further reorganization
This commit is contained in:
parent
ecb2596090
commit
85045f397f
6 changed files with 146 additions and 144 deletions
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@ -1,9 +1,11 @@
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#!/usr/bin/env python3
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from .db import RespoDB
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from .dns import getaddrs, detect_gfw
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from .ip_util import addr_to_int, read_ips
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from .ips import blocks, is_bogon
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from .structs import Options, Entry
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from .util import right_now, read_ips, getaddrs, detect_gfw, make_pooler
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from .util import right_now, make_pooler
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from asyncio import run, sleep
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from sys import argv, stdin, stderr, exit
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import respodns.checks as chk
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@ -1,6 +1,8 @@
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from .sql import create_table_statements, create_view_statements
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from .sql import table_triggers
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from .util import addr_to_int, AttrCheck
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from .tables import TException, TExecution, TAddress
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from .tables import TKind, TDomain, TRecord, TMessage
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from .ip_util import addr_to_int
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import storm.locals as rain
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class Execution:
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@ -18,65 +20,6 @@ class Execution:
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completed = exc_type is None
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self.db.finish_execution(self.execution, right_now(), completed)
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class TException(rain.Storm, AttrCheck):
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__storm_table__ = "Exceptions"
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exception_id = rain.Int("ExceptionId", primary=True)
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name = rain.Unicode("Name")
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fail = rain.Bool("Fail")
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class TExecution(rain.Storm, AttrCheck):
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__storm_table__ = "Executions"
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execution_id = rain.Int("ExecutionId", primary=True)
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start_date = rain.DateTime("StartDate")
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finish_date = rain.DateTime("FinishDate")
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completed = rain.Bool("Completed")
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class TAddress(rain.Storm, AttrCheck):
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__storm_table__ = "Ips"
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address_id = rain.Int("IpId", primary=True)
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str = rain.Unicode("AsStr")
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ip = rain.Int("AsInt")
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china = rain.Bool("China")
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block_target = rain.Bool("BlockTarget")
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server = rain.Bool("Server")
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redirect_target = rain.Bool("RedirectTarget")
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gfw_target = rain.Bool("GfwTarget")
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class TKind(rain.Storm, AttrCheck):
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__storm_table__ = "Kinds"
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kind_id = rain.Int("KindId", primary=True)
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name = rain.Unicode("Name")
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xxid = rain.Int("ExpectExceptionId")
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exception = rain.Reference(xxid, "TException.exception_id")
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class TDomain(rain.Storm, AttrCheck):
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__storm_table__ = "Domains"
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domain_id = rain.Int("DomainId", primary=True)
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name = rain.Unicode("Name")
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kind_id = rain.Int("KindId")
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kind = rain.Reference(kind_id, "TKind.kind_id")
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class TRecord(rain.Storm, AttrCheck):
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__storm_table__ = "Records"
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row_id = rain.Int("rowid", primary=True)
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record_id = rain.Int("RecordId")
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address_id = rain.Int("IpId")
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address = rain.Reference(address_id, "TAddress.address_id")
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class TMessage(rain.Storm, AttrCheck):
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__storm_table__ = "Messages"
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message_id = rain.Int("MessageId", primary=True)
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execution_id = rain.Int("ExecutionId")
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server_id = rain.Int("ServerId")
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domain_id = rain.Int("DomainId")
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record_id = rain.Int("RecordId")
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exception_id = rain.Int("ExceptionId")
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execution = rain.Reference(execution_id, "TExecution.execution_id")
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server = rain.Reference(server_id, "TAddress.address_id")
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domain = rain.Reference(domain_id, "TDomain.domain_id")
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#record = rain.Reference(record_id, "TRecord.record_id")
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exception = rain.Reference(exception_id, "TException.exception_id")
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def apply_properties(obj, d):
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from storm.properties import PropertyColumn
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for k, v in d.items():
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53
respodns/dns.py
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53
respodns/dns.py
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@ -0,0 +1,53 @@
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def detect_gfw(r, ip, check):
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# attempt to detect interference from the Great Firewall of China.
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#from .ips import china
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#if r in china: return True
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# class D or class E, neither of which are correct for a (public?) DNS.
