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			25 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			515 lines
		
	
	
		
			25 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
| #!/usr/bin/env python3
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| # -*- coding: utf-8 -*-
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| 
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| """
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| path_requests_run.py
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| ====================
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| 
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| Reads a JSON request file in accordance with the Yang model
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| for requesting path computation and returns path results in terms
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| of path and feasibilty.
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| 
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| See: draft-ietf-teas-yang-path-computation-01.txt
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| """
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| 
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| from sys import exit
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| from argparse import ArgumentParser
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| from pathlib import Path
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| from collections import namedtuple
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| from logging import getLogger, basicConfig, CRITICAL, DEBUG, INFO
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| from json import dumps, loads
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| from numpy import mean
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| from gnpy.core.service_sheet import convert_service_sheet, Request_element, Element
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| from gnpy.core.utils import load_json
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| from gnpy.core.network import load_network, build_network, save_network
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| from gnpy.core.equipment import load_equipment, trx_mode_params, automatic_nch
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| from gnpy.core.elements import Transceiver, Roadm
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| from gnpy.core.utils import db2lin, lin2db
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| from gnpy.core.request import (Path_request, Result_element,
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|                                propagate, jsontocsv, Disjunction, compute_path_dsjctn,
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|                                requests_aggregation, propagate_and_optimize_mode,
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|                                BLOCKING_NOPATH, BLOCKING_NOMODE,
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|                                find_reversed_path)
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| from gnpy.core.exceptions import (ConfigurationError, EquipmentConfigError, NetworkTopologyError,
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|                                   ServiceError, DisjunctionError)
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| import gnpy.core.ansi_escapes as ansi_escapes
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| from gnpy.core.spectrum_assignment import (build_oms_list, pth_assign_spectrum)
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| from copy import copy, deepcopy
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| from textwrap import dedent
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| from math import ceil
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| 
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| #EQPT_LIBRARY_FILENAME = Path(__file__).parent / 'eqpt_config.json'
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| 
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| LOGGER = getLogger(__name__)
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| 
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| PARSER = ArgumentParser(description='A function that computes performances for a list of ' +
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|                         'services provided in a json file or an excel sheet.')
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| PARSER.add_argument('network_filename', nargs='?', type=Path,\
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|                     default=Path(__file__).parent / 'meshTopologyExampleV2.xls',\
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|                     help='input topology file in xls or json')
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| PARSER.add_argument('service_filename', nargs='?', type=Path,\
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|                     default=Path(__file__).parent / 'meshTopologyExampleV2.xls',\
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|                     help='input service file in xls or json')
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| PARSER.add_argument('eqpt_filename', nargs='?', type=Path,\
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|                     default=Path(__file__).parent / 'eqpt_config.json',\
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|                     help='input equipment library in json. Default is eqpt_config.json')
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| PARSER.add_argument('-bi', '--bidir', action='store_true',\
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|                     help='considers that all demands are bidir')
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| PARSER.add_argument('-v', '--verbose', action='count', default=0,\
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|                     help='increases verbosity for each occurence')
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| PARSER.add_argument('-o', '--output', type=Path)
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| 
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| 
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| def requests_from_json(json_data, equipment):
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|     """ converts the json data into a list of requests elements
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|     """
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|     requests_list = []
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| 
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|     for req in json_data['path-request']:
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|         # init all params from request
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|         params = {}
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|         params['request_id'] = req['request-id']
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|         params['source'] = req['source']
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|         params['bidir'] = req['bidirectional']
