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1 /*
2  * Copyright (C) 2007 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #define TRACE_TAG ADB
18 
19 #include "sysdeps.h"
20 
21 #include <assert.h>
22 #include <ctype.h>
23 #include <errno.h>
24 #include <inttypes.h>
25 #include <limits.h>
26 #include <stdarg.h>
27 #include <stdint.h>
28 #include <stdio.h>
29 #include <stdlib.h>
30 #include <string.h>
31 #include <sys/stat.h>
32 #include <sys/types.h>
33 #include <iostream>
34 
35 #include <memory>
36 #include <string>
37 #include <thread>
38 #include <vector>
39 
40 #include <android-base/file.h>
41 #include <android-base/logging.h>
42 #include <android-base/parseint.h>
43 #include <android-base/stringprintf.h>
44 #include <android-base/strings.h>
45 
46 #if !defined(_WIN32)
47 #include <signal.h>
48 #include <sys/ioctl.h>
49 #include <termios.h>
50 #include <unistd.h>
51 #endif
52 
53 #include <google/protobuf/text_format.h>
54 
55 #include "adb.h"
56 #include "adb_auth.h"
57 #include "adb_client.h"
58 #include "adb_install.h"
59 #include "adb_io.h"
60 #include "adb_unique_fd.h"
61 #include "adb_utils.h"
62 #include "app_processes.pb.h"
63 #include "bugreport.h"
64 #include "client/file_sync_client.h"
65 #include "commandline.h"
66 #include "fastdeploy.h"
67 #include "incremental_server.h"
68 #include "services.h"
69 #include "shell_protocol.h"
70 #include "sysdeps/chrono.h"
71 
72 extern int gListenAll;
73 
74 DefaultStandardStreamsCallback DEFAULT_STANDARD_STREAMS_CALLBACK(nullptr, nullptr);
75 
product_file(const std::string & file)76 static std::string product_file(const std::string& file) {
77     const char* ANDROID_PRODUCT_OUT = getenv("ANDROID_PRODUCT_OUT");
78     if (ANDROID_PRODUCT_OUT == nullptr) {
79         error_exit("product directory not specified; set $ANDROID_PRODUCT_OUT");
80     }
81     return std::string{ANDROID_PRODUCT_OUT} + OS_PATH_SEPARATOR_STR + file;
82 }
83 
help()84 static void help() {
85     fprintf(stdout, "%s\n", adb_version().c_str());
86     // clang-format off
87     fprintf(stdout,
88         "global options:\n"
89         " -a         listen on all network interfaces, not just localhost\n"
90         " -d         use USB device (error if multiple devices connected)\n"
91         " -e         use TCP/IP device (error if multiple TCP/IP devices available)\n"
92         " -s SERIAL  use device with given serial (overrides $ANDROID_SERIAL)\n"
93         " -t ID      use device with given transport id\n"
94         " -H         name of adb server host [default=localhost]\n"
95         " -P         port of adb server [default=5037]\n"
96         " -L SOCKET  listen on given socket for adb server [default=tcp:localhost:5037]\n"
97         "\n"
98         "general commands:\n"
99         " devices [-l]             list connected devices (-l for long output)\n"
100         " help                     show this help message\n"
101         " version                  show version num\n"
102         "\n"
103         "networking:\n"
104         " connect HOST[:PORT]      connect to a device via TCP/IP [default port=5555]\n"
105         " disconnect [HOST[:PORT]]\n"
106         "     disconnect from given TCP/IP device [default port=5555], or all\n"
107         " pair HOST[:PORT] [PAIRING CODE]\n"
108         "     pair with a device for secure TCP/IP communication\n"
109         " forward --list           list all forward socket connections\n"
110         " forward [--no-rebind] LOCAL REMOTE\n"
111         "     forward socket connection using:\n"
112         "       tcp:<port> (<local> may be \"tcp:0\" to pick any open port)\n"
113         "       localabstract:<unix domain socket name>\n"
114         "       localreserved:<unix domain socket name>\n"
115         "       localfilesystem:<unix domain socket name>\n"
116         "       dev:<character device name>\n"
117         "       jdwp:<process pid> (remote only)\n"
118         "       vsock:<CID>:<port> (remote only)\n"
119         "       acceptfd:<fd> (listen only)\n"
120         " forward --remove LOCAL   remove specific forward socket connection\n"
121         " forward --remove-all     remove all forward socket connections\n"
122         " ppp TTY [PARAMETER...]   run PPP over USB\n"
123         " reverse --list           list all reverse socket connections from device\n"
124         " reverse [--no-rebind] REMOTE LOCAL\n"
125         "     reverse socket connection using:\n"
126         "       tcp:<port> (<remote> may be \"tcp:0\" to pick any open port)\n"
127         "       localabstract:<unix domain socket name>\n"
128         "       localreserved:<unix domain socket name>\n"
129         "       localfilesystem:<unix domain socket name>\n"
130         " reverse --remove REMOTE  remove specific reverse socket connection\n"
131         " reverse --remove-all     remove all reverse socket connections from device\n"
132         " mdns check               check if mdns discovery is available\n"
133         " mdns services            list all discovered services\n"
134         "\n"
135         "file transfer:\n"
136         " push [--sync] [-z ALGORITHM] [-Z] LOCAL... REMOTE\n"
137         "     copy local files/directories to device\n"
138         "     --sync: only push files that are newer on the host than the device\n"
139         "     -n: dry run: push files to device without storing to the filesystem\n"
140         "     -z: enable compression with a specified algorithm (any, none, brotli)\n"
141         "     -Z: disable compression\n"
142         " pull [-a] [-z ALGORITHM] [-Z] REMOTE... LOCAL\n"
143         "     copy files/dirs from device\n"
144         "     -a: preserve file timestamp and mode\n"
145         "     -z: enable compression with a specified algorithm (any, none, brotli)\n"
146         "     -Z: disable compression\n"
147         " sync [-l] [-z ALGORITHM] [-Z] [all|data|odm|oem|product|system|system_ext|vendor]\n"
148         "     sync a local build from $ANDROID_PRODUCT_OUT to the device (default all)\n"
149         "     -n: dry run: push files to device without storing to the filesystem\n"
150         "     -l: list files that would be copied, but don't copy them\n"
151         "     -z: enable compression with a specified algorithm (any, none, brotli)\n"
152         "     -Z: disable compression\n"
153         "\n"
154         "shell:\n"
155         " shell [-e ESCAPE] [-n] [-Tt] [-x] [COMMAND...]\n"
156         "     run remote shell command (interactive shell if no command given)\n"
157         "     -e: choose escape character, or \"none\"; default '~'\n"
158         "     -n: don't read from stdin\n"
159         "     -T: disable pty allocation\n"
160         "     -t: allocate a pty if on a tty (-tt: force pty allocation)\n"
161         "     -x: disable remote exit codes and stdout/stderr separation\n"
162         " emu COMMAND              run emulator console command\n"
163         "\n"
164         "app installation (see also `adb shell cmd package help`):\n"
165         " install [-lrtsdg] [--instant] PACKAGE\n"
166         "     push a single package to the device and install it\n"
167         " install-multiple [-lrtsdpg] [--instant] PACKAGE...\n"
168         "     push multiple APKs to the device for a single package and install them\n"
169         " install-multi-package [-lrtsdpg] [--instant] PACKAGE...\n"
170         "     push one or more packages to the device and install them atomically\n"
171         "     -r: replace existing application\n"
172         "     -t: allow test packages\n"
173         "     -d: allow version code downgrade (debuggable packages only)\n"
174         "     -p: partial application install (install-multiple only)\n"
175         "     -g: grant all runtime permissions\n"
176         "     --abi ABI: override platform's default ABI\n"
177         "     --instant: cause the app to be installed as an ephemeral install app\n"
178         "     --no-streaming: always push APK to device and invoke Package Manager as separate steps\n"
179         "     --streaming: force streaming APK directly into Package Manager\n"
180         "     --fastdeploy: use fast deploy\n"
181         "     --no-fastdeploy: prevent use of fast deploy\n"
182         "     --force-agent: force update of deployment agent when using fast deploy\n"
183         "     --date-check-agent: update deployment agent when local version is newer and using fast deploy\n"
184         "     --version-check-agent: update deployment agent when local version has different version code and using fast deploy\n"
185 #ifndef _WIN32
186         "     --local-agent: locate agent files from local source build (instead of SDK location)\n"
187 #endif
188         "     (See also `adb shell pm help` for more options.)\n"
189         //TODO--installlog <filename>
190         " uninstall [-k] PACKAGE\n"
191         "     remove this app package from the device\n"
192         "     '-k': keep the data and cache directories\n"
193         "\n"
194         "debugging:\n"
195         " bugreport [PATH]\n"
196         "     write bugreport to given PATH [default=bugreport.zip];\n"
197         "     if PATH is a directory, the bug report is saved in that directory.\n"
198         "     devices that don't support zipped bug reports output to stdout.\n"
199         " jdwp                     list pids of processes hosting a JDWP transport\n"
200         " logcat                   show device log (logcat --help for more)\n"
201         "\n"
202         "security:\n"
203         " disable-verity           disable dm-verity checking on userdebug builds\n"
204         " enable-verity            re-enable dm-verity checking on userdebug builds\n"
205         " keygen FILE\n"
206         "     generate adb public/private key; private key stored in FILE,\n"
207         "\n"
208         "scripting:\n"
209         " wait-for[-TRANSPORT]-STATE...\n"
210         "     wait for device to be in a given state\n"
211         "     STATE: device, recovery, rescue, sideload, bootloader, or disconnect\n"
212         "     TRANSPORT: usb, local, or any [default=any]\n"
213         " get-state                print offline | bootloader | device\n"
214         " get-serialno             print <serial-number>\n"
215         " get-devpath              print <device-path>\n"
216         " remount [-R]\n"
217         "      remount partitions read-write. if a reboot is required, -R will\n"
218         "      will automatically reboot the device.\n"
219         " reboot [bootloader|recovery|sideload|sideload-auto-reboot]\n"
220         "     reboot the device; defaults to booting system image but\n"
221         "     supports bootloader and recovery too. sideload reboots\n"
222         "     into recovery and automatically starts sideload mode,\n"
223         "     sideload-auto-reboot is the same but reboots after sideloading.\n"
224         " sideload OTAPACKAGE      sideload the given full OTA package\n"
225         " root                     restart adbd with root permissions\n"
226         " unroot                   restart adbd without root permissions\n"
227         " usb                      restart adbd listening on USB\n"
228         " tcpip PORT               restart adbd listening on TCP on PORT\n"
229         "\n"
230         "internal debugging:\n"
231         " start-server             ensure that there is a server running\n"
232         " kill-server              kill the server if it is running\n"
233         " reconnect                kick connection from host side to force reconnect\n"
234         " reconnect device         kick connection from device side to force reconnect\n"
235         " reconnect offline        reset offline/unauthorized devices to force reconnect\n"
236         "\n"
237         "environment variables:\n"
238         " $ADB_TRACE\n"
239         "     comma-separated list of debug info to log:\n"
240         "     all,adb,sockets,packets,rwx,usb,sync,sysdeps,transport,jdwp\n"
241         " $ADB_VENDOR_KEYS         colon-separated list of keys (files or directories)\n"
242         " $ANDROID_SERIAL          serial number to connect to (see -s)\n"
243         " $ANDROID_LOG_TAGS        tags to be used by logcat (see logcat --help)\n"
244         " $ADB_LOCAL_TRANSPORT_MAX_PORT max emulator scan port (default 5585, 16 emus)\n"
245         " $ADB_MDNS_AUTO_CONNECT   comma-separated list of mdns services to allow auto-connect (default adb-tls-connect)\n"
246     );
247     // clang-format on
248 }
249 
250 #if defined(_WIN32)
251 
252 // Implemented in sysdeps_win32.cpp.
