914 lines
27 KiB
Python
914 lines
27 KiB
Python
# aprslib - Python library for working with APRS
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# Copyright (C) 2013-2014 Rossen Georgiev
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License along
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# with this program; if not, write to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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"""
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This module contains all function used in parsing packets
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"""
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import time
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import re
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import math
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import logging
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from datetime import datetime
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try:
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import chardet
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except ImportError:
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# create fake chardet
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class chardet:
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@staticmethod
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def detect(x):
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return {'confidence': 0.0, 'encoding': 'windows-1252'}
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from .exceptions import (UnknownFormat, ParseError)
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from . import base91, string_type_parse, is_py3
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__all__ = ['parse']
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logger = logging.getLogger(__name__)
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# Mic-e message type table
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MTYPE_TABLE_STD = {
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"111": "M0: Off Duty",
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"110": "M1: En Route",
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"101": "M2: In Service",
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"100": "M3: Returning",
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"011": "M4: Committed",
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"010": "M5: Special",
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"001": "M6: Priority",
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"000": "Emergency",
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}
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MTYPE_TABLE_CUSTOM = {
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"111": "C0: Custom-0",
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"110": "C1: Custom-1",
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"101": "C2: Custom-2",
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"100": "C3: Custom-3",
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"011": "C4: Custom-4",
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"010": "C5: Custom-5",
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"001": "C6: Custom-6",
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"000": "Emergency",
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}
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def parse(packet):
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"""
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Parses an APRS packet and returns a dict with decoded data
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- All attributes are in metric units
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Supports:
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* normal/compressed/mic-e position reports
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- including comment extentions for altitude and telemetry
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* messages including bulletins, announcements and telemetry
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* status message
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"""
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if not isinstance(packet, string_type_parse):
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raise TypeError("Epected packet to be str/unicode/bytes, got %s", type(packet))
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# attempt to detect encoding
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if isinstance(packet, bytes):
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try:
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packet = packet.decode('utf-8')
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except UnicodeDecodeError:
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res = chardet.detect(packet.split(b':', 1)[-1])
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if res['confidence'] > 0.7:
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packet = packet.decode(res['encoding'])
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else:
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packet = packet.decode('latin-1')
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packet = packet.rstrip("\r\n")
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logger.debug("Parsing: %s", packet)
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if len(packet) == 0:
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raise ParseError("packet is empty", packet)
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# typical packet format
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#
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# CALL1>CALL2,CALL3,CALL4:>longtext......
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# |--------header---------|-----body------|
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#
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try:
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(head, body) = packet.split(':', 1)
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except:
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raise ParseError("packet has no body", packet)
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if len(body) == 0:
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raise ParseError("packet body is empty", packet)
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parsed = {
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'raw': packet,
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}
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try:
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parsed.update(_parse_header(head))
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except ParseError as msg:
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raise ParseError(str(msg), packet)
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packet_type = body[0]
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body = body[1:]
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if len(body) == 0 and packet_type != '>':
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raise ParseError("packet body is empty after packet type character", packet)
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# attempt to parse the body
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# ------------------------------------------------------------------------------
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try:
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# NOT SUPPORTED FORMATS
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#
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# # - raw weather report
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# $ - raw gps
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# % - agrelo
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# & - reserved
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# ( - unused
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# ) - item report
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# * - complete weather report
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# + - reserved
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# , - invalid/test format
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# - - unused
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# . - reserved
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# < - station capabilities
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# ? - general query format
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# T - telemetry report
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# [ - maidenhead locator beacon
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# \ - unused
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# ] - unused
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# ^ - unused
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# _ - positionless weather report
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# { - user defined
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# } - 3rd party traffic
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if packet_type in '#$%)*,<?T[_{}':
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raise UnknownFormat("format is not supported", packet)
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# STATUS PACKET
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#
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# >DDHHMMzComments
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# >Comments
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elif packet_type == '>':
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logger.debug("Packet is just a status message")
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body, result = _parse_timestamp(body, packet_type)
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parsed.update(result)
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parsed.update({
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'format': 'status',
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'status': body.strip(' ')
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})
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# Mic-encoded packet
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elif packet_type in "`'":
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logger.debug("Attempting to parse as mic-e packet")
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body, result = _parse_mice(parsed['to'], body)
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parsed.update(result)
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# MESSAGE PACKET
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elif packet_type == ':':
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logger.debug("Attempting to parse as message packet")
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body, result = _parse_message(body)
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parsed.update(result)
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# postion report (regular or compressed)
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elif (packet_type in '!=/@;' or
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0 <= body.find('!') < 40): # page 28 of spec (PDF)
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if packet_type not in '!=/@;':
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prefix, body = body.split('!', 1)
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packet_type = '!'
