Esempio n. 1
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def parse_in(txt: str) -> (MetarData, Units):
    """
    Parser for the International METAR variant
    """
    units = Units(**IN_UNITS)
    clean = core.sanitize_report_string(txt)
    wxresp = {'raw': txt, 'sanitized': clean}
    wxdata, wxresp['remarks'] = core.get_remarks(clean)
    wxdata, wxresp['runway_visibility'], _ = core.sanitize_report_list(wxdata)
    wxdata, wxresp['station'], wxresp['time'] = core.get_station_and_time(
        wxdata)
    if 'CAVOK' not in wxdata:
        wxdata, wxresp['clouds'] = core.get_clouds(wxdata)
    wxdata, wxresp['wind_direction'], wxresp['wind_speed'], \
        wxresp['wind_gust'], wxresp['wind_variable_direction'] = core.get_wind(wxdata, units)
    wxdata, wxresp['altimeter'] = core.get_altimeter(wxdata, units, 'IN')
    if 'CAVOK' in wxdata:
        wxresp['visibility'] = core.make_number('CAVOK')
        wxresp['clouds'] = []
        wxdata.remove('CAVOK')
    else:
        wxdata, wxresp['visibility'] = core.get_visibility(wxdata, units)
    wxresp['other'], wxresp['temperature'], wxresp[
        'dewpoint'] = core.get_temp_and_dew(wxdata)
    condition = core.get_flight_rules(wxresp['visibility'],
                                      core.get_ceiling(wxresp['clouds']))
    wxresp['flight_rules'] = FLIGHT_RULES[condition]
    wxresp['remarks_info'] = remarks.parse(wxresp['remarks'])
    wxresp['time'] = core.make_timestamp(wxresp['time'])
    return MetarData(**wxresp), units
Esempio n. 2
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def parse_in(txt: str) -> {str: object}:
    """
    Parser for the International METAR variant
    """
    units = copy(IN_UNITS)
    wxresp = {}
    txt = core.sanitize_report_string(txt)
    wxdata, wxresp['Remarks'] = core.get_remarks(txt)
    wxdata, wxresp['Runway-Vis-List'], _ = core.sanitize_report_list(wxdata)
    wxdata, wxresp['Station'], wxresp['Time'] = core.get_station_and_time(
        wxdata)
    if 'CAVOK' not in wxdata:
        wxdata, wxresp['Cloud-List'] = core.get_clouds(wxdata)
    wxdata, units, wxresp['Wind-Direction'], wxresp['Wind-Speed'], \
        wxresp['Wind-Gust'], wxresp['Wind-Variable-Dir'] = core.get_wind(wxdata, units)
    wxdata, units, wxresp['Altimeter'] = core.get_altimeter(
        wxdata, units, 'IN')
    if 'CAVOK' in wxdata:
        wxresp['Visibility'] = '9999'
        wxresp['Cloud-List'] = []
        wxdata.remove('CAVOK')
    else:
        wxdata, units, wxresp['Visibility'] = core.get_visibility(
            wxdata, units)
    wxresp['Other-List'], wxresp['Temperature'], wxresp[
        'Dewpoint'] = core.get_temp_and_dew(wxdata)
    wxresp['Units'] = units
    condition = core.get_flight_rules(wxresp['Visibility'],
                                      core.get_ceiling(wxresp['Cloud-List']))
    wxresp['Flight-Rules'] = FLIGHT_RULES[condition]
    wxresp['Remarks-Info'] = core.parse_remarks(wxresp['Remarks'])
    return wxresp
Esempio n. 3
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def parse_na(report: str) -> (MetarData, Units):
    """
    Parser for the North American METAR variant
    """
    units = Units(**NA_UNITS)
    clean = core.sanitize_report_string(report)
    wxresp = {'raw': report, 'sanitized': clean}
    wxdata, wxresp['remarks'] = core.get_remarks(clean)
    wxdata = core.dedupe(wxdata)
    wxdata, wxresp['runway_visibility'], _ = core.sanitize_report_list(wxdata)
    wxdata, wxresp['station'], wxresp['time'] = core.get_station_and_time(
        wxdata)
    wxdata, wxresp['clouds'] = core.get_clouds(wxdata)
    wxdata, wxresp['wind_direction'], wxresp['wind_speed'], \
        wxresp['wind_gust'], wxresp['wind_variable_direction'] = core.get_wind(wxdata, units)
    wxdata, wxresp['altimeter'] = core.get_altimeter(wxdata, units, 'NA')
    wxdata, wxresp['visibility'] = core.get_visibility(wxdata, units)
    wxresp['other'], wxresp['temperature'], wxresp[
        'dewpoint'] = core.get_temp_and_dew(wxdata)
    condition = core.get_flight_rules(wxresp['visibility'],
                                      core.get_ceiling(wxresp['clouds']))
    wxresp['flight_rules'] = FLIGHT_RULES[condition]
    wxresp['remarks_info'] = remarks.parse(wxresp['remarks'])
    wxresp['time'] = core.make_timestamp(wxresp['time'])
    return MetarData(**wxresp), units
Esempio n. 4
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 def test_get_ceiling(self):
     """
     Tests that the ceiling is properly identified from a list of clouds
     """
     for clouds, ceiling in (
         ([], None),
         ([['FEW', 10], ['SCT', 10]], None),
         ([['OVC', None]], None),
         ([['VV', 5]], ['VV', 5]),
         ([['OVC', 20], ['BKN', 30]], ['OVC', 20]),
         ([['OVC', None], ['BKN', 30]], ['BKN', 30]),
         ([['FEW', 10], ['OVC', 20]], ['OVC', 20]),
     ):
         clouds = [structs.Cloud(None, *cloud) for cloud in clouds]
         if ceiling:
             ceiling = structs.Cloud(None, *ceiling)
         self.assertEqual(core.get_ceiling(clouds), ceiling)
Esempio n. 5
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 def test_get_ceiling(self):
     """
     Tests that the ceiling is properly identified from a list of clouds
     """
     for clouds, ceiling in (
         ([], None),
         ([['FEW', 10], ['SCT', 10]], None),
         ([['OVC', None]], None),
         ([['VV', 5]], ['VV', 5]),
         ([['OVC', 20], ['BKN', 30]], ['OVC', 20]),
         ([['OVC', None], ['BKN', 30]], ['BKN', 30]),
         ([['FEW', 10], ['OVC', 20]], ['OVC', 20]),
     ):
         clouds = [structs.Cloud(None, *cloud) for cloud in clouds]
         if ceiling:
             ceiling = structs.Cloud(None, *ceiling)
         self.assertEqual(core.get_ceiling(clouds), ceiling)