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163 lines
6.0 KiB
163 lines
6.0 KiB
/*
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* Copyright (C) 2017 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 <binder/IPCThreadState.h>
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#include <hidl/HidlTransportSupport.h>
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#include "Controllers.h"
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#include "Fwmark.h"
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#include "NetdHwService.h"
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#include "RouteController.h"
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#include "TetherController.h"
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using android::hardware::configureRpcThreadpool;
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using android::hardware::Void;
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// Tells TetherController::enableForwarding who is requesting forwarding, so that TetherController
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// can manage/refcount requests to enable forwarding by multiple parties such as the framework, this
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// hwbinder interface, and the legacy "ndc ipfwd enable <requester>" commands.
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namespace {
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constexpr const char* FORWARDING_REQUESTER = "NetdHwService";
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}
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namespace android {
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namespace net {
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static StatusCode toHalStatus(int ret) {
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switch(ret) {
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case 0:
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return StatusCode::OK;
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case -EINVAL:
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return StatusCode::INVALID_ARGUMENTS;
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case -EEXIST:
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return StatusCode::ALREADY_EXISTS;
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case -ENONET:
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return StatusCode::NO_NETWORK;
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case -EPERM:
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return StatusCode::PERMISSION_DENIED;
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default:
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ALOGE("HAL service error=%d", ret);
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return StatusCode::UNKNOWN_ERROR;
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}
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}
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// Minimal service start.
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status_t NetdHwService::start() {
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IPCThreadState::self()->disableBackgroundScheduling(true);
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// Usage of this HAL is anticipated to be thin; one thread should suffice.
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configureRpcThreadpool(1, false /* callerWillNotJoin */);
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// Register hardware service with ServiceManager.
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return INetd::registerAsService();
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}
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Return<void> NetdHwService::createOemNetwork(createOemNetwork_cb _hidl_cb) {
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unsigned netId;
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Permission permission = PERMISSION_SYSTEM;
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int ret = gCtls->netCtrl.createPhysicalOemNetwork(permission, &netId);
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Fwmark fwmark;
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fwmark.netId = netId;
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fwmark.explicitlySelected = true;
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fwmark.protectedFromVpn = true;
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fwmark.permission = PERMISSION_SYSTEM;
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_hidl_cb(netIdToNetHandle(netId), fwmark.intValue, toHalStatus(ret));
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return Void();
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}
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// Vendor code can only modify OEM networks. All other networks are managed by ConnectivityService.
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#define RETURN_IF_NOT_OEM_NETWORK(netId) \
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if (((netId) < NetworkController::MIN_OEM_ID) || \
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((netId) > NetworkController::MAX_OEM_ID)) { \
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return StatusCode::INVALID_ARGUMENTS; \
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}
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Return<StatusCode> NetdHwService::destroyOemNetwork(uint64_t netHandle) {
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unsigned netId = netHandleToNetId(netHandle);
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RETURN_IF_NOT_OEM_NETWORK(netId);
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return toHalStatus(gCtls->netCtrl.destroyNetwork(netId));
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}
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const char* maybeNullString(const hidl_string& nexthop) {
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// HIDL strings can't be null, but RouteController wants null instead of an empty string.
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const char* nh = nexthop.c_str();
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if (nh && !*nh) {
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nh = nullptr;
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}
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return nh;
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}
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Return <StatusCode> NetdHwService::addRouteToOemNetwork(
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uint64_t networkHandle, const hidl_string& ifname, const hidl_string& destination,
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const hidl_string& nexthop) {
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unsigned netId = netHandleToNetId(networkHandle);
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RETURN_IF_NOT_OEM_NETWORK(netId);
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return toHalStatus(gCtls->netCtrl.addRoute(netId, ifname.c_str(), destination.c_str(),
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maybeNullString(nexthop), false, INVALID_UID,
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0 /* mtu */));
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}
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Return <StatusCode> NetdHwService::removeRouteFromOemNetwork(
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uint64_t networkHandle, const hidl_string& ifname, const hidl_string& destination,
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const hidl_string& nexthop) {
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unsigned netId = netHandleToNetId(networkHandle);
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RETURN_IF_NOT_OEM_NETWORK(netId);
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return toHalStatus(gCtls->netCtrl.removeRoute(netId, ifname.c_str(), destination.c_str(),
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maybeNullString(nexthop), false, INVALID_UID));
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}
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Return <StatusCode> NetdHwService::addInterfaceToOemNetwork(uint64_t networkHandle,
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const hidl_string& ifname) {
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unsigned netId = netHandleToNetId(networkHandle);
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RETURN_IF_NOT_OEM_NETWORK(netId);
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return toHalStatus(gCtls->netCtrl.addInterfaceToNetwork(netId, ifname.c_str()));
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}
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Return <StatusCode> NetdHwService::removeInterfaceFromOemNetwork(uint64_t networkHandle,
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const hidl_string& ifname) {
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unsigned netId = netHandleToNetId(networkHandle);
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RETURN_IF_NOT_OEM_NETWORK(netId);
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return toHalStatus(gCtls->netCtrl.removeInterfaceFromNetwork(netId, ifname.c_str()));
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}
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Return <StatusCode> NetdHwService::setIpForwardEnable(bool enable) {
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std::lock_guard _lock(gCtls->tetherCtrl.lock);
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bool success = enable ? gCtls->tetherCtrl.enableForwarding(FORWARDING_REQUESTER) :
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gCtls->tetherCtrl.disableForwarding(FORWARDING_REQUESTER);
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return success ? StatusCode::OK : StatusCode::UNKNOWN_ERROR;
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}
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Return <StatusCode> NetdHwService::setForwardingBetweenInterfaces(
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const hidl_string& inputIfName, const hidl_string& outputIfName, bool enable) {
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std::lock_guard _lock(gCtls->tetherCtrl.lock);
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// TODO: check that one interface is an OEM interface and the other is another OEM interface, an
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// IPsec interface or a dummy interface.
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int ret = enable ? RouteController::enableTethering(inputIfName.c_str(), outputIfName.c_str()) :
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RouteController::disableTethering(inputIfName.c_str(), outputIfName.c_str());
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return toHalStatus(ret);
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}
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} // namespace net
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} // namespace android
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