653 lines
21 KiB
Python
653 lines
21 KiB
Python
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#!/usr/bin/python
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# -*- coding: utf-8 -*-
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# Copyright: (c) 2020, quidame <quidame@poivron.org>
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# GNU General Public License v3.0+ (see COPYING or https://www.gnu.org/licenses/gpl-3.0.txt)
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from __future__ import absolute_import, division, print_function
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__metaclass__ = type
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DOCUMENTATION = r'''
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---
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module: iptables_state
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short_description: Save iptables state into a file or restore it from a file
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version_added: '1.1.0'
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author: quidame (@quidame)
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description:
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- C(iptables) is used to set up, maintain, and inspect the tables of IP
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packet filter rules in the Linux kernel.
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- This module handles the saving and/or loading of rules. This is the same
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as the behaviour of the C(iptables-save) and C(iptables-restore) (or
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C(ip6tables-save) and C(ip6tables-restore) for IPv6) commands which this
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module uses internally.
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- Modifying the state of the firewall remotely may lead to loose access to
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the host in case of mistake in new ruleset. This module embeds a rollback
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feature to avoid this, by telling the host to restore previous rules if a
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cookie is still there after a given delay, and all this time telling the
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controller to try to remove this cookie on the host through a new
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connection.
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notes:
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- The rollback feature is not a module option and depends on task's
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attributes. To enable it, the module must be played asynchronously, i.e.
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by setting task attributes I(poll) to C(0), and I(async) to a value less
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or equal to C(ANSIBLE_TIMEOUT). If I(async) is greater, the rollback will
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still happen if it shall happen, but you will experience a connection
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timeout instead of more relevant info returned by the module after its
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failure.
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- This module supports I(check_mode).
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options:
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counters:
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description:
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- Save or restore the values of all packet and byte counters.
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- When C(true), the module is not idempotent.
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type: bool
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default: false
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ip_version:
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description:
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- Which version of the IP protocol this module should apply to.
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type: str
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choices: [ ipv4, ipv6 ]
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default: ipv4
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modprobe:
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description:
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- Specify the path to the C(modprobe) program internally used by iptables
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related commands to load kernel modules.
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- By default, C(/proc/sys/kernel/modprobe) is inspected to determine the
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executable's path.
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type: path
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noflush:
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description:
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- For I(state=restored), ignored otherwise.
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- If C(false), restoring iptables rules from a file flushes (deletes)
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all previous contents of the respective table(s). If C(true), the
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previous rules are left untouched (but policies are updated anyway,
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for all built-in chains).
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type: bool
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default: false
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path:
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description:
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- The file the iptables state should be saved to.
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- The file the iptables state should be restored from.
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type: path
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required: yes
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state:
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description:
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- Whether the firewall state should be saved (into a file) or restored
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(from a file).
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type: str
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choices: [ saved, restored ]
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required: yes
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table:
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description:
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- When I(state=restored), restore only the named table even if the input
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file contains other tables. Fail if the named table is not declared in
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the file.
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- When I(state=saved), restrict output to the specified table. If not
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specified, output includes all active tables.
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type: str
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choices: [ filter, nat, mangle, raw, security ]
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wait:
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description:
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- Wait N seconds for the xtables lock to prevent instant failure in case
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multiple instances of the program are running concurrently.
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type: int
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requirements: [iptables, ip6tables]
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'''
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EXAMPLES = r'''
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# This will apply to all loaded/active IPv4 tables.
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- name: Save current state of the firewall in system file
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community.general.iptables_state:
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state: saved
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path: /etc/sysconfig/iptables
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# This will apply only to IPv6 filter table.