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|         params['destination'] = req['destination']
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|         params['trx_type'] = req['path-constraints']['te-bandwidth']['trx_type']
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|         params['trx_mode'] = req['path-constraints']['te-bandwidth']['trx_mode']
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|         params['format'] = params['trx_mode']
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|         params['spacing'] = req['path-constraints']['te-bandwidth']['spacing']
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|         try:
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|             nd_list = req['explicit-route-objects']['route-object-include-exclude']
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|         except KeyError:
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|             nd_list = []
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|         params['nodes_list'] = [n['num-unnum-hop']['node-id'] for n in nd_list]
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|         params['loose_list'] = [n['num-unnum-hop']['hop-type'] for n in nd_list]
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|         # recover trx physical param (baudrate, ...) from type and mode
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|         # in trx_mode_params optical power is read from equipment['SI']['default'] and
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|         # nb_channel is computed based on min max frequency and spacing
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|         trx_params = trx_mode_params(equipment, params['trx_type'], params['trx_mode'], True)
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|         params.update(trx_params)
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|         # print(trx_params['min_spacing'])
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|         # optical power might be set differently in the request. if it is indicated then the
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|         # params['power'] is updated
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|         try:
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|             if req['path-constraints']['te-bandwidth']['output-power']:
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|                 params['power'] = req['path-constraints']['te-bandwidth']['output-power']
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|         except KeyError:
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|             pass
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|         # same process for nb-channel
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|         f_min = params['f_min']
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|         f_max_from_si = params['f_max']
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|         try:
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|             if req['path-constraints']['te-bandwidth']['max-nb-of-channel'] is not None:
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|                 nch = req['path-constraints']['te-bandwidth']['max-nb-of-channel']
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|                 params['nb_channel'] = nch
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|                 spacing = params['spacing']
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|                 params['f_max'] = f_min + nch*spacing
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|             else:
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|                 params['nb_channel'] = automatic_nch(f_min, f_max_from_si, params['spacing'])
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|         except KeyError:
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|             params['nb_channel'] = automatic_nch(f_min, f_max_from_si, params['spacing'])
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|         consistency_check(params, f_max_from_si)
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| 
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|         try:
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|             params['path_bandwidth'] = req['path-constraints']['te-bandwidth']['path_bandwidth']
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|         except KeyError:
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|             pass
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|         requests_list.append(Path_request(**params))
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|     return requests_list
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| 
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| def consistency_check(params, f_max_from_si):
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|     """ checks that the requested parameters are consistant (spacing vs nb channel,
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|         vs transponder mode...)
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|     """
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|     f_min = params['f_min']
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|     f_max = params['f_max']
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|     max_recommanded_nb_channels = automatic_nch(f_min, f_max, params['spacing'])
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|     if params['baud_rate'] is not None:
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|         #implicitely means that a mode is defined with min_spacing
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|         if params['min_spacing'] > params['spacing']:
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|             msg = f'Request {params["request_id"]} has spacing below transponder ' +\
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|                   f'{params["trx_type"]} {params["trx_mode"]} min spacing value ' +\
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|                   f'{params["min_spacing"]*1e-9}GHz.\nComputation stopped'
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|             print(msg)
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|             LOGGER.critical(msg)
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|             raise ServiceError(msg)
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|         if f_max > f_max_from_si:
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|             msg = dedent(f'''
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|             Requested channel number {params["nb_channel"]}, baud rate {params["baud_rate"]} GHz and requested spacing {params["spacing"]*1e-9}GHz 
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|             is not consistent with frequency range {f_min*1e-12} THz, {f_max*1e-12} THz, min recommanded spacing {params["min_spacing"]*1e-9}GHz.
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|             max recommanded nb of channels is {max_recommanded_nb_channels}
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|             Computation stopped.''')