253 void stdin_raw_init();
254 void stdin_raw_restore();
255 
256 #else
257 static termios g_saved_terminal_state;
258 
stdin_raw_init()259 static void stdin_raw_init() {
260     if (tcgetattr(STDIN_FILENO, &g_saved_terminal_state)) return;
261 
262     termios tio;
263     if (tcgetattr(STDIN_FILENO, &tio)) return;
264 
265     cfmakeraw(&tio);
266 
267     // No timeout but request at least one character per read.
268     tio.c_cc[VTIME] = 0;
269     tio.c_cc[VMIN] = 1;
270 
271     tcsetattr(STDIN_FILENO, TCSAFLUSH, &tio);
272 }
273 
stdin_raw_restore()274 static void stdin_raw_restore() {
275     tcsetattr(STDIN_FILENO, TCSAFLUSH, &g_saved_terminal_state);
276 }
277 #endif
278 
read_and_dump(borrowed_fd fd,bool use_shell_protocol,StandardStreamsCallbackInterface * callback)279 int read_and_dump(borrowed_fd fd, bool use_shell_protocol,
280                   StandardStreamsCallbackInterface* callback) {
281     int exit_code = 0;
282     if (fd < 0) return exit_code;
283 
284     std::unique_ptr<ShellProtocol> protocol;
285     int length = 0;
286 
287     char raw_buffer[BUFSIZ];
288     char* buffer_ptr = raw_buffer;
289     if (use_shell_protocol) {
290         protocol = std::make_unique<ShellProtocol>(fd);
291         if (!protocol) {
292             LOG(ERROR) << "failed to allocate memory for ShellProtocol object";
293             return 1;
294         }
295         buffer_ptr = protocol->data();
296     }
297 
298     while (true) {
299         if (use_shell_protocol) {
300             if (!protocol->Read()) {
301                 break;
302             }
303             length = protocol->data_length();
304             switch (protocol->id()) {
305                 case ShellProtocol::kIdStdout:
306                     callback->OnStdout(buffer_ptr, length);
307                     break;
308                 case ShellProtocol::kIdStderr:
309                     callback->OnStderr(buffer_ptr, length);
310                     break;
311                 case ShellProtocol::kIdExit:
312                     // data() returns a char* which doesn't have defined signedness.
313                     // Cast to uint8_t to prevent 255 from being sign extended to INT_MIN,
314                     // which doesn't get truncated on Windows.
315                     exit_code = static_cast<uint8_t>(protocol->data()[0]);
316                     continue;
317                 default:
318                     continue;
319             }
320             length = protocol->data_length();
321         } else {
322             D("read_and_dump(): pre adb_read(fd=%d)", fd.get());
323             length = adb_read(fd, raw_buffer, sizeof(raw_buffer));
324             D("read_and_dump(): post adb_read(fd=%d): length=%d", fd.get(), length);
325             if (length <= 0) {
326                 break;
327             }
328             callback->OnStdout(buffer_ptr, length);
329         }
330     }
331 
332     return callback->Done(exit_code);
333 }
334 
stdinout_raw_prologue(int inFd,int outFd,int & old_stdin_mode,int & old_stdout_mode)335 static void stdinout_raw_prologue(int inFd, int outFd, int& old_stdin_mode, int& old_stdout_mode) {
336     if (inFd == STDIN_FILENO) {
337         stdin_raw_init();
338 #ifdef _WIN32
339         old_stdin_mode = _setmode(STDIN_FILENO, _O_BINARY);
340         if (old_stdin_mode == -1) {
341             PLOG(FATAL) << "could not set stdin to binary";
342         }
343 #endif
344     }
345 
346 #ifdef _WIN32
347     if (outFd == STDOUT_FILENO) {
348         old_stdout_mode = _setmode(STDOUT_FILENO, _O_BINARY);
349         if (old_stdout_mode == -1) {
350             PLOG(FATAL) << "could not set stdout to binary";
351         }
352     }
353 #endif
354 }
355 
stdinout_raw_epilogue(int inFd,int outFd,int old_stdin_mode,int old_stdout_mode)356 static void stdinout_raw_epilogue(int inFd, int outFd, int old_stdin_mode, int old_stdout_mode) {
357     if (inFd == STDIN_FILENO) {
358         stdin_raw_restore();
359 #ifdef _WIN32
360         if (_setmode(STDIN_FILENO, old_stdin_mode) == -1) {
361             PLOG(FATAL) << "could not restore stdin mode";
362         }
363 #endif
364     }
365 
366 #ifdef _WIN32
367     if (outFd == STDOUT_FILENO) {
368         if (_setmode(STDOUT_FILENO, old_stdout_mode) == -1) {
369             PLOG(FATAL) << "could not restore stdout mode";
370         }
371     }
372 #endif
373 }
374 
copy_to_file(int inFd,int outFd)375 bool copy_to_file(int inFd, int outFd) {
376     bool result = true;
377     std::vector<char> buf(64 * 1024);
378     int len;
379     long total = 0;
380     int old_stdin_mode = -1;
381     int old_stdout_mode = -1;
382 
383     D("copy_to_file(%d -> %d)", inFd, outFd);
384 
385     stdinout_raw_prologue(inFd, outFd, old_stdin_mode, old_stdout_mode);
386 
387     while (true) {
388         if (inFd == STDIN_FILENO) {
389             len = unix_read(inFd, buf.data(), buf.size());
390         } else {
391             len = adb_read(inFd, buf.data(), buf.size());
392         }
393         if (len == 0) {
394             D("copy_to_file() : read 0 bytes; exiting");
395             break;
396         }
397         if (len < 0) {
398             D("copy_to_file(): read failed: %s", strerror(errno));
399             result = false;
400             break;
401         }
402         if (outFd == STDOUT_FILENO) {
403             fwrite(buf.data(), 1, len, stdout);
404             fflush(stdout);
405         } else {
406             adb_write(outFd, buf.data(), len);
407         }
408         total += len;
409     }
410 
411     stdinout_raw_epilogue(inFd, outFd, old_stdin_mode, old_stdout_mode);
412 
413     D("copy_to_file() finished with %s after %lu bytes", result ? "success" : "failure", total);
414     return result;
415 }
416 
send_window_size_change(int fd,std::unique_ptr<ShellProtocol> & shell)417 static void send_window_size_change(int fd, std::unique_ptr<ShellProtocol>& shell) {
418     // Old devices can't handle window size changes.
419     if (shell == nullptr) return;
420 
421 #if defined(_WIN32)
422     struct winsize {
423         unsigned short ws_row;
424         unsigned short ws_col;
425         unsigned short ws_xpixel;
426         unsigned short ws_ypixel;
427     };
428 #endif
429 
430     winsize ws;
431 
432 #if defined(_WIN32)
433     // If stdout is redirected to a non-console, we won't be able to get the
434     // console size, but that makes sense.
435     const intptr_t intptr_handle = _get_osfhandle(STDOUT_FILENO);
436     if (intptr_handle == -1) return;
437 
438     const HANDLE handle = reinterpret_cast<const HANDLE>(intptr_handle);
439 
440     CONSOLE_SCREEN_BUFFER_INFO info;
441     memset(&info, 0, sizeof(info));
442     if (!GetConsoleScreenBufferInfo(handle, &info)) return;
443 
444     memset(&ws, 0, sizeof(ws));
445     // The number of visible rows, excluding offscreen scroll-back rows which are in info.dwSize.Y.
446     ws.ws_row = info.srWindow.Bottom - info.srWindow.Top + 1;
447     // If the user has disabled "Wrap text output on resize", they can make the screen buffer wider
448     // than the window, in which case we should use the width of the buffer.
449     ws.ws_col = info.dwSize.X;
450 #else
451     if (ioctl(fd, TIOCGWINSZ, &ws) == -1) return;
452 #endif
453 
454     // Send the new window size as human-readable ASCII for debugging convenience.
455     size_t l = snprintf(shell->data(), shell->data_capacity(), "%dx%d,%dx%d",
456                         ws.ws_row, ws.ws_col, ws.ws_xpixel, ws.ws_ypixel);
457     shell->Write(ShellProtocol::kIdWindowSizeChange, l + 1);
458 }
459 
460 // Used to pass multiple values to the stdin read thread.
461 struct StdinReadArgs {
462     int stdin_fd, write_fd;
463     bool raw_stdin;
464     std::unique_ptr<ShellProtocol> protocol;
465     char escape_char;
466 };
467 
468 // Loops to read from stdin and push the data to the given FD.
469 // The argument should be a pointer to a StdinReadArgs object. This function
470 // will take ownership of the object and delete it when finished.
stdin_read_thread_loop(void * x)471 static void stdin_read_thread_loop(void* x) {
472     std::unique_ptr<StdinReadArgs> args(reinterpret_cast<StdinReadArgs*>(x));
473 
474 #if !defined(_WIN32)
475     // Mask SIGTTIN in case we're in a backgrounded process.
476     sigset_t sigset;
477     sigemptyset(&sigset);
478     sigaddset(&sigset, SIGTTIN);
479     pthread_sigmask(SIG_BLOCK, &sigset, nullptr);
480 #endif
481 
482 #if defined(_WIN32)
483     // _get_interesting_input_record_uncached() causes unix_read_interruptible()
484     // to return -1 with errno == EINTR if the window size changes.
485 #else
486     // Unblock SIGWINCH for this thread, so our read(2) below will be
487     // interrupted if the window size changes.
488     sigset_t mask;
489     sigemptyset(&mask);
490     sigaddset(&mask, SIGWINCH);
491     pthread_sigmask(SIG_UNBLOCK, &mask, nullptr);
492 #endif
493 
494     // Set up the initial window size.
495     send_window_size_change(args->stdin_fd, args->protocol);
496 
497     char raw_buffer[BUFSIZ];
498     char* buffer_ptr = raw_buffer;
499     size_t buffer_size = sizeof(raw_buffer);
500     if (args->protocol != nullptr) {
501         buffer_ptr = args->protocol->data();
502         buffer_size = args->protocol->data_capacity();
503     }
504 
505     // If we need to parse escape sequences, make life easy.
506     if (args->raw_stdin && args->escape_char != '\0') {
507         buffer_size = 1;
508     }
509 
510     enum EscapeState { kMidFlow, kStartOfLine, kInEscape };
511     EscapeState state = kStartOfLine;
512 
513     while (true) {
514         // Use unix_read_interruptible() rather than adb_read() for stdin.
515         D("stdin_read_thread_loop(): pre unix_read_interruptible(fdi=%d,...)", args->stdin_fd);
516         int r = unix_read_interruptible(args->stdin_fd, buffer_ptr,
517                                         buffer_size);
518         if (r == -1 && errno == EINTR) {
519             send_window_size_change(args->stdin_fd, args->protocol);
520             continue;
521         }
522         D("stdin_read_thread_loop(): post unix_read_interruptible(fdi=%d,...)", args->stdin_fd);
523         if (r <= 0) {
524             // Only devices using the shell protocol know to close subprocess
525             // stdin. For older devices we want to just leave the connection
526             // open, otherwise an unpredictable amount of return data could
527             // be lost due to the FD closing before all data has been received.
