(rows_energy_items) > 0: |
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for row_item in rows_energy_items: |
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energy_item_set.add(row_item[0]) |
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# query energy items in reporting period |
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cursor_energy.execute(" SELECT DISTINCT(energy_item_id) " |
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" FROM tbl_tenant_input_item_hourly " |
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" WHERE tenant_id = %s " |
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" AND start_datetime_utc >= %s " |
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" AND start_datetime_utc < %s ", |
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(tenant['id'], reporting_start_datetime_utc, reporting_end_datetime_utc)) |
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rows_energy_items = cursor_energy.fetchall() |
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if rows_energy_items is not None or len(rows_energy_items) > 0: |
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for row_item in rows_energy_items: |
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energy_item_set.add(row_item[0]) |
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# query all energy items in base period and reporting period |
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cursor_system.execute(" SELECT ei.id, ei.name, ei.energy_category_id, " |
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" ec.name AS energy_category_name, ec.unit_of_measure, ec.kgce, ec.kgco2e " |
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" FROM tbl_energy_items ei, tbl_energy_categories ec " |
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" WHERE ei.energy_category_id = ec.id " |
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" ORDER BY ei.id ", ) |
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rows_energy_items = cursor_system.fetchall() |
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if rows_energy_items is None or len(rows_energy_items) == 0: |
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if cursor_system: |
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cursor_system.close() |
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if cnx_system: |
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cnx_system.disconnect() |
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if cursor_energy: |
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cursor_energy.close() |
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if cnx_energy: |
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cnx_energy.disconnect() |
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if cnx_historical: |
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cnx_historical.close() |
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if cursor_historical: |
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cursor_historical.disconnect() |
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raise falcon.HTTPError(falcon.HTTP_404, |
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title='API.NOT_FOUND', |
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description='API.ENERGY_ITEM_NOT_FOUND') |
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energy_item_dict = dict() |
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for row_energy_item in rows_energy_items: |
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if row_energy_item[0] in energy_item_set: |
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energy_item_dict[row_energy_item[0]] = {"name": row_energy_item[1], |
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"energy_category_id": row_energy_item[2], |
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"energy_category_name": row_energy_item[3], |
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"unit_of_measure": row_energy_item[4], |
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"kgce": row_energy_item[5], |
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"kgco2e": row_energy_item[6]} |
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################################################################################################################ |
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# Step 4: query associated sensors |
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################################################################################################################ |
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point_list = list() |
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cursor_system.execute(" SELECT p.id, p.name, p.units, p.object_type " |
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" FROM tbl_tenants t, tbl_sensors s, tbl_tenants_sensors ts, " |