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|             LOGGER.critical(msg)
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|             raise ServiceError(msg)
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| 
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| 
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| def disjunctions_from_json(json_data):
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|     """ reads the disjunction requests from the json dict and create the list
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|         of requested disjunctions for this set of requests
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|     """
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|     disjunctions_list = []
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|     try:
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|         temp_test = json_data['synchronization']
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|     except KeyError:
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|         temp_test = []
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|     if temp_test:
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|         for snc in json_data['synchronization']:
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|             params = {}
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|             params['disjunction_id'] = snc['synchronization-id']
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|             params['relaxable'] = snc['svec']['relaxable']
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|             params['link_diverse'] = 'link' in snc['svec']['disjointness']
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|             params['node_diverse'] = 'node' in snc['svec']['disjointness']
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|             params['disjunctions_req'] = snc['svec']['request-id-number']
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|             disjunctions_list.append(Disjunction(**params))
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| 
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|     return disjunctions_list
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| 
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| 
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| def load_requests(filename, eqpt_filename, bidir):
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|     """ loads the requests from a json or an excel file into a data string
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|     """
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|     if filename.suffix.lower() == '.xls':
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|         LOGGER.info('Automatically converting requests from XLS to JSON')
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|         try:
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|             json_data = convert_service_sheet(filename, eqpt_filename, bidir=bidir)
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|         except ServiceError as this_e:
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|             print(f'{ansi_escapes.red}Service error:{ansi_escapes.reset} {this_e}')
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|             exit(1)
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|     else:
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|         with open(filename, encoding='utf-8') as my_f:
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|             json_data = loads(my_f.read())
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|     return json_data
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| 
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| def compute_path_with_disjunction(network, equipment, pathreqlist, pathlist):
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|     """ use a list but a dictionnary might be helpful to find path based on request_id
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|         TODO change all these req, dsjct, res lists into dict !
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|     """
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|     path_res_list = []
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|     reversed_path_res_list = []
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|     propagated_reversed_path_res_list = []
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| 
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|     for i, pathreq in enumerate(pathreqlist):
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| 
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|         # use the power specified in requests but might be different from the one
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|         # specified for design the power is an optional parameter for requests
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|         # definition if optional, use the one defines in eqt_config.json
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|         p_db = lin2db(pathreq.power*1e3)
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|         p_total_db = p_db + lin2db(pathreq.nb_channel)
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|         print(f'request {pathreq.request_id}')
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|         print(f'Computing path from {pathreq.source} to {pathreq.destination}')
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|         # adding first node to be clearer on the output
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|         print(f'with path constraint: {[pathreq.source] + pathreq.nodes_list}')
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| 
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|         # pathlist[i] contains the whole path information for request i
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|         # last element is a transciver and where the result of the propagation is
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|         # recorded.
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|         # Important Note: since transceivers attached to roadms are actually logical
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|         # elements to simulate performance, several demands having the same destination
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|         # may use the same transponder for the performance simulation. This is why
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|         # we use deepcopy: to ensure that each propagation is recorded and not overwritten
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|         total_path = deepcopy(pathlist[i])
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|         print(f'Computed path (roadms):{[e.uid for e in total_path  if isinstance(e, Roadm)]}')
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|         # for debug
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|         # print(f'{pathreq.baud_rate}   {pathreq.power}   {pathreq.spacing}   {pathreq.nb_channel}')
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|         if total_path:
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|             if pathreq.baud_rate is not None:
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|                 # means that at this point the mode was entered/forced by user and thus a
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|                 # baud_rate was defined
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|                 total_path = propagate(total_path, pathreq, equipment)
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|                 temp_snr01nm = round(mean(total_path[-1].snr+lin2db(pathreq.baud_rate/(12.5e9))), 2)
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|                 if temp_snr01nm < pathreq.OSNR:
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|                     msg = f'\tWarning! Request {pathreq.request_id} computed path from' +\
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|                           f' {pathreq.source} to {pathreq.destination} does not pass with' +\
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|                           f' {pathreq.tsp_mode}\n\tcomputedSNR in 0.1nm = {temp_snr01nm} ' +\
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|                           f'- required osnr {pathreq.OSNR}'
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|                     print(msg)
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|                     LOGGER.warning(msg)
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|                     pathreq.blocking_reason = 'MODE_NOT_FEASIBLE'
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|             else:
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|                 total_path, mode = propagate_and_optimize_mode(total_path, pathreq, equipment)
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|                 # if no baudrate satisfies spacing, no mode is returned and the last explored mode
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|                 # a warning is shown in the propagate_and_optimize_mode
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|                 # propagate_and_optimize_mode function returns the mode with the highest bitrate
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|                 # that passes. if no mode passes, then a attribute blocking_reason is added on
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|                 # pathreq that contains the reason for blocking: 'NO_PATH', 'NO_FEASIBLE_MODE', ...