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#if int(r.partition(".")[0]) >= 224: return True
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rs = lambda prefix: r.startswith(prefix)
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de = lambda suffix: check.domain.endswith(suffix)
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hosted = de("facebook.com") or de("instagram.com") or de("whatsapp.com")
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if rs("31.13.") and not hosted: return True
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if rs("66.220."): return True
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if rs("69.63."): return True
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if rs("69.171.") and not rs("69.171.250."): return True
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if rs("74.86."): return True
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if rs("75.126."): return True
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if r == "64.13.192.74": return True
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# more non-facebook GFW stuff:
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# 31.13.64.33
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# 31.13.70.1
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# 31.13.70.20
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# 31.13.76.16
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# 31.13.86.1
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# 173.252.110.21
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# 192.99.140.48
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# 199.16.156.40
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# 199.16.158.190
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return False
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async def getaddrs(server, domain, opts):
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from .ip_util import ipkey
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from dns.asyncresolver import Resolver
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from dns.exception import Timeout
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from dns.resolver import NXDOMAIN, NoAnswer, NoNameservers
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res = Resolver(configure=False)
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if opts.impatient:
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res.timeout = 5
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res.lifetime = 2
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res.nameservers = [server]
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try:
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ans = await res.resolve(domain, "A", search=False)
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except NXDOMAIN:
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return ["NXDOMAIN"]
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except NoAnswer:
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return ["NoAnswer"]
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except NoNameservers:
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return ["NoNameservers"]
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except Timeout:
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return ["Timeout"]
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return sorted(set(rr.address for rr in ans.rrset), key=ipkey)
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26
respodns/ip_util.py
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26
respodns/ip_util.py
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import re
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ipv4_pattern = re.compile("(\d+)\.(\d+)\.(\d+)\.(\d+)", re.ASCII)
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def read_ips(f):
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# TODO: make async and more robust. (regex pls)
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# TODO: does readlines() block if the pipe is left open i.e. user input?
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for ip in f.readlines():
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if "#" in ip:
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ip, _, _ = ip.partition("#")
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ip = ip.strip()
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if ip.count(".") != 3:
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continue
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yield ip
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def addr_to_int(ip):
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match = ipv4_pattern.fullmatch(ip)
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assert match is not None, row
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segs = list(map(int, match.group(1, 2, 3, 4)))
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assert all(0 <= seg <= 255 for seg in segs), match.group(0)
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numeric = segs[0] << 24 | segs[1] << 16 | segs[2] << 8 | segs[3]
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return numeric
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def ipkey(ip_string):
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# this is more lenient than addr_to_int.
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segs = [int(s) for s in ip_string.replace(":", ".").split(".")]
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return sum(256**(3 - i) * seg for i, seg in enumerate(segs))
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61
respodns/tables.py
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61
respodns/tables.py
Normal file
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from .util import AttrCheck
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import storm.locals as rain
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class TException(rain.Storm, AttrCheck):
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__storm_table__ = "Exceptions"
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exception_id = rain.Int("ExceptionId", primary=True)
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name = rain.Unicode("Name")
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fail = rain.Bool("Fail")
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class TExecution(rain.Storm, AttrCheck):
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__storm_table__ = "Executions"
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execution_id = rain.Int("ExecutionId", primary=True)
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start_date = rain.DateTime("StartDate")
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finish_date = rain.DateTime("FinishDate")
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completed = rain.Bool("Completed")
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class TAddress(rain.Storm, AttrCheck):
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__storm_table__ = "Ips"
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address_id = rain.Int("IpId", primary=True)
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str = rain.Unicode("AsStr")
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ip = rain.Int("AsInt")
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china = rain.Bool("China")
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block_target = rain.Bool("BlockTarget")
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server = rain.Bool("Server")
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redirect_target = rain.Bool("RedirectTarget")
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gfw_target = rain.Bool("GfwTarget")
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class TKind(rain.Storm, AttrCheck):
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__storm_table__ = "Kinds"
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kind_id = rain.Int("KindId", primary=True)
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name = rain.Unicode("Name")
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xxid = rain.Int("ExpectExceptionId")
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exception = rain.Reference(xxid, "TException.exception_id")
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class TDomain(rain.Storm, AttrCheck):
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__storm_table__ = "Domains"
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domain_id = rain.Int("DomainId", primary=True)
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name = rain.Unicode("Name")
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kind_id = rain.Int("KindId")
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kind = rain.Reference(kind_id, "TKind.kind_id")
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class TRecord(rain.Storm, AttrCheck):
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__storm_table__ = "Records"
