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 #include "adb.h"
21
22 #include <ctype.h>
23 #include <errno.h>
24 #include <stdarg.h>
25 #include <stddef.h>
26 #include <stdint.h>
27 #include <stdio.h>
28 #include <stdlib.h>
29 #include <string.h>
30 #include <sys/time.h>
31 #include <time.h>
32
33 #include <chrono>
34 #include <condition_variable>
35 #include <mutex>
36 #include <string>
37 #include <string_view>
38 #include <thread>
39 #include <vector>
40
41 #include <android-base/errors.h>
42 #include <android-base/file.h>
43 #include <android-base/logging.h>
44 #include <android-base/macros.h>
45 #include <android-base/parsenetaddress.h>
46 #include <android-base/stringprintf.h>
47 #include <android-base/strings.h>
48 #include <build/version.h>
49 #include <platform_tools_version.h>
50
51 #include "adb_auth.h"
52 #include "adb_io.h"
53 #include "adb_listeners.h"
54 #include "adb_unique_fd.h"
55 #include "adb_utils.h"
56 #include "adb_wifi.h"
57 #include "sysdeps/chrono.h"
58 #include "transport.h"
59
60 #if !ADB_HOST
61 #include <sys/capability.h>
62 #include <sys/mount.h>
63 #include <android-base/properties.h>
64 using namespace std::chrono_literals;
65
66 #include "daemon/logging.h"
67 #endif
68
69 #if ADB_HOST
70 #include "client/usb.h"
71 #endif
72
adb_version()73 std::string adb_version() {
74 // Don't change the format of this --- it's parsed by ddmlib.
75 return android::base::StringPrintf(
76 "Android Debug Bridge version %d.%d.%d\n"
77 "Version %s-%s\n"
78 "Installed as %s\n",
79 ADB_VERSION_MAJOR, ADB_VERSION_MINOR, ADB_SERVER_VERSION,
80 PLATFORM_TOOLS_VERSION, android::build::GetBuildNumber().c_str(),
81 android::base::GetExecutablePath().c_str());
82 }
83
calculate_apacket_checksum(const apacket * p)84 uint32_t calculate_apacket_checksum(const apacket* p) {
85 uint32_t sum = 0;
86 for (size_t i = 0; i < p->msg.data_length; ++i) {
87 sum += static_cast<uint8_t>(p->payload[i]);
88 }
89 return sum;
90 }
91
get_apacket(void)92 apacket* get_apacket(void)
93 {
94 apacket* p = new apacket();
95 if (p == nullptr) {
96 LOG(FATAL) << "failed to allocate an apacket";
97 }
98
99 memset(&p->msg, 0, sizeof(p->msg));
100 return p;
101 }
102
put_apacket(apacket * p)103 void put_apacket(apacket *p)
104 {
105 delete p;
106 }
107
handle_online(atransport * t)108 void handle_online(atransport *t)
109 {
110 D("adb: online");
111 t->online = 1;
112 #if ADB_HOST
113 t->SetConnectionEstablished(true);
114 #endif
115 }
116
handle_offline(atransport * t)117 void handle_offline(atransport *t)
118 {
119 if (t->GetConnectionState() == kCsOffline) {
120 LOG(INFO) << t->serial_name() << ": already offline";
121 return;
122 }
123
124 LOG(INFO) << t->serial_name() << ": offline";
125
126 t->SetConnectionState(kCsOffline);
127
128 // Close the associated usb
129 t->online = 0;
130
131 // This is necessary to avoid a race condition that occurred when a transport closes
132 // while a client socket is still active.
133 close_all_sockets(t);
134
135 t->RunDisconnects();
136 }
137
138 #if DEBUG_PACKETS
139 #define DUMPMAX 32
print_packet(const char * label,apacket * p)140 void print_packet(const char *label, apacket *p)
141 {
142 const char* tag;
143 unsigned count;
144
145 switch(p->msg.command){
146 case A_SYNC: tag = "SYNC"; break;
147 case A_CNXN: tag = "CNXN" ; break;
148 case A_OPEN: tag = "OPEN"; break;
149 case A_OKAY: tag = "OKAY"; break;
150 case A_CLSE: tag = "CLSE"; break;
151 case A_WRTE: tag = "WRTE"; break;
152 case A_AUTH: tag = "AUTH"; break;
153 case A_STLS:
154 tag = "STLS";
155 break;
156 default: tag = "????"; break;
157 }
158
159 fprintf(stderr, "%s: %s %08x %08x %04x \"",
160 label, tag, p->msg.arg0, p->msg.arg1, p->msg.data_length);
161 count = p->msg.data_length;
162 const char* x = p->payload.data();
163 if (count > DUMPMAX) {
164 count = DUMPMAX;
165 tag = "\n";
166 } else {
167 tag = "\"\n";
168 }
169 while (count-- > 0) {
170 if ((*x >= ' ') && (*x < 127)) {
171 fputc(*x, stderr);
172 } else {
173 fputc('.', stderr);
174 }
175 x++;
176 }
177 fputs(tag, stderr);
178 }
179 #endif
180
send_ready(unsigned local,unsigned remote,atransport * t)181 static void send_ready(unsigned local, unsigned remote, atransport *t)
182 {
183 D("Calling send_ready");
184 apacket *p = get_apacket();
185 p->msg.command = A_OKAY;
186 p->msg.arg0 = local;
187 p->msg.arg1 = remote;
188 send_packet(p, t);
189 }
190
send_close(unsigned local,unsigned remote,atransport * t)191 static void send_close(unsigned local, unsigned remote, atransport *t)
192 {
193 D("Calling send_close");
194 apacket *p = get_apacket();
195 p->msg.command = A_CLSE;
196 p->msg.arg0 = local;
197 p->msg.arg1 = remote;
198 send_packet(p, t);
199 }
200
get_connection_string()201 std::string get_connection_string() {
202 std::vector<std::string> connection_properties;
203
204 #if !ADB_HOST
205 static const char* cnxn_props[] = {
206 "ro.product.name",
207 "ro.product.model",
208 "ro.product.device",
209 };
210
211 for (const auto& prop : cnxn_props) {
212 std::string value = std::string(prop) + "=" + android::base::GetProperty(prop, "");
213 connection_properties.push_back(value);
214 }
215 #endif
216
217 connection_properties.push_back(android::base::StringPrintf(
218 "features=%s", FeatureSetToString(supported_features()).c_str()));
219
220 return android::base::StringPrintf(
221 "%s::%s", adb_device_banner,
222 android::base::Join(connection_properties, ';').c_str());
223 }
224
send_tls_request(atransport * t)225 void send_tls_request(atransport* t) {
226 D("Calling send_tls_request");
227 apacket* p = get_apacket();
228 p->msg.command = A_STLS;
229 p->msg.arg0 = A_STLS_VERSION;
230 p->msg.data_length = 0;
231 send_packet(p, t);
232 }
233
send_connect(atransport * t)234 void send_connect(atransport* t) {
235 D("Calling send_connect");
236 apacket* cp = get_apacket();
237 cp->msg.command = A_CNXN;
238 // Send the max supported version, but because the transport is
239 // initialized to A_VERSION_MIN, this will be compatible with every
240 // device.
