Reticulum/RNS/Utilities/rnpath.py

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#!/usr/bin/env python3
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# MIT License
#
# Copyright (c) 2016-2022 Mark Qvist / unsigned.io
#
# Permission is hereby granted, free of charge, to any person obtaining a copy
# of this software and associated documentation files (the "Software"), to deal
# in the Software without restriction, including without limitation the rights
# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
# copies of the Software, and to permit persons to whom the Software is
# furnished to do so, subject to the following conditions:
#
# The above copyright notice and this permission notice shall be included in all
# copies or substantial portions of the Software.
#
# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
# SOFTWARE.
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import RNS
import os
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import sys
import time
import argparse
from RNS._version import __version__
remote_link = None
def connect_remote(destination_hash, auth_identity, timeout, no_output = False):
global remote_link, reticulum
if not RNS.Transport.has_path(destination_hash):
if not no_output:
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print(f"Path to {RNS.prettyhexrep(destination_hash)} requested", end=" ")
sys.stdout.flush()
RNS.Transport.request_path(destination_hash)
pr_time = time.time()
while not RNS.Transport.has_path(destination_hash):
time.sleep(0.1)
if time.time() - pr_time > timeout:
if not no_output:
print("\r \r", end="")
print("Path request timed out")
exit(12)
remote_identity = RNS.Identity.recall(destination_hash)
def remote_link_closed(link):
if link.teardown_reason == RNS.Link.TIMEOUT:
if not no_output:
print("\r \r", end="")
print("The link timed out, exiting now")
elif link.teardown_reason == RNS.Link.DESTINATION_CLOSED:
if not no_output:
print("\r \r", end="")
print("The link was closed by the server, exiting now")
else:
if not no_output:
print("\r \r", end="")
print("Link closed unexpectedly, exiting now")
exit(10)
def remote_link_established(link):
global remote_link
link.identify(auth_identity)
remote_link = link
if not no_output:
print("\r \r", end="")
print("Establishing link with remote transport instance...", end=" ")
sys.stdout.flush()
remote_destination = RNS.Destination(remote_identity, RNS.Destination.OUT, RNS.Destination.SINGLE, "rnstransport", "remote", "management")
link = RNS.Link(remote_destination)
link.set_link_established_callback(remote_link_established)
link.set_link_closed_callback(remote_link_closed)
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def program_setup(configdir, table, rates, drop, destination_hexhash, verbosity, timeout, drop_queues,
drop_via, max_hops, remote=None, management_identity=None, remote_timeout=RNS.Transport.PATH_REQUEST_TIMEOUT,
no_output=False, json=False):
global remote_link, reticulum
reticulum = RNS.Reticulum(configdir = configdir, loglevel = 3+verbosity)
if remote:
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(remote) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
identity_hash = bytes.fromhex(remote)
remote_hash = RNS.Destination.hash_from_name_and_identity("rnstransport.remote.management", identity_hash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
identity = RNS.Identity.from_file(os.path.expanduser(management_identity))
if identity == None:
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raise ValueError(f"Could not load management identity from {management_identity}")
try:
connect_remote(remote_hash, identity, remote_timeout, no_output)
except Exception as e:
raise e
except Exception as e:
print(str(e))
exit(20)
while remote_link == None:
time.sleep(0.1)
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if table:
destination_hash = None
if destination_hexhash != None:
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(destination_hexhash) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
destination_hash = bytes.fromhex(destination_hexhash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
except Exception as e:
print(str(e))
sys.exit(1)
if not remote_link:
table = sorted(reticulum.get_path_table(max_hops=max_hops), key=lambda e: (e["interface"], e["hops"]) )
else:
if not no_output:
print("\r \r", end="")
print("Sending request...", end=" ")
sys.stdout.flush()
receipt = remote_link.request("/path", data = ["table", destination_hash, max_hops])
while not receipt.concluded():
time.sleep(0.1)
response = receipt.get_response()
if response:
table = response
print("\r \r", end="")
else:
if not no_output:
print("\r \r", end="")
print("The remote request failed. Likely authentication failure.")
