forked from p15670423/monkey
Revert "Feature/async scan"
This commit is contained in:
parent
a91b5cc489
commit
c1efeb7cc1
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@ -13,7 +13,7 @@ from exploit import HostExploiter
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from exploit.tools import HTTPTools, get_monkey_depth
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from exploit.tools import HTTPTools, get_monkey_depth
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from exploit.tools import get_target_monkey
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from exploit.tools import get_target_monkey
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from model import RDP_CMDLINE_HTTP_BITS, RDP_CMDLINE_HTTP_VBS
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from model import RDP_CMDLINE_HTTP_BITS, RDP_CMDLINE_HTTP_VBS
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from tools import build_monkey_commandline
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from tools import build_monkey_commandline
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__author__ = 'hoffer'
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__author__ = 'hoffer'
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@ -245,7 +245,7 @@ class RdpExploiter(HostExploiter):
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return True
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return True
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if not self.host.os.get('type'):
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if not self.host.os.get('type'):
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is_open, _ = check_tcp_port(self.host.ip_addr, RDP_PORT)
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is_open, _ = check_port_tcp(self.host.ip_addr, RDP_PORT)
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if is_open:
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if is_open:
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self.host.os['type'] = 'windows'
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self.host.os['type'] = 'windows'
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return True
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return True
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@ -254,7 +254,7 @@ class RdpExploiter(HostExploiter):
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def exploit_host(self):
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def exploit_host(self):
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global g_reactor
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global g_reactor
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is_open, _ = check_tcp_port(self.host.ip_addr, RDP_PORT)
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is_open, _ = check_port_tcp(self.host.ip_addr, RDP_PORT)
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if not is_open:
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if not is_open:
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LOG.info("RDP port is closed on %r, skipping", self.host)
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LOG.info("RDP port is closed on %r, skipping", self.host)
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return False
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return False
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@ -7,7 +7,7 @@ from exploit import HostExploiter
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from exploit.tools import SmbTools, get_target_monkey, get_monkey_depth
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from exploit.tools import SmbTools, get_target_monkey, get_monkey_depth
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from model import MONKEY_CMDLINE_DETACHED_WINDOWS, DROPPER_CMDLINE_DETACHED_WINDOWS
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from model import MONKEY_CMDLINE_DETACHED_WINDOWS, DROPPER_CMDLINE_DETACHED_WINDOWS
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from network import SMBFinger
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from network import SMBFinger
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from tools import build_monkey_commandline
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from tools import build_monkey_commandline
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LOG = getLogger(__name__)
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LOG = getLogger(__name__)
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@ -31,12 +31,12 @@ class SmbExploiter(HostExploiter):
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return True
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return True
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if not self.host.os.get('type'):
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if not self.host.os.get('type'):
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is_smb_open, _ = check_tcp_port(self.host.ip_addr, 445)
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is_smb_open, _ = check_port_tcp(self.host.ip_addr, 445)
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if is_smb_open:
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if is_smb_open:
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smb_finger = SMBFinger()
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smb_finger = SMBFinger()
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smb_finger.get_host_fingerprint(self.host)
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smb_finger.get_host_fingerprint(self.host)
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else:
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else:
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is_nb_open, _ = check_tcp_port(self.host.ip_addr, 139)
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is_nb_open, _ = check_port_tcp(self.host.ip_addr, 139)
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if is_nb_open:
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if is_nb_open:
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self.host.os['type'] = 'windows'
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self.host.os['type'] = 'windows'
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return self.host.os.get('type') in self._TARGET_OS_TYPE
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return self.host.os.get('type') in self._TARGET_OS_TYPE
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@ -7,7 +7,7 @@ import monkeyfs
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from exploit import HostExploiter
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from exploit import HostExploiter
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from exploit.tools import get_target_monkey, get_monkey_depth
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from exploit.tools import get_target_monkey, get_monkey_depth
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from model import MONKEY_ARG
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from model import MONKEY_ARG
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from tools import build_monkey_commandline
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from tools import build_monkey_commandline
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__author__ = 'hoffer'
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__author__ = 'hoffer'
