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925 lines
29 KiB
925 lines
29 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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#define ATRACE_TAG ATRACE_TAG_PACKAGE_MANAGER |
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#include "VoldNativeService.h" |
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#include "Benchmark.h" |
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#include "CheckEncryption.h" |
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#include "IdleMaint.h" |
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#include "MoveStorage.h" |
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#include "Process.h" |
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#include "VolumeManager.h" |
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#include "Checkpoint.h" |
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#include "FsCrypt.h" |
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#include "MetadataCrypt.h" |
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#include "cryptfs.h" |
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#include <fstream> |
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#include <thread> |
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#include <android-base/logging.h> |
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#include <android-base/stringprintf.h> |
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#include <android-base/strings.h> |
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#include <fs_mgr.h> |
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#include <fscrypt/fscrypt.h> |
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#include <private/android_filesystem_config.h> |
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#include <utils/Trace.h> |
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using android::base::StringPrintf; |
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using std::endl; |
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namespace android { |
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namespace vold { |
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namespace { |
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constexpr const char* kDump = "android.permission.DUMP"; |
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static binder::Status ok() { |
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return binder::Status::ok(); |
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} |
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static binder::Status exception(uint32_t code, const std::string& msg) { |
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return binder::Status::fromExceptionCode(code, String8(msg.c_str())); |
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} |
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static binder::Status error(const std::string& msg) { |
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PLOG(ERROR) << msg; |
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return binder::Status::fromServiceSpecificError(errno, String8(msg.c_str())); |
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} |
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static binder::Status translate(int status) { |
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if (status == 0) { |
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return binder::Status::ok(); |
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} else { |
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return binder::Status::fromServiceSpecificError(status); |
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} |
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} |
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static binder::Status translateBool(bool status) { |
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if (status) { |
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return binder::Status::ok(); |
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} else { |
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return binder::Status::fromServiceSpecificError(status); |
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} |
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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), reinterpret_cast<int32_t*>(&pid), |
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reinterpret_cast<int32_t*>(&uid))) { |
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return ok(); |
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} else { |
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return exception(binder::Status::EX_SECURITY, |
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StringPrintf("UID %d / PID %d lacks permission %s", uid, pid, permission)); |
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} |
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} |
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binder::Status checkUid(uid_t expectedUid) { |
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uid_t uid = IPCThreadState::self()->getCallingUid(); |
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if (uid == expectedUid || uid == AID_ROOT) { |
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return ok(); |
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} else { |
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return exception(binder::Status::EX_SECURITY, |
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StringPrintf("UID %d is not expected UID %d", uid, expectedUid)); |
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} |
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} |
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binder::Status checkArgumentId(const std::string& id) { |
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if (id.empty()) { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, "Missing ID"); |
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} |
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for (const char& c : id) { |
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if (!std::isalnum(c) && c != ':' && c != ',') { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, |
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StringPrintf("ID %s is malformed", id.c_str())); |
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} |
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} |
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return ok(); |
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} |
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binder::Status checkArgumentPath(const std::string& path) { |
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if (path.empty()) { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, "Missing path"); |
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} |
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if (path[0] != '/') { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, |
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StringPrintf("Path %s is relative", path.c_str())); |