241 cp->msg.arg0 = A_VERSION;
242 cp->msg.arg1 = t->get_max_payload();
243
244 std::string connection_str = get_connection_string();
245 // Connect and auth packets are limited to MAX_PAYLOAD_V1 because we don't
246 // yet know how much data the other size is willing to accept.
247 if (connection_str.length() > MAX_PAYLOAD_V1) {
248 LOG(FATAL) << "Connection banner is too long (length = "
249 << connection_str.length() << ")";
250 }
251
252 cp->payload.assign(connection_str.begin(), connection_str.end());
253 cp->msg.data_length = cp->payload.size();
254
255 send_packet(cp, t);
256 }
257
parse_banner(const std::string & banner,atransport * t)258 void parse_banner(const std::string& banner, atransport* t) {
259 D("parse_banner: %s", banner.c_str());
260
261 // The format is something like:
262 // "device::ro.product.name=x;ro.product.model=y;ro.product.device=z;".
263 std::vector<std::string> pieces = android::base::Split(banner, ":");
264
265 // Reset the features list or else if the server sends no features we may
266 // keep the existing feature set (http://b/24405971).
267 t->SetFeatures("");
268
269 if (pieces.size() > 2) {
270 const std::string& props = pieces[2];
271 for (const auto& prop : android::base::Split(props, ";")) {
272 // The list of properties was traditionally ;-terminated rather than ;-separated.
273 if (prop.empty()) continue;
274
275 std::vector<std::string> key_value = android::base::Split(prop, "=");
276 if (key_value.size() != 2) continue;
277
278 const std::string& key = key_value[0];
279 const std::string& value = key_value[1];
280 if (key == "ro.product.name") {
281 t->product = value;
282 } else if (key == "ro.product.model") {
283 t->model = value;
284 } else if (key == "ro.product.device") {
285 t->device = value;
286 } else if (key == "features") {
287 t->SetFeatures(value);
288 }
289 }
290 }
291
292 const std::string& type = pieces[0];
293 if (type == "bootloader") {
294 D("setting connection_state to kCsBootloader");
295 t->SetConnectionState(kCsBootloader);
296 } else if (type == "device") {
297 D("setting connection_state to kCsDevice");
298 t->SetConnectionState(kCsDevice);
299 } else if (type == "recovery") {
300 D("setting connection_state to kCsRecovery");
301 t->SetConnectionState(kCsRecovery);
302 } else if (type == "sideload") {
303 D("setting connection_state to kCsSideload");
304 t->SetConnectionState(kCsSideload);
305 } else if (type == "rescue") {
306 D("setting connection_state to kCsRescue");
307 t->SetConnectionState(kCsRescue);
308 } else {
309 D("setting connection_state to kCsHost");
310 t->SetConnectionState(kCsHost);
311 }
312 }
313
handle_new_connection(atransport * t,apacket * p)314 static void handle_new_connection(atransport* t, apacket* p) {
315 handle_offline(t);
316
317 t->update_version(p->msg.arg0, p->msg.arg1);
318 std::string banner(p->payload.begin(), p->payload.end());
319 parse_banner(banner, t);
320
321 #if ADB_HOST
322 handle_online(t);
323 #else
324 ADB_LOG(Connection) << "received CNXN: version=" << p->msg.arg0 << ", maxdata = " << p->msg.arg1
325 << ", banner = '" << banner << "'";
326
327 if (t->use_tls) {
328 // We still handshake in TLS mode. If auth_required is disabled,
329 // we'll just not verify the client's certificate. This should be the
330 // first packet the client receives to indicate the new protocol.
331 send_tls_request(t);
332 } else if (!auth_required) {
333 LOG(INFO) << "authentication not required";
334 handle_online(t);
335 send_connect(t);
336 } else {
337 send_auth_request(t);
338 }
339 #endif
340
341 update_transports();
342 }
343
handle_packet(apacket * p,atransport * t)344 void handle_packet(apacket *p, atransport *t)
345 {
346 D("handle_packet() %c%c%c%c", ((char*) (&(p->msg.command)))[0],
347 ((char*) (&(p->msg.command)))[1],
348 ((char*) (&(p->msg.command)))[2],
349 ((char*) (&(p->msg.command)))[3]);
350 print_packet("recv", p);
351 CHECK_EQ(p->payload.size(), p->msg.data_length);
352
353 switch(p->msg.command){
354 case A_CNXN: // CONNECT(version, maxdata, "system-id-string")
355 handle_new_connection(t, p);
356 break;
357 case A_STLS: // TLS(version, "")
358 t->use_tls = true;
359 #if ADB_HOST
360 send_tls_request(t);
361 adb_auth_tls_handshake(t);
362 #else
363 adbd_auth_tls_handshake(t);
364 #endif
365 break;
366
367 case A_AUTH:
368 // All AUTH commands are ignored in TLS mode
369 if (t->use_tls) {
370 break;
371 }
372 switch (p->msg.arg0) {
373 #if ADB_HOST
374 case ADB_AUTH_TOKEN:
375 if (t->GetConnectionState() != kCsAuthorizing) {
376 t->SetConnectionState(kCsAuthorizing);
377 }
378 send_auth_response(p->payload.data(), p->msg.data_length, t);
379 break;
380 #else
381 case ADB_AUTH_SIGNATURE: {
382 // TODO: Switch to string_view.
383 std::string signature(p->payload.begin(), p->payload.end());
384 std::string auth_key;
385 if (adbd_auth_verify(t->token, sizeof(t->token), signature, &auth_key)) {
386 adbd_auth_verified(t);
387 t->failed_auth_attempts = 0;
388 t->auth_key = auth_key;
389 adbd_notify_framework_connected_key(t);
390 } else {
391 if (t->failed_auth_attempts++ > 256) std::this_thread::sleep_for(1s);
392 send_auth_request(t);
393 }
394 break;
395 }
396
397 case ADB_AUTH_RSAPUBLICKEY:
398 t->auth_key = std::string(p->payload.data());
399 adbd_auth_confirm_key(t);
400 break;
401 #endif
402 default:
403 t->SetConnectionState(kCsOffline);
404 handle_offline(t);
405 break;
406 }
407 break;
408
409 case A_OPEN: /* OPEN(local-id, 0, "destination") */
410 if (t->online && p->msg.arg0 != 0 && p->msg.arg1 == 0) {
411 std::string_view address(p->payload.begin(), p->payload.size());
412
413 // Historically, we received service names as a char*, and stopped at the first NUL
414 // byte. The client sent strings with null termination, which post-string_view, start
415 // being interpreted as part of the string, unless we explicitly strip them.