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|                 try:
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|                     if pathreq.blocking_reason in BLOCKING_NOPATH:
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|                         total_path = []
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|                     elif pathreq.blocking_reason in BLOCKING_NOMODE:
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|                         pathreq.baud_rate = mode['baud_rate']
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|                         pathreq.tsp_mode = mode['format']
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|                         pathreq.format = mode['format']
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|                         pathreq.OSNR = mode['OSNR']
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|                         pathreq.tx_osnr = mode['tx_osnr']
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|                         pathreq.bit_rate = mode['bit_rate']
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|                     # other blocking reason should not appear at this point
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|                 except AttributeError:
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|                     pathreq.baud_rate = mode['baud_rate']
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|                     pathreq.tsp_mode = mode['format']
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|                     pathreq.format = mode['format']
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|                     pathreq.OSNR = mode['OSNR']
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|                     pathreq.tx_osnr = mode['tx_osnr']
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|                     pathreq.bit_rate = mode['bit_rate']
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| 
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|             # reversed path is needed for correct spectrum assignment
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|             reversed_path = find_reversed_path(pathlist[i])
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|             if pathreq.bidir:
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|                 # only propagate if bidir is true, but needs the reversed path anyway for
 | |
|                 # correct spectrum assignment
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|                 rev_p = deepcopy(reversed_path)
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| 
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|                 print(f'\n\tPropagating Z to A direction {pathreq.destination} to {pathreq.source}')
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|                 print(f'\tPath (roadsm) {[r.uid for r in rev_p if isinstance(r,Roadm)]}\n')
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|                 propagated_reversed_path = propagate(rev_p, pathreq, equipment)
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|                 temp_snr01nm = round(mean(propagated_reversed_path[-1].snr +\
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|                                           lin2db(pathreq.baud_rate/(12.5e9))), 2)
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|                 if temp_snr01nm < pathreq.OSNR:
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|                     msg = f'\tWarning! Request {pathreq.request_id} computed path from' +\
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|                           f' {pathreq.source} to {pathreq.destination} does not pass with' +\
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|                           f' {pathreq.tsp_mode}\n' +\
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|                           f'\tcomputedSNR in 0.1nm = {temp_snr01nm} - required osnr {pathreq.OSNR}'
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|                     print(msg)
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|                     LOGGER.warning(msg)
 | |
|                     # TODO selection of mode should also be on reversed direction !!
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|                     pathreq.blocking_reason = 'MODE_NOT_FEASIBLE'
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|             else:
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|                 propagated_reversed_path = []
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|         else:
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|             msg = 'Total path is empty. No propagation'
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|             print(msg)
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|             LOGGER.info(msg)
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|             reversed_path = []
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|             propagated_reversed_path = []
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| 
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|         path_res_list.append(total_path)
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|         reversed_path_res_list.append(reversed_path)
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|         propagated_reversed_path_res_list.append(propagated_reversed_path)
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|         # print to have a nice output
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|         print('')
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|     return path_res_list, reversed_path_res_list, propagated_reversed_path_res_list
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| 
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| def correct_route_list(network, pathreqlist):
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|     """ prepares the format of route list of nodes to be consistant
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|         remove wrong names, remove endpoints
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|         also correct source and destination
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|     """
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|     anytype = [n.uid for n in network.nodes()]
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|     # TODO there is a problem of identification of fibers in case of parallel fibers
 | |
|     # between two adjacent roadms so fiber constraint is not supported
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|     transponders = [n.uid for n in network.nodes() if isinstance(n, Transceiver)]
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|     for pathreq in pathreqlist:
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|         for i, n_id in enumerate(pathreq.nodes_list):
 | |
|             # replace possibly wrong name with a formated roadm name
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|             # print(n_id)
 | |
|             if n_id not in anytype:
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|                 # find nodes name that include constraint among all possible names except
 | |
|                 # transponders (not yet supported as constraints).