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" tbl_points p, tbl_sensors_points sp " |
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" WHERE t.id = %s AND t.id = ts.tenant_id AND ts.sensor_id = s.id " |
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" AND s.id = sp.sensor_id AND sp.point_id = p.id " |
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" ORDER BY p.id ", (tenant['id'], )) |
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rows_points = cursor_system.fetchall() |
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if rows_points is not None and len(rows_points) > 0: |
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for row in rows_points: |
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point_list.append({"id": row[0], "name": row[1], "units": row[2], "object_type": row[3]}) |
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################################################################################################################ |
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# Step 5: query associated points |
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################################################################################################################ |
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cursor_system.execute(" SELECT po.id, po.name, po.units, po.object_type " |
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" FROM tbl_tenants sp, tbl_tenants_points sppo, tbl_points po " |
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" WHERE sp.id = %s AND sp.id = sppo.tenant_id AND sppo.point_id = po.id " |
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" ORDER BY po.id ", (tenant['id'], )) |
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rows_points = cursor_system.fetchall() |
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if rows_points is not None and len(rows_points) > 0: |
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for row in rows_points: |
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point_list.append({"id": row[0], "name": row[1], "units": row[2], "object_type": row[3]}) |
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################################################################################################################ |
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# Step 6: query base period energy input |
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################################################################################################################ |
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base = dict() |
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if energy_item_set is not None and len(energy_item_set) > 0: |
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for energy_item_id in energy_item_set: |
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base[energy_item_id] = dict() |
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base[energy_item_id]['timestamps'] = list() |
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base[energy_item_id]['values'] = list() |
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base[energy_item_id]['subtotal'] = Decimal(0.0) |
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cursor_energy.execute(" SELECT start_datetime_utc, actual_value " |
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" FROM tbl_tenant_input_item_hourly " |
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" WHERE tenant_id = %s " |
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" AND energy_item_id = %s " |
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" AND start_datetime_utc >= %s " |
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" AND start_datetime_utc < %s " |
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" ORDER BY start_datetime_utc ", |
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(tenant['id'], |
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energy_item_id, |
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base_start_datetime_utc, |
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base_end_datetime_utc)) |
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rows_tenant_hourly = cursor_energy.fetchall() |
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rows_tenant_periodically = utilities.aggregate_hourly_data_by_period(rows_tenant_hourly, |
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base_start_datetime_utc, |
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base_end_datetime_utc, |
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period_type) |
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for row_tenant_periodically in rows_tenant_periodically: |
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current_datetime_local = row_tenant_periodically[0].replace(tzinfo=timezone.utc) + \ |
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timedelta(minutes=timezone_offset) |