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@ -41,7 +41,7 @@ class SSHExploiter(HostExploiter):
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if servdata.get('name') == 'ssh' and servkey.startswith('tcp-'):
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if servdata.get('name') == 'ssh' and servkey.startswith('tcp-'):
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port = int(servkey.replace('tcp-', ''))
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port = int(servkey.replace('tcp-', ''))
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is_open, _ = check_tcp_port(self.host.ip_addr, port)
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is_open, _ = check_port_tcp(self.host.ip_addr, port)
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if not is_open:
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if not is_open:
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LOG.info("SSH port is closed on %r, skipping", self.host)
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LOG.info("SSH port is closed on %r, skipping", self.host)
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return False
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return False
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@ -17,7 +17,7 @@ from impacket.dcerpc.v5 import transport
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from exploit.tools import SmbTools, get_target_monkey, get_monkey_depth
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from exploit.tools import SmbTools, get_target_monkey, get_monkey_depth
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from model import DROPPER_CMDLINE_WINDOWS, MONKEY_CMDLINE_WINDOWS
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from model import DROPPER_CMDLINE_WINDOWS, MONKEY_CMDLINE_WINDOWS
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from network import SMBFinger
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from network import SMBFinger
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from tools import build_monkey_commandline
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from tools import build_monkey_commandline
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from . import HostExploiter
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from . import HostExploiter
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@ -168,7 +168,7 @@ class Ms08_067_Exploiter(HostExploiter):
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if not self.host.os.get('type') or (
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if not self.host.os.get('type') or (
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self.host.os.get('type') in self._TARGET_OS_TYPE and not self.host.os.get('version')):
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self.host.os.get('type') in self._TARGET_OS_TYPE and not self.host.os.get('version')):
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is_smb_open, _ = check_tcp_port(self.host.ip_addr, 445)
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is_smb_open, _ = check_port_tcp(self.host.ip_addr, 445)
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if is_smb_open:
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if is_smb_open:
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smb_finger = SMBFinger()
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smb_finger = SMBFinger()
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if smb_finger.get_host_fingerprint(self.host):
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if smb_finger.get_host_fingerprint(self.host):
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@ -1,8 +1,7 @@
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import re
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import re
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from model.host import VictimHost
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from network import HostFinger
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from network import HostFinger
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from model.host import VictimHost
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SSH_PORT = 22
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SSH_PORT = 22
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SSH_SERVICE_DEFAULT = 'tcp-22'
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SSH_SERVICE_DEFAULT = 'tcp-22'
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@ -39,7 +38,7 @@ class SSHFinger(HostFinger):
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self._banner_match(name, host, banner)
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self._banner_match(name, host, banner)
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return
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return
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is_open, banner = check_tcp_port(host.ip_addr, SSH_PORT, TIMEOUT, True)
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is_open, banner = check_port_tcp(host.ip_addr, SSH_PORT, TIMEOUT, True)
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if is_open:
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if is_open:
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host.services[SSH_SERVICE_DEFAULT] = {}
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host.services[SSH_SERVICE_DEFAULT] = {}
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@ -1,7 +1,8 @@
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import time
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from random import shuffle
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from random import shuffle
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from network import HostScanner, HostFinger
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from network import HostScanner, HostFinger
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from network.tools import check_tcp_ports
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from model.host import VictimHost
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from network.tools import check_port_tcp
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__author__ = 'itamar'
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__author__ = 'itamar'
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@ -16,24 +17,29 @@ class TcpScanner(HostScanner, HostFinger):
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return self.get_host_fingerprint(host, True)
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return self.get_host_fingerprint(host, True)
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def get_host_fingerprint(self, host, only_one_port=False):
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def get_host_fingerprint(self, host, only_one_port=False):
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"""
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assert isinstance(host, VictimHost)
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Scans a target host to see if it's alive using the tcp_target_ports specified in the configuration.
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:param host: VictimHost structure
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:param only_one_port: Currently unused.
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:return: T/F if there is at least one open port. In addition, the host object is updated to mark those services as alive.
