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277 lines
10 KiB
277 lines
10 KiB
/* |
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* Copyright (C) 2016 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 <regex> |
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#include <set> |
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#include <string> |
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#include <android-base/strings.h> |
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#include <android-base/stringprintf.h> |
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#define LOG_TAG "Netd" |
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#include <cutils/log.h> |
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#include "Controllers.h" |
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#include "IdletimerController.h" |
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#include "NetworkController.h" |
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#include "RouteController.h" |
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#include "Stopwatch.h" |
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#include "oem_iptables_hook.h" |
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namespace android { |
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namespace net { |
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using android::base::Join; |
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using android::base::StringPrintf; |
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using android::base::StringAppendF; |
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auto Controllers::execIptablesRestore = ::execIptablesRestore; |
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auto Controllers::execIptablesRestoreWithOutput = ::execIptablesRestoreWithOutput; |
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namespace { |
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/** |
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* List of module chains to be created, along with explicit ordering. ORDERING |
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* IS CRITICAL, AND SHOULD BE TRIPLE-CHECKED WITH EACH CHANGE. |
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*/ |
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static const std::vector<const char*> FILTER_INPUT = { |
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// Bandwidth should always be early in input chain, to make sure we |
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// correctly count incoming traffic against data plan. |
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BandwidthController::LOCAL_INPUT, |
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FirewallController::LOCAL_INPUT, |
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}; |
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static const std::vector<const char*> FILTER_FORWARD = { |
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OEM_IPTABLES_FILTER_FORWARD, |
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FirewallController::LOCAL_FORWARD, |
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BandwidthController::LOCAL_FORWARD, |
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NatController::LOCAL_FORWARD, |
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}; |
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static const std::vector<const char*> FILTER_OUTPUT = { |
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OEM_IPTABLES_FILTER_OUTPUT, |
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FirewallController::LOCAL_OUTPUT, |
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StrictController::LOCAL_OUTPUT, |
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BandwidthController::LOCAL_OUTPUT, |
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}; |
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static const std::vector<const char*> RAW_PREROUTING = { |
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BandwidthController::LOCAL_RAW_PREROUTING, |
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IdletimerController::LOCAL_RAW_PREROUTING, |
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NatController::LOCAL_RAW_PREROUTING, |
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}; |
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static const std::vector<const char*> MANGLE_POSTROUTING = { |
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OEM_IPTABLES_MANGLE_POSTROUTING, |
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BandwidthController::LOCAL_MANGLE_POSTROUTING, |
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IdletimerController::LOCAL_MANGLE_POSTROUTING, |
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}; |
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static const std::vector<const char*> MANGLE_INPUT = { |
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WakeupController::LOCAL_MANGLE_INPUT, |
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RouteController::LOCAL_MANGLE_INPUT, |
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}; |
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static const std::vector<const char*> MANGLE_FORWARD = { |
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NatController::LOCAL_MANGLE_FORWARD, |
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}; |
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static const std::vector<const char*> NAT_PREROUTING = { |
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OEM_IPTABLES_NAT_PREROUTING, |
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}; |
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static const std::vector<const char*> NAT_POSTROUTING = { |
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NatController::LOCAL_NAT_POSTROUTING, |
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}; |
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// Commands to create child chains and to match created chains in iptables -S output. Keep in sync. |
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static const char* CHILD_CHAIN_TEMPLATE = "-A %s -j %s\n"; |
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static const std::regex CHILD_CHAIN_REGEX("^-A ([^ ]+) -j ([^ ]+)$", |
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std::regex_constants::extended); |
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} // namespace |
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/* static */ |
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std::set<std::string> Controllers::findExistingChildChains(const IptablesTarget target, |
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const char* table, |
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const char* parentChain) { |
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if (target == V4V6) { |
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ALOGE("findExistingChildChains only supports one protocol at a time"); |
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abort(); |
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} |
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std::set<std::string> existing; |
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// List the current contents of parentChain. |
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// |
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// TODO: there is no guarantee that nothing else modifies the chain in the few milliseconds |
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// between when we list the existing rules and when we delete them. However: |
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// - Since this code is only run on startup, nothing else in netd will be running. |
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// - While vendor code is known to add its own rules to chains created by netd, it should never |
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// be modifying the rules in childChains or the rules that hook said chains into their parent |
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// chains. |
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std::string command = StringPrintf("*%s\n-S %s\nCOMMIT\n", table, parentChain); |
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std::string output; |
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if (Controllers::execIptablesRestoreWithOutput(target, command, &output) == -1) { |
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ALOGE("Error listing chain %s in table %s\n", parentChain, table); |
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return existing; |
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} |
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// The only rules added by createChildChains are of the simple form "-A <parent> -j <child>". |
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// Find those rules and add each one's child chain to existing. |
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std::smatch matches; |
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std::stringstream stream(output); |
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std::string rule; |
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while (std::getline(stream, rule, '\n')) { |
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if (std::regex_search(rule, matches, CHILD_CHAIN_REGEX) && matches[1] == parentChain) { |
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existing.insert(matches[2]); |
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} |
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} |
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return existing; |
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} |
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/* static */ |
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void Controllers::createChildChains(IptablesTarget target, const char* table, |
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const char* parentChain, |
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const std::vector<const char*>& childChains, |
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bool exclusive) { |
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std::string command = StringPrintf("*%s\n", table); |
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// We cannot just clear all the chains we create because vendor code modifies filter OUTPUT and |