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} |
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if ((path + '/').find("/../") != std::string::npos) { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, |
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StringPrintf("Path %s is shady", path.c_str())); |
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} |
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for (const char& c : path) { |
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if (c == '\0' || c == '\n') { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, |
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StringPrintf("Path %s is malformed", path.c_str())); |
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} |
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} |
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return ok(); |
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} |
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binder::Status checkArgumentHex(const std::string& hex) { |
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// Empty hex strings are allowed |
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for (const char& c : hex) { |
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if (!std::isxdigit(c) && c != ':' && c != '-') { |
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return exception(binder::Status::EX_ILLEGAL_ARGUMENT, |
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StringPrintf("Hex %s is malformed", hex.c_str())); |
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} |
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} |
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return ok(); |
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} |
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#define ENFORCE_UID(uid) \ |
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{ \ |
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binder::Status status = checkUid((uid)); \ |
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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 CHECK_ARGUMENT_ID(id) \ |
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{ \ |
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binder::Status status = checkArgumentId((id)); \ |
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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 CHECK_ARGUMENT_PATH(path) \ |
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{ \ |
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binder::Status status = checkArgumentPath((path)); \ |
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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 CHECK_ARGUMENT_HEX(hex) \ |
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{ \ |
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binder::Status status = checkArgumentHex((hex)); \ |
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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 ACQUIRE_LOCK \ |
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std::lock_guard<std::mutex> lock(VolumeManager::Instance()->getLock()); \ |
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ATRACE_CALL(); |
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#define ACQUIRE_CRYPT_LOCK \ |
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std::lock_guard<std::mutex> lock(VolumeManager::Instance()->getCryptLock()); \ |
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ATRACE_CALL(); |
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} // namespace |
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status_t VoldNativeService::start() { |
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IPCThreadState::self()->disableBackgroundScheduling(true); |
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status_t ret = BinderService<VoldNativeService>::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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return android::OK; |
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} |
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status_t VoldNativeService::dump(int fd, const Vector<String16>& /* args */) { |
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auto out = std::fstream(StringPrintf("/proc/self/fd/%d", fd)); |
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const binder::Status dump_permission = checkPermission(kDump); |
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if (!dump_permission.isOk()) { |
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out << dump_permission.toString8() << endl; |
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return PERMISSION_DENIED; |
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} |
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ACQUIRE_LOCK; |
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out << "vold is happy!" << endl; |
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out.flush(); |
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return NO_ERROR; |
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} |
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binder::Status VoldNativeService::setListener( |
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const android::sp<android::os::IVoldListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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VolumeManager::Instance()->setListener(listener); |
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return ok(); |
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} |
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binder::Status VoldNativeService::monitor() { |
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ENFORCE_UID(AID_SYSTEM); |
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// Simply acquire/release each lock for watchdog |
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{ ACQUIRE_LOCK; } |
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{ ACQUIRE_CRYPT_LOCK; } |
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return ok(); |
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} |
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binder::Status VoldNativeService::reset() { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->reset()); |
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} |
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binder::Status VoldNativeService::shutdown() { |
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LOG(INFO) << "shutdown()++"; |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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int rtn = VolumeManager::Instance()->shutdown(); |
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LOG(INFO) << "shutdown()--, rtn: " << rtn; |
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return translate(rtn); |
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} |
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binder::Status VoldNativeService::onUserAdded(int32_t userId, int32_t userSerial) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->onUserAdded(userId, userSerial)); |
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} |