528             if (args->protocol) {
529                 args->protocol->Write(ShellProtocol::kIdCloseStdin, 0);
530             }
531             break;
532         }
533         // If we made stdin raw, check input for escape sequences. In
534         // this situation signals like Ctrl+C are sent remotely rather than
535         // interpreted locally so this provides an emergency out if the remote
536         // process starts ignoring the signal. SSH also does this, see the
537         // "escape characters" section on the ssh man page for more info.
538         if (args->raw_stdin && args->escape_char != '\0') {
539             char ch = buffer_ptr[0];
540             if (ch == args->escape_char) {
541                 if (state == kStartOfLine) {
542                     state = kInEscape;
543                     // Swallow the escape character.
544                     continue;
545                 } else {
546                     state = kMidFlow;
547                 }
548             } else {
549                 if (state == kInEscape) {
550                     if (ch == '.') {
551                         fprintf(stderr,"\r\n[ disconnected ]\r\n");
552                         stdin_raw_restore();
553                         exit(0);
554                     } else {
555                         // We swallowed an escape character that wasn't part of
556                         // a valid escape sequence; time to cough it up.
557                         buffer_ptr[0] = args->escape_char;
558                         buffer_ptr[1] = ch;
559                         ++r;
560                     }
561                 }
562                 state = (ch == '\n' || ch == '\r') ? kStartOfLine : kMidFlow;
563             }
564         }
565         if (args->protocol) {
566             if (!args->protocol->Write(ShellProtocol::kIdStdin, r)) {
567                 break;
568             }
569         } else {
570             if (!WriteFdExactly(args->write_fd, buffer_ptr, r)) {
571                 break;
572             }
573         }
574     }
575 }
576 
577 // Returns a shell service string with the indicated arguments and command.
ShellServiceString(bool use_shell_protocol,const std::string & type_arg,const std::string & command)578 static std::string ShellServiceString(bool use_shell_protocol,
579                                       const std::string& type_arg,
580                                       const std::string& command) {
581     std::vector<std::string> args;
582     if (use_shell_protocol) {
583         args.push_back(kShellServiceArgShellProtocol);
584 
585         const char* terminal_type = getenv("TERM");
586         if (terminal_type != nullptr) {
587             args.push_back(std::string("TERM=") + terminal_type);
588         }
589     }
590     if (!type_arg.empty()) {
591         args.push_back(type_arg);
592     }
593 
594     // Shell service string can look like: shell[,arg1,arg2,...]:[command].
595     return android::base::StringPrintf("shell%s%s:%s",
596                                        args.empty() ? "" : ",",
597                                        android::base::Join(args, ',').c_str(),
598                                        command.c_str());
599 }
600 
601 // Connects to a shell on the device and read/writes data.
602 //
603 // Note: currently this function doesn't properly clean up resources; the
604 // FD connected to the adb server is never closed and the stdin read thread
605 // may never exit.
606 //
607 // On success returns the remote exit code if |use_shell_protocol| is true,
608 // 0 otherwise. On failure returns 1.
RemoteShell(bool use_shell_protocol,const std::string & type_arg,char escape_char,bool empty_command,const std::string & service_string)609 static int RemoteShell(bool use_shell_protocol, const std::string& type_arg, char escape_char,
610                        bool empty_command, const std::string& service_string) {
611     // Old devices can't handle a service string that's longer than MAX_PAYLOAD_V1.
612     // Use |use_shell_protocol| to determine whether to allow a command longer than that.
613     if (service_string.size() > MAX_PAYLOAD_V1 && !use_shell_protocol) {
614         fprintf(stderr, "error: shell command too long\n");
615         return 1;
616     }
617 
618     // Make local stdin raw if the device allocates a PTY, which happens if:
619     //   1. We are explicitly asking for a PTY shell, or
620     //   2. We don't specify shell type and are starting an interactive session.
621     bool raw_stdin = (type_arg == kShellServiceArgPty || (type_arg.empty() && empty_command));
622 
623     std::string error;
624     int fd = adb_connect(service_string, &error);
625     if (fd < 0) {
626         fprintf(stderr,"error: %s\n", error.c_str());
627         return 1;
628     }
629 
630     StdinReadArgs* args = new StdinReadArgs;
631     if (!args) {
632         LOG(ERROR) << "couldn't allocate StdinReadArgs object";
633         return 1;
634     }
635     args->stdin_fd = STDIN_FILENO;
636     args->write_fd = fd;
637     args->raw_stdin = raw_stdin;
638     args->escape_char = escape_char;
639     if (use_shell_protocol) {
640         args->protocol = std::make_unique<ShellProtocol>(args->write_fd);
641     }
642 
643     if (raw_stdin) stdin_raw_init();
644 
645 #if !defined(_WIN32)
646     // Ensure our process is notified if the local window size changes.
647     // We use sigaction(2) to ensure that the SA_RESTART flag is not set,
648     // because the whole reason we're sending signals is to unblock the read(2)!
649     // That also means we don't need to do anything in the signal handler:
650     // the side effect of delivering the signal is all we need.
651     struct sigaction sa;
652     memset(&sa, 0, sizeof(sa));
653     sa.sa_handler = [](int) {};
654     sa.sa_flags = 0;
655     sigaction(SIGWINCH, &sa, nullptr);
656 
657     // Now block SIGWINCH in this thread (the main thread) and all threads spawned
658     // from it. The stdin read thread will unblock this signal to ensure that it's
659     // the thread that receives the signal.
660     sigset_t mask;
661     sigemptyset(&mask);
662     sigaddset(&mask, SIGWINCH);
663     pthread_sigmask(SIG_BLOCK, &mask, nullptr);
664 #endif
665 
666     // TODO: combine read_and_dump with stdin_read_thread to make life simpler?
667     std::thread(stdin_read_thread_loop, args).detach();
668     int exit_code = read_and_dump(fd, use_shell_protocol);
669 
670     // TODO: properly exit stdin_read_thread_loop and close |fd|.
671 
672     // TODO: we should probably install signal handlers for this.
673     // TODO: can we use atexit? even on Windows?
674     if (raw_stdin) stdin_raw_restore();
675 
676     return exit_code;
677 }
678 
adb_shell(int argc,const char ** argv)679 static int adb_shell(int argc, const char** argv) {
680     std::string error;
681     auto&& features = adb_get_feature_set(&error);
682     if (!features) {
683         error_exit("%s", error.c_str());
684     }
685 
686     enum PtyAllocationMode { kPtyAuto, kPtyNo, kPtyYes, kPtyDefinitely };
687 
688     // Defaults.
689     char escape_char = '~';                                                 // -e
690     bool use_shell_protocol = CanUseFeature(*features, kFeatureShell2);     // -x
691     PtyAllocationMode tty = use_shell_protocol ? kPtyAuto : kPtyDefinitely; // -t/-T
692 
693     // Parse shell-specific command-line options.
694     argv[0] = "adb shell"; // So getopt(3) error messages start "adb shell".
695 #ifdef _WIN32
696     // fixes "adb shell -l" crash on Windows, b/37284906
697     __argv = const_cast<char**>(argv);
698 #endif
699     optind = 1; // argv[0] is always "shell", so set `optind` appropriately.
700     int opt;
701     while ((opt = getopt(argc, const_cast<char**>(argv), "+e:ntTx")) != -1) {
702         switch (opt) {
703             case 'e':
704                 if (!(strlen(optarg) == 1 || strcmp(optarg, "none") == 0)) {
705                     error_exit("-e requires a single-character argument or 'none'");
706                 }
707                 escape_char = (strcmp(optarg, "none") == 0) ? 0 : optarg[0];
708                 break;
709             case 'n':
710                 close_stdin();
711                 break;
712             case 'x':
713                 // This option basically asks for historical behavior, so set options that
714                 // correspond to the historical defaults. This is slightly weird in that -Tx
715                 // is fine (because we'll undo the -T) but -xT isn't, but that does seem to
716                 // be our least worst choice...
717                 use_shell_protocol = false;
718                 tty = kPtyDefinitely;
719                 escape_char = '~';
720                 break;
721             case 't':
722                 // Like ssh, -t arguments are cumulative so that multiple -t's
723                 // are needed to force a PTY.
724                 tty = (tty >= kPtyYes) ? kPtyDefinitely : kPtyYes;
725                 break;
726             case 'T':
727                 tty = kPtyNo;
728                 break;
729             default:
730                 // getopt(3) already printed an error message for us.
731                 return 1;
732         }
733     }
734 
735     bool is_interactive = (optind == argc);
736 
737     std::string shell_type_arg = kShellServiceArgPty;
738     if (tty == kPtyNo) {
739         shell_type_arg = kShellServiceArgRaw;
740     } else if (tty == kPtyAuto) {
741         // If stdin isn't a TTY, default to a raw shell; this lets
742         // things like `adb shell < my_script.sh` work as expected.
743         // Non-interactive shells should also not have a pty.
744         if (!unix_isatty(STDIN_FILENO) || !is_interactive) {
745             shell_type_arg = kShellServiceArgRaw;
746         }
747     } else if (tty == kPtyYes) {
748         // A single -t arg isn't enough to override implicit -T.
749         if (!unix_isatty(STDIN_FILENO)) {
750             fprintf(stderr,
751                     "Remote PTY will not be allocated because stdin is not a terminal.\n"
752                     "Use multiple -t options to force remote PTY allocation.\n");
753             shell_type_arg = kShellServiceArgRaw;
754         }
755     }
756 
757     D("shell -e 0x%x t=%d use_shell_protocol=%s shell_type_arg=%s\n",
758       escape_char, tty,
759       use_shell_protocol ? "true" : "false",
760       (shell_type_arg == kShellServiceArgPty) ? "pty" : "raw");
761 
762     // Raw mode is only supported when talking to a new device *and* using the shell protocol.
763     if (!use_shell_protocol) {
764         if (shell_type_arg != kShellServiceArgPty) {
765             fprintf(stderr, "error: %s only supports allocating a pty\n",
766                     !CanUseFeature(*features, kFeatureShell2) ? "device" : "-x");
767             return 1;
768         } else {
769             // If we're not using the shell protocol, the type argument must be empty.
770             shell_type_arg = "";
771         }
772     }
773 
774     std::string command;
775     if (optind < argc) {
776         // We don't escape here, just like ssh(1). http://b/20564385.
777         command = android::base::Join(std::vector<const char*>(argv + optind, argv + argc), ' ');
778     }
779 
780     std::string service_string = ShellServiceString(use_shell_protocol, shell_type_arg, command);
781     return RemoteShell(use_shell_protocol, shell_type_arg, escape_char, command.empty(),
782                        service_string);
783 }
784 
adb_abb(int argc,const char ** argv)785 static int adb_abb(int argc, const char** argv) {
786     std::string error;
787     auto&& features = adb_get_feature_set(&error);
788     if (!features) {
789         error_exit("%s", error.c_str());
790         return 1;
791     }
792     if (!CanUseFeature(*features, kFeatureAbb)) {
793         error_exit("abb is not supported by the device");
794     }
795 
796     optind = 1;  // argv[0] is always "abb", so set `optind` appropriately.
797 
798     // Defaults.
