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483 lines
18 KiB
483 lines
18 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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#define LOG_TAG "Netd" |
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#include <vector> |
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#include <android-base/stringprintf.h> |
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#include <cutils/log.h> |
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#include <cutils/properties.h> |
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#include <utils/Errors.h> |
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#include <utils/String16.h> |
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#include <binder/IPCThreadState.h> |
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#include <binder/IServiceManager.h> |
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#include "android/net/BnNetd.h" |
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#include <openssl/base64.h> |
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#include "Controllers.h" |
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#include "DumpWriter.h" |
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#include "EventReporter.h" |
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#include "InterfaceController.h" |
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#include "NetdConstants.h" |
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#include "NetdNativeService.h" |
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#include "RouteController.h" |
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#include "SockDiag.h" |
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#include "UidRanges.h" |
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using android::base::StringPrintf; |
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namespace android { |
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namespace net { |
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namespace { |
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const char CONNECTIVITY_INTERNAL[] = "android.permission.CONNECTIVITY_INTERNAL"; |
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const char NETWORK_STACK[] = "android.permission.NETWORK_STACK"; |
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const char DUMP[] = "android.permission.DUMP"; |
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binder::Status toBinderStatus(const netdutils::Status s) { |
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if (isOk(s)) { |
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return binder::Status::ok(); |
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} |
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return binder::Status::fromServiceSpecificError(s.code(), s.msg().c_str()); |
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} |
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binder::Status checkPermission(const char *permission) { |
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pid_t pid; |
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uid_t uid; |
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if (checkCallingPermission(String16(permission), (int32_t *) &pid, (int32_t *) &uid)) { |
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return binder::Status::ok(); |
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} else { |
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auto err = StringPrintf("UID %d / PID %d lacks permission %s", uid, pid, permission); |
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return binder::Status::fromExceptionCode(binder::Status::EX_SECURITY, String8(err.c_str())); |
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} |
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} |
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binder::Status getXfrmStatus(int xfrmCode) { |
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switch(xfrmCode) { |
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case 0: |
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return binder::Status::ok(); |
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case -ENOENT: |
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return binder::Status::fromServiceSpecificError(xfrmCode); |
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} |
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return binder::Status::fromExceptionCode(xfrmCode); |
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} |
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#define ENFORCE_DEBUGGABLE() { \ |
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char value[PROPERTY_VALUE_MAX + 1]; \ |
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if (property_get("ro.debuggable", value, NULL) != 1 \ |
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|| value[0] != '1') { \ |
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return binder::Status::fromExceptionCode( \ |
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binder::Status::EX_SECURITY, \ |
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String8("Not available in production builds.") \ |
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); \ |
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} \ |
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} |
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#define ENFORCE_PERMISSION(permission) { \ |
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binder::Status status = checkPermission((permission)); \ |
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if (!status.isOk()) { \ |
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return status; \ |
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} \ |
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} |
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#define NETD_LOCKING_RPC(permission, lock) \ |
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ENFORCE_PERMISSION(permission); \ |
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android::RWLock::AutoWLock _lock(lock); |
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#define NETD_BIG_LOCK_RPC(permission) NETD_LOCKING_RPC((permission), gBigNetdLock) |
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} // namespace |
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status_t NetdNativeService::start() { |
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IPCThreadState::self()->disableBackgroundScheduling(true); |
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status_t ret = BinderService<NetdNativeService>::publish(); |
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if (ret != android::OK) { |
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return ret; |
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} |
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sp<ProcessState> ps(ProcessState::self()); |
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ps->startThreadPool(); |
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ps->giveThreadPoolName(); |
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return android::OK; |
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} |
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status_t NetdNativeService::dump(int fd, const Vector<String16> & /* args */) { |
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const binder::Status dump_permission = checkPermission(DUMP); |
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if (!dump_permission.isOk()) { |
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const String8 msg(dump_permission.toString8()); |
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write(fd, msg.string(), msg.size()); |
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return PERMISSION_DENIED; |
