Delete profiles/countrycar.lua
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-- Car profile
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api_version = 4
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Set = require('lib/set')
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Sequence = require('lib/sequence')
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Handlers = require("lib/way_handlers")
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Relations = require("lib/relations")
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TrafficSignal = require("lib/traffic_signal")
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find_access_tag = require("lib/access").find_access_tag
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country_speeds = require("lib/country_speeds")
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limit = require("lib/maxspeed").limit
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Utils = require("lib/utils")
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Measure = require("lib/measure")
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function setup()
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return {
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properties = {
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max_speed_for_map_matching = 180/3.6, -- 180kmph -> m/s
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-- For routing based on duration, but weighted for preferring certain roads
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weight_name = 'routability',
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-- For shortest duration without penalties for accessibility
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-- weight_name = 'duration',
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-- For shortest distance without penalties for accessibility
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-- weight_name = 'distance',
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process_call_tagless_node = false,
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u_turn_penalty = 20,
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continue_straight_at_waypoint = true,
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use_turn_restrictions = true,
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left_hand_driving = false,
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traffic_light_penalty = 2,
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},
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profile = 'vehicle',
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default_mode = mode.driving,
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default_speed = 10,
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oneway_handling = true,
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side_road_multiplier = 0.8,
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turn_penalty = 7.5,
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speed_reduction = 0.8,
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turn_bias = 1.075,
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cardinal_directions = false,
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-- Size of the vehicle, to be limited by physical restriction of the way
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vehicle_height = 2.0, -- in meters, 2.0m is the height slightly above biggest SUVs
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vehicle_width = 1.9, -- in meters, ways with narrow tag are considered narrower than 2.2m
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-- Size of the vehicle, to be limited mostly by legal restriction of the way
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vehicle_length = 4.8, -- in meters, 4.8m is the length of large or family car
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vehicle_weight = 2000, -- in kilograms
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-- a list of suffixes to suppress in name change instructions. The suffixes also include common substrings of each other
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suffix_list = {
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'N', 'NE', 'E', 'SE', 'S', 'SW', 'W', 'NW', 'North', 'South', 'West', 'East', 'Nor', 'Sou', 'We', 'Ea'
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},
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barrier_whitelist = Set {
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'cattle_grid',
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'border_control',
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'toll_booth',
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'sally_port',
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'gate',
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'lift_gate',
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'no',
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'entrance',
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'height_restrictor',
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'arch'
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},
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access_tag_whitelist = Set {
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'yes',
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'motorcar',
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'motor_vehicle',
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'vehicle',
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'permissive',
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'designated',
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'hov'
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},
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access_tag_blacklist = Set {
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'no',
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'agricultural',
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'forestry',
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'emergency',
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'psv',
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'customers',
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'private',
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'delivery',
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'destination'
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},
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-- tags disallow access to in combination with highway=service
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service_access_tag_blacklist = Set {
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'private'
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},
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restricted_access_tag_list = Set {
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'private',
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'delivery',
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'destination',
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'customers',
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},
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access_tags_hierarchy = Sequence {
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'motorcar',
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'motor_vehicle',
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'vehicle',
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'access'
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},
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service_tag_forbidden = Set {
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'emergency_access'
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},
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restrictions = Sequence {
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'motorcar',
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'motor_vehicle',
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'vehicle'
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},
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classes = Sequence {
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'toll', 'motorway', 'ferry', 'restricted', 'tunnel'
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},
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-- classes to support for exclude flags
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excludable = Sequence {
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Set {'toll'},
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Set {'motorway'},
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Set {'ferry'}
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},
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avoid = Set {
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'area',
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-- 'toll', -- uncomment this to avoid tolls
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'reversible',
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'impassable',
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'hov_lanes',
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'steps',
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'construction',
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'proposed'
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},
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hwyspeeds = Sequence {
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highway = {
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motorway = 90,
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motorway_link = 45,
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trunk = 85,
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trunk_link = 40,
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primary = 65,
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primary_link = 30,
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secondary = 55,
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secondary_link = 25,
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tertiary = 40,
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tertiary_link = 20,
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unclassified = 25,
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residential = 25,
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living_street = 10,
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service = 15
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}
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},
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service_penalties = {
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alley = 0.5,
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parking = 0.5,
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parking_aisle = 0.5,
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driveway = 0.5,
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["drive-through"] = 0.5,
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["drive-thru"] = 0.5
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},
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restricted_highway_whitelist = Set {
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'motorway',
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'motorway_link',
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'trunk',
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'trunk_link',
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'primary',
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'primary_link',
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'secondary',
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'secondary_link',
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'tertiary',
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'tertiary_link',
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'residential',
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'living_street',
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'unclassified',
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'service'
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},
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construction_whitelist = Set {
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'no',
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'widening',
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'minor',
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},
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route_speeds = {
