/* * Copyright (C) 2018 The Android Open Source Project * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #define TRACE_TAG SERVICES #include "sysdeps.h" #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "adb.h" #include "adb_io.h" #include "adb_unique_fd.h" #include "adb_utils.h" #include "services.h" #include "socket_spec.h" #include "sysdeps.h" #include "transport.h" #include "daemon/file_sync_service.h" #include "daemon/framebuffer_service.h" #include "daemon/remount_service.h" #include "daemon/set_verity_enable_state_service.h" #include "daemon/shell_service.h" void restart_root_service(unique_fd fd) { if (getuid() == 0) { WriteFdExactly(fd.get(), "adbd is already running as root\n"); return; } if (!__android_log_is_debuggable()) { WriteFdExactly(fd.get(), "adbd cannot run as root in production builds\n"); return; } android::base::SetProperty("service.adb.root", "1"); WriteFdExactly(fd.get(), "restarting adbd as root\n"); } void restart_unroot_service(unique_fd fd) { if (getuid() != 0) { WriteFdExactly(fd.get(), "adbd not running as root\n"); return; } android::base::SetProperty("service.adb.root", "0"); WriteFdExactly(fd.get(), "restarting adbd as non root\n"); } void restart_tcp_service(unique_fd fd, int port) { if (port <= 0) { WriteFdFmt(fd.get(), "invalid port %d\n", port); return; } android::base::SetProperty("service.adb.tcp.port", android::base::StringPrintf("%d", port)); WriteFdFmt(fd.get(), "restarting in TCP mode port: %d\n", port); } void restart_usb_service(unique_fd fd) { android::base::SetProperty("service.adb.tcp.port", "0"); WriteFdExactly(fd.get(), "restarting in USB mode\n"); } void reboot_service(unique_fd fd, const std::string& arg) { std::string reboot_arg = arg; sync(); if (reboot_arg.empty()) reboot_arg = "adb"; std::string reboot_string = android::base::StringPrintf("reboot,%s", reboot_arg.c_str()); if (reboot_arg == "fastboot" && android::base::GetBoolProperty("ro.boot.logical_partitions", false) && access("/dev/socket/recovery", F_OK) == 0) { LOG(INFO) << "Recovery specific reboot fastboot"; /* * The socket is created to allow switching between recovery and * fastboot. */ android::base::unique_fd sock(socket(AF_UNIX, SOCK_STREAM, 0)); if (sock < 0) { WriteFdFmt(fd, "reboot (%s) create\n", strerror(errno)); PLOG(ERROR) << "Creating recovery socket failed"; return; } sockaddr_un addr = {.sun_family = AF_UNIX}; strncpy(addr.sun_path, "/dev/socket/recovery", sizeof(addr.sun_path) - 1); if (connect(sock, reinterpret_cast(&addr), sizeof(addr)) == -1) { WriteFdFmt(fd, "reboot (%s) connect\n", strerror(errno)); PLOG(ERROR) << "Couldn't connect to recovery socket"; return; } const char msg_switch_to_fastboot = 'f'; auto ret = adb_write(sock, &msg_switch_to_fastboot, sizeof(msg_switch_to_fastboot)); if (ret != sizeof(msg_switch_to_fastboot)) { WriteFdFmt(fd, "reboot (%s) write\n", strerror(errno)); PLOG(ERROR) << "Couldn't write message to recovery socket to switch to fastboot"; return; } } else { if (!android::base::SetProperty(ANDROID_RB_PROPERTY, reboot_string)) { WriteFdFmt(fd.get(), "reboot (%s) failed\n", reboot_string.c_str()); return; } } // Don't return early. Give the reboot command time to take effect // to avoid messing up scripts which do "adb reboot && adb wait-for-device" while (true) { pause(); } } void reconnect_service(unique_fd fd, atransport* t) { WriteFdExactly(fd.get(), "done"); kick_transport(t); } unique_fd reverse_service(const char* command, atransport* transport) { int s[2]; if (adb_socketpair(s)) { PLOG(ERROR) << "cannot create service socket pair."; return unique_fd{}; } VLOG(SERVICES) << "service socketpair: " << s[0] << ", " << s[1]; if (!handle_forward_request(command, transport, s[1])) { SendFail(s[1], "not a reverse forwarding command"); } adb_close(s[1]); return unique_fd{s[0]}; } // Shell service string can look like: // shell[,arg1,arg2,...]:[command] unique_fd ShellService(const std::string& args, const atransport* transport) { size_t delimiter_index = args.find(':'); if (delimiter_index == std::string::npos) { LOG(ERROR) << "No ':' found in shell service arguments: " << args; return unique_fd{}; } const std::string service_args = args.substr(0, delimiter_index); const std::string command = args.substr(delimiter_index + 1); // Defaults: // PTY for interactive, raw for non-interactive. // No protocol. // $TERM set to "dumb". SubprocessType type(command.empty() ? SubprocessType::kPty : SubprocessType::kRaw); SubprocessProtocol protocol = SubprocessProtocol::kNone; std::string terminal_type = "dumb"; for (const std::string& arg : android::base::Split(service_args, ",")) { if (arg == kShellServiceArgRaw) { type = SubprocessType::kRaw; } else if (arg == kShellServiceArgPty) { type = SubprocessType::kPty; } else if (arg == kShellServiceArgShellProtocol) { protocol = SubprocessProtocol::kShell; } else if (android::base::StartsWith(arg, "TERM=")) { terminal_type = arg.substr(5); } else if (!arg.empty()) { // This is not an error to allow for future expansion. LOG(WARNING) << "Ignoring unknown shell service argument: " << arg; } } return StartSubprocess(command.c_str(), terminal_type.c_str(), type, protocol); } static void spin_service(unique_fd fd) { if (!__android_log_is_debuggable()) { WriteFdExactly(fd.get(), "refusing to spin on non-debuggable build\n"); return; } // A service that creates an fdevent that's always pending, and then ignores it. unique_fd pipe_read, pipe_write; if (!Pipe(&pipe_read, &pipe_write)) { WriteFdExactly(fd.get(), "failed to create pipe\n"); return; } fdevent_run_on_main_thread([fd = pipe_read.release()]() { fdevent* fde = fdevent_create(fd, [](int, unsigned, void*) {}, nullptr); fdevent_add(fde, FDE_READ); }); WriteFdExactly(fd.get(), "spinning\n"); } unique_fd daemon_service_to_fd(const char* name, atransport* transport) { if (!strncmp("dev:", name, 4)) { return unique_fd{unix_open(name + 4, O_RDWR | O_CLOEXEC)}; } else if (!strncmp(name, "framebuffer:", 12)) { return create_service_thread("fb", framebuffer_service); } else if (!strncmp(name, "jdwp:", 5)) { return create_jdwp_connection_fd(atoi(name + 5)); } else if (!strncmp(name, "shell", 5)) { return ShellService(name + 5, transport); } else if (!strncmp(name, "exec:", 5)) { return StartSubprocess(name + 5, nullptr, SubprocessType::kRaw, SubprocessProtocol::kNone); } else if (!strncmp(name, "sync:", 5)) { return create_service_thread("sync", file_sync_service); } else if (!strncmp(name, "remount:", 8)) { std::string options(name + strlen("remount:")); return create_service_thread("remount", std::bind(remount_service, std::placeholders::_1, options)); } else if (!strncmp(name, "reboot:", 7)) { std::string arg(name + strlen("reboot:")); return create_service_thread("reboot", std::bind(reboot_service, std::placeholders::_1, arg)); } else if (!strncmp(name, "root:", 5)) { return create_service_thread("root", restart_root_service); } else if (!strncmp(name, "unroot:", 7)) { return create_service_thread("unroot", restart_unroot_service); } else if (!strncmp(name, "backup:", 7)) { return StartSubprocess( android::base::StringPrintf("/system/bin/bu backup %s", (name + 7)).c_str(), nullptr, SubprocessType::kRaw, SubprocessProtocol::kNone); } else if (!strncmp(name, "restore:", 8)) { return StartSubprocess("/system/bin/bu restore", nullptr, SubprocessType::kRaw, SubprocessProtocol::kNone); } else if (!strncmp(name, "tcpip:", 6)) { int port; if (sscanf(name + 6, "%d", &port) != 1) { return unique_fd{}; } return create_service_thread("tcp", std::bind(restart_tcp_service, std::placeholders::_1, port)); } else if (!strncmp(name, "usb:", 4)) { return create_service_thread("usb", restart_usb_service); } else if (!strncmp(name, "reverse:", 8)) { return reverse_service(name + 8, transport); } else if (!strncmp(name, "disable-verity:", 15)) { return create_service_thread("verity-on", std::bind(set_verity_enabled_state_service, std::placeholders::_1, false)); } else if (!strncmp(name, "enable-verity:", 15)) { return create_service_thread("verity-off", std::bind(set_verity_enabled_state_service, std::placeholders::_1, true)); } else if (!strcmp(name, "reconnect")) { return create_service_thread( "reconnect", std::bind(reconnect_service, std::placeholders::_1, transport)); } else if (!strcmp(name, "spin")) { return create_service_thread("spin", spin_service); } return unique_fd{}; }