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"""
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count = 0
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# maybe hide under really bad detection systems
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# maybe hide under really bad detection systems
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target_ports = self._config.tcp_target_ports[:]
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target_ports = self._config.tcp_target_ports[:]
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shuffle(target_ports)
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shuffle(target_ports)
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ports, banners = check_tcp_ports(host.ip_addr, target_ports, self._config.tcp_scan_timeout / 1000.0)
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for target_port in target_ports:
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for target_port, banner in zip(ports, banners):
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is_open, banner = check_port_tcp(host.ip_addr,
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target_port,
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self._config.tcp_scan_timeout / 1000.0,
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self._config.tcp_scan_get_banner)
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if is_open:
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count += 1
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service = 'tcp-' + str(target_port)
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service = 'tcp-' + str(target_port)
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host.services[service] = {}
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host.services[service] = {}
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if banner:
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if banner:
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host.services[service]['banner'] = banner
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host.services[service]['banner'] = banner
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if only_one_port:
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if only_one_port:
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break
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break
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else:
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time.sleep(self._config.tcp_scan_interval / 1000.0)
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return len(ports) != 0
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return count != 0
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@ -1,11 +1,9 @@
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import logging
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import select
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import socket
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import socket
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import select
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import logging
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import struct
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import struct
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import time
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DEFAULT_TIMEOUT = 10
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DEFAULT_TIMEOUT = 10
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SLEEP_BETWEEN_POLL = 0.5
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BANNER_READ = 1024
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BANNER_READ = 1024
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LOG = logging.getLogger(__name__)
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LOG = logging.getLogger(__name__)
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@ -37,15 +35,7 @@ def struct_unpack_tracker_string(data, index):
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return struct_unpack_tracker(data,index,fmt)
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return struct_unpack_tracker(data,index,fmt)
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def check_tcp_port(ip, port, timeout=DEFAULT_TIMEOUT, get_banner=False):
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def check_port_tcp(ip, port, timeout=DEFAULT_TIMEOUT, get_banner=False):
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"""
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Checks if a given TCP port is open
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:param ip: Target IP
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:param port: Target Port
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:param timeout: Timeout for socket connection
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:param get_banner: if true, pulls first BANNER_READ bytes from the socket.
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:return: Tuple, T/F + banner if requested.
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"""
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sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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sock.settimeout(timeout)
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sock.settimeout(timeout)
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@ -53,7 +43,7 @@ def check_tcp_port(ip, port, timeout=DEFAULT_TIMEOUT, get_banner=False):
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sock.connect((ip, port))
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sock.connect((ip, port))
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except socket.timeout:
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except socket.timeout:
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return False, None
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return False, None
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except socket.error as exc:
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except socket.error, exc:
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LOG.debug("Check port: %s:%s, Exception: %s", ip, port, exc)
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LOG.debug("Check port: %s:%s, Exception: %s", ip, port, exc)
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return False, None
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return False, None
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@ -64,21 +54,14 @@ def check_tcp_port(ip, port, timeout=DEFAULT_TIMEOUT, get_banner=False):
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read_ready, _, _ = select.select([sock], [], [], timeout)
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read_ready, _, _ = select.select([sock], [], [], timeout)
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if len(read_ready) > 0:
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if len(read_ready) > 0:
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banner = sock.recv(BANNER_READ)
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banner = sock.recv(BANNER_READ)
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except socket.error:
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except:
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pass
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pass
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sock.close()
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sock.close()
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return True, banner
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return True, banner
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def check_udp_port(ip, port, timeout=DEFAULT_TIMEOUT):
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def check_port_udp(ip, port, timeout=DEFAULT_TIMEOUT):
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"""
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Checks if a given UDP port is open by checking if it replies to an empty message
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:param ip: Target IP
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:param port: Target port
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:param timeout: Timeout to wait
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:return: Tuple, T/F + banner
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"""
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sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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sock.settimeout(timeout)
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sock.settimeout(timeout)
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@ -89,71 +72,8 @@ def check_udp_port(ip, port, timeout=DEFAULT_TIMEOUT):
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sock.sendto("-", (ip, port))
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sock.sendto("-", (ip, port))
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data, _ = sock.recvfrom(BANNER_READ)
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data, _ = sock.recvfrom(BANNER_READ)
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is_open = True
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is_open = True
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except socket.error:
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except:
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pass
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pass
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sock.close()
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sock.close()
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return is_open, data
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return is_open, data
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def check_tcp_ports(ip, ports, timeout=DEFAULT_TIMEOUT, get_banner=False):
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"""
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Checks whether any of the given ports are open on a target IP.