799     constexpr char escape_char = '~';  // -e
800     constexpr bool use_shell_protocol = true;
801     constexpr auto shell_type_arg = kShellServiceArgRaw;
802     constexpr bool empty_command = false;
803 
804     std::vector<const char*> args(argv + optind, argv + argc);
805     std::string service_string = "abb:" + android::base::Join(args, ABB_ARG_DELIMETER);
806 
807     D("abb -e 0x%x [%*.s]\n", escape_char, static_cast<int>(service_string.size()),
808       service_string.data());
809 
810     return RemoteShell(use_shell_protocol, shell_type_arg, escape_char, empty_command,
811                        service_string);
812 }
813 
adb_shell_noinput(int argc,const char ** argv)814 static int adb_shell_noinput(int argc, const char** argv) {
815 #if !defined(_WIN32)
816     unique_fd fd(adb_open("/dev/null", O_RDONLY));
817     CHECK_NE(STDIN_FILENO, fd.get());
818     dup2(fd.get(), STDIN_FILENO);
819 #endif
820     return adb_shell(argc, argv);
821 }
822 
adb_sideload_legacy(const char * filename,int in_fd,int size)823 static int adb_sideload_legacy(const char* filename, int in_fd, int size) {
824     std::string error;
825     unique_fd out_fd(adb_connect(android::base::StringPrintf("sideload:%d", size), &error));
826     if (out_fd < 0) {
827         fprintf(stderr, "adb: pre-KitKat sideload connection failed: %s\n", error.c_str());
828         return -1;
829     }
830 
831     int opt = CHUNK_SIZE;
832     opt = adb_setsockopt(out_fd, SOL_SOCKET, SO_SNDBUF, &opt, sizeof(opt));
833 
834     char buf[CHUNK_SIZE];
835     int total = size;
836     while (size > 0) {
837         unsigned xfer = (size > CHUNK_SIZE) ? CHUNK_SIZE : size;
838         if (!ReadFdExactly(in_fd, buf, xfer)) {
839             fprintf(stderr, "adb: failed to read data from %s: %s\n", filename, strerror(errno));
840             return -1;
841         }
842         if (!WriteFdExactly(out_fd, buf, xfer)) {
843             std::string error;
844             adb_status(out_fd, &error);
845             fprintf(stderr, "adb: failed to write data: %s\n", error.c_str());
846             return -1;
847         }
848         size -= xfer;
849         printf("sending: '%s' %4d%%    \r", filename, (int)(100LL - ((100LL * size) / (total))));
850         fflush(stdout);
851     }
852     printf("\n");
853 
854     if (!adb_status(out_fd, &error)) {
855         fprintf(stderr, "adb: error response: %s\n", error.c_str());
856         return -1;
857     }
858 
859     return 0;
860 }
861 
862 #define SIDELOAD_HOST_BLOCK_SIZE (CHUNK_SIZE)
863 
864 // Connects to the sideload / rescue service on the device (served by minadbd) and sends over the
865 // data in an OTA package.
866 //
867 // It uses a simple protocol as follows.
868 //
869 // - The connect message includes the total number of bytes in the file and a block size chosen by
870 //   us.
871 //
872 // - The other side sends the desired block number as eight decimal digits (e.g. "00000023" for
873 //   block 23). Blocks are numbered from zero.
874 //
875 // - We send back the data of the requested block. The last block is likely to be partial; when the
876 //   last block is requested we only send the part of the block that exists, it's not padded up to
877 //   the block size.
878 //
879 // - When the other side sends "DONEDONE" or "FAILFAIL" instead of a block number, we have done all
880 //   the data transfer.
881 //
adb_sideload_install(const char * filename,bool rescue_mode)882 static int adb_sideload_install(const char* filename, bool rescue_mode) {
883     // TODO: use a LinePrinter instead...
884     struct stat sb;
885     if (stat(filename, &sb) == -1) {
886         fprintf(stderr, "adb: failed to stat file %s: %s\n", filename, strerror(errno));
887         return -1;
888     }
889     unique_fd package_fd(adb_open(filename, O_RDONLY));
890     if (package_fd == -1) {
891         fprintf(stderr, "adb: failed to open file %s: %s\n", filename, strerror(errno));
892         return -1;
893     }
894 
895     std::string service = android::base::StringPrintf(
896             "%s:%" PRId64 ":%d", rescue_mode ? "rescue-install" : "sideload-host",
897             static_cast<int64_t>(sb.st_size), SIDELOAD_HOST_BLOCK_SIZE);
898     std::string error;
899     unique_fd device_fd(adb_connect(service, &error));
900     if (device_fd < 0) {
901         fprintf(stderr, "adb: sideload connection failed: %s\n", error.c_str());
902 
903         if (rescue_mode) {
904             return -1;
905         }
906 
907         // If this is a small enough package, maybe this is an older device that doesn't
908         // support sideload-host. Try falling back to the older (<= K) sideload method.
909         if (sb.st_size > INT_MAX) {
910             return -1;
911         }
912         fprintf(stderr, "adb: trying pre-KitKat sideload method...\n");
913         return adb_sideload_legacy(filename, package_fd.get(), static_cast<int>(sb.st_size));
914     }
915 
916     int opt = SIDELOAD_HOST_BLOCK_SIZE;
917     adb_setsockopt(device_fd, SOL_SOCKET, SO_SNDBUF, &opt, sizeof(opt));
918 
919     char buf[SIDELOAD_HOST_BLOCK_SIZE];
920 
921     int64_t xfer = 0;
922     int last_percent = -1;
923     while (true) {
924         if (!ReadFdExactly(device_fd, buf, 8)) {
925             fprintf(stderr, "adb: failed to read command: %s\n", strerror(errno));
926             return -1;
927         }
928         buf[8] = '\0';
929 
930         if (strcmp(kMinadbdServicesExitSuccess, buf) == 0 ||
931             strcmp(kMinadbdServicesExitFailure, buf) == 0) {
932             printf("\rTotal xfer: %.2fx%*s\n",
933                    static_cast<double>(xfer) / (sb.st_size ? sb.st_size : 1),
934                    static_cast<int>(strlen(filename) + 10), "");
935             if (strcmp(kMinadbdServicesExitFailure, buf) == 0) {
936                 return 1;
937             }
938             return 0;
939         }
940 
941         int64_t block = strtoll(buf, nullptr, 10);
942         int64_t offset = block * SIDELOAD_HOST_BLOCK_SIZE;
943         if (offset >= static_cast<int64_t>(sb.st_size)) {
944             fprintf(stderr,
945                     "adb: failed to read block %" PRId64 " at offset %" PRId64 ", past end %" PRId64
946                     "\n",
947                     block, offset, static_cast<int64_t>(sb.st_size));
948             return -1;
949         }
950 
951         size_t to_write = SIDELOAD_HOST_BLOCK_SIZE;
952         if ((offset + SIDELOAD_HOST_BLOCK_SIZE) > static_cast<int64_t>(sb.st_size)) {
953             to_write = sb.st_size - offset;
954         }
955 
956         if (adb_lseek(package_fd, offset, SEEK_SET) != offset) {
957             fprintf(stderr, "adb: failed to seek to package block: %s\n", strerror(errno));
958             return -1;
959         }
960         if (!ReadFdExactly(package_fd, buf, to_write)) {
961             fprintf(stderr, "adb: failed to read package block: %s\n", strerror(errno));
962             return -1;
963         }
964 
965         if (!WriteFdExactly(device_fd, buf, to_write)) {
966             adb_status(device_fd, &error);
967             fprintf(stderr, "adb: failed to write data '%s' *\n", error.c_str());
968             return -1;
969         }
970         xfer += to_write;
971 
972         // For normal OTA packages, we expect to transfer every byte
973         // twice, plus a bit of overhead (one read during
974         // verification, one read of each byte for installation, plus
975         // extra access to things like the zip central directory).
976         // This estimate of the completion becomes 100% when we've
977         // transferred ~2.13 (=100/47) times the package size.
978         int percent = static_cast<int>(xfer * 47LL / (sb.st_size ? sb.st_size : 1));
979         if (percent != last_percent) {
980             printf("\rserving: '%s'  (~%d%%)    ", filename, percent);
981             fflush(stdout);
982             last_percent = percent;
983         }
984     }
985 }
986 
adb_wipe_devices()987 static int adb_wipe_devices() {
988     auto wipe_devices_message_size = strlen(kMinadbdServicesExitSuccess);
989     std::string error;
990     unique_fd fd(adb_connect(
991             android::base::StringPrintf("rescue-wipe:userdata:%zu", wipe_devices_message_size),
992             &error));
993     if (fd < 0) {
994         fprintf(stderr, "adb: wipe device connection failed: %s\n", error.c_str());
995         return 1;
996     }
997 
998     std::string message(wipe_devices_message_size, '\0');
999     if (!ReadFdExactly(fd, message.data(), wipe_devices_message_size)) {
1000         fprintf(stderr, "adb: failed to read wipe result: %s\n", strerror(errno));
1001         return 1;
1002     }
1003 
1004     if (message == kMinadbdServicesExitSuccess) {
1005         return 0;
1006     }
1007 
1008     if (message != kMinadbdServicesExitFailure) {
1009         fprintf(stderr, "adb: got unexpected message from rescue wipe %s\n", message.c_str());
1010     }
1011     return 1;
1012 }
1013 
1014 /**
1015  * Run ppp in "notty" mode against a resource listed as the first parameter
1016  * eg:
1017  *
1018  * ppp dev:/dev/omap_csmi_tty0 <ppp options>
1019  *
1020  */
ppp(int argc,const char ** argv)1021 static int ppp(int argc, const char** argv) {
1022 #if defined(_WIN32)
1023     error_exit("adb %s not implemented on Win32", argv[0]);
1024     __builtin_unreachable();
1025 #else
1026     if (argc < 2) error_exit("usage: adb %s <adb service name> [ppp opts]", argv[0]);
1027 
1028     const char* adb_service_name = argv[1];
1029     std::string error_message;
1030     int fd = adb_connect(adb_service_name, &error_message);
1031     if (fd < 0) {
1032         error_exit("could not open adb service %s: %s", adb_service_name, error_message.c_str());
1033     }
1034 
1035     pid_t pid = fork();
1036     if (pid == -1) {
1037         perror_exit("fork failed");
1038     }
1039 
1040     if (pid == 0) {
1041         // child side
1042         int i;
1043 
1044         // copy args
1045         const char** ppp_args = (const char**)alloca(sizeof(char*) * argc + 1);
1046         ppp_args[0] = "pppd";
1047         for (i = 2 ; i < argc ; i++) {
1048             //argv[2] and beyond become ppp_args[1] and beyond
1049             ppp_args[i - 1] = argv[i];
1050         }
1051         ppp_args[i-1] = nullptr;
1052 
1053         dup2(fd, STDIN_FILENO);
1054         dup2(fd, STDOUT_FILENO);
1055         adb_close(STDERR_FILENO);
1056         adb_close(fd);
1057 
1058         execvp("pppd", (char* const*)ppp_args);
1059         perror_exit("exec pppd failed");
1060     }
1061 
1062     // parent side
1063     adb_close(fd);
1064     return 0;
1065 #endif /* !defined(_WIN32) */
1066 }
1067 
wait_for_device(const char * service,std::optional<std::chrono::milliseconds> timeout=std::nullopt)1068 static bool wait_for_device(const char* service,
1069                             std::optional<std::chrono::milliseconds> timeout = std::nullopt) {
1070     std::vector<std::string> components = android::base::Split(service, "-");
1071     if (components.size() < 3) {
1072         fprintf(stderr, "adb: couldn't parse 'wait-for' command: %s\n", service);
1073         return false;
1074     }
1075 
1076     // If the first thing after "wait-for-" wasn't a TRANSPORT, insert whatever
1077     // the current transport implies.