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row_id = rain.Int("rowid", primary=True)
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record_id = rain.Int("RecordId")
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address_id = rain.Int("IpId")
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address = rain.Reference(address_id, "TAddress.address_id")
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class TMessage(rain.Storm, AttrCheck):
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__storm_table__ = "Messages"
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message_id = rain.Int("MessageId", primary=True)
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execution_id = rain.Int("ExecutionId")
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server_id = rain.Int("ServerId")
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domain_id = rain.Int("DomainId")
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record_id = rain.Int("RecordId")
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exception_id = rain.Int("ExceptionId")
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execution = rain.Reference(execution_id, "TExecution.execution_id")
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server = rain.Reference(server_id, "TAddress.address_id")
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domain = rain.Reference(domain_id, "TDomain.domain_id")
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#record = rain.Reference(record_id, "TRecord.record_id")
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exception = rain.Reference(exception_id, "TException.exception_id")
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@ -1,6 +1,3 @@
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import re
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ipv4_pattern = re.compile("(\d+)\.(\d+)\.(\d+)\.(\d+)", re.ASCII)
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rot13_mapping = {}
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for a, b, c, d in zip("anAN05", "mzMZ49", "naNA50", "zmZM94"):
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rot13_mapping.update(dict((chr(k), chr(v))
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length = rng.choices((9, 10, 11, 12), (4, 5, 3, 2))[0]
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return "".join(rng.choice(ascii_lowercase) for i in range(length))
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def detect_gfw(r, ip, check):
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# attempt to detect interference from the Great Firewall of China.
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#from .ips import china
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#if r in china: return True
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# class D or class E, neither of which are correct for a (public?) DNS.
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#if int(r.partition(".")[0]) >= 224: return True
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rs = lambda prefix: r.startswith(prefix)
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de = lambda suffix: check.domain.endswith(suffix)
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hosted = de("facebook.com") or de("instagram.com") or de("whatsapp.com")
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if rs("31.13.") and not hosted: return True
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if rs("66.220."): return True
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if rs("69.63."): return True
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if rs("69.171.") and not rs("69.171.250."): return True
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if rs("74.86."): return True
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if rs("75.126."): return True
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if r == "64.13.192.74": return True
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# more non-facebook GFW stuff:
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# 31.13.64.33
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# 31.13.70.1
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# 31.13.70.20
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# 31.13.76.16
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# 31.13.86.1
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# 173.252.110.21
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# 192.99.140.48
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# 199.16.156.40
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# 199.16.158.190
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return False
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async def getaddrs(server, domain, opts):
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from dns.asyncresolver import Resolver
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from dns.exception import Timeout
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from dns.resolver import NXDOMAIN, NoAnswer, NoNameservers
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#from dns.resolver import Resolver
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res = Resolver(configure=False)
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if opts.impatient:
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res.timeout = 5
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res.lifetime = 2
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res.nameservers = [server]
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try:
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#ans = res.resolve(domain, "A", search=False)
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ans = await res.resolve(domain, "A", search=False)
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except NXDOMAIN:
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return ["NXDOMAIN"]
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except NoAnswer:
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return ["NoAnswer"]
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except NoNameservers:
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return ["NoNameservers"]
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except Timeout:
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return ["Timeout"]
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#return list(set(rr.address for rr in ans.rrset))
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return sorted(set(rr.address for rr in ans.rrset), key=ipkey)
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def read_ips(f):
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# TODO: make async and more robust. (regex pls)
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# TODO: does readlines() block if the pipe is left open i.e. user input?
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for ip in f.readlines():
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if "#" in ip:
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ip, _, _ = ip.partition("#")
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ip = ip.strip()
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if ip.count(".") != 3:
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continue
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yield ip
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def rot13(s):
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return "".join(rot13_mapping.get(c, c) for c in s)
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@ -101,19 +31,6 @@ def head(n, it):
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pass
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return res
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def addr_to_int(ip):
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match = ipv4_pattern.fullmatch(ip)
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assert match is not None, row
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segs = list(map(int, match.group(1, 2, 3, 4)))
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assert all(0 <= seg <= 255 for seg in segs), match.group(0)
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numeric = segs[0] << 24 | segs[1] << 16 | segs[2] << 8 | segs[3]
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return numeric
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def ipkey(ip_string):
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# this is more lenient than addr_to_int.
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segs = [int(s) for s in ip_string.replace(":", ".").split(".")]
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return sum(256**(3 - i) * seg for i, seg in enumerate(segs))
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def taskize(item):
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from types import CoroutineType
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from asyncio import Task, create_task
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