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} |
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// This method does not grab any locks. If individual classes need locking |
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// their dump() methods MUST handle locking appropriately. |
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DumpWriter dw(fd); |
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dw.blankline(); |
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gCtls->netCtrl.dump(dw); |
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dw.blankline(); |
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return NO_ERROR; |
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} |
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binder::Status NetdNativeService::isAlive(bool *alive) { |
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NETD_BIG_LOCK_RPC(CONNECTIVITY_INTERNAL); |
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*alive = true; |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::firewallReplaceUidChain(const android::String16& chainName, |
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bool isWhitelist, const std::vector<int32_t>& uids, bool *ret) { |
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NETD_LOCKING_RPC(CONNECTIVITY_INTERNAL, gCtls->firewallCtrl.lock); |
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android::String8 name = android::String8(chainName); |
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int err = gCtls->firewallCtrl.replaceUidChain(name.string(), isWhitelist, uids); |
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*ret = (err == 0); |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::bandwidthEnableDataSaver(bool enable, bool *ret) { |
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NETD_LOCKING_RPC(CONNECTIVITY_INTERNAL, gCtls->bandwidthCtrl.lock); |
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int err = gCtls->bandwidthCtrl.enableDataSaver(enable); |
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*ret = (err == 0); |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::networkRejectNonSecureVpn(bool add, |
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const std::vector<UidRange>& uidRangeArray) { |
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// TODO: elsewhere RouteController is only used from the tethering and network controllers, so |
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// it should be possible to use the same lock as NetworkController. However, every call through |
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// the CommandListener "network" command will need to hold this lock too, not just the ones that |
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// read/modify network internal state (that is sufficient for ::dump() because it doesn't |
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// look at routes, but it's not enough here). |
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NETD_BIG_LOCK_RPC(CONNECTIVITY_INTERNAL); |
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UidRanges uidRanges(uidRangeArray); |
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int err; |
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if (add) { |
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err = RouteController::addUsersToRejectNonSecureNetworkRule(uidRanges); |
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} else { |
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err = RouteController::removeUsersFromRejectNonSecureNetworkRule(uidRanges); |
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} |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("RouteController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::socketDestroy(const std::vector<UidRange>& uids, |
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const std::vector<int32_t>& skipUids) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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SockDiag sd; |
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if (!sd.open()) { |
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return binder::Status::fromServiceSpecificError(EIO, |
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String8("Could not open SOCK_DIAG socket")); |
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} |
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UidRanges uidRanges(uids); |
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int err = sd.destroySockets(uidRanges, std::set<uid_t>(skipUids.begin(), skipUids.end()), |
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true /* excludeLoopback */); |
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if (err) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("destroySockets: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::setResolverConfiguration(int32_t netId, |
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const std::vector<std::string>& servers, const std::vector<std::string>& domains, |
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const std::vector<int32_t>& params) { |
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// This function intentionally does not lock within Netd, as Bionic is thread-safe. |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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int err = gCtls->resolverCtrl.setResolverConfiguration(netId, servers, domains, params); |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("ResolverController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::getResolverInfo(int32_t netId, |
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std::vector<std::string>* servers, std::vector<std::string>* domains, |
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std::vector<int32_t>* params, std::vector<int32_t>* stats) { |
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// This function intentionally does not lock within Netd, as Bionic is thread-safe. |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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int err = gCtls->resolverCtrl.getResolverInfo(netId, servers, domains, params, stats); |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("ResolverController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::addPrivateDnsServer(const std::string& server, int32_t port, |
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const std::string& fingerprintAlgorithm, const std::vector<std::string>& fingerprints) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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std::set<std::vector<uint8_t>> decoded_fingerprints; |
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for (const std::string& input : fingerprints) { |
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size_t out_len; |
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if (EVP_DecodedLength(&out_len, input.size()) != 1) { |
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return binder::Status::fromServiceSpecificError(INetd::PRIVATE_DNS_BAD_FINGERPRINT, |
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"ResolverController error: bad fingerprint length"); |
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} |
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// out_len is now an upper bound on the output length. |
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std::vector<uint8_t> decoded(out_len); |
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if (EVP_DecodeBase64(decoded.data(), &out_len, decoded.size(), |
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reinterpret_cast<const uint8_t*>(input.data()), input.size()) == 1) { |
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// Possibly shrink the vector if the actual output was smaller than the bound. |
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decoded.resize(out_len); |