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ferry = 5,
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shuttle_train = 10
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},
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bridge_speeds = {
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movable = 5
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},
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-- surface/trackype/smoothness
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-- values were estimated from looking at the photos at the relevant wiki pages
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-- max speed for surfaces
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surface_speeds = {
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asphalt = nil, -- nil mean no limit. removing the line has the same effect
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concrete = nil,
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["concrete:plates"] = nil,
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["concrete:lanes"] = nil,
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paved = nil,
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cement = 80,
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compacted = 80,
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fine_gravel = 80,
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paving_stones = 60,
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metal = 60,
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bricks = 60,
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grass = 40,
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wood = 40,
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sett = 40,
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grass_paver = 40,
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gravel = 40,
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unpaved = 40,
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ground = 40,
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dirt = 40,
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pebblestone = 40,
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tartan = 40,
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cobblestone = 30,
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clay = 30,
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earth = 20,
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stone = 20,
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rocky = 20,
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sand = 20,
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mud = 10
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},
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-- max speed for tracktypes
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tracktype_speeds = {
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grade1 = 60,
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grade2 = 40,
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grade3 = 30,
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grade4 = 25,
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grade5 = 20
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},
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-- max speed for smoothnesses
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smoothness_speeds = {
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intermediate = 80,
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bad = 40,
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very_bad = 20,
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horrible = 10,
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very_horrible = 5,
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impassable = 0
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},
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-- http://wiki.openstreetmap.org/wiki/Speed_limits
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maxspeed_table_default = {
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urban = 50,
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rural = 90,
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trunk = 110,
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motorway = 130
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},
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-- List only exceptions
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maxspeed_table = {
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["at:rural"] = 100,
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["at:trunk"] = 100,
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["be:motorway"] = 120,
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["be-bru:rural"] = 70,
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["be-bru:urban"] = 30,
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["be-vlg:rural"] = 70,
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["bg:motorway"] = 140,
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["by:urban"] = 60,
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["by:motorway"] = 110,
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["ca-on:rural"] = 80,
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["ch:rural"] = 80,
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["ch:trunk"] = 100,
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["ch:motorway"] = 120,
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["cz:trunk"] = 0,
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["cz:motorway"] = 0,
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["de:living_street"] = 7,
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["de:rural"] = 100,
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["de:motorway"] = 0,
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["dk:rural"] = 80,
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["es:trunk"] = 90,
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["fr:rural"] = 80,
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["gb:nsl_single"] = (60*1609)/1000,
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["gb:nsl_dual"] = (70*1609)/1000,
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["gb:motorway"] = (70*1609)/1000,
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["nl:rural"] = 80,
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["nl:trunk"] = 100,
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['no:rural'] = 80,
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['no:motorway'] = 110,
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['ph:urban'] = 40,
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['ph:rural'] = 80,
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['ph:motorway'] = 100,
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['pl:rural'] = 100,
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['pl:trunk'] = 120,
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['pl:motorway'] = 140,
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["ro:trunk"] = 100,
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["ru:living_street"] = 20,
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["ru:urban"] = 60,
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["ru:motorway"] = 110,
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["uk:nsl_single"] = (60*1609)/1000,
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["uk:nsl_dual"] = (70*1609)/1000,
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["uk:motorway"] = (70*1609)/1000,
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['za:urban'] = 60,
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['za:rural'] = 100,
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["none"] = 140
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},
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relation_types = Sequence {
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"route"
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},
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-- classify highway tags when necessary for turn weights
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highway_turn_classification = {
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},
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-- classify access tags when necessary for turn weights
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access_turn_classification = {
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},
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uselocationtags = Set
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{
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'countryspeeds',
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}
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}
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end
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function process_node(profile, node, result, relations)
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-- parse access and barrier tags
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local access = find_access_tag(node, profile.access_tags_hierarchy)
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if access then
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if profile.access_tag_blacklist[access] and not profile.restricted_access_tag_list[access] then
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result.barrier = true
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end
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else
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local barrier = node:get_value_by_key("barrier")
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if barrier then
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-- check height restriction barriers
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local restricted_by_height = false
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if barrier == 'height_restrictor' then
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local maxheight = Measure.get_max_height(node:get_value_by_key("maxheight"), node)
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restricted_by_height = maxheight and maxheight < profile.vehicle_height
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end
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-- make an exception for rising bollard barriers
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local bollard = node:get_value_by_key("bollard")
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local rising_bollard = bollard and "rising" == bollard
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-- make an exception for lowered/flat barrier=kerb
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-- and incorrect tagging of highway crossing kerb as highway barrier
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local kerb = node:get_value_by_key("kerb")
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local highway = node:get_value_by_key("highway")
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local flat_kerb = kerb and ("lowered" == kerb or "flush" == kerb)
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local highway_crossing_kerb = barrier == "kerb" and highway and highway == "crossing"
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if not profile.barrier_whitelist[barrier]
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and not rising_bollard
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and not flat_kerb
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and not highway_crossing_kerb
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or restricted_by_height then
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result.barrier = true
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end
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end
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end
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-- check if node is a traffic light
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result.traffic_lights = TrafficSignal.get_value(node)
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end
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function process_way(profile, way, result, relations)
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-- the intial filtering of ways based on presence of tags
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-- affects processing times significantly, because all ways
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-- have to be checked.