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binder::Status VoldNativeService::onUserRemoved(int32_t userId) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->onUserRemoved(userId)); |
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} |
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binder::Status VoldNativeService::onUserStarted(int32_t userId) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->onUserStarted(userId)); |
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} |
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binder::Status VoldNativeService::onUserStopped(int32_t userId) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->onUserStopped(userId)); |
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} |
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binder::Status VoldNativeService::addAppIds(const std::vector<std::string>& packageNames, |
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const std::vector<int32_t>& appIds) { |
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return ok(); |
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} |
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binder::Status VoldNativeService::addSandboxIds(const std::vector<int32_t>& appIds, |
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const std::vector<std::string>& sandboxIds) { |
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return ok(); |
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} |
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binder::Status VoldNativeService::onSecureKeyguardStateChanged(bool isShowing) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->onSecureKeyguardStateChanged(isShowing)); |
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} |
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binder::Status VoldNativeService::partition(const std::string& diskId, int32_t partitionType, |
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int32_t ratio) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(diskId); |
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ACQUIRE_LOCK; |
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auto disk = VolumeManager::Instance()->findDisk(diskId); |
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if (disk == nullptr) { |
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return error("Failed to find disk " + diskId); |
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} |
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switch (partitionType) { |
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case PARTITION_TYPE_PUBLIC: |
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return translate(disk->partitionPublic()); |
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case PARTITION_TYPE_PRIVATE: |
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return translate(disk->partitionPrivate()); |
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case PARTITION_TYPE_MIXED: |
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return translate(disk->partitionMixed(ratio)); |
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default: |
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return error("Unknown type " + std::to_string(partitionType)); |
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} |
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} |
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binder::Status VoldNativeService::forgetPartition(const std::string& partGuid, |
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const std::string& fsUuid) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_HEX(partGuid); |
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CHECK_ARGUMENT_HEX(fsUuid); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->forgetPartition(partGuid, fsUuid)); |
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} |
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binder::Status VoldNativeService::mount(const std::string& volId, int32_t mountFlags, |
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int32_t mountUserId) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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auto vol = VolumeManager::Instance()->findVolume(volId); |
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if (vol == nullptr) { |
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return error("Failed to find volume " + volId); |
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} |
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vol->setMountFlags(mountFlags); |
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vol->setMountUserId(mountUserId); |
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int res = vol->mount(); |
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if (res != OK) { |
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return translate(res); |
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} |
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if ((mountFlags & MOUNT_FLAG_PRIMARY) != 0) { |
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res = VolumeManager::Instance()->setPrimary(vol); |
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if (res != OK) { |
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return translate(res); |
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} |
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} |
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return translate(OK); |
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} |
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binder::Status VoldNativeService::unmount(const std::string& volId) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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auto vol = VolumeManager::Instance()->findVolume(volId); |
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if (vol == nullptr) { |
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return error("Failed to find volume " + volId); |
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} |
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return translate(vol->unmount()); |
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} |
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binder::Status VoldNativeService::format(const std::string& volId, const std::string& fsType) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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auto vol = VolumeManager::Instance()->findVolume(volId); |
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if (vol == nullptr) { |
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return error("Failed to find volume " + volId); |
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} |
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return translate(vol->format(fsType)); |
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} |
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static binder::Status pathForVolId(const std::string& volId, std::string* path) { |
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if (volId == "private" || volId == "null") { |