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if packet_type == ';':
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logger.debug("Attempting to parse object report format")
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match = re.findall(r"^([ -~]{9})(\*|_)", body)
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if match:
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name, flag = match[0]
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parsed.update({
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'object_name': name,
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'alive': flag == '*',
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})
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body = body[10:]
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else:
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raise ParseError("invalid format")
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else:
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parsed.update({"messagecapable": packet_type in '@='})
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# decode timestamp
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if packet_type in "/@;":
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body, result = _parse_timestamp(body, packet_type)
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parsed.update(result)
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if len(body) == 0 and 'timestamp' in parsed:
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raise ParseError("invalid position report format", packet)
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# decode body
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body, result = _parse_compressed(body)
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parsed.update(result)
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if len(result) > 0:
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logger.debug("Parsed as compressed position report")
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else:
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body, result = _parse_normal(body)
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parsed.update(result)
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if len(result) > 0:
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logger.debug("Parsed as normal position report")
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else:
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raise ParseError("invalid format")
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# decode comment
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body, result = _parse_comment(body)
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parsed.update(result)
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if packet_type == ';':
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parsed.update({
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'object_format': parsed['format'],
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'format': 'object',
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})
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# capture ParseErrors and attach the packet
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except ParseError as exp:
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exp.packet = packet
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raise
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# if we fail all attempts to parse, try beacon packet
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if 'format' not in parsed:
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if not re.match(r"^(AIR.*|ALL.*|AP.*|BEACON|CQ.*|GPS.*|DF.*|DGPS.*|"
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"DRILL.*|DX.*|ID.*|JAVA.*|MAIL.*|MICE.*|QST.*|QTH.*|"
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"RTCM.*|SKY.*|SPACE.*|SPC.*|SYM.*|TEL.*|TEST.*|TLM.*|"
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"WX.*|ZIP.*|UIDIGI)$", parsed['to']):
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raise UnknownFormat("format is not supported", packet)
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parsed.update({
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'format': 'beacon',
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'text': packet_type + body,
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})
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logger.debug("Parsed ok.")
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return parsed
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# ------------------------------------------------------------------------------
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# Helper parse functions
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# ------------------------------------------------------------------------------
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def _validate_callsign(callsign, prefix=""):
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prefix = '%s: ' % prefix if bool(prefix) else ''
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match = re.findall(r"^([A-Z0-9]{1,6})(-(\d{1,2}))?$", callsign)
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if not match:
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raise ParseError("%sinvalid callsign" % prefix)
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callsign, x, ssid = match[0]
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if bool(ssid) and int(ssid) > 15:
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raise ParseError("%sssid not in 0-15 range" % prefix)
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def _parse_header(head):
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"""
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Parses the header part of packet
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Returns a dict
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"""
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# CALL1>CALL2,CALL3,CALL4,CALL5:
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# |from-|--to-|------path-------|
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#
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try:
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(fromcall, path) = head.split('>', 1)
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except:
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raise ParseError("invalid packet header")
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# looking at aprs.fi, the rules for from/src callsign
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# are a lot looser, causing a lot of packets to fail
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# this check.