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-- to increase performance, prefetching and intial tag check
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-- is done in directly instead of via a handler.
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-- in general we should try to abort as soon as
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-- possible if the way is not routable, to avoid doing
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-- unnecessary work. this implies we should check things that
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-- commonly forbids access early, and handle edge cases later.
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-- data table for storing intermediate values during processing
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local data = {
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-- prefetch tags
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highway = way:get_value_by_key('highway'),
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bridge = way:get_value_by_key('bridge'),
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route = way:get_value_by_key('route')
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}
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-- perform an quick initial check and abort if the way is
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-- obviously not routable.
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-- highway or route tags must be in data table, bridge is optional
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if (not data.highway or data.highway == '') and
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(not data.route or data.route == '')
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then
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return
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end
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if profile.uselocationtags and profile.uselocationtags.countryspeeds then
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data.location = country_speeds.getcountrytag(way)
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end
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handlers = Sequence {
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-- set the default mode for this profile. if can be changed later
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-- in case it turns we're e.g. on a ferry
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WayHandlers.default_mode,
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-- check various tags that could indicate that the way is not
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-- routable. this includes things like status=impassable,
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-- toll=yes and oneway=reversible
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WayHandlers.blocked_ways,
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WayHandlers.avoid_ways,
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WayHandlers.handle_height,
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WayHandlers.handle_width,
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WayHandlers.handle_length,
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WayHandlers.handle_weight,
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-- determine access status by checking our hierarchy of
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-- access tags, e.g: motorcar, motor_vehicle, vehicle
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WayHandlers.access,
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-- check whether forward/backward directions are routable
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WayHandlers.oneway,
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-- check a road's destination
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WayHandlers.destinations,
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-- check whether we're using a special transport mode
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WayHandlers.ferries,
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WayHandlers.movables,
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-- handle service road restrictions
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WayHandlers.service,
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-- handle hov
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WayHandlers.hov,
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-- compute speed taking into account way type, maxspeed tags, etc.
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country_speeds.wayspeed,
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WayHandlers.maxspeed,
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WayHandlers.surface,
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WayHandlers.penalties,
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-- compute class labels
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WayHandlers.classes,
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-- handle turn lanes and road classification, used for guidance
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WayHandlers.turn_lanes,
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WayHandlers.classification,
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-- handle various other flags
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WayHandlers.roundabouts,
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WayHandlers.startpoint,
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WayHandlers.driving_side,
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-- set name, ref and pronunciation
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WayHandlers.names,
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-- set weight properties of the way
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WayHandlers.weights,
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-- set classification of ways relevant for turns
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WayHandlers.way_classification_for_turn
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}
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WayHandlers.run(profile, way, result, data, handlers, relations)
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if profile.cardinal_directions then
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Relations.process_way_refs(way, relations, result)
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end
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end
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function process_turn(profile, turn)
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-- Use a sigmoid function to return a penalty that maxes out at turn_penalty
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-- over the space of 0-180 degrees. Values here were chosen by fitting
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-- the function to some turn penalty samples from real driving.
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local turn_penalty = profile.turn_penalty
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local turn_bias = turn.is_left_hand_driving and 1. / profile.turn_bias or profile.turn_bias
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if turn.has_traffic_light then
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turn.duration = profile.properties.traffic_light_penalty
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end
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if turn.number_of_roads > 2 or turn.source_mode ~= turn.target_mode or turn.is_u_turn then
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if turn.angle >= 0 then
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turn.duration = turn.duration + turn_penalty / (1 + math.exp( -((13 / turn_bias) * turn.angle/180 - 6.5*turn_bias)))
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else
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turn.duration = turn.duration + turn_penalty / (1 + math.exp( -((13 * turn_bias) * -turn.angle/180 - 6.5/turn_bias)))
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end
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if turn.is_u_turn then
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turn.duration = turn.duration + profile.properties.u_turn_penalty
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end
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end
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-- for distance based routing we don't want to have penalties based on turn angle
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if profile.properties.weight_name == 'distance' then
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turn.weight = 0
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else
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turn.weight = turn.duration
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end
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if profile.properties.weight_name == 'routability' then
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-- penalize turns from non-local access only segments onto local access only tags
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if not turn.source_restricted and turn.target_restricted then
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turn.weight = constants.max_turn_weight
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end
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end
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end
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return {
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setup = setup,
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process_way = process_way,
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process_node = process_node,
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process_turn = process_turn
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}
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