exit(10)
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displayed = 0
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if json:
import json
for p in table:
for k in p:
if isinstance(p[k], bytes):
p[k] = RNS.hexrep(p[k], delimit=False)
print(json.dumps(table))
exit()
else:
for path in table:
if destination_hash == None or destination_hash == path["hash"]:
displayed += 1
exp_str = RNS.timestamp_str(path["expires"])
if path["hops"] == 1:
m_str = " "
else:
m_str = "s"
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print(f"{RNS.prettyhexrep(path['hash'])} is {path['hops']} hop{m_str} away via {RNS.prettyhexrep(path['via'])} on {path['interface']} expires {RNS.timestamp_str(path['expires'])}")
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if destination_hash != None and displayed == 0:
print("No path known")
sys.exit(1)
elif rates:
destination_hash = None
if destination_hexhash != None:
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(destination_hexhash) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
destination_hash = bytes.fromhex(destination_hexhash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
except Exception as e:
print(str(e))
sys.exit(1)
if not remote_link:
table = reticulum.get_rate_table()
else:
if not no_output:
print("\r \r", end="")
print("Sending request...", end=" ")
sys.stdout.flush()
receipt = remote_link.request("/path", data = ["rates", destination_hash])
while not receipt.concluded():
time.sleep(0.1)
response = receipt.get_response()
if response:
table = response
print("\r \r", end="")
else:
if not no_output:
print("\r \r", end="")
print("The remote request failed. Likely authentication failure.")
exit(10)
table = sorted(table, key=lambda e: e["last"])
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if json:
import json
for p in table:
for k in p:
if isinstance(p[k], bytes):
p[k] = RNS.hexrep(p[k], delimit=False)
print(json.dumps(table))
exit()
else:
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if len(table) == 0:
print("No information available")
else:
displayed = 0
for entry in table:
if destination_hash == None or destination_hash == entry["hash"]:
displayed += 1
try:
last_str = pretty_date(int(entry["last"]))
start_ts = entry["timestamps"][0]
span = max(time.time() - start_ts, 3600.0)
span_hours = span/3600.0
span_str = pretty_date(int(entry["timestamps"][0]))
hour_rate = round(len(entry["timestamps"])/span_hours, 3)
if hour_rate-int(hour_rate) == 0:
hour_rate = int(hour_rate)
if entry["rate_violations"] > 0:
if entry["rate_violations"] == 1:
s_str = ""
else:
s_str = "s"
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rv_str = f", {entry['rate_violations']} active rate violation{s_str}"
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else:
rv_str = ""
if entry["blocked_until"] > time.time():
bli = time.time()-(int(entry["blocked_until"])-time.time())
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bl_str = f", new announces allowed in {pretty_date(int(bli))}"
else:
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bl_str = ""
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print(f"{RNS.prettyhexrep(entry['hash'])} last heard {last_str} ago, {hour_rate} announces/hour in the last {span_str}{rv_str}{bl_str}")
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except Exception as e:
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print(f"Error while processing entry for {RNS.prettyhexrep(entry['hash'])}")
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print(str(e))
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if destination_hash != None and displayed == 0:
print("No information available")
sys.exit(1)
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elif drop_queues:
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if remote_link:
if not no_output:
print("\r \r", end="")
print("Dropping announce queues on remote instances not yet implemented")
exit(255)
print("Dropping announce queues on all interfaces...")
reticulum.drop_announce_queues()
elif drop:
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if remote_link:
if not no_output:
print("\r \r", end="")
print("Dropping path on remote instances not yet implemented")
exit(255)
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(destination_hexhash) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
destination_hash = bytes.fromhex(destination_hexhash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
except Exception as e:
print(str(e))
sys.exit(1)
if reticulum.drop_path(destination_hash):
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print(f"Dropped path to {RNS.prettyhexrep(destination_hash)}")
else:
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print(f"Unable to drop path to {RNS.prettyhexrep(destination_hash)}. Does it exist?")
sys.exit(1)
elif drop_via:
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if remote_link:
if not no_output:
print("\r \r", end="")
print("Dropping all paths via specific transport instance on remote instances yet not implemented")
exit(255)
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(destination_hexhash) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
destination_hash = bytes.fromhex(destination_hexhash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
except Exception as e:
print(str(e))
sys.exit(1)
if reticulum.drop_all_via(destination_hash):
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print(f"Dropped all paths via {RNS.prettyhexrep(destination_hash)}")
else:
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print(f"Unable to drop paths via {RNS.prettyhexrep(destination_hash)}. Does the transport instance exist?")
sys.exit(1)
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else:
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if remote_link:
if not no_output:
print("\r \r", end="")
print("Requesting paths on remote instances not implemented")
exit(255)
try:
dest_len = (RNS.Reticulum.TRUNCATED_HASHLENGTH//8)*2
if len(destination_hexhash) != dest_len:
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raise ValueError(f"Destination length is invalid, must be {dest_len} hexadecimal characters ({dest_len // 2} bytes).")
try:
destination_hash = bytes.fromhex(destination_hexhash)
except Exception as e:
raise ValueError("Invalid destination entered. Check your input.")