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:param ip: IP of host to attack
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:param ports: List of ports to attack. Must not be empty.
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:param timeout: Amount of time to wait for connection.
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:param get_banner: T/F if to get first packets from server
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:return: list of open ports. If get_banner=True, then a matching list of banners.
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"""
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sockets = [socket.socket(socket.AF_INET, socket.SOCK_STREAM) for _ in range(len(ports))]
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[s.setblocking(0) for s in sockets]
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port_attempts = []
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try:
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for sock, port in zip(sockets, ports):
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LOG.debug("Connecting to port %d" % port)
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err = sock.connect_ex((ip, port))
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if err == 0:
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port_attempts.append((port, sock))
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if err == 10035: # WSAEWOULDBLOCK is valid, see https://msdn.microsoft.com/en-us/library/windows/desktop/ms740668%28v=vs.85%29.aspx?f=255&MSPPError=-2147217396
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port_attempts.append((port, sock))
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if len(port_attempts) != 0:
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num_replies = 0
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timeout = int(round(timeout)) # clamp to integer, to avoid checking input
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time_left = timeout
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write_sockets = []
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read_sockets = []
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while num_replies != len(port_attempts):
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# bad ports show up as err_sockets
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read_sockets, write_sockets, err_sockets = \
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select.select(
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[s[1] for s in port_attempts],
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[s[1] for s in port_attempts],
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[s[1] for s in port_attempts],
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time_left)
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# any read_socket is automatically a writesocket
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num_replies = len(write_sockets) + len(err_sockets)
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if num_replies == len(port_attempts) or time_left <= 0:
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break
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else:
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time_left -= SLEEP_BETWEEN_POLL
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time.sleep(SLEEP_BETWEEN_POLL)
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connected_ports_sockets = [x for x in port_attempts if x[1] in write_sockets]
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LOG.debug(
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"On host %s discovered the following ports %s" %
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(str(ip), ",".join([str(x) for x in connected_ports_sockets])))
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banners = []
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if get_banner:
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# read first X bytes
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banners = [sock.recv(BANNER_READ) if sock in read_sockets else ""
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for port, sock in connected_ports_sockets]
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pass
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# try to cleanup
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[s[1].close() for s in port_attempts]
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return [port for port, sock in connected_ports_sockets], banners
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else:
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return [], []
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except socket.error as exc:
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LOG.warning("Exception when checking ports on host %s, Exception: %s", str(ip), exc)
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return [], []
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@ -8,7 +8,7 @@ from threading import Thread
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from model import VictimHost
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from model import VictimHost
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from network.firewall import app as firewall
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from network.firewall import app as firewall
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from network.info import local_ips, get_free_tcp_port
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from network.info import local_ips, get_free_tcp_port
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from network.tools import check_tcp_port
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from network.tools import check_port_tcp
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from transport.base import get_last_serve_time
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from transport.base import get_last_serve_time
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__author__ = 'hoffer'
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__author__ = 'hoffer'
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@ -40,7 +40,7 @@ def _check_tunnel(address, port, existing_sock=None):
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sock = existing_sock
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sock = existing_sock
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|
||||||
LOG.debug("Checking tunnel %s:%s", address, port)
|
LOG.debug("Checking tunnel %s:%s", address, port)
|
||||||
is_open, _ = check_tcp_port(address, int(port))
|
is_open, _ = check_port_tcp(address, int(port))
|
||||||
if not is_open:
|
if not is_open:
|
||||||
LOG.debug("Could not connect to %s:%s", address, port)
|
LOG.debug("Could not connect to %s:%s", address, port)
|
||||||
if not existing_sock:
|
if not existing_sock:
|
||||||
|
|
Loading…
Reference in New Issue