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|                 nodes_suggestion = [uid for uid in anytype \
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|                     if n_id.lower() in uid.lower() and uid not in transponders]
 | |
|                 if pathreq.loose_list[i] == 'LOOSE':
 | |
|                     if len(nodes_suggestion) > 0:
 | |
|                         new_n = nodes_suggestion[0]
 | |
|                         print(f'invalid route node specified:\
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|                         \n\'{n_id}\', replaced with \'{new_n}\'')
 | |
|                         pathreq.nodes_list[i] = new_n
 | |
|                     else:
 | |
|                         print(f'\x1b[1;33;40m'+f'invalid route node specified \'{n_id}\',' +\
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|                               f' could not use it as constraint, skipped!'+'\x1b[0m')
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|                         pathreq.nodes_list.remove(n_id)
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|                         pathreq.loose_list.pop(i)
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|                 else:
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|                     msg = f'\x1b[1;33;40m'+f'could not find node: {n_id} in network topology.' +\
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|                           f' Strict constraint can not be applied.' + '\x1b[0m'
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|                     LOGGER.critical(msg)
 | |
|                     raise ValueError(msg)
 | |
|         if pathreq.source not in transponders:
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|             msg = f'\x1b[1;31;40m' + f'Request: {pathreq.request_id}: could not find' +\
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|                   f' transponder source: {pathreq.source}.'+'\x1b[0m'
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|             LOGGER.critical(msg)
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|             print(f'{msg}\nComputation stopped.')
 | |
|             raise ServiceError(msg)
 | |
| 
 | |
|         if pathreq.destination not in transponders:
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|             msg = f'\x1b[1;31;40m'+f'Request: {pathreq.request_id}: could not find' +\
 | |
|                   f' transponder destination: {pathreq.destination}.'+'\x1b[0m'
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|             LOGGER.critical(msg)
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|             print(f'{msg}\nComputation stopped.')
 | |
|             raise ServiceError(msg)
 | |
| 
 | |
|         # TODO remove endpoints from this list in case they were added by the user
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|         # in the xls or json files
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|     return pathreqlist
 | |
| 
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| def correct_disjn(disjn):
 | |
|     """ clean disjunctions to remove possible repetition
 | |
|     """
 | |
|     local_disjn = disjn.copy()
 | |
|     for elem in local_disjn:
 | |
|         for dis_elem in local_disjn:
 | |
|             if set(elem.disjunctions_req) == set(dis_elem.disjunctions_req) and\
 | |
|              elem.disjunction_id != dis_elem.disjunction_id:
 | |
|                 local_disjn.remove(dis_elem)
 | |
|     return local_disjn
 | |
| 
 | |
| 
 | |
| def path_result_json(pathresult):
 | |
|     """ create the response dictionnary
 | |
|     """
 | |
|     data = {
 | |
|         'response': [n.json for n in pathresult]
 | |
|     }
 | |
|     return data
 | |
| 
 | |
| def main(args):
 | |
|     """ main function that calls all functions
 | |
|     """
 | |
|     LOGGER.info(f'Computing path requests {args.service_filename} into JSON format')
 | |
|     print('\x1b[1;34;40m' +\
 | |
|           f'Computing path requests {args.service_filename} into JSON format'+ '\x1b[0m')