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#
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# if len(fromcall) == 0:
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# raise ParseError("no fromcallsign in header")
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# _validate_callsign(fromcall, "fromcallsign")
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if (not 1 <= len(fromcall) <= 9 or
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not re.findall(r"^[a-z0-9]{0,9}(\-[a-z0-9]{1,8})?$", fromcall, re.I)):
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raise ParseError("fromcallsign is invalid")
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path = path.split(',')
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if len(path) < 1 or len(path[0]) == 0:
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raise ParseError("no tocallsign in header")
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tocall = path[0]
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path = path[1:]
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_validate_callsign(tocall, "tocallsign")
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for digi in path:
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if not re.findall(r"^[A-Z0-9\-]{1,9}\*?$", digi, re.I):
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raise ParseError("invalid callsign in path")
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parsed = {
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'from': fromcall,
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'to': tocall,
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'path': path,
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}
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# viacall is the callsign that gated the packet to the net
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# it's located behind the q-contructed
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#
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# CALL1>CALL2,CALL3,qAR,CALL5:
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# .....................|-via-|
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#
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viacall = ""
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if len(path) >= 2 and re.match(r"^q..$", path[-2]):
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viacall = path[-1]
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parsed.update({'via': viacall})
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return parsed
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def _parse_timestamp(body, packet_type=''):
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parsed = {}
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match = re.findall(r"^((\d{6})(.))$", body[0:7])
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if match:
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rawts, ts, form = match[0]
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utc = datetime.utcnow()
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timestamp = 0
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if packet_type == '>' and form != 'z':
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pass
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else:
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body = body[7:]
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try:
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# zulu hhmmss format
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if form == 'h':
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timestamp = "%d%02d%02d%s" % (utc.year, utc.month, utc.day, ts)
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# zulu ddhhmm format
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# '/' local ddhhmm format
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elif form in 'z/':
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timestamp = "%d%02d%s%02d" % (utc.year, utc.month, ts, 0)
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else:
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timestamp = "19700101000000"
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timestamp = utc.strptime(timestamp, "%Y%m%d%H%M%S")
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timestamp = time.mktime(timestamp.timetuple())
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parsed.update({'raw_timestamp': rawts})
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except Exception as exp:
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timestamp = 0
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logger.debug(exp)
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parsed.update({'timestamp': int(timestamp)})
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return (body, parsed)
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def _parse_comment(body):
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parsed = {}
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# attempt to parse remaining part of the packet (comment field)
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# try CRS/SPD/
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match = re.findall(r"^([0-9]{3})/([0-9]{3})", body)
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if match:
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cse, spd = match[0]
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body = body[7:]
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parsed.update({
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'course': int(cse),
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'speed': int(spd)*1.852 # knots to kms
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})
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# try BRG/NRQ/
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match = re.findall(r"^([0-9]{3})/([0-9]{3})", body)
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if match:
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brg, nrq = match[0]
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body = body[7:]
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parsed.update({'bearing': int(brg), 'nrq': int(nrq)})
