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314 lines
10 KiB
314 lines
10 KiB
/* |
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* Copyright (C) 2012 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#include <set> |
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#include <errno.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#define LOG_TAG "FirewallController" |
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#define LOG_NDEBUG 0 |
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#include <android-base/strings.h> |
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#include <android-base/stringprintf.h> |
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#include <cutils/log.h> |
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#include "NetdConstants.h" |
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#include "FirewallController.h" |
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using android::base::Join; |
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using android::base::StringAppendF; |
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using android::base::StringPrintf; |
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auto FirewallController::execIptablesRestore = ::execIptablesRestore; |
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const char* FirewallController::TABLE = "filter"; |
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const char* FirewallController::LOCAL_INPUT = "fw_INPUT"; |
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const char* FirewallController::LOCAL_OUTPUT = "fw_OUTPUT"; |
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const char* FirewallController::LOCAL_FORWARD = "fw_FORWARD"; |
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const char* FirewallController::LOCAL_DOZABLE = "fw_dozable"; |
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const char* FirewallController::LOCAL_STANDBY = "fw_standby"; |
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const char* FirewallController::LOCAL_POWERSAVE = "fw_powersave"; |
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// ICMPv6 types that are required for any form of IPv6 connectivity to work. Note that because the |
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// fw_dozable chain is called from both INPUT and OUTPUT, this includes both packets that we need |
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// to be able to send (e.g., RS, NS), and packets that we need to receive (e.g., RA, NA). |
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const char* FirewallController::ICMPV6_TYPES[] = { |
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"packet-too-big", |
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"router-solicitation", |
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"router-advertisement", |
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"neighbour-solicitation", |
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"neighbour-advertisement", |
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"redirect", |
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}; |
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FirewallController::FirewallController(void) { |
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// If no rules are set, it's in BLACKLIST mode |
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mFirewallType = BLACKLIST; |
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mIfaceRules = {}; |
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} |
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int FirewallController::setupIptablesHooks(void) { |
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int res = 0; |
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res |= createChain(LOCAL_DOZABLE, getFirewallType(DOZABLE)); |
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res |= createChain(LOCAL_STANDBY, getFirewallType(STANDBY)); |
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res |= createChain(LOCAL_POWERSAVE, getFirewallType(POWERSAVE)); |
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return res; |
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} |
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int FirewallController::enableFirewall(FirewallType ftype) { |
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int res = 0; |
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if (mFirewallType != ftype) { |
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// flush any existing rules |
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disableFirewall(); |
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if (ftype == WHITELIST) { |
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// create default rule to drop all traffic |
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std::string command = |
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"*filter\n" |
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"-A fw_INPUT -j DROP\n" |
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"-A fw_OUTPUT -j REJECT\n" |
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"-A fw_FORWARD -j REJECT\n" |
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"COMMIT\n"; |
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res = execIptablesRestore(V4V6, command.c_str()); |
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} |
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// Set this after calling disableFirewall(), since it defaults to WHITELIST there |
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mFirewallType = ftype; |
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} |
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return res; |
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} |
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int FirewallController::disableFirewall(void) { |
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mFirewallType = WHITELIST; |
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mIfaceRules.clear(); |
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// flush any existing rules |
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std::string command = |
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"*filter\n" |
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":fw_INPUT -\n" |
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":fw_OUTPUT -\n" |
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":fw_FORWARD -\n" |
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"COMMIT\n"; |
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return execIptablesRestore(V4V6, command.c_str()); |
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} |
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int FirewallController::enableChildChains(ChildChain chain, bool enable) { |
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int res = 0; |
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const char* name; |
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switch(chain) { |
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case DOZABLE: |
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name = LOCAL_DOZABLE; |
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break; |
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case STANDBY: |
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name = LOCAL_STANDBY; |
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break; |
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case POWERSAVE: |
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name = LOCAL_POWERSAVE; |
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break; |
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default: |
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return res; |
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} |
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std::string command = "*filter\n"; |
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for (const char *parent : { LOCAL_INPUT, LOCAL_OUTPUT }) { |
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StringAppendF(&command, "%s %s -j %s\n", (enable ? "-A" : "-D"), parent, name); |
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} |
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StringAppendF(&command, "COMMIT\n"); |
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return execIptablesRestore(V4V6, command); |
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} |
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int FirewallController::isFirewallEnabled(void) { |
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// TODO: verify that rules are still in place near top |
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return -1; |
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} |
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int FirewallController::setInterfaceRule(const char* iface, FirewallRule rule) { |
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if (mFirewallType == BLACKLIST) { |
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// Unsupported in BLACKLIST mode |
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return -1; |
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} |
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if (!isIfaceName(iface)) { |
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errno = ENOENT; |
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return -1; |
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} |
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// Only delete rules if we actually added them, because otherwise our iptables-restore |
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// processes will terminate with "no such rule" errors and cause latency penalties while we |
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// spin up new ones. |
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const char* op; |
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if (rule == ALLOW && mIfaceRules.find(iface) == mIfaceRules.end()) { |
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op = "-I"; |
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mIfaceRules.insert(iface); |
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} else if (rule == DENY && mIfaceRules.find(iface) != mIfaceRules.end()) { |
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op = "-D"; |
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mIfaceRules.erase(iface); |
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} else { |
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return 0; |
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} |
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std::string command = Join(std::vector<std::string> { |
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"*filter", |
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StringPrintf("%s fw_INPUT -i %s -j RETURN", op, iface), |