 | |
|     # for debug
 | |
|     # print( args.eqpt_filename)
 | |
| 
 | |
|     try:
 | |
|         data = load_requests(args.service_filename, args.eqpt_filename, args.bidir)
 | |
|         equipment = load_equipment(args.eqpt_filename)
 | |
|         network = load_network(args.network_filename, equipment)
 | |
|     except EquipmentConfigError as this_e:
 | |
|         print(f'{ansi_escapes.red}Configuration error in the equipment library:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
|     except NetworkTopologyError as this_e:
 | |
|         print(f'{ansi_escapes.red}Invalid network definition:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
|     except ConfigurationError as this_e:
 | |
|         print(f'{ansi_escapes.red}Configuration error:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
|     except ServiceError as this_e:
 | |
|         print(f'{ansi_escapes.red}Service error:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
| 
 | |
|     # Build the network once using the default power defined in SI in eqpt config
 | |
|     # TODO power density: db2linp(ower_dbm": 0)/power_dbm": 0 * nb channels as defined by
 | |
|     # spacing, f_min and f_max
 | |
|     p_db = equipment['SI']['default'].power_dbm
 | |
| 
 | |
|     p_total_db = p_db + lin2db(automatic_nch(equipment['SI']['default'].f_min,\
 | |
|         equipment['SI']['default'].f_max, equipment['SI']['default'].spacing))
 | |
|     build_network(network, equipment, p_db, p_total_db)
 | |
|     save_network(args.network_filename, network)
 | |
| 
 | |
|     oms_list = build_oms_list(network, equipment)
 | |
| 
 | |
|     try:
 | |
|         rqs = requests_from_json(data, equipment)
 | |
|     except ServiceError as this_e:
 | |
|         print(f'{ansi_escapes.red}Service error:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
|     # check that request ids are unique. Non unique ids, may
 | |
|     # mess the computation: better to stop the computation
 | |
|     all_ids = [r.request_id for r in rqs]
 | |
|     if len(all_ids) != len(set(all_ids)):
 | |
|         for item in list(set(all_ids)):
 | |
|             all_ids.remove(item)
 | |
|         msg = f'Requests id {all_ids} are not unique'
 | |
|         LOGGER.critical(msg)
 | |
|         exit()
 | |
|     try:
 | |
|         rqs = correct_route_list(network, rqs)
 | |
|     except ServiceError as this_e:
 | |
|         print(f'{ansi_escapes.red}Service error:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
|     # pths = compute_path(network, equipment, rqs)
 | |
|     dsjn = disjunctions_from_json(data)
 | |
| 
 | |
|     print('\x1b[1;34;40m' + f'List of disjunctions' + '\x1b[0m')
 | |
|     print(dsjn)
 | |
|     # need to warn or correct in case of wrong disjunction form
 | |
|     # disjunction must not be repeated with same or different ids
 | |
|     dsjn = correct_disjn(dsjn)
 | |
| 
 | |
|     # Aggregate demands with same exact constraints
 | |
|     print('\x1b[1;34;40m' + f'Aggregating similar requests' + '\x1b[0m')
 | |
| 
 | |
|     rqs, dsjn = requests_aggregation(rqs, dsjn)
 | |
|     # TODO export novel set of aggregated demands in a json file
 | |
| 
 | |
|     print('\x1b[1;34;40m' + 'The following services have been requested:' + '\x1b[0m')
 | |
|     print(rqs)
 | |
| 
 | |
|     print('\x1b[1;34;40m' + f'Computing all paths with constraints' + '\x1b[0m')
 | |
|     try:
 | |
|         pths = compute_path_dsjctn(network, equipment, rqs, dsjn)
 | |
|     except DisjunctionError as this_e:
 | |
|         print(f'{ansi_escapes.red}Disjunction error:{ansi_escapes.reset} {this_e}')
 | |
|         exit(1)
 | |
| 
 | |
|     print('\x1b[1;34;40m' + f'Propagating on selected path' + '\x1b[0m')
 | |
|     propagatedpths, reversed_pths, reversed_propagatedpths = \
 | |
|         compute_path_with_disjunction(network, equipment, rqs, pths)
 | |
|     # Note that deepcopy used in compute_path_with_disjunction returns
 | |
|     # a list of nodes which are not belonging to network (they are copies of the node objects).
 | |
|     # so there can not be propagation on these nodes.