except Exception as e:
print(str(e))
sys.exit(1)
if not RNS.Transport.has_path(destination_hash):
RNS.Transport.request_path(destination_hash)
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print(f"Path to {RNS.prettyhexrep(destination_hash)} requested ", end=" ")
sys.stdout.flush()
i = 0
syms = "⢄⢂⢁⡁⡈⡐⡠"
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limit = time.time()+timeout
while not RNS.Transport.has_path(destination_hash) and time.time()<limit:
time.sleep(0.1)
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print(f'\x08\x08{syms[i]} ', end="")
sys.stdout.flush()
i = (i+1)%len(syms)
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if RNS.Transport.has_path(destination_hash):
hops = RNS.Transport.hops_to(destination_hash)
next_hop_bytes = reticulum.get_next_hop(destination_hash)
if next_hop_bytes == None:
print("\r \rError: Invalid path data returned")
sys.exit(1)
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else:
next_hop = RNS.prettyhexrep(next_hop_bytes)
next_hop_interface = reticulum.get_next_hop_if_name(destination_hash)
if hops != 1:
ms = "s"
else:
ms = ""
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print(f'\rPath found, destination {RNS.prettyhexrep(destination_hash)} is {hops} hop{ms} away via {next_hop} on {next_hop_interface}')
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else:
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print("\r \rPath not found")
sys.exit(1)
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def main():
try:
parser = argparse.ArgumentParser(description="Reticulum Path Discovery Utility")
parser.add_argument("--config",
action="store",
default=None,
help="path to alternative Reticulum config directory",
type=str
)
parser.add_argument(
"--version",
action="version",
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version=f"rnpath {__version__}"
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)
parser.add_argument(
"-t",
"--table",
action="store_true",
help="show all known paths",
default=False
)
parser.add_argument(
"-m",
"--max",
action="store",
metavar="hops",
type=int,
help="maximum hops to filter path table by",
default=None
)
parser.add_argument(
"-r",
"--rates",
action="store_true",
help="show announce rate info",
default=False
)
parser.add_argument(
"-d",
"--drop",
action="store_true",
help="remove the path to a destination",
default=False
)
parser.add_argument(
"-D",
"--drop-announces",
action="store_true",
help="drop all queued announces",
default=False
)
parser.add_argument(
"-x", "--drop-via",
action="store_true",
help="drop all paths via specified transport instance",
default=False
)
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parser.add_argument(
"-w",
action="store",
metavar="seconds",
type=float,
help="timeout before giving up",
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default=RNS.Transport.PATH_REQUEST_TIMEOUT
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)
parser.add_argument(
"-R",
action="store",
metavar="hash",
help="transport identity hash of remote instance to manage",
default=None,
type=str
)
parser.add_argument(
"-i",
action="store",
metavar="path",
help="path to identity used for remote management",
default=None,
type=str
)
parser.add_argument(
"-W",
action="store",
metavar="seconds",
type=float,
help="timeout before giving up on remote queries",
default=RNS.Transport.PATH_REQUEST_TIMEOUT
)
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parser.add_argument(
"-j",
"--json",
action="store_true",
help="output in JSON format",
default=False
)
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parser.add_argument(
"destination",
nargs="?",
default=None,
help="hexadecimal hash of the destination",
type=str
)
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parser.add_argument('-v', '--verbose', action='count', default=0)
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args = parser.parse_args()
if args.config:
configarg = args.config
else:
configarg = None
if not args.drop_announces and not args.table and not args.rates and not args.destination and not args.drop_via:
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print("")
parser.print_help()
print("")
else:
program_setup(
configdir = configarg,
table = args.table,
rates = args.rates,
drop = args.drop,
destination_hexhash = args.destination,
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verbosity = args.verbose,
timeout = args.w,
drop_queues = args.drop_announces,
drop_via = args.drop_via,
max_hops = args.max,
remote=args.R,
management_identity=args.i,
remote_timeout=args.W,
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json=args.json,
)
sys.exit(0)
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except KeyboardInterrupt:
print("")
exit()
def pretty_date(time=False):
from datetime import datetime
now = datetime.now()
if type(time) is int:
diff = now - datetime.fromtimestamp(time)
elif isinstance(time,datetime):
diff = now - time
elif not time:
diff = now - now
second_diff = diff.seconds
day_diff = diff.days
if day_diff < 0:
return ''
if day_diff == 0:
if second_diff < 10:
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return f"{second_diff} seconds"
if second_diff < 60:
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return f"{second_diff} seconds"
if second_diff < 120:
return "1 minute"
if second_diff < 3600:
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return f"{int(second_diff / 60)} minutes"
if second_diff < 7200:
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return "an hour"
if second_diff < 86400:
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return f"{int(second_diff / 3600)} hours"
if day_diff == 1:
return "1 day"
if day_diff < 7:
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return f"{day_diff} days"
if day_diff < 31:
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return f"{int(day_diff / 7)} weeks"
if day_diff < 365:
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return f"{int(day_diff / 30)} months"
return f"{int(day_diff / 365)} years"
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if __name__ == "__main__":
main()