1078     if (components[2] != "usb" && components[2] != "local" && components[2] != "any") {
1079         TransportType t;
1080         adb_get_transport(&t, nullptr, nullptr);
1081         auto it = components.begin() + 2;
1082         if (t == kTransportUsb) {
1083             components.insert(it, "usb");
1084         } else if (t == kTransportLocal) {
1085             components.insert(it, "local");
1086         } else {
1087             components.insert(it, "any");
1088         }
1089     }
1090 
1091     // Stitch it back together and send it over...
1092     std::string cmd = format_host_command(android::base::Join(components, "-").c_str());
1093     if (timeout) {
1094         std::thread([timeout]() {
1095             std::this_thread::sleep_for(*timeout);
1096             fprintf(stderr, "timeout expired while waiting for device\n");
1097             _exit(1);
1098         }).detach();
1099     }
1100     return adb_command(cmd);
1101 }
1102 
adb_root(const char * command)1103 static bool adb_root(const char* command) {
1104     std::string error;
1105 
1106     TransportId transport_id;
1107     unique_fd fd(adb_connect(&transport_id, android::base::StringPrintf("%s:", command), &error));
1108     if (fd < 0) {
1109         fprintf(stderr, "adb: unable to connect for %s: %s\n", command, error.c_str());
1110         return false;
1111     }
1112 
1113     // Figure out whether we actually did anything.
1114     char buf[256];
1115     char* cur = buf;
1116     ssize_t bytes_left = sizeof(buf);
1117     while (bytes_left > 0) {
1118         ssize_t bytes_read = adb_read(fd, cur, bytes_left);
1119         if (bytes_read == 0) {
1120             break;
1121         } else if (bytes_read < 0) {
1122             fprintf(stderr, "adb: error while reading for %s: %s\n", command, strerror(errno));
1123             return false;
1124         }
1125         cur += bytes_read;
1126         bytes_left -= bytes_read;
1127     }
1128 
1129     if (bytes_left == 0) {
1130         fprintf(stderr, "adb: unexpected output length for %s\n", command);
1131         return false;
1132     }
1133 
1134     fwrite(buf, 1, sizeof(buf) - bytes_left, stdout);
1135     fflush(stdout);
1136     if (cur != buf && strstr(buf, "restarting") == nullptr) {
1137         return true;
1138     }
1139 
1140     // Wait for the device to go away.
1141     TransportType previous_type;
1142     const char* previous_serial;
1143     TransportId previous_id;
1144     adb_get_transport(&previous_type, &previous_serial, &previous_id);
1145 
1146     adb_set_transport(kTransportAny, nullptr, transport_id);
1147     wait_for_device("wait-for-disconnect");
1148 
1149     // Wait for the device to come back.
1150     // If we were using a specific transport ID, there's nothing we can wait for.
1151     if (previous_id == 0) {
1152         adb_set_transport(previous_type, previous_serial, 0);
1153         wait_for_device("wait-for-device", 12000ms);
1154     }
1155 
1156     return true;
1157 }
1158 
send_shell_command(const std::string & command,bool disable_shell_protocol,StandardStreamsCallbackInterface * callback)1159 int send_shell_command(const std::string& command, bool disable_shell_protocol,
1160                        StandardStreamsCallbackInterface* callback) {
1161     unique_fd fd;
1162     bool use_shell_protocol = false;
1163 
1164     while (true) {
1165         bool attempt_connection = true;
1166 
1167         // Use shell protocol if it's supported and the caller doesn't explicitly
1168         // disable it.
1169         if (!disable_shell_protocol) {
1170             auto&& features = adb_get_feature_set(nullptr);
1171             if (features) {
1172                 use_shell_protocol = CanUseFeature(*features, kFeatureShell2);
1173             } else {
1174                 // Device was unreachable.
1175                 attempt_connection = false;
1176             }
1177         }
1178 
1179         if (attempt_connection) {
1180             std::string error;
1181             std::string service_string = ShellServiceString(use_shell_protocol, "", command);
1182 
1183             fd.reset(adb_connect(service_string, &error));
1184             if (fd >= 0) {
1185                 break;
1186             }
1187         }
1188 
1189         fprintf(stderr, "- waiting for device -\n");
1190         if (!wait_for_device("wait-for-device")) {
1191             return 1;
1192         }
1193     }
1194 
1195     return read_and_dump(fd.get(), use_shell_protocol, callback);
1196 }
1197 
logcat(int argc,const char ** argv)1198 static int logcat(int argc, const char** argv) {
1199     char* log_tags = getenv("ANDROID_LOG_TAGS");
1200     std::string quoted = escape_arg(log_tags == nullptr ? "" : log_tags);
1201 
1202     std::string cmd = "export ANDROID_LOG_TAGS=\"" + quoted + "\"; exec logcat";
1203 
1204     if (!strcmp(argv[0], "longcat")) {
1205         cmd += " -v long";
1206     }
1207 
1208     --argc;
1209     ++argv;
1210     while (argc-- > 0) {
1211         cmd += " " + escape_arg(*argv++);
1212     }
1213 
1214     return send_shell_command(cmd);
1215 }
1216 
write_zeros(int bytes,borrowed_fd fd)1217 static void write_zeros(int bytes, borrowed_fd fd) {
1218     int old_stdin_mode = -1;
1219     int old_stdout_mode = -1;
1220     std::vector<char> buf(bytes);
1221 
1222     D("write_zeros(%d) -> %d", bytes, fd.get());
1223 
1224     stdinout_raw_prologue(-1, fd.get(), old_stdin_mode, old_stdout_mode);
1225 
1226     if (fd == STDOUT_FILENO) {
1227         fwrite(buf.data(), 1, bytes, stdout);
1228         fflush(stdout);
1229     } else {
1230         adb_write(fd, buf.data(), bytes);
1231     }
1232 
1233     stdinout_raw_prologue(-1, fd.get(), old_stdin_mode, old_stdout_mode);
1234 
1235     D("write_zeros() finished");
1236 }
1237 
backup(int argc,const char ** argv)1238 static int backup(int argc, const char** argv) {
1239     fprintf(stdout, "WARNING: adb backup is deprecated and may be removed in a future release\n");
1240 
1241     const char* filename = "backup.ab";
1242 
1243     /* find, extract, and use any -f argument */
1244     for (int i = 1; i < argc; i++) {
1245         if (!strcmp("-f", argv[i])) {
1246             if (i == argc - 1) error_exit("backup -f passed with no filename");
1247             filename = argv[i+1];
1248             for (int j = i+2; j <= argc; ) {
1249                 argv[i++] = argv[j++];
1250             }
1251             argc -= 2;
1252             argv[argc] = nullptr;
1253         }
1254     }
1255 
1256     // Bare "adb backup" or "adb backup -f filename" are not valid invocations ---
1257     // a list of packages is required.
1258     if (argc < 2) error_exit("backup either needs a list of packages or -all/-shared");
1259 
1260     adb_unlink(filename);
1261     unique_fd outFd(adb_creat(filename, 0640));
1262     if (outFd < 0) {
1263         fprintf(stderr, "adb: backup unable to create file '%s': %s\n", filename, strerror(errno));
1264         return EXIT_FAILURE;
1265     }
1266 
1267     std::string cmd = "backup:";
1268     --argc;
1269     ++argv;
1270     while (argc-- > 0) {
1271         cmd += " " + escape_arg(*argv++);
1272     }
1273 
1274     D("backup. filename=%s cmd=%s", filename, cmd.c_str());
1275     std::string error;
1276     unique_fd fd(adb_connect(cmd, &error));
1277     if (fd < 0) {
1278         fprintf(stderr, "adb: unable to connect for backup: %s\n", error.c_str());
1279         return EXIT_FAILURE;
1280     }
1281 
1282     fprintf(stdout, "Now unlock your device and confirm the backup operation...\n");
1283     fflush(stdout);
1284 
1285     copy_to_file(fd.get(), outFd.get());
1286     return EXIT_SUCCESS;
1287 }
1288 
restore(int argc,const char ** argv)1289 static int restore(int argc, const char** argv) {
1290     fprintf(stdout, "WARNING: adb restore is deprecated and may be removed in a future release\n");
1291 
1292     if (argc != 2) error_exit("restore requires an argument");
1293 
1294     const char* filename = argv[1];
1295     unique_fd tarFd(adb_open(filename, O_RDONLY));
1296     if (tarFd < 0) {
1297         fprintf(stderr, "adb: unable to open file %s: %s\n", filename, strerror(errno));
1298         return -1;
1299     }
1300 
1301     std::string error;
1302     unique_fd fd(adb_connect("restore:", &error));
1303     if (fd < 0) {
1304         fprintf(stderr, "adb: unable to connect for restore: %s\n", error.c_str());
1305         return -1;
1306     }
1307 
1308     fprintf(stdout, "Now unlock your device and confirm the restore operation.\n");
1309     fflush(stdout);
1310 
1311     copy_to_file(tarFd.get(), fd.get());
1312 
1313     // Provide an in-band EOD marker in case the archive file is malformed
1314     write_zeros(512 * 2, fd);
1315 
1316     // Wait until the other side finishes, or it'll get sent SIGHUP.
1317     copy_to_file(fd.get(), STDOUT_FILENO);
1318     return 0;
1319 }
1320 
parse_compression_type(const std::string & str,bool allow_numbers)1321 static CompressionType parse_compression_type(const std::string& str, bool allow_numbers) {
1322     if (allow_numbers) {
1323         if (str == "0") {
1324             return CompressionType::None;
1325         } else if (str == "1") {
1326             return CompressionType::Any;
1327         }
1328     }
1329 
1330     if (str == "any") {
1331         return CompressionType::Any;
1332     } else if (str == "none") {
1333         return CompressionType::None;
1334     }
1335 
1336     if (str == "brotli") {
1337         return CompressionType::Brotli;
1338     } else if (str == "lz4") {
1339         return CompressionType::LZ4;
1340     } else if (str == "zstd") {
1341         return CompressionType::Zstd;
1342     }
1343 
1344     error_exit("unexpected compression type %s", str.c_str());
1345 }
1346 
parse_push_pull_args(const char ** arg,int narg,std::vector<const char * > * srcs,const char ** dst,bool * copy_attrs,bool * sync,CompressionType * compression,bool * dry_run)1347 static void parse_push_pull_args(const char** arg, int narg, std::vector<const char*>* srcs,
1348                                  const char** dst, bool* copy_attrs, bool* sync,
1349                                  CompressionType* compression, bool* dry_run) {
1350     *copy_attrs = false;
1351     if (const char* adb_compression = getenv("ADB_COMPRESSION")) {
1352         *compression = parse_compression_type(adb_compression, true);
1353     }
1354 
1355     srcs->clear();
1356     bool ignore_flags = false;
1357     while (narg > 0) {
1358         if (ignore_flags || *arg[0] != '-') {
1359             srcs->push_back(*arg);
1360         } else {
1361             if (!strcmp(*arg, "-p")) {
1362                 // Silently ignore for backwards compatibility.