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- name: save current state of the firewall in system file
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community.general.iptables_state:
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ip_version: ipv6
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table: filter
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state: saved
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path: /etc/iptables/rules.v6
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# This will load a state from a file, with a rollback in case of access loss
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- name: restore firewall state from a file
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community.general.iptables_state:
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state: restored
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path: /run/iptables.apply
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async: "{{ ansible_timeout }}"
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poll: 0
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# This will load new rules by appending them to the current ones
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- name: restore firewall state from a file
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community.general.iptables_state:
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state: restored
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path: /run/iptables.apply
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noflush: true
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async: "{{ ansible_timeout }}"
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poll: 0
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# This will only retrieve information
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- name: get current state of the firewall
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community.general.iptables_state:
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state: saved
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path: /tmp/iptables
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check_mode: yes
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changed_when: false
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register: iptables_state
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- name: show current state of the firewall
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ansible.builtin.debug:
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var: iptables_state.initial_state
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'''
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RETURN = r'''
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applied:
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description: Whether or not the wanted state has been successfully restored.
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type: bool
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returned: always
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sample: true
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initial_state:
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description: The current state of the firewall when module starts.
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type: list
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elements: str
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returned: always
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sample: [
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"# Generated by xtables-save v1.8.2",
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"*filter",
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":INPUT ACCEPT [0:0]",
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":FORWARD ACCEPT [0:0]",
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":OUTPUT ACCEPT [0:0]",
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"COMMIT",
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"# Completed"
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]
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restored:
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description: The state the module restored, whenever it is finally applied or not.
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type: list
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elements: str
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returned: always
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sample: [
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"# Generated by xtables-save v1.8.2",
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"*filter",
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":INPUT DROP [0:0]",
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":FORWARD DROP [0:0]",
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":OUTPUT ACCEPT [0:0]",
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"-A INPUT -m conntrack --ctstate RELATED,ESTABLISHED -j ACCEPT",
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"-A INPUT -m conntrack --ctstate INVALID -j DROP",
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"-A INPUT -i lo -j ACCEPT",
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"-A INPUT -p icmp -j ACCEPT",
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"-A INPUT -p tcp -m tcp --dport 22 -j ACCEPT",
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"COMMIT",
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"# Completed"
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]
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saved:
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description: The iptables state the module saved.
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type: list
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elements: str
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returned: always
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sample: [
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"# Generated by xtables-save v1.8.2",
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"*filter",
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":INPUT ACCEPT [0:0]",
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":FORWARD DROP [0:0]",
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":OUTPUT ACCEPT [0:0]",
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"COMMIT",
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"# Completed"
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]
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tables:
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description: The iptables we have interest for when module starts.
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type: dict
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contains:
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table:
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description: Policies and rules for all chains of the named table.
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type: list
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elements: str
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sample: |-
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{
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"filter": [
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":INPUT ACCEPT",
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":FORWARD ACCEPT",
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":OUTPUT ACCEPT",
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"-A INPUT -i lo -j ACCEPT",
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"-A INPUT -p icmp -j ACCEPT",
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"-A INPUT -p tcp -m tcp --dport 22 -j ACCEPT",
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"-A INPUT -j REJECT --reject-with icmp-host-prohibited"
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],
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"nat": [
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":PREROUTING ACCEPT",
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":INPUT ACCEPT",
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":OUTPUT ACCEPT",
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":POSTROUTING ACCEPT"
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]
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}
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returned: always
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'''
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import re
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import os
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import time
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import tempfile
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import filecmp
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import shutil
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from ansible.module_utils.basic import AnsibleModule
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from ansible.module_utils.common.text.converters import to_bytes, to_native
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IPTABLES = dict(
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ipv4='iptables',
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ipv6='ip6tables',
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)
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SAVE = dict(
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ipv4='iptables-save',
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ipv6='ip6tables-save',
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)
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RESTORE = dict(
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ipv4='iptables-restore',
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ipv6='ip6tables-restore',
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)
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TABLES = ['filter', 'mangle', 'nat', 'raw', 'security']
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def read_state(b_path):
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'''
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Read a file and store its content in a variable as a list.
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'''
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with open(b_path, 'r') as f:
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text = f.read()
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lines = text.splitlines()
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while '' in lines:
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lines.remove('')
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return lines
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def write_state(b_path, lines, changed):
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'''
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Write given contents to the given path, and return changed status.
