181 lines
5.8 KiB
Python
Executable File
181 lines
5.8 KiB
Python
Executable File
#!/usr/bin/env python3
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from fritzconnection import FritzConnection
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from dotenv import load_dotenv
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from pydub import AudioSegment
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from libs.monitoring import endedCall
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from libs.message import conversion as conv
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import urllib.request
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import xmltodict, json
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import sys, os
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import smbclient
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## Get environment variables from the .env file which will be ignored by git
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load_dotenv()
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env_user = os.environ.get('FRITZ_USERNAME')
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env_pass = os.environ.get('FRITZ_PASSWORD')
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env_ip = os.environ.get('FRITZ_IP')
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env_voicebox = os.environ.get('FRITZ_VOICEBOX_PATH')
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env_tam = json.loads(os.environ.get('FRITZ_TAM'))
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env_tmp = os.environ.get('TEMP_DIR')
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if env_voicebox is None:
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env_voicebox = "/fritz.nas/FRITZ/voicebox/"
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if env_tam is None:
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env_tam = {
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"0" : "!MxRrNGhFuQwnIeEWnX:ismus.net"
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}
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print(env_tam)
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if env_tmp is None:
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env_tmp = "/tmp"
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# Build the url to download the message via smb
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def build_download_url(mid, tam=0):
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recording = "rec." + str(tam) + r"." + str(mid).zfill(3)
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url = os.path.join("//",env_ip,env_voicebox,"rec",recording)
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return url
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def download_speex_file(smb_url):
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smbclient.register_session(server=env_ip, username=env_user, password=env_pass, auth_protocol="ntlm")
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fd = smbclient.open_file(smb_url, mode="rb")
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return fd
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def get_message_list(url):
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""" Get and and convert the xml formatted list of messages into a dictionary. """
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with urllib.request.urlopen(url) as f:
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doc = f.read()
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# Convert the xml formatted message list to dict
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messages = xmltodict.parse(doc)
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return messages
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def fritzab2matrix(tam):
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### CHECK AND GET MESSAGES FROM FRITZBOX ###
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############################################
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## Connect to the FritzBox in the LAN
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# We don't use tls because the self-signed cert of the box leads to a malfunction in urllib later on.
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fc = FritzConnection(address=env_ip, user=env_user, password=env_pass, use_tls=False)
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## Get info about messages from the main answering machine
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message_list = fc.call_action("X_AVM-DE_TAM1", "GetMessageList", NewIndex=tam)
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message_list_url = message_list['NewURL']
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# Build the url to download the message via smb
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def build_download_url(mid, tam=tam):
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recording = "rec." + str(tam) + r"." + str(mid).zfill(3)
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url = os.path.join("//",env_ip,env_voicebox,"rec",recording)
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return url
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def download_speex_file(smb_url):
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smbclient.register_session(server=env_ip, username=env_user, password=env_pass, auth_protocol="ntlm")
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fd = smbclient.open_file(smb_url, mode="rb")
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return fd
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def get_message_list(url):
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""" Get and and convert the xml formatted list of messages into a dictionary. """
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with urllib.request.urlopen(url) as f:
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doc = f.read()
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# Convert the xml formatted message list to dict
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messages = xmltodict.parse(doc)
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return messages
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l = get_message_list(message_list_url)
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if l['Root'] == None or l['Root']['Message'] == None:
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return False
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else:
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messages = l['Root']['Message']
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if type(messages) is not list:
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m = []
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m.append(messages)
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messages = m
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for a in messages:
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# format the information regarding the message
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msg_info = a['Date'] + " - " + a['Number']
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if a['Name']:
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msg_info += " (" + a['Name'] + ") "
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# format the string for sound file's meta information
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msg_tags = {'title': msg_info, 'artist': 'Answerting Machine' ,'album': "TAM" + a['Tam'], 'comment': 'Message of a telephone answering machine'}
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# Select only new messages
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message_new = bool(int(a['New']))
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if message_new == True:
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# Download and convert the speex files to wav
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smb_url = build_download_url(a['Index'])
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speex_fd = download_speex_file(smb_url)
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conv.speex_convert(speex_fd, os.path.join(env_tmp,"message{}.wav".format(tam)))
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# Convert wav to ogg
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msg = AudioSegment.from_wav(os.path.join(env_tmp,"message{}.wav".format(tam)))
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# Only if message is longer than 5 seconds ...
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if msg.duration_seconds > 5.0:
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# ... export to ogg ...
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msg.export(os.path.join(env_tmp,"message{}.ogg".format(tam)), format="ogg", tags=msg_tags)
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# ... and send message and file to Matrix Room
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command = "python3 matrix-commander.py --room {} -a ".format(env_tam[tam]) + os.path.join(env_tmp,"message{}.ogg".format(tam)) + " -m '{}'".format(msg_info)
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os.system(command)
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else:
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# Mark MessageInfo as too short for the log
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msg_info += " < 6 sec (not posted)"
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# Show that message is new
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print("** " + msg_info)
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# Mark processed messages as 'read'
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fc.call_action("X_AVM-DE_TAM1", "MarkMessage", NewIndex=tam, NewMessageIndex=int(a['Index']), NewMarkedAsRead=1)
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else:
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# Show that message is already read
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print("__ " + msg_info)
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# ## For testing purposes only
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# if a['Date'].endswith('20:53'):
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# fc.call_action("X_AVM-DE_TAM1", "MarkMessage", NewIndex=1, NewMessageIndex=int(a['Index']), NewMarkedAsRead=0)
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continue
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continue
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def multitam(tams):
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for tam in tams.keys():
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print("Check TAM {}.".format(tam))
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fritzab2matrix(tam)
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if __name__ == "__main__":
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multitam(env_tam)
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### Monitor the FritzBox and trigger the main script whenever a call disconnects ###
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###################################################################################
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endedCall(multitam,env_tam, env_ip)
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