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*path = "/data"; |
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} else { |
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auto vol = VolumeManager::Instance()->findVolume(volId); |
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if (vol == nullptr) { |
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return error("Failed to find volume " + volId); |
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} |
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if (vol->getType() != VolumeBase::Type::kPrivate) { |
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return error("Volume " + volId + " not private"); |
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} |
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if (vol->getState() != VolumeBase::State::kMounted) { |
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return error("Volume " + volId + " not mounted"); |
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} |
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*path = vol->getPath(); |
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if (path->empty()) { |
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return error("Volume " + volId + " missing path"); |
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} |
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} |
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return ok(); |
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} |
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binder::Status VoldNativeService::benchmark( |
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const std::string& volId, const android::sp<android::os::IVoldTaskListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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std::string path; |
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auto status = pathForVolId(volId, &path); |
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if (!status.isOk()) return status; |
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std::thread([=]() { android::vold::Benchmark(path, listener); }).detach(); |
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return ok(); |
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} |
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binder::Status VoldNativeService::checkEncryption(const std::string& volId) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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std::string path; |
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auto status = pathForVolId(volId, &path); |
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if (!status.isOk()) return status; |
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return translate(android::vold::CheckEncryption(path)); |
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} |
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binder::Status VoldNativeService::moveStorage( |
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const std::string& fromVolId, const std::string& toVolId, |
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const android::sp<android::os::IVoldTaskListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(fromVolId); |
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CHECK_ARGUMENT_ID(toVolId); |
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ACQUIRE_LOCK; |
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auto fromVol = VolumeManager::Instance()->findVolume(fromVolId); |
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auto toVol = VolumeManager::Instance()->findVolume(toVolId); |
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if (fromVol == nullptr) { |
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return error("Failed to find volume " + fromVolId); |
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} else if (toVol == nullptr) { |
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return error("Failed to find volume " + toVolId); |
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} |
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std::thread([=]() { android::vold::MoveStorage(fromVol, toVol, listener); }).detach(); |
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return ok(); |
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} |
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binder::Status VoldNativeService::remountUid(int32_t uid, int32_t remountMode) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->remountUid(uid, remountMode)); |
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} |
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binder::Status VoldNativeService::mkdirs(const std::string& path) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_PATH(path); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->mkdirs(path)); |
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} |
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binder::Status VoldNativeService::createObb(const std::string& sourcePath, |
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const std::string& sourceKey, int32_t ownerGid, |
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std::string* _aidl_return) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_PATH(sourcePath); |
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CHECK_ARGUMENT_HEX(sourceKey); |
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ACQUIRE_LOCK; |
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return translate( |
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VolumeManager::Instance()->createObb(sourcePath, sourceKey, ownerGid, _aidl_return)); |
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} |
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binder::Status VoldNativeService::destroyObb(const std::string& volId) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->destroyObb(volId)); |
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} |
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binder::Status VoldNativeService::createStubVolume( |
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const std::string& sourcePath, const std::string& mountPath, const std::string& fsType, |
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const std::string& fsUuid, const std::string& fsLabel, std::string* _aidl_return) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_PATH(sourcePath); |
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CHECK_ARGUMENT_PATH(mountPath); |
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CHECK_ARGUMENT_HEX(fsUuid); |
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// Label limitation seems to be different between fs (including allowed characters), so checking |
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// is quite meaningless. |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->createStubVolume(sourcePath, mountPath, fsType, |
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fsUuid, fsLabel, _aidl_return)); |
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} |
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binder::Status VoldNativeService::destroyStubVolume(const std::string& volId) { |