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'''
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# Populate a temporary file
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tmpfd, tmpfile = tempfile.mkstemp()
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with os.fdopen(tmpfd, 'w') as f:
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for line in lines:
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f.write('%s\n' % line)
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# Prepare to copy temporary file to the final destination
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if not os.path.exists(b_path):
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b_destdir = os.path.dirname(b_path)
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destdir = to_native(b_destdir, errors='surrogate_or_strict')
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if b_destdir and not os.path.exists(b_destdir) and not module.check_mode:
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try:
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os.makedirs(b_destdir)
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except Exception as err:
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module.fail_json(
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msg='Error creating %s: %s' % (destdir, to_native(err)),
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initial_state=lines)
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changed = True
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elif not filecmp.cmp(tmpfile, b_path):
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changed = True
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# Do it
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if changed and not module.check_mode:
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try:
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shutil.copyfile(tmpfile, b_path)
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except Exception as err:
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path = to_native(b_path, errors='surrogate_or_strict')
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module.fail_json(
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msg='Error saving state into %s: %s' % (path, to_native(err)),
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initial_state=lines)
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return changed
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def initialize_from_null_state(initializer, initcommand, fallbackcmd, table):
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'''
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This ensures iptables-state output is suitable for iptables-restore to roll
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back to it, i.e. iptables-save output is not empty. This also works for the
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iptables-nft-save alternative.
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'''
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if table is None:
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table = 'filter'
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commandline = list(initializer)
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commandline += ['-t', table]
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dummy = module.run_command(commandline, check_rc=True)
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(rc, out, err) = module.run_command(initcommand, check_rc=True)
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if '*%s' % table not in out.splitlines():
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# The last resort.
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iptables_input = '*%s\n:OUTPUT ACCEPT\nCOMMIT\n' % table
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dummy = module.run_command(fallbackcmd, data=iptables_input, check_rc=True)
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(rc, out, err) = module.run_command(initcommand, check_rc=True)
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return rc, out, err
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def filter_and_format_state(string):
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'''
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Remove timestamps to ensure idempotence between runs. Also remove counters
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by default. And return the result as a list.
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'''
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string = re.sub(r'((^|\n)# (Generated|Completed)[^\n]*) on [^\n]*', r'\1', string)
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if not module.params['counters']:
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string = re.sub(r'\[[0-9]+:[0-9]+\]', r'[0:0]', string)
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lines = string.splitlines()
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while '' in lines:
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lines.remove('')
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return lines
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def per_table_state(command, state):
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'''
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Convert raw iptables-save output into usable datastructure, for reliable
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comparisons between initial and final states.
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'''
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tables = dict()
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for t in TABLES:
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COMMAND = list(command)
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if '*%s' % t in state.splitlines():
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COMMAND.extend(['--table', t])
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dummy, out, dummy = module.run_command(COMMAND, check_rc=True)
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out = re.sub(r'(^|\n)(# Generated|# Completed|[*]%s|COMMIT)[^\n]*' % t, r'', out)
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out = re.sub(r' *\[[0-9]+:[0-9]+\] *', r'', out)