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StringPrintf("%s fw_OUTPUT -o %s -j RETURN", op, iface), |
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"COMMIT\n" |
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}, "\n"); |
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return execIptablesRestore(V4V6, command); |
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} |
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FirewallType FirewallController::getFirewallType(ChildChain chain) { |
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switch(chain) { |
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case DOZABLE: |
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return WHITELIST; |
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case STANDBY: |
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return BLACKLIST; |
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case POWERSAVE: |
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return WHITELIST; |
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case NONE: |
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return mFirewallType; |
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default: |
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return BLACKLIST; |
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} |
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} |
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int FirewallController::setUidRule(ChildChain chain, int uid, FirewallRule rule) { |
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const char* op; |
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const char* target; |
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FirewallType firewallType = getFirewallType(chain); |
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if (firewallType == WHITELIST) { |
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target = "RETURN"; |
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// When adding, insert RETURN rules at the front, before the catch-all DROP at the end. |
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op = (rule == ALLOW)? "-I" : "-D"; |
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} else { // BLACKLIST mode |
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target = "DROP"; |
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// When adding, append DROP rules at the end, after the RETURN rule that matches TCP RSTs. |
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op = (rule == DENY)? "-A" : "-D"; |
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} |
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std::vector<std::string> chainNames; |
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switch(chain) { |
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case DOZABLE: |
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chainNames = { LOCAL_DOZABLE }; |
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break; |
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case STANDBY: |
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chainNames = { LOCAL_STANDBY }; |
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break; |
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case POWERSAVE: |
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chainNames = { LOCAL_POWERSAVE }; |
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break; |
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case NONE: |
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chainNames = { LOCAL_INPUT, LOCAL_OUTPUT }; |
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break; |
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default: |
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ALOGW("Unknown child chain: %d", chain); |
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return -1; |
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} |
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std::string command = "*filter\n"; |
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for (std::string chainName : chainNames) { |
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StringAppendF(&command, "%s %s -m owner --uid-owner %d -j %s\n", |
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op, chainName.c_str(), uid, target); |
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} |
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StringAppendF(&command, "COMMIT\n"); |
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return execIptablesRestore(V4V6, command); |
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} |
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int FirewallController::createChain(const char* chain, FirewallType type) { |
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static const std::vector<int32_t> NO_UIDS; |
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return replaceUidChain(chain, type == WHITELIST, NO_UIDS); |
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} |
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/* static */ |
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std::string FirewallController::makeCriticalCommands(IptablesTarget target, const char* chainName) { |
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// Allow ICMPv6 packets necessary to make IPv6 connectivity work. http://b/23158230 . |
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std::string commands; |
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if (target == V6) { |
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for (size_t i = 0; i < ARRAY_SIZE(ICMPV6_TYPES); i++) { |
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StringAppendF(&commands, "-A %s -p icmpv6 --icmpv6-type %s -j RETURN\n", |
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chainName, ICMPV6_TYPES[i]); |
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} |
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} |
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return commands; |
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} |
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std::string FirewallController::makeUidRules(IptablesTarget target, const char *name, |
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bool isWhitelist, const std::vector<int32_t>& uids) { |
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std::string commands; |
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StringAppendF(&commands, "*filter\n:%s -\n", name); |
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// Whitelist chains have UIDs at the beginning, and new UIDs are added with '-I'. |
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if (isWhitelist) { |
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for (auto uid : uids) { |
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StringAppendF(&commands, "-A %s -m owner --uid-owner %d -j RETURN\n", name, uid); |
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} |
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// Always whitelist system UIDs. |
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StringAppendF(&commands, |
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"-A %s -m owner --uid-owner %d-%d -j RETURN\n", name, 0, MAX_SYSTEM_UID); |
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// This rule inverts the match for all UIDs; ie, if there is no UID match here, |
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// there is no socket to be found |
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StringAppendF(&commands, |
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"-A %s -m owner ! --uid-owner %d-%u -j RETURN\n", name, 0, UINT32_MAX-1); |
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// Always whitelist traffic with protocol ESP, or no known socket - required for IPSec |
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StringAppendF(&commands, "-A %s -p esp -j RETURN\n", name); |
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} |
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// Always allow networking on loopback. |
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StringAppendF(&commands, "-A %s -i lo -j RETURN\n", name); |
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StringAppendF(&commands, "-A %s -o lo -j RETURN\n", name); |
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// Allow TCP RSTs so we can cleanly close TCP connections of apps that no longer have network |
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// access. Both incoming and outgoing RSTs are allowed. |
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StringAppendF(&commands, "-A %s -p tcp --tcp-flags RST RST -j RETURN\n", name); |
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if (isWhitelist) { |
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commands.append(makeCriticalCommands(target, name)); |
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} |
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// Blacklist chains have UIDs at the end, and new UIDs are added with '-A'. |
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if (!isWhitelist) { |
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for (auto uid : uids) { |
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StringAppendF(&commands, "-A %s -m owner --uid-owner %d -j DROP\n", name, uid); |
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} |
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} |
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// If it's a whitelist chain, add a default DROP at the end. This is not necessary for a |
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// blacklist chain, because all user-defined chains implicitly RETURN at the end. |
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if (isWhitelist) { |
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StringAppendF(&commands, "-A %s -j DROP\n", name); |
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} |
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StringAppendF(&commands, "COMMIT\n"); |
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return commands; |
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} |
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int FirewallController::replaceUidChain( |
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const char *name, bool isWhitelist, const std::vector<int32_t>& uids) { |
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std::string commands4 = makeUidRules(V4, name, isWhitelist, uids); |
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std::string commands6 = makeUidRules(V6, name, isWhitelist, uids); |
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return execIptablesRestore(V4, commands4.c_str()) | execIptablesRestore(V6, commands6.c_str()); |
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}
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