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Separated data loading and simulation run
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@ -31,7 +31,7 @@ class Config:
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"""
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Default constructor
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"""
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def import_config_file(self, config_file):
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"""
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Import your configuration file in JSON format
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@ -78,8 +78,8 @@ class Config:
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f'adjust traffic light mode = {self.adjust_traffic_light_mode},'
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f'RF = {self.trafficLights_duration_rf * 100}%\n'
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)
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def init_traci(self):
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def init_traci(self, simulation_dir):
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"""
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Init the Traci API
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:return:
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@ -89,7 +89,8 @@ class Config:
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sys.path.append(tools)
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else:
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sys.exit("please declare environment variable 'SUMO_HOME'")
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self._SUMOCFG = f'files/simulations/{simulation_dir}/osm.sumocfg'
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sumo_binary = os.path.join(os.environ['SUMO_HOME'], 'bin', self._SUMOCMD)
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self.sumo_cmd = [sumo_binary, "-c", self._SUMOCFG]
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@ -25,30 +25,25 @@ from parse import search
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from shapely.geometry import LineString
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import actions
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from config import Config
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from model import Area, Vehicle, Lane, TrafficLight, Phase, Logic, Emission
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class Data:
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def __init__(self, map_bounds, config : Config):
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def __init__(self, map_bounds, areas_number,simulation_dir):
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"""
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Data constructor
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"""
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self.map_bounds = map_bounds
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self.config = config
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self.areas_number = areas_number
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self.dir = simulation_dir
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def init_grid(self):
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"""
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Initialize the grid of the loaded map from the configuration
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:param self.map_bounds: The map bounds
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:param areas_number: The number of areas
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:param window_size: The size of the acquisition window
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:return: A list of areas
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Initialize the grid of the loaded map from the cfg file with areas_number x areas_number areas
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"""
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self.grid = list()
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areas_number = self.config.areas_number
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window_size = self.config.window_size
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areas_number = self.areas_number
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width = self.map_bounds[1][0] / areas_number
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height = self.map_bounds[1][1] / areas_number
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@ -58,7 +53,7 @@ class Data:
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ar_bounds = ((i * width, j * height), (i * width, (j + 1) * height),
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((i + 1) * width, (j + 1) * height), ((i + 1) * width, j * height))
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name = 'Area ({},{})'.format(i, j)
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area = Area(ar_bounds, name, window_size)
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area = Area(ar_bounds, name)
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self.grid.append(area)
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return self.grid
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@ -1,8 +1,6 @@
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{
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"_SUMOCMD": "sumo",
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"_SUMOCFG": "files/simulations/mulhouse_simulation/osm.sumocfg",
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"areas_number": 10,
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"emissions_threshold": 500000,
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"n_steps": 200,
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"window_size":100,
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@ -153,13 +153,12 @@ class Area:
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The Area class defines a grid area of the simulation map
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"""
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def __init__(self, coords, name, window_size):
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def __init__(self, coords, name):
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"""
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Area constructor
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:param coords: The coordinates of the zone,
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defined by the bounds coordinates of this area : (xmin, ymin, xmax, ymax)
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:param name: The Area name
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:param window_size: The size of the acquisition window
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"""
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self.limited_speed = False
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self.locked = False
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@ -168,10 +167,12 @@ class Area:
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self.rectangle = Polygon(coords)
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self.name = name
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self.emissions_by_step = []
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self.window = collections.deque(maxlen=window_size)
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self._lanes: Set[Lane] = set()
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self._tls: Set[TrafficLight] = set()
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def set_window_size(self, window_size):
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self.window = collections.deque(maxlen=window_size)
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def __eq__(self, other):
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"""
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Overrides the equal definition
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@ -1,7 +1,7 @@
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'''
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Created on 19 janv. 2019