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if period_type == 'hourly': |
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current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S') |
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elif period_type == 'daily': |
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current_datetime = current_datetime_local.strftime('%Y-%m-%d') |
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elif period_type == 'monthly': |
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current_datetime = current_datetime_local.strftime('%Y-%m') |
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elif period_type == 'yearly': |
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current_datetime = current_datetime_local.strftime('%Y') |
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actual_value = Decimal(0.0) if row_tenant_periodically[1] is None else row_tenant_periodically[1] |
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base[energy_item_id]['timestamps'].append(current_datetime) |
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base[energy_item_id]['values'].append(actual_value) |
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base[energy_item_id]['subtotal'] += actual_value |
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################################################################################################################ |
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# Step 7: query reporting period energy input |
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################################################################################################################ |
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reporting = dict() |
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if energy_item_set is not None and len(energy_item_set) > 0: |
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for energy_item_id in energy_item_set: |
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reporting[energy_item_id] = dict() |
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reporting[energy_item_id]['timestamps'] = list() |
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reporting[energy_item_id]['values'] = list() |
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reporting[energy_item_id]['subtotal'] = Decimal(0.0) |
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|
reporting[energy_item_id]['toppeak'] = Decimal(0.0) |
306
|
|
|
reporting[energy_item_id]['onpeak'] = Decimal(0.0) |
307
|
|
|
reporting[energy_item_id]['midpeak'] = Decimal(0.0) |
308
|
|
|
reporting[energy_item_id]['offpeak'] = Decimal(0.0) |
309
|
|
|
|
310
|
|
|
cursor_energy.execute(" SELECT start_datetime_utc, actual_value " |
311
|
|
|
" FROM tbl_tenant_input_item_hourly " |
312
|
|
|
" WHERE tenant_id = %s " |
313
|
|
|
" AND energy_item_id = %s " |
314
|
|
|
" AND start_datetime_utc >= %s " |
315
|
|
|
" AND start_datetime_utc < %s " |
316
|
|
|
" ORDER BY start_datetime_utc ", |
317
|
|
|
(tenant['id'], |
318
|
|
|
energy_item_id, |
319
|
|
|
reporting_start_datetime_utc, |
320
|
|
|
reporting_end_datetime_utc)) |
321
|
|
|
rows_tenant_hourly = cursor_energy.fetchall() |
322
|
|
|
|
323
|
|
|
rows_tenant_periodically = utilities.aggregate_hourly_data_by_period(rows_tenant_hourly, |
324
|
|
|
reporting_start_datetime_utc, |
325
|
|
|
reporting_end_datetime_utc, |
326
|
|
|
period_type) |
327
|
|
|
for row_tenant_periodically in rows_tenant_periodically: |
328
|
|
|
current_datetime_local = row_tenant_periodically[0].replace(tzinfo=timezone.utc) + \ |
329
|
|
|
timedelta(minutes=timezone_offset) |
330
|
|
|
if period_type == 'hourly': |
331
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S') |
332
|
|
|
elif period_type == 'daily': |
333
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m-%d') |
334
|
|
|
elif period_type == 'monthly': |
335
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m') |
336
|
|
|
elif period_type == 'yearly': |
337
|
|
|
current_datetime = current_datetime_local.strftime('%Y') |
338
|
|
|
|
339
|
|
|
actual_value = Decimal(0.0) if row_tenant_periodically[1] is None else row_tenant_periodically[1] |
340
|
|
|
reporting[energy_item_id]['timestamps'].append(current_datetime) |
341
|
|
|
reporting[energy_item_id]['values'].append(actual_value) |
342
|
|
|
reporting[energy_item_id]['subtotal'] += actual_value |
343
|
|
|
|
344
|
|
|
energy_category_tariff_dict = \ |
345
|
|
|
utilities.get_energy_category_peak_types(tenant['cost_center_id'], |
346
|
|
|
energy_item_dict[energy_item_id]['energy_category_id'], |
347
|
|
|
reporting_start_datetime_utc, |
348
|
|
|
reporting_end_datetime_utc) |
349
|
|
|
for row in rows_tenant_hourly: |
350
|
|
|
peak_type = energy_category_tariff_dict.get(row[0], None) |
351
|
|
|
if peak_type == 'toppeak': |
352
|
|
|
reporting[energy_item_id]['toppeak'] += row[1] |
353
|
|
|
elif peak_type == 'onpeak': |