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ENFORCE_UID(AID_SYSTEM); |
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CHECK_ARGUMENT_ID(volId); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->destroyStubVolume(volId)); |
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} |
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binder::Status VoldNativeService::fstrim( |
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int32_t fstrimFlags, const android::sp<android::os::IVoldTaskListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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std::thread([=]() { android::vold::Trim(listener); }).detach(); |
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return ok(); |
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} |
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binder::Status VoldNativeService::runIdleMaint( |
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const android::sp<android::os::IVoldTaskListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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std::thread([=]() { android::vold::RunIdleMaint(listener); }).detach(); |
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return ok(); |
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} |
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binder::Status VoldNativeService::abortIdleMaint( |
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const android::sp<android::os::IVoldTaskListener>& listener) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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std::thread([=]() { android::vold::AbortIdleMaint(listener); }).detach(); |
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return ok(); |
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} |
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binder::Status VoldNativeService::mountAppFuse(int32_t uid, int32_t mountId, |
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android::base::unique_fd* _aidl_return) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->mountAppFuse(uid, mountId, _aidl_return)); |
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} |
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binder::Status VoldNativeService::unmountAppFuse(int32_t uid, int32_t mountId) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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return translate(VolumeManager::Instance()->unmountAppFuse(uid, mountId)); |
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} |
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binder::Status VoldNativeService::openAppFuseFile(int32_t uid, int32_t mountId, int32_t fileId, |
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int32_t flags, |
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android::base::unique_fd* _aidl_return) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_LOCK; |
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int fd = VolumeManager::Instance()->openAppFuseFile(uid, mountId, fileId, flags); |
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if (fd == -1) { |
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return error("Failed to open AppFuse file for uid: " + std::to_string(uid) + |
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" mountId: " + std::to_string(mountId) + " fileId: " + std::to_string(fileId) + |
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" flags: " + std::to_string(flags)); |
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} |
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*_aidl_return = android::base::unique_fd(fd); |
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return ok(); |
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} |
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binder::Status VoldNativeService::fdeCheckPassword(const std::string& password) { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_CRYPT_LOCK; |
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return translate(cryptfs_check_passwd(password.c_str())); |
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} |
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binder::Status VoldNativeService::fdeRestart() { |
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ENFORCE_UID(AID_SYSTEM); |
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ACQUIRE_CRYPT_LOCK; |
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|
|
// Spawn as thread so init can issue commands back to vold without |
|
// causing deadlock, usually as a result of prep_data_fs. |
|
std::thread(&cryptfs_restart).detach(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeComplete(int32_t* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
*_aidl_return = cryptfs_crypto_complete(); |
|
return ok(); |
|
} |
|
|
|
static int fdeEnableInternal(int32_t passwordType, const std::string& password, |
|
int32_t encryptionFlags) { |
|
bool noUi = (encryptionFlags & VoldNativeService::ENCRYPTION_FLAG_NO_UI) != 0; |
|
|
|
for (int tries = 0; tries < 2; ++tries) { |
|
int rc; |
|
if (passwordType == VoldNativeService::PASSWORD_TYPE_DEFAULT) { |
|
rc = cryptfs_enable_default(noUi); |
|
} else { |
|
rc = cryptfs_enable(passwordType, password.c_str(), noUi); |
|
} |
|
|
|
if (rc == 0) { |
|
return 0; |
|
} else if (tries == 0) { |
|
KillProcessesWithOpenFiles(DATA_MNT_POINT, SIGKILL); |
|
} |
|
} |
|
|
|
return -1; |
|
} |
|
|
|
binder::Status VoldNativeService::fdeEnable(int32_t passwordType, const std::string& password, |
|
int32_t encryptionFlags) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
LOG(DEBUG) << "fdeEnable(" << passwordType << ", *, " << encryptionFlags << ")"; |
|
if (fscrypt_is_native()) { |
|
LOG(ERROR) << "fscrypt_is_native, fdeEnable invalid"; |
|
return error("fscrypt_is_native, fdeEnable invalid"); |
|
} |
|
LOG(DEBUG) << "!fscrypt_is_native, spawning fdeEnableInternal"; |
|
|
|
// Spawn as thread so init can issue commands back to vold without |
|
// causing deadlock, usually as a result of prep_data_fs. |
|
std::thread(&fdeEnableInternal, passwordType, password, encryptionFlags).detach(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeChangePassword(int32_t passwordType, |
|
const std::string& password) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translate(cryptfs_changepw(passwordType, password.c_str())); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeVerifyPassword(const std::string& password) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translate(cryptfs_verify_passwd(password.c_str())); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeGetField(const std::string& key, std::string* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
char buf[PROPERTY_VALUE_MAX]; |
|
memset(buf, 0x00, sizeof(buf)); |
|
int rtn = cryptfs_getfield(key.c_str(), buf, sizeof(buf)); |
|
if (rtn != CRYPTO_GETFIELD_OK && rtn != CRYPTO_GETFIELD_ERROR_NO_FIELD) { |
|
return error(StringPrintf("Failed to read field %s", key.c_str())); |
|
} else { |
|
*_aidl_return = buf; |
|
|
|
LOG(DEBUG) << __FUNCTION__ << ": value: '" << buf << "'"; |
|
return ok(); |
|
} |
|
} |
|
|
|