1363             } else if (!strcmp(*arg, "-a")) {
1364                 *copy_attrs = true;
1365             } else if (!strcmp(*arg, "-z")) {
1366                 if (narg < 2) {
1367                     error_exit("-z requires an argument");
1368                 }
1369                 *compression = parse_compression_type(*++arg, false);
1370                 --narg;
1371             } else if (!strcmp(*arg, "-Z")) {
1372                 *compression = CompressionType::None;
1373             } else if (dry_run && !strcmp(*arg, "-n")) {
1374                 *dry_run = true;
1375             } else if (!strcmp(*arg, "--sync")) {
1376                 if (sync != nullptr) {
1377                     *sync = true;
1378                 }
1379             } else if (!strcmp(*arg, "--")) {
1380                 ignore_flags = true;
1381             } else {
1382                 error_exit("unrecognized option '%s'", *arg);
1383             }
1384         }
1385         ++arg;
1386         --narg;
1387     }
1388 
1389     if (srcs->size() > 1) {
1390         *dst = srcs->back();
1391         srcs->pop_back();
1392     }
1393 }
1394 
adb_connect_command(const std::string & command,TransportId * transport,StandardStreamsCallbackInterface * callback)1395 static int adb_connect_command(const std::string& command, TransportId* transport,
1396                                StandardStreamsCallbackInterface* callback) {
1397     std::string error;
1398     unique_fd fd(adb_connect(transport, command, &error));
1399     if (fd < 0) {
1400         fprintf(stderr, "error: %s\n", error.c_str());
1401         return 1;
1402     }
1403     read_and_dump(fd, false, callback);
1404     return 0;
1405 }
1406 
adb_connect_command(const std::string & command,TransportId * transport=nullptr)1407 static int adb_connect_command(const std::string& command, TransportId* transport = nullptr) {
1408     return adb_connect_command(command, transport, &DEFAULT_STANDARD_STREAMS_CALLBACK);
1409 }
1410 
1411 // A class that prints out human readable form of the protobuf message for "track-app" service
1412 // (received in binary format).
1413 class TrackAppStreamsCallback : public DefaultStandardStreamsCallback {
1414   public:
TrackAppStreamsCallback()1415     TrackAppStreamsCallback() : DefaultStandardStreamsCallback(nullptr, nullptr) {}
1416 
1417     // Assume the buffer contains at least 4 bytes of valid data.
OnStdout(const char * buffer,int length)1418     void OnStdout(const char* buffer, int length) override {
1419         if (length < 4) return;  // Unexpected length received. Do nothing.
1420 
1421         adb::proto::AppProcesses binary_proto;
1422         // The first 4 bytes are the length of remaining content in hexadecimal format.
1423         binary_proto.ParseFromString(std::string(buffer + 4, length - 4));
1424         char summary[24];  // The following string includes digits and 16 fixed characters.
1425         int written = snprintf(summary, sizeof(summary), "Process count: %d\n",
1426                                binary_proto.process_size());
1427         OnStream(nullptr, stdout, summary, written);
1428 
1429         std::string string_proto;
1430         google::protobuf::TextFormat::PrintToString(binary_proto, &string_proto);
1431         OnStream(nullptr, stdout, string_proto.data(), string_proto.length());
1432     }
1433 
1434   private:
1435     DISALLOW_COPY_AND_ASSIGN(TrackAppStreamsCallback);
1436 };
1437 
adb_connect_command_bidirectional(const std::string & command)1438 static int adb_connect_command_bidirectional(const std::string& command) {
1439     std::string error;
1440     unique_fd fd(adb_connect(command, &error));
1441     if (fd < 0) {
1442         fprintf(stderr, "error: %s\n", error.c_str());
1443         return 1;
1444     }
1445 
1446     static constexpr auto forward = [](int src, int sink, bool exit_on_end) {
1447         char buf[4096];
1448         while (true) {
1449             int rc = adb_read(src, buf, sizeof(buf));
1450             if (rc == 0) {
1451                 if (exit_on_end) {
1452                     exit(0);
1453                 } else {
1454                     adb_shutdown(sink, SHUT_WR);
1455                 }
1456                 return;
1457             } else if (rc < 0) {
1458                 perror_exit("read failed");
1459             }
1460             if (!WriteFdExactly(sink, buf, rc)) {
1461                 perror_exit("write failed");
1462             }
1463         }
1464     };
1465 
1466     std::thread read(forward, fd.get(), STDOUT_FILENO, true);
1467     std::thread write(forward, STDIN_FILENO, fd.get(), false);
1468     read.join();
1469     write.join();
1470     return 0;
1471 }
1472 
adb_query_command(const std::string & command)1473 static int adb_query_command(const std::string& command) {
1474     std::string result;
1475     std::string error;
1476     if (!adb_query(command, &result, &error)) {
1477         fprintf(stderr, "error: %s\n", error.c_str());
1478         return 1;
1479     }
1480     printf("%s\n", result.c_str());
1481     return 0;
1482 }
1483 
1484 // Disallow stdin, stdout, and stderr.
_is_valid_ack_reply_fd(const int ack_reply_fd)1485 static bool _is_valid_ack_reply_fd(const int ack_reply_fd) {
1486 #ifdef _WIN32
1487     const HANDLE ack_reply_handle = cast_int_to_handle(ack_reply_fd);
1488     return (GetStdHandle(STD_INPUT_HANDLE) != ack_reply_handle) &&
1489            (GetStdHandle(STD_OUTPUT_HANDLE) != ack_reply_handle) &&
1490            (GetStdHandle(STD_ERROR_HANDLE) != ack_reply_handle);
1491 #else
1492     return ack_reply_fd > 2;
1493 #endif
1494 }
1495 
_is_valid_os_fd(int fd)1496 static bool _is_valid_os_fd(int fd) {
1497     // Disallow invalid FDs and stdin/out/err as well.
1498     if (fd < 3) {
1499         return false;
1500     }
1501 #ifdef _WIN32
1502     auto handle = (HANDLE)fd;
1503     DWORD info = 0;
1504     if (GetHandleInformation(handle, &info) == 0) {
1505         return false;
1506     }
1507 #else
1508     int flags = fcntl(fd, F_GETFD);
1509     if (flags == -1) {
1510         return false;
1511     }
1512 #endif
1513     return true;
1514 }
1515 
adb_commandline(int argc,const char ** argv)1516 int adb_commandline(int argc, const char** argv) {
1517     bool no_daemon = false;
1518     bool is_daemon = false;
1519     bool is_server = false;
1520     int r;
1521     TransportType transport_type = kTransportAny;
1522     int ack_reply_fd = -1;
1523 
1524 #if !defined(_WIN32)
1525     // We'd rather have EPIPE than SIGPIPE.
1526     signal(SIGPIPE, SIG_IGN);
1527 #endif
1528 
1529     const char* server_host_str = nullptr;
1530     const char* server_port_str = nullptr;
1531     const char* server_socket_str = nullptr;
1532 
1533     // We need to check for -d and -e before we look at $ANDROID_SERIAL.
1534     const char* serial = nullptr;
1535     TransportId transport_id = 0;
1536 
1537     while (argc > 0) {
1538         if (!strcmp(argv[0], "server")) {
1539             is_server = true;
1540         } else if (!strcmp(argv[0], "nodaemon")) {
1541             no_daemon = true;
1542         } else if (!strcmp(argv[0], "fork-server")) {
1543             /* this is a special flag used only when the ADB client launches the ADB Server */
1544             is_daemon = true;
1545         } else if (!strcmp(argv[0], "--reply-fd")) {
1546             if (argc < 2) error_exit("--reply-fd requires an argument");
1547             const char* reply_fd_str = argv[1];
1548             argc--;
1549             argv++;
1550             ack_reply_fd = strtol(reply_fd_str, nullptr, 10);
1551             if (!_is_valid_ack_reply_fd(ack_reply_fd)) {
1552                 fprintf(stderr, "adb: invalid reply fd \"%s\"\n", reply_fd_str);
1553                 return 1;
1554             }
1555         } else if (!strncmp(argv[0], "-s", 2)) {
1556             if (isdigit(argv[0][2])) {
1557                 serial = argv[0] + 2;
1558             } else {
1559                 if (argc < 2 || argv[0][2] != '\0') error_exit("-s requires an argument");
1560                 serial = argv[1];
1561                 argc--;
1562                 argv++;
1563             }
1564         } else if (!strncmp(argv[0], "-t", 2)) {
1565             const char* id;
1566             if (isdigit(argv[0][2])) {
1567                 id = argv[0] + 2;
1568             } else {
1569                 id = argv[1];
1570                 argc--;
1571                 argv++;
1572             }
1573             transport_id = strtoll(id, const_cast<char**>(&id), 10);
1574             if (*id != '\0') {
1575                 error_exit("invalid transport id");
1576             }
1577         } else if (!strcmp(argv[0], "-d")) {
1578             transport_type = kTransportUsb;
1579         } else if (!strcmp(argv[0], "-e")) {
1580             transport_type = kTransportLocal;
1581         } else if (!strcmp(argv[0], "-a")) {
1582             gListenAll = 1;
1583         } else if (!strncmp(argv[0], "-H", 2)) {
1584             if (argv[0][2] == '\0') {
1585                 if (argc < 2) error_exit("-H requires an argument");
1586                 server_host_str = argv[1];
1587                 argc--;
1588                 argv++;
1589             } else {
1590                 server_host_str = argv[0] + 2;
1591             }
1592         } else if (!strncmp(argv[0], "-P", 2)) {
1593             if (argv[0][2] == '\0') {
1594                 if (argc < 2) error_exit("-P requires an argument");
1595                 server_port_str = argv[1];
1596                 argc--;
1597                 argv++;
1598             } else {
1599                 server_port_str = argv[0] + 2;
1600             }
1601         } else if (!strcmp(argv[0], "-L")) {
1602             if (argc < 2) error_exit("-L requires an argument");
1603             server_socket_str = argv[1];
1604             argc--;
1605             argv++;
1606         } else {
1607             /* out of recognized modifiers and flags */
1608             break;
1609         }
1610         argc--;
1611         argv++;
1612     }
1613 
1614     if ((server_host_str || server_port_str) && server_socket_str) {
1615         error_exit("-L is incompatible with -H or -P");
1616     }
1617 
1618     // If -L, -H, or -P are specified, ignore environment variables.
1619     // Otherwise, prefer ADB_SERVER_SOCKET over ANDROID_ADB_SERVER_ADDRESS/PORT.
1620     if (!server_host_str && !server_port_str && !server_socket_str) {
1621         server_socket_str = getenv("ADB_SERVER_SOCKET");
1622     }
1623 
1624     if (!server_socket_str) {
1625         // tcp:1234 and tcp:localhost:1234 are different with -a, so don't default to localhost
1626         server_host_str = server_host_str ? server_host_str : getenv("ANDROID_ADB_SERVER_ADDRESS");
1627 
1628         int server_port = DEFAULT_ADB_PORT;
1629         server_port_str = server_port_str ? server_port_str : getenv("ANDROID_ADB_SERVER_PORT");
1630         if (server_port_str && strlen(server_port_str) > 0) {
1631             if (!android::base::ParseInt(server_port_str, &server_port, 1, 65535)) {
1632                 error_exit(
1633                         "$ANDROID_ADB_SERVER_PORT must be a positive number less than 65535: "
1634                         "got \"%s\"",
1635                         server_port_str);
1636             }
1637         }
1638 
1639         int rc;
1640         char* temp;
1641         if (server_host_str) {
1642             rc = asprintf(&temp, "tcp:%s:%d", server_host_str, server_port);
1643         } else {
1644             rc = asprintf(&temp, "tcp:%d", server_port);
1645         }
1646         if (rc < 0) {
1647             LOG(FATAL) << "failed to allocate server socket specification";
1648         }
1649         server_socket_str = temp;
1650     }
1651 
1652     adb_set_socket_spec(server_socket_str);
1653 
1654     // If none of -d, -e, or -s were specified, try $ANDROID_SERIAL.