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} else { |
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return binder::Status::fromServiceSpecificError(INetd::PRIVATE_DNS_BAD_FINGERPRINT, |
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"ResolverController error: Base64 parsing failed"); |
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} |
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decoded_fingerprints.insert(decoded); |
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} |
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const int err = gCtls->resolverCtrl.addPrivateDnsServer(server, port, |
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fingerprintAlgorithm, decoded_fingerprints); |
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if (err != INetd::PRIVATE_DNS_SUCCESS) { |
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return binder::Status::fromServiceSpecificError(err, |
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String8::format("ResolverController error: %d", err)); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::removePrivateDnsServer(const std::string& server) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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const int err = gCtls->resolverCtrl.removePrivateDnsServer(server); |
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if (err != INetd::PRIVATE_DNS_SUCCESS) { |
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return binder::Status::fromServiceSpecificError(err, |
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String8::format("ResolverController error: %d", err)); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::tetherApplyDnsInterfaces(bool *ret) { |
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NETD_BIG_LOCK_RPC(CONNECTIVITY_INTERNAL); |
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*ret = gCtls->tetherCtrl.applyDnsInterfaces(); |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::interfaceAddAddress(const std::string &ifName, |
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const std::string &addrString, int prefixLength) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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const int err = InterfaceController::addAddress( |
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ifName.c_str(), addrString.c_str(), prefixLength); |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("InterfaceController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::interfaceDelAddress(const std::string &ifName, |
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const std::string &addrString, int prefixLength) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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const int err = InterfaceController::delAddress( |
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ifName.c_str(), addrString.c_str(), prefixLength); |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("InterfaceController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::setProcSysNet( |
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int32_t family, int32_t which, const std::string &ifname, const std::string ¶meter, |
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const std::string &value) { |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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const char *familyStr; |
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switch (family) { |
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case INetd::IPV4: |
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familyStr = "ipv4"; |
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break; |
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case INetd::IPV6: |
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familyStr = "ipv6"; |
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break; |
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default: |
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return binder::Status::fromServiceSpecificError(EAFNOSUPPORT, String8("Bad family")); |
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} |
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const char *whichStr; |
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switch (which) { |
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case INetd::CONF: |
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whichStr = "conf"; |
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break; |
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case INetd::NEIGH: |
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whichStr = "neigh"; |
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break; |
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default: |
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return binder::Status::fromServiceSpecificError(EINVAL, String8("Bad category")); |
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} |
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const int err = InterfaceController::setParameter( |
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familyStr, whichStr, ifname.c_str(), parameter.c_str(), |
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value.c_str()); |
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if (err != 0) { |
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return binder::Status::fromServiceSpecificError(-err, |
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String8::format("ResolverController error: %s", strerror(-err))); |
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} |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::getMetricsReportingLevel(int *reportingLevel) { |
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// This function intentionally does not lock, since the only thing it does is one read from an |
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// atomic_int. |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ENFORCE_DEBUGGABLE(); |
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*reportingLevel = gCtls->eventReporter.getMetricsReportingLevel(); |
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return binder::Status::ok(); |
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} |
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binder::Status NetdNativeService::setMetricsReportingLevel(const int reportingLevel) { |
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// This function intentionally does not lock, since the only thing it does is one write to an |
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// atomic_int. |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ENFORCE_DEBUGGABLE(); |
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return (gCtls->eventReporter.setMetricsReportingLevel(reportingLevel) == 0) |
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? binder::Status::ok() |
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: binder::Status::fromExceptionCode(binder::Status::EX_ILLEGAL_ARGUMENT); |
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} |
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binder::Status NetdNativeService::ipSecAllocateSpi( |
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int32_t transformId, |
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int32_t direction, |
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const std::string& localAddress, |
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const std::string& remoteAddress, |
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int32_t inSpi, |
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int32_t* outSpi) { |
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// Necessary locking done in IpSecService and kernel |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ALOGD("ipSecAllocateSpi()"); |