binder::Status VoldNativeService::fdeSetField(const std::string& key, const std::string& value) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
LOG(DEBUG) << __FUNCTION__ << ": key:" << key << " value:'" << value << "'";; |
|
return translate(cryptfs_setfield(key.c_str(), value.c_str())); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeGetPasswordType(int32_t* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
*_aidl_return = cryptfs_get_password_type(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeGetPassword(std::string* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
const char* res = cryptfs_get_password(); |
|
if (res != nullptr) { |
|
*_aidl_return = res; |
|
} |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::fdeClearPassword() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
cryptfs_clear_password(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::fbeEnable() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
write_file_bootprof("vold:fbeEnable:START"); |
|
bool rtn = fscrypt_initialize_systemwide_keys(); |
|
write_file_bootprof(StringPrintf("vold:fbeEnable:END, rtn =%d", rtn).c_str()); |
|
return translateBool(rtn); |
|
} |
|
|
|
binder::Status VoldNativeService::mountDefaultEncrypted() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
if (!fscrypt_is_native()) { |
|
// Spawn as thread so init can issue commands back to vold without |
|
// causing deadlock, usually as a result of prep_data_fs. |
|
std::thread(&cryptfs_mount_default_encrypted).detach(); |
|
} |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::initUser0() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
write_file_bootprof("vold:initUser0:START"); |
|
bool rtn = fscrypt_init_user0(); |
|
write_file_bootprof(StringPrintf("vold:initUser0:END, rtn =%d", rtn).c_str()); |
|
|
|
return translateBool(rtn); |
|
} |
|
|
|
binder::Status VoldNativeService::isConvertibleToFbe(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
*_aidl_return = cryptfs_isConvertibleToFBE() != 0; |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::mountFstab(const std::string& blkDevice, |
|
const std::string& mountPoint) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return translateBool(fscrypt_mount_metadata_encrypted(blkDevice, mountPoint, false)); |
|
} |
|
|
|
binder::Status VoldNativeService::encryptFstab(const std::string& blkDevice, |
|
const std::string& mountPoint) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return translateBool(fscrypt_mount_metadata_encrypted(blkDevice, mountPoint, true)); |
|
} |
|
|
|
binder::Status VoldNativeService::createUserKey(int32_t userId, int32_t userSerial, bool ephemeral) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_vold_create_user_key(userId, userSerial, ephemeral)); |
|
} |
|
|
|
binder::Status VoldNativeService::destroyUserKey(int32_t userId) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_destroy_user_key(userId)); |
|
} |
|
|
|
binder::Status VoldNativeService::addUserKeyAuth(int32_t userId, int32_t userSerial, |
|
const std::string& token, |
|
const std::string& secret) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_add_user_key_auth(userId, userSerial, token, secret)); |
|
} |
|
|
|
binder::Status VoldNativeService::fixateNewestUserKeyAuth(int32_t userId) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_fixate_newest_user_key_auth(userId)); |
|
} |
|
|
|
binder::Status VoldNativeService::unlockUserKey(int32_t userId, int32_t userSerial, |
|
const std::string& token, |
|
const std::string& secret) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_unlock_user_key(userId, userSerial, token, secret)); |
|
} |
|
|
|
binder::Status VoldNativeService::lockUserKey(int32_t userId) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_CRYPT_LOCK; |
|
|
|
return translateBool(fscrypt_lock_user_key(userId)); |
|
} |
|
|
|
binder::Status VoldNativeService::prepareUserStorage(const std::unique_ptr<std::string>& uuid, |
|
int32_t userId, int32_t userSerial, |
|
int32_t flags) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
std::string empty_string = ""; |
|
auto uuid_ = uuid ? *uuid : empty_string; |
|
CHECK_ARGUMENT_HEX(uuid_); |
|
|
|
ACQUIRE_CRYPT_LOCK; |
|
return translateBool(fscrypt_prepare_user_storage(uuid_, userId, userSerial, flags)); |
|
} |
|
|
|
binder::Status VoldNativeService::destroyUserStorage(const std::unique_ptr<std::string>& uuid, |
|
int32_t userId, int32_t flags) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
std::string empty_string = ""; |
|
auto uuid_ = uuid ? *uuid : empty_string; |
|
CHECK_ARGUMENT_HEX(uuid_); |
|
|
|
ACQUIRE_CRYPT_LOCK; |
|
return translateBool(fscrypt_destroy_user_storage(uuid_, userId, flags)); |
|
} |
|
|
|
binder::Status VoldNativeService::prepareSandboxForApp(const std::string& packageName, |
|
int32_t appId, const std::string& sandboxId, |
|
int32_t userId) { |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::destroySandboxForApp(const std::string& packageName, |
|
const std::string& sandboxId, |
|
int32_t userId) { |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::startCheckpoint(int32_t retry) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_startCheckpoint(retry); |
|
} |
|
|
|
binder::Status VoldNativeService::needsRollback(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
*_aidl_return = cp_needsRollback(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::needsCheckpoint(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
*_aidl_return = cp_needsCheckpoint(); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::commitChanges() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_commitChanges(); |
|
} |
|
|
|
binder::Status VoldNativeService::prepareCheckpoint() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_prepareCheckpoint(); |
|
} |
|
|
|
binder::Status VoldNativeService::restoreCheckpoint(const std::string& mountPoint) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
CHECK_ARGUMENT_PATH(mountPoint); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_restoreCheckpoint(mountPoint); |
|
} |
|
|
|
binder::Status VoldNativeService::restoreCheckpointPart(const std::string& mountPoint, int count) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
CHECK_ARGUMENT_PATH(mountPoint); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_restoreCheckpoint(mountPoint, count); |
|
} |
|
|
|
binder::Status VoldNativeService::markBootAttempt() { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_markBootAttempt(); |
|
} |
|
|
|
binder::Status VoldNativeService::abortChanges(const std::string& message, bool retry) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
cp_abortChanges(message, retry); |
|
return ok(); |
|
} |
|
|
|
binder::Status VoldNativeService::supportsCheckpoint(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_supportsCheckpoint(*_aidl_return); |
|
} |
|
|
|
binder::Status VoldNativeService::supportsBlockCheckpoint(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_supportsBlockCheckpoint(*_aidl_return); |
|
} |
|
|
|
binder::Status VoldNativeService::supportsFileCheckpoint(bool* _aidl_return) { |
|
ENFORCE_UID(AID_SYSTEM); |
|
ACQUIRE_LOCK; |
|
|
|
return cp_supportsFileCheckpoint(*_aidl_return); |
|
} |
|
|
|
} // namespace vold |
|
} // namespace android
|
|
|