416 address = StripTrailingNulls(address);
417
418 asocket* s = create_local_service_socket(address, t);
419 if (s == nullptr) {
420 send_close(0, p->msg.arg0, t);
421 } else {
422 s->peer = create_remote_socket(p->msg.arg0, t);
423 s->peer->peer = s;
424 send_ready(s->id, s->peer->id, t);
425 s->ready(s);
426 }
427 }
428 break;
429
430 case A_OKAY: /* READY(local-id, remote-id, "") */
431 if (t->online && p->msg.arg0 != 0 && p->msg.arg1 != 0) {
432 asocket* s = find_local_socket(p->msg.arg1, 0);
433 if (s) {
434 if(s->peer == nullptr) {
435 /* On first READY message, create the connection. */
436 s->peer = create_remote_socket(p->msg.arg0, t);
437 s->peer->peer = s;
438 s->ready(s);
439 } else if (s->peer->id == p->msg.arg0) {
440 /* Other READY messages must use the same local-id */
441 s->ready(s);
442 } else {
443 D("Invalid A_OKAY(%d,%d), expected A_OKAY(%d,%d) on transport %s", p->msg.arg0,
444 p->msg.arg1, s->peer->id, p->msg.arg1, t->serial.c_str());
445 }
446 } else {
447 // When receiving A_OKAY from device for A_OPEN request, the host server may
448 // have closed the local socket because of client disconnection. Then we need
449 // to send A_CLSE back to device to close the service on device.
450 send_close(p->msg.arg1, p->msg.arg0, t);
451 }
452 }
453 break;
454
455 case A_CLSE: /* CLOSE(local-id, remote-id, "") or CLOSE(0, remote-id, "") */
456 if (t->online && p->msg.arg1 != 0) {
457 asocket* s = find_local_socket(p->msg.arg1, p->msg.arg0);
458 if (s) {
459 /* According to protocol.txt, p->msg.arg0 might be 0 to indicate
460 * a failed OPEN only. However, due to a bug in previous ADB
461 * versions, CLOSE(0, remote-id, "") was also used for normal
462 * CLOSE() operations.
463 *
464 * This is bad because it means a compromised adbd could
465 * send packets to close connections between the host and
466 * other devices. To avoid this, only allow this if the local
467 * socket has a peer on the same transport.
468 */
469 if (p->msg.arg0 == 0 && s->peer && s->peer->transport != t) {
470 D("Invalid A_CLSE(0, %u) from transport %s, expected transport %s", p->msg.arg1,
471 t->serial.c_str(), s->peer->transport->serial.c_str());
472 } else {
473 s->close(s);
474 }
475 }
476 }
477 break;
478
479 case A_WRTE: /* WRITE(local-id, remote-id, <data>) */
480 if (t->online && p->msg.arg0 != 0 && p->msg.arg1 != 0) {
481 asocket* s = find_local_socket(p->msg.arg1, p->msg.arg0);
482 if (s) {
483 unsigned rid = p->msg.arg0;
484 if (s->enqueue(s, std::move(p->payload)) == 0) {
485 D("Enqueue the socket");
486 send_ready(s->id, rid, t);
487 }
488 }
489 }
490 break;
491
492 default:
493 printf("handle_packet: what is %08x?!\n", p->msg.command);
494 }
495
496 put_apacket(p);
497 }
498
499 #if ADB_HOST
500
501 #ifdef _WIN32
502
503 // Try to make a handle non-inheritable and if there is an error, don't output
504 // any error info, but leave GetLastError() for the caller to read. This is
505 // convenient if the caller is expecting that this may fail and they'd like to
506 // ignore such a failure.
_try_make_handle_noninheritable(HANDLE h)507 static bool _try_make_handle_noninheritable(HANDLE h) {
508 if (h != INVALID_HANDLE_VALUE && h != NULL) {
509 return SetHandleInformation(h, HANDLE_FLAG_INHERIT, 0) ? true : false;
510 }
511
512 return true;
513 }
514
515 // Try to make a handle non-inheritable with the expectation that this should
516 // succeed, so if this fails, output error info.
_make_handle_noninheritable(HANDLE h)517 static bool _make_handle_noninheritable(HANDLE h) {
518 if (!_try_make_handle_noninheritable(h)) {
519 // Show the handle value to give us a clue in case we have problems
520 // with pseudo-handle values.
521 fprintf(stderr, "adb: cannot make handle 0x%p non-inheritable: %s\n", h,
522 android::base::SystemErrorCodeToString(GetLastError()).c_str());
523 return false;
524 }
525
526 return true;
527 }
528
529 // Create anonymous pipe, preventing inheritance of the read pipe and setting
530 // security of the write pipe to sa.
_create_anonymous_pipe(unique_handle * pipe_read_out,unique_handle * pipe_write_out,SECURITY_ATTRIBUTES * sa)531 static bool _create_anonymous_pipe(unique_handle* pipe_read_out,
532 unique_handle* pipe_write_out,
533 SECURITY_ATTRIBUTES* sa) {
534 HANDLE pipe_read_raw = NULL;
535 HANDLE pipe_write_raw = NULL;
536 if (!CreatePipe(&pipe_read_raw, &pipe_write_raw, sa, 0)) {
537 fprintf(stderr, "adb: CreatePipe failed: %s\n",
538 android::base::SystemErrorCodeToString(GetLastError()).c_str());
539 return false;
540 }
541
542 unique_handle pipe_read(pipe_read_raw);
543 pipe_read_raw = NULL;
544 unique_handle pipe_write(pipe_write_raw);
545 pipe_write_raw = NULL;
546
547 if (!_make_handle_noninheritable(pipe_read.get())) {
548 return false;
549 }
550
551 *pipe_read_out = std::move(pipe_read);
552 *pipe_write_out = std::move(pipe_write);
553
554 return true;
555 }
556
557 // Read from a pipe (that we take ownership of) and write the result to stdout/stderr. Return on
558 // error or when the pipe is closed. Internally makes inheritable handles, so this should not be
559 // called if subprocesses may be started concurrently.
_redirect_pipe_thread(HANDLE h,DWORD nStdHandle)560 static unsigned _redirect_pipe_thread(HANDLE h, DWORD nStdHandle) {
561 // Take ownership of the HANDLE and close when we're done.