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else:
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match = re.findall(r"^(PHG(\d[\x30-\x7e]\d\d[0-9A-Z]?))\/", body)
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if match:
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ext, phg = match[0]
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body = body[len(ext):]
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parsed.update({'phg': phg})
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else:
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match = re.findall(r"^(RNG(\d{4}))\/", body)
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if match:
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ext, rng = match[0]
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body = body[len(ext):]
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parsed.update({'rng': int(rng) * 1.609344}) # miles to km
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# try find altitude in comment /A=dddddd
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match = re.findall(r"^(.*?)/A=(\-\d{5}|\d{6})(.*)$", body)
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if match:
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body, altitude, post = match[0]
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body += post # glue front and back part together, DONT ASK
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parsed.update({'altitude': int(altitude)*0.3048})
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body, telemetry = _parse_comment_telemetry(body)
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parsed.update(telemetry)
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if len(body) > 0 and body[0] == "/":
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body = body[1:]
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parsed.update({'comment': body.strip(' ')})
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return ('', parsed)
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def _parse_comment_telemetry(text):
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"""
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Looks for base91 telemetry found in comment field
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Returns [remaining_text, telemetry]
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"""
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parsed = {}
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match = re.findall(r"^(.*?)\|([!-{]{4,14})\|(.*)$", text)
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if match and len(match[0][1]) % 2 == 0:
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text, telemetry, post = match[0]
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text += post
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temp = [0] * 7
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for i in range(7):
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temp[i] = base91.to_decimal(telemetry[i*2:i*2+2])
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parsed.update({
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'telemetry': {
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'seq': temp[0],
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'vals': temp[1:6]
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}
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})
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if temp[6] != '':
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parsed['telemetry'].update({
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'bits': "{0:08b}".format(temp[6] & 0xFF)[::-1]
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})
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return (text, parsed)
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|
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# Mic-encoded packet
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#
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# 'lllc/s$/......... Mic-E no message capability
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# 'lllc/s$/>........ Mic-E message capability
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# `lllc/s$/>........ Mic-E old posit
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def _parse_mice(dstcall, body):
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parsed = {'format': 'mic-e'}
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dstcall = dstcall.split('-')[0]
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# verify mic-e format
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if len(dstcall) != 6:
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raise ParseError("dstcall has to be 6 characters")
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if len(body) < 8:
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raise ParseError("packet data field is too short")
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if not re.match(r"^[0-9A-Z]{3}[0-9L-Z]{3}$", dstcall):
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raise ParseError("invalid dstcall")
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if not re.match(r"^[&-\x7f][&-a][\x1c-\x7f]{2}[\x1c-\x7d]"
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r"[\x1c-\x7f][\x21-\x7e][\/\\0-9A-Z]", body):
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raise ParseError("invalid data format")
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# get symbol table and symbol
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parsed.update({
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'symbol': body[6],
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'symbol_table': body[7]
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})
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|
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# parse latitude
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# the routine translates each characters into a lat digit as described in
|
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# 'Mic-E Destination Address Field Encoding' table
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tmpdstcall = ""
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for i in dstcall:
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if i in "KLZ": # spaces
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tmpdstcall += " "
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elif ord(i) > 76: # P-Y
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tmpdstcall += chr(ord(i) - 32)
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elif ord(i) > 57: # A-J
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tmpdstcall += chr(ord(i) - 17)
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else: # 0-9
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tmpdstcall += i
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|
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# determine position ambiguity
|
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match = re.findall(r"^\d+( *)$", tmpdstcall)
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if not match:
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raise ParseError("invalid latitude ambiguity")
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posambiguity = len(match[0])
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parsed.update({
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'posambiguity': posambiguity
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})
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|
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# adjust the coordinates be in center of ambiguity box
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tmpdstcall = list(tmpdstcall)
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if posambiguity > 0:
|
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if posambiguity >= 4:
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tmpdstcall[2] = '3'
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else:
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tmpdstcall[6 - posambiguity] = '5'
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|
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tmpdstcall = "".join(tmpdstcall)
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|
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latminutes = float(("%s.%s" % (tmpdstcall[2:4], tmpdstcall[4:6])).replace(" ", "0"))
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latitude = int(tmpdstcall[0:2]) + (latminutes / 60.0)
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|
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# determine the sign N/S
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latitude = -latitude if ord(dstcall[3]) <= 0x4c else latitude
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|
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parsed.update({
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'latitude': latitude
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})
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|
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# parse message bits
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mbits = re.sub(r"[0-9L]", "0", dstcall[0:3])
|
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mbits = re.sub(r"[P-Z]", "1", mbits)
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mbits = re.sub(r"[A-K]", "2", mbits)
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|
|
parsed.update({
|
|
'mbits': mbits
|
|
})
|
|
|
|
# resolve message type
|
|
|
|
if mbits.find("2") > -1:
|
|
parsed.update({
|
|
'mtype': MTYPE_TABLE_CUSTOM[mbits.replace("2", "1")]
|
|
})
|
|
else:
|
|
parsed.update({
|
|
'mtype': MTYPE_TABLE_STD[mbits]
|
|
})
|
|
|
|
# parse longitude
|
|
|
|
longitude = ord(body[0]) - 28 # decimal part of longitude
|
|
longitude += 100 if ord(dstcall[4]) >= 0x50 else 0 # apply lng offset
|
|
longitude += -80 if longitude >= 180 and longitude <= 189 else 0
|
|
longitude += -190 if longitude >= 190 and longitude <= 199 else 0
|
|
|
|
# long minutes
|
|
lngminutes = ord(body[1]) - 28.0
|
|
lngminutes += -60 if lngminutes >= 60 else 0
|
|
|
|
# + (long hundredths of minutes)
|
|
lngminutes += ((ord(body[2]) - 28.0) / 100.0)
|
|
|
|
# apply position ambiguity
|
|
# routines adjust longitude to center of the ambiguity box
|
|
if posambiguity is 4:
|
|
lngminutes = 30
|
|
elif posambiguity is 3:
|
|
lngminutes = (math.floor(lngminutes/10) + 0.5) * 10
|
|
elif posambiguity is 2:
|
|
lngminutes = math.floor(lngminutes) + 0.5
|
|
elif posambiguity is 1:
|
|
lngminutes = (math.floor(lngminutes*10) + 0.5) / 10.0
|
|
elif posambiguity is not 0:
|
|
raise ParseError("Unsupported position ambiguity: %d" % posambiguity)
|
|
|
|
longitude += lngminutes / 60.0
|
|
|
|
# apply E/W sign
|
|
longitude = 0 - longitude if ord(dstcall[5]) >= 0x50 else longitude
|
|
|
|
parsed.update({
|
|
'longitude': longitude
|
|
})
|
|
|
|
# parse speed and course
|
|
speed = (ord(body[3]) - 28) * 10
|
|
course = ord(body[4]) - 28
|
|
quotient = int(course / 10.0)
|
|
course += -(quotient * 10)
|
|
course = course*100 + ord(body[5]) - 28
|
|
speed += quotient
|
|
|
|
speed += -800 if speed >= 800 else 0
|
|
course += -400 if course >= 400 else 0
|
|
|
|
speed *= 1.852 # knots * 1.852 = kmph
|
|
parsed.update({
|
|
'speed': speed,
|
|
'course': course
|
|
})
|
|
|
|
# the rest of the packet can contain telemetry and comment
|
|
|
|
if len(body) > 8:
|
|
body = body[8:]
|
|
|
|
# check for optional 2 or 5 channel telemetry
|
|
match = re.findall(r"^('[0-9a-f]{10}|`[0-9-af]{4})(.*)$", body)
|
|
if match:
|
|
hexdata, body = match[0]
|
|
|
|
hexdata = hexdata[1:] # remove telemtry flag
|
|
channels = len(hexdata) / 2 # determine number of channels
|
|
hexdata = int(hexdata, 16) # convert hex to int
|
|
|
|
telemetry = []
|
|
for i in range(channels):
|
|
telemetry.insert(0, int(hexdata >> 8*i & 255))
|
|
|
|
parsed.update({'telemetry': telemetry})
|
|
|
|
# check for optional altitude
|
|
match = re.findall(r"^(.*)([!-{]{3})\}(.*)$", body)
|
|
if match:
|
|
body, altitude, extra = match[0]
|
|
|
|
altitude = base91.to_decimal(altitude) - 10000
|
|
parsed.update({'altitude': altitude})
|
|
|
|
body = body + extra
|
|
|
|
# attempt to parse comment telemetry
|
|
body, telemetry = _parse_comment_telemetry(body)
|
|
parsed.update(telemetry)
|
|
|
|
#TODO !DAO! parsing
|
|
|
|
# rest is a comment
|
|
parsed.update({'comment': body.strip(' ')})
|
|
|
|
return ('', parsed)