 | |
| 
 | |
|     pth_assign_spectrum(pths, rqs, oms_list, reversed_pths)
 | |
| 
 | |
|     print('\x1b[1;34;40m'+f'Result summary'+ '\x1b[0m')
 | |
|     header = ['req id', '  demand', '  snr@bandwidth A-Z (Z-A)', '  snr@0.1nm A-Z (Z-A)',\
 | |
|               '  Receiver minOSNR', '  mode', '  Gbit/s', '  nb of tsp pairs',\
 | |
|               'N,M or blocking reason']
 | |
|     data = []
 | |
|     data.append(header)
 | |
|     for i, this_p in enumerate(propagatedpths):
 | |
|         rev_pth = reversed_propagatedpths[i]
 | |
|         if rev_pth and this_p:
 | |
|             psnrb = f'{round(mean(this_p[-1].snr),2)} ({round(mean(rev_pth[-1].snr),2)})'
 | |
|             psnr = f'{round(mean(this_p[-1].snr_01nm), 2)}' +\
 | |
|                    f' ({round(mean(rev_pth[-1].snr_01nm),2)})'
 | |
|         elif this_p:
 | |
|             psnrb = f'{round(mean(this_p[-1].snr),2)}'
 | |
|             psnr = f'{round(mean(this_p[-1].snr_01nm),2)}'
 | |
| 
 | |
|         try :
 | |
|             if rqs[i].blocking_reason in  BLOCKING_NOPATH:
 | |
|                 line = [f'{rqs[i].request_id}', f' {rqs[i].source} to {rqs[i].destination} :',\
 | |
|                         f'-', f'-', f'-', f'{rqs[i].tsp_mode}', f'{round(rqs[i].path_bandwidth * 1e-9,2)}',\
 | |
|                         f'-', f'{rqs[i].blocking_reason}']
 | |
|             else:
 | |
|                 line = [f'{rqs[i].request_id}', f' {rqs[i].source} to {rqs[i].destination} : ', psnrb,\
 | |
|                         psnr, f'-', f'{rqs[i].tsp_mode}', f'{round(rqs[i].path_bandwidth * 1e-9, 2)}',\
 | |
|                         f'-', f'{rqs[i].blocking_reason}']
 | |
|         except AttributeError:
 | |
|             line = [f'{rqs[i].request_id}', f' {rqs[i].source} to {rqs[i].destination} : ', psnrb,\
 | |
|                     psnr, f'{rqs[i].OSNR}', f'{rqs[i].tsp_mode}', f'{round(rqs[i].path_bandwidth * 1e-9,2)}',\
 | |
|                     f'{ceil(rqs[i].path_bandwidth / rqs[i].bit_rate) }', f'({rqs[i].N},{rqs[i].M})']
 | |
|         data.append(line)
 | |
| 
 | |
|     col_width = max(len(word) for row in data for word in row[2:])   # padding
 | |
|     firstcol_width = max(len(row[0]) for row in data)   # padding
 | |
|     secondcol_width = max(len(row[1]) for row in data)   # padding
 | |
|     for row in data:
 | |
|         firstcol = ''.join(row[0].ljust(firstcol_width))
 | |
|         secondcol = ''.join(row[1].ljust(secondcol_width))
 | |
|         remainingcols = ''.join(word.center(col_width, ' ') for word in row[2:])
 | |
|         print(f'{firstcol} {secondcol} {remainingcols}')
 | |
|     print('\x1b[1;33;40m'+f'Result summary shows mean SNR and OSNR (average over all channels)' +\
 | |
|           '\x1b[0m')
 | |
| 
 | |
|     if args.output:
 | |
|         result = []
 | |
|         # assumes that list of rqs and list of propgatedpths have same order
 | |
|         for i, pth in enumerate(propagatedpths):
 | |
|             result.append(Result_element(rqs[i], pth, reversed_propagatedpths[i]))
 | |
|         temp = path_result_json(result)
 | |
|         fnamecsv = f'{str(args.output)[0:len(str(args.output))-len(str(args.output.suffix))]}.csv'
 | |
|         fnamejson = f'{str(args.output)[0:len(str(args.output))-len(str(args.output.suffix))]}.json'
 | |
|         with open(fnamejson, 'w', encoding='utf-8') as fjson:
 | |
|             fjson.write(dumps(path_result_json(result), indent=2, ensure_ascii=False))
 | |
|             with open(fnamecsv, "w", encoding='utf-8') as fcsv:
 | |
|                 jsontocsv(temp, equipment, fcsv)
 | |
|                 print('\x1b[1;34;40m'+f'saving in {args.output} and {fnamecsv}'+ '\x1b[0m')
 | |
| 
 | |
| 
 | |
| if __name__ == '__main__':
 | |
|     ARGS = PARSER.parse_args()
 | |
|     basicConfig(level={2: DEBUG, 1: INFO, 0: CRITICAL}.get(ARGS.verbose, DEBUG))
 | |
|     main(ARGS)
 | 