562 unique_handle read_pipe(h);
563 const char* output_name = nStdHandle == STD_OUTPUT_HANDLE ? "stdout" : "stderr";
564 const int original_fd = fileno(nStdHandle == STD_OUTPUT_HANDLE ? stdout : stderr);
565 std::unique_ptr<FILE, decltype(&fclose)> stream(nullptr, fclose);
566
567 if (original_fd == -1) {
568 fprintf(stderr, "adb: failed to get file descriptor for %s: %s\n", output_name,
569 strerror(errno));
570 return EXIT_FAILURE;
571 }
572
573 // If fileno() is -2, stdout/stderr is not associated with an output stream, so we should read,
574 // but don't write. Otherwise, make a FILE* identical to stdout/stderr except that it is in
575 // binary mode with no CR/LR translation since we're reading raw.
576 if (original_fd >= 0) {
577 // This internally makes a duplicate file handle that is inheritable, so callers should not
578 // call this function if subprocesses may be started concurrently.
579 const int fd = dup(original_fd);
580 if (fd == -1) {
581 fprintf(stderr, "adb: failed to duplicate file descriptor for %s: %s\n", output_name,
582 strerror(errno));
583 return EXIT_FAILURE;
584 }
585
586 // Note that although we call fdopen() below with a binary flag, it may not adhere to that
587 // flag, so we have to set the mode manually.
588 if (_setmode(fd, _O_BINARY) == -1) {
589 fprintf(stderr, "adb: failed to set binary mode for duplicate of %s: %s\n", output_name,
590 strerror(errno));
591 unix_close(fd);
592 return EXIT_FAILURE;
593 }
594
595 stream.reset(fdopen(fd, "wb"));
596 if (stream.get() == nullptr) {
597 fprintf(stderr, "adb: failed to open duplicate stream for %s: %s\n", output_name,
598 strerror(errno));
599 unix_close(fd);
600 return EXIT_FAILURE;
601 }
602
603 // Unbuffer the stream because it will be buffered by default and we want subprocess output
604 // to be shown immediately.
605 if (setvbuf(stream.get(), NULL, _IONBF, 0) == -1) {
606 fprintf(stderr, "adb: failed to unbuffer %s: %s\n", output_name, strerror(errno));
607 return EXIT_FAILURE;
608 }
609
610 // fd will be closed when stream is closed.
611 }
612
613 while (true) {
614 char buf[64 * 1024];
615 DWORD bytes_read = 0;
616 if (!ReadFile(read_pipe.get(), buf, sizeof(buf), &bytes_read, NULL)) {
617 const DWORD err = GetLastError();
618 // ERROR_BROKEN_PIPE is expected when the subprocess closes
619 // the other end of the pipe.
620 if (err == ERROR_BROKEN_PIPE) {
621 return EXIT_SUCCESS;
622 } else {
623 fprintf(stderr, "adb: failed to read from %s: %s\n", output_name,
624 android::base::SystemErrorCodeToString(err).c_str());
625 return EXIT_FAILURE;
626 }
627 }
628
629 // Don't try to write if our stdout/stderr was not setup by the parent process.
630 if (stream) {
631 // fwrite() actually calls adb_fwrite() which can write UTF-8 to the console.
632 const size_t bytes_written = fwrite(buf, 1, bytes_read, stream.get());
633 if (bytes_written != bytes_read) {
634 fprintf(stderr, "adb: error: only wrote %zu of %lu bytes to %s\n", bytes_written,
635 bytes_read, output_name);
636 return EXIT_FAILURE;
637 }
638 }
639 }
640 }
641
_redirect_stdout_thread(HANDLE h)642 static unsigned __stdcall _redirect_stdout_thread(HANDLE h) {
643 adb_thread_setname("stdout redirect");
644 return _redirect_pipe_thread(h, STD_OUTPUT_HANDLE);
645 }
646
_redirect_stderr_thread(HANDLE h)647 static unsigned __stdcall _redirect_stderr_thread(HANDLE h) {
648 adb_thread_setname("stderr redirect");
649 return _redirect_pipe_thread(h, STD_ERROR_HANDLE);
650 }
651
652 #endif
653
ReportServerStartupFailure(pid_t pid)654 static void ReportServerStartupFailure(pid_t pid) {
655 fprintf(stderr, "ADB server didn't ACK\n");
656 fprintf(stderr, "Full server startup log: %s\n", GetLogFilePath().c_str());
657 fprintf(stderr, "Server had pid: %d\n", pid);
658
659 android::base::unique_fd fd(unix_open(GetLogFilePath(), O_RDONLY));
660 if (fd == -1) return;
661
662 // Let's not show more than 128KiB of log...
663 unix_lseek(fd, -128 * 1024, SEEK_END);
664 std::string content;
665 if (!android::base::ReadFdToString(fd, &content)) return;
666
667 std::string header = android::base::StringPrintf("--- adb starting (pid %d) ---", pid);
668 std::vector<std::string> lines = android::base::Split(content, "\n");
669 int i = lines.size() - 1;
670 while (i >= 0 && lines[i] != header) --i;
671 while (static_cast<size_t>(i) < lines.size()) fprintf(stderr, "%s\n", lines[i++].c_str());
672 }
673
launch_server(const std::string & socket_spec)674 int launch_server(const std::string& socket_spec) {
675 #if defined(_WIN32)
676 /* we need to start the server in the background */
677 /* we create a PIPE that will be used to wait for the server's "OK" */
678 /* message since the pipe handles must be inheritable, we use a */
679 /* security attribute */
680 SECURITY_ATTRIBUTES sa;
681 sa.nLength = sizeof(sa);
682 sa.lpSecurityDescriptor = NULL;
683 sa.bInheritHandle = TRUE;
684
685 // Redirect stdin to Windows /dev/null. If we instead pass an original
686 // stdin/stdout/stderr handle and it is a console handle, when the adb
687 // server starts up, the C Runtime will see a console handle for a process
688 // that isn't connected to a console and it will configure
689 // stdin/stdout/stderr to be closed. At that point, freopen() could be used
690 // to reopen stderr/out, but it would take more massaging to fixup the file
691 // descriptor number that freopen() uses. It's simplest to avoid all of this
692 // complexity by just redirecting stdin to `nul' and then the C Runtime acts
693 // as expected.
694 unique_handle nul_read(CreateFileW(L"nul", GENERIC_READ,
695 FILE_SHARE_READ | FILE_SHARE_WRITE, &sa, OPEN_EXISTING,
696 FILE_ATTRIBUTE_NORMAL, NULL));
697 if (nul_read.get() == INVALID_HANDLE_VALUE) {
698 fprintf(stderr, "adb: CreateFileW 'nul' failed: %s\n",
699 android::base::SystemErrorCodeToString(GetLastError()).c_str());
700 return -1;
701 }
702
703 // Create pipes with non-inheritable read handle, inheritable write handle. We need to connect
704 // the subprocess to pipes instead of just letting the subprocess inherit our existing
705 // stdout/stderr handles because a DETACHED_PROCESS cannot write to a console that it is not
706 // attached to.
