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# Copyright 2015 gRPC authors.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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"""The Python implementation of the gRPC route guide server."""
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from concurrent import futures
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import time
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import math
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import grpc
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import route_guide_pb2
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import route_guide_pb2_grpc
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import route_guide_resources
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_ONE_DAY_IN_SECONDS = 60 * 60 * 24
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def get_feature(feature_db, point):
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"""Returns Feature at given location or None."""
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for feature in feature_db:
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if feature.location == point:
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return feature
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return None
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def get_distance(start, end):
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"""Distance between two points."""
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coord_factor = 10000000.0
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lat_1 = start.latitude / coord_factor
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lat_2 = end.latitude / coord_factor
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lon_1 = start.longitude / coord_factor
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lon_2 = end.longitude / coord_factor
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lat_rad_1 = math.radians(lat_1)
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lat_rad_2 = math.radians(lat_2)
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delta_lat_rad = math.radians(lat_2 - lat_1)
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delta_lon_rad = math.radians(lon_2 - lon_1)
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# Formula is based on http://mathforum.org/library/drmath/view/51879.html
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a = (pow(math.sin(delta_lat_rad / 2), 2) +
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(math.cos(lat_rad_1) * math.cos(lat_rad_2) * pow(
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math.sin(delta_lon_rad / 2), 2)))
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c = 2 * math.atan2(math.sqrt(a), math.sqrt(1 - a))
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R = 6371000
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# metres
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return R * c
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class RouteGuideServicer(route_guide_pb2_grpc.RouteGuideServicer):
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"""Provides methods that implement functionality of route guide server."""
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def __init__(self):
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self.db = route_guide_resources.read_route_guide_database()
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def GetFeature(self, request, context):
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feature = get_feature(self.db, request)
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if feature is None:
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return route_guide_pb2.Feature(name="", location=request)
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else:
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return feature
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def ListFeatures(self, request, context):
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left = min(request.lo.longitude, request.hi.longitude)
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right = max(request.lo.longitude, request.hi.longitude)
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top = max(request.lo.latitude, request.hi.latitude)
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bottom = min(request.lo.latitude, request.hi.latitude)
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for feature in self.db:
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if (feature.location.longitude >= left and
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feature.location.longitude <= right and
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feature.location.latitude >= bottom and
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feature.location.latitude <= top):
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yield feature
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def RecordRoute(self, request_iterator, context):
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point_count = 0
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feature_count = 0
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distance = 0.0
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prev_point = None
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start_time = time.time()
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for point in request_iterator:
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point_count += 1
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if get_feature(self.db, point):
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feature_count += 1
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if prev_point:
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distance += get_distance(prev_point, point)
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prev_point = point
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elapsed_time = time.time() - start_time
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return route_guide_pb2.RouteSummary(
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point_count=point_count,
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feature_count=feature_count,
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distance=int(distance),
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elapsed_time=int(elapsed_time))
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def RouteChat(self, request_iterator, context):
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prev_notes = []
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for new_note in request_iterator:
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for prev_note in prev_notes:
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if prev_note.location == new_note.location:
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yield prev_note
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prev_notes.append(new_note)
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def serve():
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server = grpc.server(futures.ThreadPoolExecutor(max_workers=10))
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route_guide_pb2_grpc.add_RouteGuideServicer_to_server(
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RouteGuideServicer(), server)
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server.add_insecure_port('[::]:50051')
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server.start()
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try:
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while True:
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time.sleep(_ONE_DAY_IN_SECONDS)
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except KeyboardInterrupt:
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server.stop(0)
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if __name__ == '__main__':
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serve()
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