1655     if (transport_type == kTransportAny && serial == nullptr) {
1656         serial = getenv("ANDROID_SERIAL");
1657     }
1658 
1659     adb_set_transport(transport_type, serial, transport_id);
1660 
1661     if (is_server) {
1662         if (no_daemon || is_daemon) {
1663             if (is_daemon && (ack_reply_fd == -1)) {
1664                 fprintf(stderr, "reply fd for adb server to client communication not specified.\n");
1665                 return 1;
1666             }
1667             r = adb_server_main(is_daemon, server_socket_str, ack_reply_fd);
1668         } else {
1669             r = launch_server(server_socket_str);
1670         }
1671         if (r) {
1672             fprintf(stderr,"* could not start server *\n");
1673         }
1674         return r;
1675     }
1676 
1677     if (argc == 0) {
1678         help();
1679         return 1;
1680     }
1681 
1682     /* handle wait-for-* prefix */
1683     if (!strncmp(argv[0], "wait-for-", strlen("wait-for-"))) {
1684         const char* service = argv[0];
1685 
1686         if (!wait_for_device(service)) {
1687             return 1;
1688         }
1689 
1690         // Allow a command to be run after wait-for-device,
1691         // e.g. 'adb wait-for-device shell'.
1692         if (argc == 1) {
1693             return 0;
1694         }
1695 
1696         /* Fall through */
1697         argc--;
1698         argv++;
1699     }
1700 
1701     /* adb_connect() commands */
1702     if (!strcmp(argv[0], "devices")) {
1703         const char *listopt;
1704         if (argc < 2) {
1705             listopt = "";
1706         } else if (argc == 2 && !strcmp(argv[1], "-l")) {
1707             listopt = argv[1];
1708         } else {
1709             error_exit("adb devices [-l]");
1710         }
1711 
1712         std::string query = android::base::StringPrintf("host:%s%s", argv[0], listopt);
1713         std::string error;
1714         if (!adb_check_server_version(&error)) {
1715             error_exit("failed to check server version: %s", error.c_str());
1716         }
1717         printf("List of devices attached\n");
1718         return adb_query_command(query);
1719     } else if (!strcmp(argv[0], "transport-id")) {
1720         TransportId transport_id;
1721         std::string error;
1722         unique_fd fd(adb_connect(&transport_id, "host:features", &error, true));
1723         if (fd == -1) {
1724             error_exit("%s", error.c_str());
1725         }
1726         printf("%" PRIu64 "\n", transport_id);
1727         return 0;
1728     } else if (!strcmp(argv[0], "connect")) {
1729         if (argc != 2) error_exit("usage: adb connect HOST[:PORT]");
1730 
1731         std::string query = android::base::StringPrintf("host:connect:%s", argv[1]);
1732         return adb_query_command(query);
1733     } else if (!strcmp(argv[0], "disconnect")) {
1734         if (argc > 2) error_exit("usage: adb disconnect [HOST[:PORT]]");
1735 
1736         std::string query = android::base::StringPrintf("host:disconnect:%s",
1737                                                         (argc == 2) ? argv[1] : "");
1738         return adb_query_command(query);
1739     } else if (!strcmp(argv[0], "abb")) {
1740         return adb_abb(argc, argv);
1741     } else if (!strcmp(argv[0], "pair")) {
1742         if (argc < 2 || argc > 3) error_exit("usage: adb pair HOST[:PORT] [PAIRING CODE]");
1743 
1744         std::string password;
1745         if (argc == 2) {
1746             printf("Enter pairing code: ");
1747             fflush(stdout);
1748             if (!std::getline(std::cin, password) || password.empty()) {
1749                 error_exit("No pairing code provided");
1750             }
1751         } else {
1752             password = argv[2];
1753         }
1754         std::string query =
1755                 android::base::StringPrintf("host:pair:%s:%s", password.c_str(), argv[1]);
1756 
1757         return adb_query_command(query);
1758     } else if (!strcmp(argv[0], "emu")) {
1759         return adb_send_emulator_command(argc, argv, serial);
1760     } else if (!strcmp(argv[0], "shell")) {
1761         return adb_shell(argc, argv);
1762     } else if (!strcmp(argv[0], "exec-in") || !strcmp(argv[0], "exec-out")) {
1763         int exec_in = !strcmp(argv[0], "exec-in");
1764 
1765         if (argc < 2) error_exit("usage: adb %s command", argv[0]);
1766 
1767         std::string cmd = "exec:";
1768         cmd += argv[1];
1769         argc -= 2;
1770         argv += 2;
1771         while (argc-- > 0) {
1772             cmd += " " + escape_arg(*argv++);
1773         }
1774 
1775         std::string error;
1776         unique_fd fd(adb_connect(cmd, &error));
1777         if (fd < 0) {
1778             fprintf(stderr, "error: %s\n", error.c_str());
1779             return -1;
1780         }
1781 
1782         if (exec_in) {
1783             copy_to_file(STDIN_FILENO, fd.get());
1784         } else {
1785             copy_to_file(fd.get(), STDOUT_FILENO);
1786         }
1787         return 0;
1788     } else if (!strcmp(argv[0], "kill-server")) {
1789         return adb_kill_server() ? 0 : 1;
1790     } else if (!strcmp(argv[0], "sideload")) {
1791         if (argc != 2) error_exit("sideload requires an argument");
1792         if (adb_sideload_install(argv[1], false /* rescue_mode */)) {
1793             return 1;
1794         } else {
1795             return 0;
1796         }
1797     } else if (!strcmp(argv[0], "rescue")) {
1798         // adb rescue getprop
1799         // adb rescue getprop <prop>
1800         // adb rescue install <filename>
1801         // adb rescue wipe userdata
1802         if (argc < 2) error_exit("rescue requires at least one argument");
1803         if (!strcmp(argv[1], "getprop")) {
1804             if (argc == 2) {
1805                 return adb_connect_command("rescue-getprop:");
1806             }
1807             if (argc == 3) {
1808                 return adb_connect_command(
1809                         android::base::StringPrintf("rescue-getprop:%s", argv[2]));
1810             }
1811             error_exit("invalid rescue getprop arguments");
1812         } else if (!strcmp(argv[1], "install")) {
1813             if (argc != 3) error_exit("rescue install requires two arguments");
1814             if (adb_sideload_install(argv[2], true /* rescue_mode */) != 0) {
1815                 return 1;
1816             }
1817         } else if (!strcmp(argv[1], "wipe")) {
1818             if (argc != 3 || strcmp(argv[2], "userdata") != 0) {
1819                 error_exit("invalid rescue wipe arguments");
1820             }
1821             return adb_wipe_devices();
1822         } else {
1823             error_exit("invalid rescue argument");
1824         }
1825         return 0;
1826     } else if (!strcmp(argv[0], "tcpip")) {
1827         if (argc != 2) error_exit("tcpip requires an argument");
1828         int port;
1829         if (!android::base::ParseInt(argv[1], &port, 1, 65535)) {
1830             error_exit("tcpip: invalid port: %s", argv[1]);
1831         }
1832         return adb_connect_command(android::base::StringPrintf("tcpip:%d", port));
1833     } else if (!strcmp(argv[0], "remount")) {
1834         std::string error;
1835         auto&& features = adb_get_feature_set(&error);
1836         if (!features) {
1837             error_exit("%s", error.c_str());
1838         }
1839 
1840         if (CanUseFeature(*features, kFeatureRemountShell)) {
1841             std::vector<const char*> args = {"shell"};
1842             args.insert(args.cend(), argv, argv + argc);
1843             return adb_shell_noinput(args.size(), args.data());
1844         } else if (argc > 1) {
1845             auto command = android::base::StringPrintf("%s:%s", argv[0], argv[1]);
1846             return adb_connect_command(command);
1847         } else {
1848             return adb_connect_command("remount:");
1849         }
1850     }
1851     // clang-format off
1852     else if (!strcmp(argv[0], "reboot") ||
1853              !strcmp(argv[0], "reboot-bootloader") ||
1854              !strcmp(argv[0], "reboot-fastboot") ||
1855              !strcmp(argv[0], "usb") ||
1856              !strcmp(argv[0], "disable-verity") ||
1857              !strcmp(argv[0], "enable-verity")) {
1858         // clang-format on
1859         std::string command;
1860         if (!strcmp(argv[0], "reboot-bootloader")) {
1861             command = "reboot:bootloader";
1862         } else if (!strcmp(argv[0], "reboot-fastboot")) {
1863             command = "reboot:fastboot";
1864         } else if (argc > 1) {
1865             command = android::base::StringPrintf("%s:%s", argv[0], argv[1]);
1866         } else {
1867             command = android::base::StringPrintf("%s:", argv[0]);
1868         }
1869         return adb_connect_command(command);
1870     } else if (!strcmp(argv[0], "root") || !strcmp(argv[0], "unroot")) {
1871         return adb_root(argv[0]) ? 0 : 1;
1872     } else if (!strcmp(argv[0], "bugreport")) {
1873         Bugreport bugreport;
1874         return bugreport.DoIt(argc, argv);
1875     } else if (!strcmp(argv[0], "forward") || !strcmp(argv[0], "reverse")) {
1876         bool reverse = !strcmp(argv[0], "reverse");
1877         --argc;
1878         if (argc < 1) error_exit("%s requires an argument", argv[0]);
1879         ++argv;
1880 
1881         // Determine the <host-prefix> for this command.
1882         std::string host_prefix;
1883         if (reverse) {
1884             host_prefix = "reverse:";
1885         } else {
1886             host_prefix = "host:";
1887         }
1888 
1889         std::string cmd, error_message;
1890         if (strcmp(argv[0], "--list") == 0) {
1891             if (argc != 1) error_exit("--list doesn't take any arguments");
1892             return adb_query_command(host_prefix + "list-forward");
1893         } else if (strcmp(argv[0], "--remove-all") == 0) {
1894             if (argc != 1) error_exit("--remove-all doesn't take any arguments");
1895             cmd = "killforward-all";
1896         } else if (strcmp(argv[0], "--remove") == 0) {
1897             // forward --remove <local>
1898             if (argc != 2) error_exit("--remove requires an argument");
1899             cmd = std::string("killforward:") + argv[1];
1900         } else if (strcmp(argv[0], "--no-rebind") == 0) {
1901             // forward --no-rebind <local> <remote>
1902             if (argc != 3) error_exit("--no-rebind takes two arguments");
1903             if (forward_targets_are_valid(argv[1], argv[2], &error_message)) {
1904                 cmd = std::string("forward:norebind:") + argv[1] + ";" + argv[2];
1905             }
1906         } else {
1907             // forward <local> <remote>
1908             if (argc != 2) error_exit("forward takes two arguments");
1909             if (forward_targets_are_valid(argv[0], argv[1], &error_message)) {
1910                 cmd = std::string("forward:") + argv[0] + ";" + argv[1];
1911             }
1912         }
1913 
1914         if (!error_message.empty()) {
1915             error_exit("error: %s", error_message.c_str());
1916         }
1917 
1918         unique_fd fd(adb_connect(nullptr, host_prefix + cmd, &error_message, true));
1919         if (fd < 0 || !adb_status(fd.get(), &error_message)) {
1920             error_exit("error: %s", error_message.c_str());
1921         }
1922 
1923         // Server or device may optionally return a resolved TCP port number.