707 unique_handle ack_read, ack_write;
708 if (!_create_anonymous_pipe(&ack_read, &ack_write, &sa)) {
709 return -1;
710 }
711 unique_handle stdout_read, stdout_write;
712 if (!_create_anonymous_pipe(&stdout_read, &stdout_write, &sa)) {
713 return -1;
714 }
715 unique_handle stderr_read, stderr_write;
716 if (!_create_anonymous_pipe(&stderr_read, &stderr_write, &sa)) {
717 return -1;
718 }
719
720 /* Some programs want to launch an adb command and collect its output by
721 * calling CreateProcess with inheritable stdout/stderr handles, then
722 * using read() to get its output. When this happens, the stdout/stderr
723 * handles passed to the adb client process will also be inheritable.
724 * When starting the adb server here, care must be taken to reset them
725 * to non-inheritable.
726 * Otherwise, something bad happens: even if the adb command completes,
727 * the calling process is stuck while read()-ing from the stdout/stderr
728 * descriptors, because they're connected to corresponding handles in the
729 * adb server process (even if the latter never uses/writes to them).
730 * Note that even if we don't pass these handles in the STARTUPINFO struct,
731 * if they're marked inheritable, they're still inherited, requiring us to
732 * deal with this.
733 *
734 * If we're still having problems with inheriting random handles in the
735 * future, consider using PROC_THREAD_ATTRIBUTE_HANDLE_LIST to explicitly
736 * specify which handles should be inherited: http://blogs.msdn.com/b/oldnewthing/archive/2011/12/16/10248328.aspx
737 *
738 * Older versions of Windows return console pseudo-handles that cannot be
739 * made non-inheritable, so ignore those failures.
740 */
741 _try_make_handle_noninheritable(GetStdHandle(STD_INPUT_HANDLE));
742 _try_make_handle_noninheritable(GetStdHandle(STD_OUTPUT_HANDLE));
743 _try_make_handle_noninheritable(GetStdHandle(STD_ERROR_HANDLE));
744
745 STARTUPINFOW startup;
746 ZeroMemory( &startup, sizeof(startup) );
747 startup.cb = sizeof(startup);
748 startup.hStdInput = nul_read.get();
749 startup.hStdOutput = stdout_write.get();
750 startup.hStdError = stderr_write.get();
751 startup.dwFlags = STARTF_USESTDHANDLES;
752
753 // Verify that the pipe_write handle value can be passed on the command line
754 // as %d and that the rest of adb code can pass it around in an int.
755 const int ack_write_as_int = cast_handle_to_int(ack_write.get());
756 if (cast_int_to_handle(ack_write_as_int) != ack_write.get()) {
757 // If this fires, either handle values are larger than 32-bits or else
758 // there is a bug in our casting.
759 // https://msdn.microsoft.com/en-us/library/windows/desktop/aa384203%28v=vs.85%29.aspx
760 fprintf(stderr, "adb: cannot fit pipe handle value into 32-bits: 0x%p\n", ack_write.get());
761 return -1;
762 }
763
764 // get path of current program
765 WCHAR program_path[MAX_PATH];
766 const DWORD module_result = GetModuleFileNameW(NULL, program_path,
767 arraysize(program_path));
768 if ((module_result >= arraysize(program_path)) || (module_result == 0)) {
769 // String truncation or some other error.
770 fprintf(stderr, "adb: cannot get executable path: %s\n",
771 android::base::SystemErrorCodeToString(GetLastError()).c_str());
772 return -1;
773 }
774
775 WCHAR args[64];
776 snwprintf(args, arraysize(args), L"adb -L %s fork-server server --reply-fd %d",
777 socket_spec.c_str(), ack_write_as_int);
778
779 PROCESS_INFORMATION pinfo;
780 ZeroMemory(&pinfo, sizeof(pinfo));
781
782 if (!CreateProcessW(
783 program_path, /* program path */
784 args,
785 /* the fork-server argument will set the
786 debug = 2 in the child */
787 NULL, /* process handle is not inheritable */
788 NULL, /* thread handle is not inheritable */
789 TRUE, /* yes, inherit some handles */
790 DETACHED_PROCESS, /* the new process doesn't have a console */
791 NULL, /* use parent's environment block */
792 NULL, /* use parent's starting directory */
793 &startup, /* startup info, i.e. std handles */
794 &pinfo )) {
795 fprintf(stderr, "adb: CreateProcessW failed: %s\n",
796 android::base::SystemErrorCodeToString(GetLastError()).c_str());
797 return -1;
798 }
799
800 unique_handle process_handle(pinfo.hProcess);
801 pinfo.hProcess = NULL;
802
803 // Close handles that we no longer need to complete the rest.
804 CloseHandle(pinfo.hThread);
805 pinfo.hThread = NULL;
806
807 nul_read.reset();
808 ack_write.reset();
809 stdout_write.reset();
810 stderr_write.reset();
811
812 // Start threads to read from subprocess stdout/stderr and write to ours to make subprocess
813 // errors easier to diagnose. Note that the threads internally create inheritable handles, but
814 // that is ok because we've already spawned the subprocess.
815
816 // In the past, reading from a pipe before the child process's C Runtime
817 // started up and called GetFileType() caused a hang: http://blogs.msdn.com/b/oldnewthing/archive/2011/12/02/10243553.aspx#10244216
818 // This is reportedly fixed in Windows Vista: https://support.microsoft.com/en-us/kb/2009703
819 // I was unable to reproduce the problem on Windows XP. It sounds like a
820 // Windows Update may have fixed this: https://www.duckware.com/tech/peeknamedpipe.html
821 unique_handle stdout_thread(reinterpret_cast<HANDLE>(
822 _beginthreadex(NULL, 0, _redirect_stdout_thread, stdout_read.get(),
823 0, NULL)));
824 if (stdout_thread.get() == nullptr) {
825 fprintf(stderr, "adb: cannot create thread: %s\n", strerror(errno));
826 return -1;
827 }
828 stdout_read.release(); // Transfer ownership to new thread
829
830 unique_handle stderr_thread(reinterpret_cast<HANDLE>(
831 _beginthreadex(NULL, 0, _redirect_stderr_thread, stderr_read.get(),
832 0, NULL)));
833 if (stderr_thread.get() == nullptr) {
834 fprintf(stderr, "adb: cannot create thread: %s\n", strerror(errno));
835 return -1;
836 }
837 stderr_read.release(); // Transfer ownership to new thread
838
839 bool got_ack = false;
840
841 // Wait for the "OK\n" message, for the pipe to be closed, or other error.
842 {
843 char temp[3];
844 DWORD count = 0;
845
846 if (ReadFile(ack_read.get(), temp, sizeof(temp), &count, NULL)) {
847 const CHAR expected[] = "OK\n";
848 const DWORD expected_length = arraysize(expected) - 1;
849 if (count == expected_length &&
850 memcmp(temp, expected, expected_length) == 0) {
851 got_ack = true;
852 } else {
853 ReportServerStartupFailure(pinfo.dwProcessId);
854 return -1;
855 }
856 } else {
857 const DWORD err = GetLastError();
858 // If the ACK was not written and the process exited, GetLastError()
859 // is probably ERROR_BROKEN_PIPE, in which case that info is not
860 // useful to the user.