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@author: Admin
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@author: Axel Huynh-Phuc
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'''
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import argparse
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@ -17,50 +17,58 @@ from data import Data
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import emissions
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from model import Emission
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"""
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Init the Traci API
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"""
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if 'SUMO_HOME' in os.environ:
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tools = os.path.join(os.environ['SUMO_HOME'], 'tools')
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sys.path.append(tools)
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else:
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sys.exit("please declare environment variable 'SUMO_HOME'")
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def add_options(parser):
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"""
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Add command line options
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:param parser: The command line parser
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:return:
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"""
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parser.add_argument("-new_dump", "--new_dump", metavar=('config_file', 'dump_name'), nargs=2, type=str,
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# TODO: Faire que -areas & -simulation_dir soit requis si -new_dump
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# Faire que -c soit requis si -run
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parser.add_argument("-new_dump", "--new_dump", type=str,
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required=False, help='Load and create a new data dump with the configuration file chosen')
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parser.add_argument("-run", "--run", type=str, required=False,
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parser.add_argument("-areas", "--areas", type=int, required=False,
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help='Will create a grid with "areas x areas" areas')
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parser.add_argument("-simulation_dir", "--simulation_dir", type=str, required=False,
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help='Choose the simulation directory')
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parser.add_argument("-run", "--run", type=str,
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help='Run a simulation with the dump chosen')
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parser.add_argument("-c", "--c", type=str,
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help='Choose your configuration file from your working directory')
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parser.add_argument("-save", "--save", action="store_true",
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help='Save the logs into the logs folder')
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parser.add_argument("-csv", "--csv", action="store_true",
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help="Export all data emissions into a CSV file")
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parser.add_argument("-steps", "--steps", type=int, default=200, required=False,
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help='Choose the simulated time (in seconds)')
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parser.add_argument("-ref", "--ref", action="store_true",
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help='Launch a reference simulation (without acting on areas)')
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parser.add_argument("-gui", "--gui", action="store_true",
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help="Set GUI mode")
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def create_dump(config_file, dump_name):
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def create_dump(dump_name, simulation_dir, areas_number):
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"""
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Create a new dump with config file and dump_name chosen
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:param config_file: The configuration file
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:param dump_name: The dump name
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:param cfg_file: The simulation file
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:param areas_number: The number of areas in grid
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:return:
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"""
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config = Config()
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config.import_config_file(config_file)
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config.check_config()
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config.init_traci()
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sumo_binary = os.path.join(os.environ['SUMO_HOME'], 'bin', 'sumo')
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sumo_cmd = [sumo_binary, "-c", config._SUMOCFG]
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sumo_cmd = [sumo_binary, "-c", f'files/simulations/{simulation_dir}/osm.sumocfg']
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traci.start(sumo_cmd)
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if not os.path.isfile(f'files/dump/{dump_name}.json'):
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start = time.perf_counter()
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data = Data(traci.simulation.getNetBoundary(), config)
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data = Data(traci.simulation.getNetBoundary(), areas_number, simulation_dir)
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data.init_grid()
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data.add_data_to_areas()
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data.save(dump_name)
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@ -74,32 +82,33 @@ def create_dump(config_file, dump_name):
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traci.close(False)
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def run(data : Data, logger):
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def run(data : Data, config : Config, logger):
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"""
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Run a data set
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:param data: The data instance
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:param logger: The logger instance
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"""
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try:
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traci.start(data.config.sumo_cmd)
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traci.start(config.sumo_cmd)
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for area in data.grid:
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for area in data.grid: # Set acquisition window size
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area.set_window_size(config.window_size)
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traci.polygon.add(area.name, area.rectangle.exterior.coords, (255, 0, 0)) # Add polygon for UI
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logger.info(f'Loaded simulation file : {data.config._SUMOCFG}')
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logger.info(f'Loaded simulation file : {config._SUMOCFG}')
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logger.info('Loading data for the simulation')
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start = time.perf_counter()
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logger.info('Simulation started...')