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table = out.splitlines()
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while '' in table:
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table.remove('')
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tables[t] = table
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return tables
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def main():
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global module
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module = AnsibleModule(
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argument_spec=dict(
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path=dict(type='path', required=True),
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state=dict(type='str', choices=['saved', 'restored'], required=True),
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table=dict(type='str', choices=['filter', 'nat', 'mangle', 'raw', 'security']),
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noflush=dict(type='bool', default=False),
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counters=dict(type='bool', default=False),
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modprobe=dict(type='path'),
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ip_version=dict(type='str', choices=['ipv4', 'ipv6'], default='ipv4'),
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wait=dict(type='int'),
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_timeout=dict(type='int'),
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_back=dict(type='path'),
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),
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required_together=[
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['_timeout', '_back'],
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],
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supports_check_mode=True,
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)
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# We'll parse iptables-restore stderr
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module.run_command_environ_update = dict(LANG='C', LC_MESSAGES='C')
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path = module.params['path']
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state = module.params['state']
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table = module.params['table']
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noflush = module.params['noflush']
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counters = module.params['counters']
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modprobe = module.params['modprobe']
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ip_version = module.params['ip_version']
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wait = module.params['wait']
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_timeout = module.params['_timeout']
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_back = module.params['_back']
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bin_iptables = module.get_bin_path(IPTABLES[ip_version], True)
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bin_iptables_save = module.get_bin_path(SAVE[ip_version], True)
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bin_iptables_restore = module.get_bin_path(RESTORE[ip_version], True)
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os.umask(0o077)
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changed = False
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COMMANDARGS = []
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INITCOMMAND = [bin_iptables_save]
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INITIALIZER = [bin_iptables, '-L', '-n']
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TESTCOMMAND = [bin_iptables_restore, '--test']
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FALLBACKCMD = [bin_iptables_restore]
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if counters:
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COMMANDARGS.append('--counters')
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if table is not None:
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COMMANDARGS.extend(['--table', table])
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if wait is not None:
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TESTCOMMAND.extend(['--wait', '%s' % wait])
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if modprobe is not None:
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b_modprobe = to_bytes(modprobe, errors='surrogate_or_strict')
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if not os.path.exists(b_modprobe):
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module.fail_json(msg="modprobe %s not found" % modprobe)
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if not os.path.isfile(b_modprobe):
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module.fail_json(msg="modprobe %s not a file" % modprobe)
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if not os.access(b_modprobe, os.R_OK):
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module.fail_json(msg="modprobe %s not readable" % modprobe)
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if not os.access(b_modprobe, os.X_OK):
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module.fail_json(msg="modprobe %s not executable" % modprobe)
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COMMANDARGS.extend(['--modprobe', modprobe])
|
||
|
INITIALIZER.extend(['--modprobe', modprobe])
|
||
|
INITCOMMAND.extend(['--modprobe', modprobe])
|
||
|
TESTCOMMAND.extend(['--modprobe', modprobe])
|
||
|
FALLBACKCMD.extend(['--modprobe', modprobe])
|
||
|
|
||
|
SAVECOMMAND = list(COMMANDARGS)
|
||
|
SAVECOMMAND.insert(0, bin_iptables_save)
|
||
|
|
||
|
b_path = to_bytes(path, errors='surrogate_or_strict')
|
||
|
|
||
|
if state == 'restored':
|
||
|
if not os.path.exists(b_path):
|
||
|
module.fail_json(msg="Source %s not found" % path)
|
||
|
if not os.path.isfile(b_path):
|
||
|
module.fail_json(msg="Source %s not a file" % path)
|
||
|
if not os.access(b_path, os.R_OK):
|
||
|
module.fail_json(msg="Source %s not readable" % path)
|
||
|
state_to_restore = read_state(b_path)
|
||
|
else:
|
||
|
cmd = ' '.join(SAVECOMMAND)
|
||
|
|
||
|
(rc, stdout, stderr) = module.run_command(INITCOMMAND, check_rc=True)