1924         std::string resolved_port;
1925         if (ReadProtocolString(fd, &resolved_port, &error_message) && !resolved_port.empty()) {
1926             printf("%s\n", resolved_port.c_str());
1927         }
1928 
1929         ReadOrderlyShutdown(fd);
1930         return 0;
1931     } else if (!strcmp(argv[0], "mdns")) {
1932         --argc;
1933         if (argc < 1) error_exit("mdns requires an argument");
1934         ++argv;
1935 
1936         std::string error;
1937         if (!adb_check_server_version(&error)) {
1938             error_exit("failed to check server version: %s", error.c_str());
1939         }
1940 
1941         std::string query = "host:mdns:";
1942         if (!strcmp(argv[0], "check")) {
1943             if (argc != 1) error_exit("mdns %s doesn't take any arguments", argv[0]);
1944             query += "check";
1945         } else if (!strcmp(argv[0], "services")) {
1946             if (argc != 1) error_exit("mdns %s doesn't take any arguments", argv[0]);
1947             query += "services";
1948             printf("List of discovered mdns services\n");
1949         } else {
1950             error_exit("unknown mdns command [%s]", argv[0]);
1951         }
1952 
1953         return adb_query_command(query);
1954     }
1955     /* do_sync_*() commands */
1956     else if (!strcmp(argv[0], "ls")) {
1957         if (argc != 2) error_exit("ls requires an argument");
1958         return do_sync_ls(argv[1]) ? 0 : 1;
1959     } else if (!strcmp(argv[0], "push")) {
1960         bool copy_attrs = false;
1961         bool sync = false;
1962         bool dry_run = false;
1963         CompressionType compression = CompressionType::Any;
1964         std::vector<const char*> srcs;
1965         const char* dst = nullptr;
1966 
1967         parse_push_pull_args(&argv[1], argc - 1, &srcs, &dst, &copy_attrs, &sync, &compression,
1968                              &dry_run);
1969         if (srcs.empty() || !dst) error_exit("push requires an argument");
1970         return do_sync_push(srcs, dst, sync, compression, dry_run) ? 0 : 1;
1971     } else if (!strcmp(argv[0], "pull")) {
1972         bool copy_attrs = false;
1973         CompressionType compression = CompressionType::None;
1974         std::vector<const char*> srcs;
1975         const char* dst = ".";
1976 
1977         parse_push_pull_args(&argv[1], argc - 1, &srcs, &dst, &copy_attrs, nullptr, &compression,
1978                              nullptr);
1979         if (srcs.empty()) error_exit("pull requires an argument");
1980         return do_sync_pull(srcs, dst, copy_attrs, compression) ? 0 : 1;
1981     } else if (!strcmp(argv[0], "install")) {
1982         if (argc < 2) error_exit("install requires an argument");
1983         return install_app(argc, argv);
1984     } else if (!strcmp(argv[0], "install-multiple")) {
1985         if (argc < 2) error_exit("install-multiple requires an argument");
1986         return install_multiple_app(argc, argv);
1987     } else if (!strcmp(argv[0], "install-multi-package")) {
1988         if (argc < 2) error_exit("install-multi-package requires an argument");
1989         return install_multi_package(argc, argv);
1990     } else if (!strcmp(argv[0], "uninstall")) {
1991         if (argc < 2) error_exit("uninstall requires an argument");
1992         return uninstall_app(argc, argv);
1993     } else if (!strcmp(argv[0], "sync")) {
1994         std::string src;
1995         bool list_only = false;
1996         bool dry_run = false;
1997         CompressionType compression = CompressionType::Any;
1998 
1999         if (const char* adb_compression = getenv("ADB_COMPRESSION"); adb_compression) {
2000             compression = parse_compression_type(adb_compression, true);
2001         }
2002 
2003         int opt;
2004         while ((opt = getopt(argc, const_cast<char**>(argv), "lnz:Z")) != -1) {
2005             switch (opt) {
2006                 case 'l':
2007                     list_only = true;
2008                     break;
2009                 case 'n':
2010                     dry_run = true;
2011                     break;
2012                 case 'z':
2013                     compression = parse_compression_type(optarg, false);
2014                     break;
2015                 case 'Z':
2016                     compression = CompressionType::None;
2017                     break;
2018                 default:
2019                     error_exit("usage: adb sync [-l] [-n]  [-z ALGORITHM] [-Z] [PARTITION]");
2020             }
2021         }
2022 
2023         if (optind == argc) {
2024             src = "all";
2025         } else if (optind + 1 == argc) {
2026             src = argv[optind];
2027         } else {
2028             error_exit("usage: adb sync [-l] [-n] [-z ALGORITHM] [-Z] [PARTITION]");
2029         }
2030 
2031         std::vector<std::string> partitions{"data",   "odm",        "oem",   "product",
2032                                             "system", "system_ext", "vendor"};
2033         bool found = false;
2034         for (const auto& partition : partitions) {
2035             if (src == "all" || src == partition) {
2036                 std::string src_dir{product_file(partition)};
2037                 if (!directory_exists(src_dir)) continue;
2038                 found = true;
2039                 if (!do_sync_sync(src_dir, "/" + partition, list_only, compression, dry_run)) {
2040                     return 1;
2041                 }
2042             }
2043         }
2044         if (!found) error_exit("don't know how to sync %s partition", src.c_str());
2045         return 0;
2046     }
2047     /* passthrough commands */
2048     else if (!strcmp(argv[0], "get-state") || !strcmp(argv[0], "get-serialno") ||
2049              !strcmp(argv[0], "get-devpath")) {
2050         return adb_query_command(format_host_command(argv[0]));
2051     }
2052     /* other commands */
2053     else if (!strcmp(argv[0], "logcat") || !strcmp(argv[0], "lolcat") ||
2054              !strcmp(argv[0], "longcat")) {
2055         return logcat(argc, argv);
2056     } else if (!strcmp(argv[0], "ppp")) {
2057         return ppp(argc, argv);
2058     } else if (!strcmp(argv[0], "start-server")) {
2059         std::string error;
2060         const int result = adb_connect("host:start-server", &error);
2061         if (result < 0) {
2062             fprintf(stderr, "error: %s\n", error.c_str());
2063         }
2064         return result;
2065     } else if (!strcmp(argv[0], "backup")) {
2066         return backup(argc, argv);
2067     } else if (!strcmp(argv[0], "restore")) {
2068         return restore(argc, argv);
2069     } else if (!strcmp(argv[0], "keygen")) {
2070         if (argc != 2) error_exit("keygen requires an argument");
2071         // Always print key generation information for keygen command.
2072         adb_trace_enable(AUTH);
2073         return adb_auth_keygen(argv[1]);
2074     } else if (!strcmp(argv[0], "pubkey")) {
2075         if (argc != 2) error_exit("pubkey requires an argument");
2076         return adb_auth_pubkey(argv[1]);
2077     } else if (!strcmp(argv[0], "jdwp")) {
2078         return adb_connect_command("jdwp");
2079     } else if (!strcmp(argv[0], "track-jdwp")) {
2080         return adb_connect_command("track-jdwp");
2081     } else if (!strcmp(argv[0], "track-app")) {
2082         std::string error;
2083         auto&& features = adb_get_feature_set(&error);
2084         if (!features) {
2085             error_exit("%s", error.c_str());
2086         }
2087         if (!CanUseFeature(*features, kFeatureTrackApp)) {
2088             error_exit("track-app is not supported by the device");
2089         }
2090         TrackAppStreamsCallback callback;
2091         return adb_connect_command("track-app", nullptr, &callback);
2092     } else if (!strcmp(argv[0], "track-devices")) {
2093         if (argc > 2 || (argc == 2 && strcmp(argv[1], "-l"))) {
2094             error_exit("usage: adb track-devices [-l]");
2095         }
2096         return adb_connect_command(argc == 2 ? "host:track-devices-l" : "host:track-devices");
2097     } else if (!strcmp(argv[0], "raw")) {
2098         if (argc != 2) {
2099             error_exit("usage: adb raw SERVICE");
2100         }
2101         return adb_connect_command_bidirectional(argv[1]);
2102     }
2103 
2104     /* "adb /?" is a common idiom under Windows */
2105     else if (!strcmp(argv[0], "--help") || !strcmp(argv[0], "help") || !strcmp(argv[0], "/?")) {
2106         help();
2107         return 0;
2108     } else if (!strcmp(argv[0], "--version") || !strcmp(argv[0], "version")) {
2109         fprintf(stdout, "%s", adb_version().c_str());
2110         return 0;
2111     } else if (!strcmp(argv[0], "features")) {
2112         // Only list the features common to both the adb client and the device.
2113         std::string error;
2114         auto&& features = adb_get_feature_set(&error);
2115         if (!features) {
2116             error_exit("%s", error.c_str());
2117         }
2118 
2119         for (const std::string& name : *features) {
2120             if (CanUseFeature(*features, name)) {
2121                 printf("%s\n", name.c_str());
2122             }
2123         }
2124         return 0;
2125     } else if (!strcmp(argv[0], "host-features")) {
2126         return adb_query_command("host:host-features");
2127     } else if (!strcmp(argv[0], "reconnect")) {
2128         if (argc == 1) {
2129             return adb_query_command(format_host_command(argv[0]));
2130         } else if (argc == 2) {
2131             if (!strcmp(argv[1], "device")) {
2132                 std::string err;
2133                 adb_connect("reconnect", &err);
2134                 return 0;
2135             } else if (!strcmp(argv[1], "offline")) {
2136                 std::string err;
2137                 return adb_query_command("host:reconnect-offline");
2138             } else {
2139                 error_exit("usage: adb reconnect [device|offline]");
2140             }
2141         }
2142     } else if (!strcmp(argv[0], "inc-server")) {
2143         if (argc < 4) {
2144 #ifdef _WIN32
2145             error_exit("usage: adb inc-server CONNECTION_HANDLE OUTPUT_HANDLE FILE1 FILE2 ...");
2146 #else
2147             error_exit("usage: adb inc-server CONNECTION_FD OUTPUT_FD FILE1 FILE2 ...");
2148 #endif
2149         }
2150         int connection_fd = atoi(argv[1]);
2151         if (!_is_valid_os_fd(connection_fd)) {
2152             error_exit("Invalid connection_fd number given: %d", connection_fd);
2153         }
2154 
2155         connection_fd = adb_register_socket(connection_fd);
2156         close_on_exec(connection_fd);
2157 
2158         int output_fd = atoi(argv[2]);
2159         if (!_is_valid_os_fd(output_fd)) {
2160             error_exit("Invalid output_fd number given: %d", output_fd);
2161         }
2162         output_fd = adb_register_socket(output_fd);
2163         close_on_exec(output_fd);
2164         return incremental::serve(connection_fd, output_fd, argc - 3, argv + 3);
2165     }
2166 
2167     error_exit("unknown command %s", argv[0]);
2168     __builtin_unreachable();
2169 }
2170