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step = 0
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while step < data.config.n_steps:
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while step < config.n_steps:
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traci.simulationStep()
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vehicles = emissions.get_all_vehicles()
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emissions.get_emissions(data.grid, vehicles, step, data.config, logger)
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emissions.get_emissions(data.grid, vehicles, step, config, logger)
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step += 1
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print(f'step = {step}/{data.config.n_steps}', end='\r')
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print(f'step = {step}/{config.n_steps}', end='\r')
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finally:
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traci.close(False)
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@ -116,59 +125,54 @@ def main(args):
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args = parser.parse_args(args)
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if args.new_dump is not None:
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create_dump(args.new_dump[0], args.new_dump[1]) # (config_file, dump_name)
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if (args.simulation_dir is not None) and (args.areas is not None):
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create_dump(args.new_dump, args.simulation_dir, args.areas)
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if args.run is not None:
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dump_path = f'files/dump/{args.run}.json'
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if os.path.isfile(dump_path):
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with open(dump_path, 'r') as f:
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data = jsonpickle.decode(f.read())
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data.config.init_traci()
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logger = data.config.init_logger(dump_name=args.run, save_logs=args.save)
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if args.gui:
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data.config._SUMOCMD = "sumo-gui"
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if args.ref:
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data.config.without_actions_mode = True
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logger.info(f'Reference simulation')
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if args.steps:
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data.config.n_steps = args.steps
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data.config.check_config()
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config = Config()
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if args.c is not None:
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config.import_config_file(args.c)
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config.init_traci(data.dir)
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logger = config.init_logger(dump_name=args.run, save_logs=args.save)
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config.check_config()
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logger.info(f'Running simulation dump {args.run}...')
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start = time.perf_counter()
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run(data, logger)
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run(data, config, logger)
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simulation_time = round(time.perf_counter() - start, 2)
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logger.info(f'End of the simulation ({simulation_time}s)')
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if args.csv:
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emissions.export_data_to_csv(data.config, data.grid, dump_name=args.run)
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logger.info(f'Exported data into the csv folder')
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if args.csv:
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emissions.export_data_to_csv(config, data.grid, dump_name=args.run)
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logger.info(f'Exported data into the csv folder')
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# 1 step is equal to one second simulated
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logger.info(f'Real-time factor : {data.config.n_steps / simulation_time}')
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total_emissions = Emission()
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for area in data.grid:
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total_emissions += area.sum_all_emissions()
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logger.info(f'Total emissions = {total_emissions.value()} mg')
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if not data.config.without_actions_mode: # If it's not a simulation without actions
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ref = data.config.get_ref_emissions()
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if not (ref is None): # If a reference value exist (add yours into config.py)
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global_diff = (ref.value() - total_emissions.value()) / ref.value()
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logger.info(f'Global reduction percentage of emissions = {global_diff * 100} %')
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logger.info(f'-> CO2 emissions = {emissions.get_reduction_percentage(ref.co2, total_emissions.co2)} %')
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logger.info(f'-> CO emissions = {emissions.get_reduction_percentage(ref.co, total_emissions.co)} %')
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logger.info(f'-> Nox emissions = {emissions.get_reduction_percentage(ref.nox, total_emissions.nox)} %')
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logger.info(f'-> HC emissions = {emissions.get_reduction_percentage(ref.hc, total_emissions.hc)} %')
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logger.info(f'-> PMx emissions = {emissions.get_reduction_percentage(ref.pmx, total_emissions.pmx)} %')
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# 1 step is equal to one second simulated
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logger.info(f'Real-time factor : {config.n_steps / simulation_time}')
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total_emissions = Emission()
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for area in data.grid:
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total_emissions += area.sum_all_emissions()
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logger.info(f'Total emissions = {total_emissions.value()} mg')
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if not config.without_actions_mode: # If it's not a simulation without actions
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ref = config.get_ref_emissions()
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if not (ref is None): # If a reference value exist (add yours into config.py)
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global_diff = (ref.value() - total_emissions.value()) / ref.value()
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logger.info(f'Global reduction percentage of emissions = {global_diff * 100} %')
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logger.info(f'-> CO2 emissions = {emissions.get_reduction_percentage(ref.co2, total_emissions.co2)} %')
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logger.info(f'-> CO emissions = {emissions.get_reduction_percentage(ref.co, total_emissions.co)} %')
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logger.info(f'-> Nox emissions = {emissions.get_reduction_percentage(ref.nox, total_emissions.nox)} %')
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logger.info(f'-> HC emissions = {emissions.get_reduction_percentage(ref.hc, total_emissions.hc)} %')
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logger.info(f'-> PMx emissions = {emissions.get_reduction_percentage(ref.pmx, total_emissions.pmx)} %')
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if __name__ == '__main__':
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