861 fprintf(stderr, "could not read ok from ADB Server%s\n",
862 err == ERROR_BROKEN_PIPE ? "" :
863 android::base::StringPrintf(": %s",
864 android::base::SystemErrorCodeToString(err).c_str()).c_str());
865 }
866 }
867
868 // Always try to wait a bit for threads reading stdout/stderr to finish.
869 // If the process started ok, it should close the pipes causing the threads
870 // to finish. If the process had an error, it should exit, also causing
871 // the pipes to be closed. In that case we want to read all of the output
872 // and write it out so that the user can diagnose failures.
873 const DWORD thread_timeout_ms = 15 * 1000;
874 const HANDLE threads[] = { stdout_thread.get(), stderr_thread.get() };
875 const DWORD wait_result = WaitForMultipleObjects(arraysize(threads),
876 threads, TRUE, thread_timeout_ms);
877 if (wait_result == WAIT_TIMEOUT) {
878 // Threads did not finish after waiting a little while. Perhaps the
879 // server didn't close pipes, or it is hung.
880 fprintf(stderr, "adb: timed out waiting for threads to finish reading from ADB server\n");
881 // Process handles are signaled when the process exits, so if we wait
882 // on the handle for 0 seconds and it returns 'timeout', that means that
883 // the process is still running.
884 if (WaitForSingleObject(process_handle.get(), 0) == WAIT_TIMEOUT) {
885 // We could TerminateProcess(), but that seems somewhat presumptive.
886 fprintf(stderr, "adb: server is running with process id %lu\n", pinfo.dwProcessId);
887 }
888 return -1;
889 }
890
891 if (wait_result != WAIT_OBJECT_0) {
892 fprintf(stderr, "adb: unexpected result waiting for threads: %lu: %s\n", wait_result,
893 android::base::SystemErrorCodeToString(GetLastError()).c_str());
894 return -1;
895 }
896
897 // For now ignore the thread exit codes and assume they worked properly.
898
899 if (!got_ack) {
900 return -1;
901 }
902 #else /* !defined(_WIN32) */
903 // set up a pipe so the child can tell us when it is ready.
904 unique_fd pipe_read, pipe_write;
905 if (!Pipe(&pipe_read, &pipe_write)) {
906 fprintf(stderr, "pipe failed in launch_server, errno: %d\n", errno);
907 return -1;
908 }
909
910 std::string path = android::base::GetExecutablePath();
911
912 pid_t pid = fork();
913 if (pid < 0) return -1;
914
915 if (pid == 0) {
916 // child side of the fork
917 pipe_read.reset();
918
919 // android::base::Pipe unconditionally opens the pipe with O_CLOEXEC.
920 // Undo this manually.
921 fcntl(pipe_write.get(), F_SETFD, 0);
922
923 char reply_fd[30];
924 snprintf(reply_fd, sizeof(reply_fd), "%d", pipe_write.get());
925 // child process
926 int result = execl(path.c_str(), "adb", "-L", socket_spec.c_str(), "fork-server", "server",
927 "--reply-fd", reply_fd, NULL);
928 // this should not return
929 fprintf(stderr, "adb: execl returned %d: %s\n", result, strerror(errno));
930 } else {
931 // parent side of the fork
932 char temp[3] = {};
933 // wait for the "OK\n" message
934 pipe_write.reset();
935 int ret = adb_read(pipe_read.get(), temp, 3);
936 int saved_errno = errno;
937 pipe_read.reset();
938 if (ret < 0) {
939 fprintf(stderr, "could not read ok from ADB Server, errno = %d\n", saved_errno);
940 return -1;
941 }
942 if (ret != 3 || temp[0] != 'O' || temp[1] != 'K' || temp[2] != '\n') {
943 ReportServerStartupFailure(pid);
944 return -1;
945 }
946 }
947 #endif /* !defined(_WIN32) */
948 return 0;
949 }
950 #endif /* ADB_HOST */
951
handle_forward_request(const char * service,atransport * transport,int reply_fd)952 bool handle_forward_request(const char* service, atransport* transport, int reply_fd) {
953 return handle_forward_request(service, [transport](std::string*) { return transport; },
954 reply_fd);
955 }
956
957 // Try to handle a network forwarding request.
handle_forward_request(const char * service,std::function<atransport * (std::string * error)> transport_acquirer,int reply_fd)958 bool handle_forward_request(const char* service,
959 std::function<atransport*(std::string* error)> transport_acquirer,
960 int reply_fd) {
961 if (!strcmp(service, "list-forward")) {
962 // Create the list of forward redirections.
963 std::string listeners = format_listeners();
964 #if ADB_HOST
965 SendOkay(reply_fd);
966 #endif
967 SendProtocolString(reply_fd, listeners);
968 return true;
969 }
970
971 if (!strcmp(service, "killforward-all")) {
972 remove_all_listeners();
973 #if ADB_HOST
974 /* On the host: 1st OKAY is connect, 2nd OKAY is status */
975 SendOkay(reply_fd);
976 #endif
977 SendOkay(reply_fd);
978 return true;
979 }
980
981 if (!strncmp(service, "forward:", 8) || !strncmp(service, "killforward:", 12)) {
982 // killforward:local
983 // forward:(norebind:)?local;remote
984 std::string error;
985 atransport* transport = transport_acquirer(&error);
986 if (!transport) {
987 SendFail(reply_fd, error);
988 return true;
989 }
990
991 bool kill_forward = false;
992 bool no_rebind = false;
993 if (android::base::StartsWith(service, "killforward:")) {
994 kill_forward = true;
995 service += 12;
996 } else {
997 service += 8; // skip past "forward:"
998 if (android::base::StartsWith(service, "norebind:")) {
999 no_rebind = true;
1000 service += 9;
1001 }
1002 }
1003
1004 std::vector<std::string> pieces = android::base::Split(service, ";");
1005
1006 if (kill_forward) {
1007 // Check killforward: parameter format: '<local>'
1008 if (pieces.size() != 1 || pieces[0].empty()) {
1009 SendFail(reply_fd, android::base::StringPrintf("bad killforward: %s", service));
1010 return true;
1011 }
1012 } else {
1013 // Check forward: parameter format: '<local>;<remote>'
1014 if (pieces.size() != 2 || pieces[0].empty() || pieces[1].empty() || pieces[1][0] == '*') {
1015 SendFail(reply_fd, android::base::StringPrintf("bad forward: %s", service));
1016 return true;
1017 }
1018 }
1019
1020 InstallStatus r;
1021 int resolved_tcp_port = 0;
1022 if (kill_forward) {
1023 r = remove_listener(pieces[0].c_str(), transport);
1024 } else {
1025 int flags = 0;
1026 if (no_rebind) {
1027 flags |= INSTALL_LISTENER_NO_REBIND;
1028 }
1029 r = install_listener(pieces[0], pieces[1].c_str(), transport, flags, &resolved_tcp_port,
1030 &error);
1031 }
1032 if (r == INSTALL_STATUS_OK) {
1033 #if ADB_HOST
1034 // On the host: 1st OKAY is connect, 2nd OKAY is status.