|
|
|
|
|
|
# MESSAGE PACKET
|
|
#
|
|
# :ADDRESSEE:Message text ........{XXXXX Up to 5 char line number
|
|
# :ADDRESSEE:ackXXXXX Ack for same line number
|
|
# :ADDRESSEE:Message text ........{MM}AA Line# with REPLY ACK
|
|
#
|
|
# TELEMETRY MESSAGES
|
|
#
|
|
# :N3MIM:PARM.Battery,BTemp,AirTemp,Pres,Altude,Camra,Chute,Sun,10m,ATV
|
|
# :N3MIM:UNIT.Volts,deg.F,deg.F,Mbar,Kfeet,Clik,OPEN!,on,on,high
|
|
# :N3MIM:EQNS.0,2.6,0,0,.53,-32,3,4.39,49,-32,3,18,1,2,3
|
|
# :N3MIM:BITS.10110101,PROJECT TITLE...
|
|
def _parse_message(body):
|
|
parsed = {}
|
|
|
|
# the while loop is used to easily break out once a match is found
|
|
while True:
|
|
# try to match bulletin
|
|
match = re.findall(r"^BLN([0-9])([a-z0-9_ \-]{5}):(.{0,67})", body, re.I)
|
|
if match:
|
|
bid, identifier, text = match[0]
|
|
identifier = identifier.rstrip(' ')
|
|
|
|
mformat = 'bulletin' if identifier == "" else 'group-bulletin'
|
|
|
|
parsed.update({
|
|
'format': mformat,
|
|
'message_text': text.strip(' '),
|
|
'bid': bid,
|
|
'identifier': identifier
|
|
})
|
|
break
|
|
|
|
# try to match announcement
|
|
match = re.findall(r"^BLN([A-Z])([a-zA-Z0-9_ \-]{5}):(.{0,67})", body)
|
|
if match:
|
|
aid, identifier, text = match[0]
|
|
identifier = identifier.rstrip(' ')
|
|
|
|
parsed.update({
|
|
'format': 'announcement',
|
|
'message_text': text.strip(' '),
|
|
'aid': aid,
|
|
'identifier': identifier
|
|
})
|
|
break
|
|
|
|
# validate addresse
|
|
match = re.findall(r"^([a-zA-Z0-9_ \-]{9}):(.*)$", body)
|
|
if not match:
|
|
break
|
|
|
|
addresse, body = match[0]
|
|
|
|
parsed.update({'addresse': addresse.rstrip(' ')})
|
|
|
|
# check if it's a telemetry configuration message
|
|
match = re.findall(r"^(PARM|UNIT|EQNS|BITS)\.(.*)$", body)
|
|
if match:
|
|
logger.debug("Attempting to parse telemetry-message packet")
|
|
form, body = match[0]
|
|
|
|
parsed.update({'format': 'telemetry-message'})
|
|
|
|
if form in ["PARM", "UNIT"]:
|
|
vals = body.split(',')[:13]
|
|
|
|
for val in vals:
|
|
if not re.match(r"^(.{1,20}|)$", val):
|
|
raise ParseError("incorrect format of %s (name too long?)" % form)
|
|
|
|
defvals = [''] * 13
|
|
defvals[:len(vals)] = vals
|
|
|
|
parsed.update({
|
|
't%s' % form: defvals
|
|
})
|
|
elif form == "EQNS":
|
|
eqns = body.split(',')[:15]
|
|
teqns = [0, 1, 0] * 5
|
|
|
|
for idx, val in enumerate(eqns):
|
|
if not re.match(r"^([-]?\d*\.?\d+|)$", val):
|
|
raise ParseError("value at %d is not a number in %s" % (idx+1, form))
|
|
else:
|
|
try:
|
|
val = int(val)
|
|
except:
|
|
val = float(val) if val != "" else 0
|
|
|
|
teqns[idx] = val
|
|
|
|
# group values in 5 list of 3
|
|
teqns = [teqns[i*3:(i+1)*3] for i in range(5)]
|
|
|
|
parsed.update({
|
|
't%s' % form: teqns
|
|
})
|
|
elif form == "BITS":
|
|
match = re.findall(r"^([01]{8}),(.{0,23})$", body)
|
|
if not match:
|
|
raise ParseError("incorrect format of %s (title too long?)" % form)
|
|
|
|
bits, title = match[0]
|
|
|
|
parsed.update({
|
|
't%s' % form: bits,
|
|
'title': title.strip(' ')
|
|
})
|
|
|
|
# regular message
|
|
else:
|
|
logger.debug("Packet is just a regular message")
|
|
parsed.update({'format': 'message'})
|
|
|
|
match = re.findall(r"^(ack|rej)\{([0-9]{1,5})$", body)
|
|
if match:
|
|
response, number = match[0]
|
|
|
|
parsed.update({
|
|
'response': response,
|
|
'msgNo': number
|
|
})
|
|
else:
|
|
body = body[0:70]
|
|
|
|
match = re.findall(r"\{([0-9]{1,5})$", body)
|
|
if match:
|
|
msgid = match[0]
|
|
body = body[:len(body) - 1 - len(msgid)]
|
|