354
|
|
|
reporting[energy_item_id]['onpeak'] += row[1] |
355
|
|
|
elif peak_type == 'midpeak': |
356
|
|
|
reporting[energy_item_id]['midpeak'] += row[1] |
357
|
|
|
elif peak_type == 'offpeak': |
358
|
|
|
reporting[energy_item_id]['offpeak'] += row[1] |
359
|
|
|
|
360
|
|
|
################################################################################################################ |
361
|
|
|
# Step 8: query tariff data |
362
|
|
|
################################################################################################################ |
363
|
|
|
parameters_data = dict() |
364
|
|
|
parameters_data['names'] = list() |
365
|
|
|
parameters_data['timestamps'] = list() |
366
|
|
|
parameters_data['values'] = list() |
367
|
|
|
if energy_item_set is not None and len(energy_item_set) > 0: |
368
|
|
|
for energy_item_id in energy_item_set: |
369
|
|
|
energy_category_tariff_dict = \ |
370
|
|
|
utilities.get_energy_category_tariffs(tenant['cost_center_id'], |
371
|
|
|
energy_item_dict[energy_item_id]['energy_category_id'], |
372
|
|
|
reporting_start_datetime_utc, |
373
|
|
|
reporting_end_datetime_utc) |
374
|
|
|
tariff_timestamp_list = list() |
375
|
|
|
tariff_value_list = list() |
376
|
|
|
for k, v in energy_category_tariff_dict.items(): |
377
|
|
|
# convert k from utc to local |
378
|
|
|
k = k + timedelta(minutes=timezone_offset) |
379
|
|
|
tariff_timestamp_list.append(k.isoformat()[0:19][0:19]) |
380
|
|
|
tariff_value_list.append(v) |
381
|
|
|
|
382
|
|
|
parameters_data['names'].append('TARIFF-' + energy_item_dict[energy_item_id]['name']) |
383
|
|
|
parameters_data['timestamps'].append(tariff_timestamp_list) |
384
|
|
|
parameters_data['values'].append(tariff_value_list) |
385
|
|
|
|
386
|
|
|
################################################################################################################ |
387
|
|
|
# Step 9: query associated sensors and points data |
388
|
|
|
################################################################################################################ |
389
|
|
|
for point in point_list: |
390
|
|
|
point_values = [] |
391
|
|
|
point_timestamps = [] |
392
|
|
|
if point['object_type'] == 'ANALOG_VALUE': |
393
|
|
|
query = (" SELECT utc_date_time, actual_value " |
394
|
|
|
" FROM tbl_analog_value " |
395
|
|
|
" WHERE point_id = %s " |
396
|
|
|
" AND utc_date_time BETWEEN %s AND %s " |
397
|
|
|
" ORDER BY utc_date_time ") |
398
|
|
|
cursor_historical.execute(query, (point['id'], |
399
|
|
|
reporting_start_datetime_utc, |
400
|
|
|
reporting_end_datetime_utc)) |
401
|
|
|
rows = cursor_historical.fetchall() |
402
|
|
|
|
403
|
|
|
if rows is not None and len(rows) > 0: |
404
|
|
|
for row in rows: |
405
|
|
|
current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \ |
406
|
|
|
timedelta(minutes=timezone_offset) |
407
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S') |
408
|
|
|
point_timestamps.append(current_datetime) |
409
|
|
|
point_values.append(row[1]) |
410
|
|
|
|
411
|
|
|
elif point['object_type'] == 'ENERGY_VALUE': |
412
|
|
|
query = (" SELECT utc_date_time, actual_value " |
413
|
|
|
" FROM tbl_energy_value " |
414
|
|
|
" WHERE point_id = %s " |
415
|
|
|
" AND utc_date_time BETWEEN %s AND %s " |
416
|
|
|
" ORDER BY utc_date_time ") |
417
|
|
|
cursor_historical.execute(query, (point['id'], |
418
|
|
|
reporting_start_datetime_utc, |
419
|
|
|
reporting_end_datetime_utc)) |
420
|
|
|
rows = cursor_historical.fetchall() |
421
|
|
|
|
422
|
|
|
if rows is not None and len(rows) > 0: |
423
|
|
|
for row in rows: |
424
|
|
|
current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \ |
425
|
|
|
timedelta(minutes=timezone_offset) |
426
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S') |
427
|
|
|
point_timestamps.append(current_datetime) |
428
|
|
|
point_values.append(row[1]) |
429
|
|
|
elif point['object_type'] == 'DIGITAL_VALUE': |
430
|
|
|
query = (" SELECT utc_date_time, actual_value " |
431
|
|
|
" FROM tbl_digital_value " |
432
|
|
|
" WHERE point_id = %s " |
433
|
|
|
" AND utc_date_time BETWEEN %s AND %s ") |
434
|
|
|
cursor_historical.execute(query, (point['id'], |
435
|
|
|
reporting_start_datetime_utc, |
436
|
|
|
reporting_end_datetime_utc)) |
437
|
|
|
rows = cursor_historical.fetchall() |
438
|
|
|
|
439
|
|
|
if rows is not None and len(rows) > 0: |
440
|
|
|
for row in rows: |
441
|
|
|
current_datetime_local = row[0].replace(tzinfo=timezone.utc) + \ |
442
|
|
|
timedelta(minutes=timezone_offset) |
443
|
|
|
current_datetime = current_datetime_local.strftime('%Y-%m-%dT%H:%M:%S') |
444
|
|
|
point_timestamps.append(current_datetime) |
445
|
|
|
point_values.append(row[1]) |
446
|
|
|
|
447
|
|
|
parameters_data['names'].append(point['name'] + ' (' + point['units'] + ')') |
448
|
|
|
parameters_data['timestamps'].append(point_timestamps) |
449
|
|
|
parameters_data['values'].append(point_values) |
450
|
|
|
|
451
|
|
|