1035 SendOkay(reply_fd);
1036 #endif
1037 SendOkay(reply_fd);
1038
1039 // If a TCP port was resolved, send the actual port number back.
1040 if (resolved_tcp_port != 0) {
1041 SendProtocolString(reply_fd, android::base::StringPrintf("%d", resolved_tcp_port));
1042 }
1043
1044 return true;
1045 }
1046
1047 std::string message;
1048 switch (r) {
1049 case INSTALL_STATUS_OK: message = "success (!)"; break;
1050 case INSTALL_STATUS_INTERNAL_ERROR: message = "internal error"; break;
1051 case INSTALL_STATUS_CANNOT_BIND:
1052 message = android::base::StringPrintf("cannot bind listener: %s",
1053 error.c_str());
1054 break;
1055 case INSTALL_STATUS_CANNOT_REBIND:
1056 message = android::base::StringPrintf("cannot rebind existing socket");
1057 break;
1058 case INSTALL_STATUS_LISTENER_NOT_FOUND:
1059 message = android::base::StringPrintf("listener '%s' not found", service);
1060 break;
1061 }
1062 SendFail(reply_fd, message);
1063 return true;
1064 }
1065
1066 return false;
1067 }
1068
1069 #if ADB_HOST
SendOkay(int fd,const std::string & s)1070 static int SendOkay(int fd, const std::string& s) {
1071 SendOkay(fd);
1072 SendProtocolString(fd, s);
1073 return 0;
1074 }
1075
1076 static bool g_reject_kill_server = false;
adb_set_reject_kill_server(bool value)1077 void adb_set_reject_kill_server(bool value) {
1078 g_reject_kill_server = value;
1079 }
1080
handle_mdns_request(std::string_view service,int reply_fd)1081 static bool handle_mdns_request(std::string_view service, int reply_fd) {
1082 if (!android::base::ConsumePrefix(&service, "mdns:")) {
1083 return false;
1084 }
1085
1086 if (service == "check") {
1087 std::string check = mdns_check();
1088 SendOkay(reply_fd, check);
1089 return true;
1090 }
1091 if (service == "services") {
1092 std::string services_list = mdns_list_discovered_services();
1093 SendOkay(reply_fd, services_list);
1094 return true;
1095 }
1096
1097 return false;
1098 }
1099
handle_host_request(std::string_view service,TransportType type,const char * serial,TransportId transport_id,int reply_fd,asocket * s)1100 HostRequestResult handle_host_request(std::string_view service, TransportType type,
1101 const char* serial, TransportId transport_id, int reply_fd,
1102 asocket* s) {
1103 if (service == "kill") {
1104 if (g_reject_kill_server) {
1105 LOG(WARNING) << "adb server ignoring kill-server";
1106 SendFail(reply_fd, "kill-server rejected by remote server");
1107 } else {
1108 fprintf(stderr, "adb server killed by remote request\n");
1109 SendOkay(reply_fd);
1110
1111 // Rely on process exit to close the socket for us.
1112 exit(0);
1113 }
1114 }
1115
1116 LOG(DEBUG) << "handle_host_request(" << service << ")";
1117
1118 // Transport selection:
1119 if (service.starts_with("transport") || service.starts_with("tport:")) {
1120 TransportType type = kTransportAny;
1121
1122 std::string serial_storage;
1123 bool legacy = true;
1124
1125 // New transport selection protocol:
1126 // This is essentially identical to the previous version, except it returns the selected
1127 // transport id to the caller as well.
1128 if (android::base::ConsumePrefix(&service, "tport:")) {
1129 legacy = false;
1130 if (android::base::ConsumePrefix(&service, "serial:")) {
1131 serial_storage = service;
1132 serial = serial_storage.c_str();
1133 } else if (service == "usb") {
1134 type = kTransportUsb;
1135 } else if (service == "local") {
1136 type = kTransportLocal;
1137 } else if (service == "any") {
1138 type = kTransportAny;
1139 }
1140
1141 // Selection by id is unimplemented, since you obviously already know the transport id
1142 // you're connecting to.
1143 } else {
1144 if (android::base::ConsumePrefix(&service, "transport-id:")) {
1145 if (!ParseUint(&transport_id, service)) {
1146 SendFail(reply_fd, "invalid transport id");
1147 return HostRequestResult::Handled;
1148 }
1149 } else if (service == "transport-usb") {
1150 type = kTransportUsb;
1151 } else if (service == "transport-local") {
1152 type = kTransportLocal;
1153 } else if (service == "transport-any") {
1154 type = kTransportAny;
1155 } else if (android::base::ConsumePrefix(&service, "transport:")) {
1156 serial_storage = service;
1157 serial = serial_storage.c_str();
1158 }
1159 }
1160
1161 std::string error;
1162 atransport* t = acquire_one_transport(type, serial, transport_id, nullptr, &error);
1163 if (t != nullptr) {
1164 s->transport = t;
1165 SendOkay(reply_fd);
1166
1167 if (!legacy) {
1168 // Nothing we can do if this fails.
1169 WriteFdExactly(reply_fd, &t->id, sizeof(t->id));
1170 }
1171
1172 return HostRequestResult::SwitchedTransport;
1173 } else {
1174 SendFail(reply_fd, error);
1175 return HostRequestResult::Handled;
1176 }
1177 }
1178
1179 // return a list of all connected devices
1180 if (service == "devices" || service == "devices-l") {
1181 bool long_listing = service == "devices-l";
1182 D("Getting device list...");
1183 std::string device_list = list_transports(long_listing);
1184 D("Sending device list...");
1185 SendOkay(reply_fd, device_list);
1186 return HostRequestResult::Handled;
1187 }
1188
1189 if (service == "reconnect-offline") {
1190 std::string response;
1191 close_usb_devices([&response](const atransport* transport) {
1192 if (!ConnectionStateIsOnline(transport->GetConnectionState())) {
1193 response += "reconnecting " + transport->serial_name() + "\n";
1194 return true;
1195 }
1196 return false;
1197 }, true);
1198 if (!response.empty()) {
1199 response.resize(response.size() - 1);
1200 }
1201 SendOkay(reply_fd, response);
1202 return HostRequestResult::Handled;
1203 }
1204
1205 if (service == "features") {
1206 std::string error;
1207 atransport* t =
1208 s->transport ? s->transport
1209 : acquire_one_transport(type, serial, transport_id, nullptr, &error);
1210 if (t != nullptr) {
1211 SendOkay(reply_fd, FeatureSetToString(t->features()));
1212 } else {
1213 SendFail(reply_fd, error);
1214 }
1215 return HostRequestResult::Handled;
1216 }
1217
1218 if (service == "host-features") {
1219 FeatureSet features = supported_features();
1220 // Abuse features to report libusb status.
