1 /*
2 * Copyright (C) 2008 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 #include <errno.h>
18 #include <stdlib.h>
19 #include <sys/time.h>
20 #include <time.h>
21 #include <unistd.h>
22
23 #include "atomic.h"
24 #include "base/logging.h"
25 #include "debugger.h"
26 #include "jdwp/jdwp_priv.h"
27 #include "scoped_thread_state_change.h"
28
29 namespace art {
30
31 namespace JDWP {
32
33 static void* StartJdwpThread(void* arg);
34
35 /*
36 * JdwpNetStateBase class implementation
37 */
JdwpNetStateBase(JdwpState * state)38 JdwpNetStateBase::JdwpNetStateBase(JdwpState* state)
39 : state_(state), socket_lock_("JdwpNetStateBase lock", kJdwpSocketLock) {
40 clientSock = -1;
41 wake_pipe_[0] = -1;
42 wake_pipe_[1] = -1;
43 input_count_ = 0;
44 awaiting_handshake_ = false;
45 }
46
~JdwpNetStateBase()47 JdwpNetStateBase::~JdwpNetStateBase() {
48 if (wake_pipe_[0] != -1) {
49 close(wake_pipe_[0]);
50 wake_pipe_[0] = -1;
51 }
52 if (wake_pipe_[1] != -1) {
53 close(wake_pipe_[1]);
54 wake_pipe_[1] = -1;
55 }
56 }
57
MakePipe()58 bool JdwpNetStateBase::MakePipe() {
59 if (pipe(wake_pipe_) == -1) {
60 PLOG(ERROR) << "pipe failed";
61 return false;
62 }
63 return true;
64 }
65
WakePipe()66 void JdwpNetStateBase::WakePipe() {
67 // If we might be sitting in select, kick us loose.
68 if (wake_pipe_[1] != -1) {
69 VLOG(jdwp) << "+++ writing to wake pipe";
70 TEMP_FAILURE_RETRY(write(wake_pipe_[1], "", 1));
71 }
72 }
73
ConsumeBytes(size_t count)74 void JdwpNetStateBase::ConsumeBytes(size_t count) {
75 CHECK_GT(count, 0U);
76 CHECK_LE(count, input_count_);
77
78 if (count == input_count_) {
79 input_count_ = 0;
80 return;
81 }
82
83 memmove(input_buffer_, input_buffer_ + count, input_count_ - count);
84 input_count_ -= count;
85 }
86
HaveFullPacket()87 bool JdwpNetStateBase::HaveFullPacket() {
88 if (awaiting_handshake_) {
89 return (input_count_ >= kMagicHandshakeLen);
90 }
91 if (input_count_ < 4) {
92 return false;
93 }
94 uint32_t length = Get4BE(input_buffer_);
95 return (input_count_ >= length);
96 }
97
IsAwaitingHandshake()98 bool JdwpNetStateBase::IsAwaitingHandshake() {
99 return awaiting_handshake_;
100 }
101
SetAwaitingHandshake(bool new_state)102 void JdwpNetStateBase::SetAwaitingHandshake(bool new_state) {
103 awaiting_handshake_ = new_state;
104 }
105
IsConnected()106 bool JdwpNetStateBase::IsConnected() {
107 return clientSock >= 0;
108 }
109
110 // Close a connection from a debugger (which may have already dropped us).
111 // Resets the state so we're ready to receive a new connection.
112 // Only called from the JDWP thread.
Close()113 void JdwpNetStateBase::Close() {
114 if (clientSock < 0) {
115 return;
116 }
117
118 VLOG(jdwp) << "+++ closing JDWP connection on fd " << clientSock;
119
120 close(clientSock);
121 clientSock = -1;
122 }
123
124 /*
125 * Write a packet. Grabs a mutex to assure atomicity.
126 */
WritePacket(ExpandBuf * pReply)127 ssize_t JdwpNetStateBase::WritePacket(ExpandBuf* pReply) {
128 MutexLock mu(Thread::Current(), socket_lock_);
129 return TEMP_FAILURE_RETRY(write(clientSock, expandBufGetBuffer(pReply), expandBufGetLength(pReply)));
130 }
131
132 /*
133 * Write a buffered packet. Grabs a mutex to assure atomicity.