|
||
|
|
||
|
# The issue comes when wanting to restore state from empty iptable-save's
|
||
|
# output... what happens when, say:
|
||
|
# - no table is specified, and iptables-save's output is only nat table;
|
||
|
# - we give filter's ruleset to iptables-restore, that locks ourselve out
|
||
|
# of the host;
|
||
|
# then trying to roll iptables state back to the previous (working) setup
|
||
|
# doesn't override current filter table because no filter table is stored
|
||
|
# in the backup ! So we have to ensure tables to be restored have a backup
|
||
|
# in case of rollback.
|
||
|
if table is None:
|
||
|
if state == 'restored':
|
||
|
for t in TABLES:
|
||
|
if '*%s' % t in state_to_restore:
|
||
|
if len(stdout) == 0 or '*%s' % t not in stdout.splitlines():
|
||
|
(rc, stdout, stderr) = initialize_from_null_state(INITIALIZER, INITCOMMAND, FALLBACKCMD, t)
|
||
|
elif len(stdout) == 0:
|
||
|
(rc, stdout, stderr) = initialize_from_null_state(INITIALIZER, INITCOMMAND, FALLBACKCMD, 'filter')
|
||
|
|
||
|
elif state == 'restored' and '*%s' % table not in state_to_restore:
|
||
|
module.fail_json(msg="Table %s to restore not defined in %s" % (table, path))
|
||
|
|
||
|
elif len(stdout) == 0 or '*%s' % table not in stdout.splitlines():
|
||
|
(rc, stdout, stderr) = initialize_from_null_state(INITIALIZER, INITCOMMAND, FALLBACKCMD, table)
|
||
|
|
||
|
initial_state = filter_and_format_state(stdout)
|
||
|
if initial_state is None:
|
||
|
module.fail_json(msg="Unable to initialize firewall from NULL state.")
|
||
|
|
||
|
# Depending on the value of 'table', initref_state may differ from
|
||
|
# initial_state.
|
||
|
(rc, stdout, stderr) = module.run_command(SAVECOMMAND, check_rc=True)
|
||
|
tables_before = per_table_state(SAVECOMMAND, stdout)
|
||
|
initref_state = filter_and_format_state(stdout)
|
||
|
|
||
|
if state == 'saved':
|
||
|
changed = write_state(b_path, initref_state, changed)
|
||
|
module.exit_json(
|
||
|
changed=changed,
|
||
|
cmd=cmd,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
saved=initref_state)
|
||
|
|
||
|
#
|
||
|
# All remaining code is for state=restored
|
||
|
#
|
||
|
|
||
|
MAINCOMMAND = list(COMMANDARGS)
|
||
|
MAINCOMMAND.insert(0, bin_iptables_restore)
|
||
|
|
||
|
if wait is not None:
|
||
|
MAINCOMMAND.extend(['--wait', '%s' % wait])
|
||
|
|
||
|
if _back is not None:
|
||
|
b_back = to_bytes(_back, errors='surrogate_or_strict')
|
||
|
dummy = write_state(b_back, initref_state, changed)
|
||
|
BACKCOMMAND = list(MAINCOMMAND)
|
||
|
BACKCOMMAND.append(_back)
|
||
|
|
||
|
if noflush:
|
||
|
MAINCOMMAND.append('--noflush')
|
||
|
|
||
|
MAINCOMMAND.append(path)
|
||
|
cmd = ' '.join(MAINCOMMAND)
|
||
|
|
||
|
TESTCOMMAND = list(MAINCOMMAND)
|
||
|
TESTCOMMAND.insert(1, '--test')
|
||
|
error_msg = "Source %s is not suitable for input to %s" % (path, os.path.basename(bin_iptables_restore))
|
||
|
|
||
|
# Due to a bug in iptables-nft-restore --test, we have to validate tables
|
||
|
# one by one (https://bugs.debian.org/cgi-bin/bugreport.cgi?bug=960003).
|
||
|
for t in tables_before:
|
||
|
testcommand = list(TESTCOMMAND)
|
||
|
testcommand.extend(['--table', t])
|
||
|
(rc, stdout, stderr) = module.run_command(testcommand)
|
||
|
|
||
|
if 'Another app is currently holding the xtables lock' in stderr:
|
||
|
error_msg = stderr
|
||
|
|
||
|
if rc != 0:
|
||
|
cmd = ' '.join(testcommand)
|
||
|
module.fail_json(
|
||
|
msg=error_msg,
|
||
|
cmd=cmd,
|
||
|
rc=rc,
|
||
|
stdout=stdout,
|
||
|
stderr=stderr,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
restored=state_to_restore,
|
||
|
applied=False)
|
||
|
|
||
|
if module.check_mode:
|
||
|
tmpfd, tmpfile = tempfile.mkstemp()
|
||
|
with os.fdopen(tmpfd, 'w') as f:
|
||
|
for line in initial_state:
|
||
|
f.write('%s\n' % line)
|
||
|
|
||
|
if filecmp.cmp(tmpfile, b_path):
|
||
|
restored_state = initial_state
|
||
|
else:
|
||
|
restored_state = state_to_restore
|
||
|
|
||
|
else:
|
||
|
# Let time enough to the plugin to retrieve async status of the module
|
||
|
# in case of bad option type/value and the like.
|
||
|
if _back is not None:
|
||
|
b_starter = to_bytes('%s.starter' % _back, errors='surrogate_or_strict')
|
||
|
while True:
|
||
|
if os.path.exists(b_starter):
|
||
|
os.remove(b_starter)
|
||
|
break
|
||
|
time.sleep(0.01)
|
||
|
|
||
|
(rc, stdout, stderr) = module.run_command(MAINCOMMAND)
|
||
|
if 'Another app is currently holding the xtables lock' in stderr:
|
||
|
module.fail_json(
|
||
|
msg=stderr,
|
||
|
cmd=cmd,
|
||
|
rc=rc,
|
||
|
stdout=stdout,
|
||
|
stderr=stderr,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
restored=state_to_restore,
|
||
|
applied=False)
|
||
|
|
||
|
(rc, stdout, stderr) = module.run_command(SAVECOMMAND, check_rc=True)
|
||
|
restored_state = filter_and_format_state(stdout)
|
||
|
|
||
|
if restored_state not in (initref_state, initial_state):
|
||
|
if module.check_mode:
|
||
|
changed = True
|
||
|
else:
|
||
|
tables_after = per_table_state(SAVECOMMAND, stdout)
|
||
|
if tables_after != tables_before:
|
||
|
changed = True
|
||
|
|
||
|
if _back is None or module.check_mode:
|
||
|
module.exit_json(
|
||
|
changed=changed,
|
||
|
cmd=cmd,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
restored=restored_state,
|
||
|
applied=True)
|
||
|
|
||
|
# The rollback implementation currently needs:
|
||
|
# Here:
|
||
|
# * test existence of the backup file, exit with success if it doesn't exist
|
||
|
# * otherwise, restore iptables from this file and return failure
|
||
|
# Action plugin:
|
||
|
# * try to remove the backup file
|
||
|
# * wait async task is finished and retrieve its final status
|
||
|
# * modify it and return the result
|
||
|
# Task:
|
||
|
# * task attribute 'async' set to the same value (or lower) than ansible
|
||
|
# timeout
|
||
|
# * task attribute 'poll' equals 0
|
||
|
#
|
||
|
for dummy in range(_timeout):
|
||
|
if os.path.exists(b_back):
|
||
|
time.sleep(1)
|
||
|
continue
|
||
|
module.exit_json(
|
||
|
changed=changed,
|
||
|
cmd=cmd,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
restored=restored_state,
|
||
|
applied=True)
|
||
|
|
||
|
# Here we are: for whatever reason, but probably due to the current ruleset,
|
||
|
# the action plugin (i.e. on the controller) was unable to remove the backup
|
||
|
# cookie, so we restore initial state from it.
|
||
|
(rc, stdout, stderr) = module.run_command(BACKCOMMAND, check_rc=True)
|
||
|
os.remove(b_back)
|
||
|
|
||
|
(rc, stdout, stderr) = module.run_command(SAVECOMMAND, check_rc=True)
|
||
|
tables_rollback = per_table_state(SAVECOMMAND, stdout)
|
||
|
|
||
|
msg = (
|
||
|
"Failed to confirm state restored from %s after %ss. "
|
||
|
"Firewall has been rolled back to its initial state." % (path, _timeout)
|
||
|
)
|
||
|
|
||
|
module.fail_json(
|
||
|
changed=(tables_before != tables_rollback),
|
||
|
msg=msg,
|
||
|
cmd=cmd,
|
||
|
tables=tables_before,
|
||
|
initial_state=initial_state,
|
||
|
restored=restored_state,
|
||
|
applied=False)
|
||
|
|
||
|
|
||
|
if __name__ == '__main__':
|
||
|
main()
|