################################################################################################################ |
452
|
|
|
# Step 10: construct the report |
453
|
|
|
################################################################################################################ |
454
|
|
|
if cursor_system: |
455
|
|
|
cursor_system.close() |
456
|
|
|
if cnx_system: |
457
|
|
|
cnx_system.disconnect() |
458
|
|
|
|
459
|
|
|
if cursor_energy: |
460
|
|
|
cursor_energy.close() |
461
|
|
|
if cnx_energy: |
462
|
|
|
cnx_energy.disconnect() |
463
|
|
|
|
464
|
|
|
result = dict() |
465
|
|
|
|
466
|
|
|
result['tenant'] = dict() |
467
|
|
|
result['tenant']['name'] = tenant['name'] |
468
|
|
|
result['tenant']['area'] = tenant['area'] |
469
|
|
|
|
470
|
|
|
result['base_period'] = dict() |
471
|
|
|
result['base_period']['names'] = list() |
472
|
|
|
result['base_period']['units'] = list() |
473
|
|
|
result['base_period']['timestamps'] = list() |
474
|
|
|
result['base_period']['values'] = list() |
475
|
|
|
result['base_period']['subtotals'] = list() |
476
|
|
|
if energy_item_set is not None and len(energy_item_set) > 0: |
477
|
|
|
for energy_item_id in energy_item_set: |
478
|
|
|
result['base_period']['names'].append(energy_item_dict[energy_item_id]['name']) |
479
|
|
|
result['base_period']['units'].append(energy_item_dict[energy_item_id]['unit_of_measure']) |
480
|
|
|
result['base_period']['timestamps'].append(base[energy_item_id]['timestamps']) |
481
|
|
|
result['base_period']['values'].append(base[energy_item_id]['values']) |
482
|
|
|
result['base_period']['subtotals'].append(base[energy_item_id]['subtotal']) |
483
|
|
|
|
484
|
|
|
result['reporting_period'] = dict() |
485
|
|
|
result['reporting_period']['names'] = list() |
486
|
|
|
result['reporting_period']['energy_item_ids'] = list() |
487
|
|
|
result['reporting_period']['energy_category_names'] = list() |
488
|
|
|
result['reporting_period']['energy_category_ids'] = list() |
489
|
|
|
result['reporting_period']['units'] = list() |
490
|
|
|
result['reporting_period']['timestamps'] = list() |
491
|
|
|
result['reporting_period']['values'] = list() |
492
|
|
|
result['reporting_period']['subtotals'] = list() |
493
|
|
|
result['reporting_period']['subtotals_per_unit_area'] = list() |
494
|
|
|
result['reporting_period']['toppeaks'] = list() |
495
|
|
|
result['reporting_period']['onpeaks'] = list() |
496
|
|
|
result['reporting_period']['midpeaks'] = list() |
497
|
|
|
result['reporting_period']['offpeaks'] = list() |
498
|
|
|
result['reporting_period']['increment_rates'] = list() |
499
|
|
|
|
500
|
|
|
if energy_item_set is not None and len(energy_item_set) > 0: |
501
|
|
|
for energy_item_id in energy_item_set: |
502
|
|
|
result['reporting_period']['names'].append(energy_item_dict[energy_item_id]['name']) |
503
|
|
|
result['reporting_period']['energy_item_ids'].append(energy_item_id) |
504
|
|
|
result['reporting_period']['energy_category_names'].append( |
505
|
|
|
energy_item_dict[energy_item_id]['energy_category_name']) |
506
|
|
|
result['reporting_period']['energy_category_ids'].append( |
507
|
|
|
energy_item_dict[energy_item_id]['energy_category_id']) |
508
|
|
|
result['reporting_period']['units'].append(energy_item_dict[energy_item_id]['unit_of_measure']) |
509
|
|
|
result['reporting_period']['timestamps'].append(reporting[energy_item_id]['timestamps']) |
510
|
|
|
result['reporting_period']['values'].append(reporting[energy_item_id]['values']) |
511
|
|
|
result['reporting_period']['subtotals'].append(reporting[energy_item_id]['subtotal']) |
512
|
|
|
result['reporting_period']['subtotals_per_unit_area'].append( |
513
|
|
|
reporting[energy_item_id]['subtotal'] / tenant['area'] if tenant['area'] > 0.0 else None) |
514
|
|
|
result['reporting_period']['toppeaks'].append(reporting[energy_item_id]['toppeak']) |
515
|
|
|
result['reporting_period']['onpeaks'].append(reporting[energy_item_id]['onpeak']) |
516
|
|
|
result['reporting_period']['midpeaks'].append(reporting[energy_item_id]['midpeak']) |
517
|
|
|
result['reporting_period']['offpeaks'].append(reporting[energy_item_id]['offpeak']) |
518
|
|
|
result['reporting_period']['increment_rates'].append( |
519
|
|
|
(reporting[energy_item_id]['subtotal'] - base[energy_item_id]['subtotal']) / |
520
|
|
|
base[energy_item_id]['subtotal'] |
521
|
|
|
if base[energy_item_id]['subtotal'] > 0.0 else None) |
522
|
|
|
|
523
|
|
|
result['parameters'] = { |
524
|
|
|
"names": parameters_data['names'], |
525
|
|
|
"timestamps": parameters_data['timestamps'], |
526
|
|
|
"values": parameters_data['values'] |
527
|
|
|
} |
528
|
|
|
|
529
|
|
|
# export result to Excel file and then encode the file to base64 string |
530
|
|
|
result['excel_bytes_base64'] = excelexporters.tenantenergyitem.export(result, |
531
|
|
|
tenant['name'], |
532
|
|
|
reporting_start_datetime_local, |
533
|
|
|
reporting_end_datetime_local, |
534
|
|
|
period_type) |
535
|
|
|
|
536
|
|
|
resp.body = json.dumps(result) |
537
|
|
|
|