1221 if (should_use_libusb()) {
1222 features.emplace_back(kFeatureLibusb);
1223 }
1224 features.emplace_back(kFeaturePushSync);
1225 SendOkay(reply_fd, FeatureSetToString(features));
1226 return HostRequestResult::Handled;
1227 }
1228
1229 // remove TCP transport
1230 if (service.starts_with("disconnect:")) {
1231 std::string address(service.substr(11));
1232 if (address.empty()) {
1233 kick_all_tcp_devices();
1234 SendOkay(reply_fd, "disconnected everything");
1235 return HostRequestResult::Handled;
1236 }
1237
1238 std::string serial;
1239 std::string host;
1240 int port = DEFAULT_ADB_LOCAL_TRANSPORT_PORT;
1241 std::string error;
1242 if (address.starts_with("vsock:") || address.starts_with("localfilesystem:")) {
1243 serial = address;
1244 } else if (!android::base::ParseNetAddress(address, &host, &port, &serial, &error)) {
1245 SendFail(reply_fd, android::base::StringPrintf("couldn't parse '%s': %s",
1246 address.c_str(), error.c_str()));
1247 return HostRequestResult::Handled;
1248 }
1249 atransport* t = find_transport(serial.c_str());
1250 if (t == nullptr) {
1251 SendFail(reply_fd, android::base::StringPrintf("no such device '%s'", serial.c_str()));
1252 return HostRequestResult::Handled;
1253 }
1254 kick_transport(t);
1255 SendOkay(reply_fd, android::base::StringPrintf("disconnected %s", address.c_str()));
1256 return HostRequestResult::Handled;
1257 }
1258
1259 // Returns our value for ADB_SERVER_VERSION.
1260 if (service == "version") {
1261 SendOkay(reply_fd, android::base::StringPrintf("%04x", ADB_SERVER_VERSION));
1262 return HostRequestResult::Handled;
1263 }
1264
1265 // These always report "unknown" rather than the actual error, for scripts.
1266 if (service == "get-serialno") {
1267 std::string error;
1268 atransport* t =
1269 s->transport ? s->transport
1270 : acquire_one_transport(type, serial, transport_id, nullptr, &error);
1271 if (t) {
1272 SendOkay(reply_fd, !t->serial.empty() ? t->serial : "unknown");
1273 } else {
1274 SendFail(reply_fd, error);
1275 }
1276 return HostRequestResult::Handled;
1277 }
1278 if (service == "get-devpath") {
1279 std::string error;
1280 atransport* t =
1281 s->transport ? s->transport
1282 : acquire_one_transport(type, serial, transport_id, nullptr, &error);
1283 if (t) {
1284 SendOkay(reply_fd, !t->devpath.empty() ? t->devpath : "unknown");
1285 } else {
1286 SendFail(reply_fd, error);
1287 }
1288 return HostRequestResult::Handled;
1289 }
1290 if (service == "get-state") {
1291 std::string error;
1292 atransport* t =
1293 s->transport ? s->transport
1294 : acquire_one_transport(type, serial, transport_id, nullptr, &error);
1295 if (t) {
1296 SendOkay(reply_fd, t->connection_state_name());
1297 } else {
1298 SendFail(reply_fd, error);
1299 }
1300 return HostRequestResult::Handled;
1301 }
1302
1303 // Indicates a new emulator instance has started.
1304 if (android::base::ConsumePrefix(&service, "emulator:")) {
1305 unsigned int port;
1306 if (!ParseUint(&port, service)) {
1307 LOG(ERROR) << "received invalid port for emulator: " << service;
1308 } else {
1309 local_connect(port);
1310 }
1311
1312 /* we don't even need to send a reply */
1313 return HostRequestResult::Handled;
1314 }
1315
1316 if (service == "reconnect") {
1317 std::string response;
1318 atransport* t = s->transport ? s->transport
1319 : acquire_one_transport(type, serial, transport_id, nullptr,
1320 &response, true);
1321 if (t != nullptr) {
1322 kick_transport(t, true);
1323 response =
1324 "reconnecting " + t->serial_name() + " [" + t->connection_state_name() + "]\n";
1325 }
1326 SendOkay(reply_fd, response);
1327 return HostRequestResult::Handled;
1328 }
1329
1330 // TODO: Switch handle_forward_request to string_view.
1331 std::string service_str(service);
1332 auto transport_acquirer = [=](std::string* error) {
1333 if (s->transport) {
1334 return s->transport;
1335 } else {
1336 std::string error;
1337 return acquire_one_transport(type, serial, transport_id, nullptr, &error);
1338 }
1339 };
1340 if (handle_forward_request(service_str.c_str(), transport_acquirer, reply_fd)) {
1341 return HostRequestResult::Handled;
1342 }
1343
1344 if (handle_mdns_request(service, reply_fd)) {
1345 return HostRequestResult::Handled;
1346 }
1347
1348 return HostRequestResult::Unhandled;
1349 }
1350
1351 static auto& init_mutex = *new std::mutex();
1352 static auto& init_cv = *new std::condition_variable();
1353 static bool device_scan_complete = false;
1354 static bool transports_ready = false;
1355
update_transport_status()1356 void update_transport_status() {
1357 bool result = iterate_transports([](const atransport* t) {
1358 if (t->type == kTransportUsb && t->online != 1) {
1359 return false;
1360 }
1361 return true;
1362 });
1363
1364 bool ready;
1365 {
1366 std::lock_guard<std::mutex> lock(init_mutex);
1367 transports_ready = result;
1368 ready = transports_ready && device_scan_complete;
1369 }
1370
1371 if (ready) {
1372 init_cv.notify_all();
1373 }
1374 }
1375
adb_notify_device_scan_complete()1376 void adb_notify_device_scan_complete() {
1377 {
1378 std::lock_guard<std::mutex> lock(init_mutex);
1379 if (device_scan_complete) {
1380 return;
1381 }
1382
1383 device_scan_complete = true;
1384 }
1385
1386 update_transport_status();
1387 }
1388
adb_wait_for_device_initialization()1389 void adb_wait_for_device_initialization() {
1390 std::unique_lock<std::mutex> lock(init_mutex);
1391 init_cv.wait_for(lock, 3s, []() { return device_scan_complete && transports_ready; });
1392 }
1393
1394 #endif // ADB_HOST
1395