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// mangle POSTROUTING directly. So: |
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// |
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// - If we're the exclusive owner of this chain, simply clear it entirely. |
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// - If not, then list the chain's current contents to ensure that if we restart after a crash, |
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// we leave the existing rules alone in the positions they currently occupy. This is faster |
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// than blindly deleting our rules and recreating them, because deleting a rule that doesn't |
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// exists causes iptables-restore to quit, which takes ~30ms per delete. It's also more |
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// correct, because if we delete rules and re-add them, they'll be in the wrong position with |
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// regards to the vendor rules. |
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// |
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// TODO: Make all chains exclusive once vendor code uses the oem_* rules. |
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std::set<std::string> existingChildChains; |
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if (exclusive) { |
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// Just running ":chain -" flushes user-defined chains, but not built-in chains like INPUT. |
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// Since at this point we don't know if parentChain is a built-in chain, do both. |
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StringAppendF(&command, ":%s -\n", parentChain); |
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StringAppendF(&command, "-F %s\n", parentChain); |
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} else { |
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existingChildChains = findExistingChildChains(target, table, parentChain); |
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} |
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for (const auto& childChain : childChains) { |
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// Always clear the child chain. |
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StringAppendF(&command, ":%s -\n", childChain); |
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// But only add it to the parent chain if it's not already there. |
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if (existingChildChains.find(childChain) == existingChildChains.end()) { |
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StringAppendF(&command, CHILD_CHAIN_TEMPLATE, parentChain, childChain); |
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} |
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} |
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command += "COMMIT\n"; |
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execIptablesRestore(target, command); |
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} |
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Controllers::Controllers() |
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: clatdCtrl(&netCtrl), |
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wakeupCtrl( |
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[this](const std::string& prefix, uid_t uid, gid_t gid, uint64_t timestampNs) { |
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const auto listener = eventReporter.getNetdEventListener(); |
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if (listener == nullptr) { |
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ALOGE("getNetdEventListener() returned nullptr. dropping wakeup event"); |
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return; |
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} |
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listener->onWakeupEvent(String16(prefix.c_str()), uid, gid, timestampNs); |
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}, |
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&iptablesRestoreCtrl) { |
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InterfaceController::initializeAll(); |
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} |
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void Controllers::initChildChains() { |
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/* |
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* This is the only time we touch top-level chains in iptables; controllers |
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* should only mutate rules inside of their children chains, as created by |
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* the constants above. |
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* |
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* Modules should never ACCEPT packets (except in well-justified cases); |
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* they should instead defer to any remaining modules using RETURN, or |
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* otherwise DROP/REJECT. |
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*/ |
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// Create chains for child modules. |
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createChildChains(V4V6, "filter", "INPUT", FILTER_INPUT, true); |
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createChildChains(V4V6, "filter", "FORWARD", FILTER_FORWARD, true); |
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createChildChains(V4V6, "raw", "PREROUTING", RAW_PREROUTING, true); |
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createChildChains(V4V6, "mangle", "FORWARD", MANGLE_FORWARD, true); |
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createChildChains(V4V6, "mangle", "INPUT", MANGLE_INPUT, true); |
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createChildChains(V4, "nat", "PREROUTING", NAT_PREROUTING, true); |
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createChildChains(V4, "nat", "POSTROUTING", NAT_POSTROUTING, true); |
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createChildChains(V4, "filter", "OUTPUT", FILTER_OUTPUT, false); |
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createChildChains(V6, "filter", "OUTPUT", FILTER_OUTPUT, false); |
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createChildChains(V4, "mangle", "POSTROUTING", MANGLE_POSTROUTING, false); |
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createChildChains(V6, "mangle", "POSTROUTING", MANGLE_POSTROUTING, false); |
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} |
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void Controllers::initIptablesRules() { |
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Stopwatch s; |
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initChildChains(); |
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ALOGI("Creating child chains: %.1fms", s.getTimeAndReset()); |
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// Let each module setup their child chains |
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setupOemIptablesHook(); |
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ALOGI("Setting up OEM hooks: %.1fms", s.getTimeAndReset()); |
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/* When enabled, DROPs all packets except those matching rules. */ |
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firewallCtrl.setupIptablesHooks(); |
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ALOGI("Setting up FirewallController hooks: %.1fms", s.getTimeAndReset()); |
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/* Does DROPs in FORWARD by default */ |
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natCtrl.setupIptablesHooks(); |
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ALOGI("Setting up NatController hooks: %.1fms", s.getTimeAndReset()); |
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/* |
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* Does REJECT in INPUT, OUTPUT. Does counting also. |
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* No DROP/REJECT allowed later in netfilter-flow hook order. |
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*/ |
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bandwidthCtrl.setupIptablesHooks(); |
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ALOGI("Setting up BandwidthController hooks: %.1fms", s.getTimeAndReset()); |
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/* |
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* Counts in nat: PREROUTING, POSTROUTING. |
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* No DROP/REJECT allowed later in netfilter-flow hook order. |
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*/ |
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idletimerCtrl.setupIptablesHooks(); |
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ALOGI("Setting up IdletimerController hooks: %.1fms", s.getTimeAndReset()); |
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} |
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void Controllers::init() { |
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initIptablesRules(); |
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Stopwatch s; |
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bandwidthCtrl.enableBandwidthControl(false); |
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ALOGI("Disabling bandwidth control: %.1fms", s.getTimeAndReset()); |
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if (int ret = RouteController::Init(NetworkController::LOCAL_NET_ID)) { |
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ALOGE("failed to initialize RouteController (%s)", strerror(-ret)); |
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} |
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ALOGI("Initializing RouteController: %.1fms", s.getTimeAndReset()); |
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} |
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Controllers* gCtls = nullptr; |
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} // namespace net |
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} // namespace android
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