134 */
WriteBufferedPacket(const std::vector<iovec> & iov)135 ssize_t JdwpNetStateBase::WriteBufferedPacket(const std::vector<iovec>& iov) {
136 MutexLock mu(Thread::Current(), socket_lock_);
137 return TEMP_FAILURE_RETRY(writev(clientSock, &iov[0], iov.size()));
138 }
139
IsConnected()140 bool JdwpState::IsConnected() {
141 return netState != NULL && netState->IsConnected();
142 }
143
SendBufferedRequest(uint32_t type,const std::vector<iovec> & iov)144 void JdwpState::SendBufferedRequest(uint32_t type, const std::vector<iovec>& iov) {
145 if (netState->clientSock < 0) {
146 // Can happen with some DDMS events.
147 VLOG(jdwp) << "Not sending JDWP packet: no debugger attached!";
148 return;
149 }
150
151 size_t expected = 0;
152 for (size_t i = 0; i < iov.size(); ++i) {
153 expected += iov[i].iov_len;
154 }
155
156 errno = 0;
157 ssize_t actual = netState->WriteBufferedPacket(iov);
158 if (static_cast<size_t>(actual) != expected) {
159 PLOG(ERROR) << StringPrintf("Failed to send JDWP packet %c%c%c%c to debugger (%d of %d)",
160 static_cast<uint8_t>(type >> 24),
161 static_cast<uint8_t>(type >> 16),
162 static_cast<uint8_t>(type >> 8),
163 static_cast<uint8_t>(type),
164 actual, expected);
165 }
166 }
167
SendRequest(ExpandBuf * pReq)168 void JdwpState::SendRequest(ExpandBuf* pReq) {
169 if (netState->clientSock < 0) {
170 // Can happen with some DDMS events.
171 VLOG(jdwp) << "Not sending JDWP packet: no debugger attached!";
172 return;
173 }
174
175 errno = 0;
176 ssize_t actual = netState->WritePacket(pReq);
177 if (static_cast<size_t>(actual) != expandBufGetLength(pReq)) {
178 PLOG(ERROR) << StringPrintf("Failed to send JDWP packet to debugger (%d of %d)",
179 actual, expandBufGetLength(pReq));
180 }
181 }
182
183 /*
184 * Get the next "request" serial number. We use this when sending
185 * packets to the debugger.
186 */
NextRequestSerial()187 uint32_t JdwpState::NextRequestSerial() {
188 return request_serial_++;
189 }
190
191 /*
192 * Get the next "event" serial number. We use this in the response to
193 * message type EventRequest.Set.
194 */
NextEventSerial()195 uint32_t JdwpState::NextEventSerial() {
196 return event_serial_++;
197 }
198
JdwpState(const JdwpOptions * options)199 JdwpState::JdwpState(const JdwpOptions* options)
200 : options_(options),
201 thread_start_lock_("JDWP thread start lock", kJdwpStartLock),
202 thread_start_cond_("JDWP thread start condition variable", thread_start_lock_),
203 pthread_(0),
204 thread_(NULL),
205 debug_thread_started_(false),
206 debug_thread_id_(0),
207 run(false),
208 netState(NULL),
209 attach_lock_("JDWP attach lock", kJdwpAttachLock),
210 attach_cond_("JDWP attach condition variable", attach_lock_),
211 last_activity_time_ms_(0),
212 request_serial_(0x10000000),
213 event_serial_(0x20000000),
214 event_list_lock_("JDWP event list lock", kJdwpEventListLock),
215 event_list_(NULL),
216 event_list_size_(0),
217 event_thread_lock_("JDWP event thread lock"),
218 event_thread_cond_("JDWP event thread condition variable", event_thread_lock_),
219 event_thread_id_(0),
220 ddm_is_active_(false),
221 should_exit_(false),
222 exit_status_(0) {
223 }
224
225 /*
226 * Initialize JDWP.
227 *
228 * Does not return until JDWP thread is running, but may return before
229 * the thread is accepting network connections.
230 */
Create(const JdwpOptions * options)231 JdwpState* JdwpState::Create(const JdwpOptions* options) {
232 Thread* self = Thread::Current();
233 Locks::mutator_lock_->AssertNotHeld(self);
234 UniquePtr<JdwpState> state(new JdwpState(options));
235 switch (options->transport) {
236 case kJdwpTransportSocket:
237 InitSocketTransport(state.get(), options);
238 break;
239 #ifdef HAVE_ANDROID_OS
240 case kJdwpTransportAndroidAdb:
241 InitAdbTransport(state.get(), options);
242 break;
243 #endif
244 default:
245 LOG(FATAL) << "Unknown transport: " << options->transport;
246 }
247
248 if (!options->suspend) {
249 /*
250 * Grab a mutex before starting the thread. This ensures they
251 * won't signal the cond var before we're waiting.