|
|
parsed.update({'msgNo': int(msgid)})
|
|
|
|
parsed.update({'message_text': body.strip(' ')})
|
|
|
|
break
|
|
|
|
return ('', parsed)
|
|
|
|
|
|
def _parse_compressed(body):
|
|
parsed = {}
|
|
|
|
if re.match(r"^[\/\\A-Za-j][!-|]{8}[!-{}][ -|]{3}", body):
|
|
logger.debug("Attempting to parse as compressed position report")
|
|
|
|
if len(body) < 13:
|
|
raise ParseError("Invalid compressed packet (less than 13 characters)")
|
|
|
|
parsed.update({'format': 'compressed'})
|
|
|
|
compressed = body[:13]
|
|
body = body[13:]
|
|
|
|
symbol_table = compressed[0]
|
|
symbol = compressed[9]
|
|
|
|
try:
|
|
latitude = 90 - (base91.to_decimal(compressed[1:5]) / 380926.0)
|
|
longitude = -180 + (base91.to_decimal(compressed[5:9]) / 190463.0)
|
|
except ValueError:
|
|
raise ParseError("invalid characters in latitude/longitude encoding")
|
|
|
|
# parse csT
|
|
|
|
# converts the relevant characters from base91
|
|
c1, s1, ctype = [ord(x) - 33 for x in compressed[10:13]]
|
|
|
|
if c1 == -1:
|
|
parsed.update({'gpsfixstatus': 1 if ctype & 0x20 == 0x20 else 0})
|
|
|
|
if -1 in [c1, s1]:
|
|
pass
|
|
elif ctype & 0x18 == 0x10:
|
|
parsed.update({'altitude': (1.002 ** (c1 * 91 + s1)) * 0.3048})
|
|
elif c1 >= 0 and c1 <= 89:
|
|
parsed.update({'course': 360 if c1 == 0 else c1 * 4})
|
|
parsed.update({'speed': (1.08 ** s1 - 1) * 1.852}) # mul = convert knts to kmh
|
|
elif c1 == 90:
|
|
parsed.update({'radiorange': (2 * 1.08 ** s1) * 1.609344}) # mul = convert mph to kmh
|
|
|
|
parsed.update({
|
|
'symbol': symbol,
|
|
'symbol_table': symbol_table,
|
|
'latitude': latitude,
|
|
'longitude': longitude,
|
|
})
|
|
|
|
return (body, parsed)
|
|
|
|
|
|
def _parse_normal(body):
|
|
parsed = {}
|
|
|
|
match = re.findall(r"^(\d{2})([0-9 ]{2}\.[0-9 ]{2})([NnSs])([\/\\0-9A-Z])"
|
|
r"(\d{3})([0-9 ]{2}\.[0-9 ]{2})([EeWw])([\x21-\x7e])(.*)$", body)
|
|
|
|
if match:
|
|
parsed.update({'format': 'uncompressed'})
|
|
|
|
(
|
|
lat_deg,
|
|
lat_min,
|
|
lat_dir,
|
|
symbol_table,
|
|
lon_deg,
|
|
lon_min,
|
|
lon_dir,
|
|
symbol,
|
|
body
|
|
) = match[0]
|
|
|
|
# position ambiguity
|
|
posambiguity = lat_min.count(' ')
|
|
parsed.update({'posambiguity': posambiguity})
|
|
|
|
# we center the position inside the ambiguity box
|
|
if posambiguity >= 4:
|
|
lat_min = "30"
|
|
lon_min = "30"
|
|
else:
|
|
lat_min = lat_min.replace(' ', '5', 1)
|
|
lon_min = lon_min.replace(' ', '5', 1)
|
|
|
|
# validate longitude and latitude
|
|
|
|
if int(lat_deg) > 89 or int(lat_deg) < 0:
|
|
raise ParseError("latitude is out of range (0-90 degrees)")
|
|
if int(lon_deg) > 179 or int(lon_deg) < 0:
|
|
raise ParseError("longitutde is out of range (0-180 degrees)")
|
|
"""
|
|
f float(lat_min) >= 60:
|
|
raise ParseError("latitude minutes are out of range (0-60)")
|
|
if float(lon_min) >= 60:
|
|
raise ParseError("longitude minutes are out of range (0-60)")
|
|
|
|
the above is commented out intentionally
|
|
apperantly aprs.fi doesn't bound check minutes
|
|
and there are actual packets that have >60min
|
|
i don't even know why that's the case
|
|
"""
|
|
|
|
# convert coordinates from DDMM.MM to decimal
|
|
latitude = int(lat_deg) + (float(lat_min) / 60.0)
|
|
longitude = int(lon_deg) + (float(lon_min) / 60.0)
|
|
|
|
latitude *= -1 if lat_dir in 'Ss' else 1
|
|
longitude *= -1 if lon_dir in 'Ww' else 1
|
|
|
|
parsed.update({
|
|
'symbol': symbol,
|
|
'symbol_table': symbol_table,
|
|
'latitude': latitude,
|
|
'longitude': longitude,
|
|
})
|
|
|
|
return (body, parsed)
|