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return getXfrmStatus(gCtls->xfrmCtrl.ipSecAllocateSpi( |
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transformId, |
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direction, |
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localAddress, |
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remoteAddress, |
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inSpi, |
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outSpi)); |
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} |
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binder::Status NetdNativeService::ipSecAddSecurityAssociation( |
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int32_t transformId, |
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int32_t mode, |
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int32_t direction, |
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const std::string& localAddress, |
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const std::string& remoteAddress, |
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int64_t underlyingNetworkHandle, |
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int32_t spi, |
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const std::string& authAlgo, const std::vector<uint8_t>& authKey, int32_t authTruncBits, |
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const std::string& cryptAlgo, const std::vector<uint8_t>& cryptKey, int32_t cryptTruncBits, |
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int32_t encapType, |
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int32_t encapLocalPort, |
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int32_t encapRemotePort) { |
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// Necessary locking done in IpSecService and kernel |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ALOGD("ipSecAddSecurityAssociation()"); |
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return getXfrmStatus(gCtls->xfrmCtrl.ipSecAddSecurityAssociation( |
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transformId, mode, direction, localAddress, remoteAddress, |
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underlyingNetworkHandle, |
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spi, |
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authAlgo, authKey, authTruncBits, |
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cryptAlgo, cryptKey, cryptTruncBits, |
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encapType, encapLocalPort, encapRemotePort)); |
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} |
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binder::Status NetdNativeService::ipSecDeleteSecurityAssociation( |
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int32_t transformId, |
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int32_t direction, |
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const std::string& localAddress, |
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const std::string& remoteAddress, |
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int32_t spi) { |
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// Necessary locking done in IpSecService and kernel |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ALOGD("ipSecDeleteSecurityAssociation()"); |
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return getXfrmStatus(gCtls->xfrmCtrl.ipSecDeleteSecurityAssociation( |
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transformId, |
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direction, |
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localAddress, |
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remoteAddress, |
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spi)); |
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} |
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binder::Status NetdNativeService::ipSecApplyTransportModeTransform( |
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const android::base::unique_fd& socket, |
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int32_t transformId, |
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int32_t direction, |
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const std::string& localAddress, |
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const std::string& remoteAddress, |
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int32_t spi) { |
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// Necessary locking done in IpSecService and kernel |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ALOGD("ipSecApplyTransportModeTransform()"); |
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return getXfrmStatus(gCtls->xfrmCtrl.ipSecApplyTransportModeTransform( |
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socket, |
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transformId, |
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direction, |
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localAddress, |
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remoteAddress, |
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spi)); |
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} |
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binder::Status NetdNativeService::ipSecRemoveTransportModeTransform( |
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const android::base::unique_fd& socket) { |
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// Necessary locking done in IpSecService and kernel |
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ENFORCE_PERMISSION(CONNECTIVITY_INTERNAL); |
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ALOGD("ipSecRemoveTransportModeTransform()"); |
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return getXfrmStatus(gCtls->xfrmCtrl.ipSecRemoveTransportModeTransform( |
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socket)); |
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} |
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binder::Status NetdNativeService::setIPv6AddrGenMode(const std::string& ifName, |
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int32_t mode) { |
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ENFORCE_PERMISSION(NETWORK_STACK); |
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return toBinderStatus(InterfaceController::setIPv6AddrGenMode(ifName, mode)); |
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} |
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binder::Status NetdNativeService::wakeupAddInterface(const std::string& ifName, |
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const std::string& prefix, int32_t mark, |
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int32_t mask) { |
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ENFORCE_PERMISSION(NETWORK_STACK); |
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return toBinderStatus(gCtls->wakeupCtrl.addInterface(ifName, prefix, mark, mask)); |
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} |
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binder::Status NetdNativeService::wakeupDelInterface(const std::string& ifName, |
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const std::string& prefix, int32_t mark, |
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int32_t mask) { |
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ENFORCE_PERMISSION(NETWORK_STACK); |
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return toBinderStatus(gCtls->wakeupCtrl.delInterface(ifName, prefix, mark, mask)); |
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} |
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} // namespace net |
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} // namespace android
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