252 */
253 MutexLock thread_start_locker(self, state->thread_start_lock_);
254 /*
255 * We have bound to a port, or are trying to connect outbound to a
256 * debugger. Create the JDWP thread and let it continue the mission.
257 */
258 CHECK_PTHREAD_CALL(pthread_create, (&state->pthread_, NULL, StartJdwpThread, state.get()), "JDWP thread");
259
260 /*
261 * Wait until the thread finishes basic initialization.
262 * TODO: cond vars should be waited upon in a loop
263 */
264 state->thread_start_cond_.Wait(self);
265 } else {
266 {
267 /*
268 * Grab a mutex before starting the thread. This ensures they
269 * won't signal the cond var before we're waiting.
270 */
271 MutexLock thread_start_locker(self, state->thread_start_lock_);
272 /*
273 * We have bound to a port, or are trying to connect outbound to a
274 * debugger. Create the JDWP thread and let it continue the mission.
275 */
276 CHECK_PTHREAD_CALL(pthread_create, (&state->pthread_, NULL, StartJdwpThread, state.get()), "JDWP thread");
277
278 /*
279 * Wait until the thread finishes basic initialization.
280 * TODO: cond vars should be waited upon in a loop
281 */
282 state->thread_start_cond_.Wait(self);
283 }
284
285 /*
286 * For suspend=y, wait for the debugger to connect to us or for us to
287 * connect to the debugger.
288 *
289 * The JDWP thread will signal us when it connects successfully or
290 * times out (for timeout=xxx), so we have to check to see what happened
291 * when we wake up.
292 */
293 {
294 ScopedThreadStateChange tsc(self, kWaitingForDebuggerToAttach);
295 MutexLock attach_locker(self, state->attach_lock_);
296 state->attach_cond_.Wait(self);
297 }
298 if (!state->IsActive()) {
299 LOG(ERROR) << "JDWP connection failed";
300 return NULL;
301 }
302
303 LOG(INFO) << "JDWP connected";
304
305 /*
306 * Ordinarily we would pause briefly to allow the debugger to set
307 * breakpoints and so on, but for "suspend=y" the VM init code will
308 * pause the VM when it sends the VM_START message.
309 */
310 }
311
312 return state.release();
313 }
314
315 /*
316 * Reset all session-related state. There should not be an active connection
317 * to the client at this point. The rest of the VM still thinks there is
318 * a debugger attached.
319 *
320 * This includes freeing up the debugger event list.
321 */
ResetState()322 void JdwpState::ResetState() {
323 /* could reset the serial numbers, but no need to */
324
325 UnregisterAll();
326 {
327 MutexLock mu(Thread::Current(), event_list_lock_);
328 CHECK(event_list_ == NULL);
329 }
330
331 /*
332 * Should not have one of these in progress. If the debugger went away
333 * mid-request, though, we could see this.
334 */
335 if (event_thread_id_ != 0) {
336 LOG(WARNING) << "Resetting state while event in progress";
337 DCHECK(false);
338 }
339 }
340
341 /*
342 * Tell the JDWP thread to shut down. Frees "state".
343 */
~JdwpState()344 JdwpState::~JdwpState() {
345 if (netState != NULL) {
346 if (IsConnected()) {
347 PostVMDeath();
348 }
349
350 /*
351 * Close down the network to inspire the thread to halt.
352 */
353 VLOG(jdwp) << "JDWP shutting down net...";
354 netState->Shutdown();
355
356 if (debug_thread_started_) {
357 run = false;
358 void* threadReturn;
359 if (pthread_join(pthread_, &threadReturn) != 0) {
360 LOG(WARNING) << "JDWP thread join failed";
361 }
362 }
363
364 VLOG(jdwp) << "JDWP freeing netstate...";
365 delete netState;
366 netState = NULL;
367 }
368 CHECK(netState == NULL);
369
370 ResetState();
371 }
372
373 /*
374 * Are we talking to a debugger?
375 */
IsActive()376 bool JdwpState::IsActive() {
377 return IsConnected();
378 }
379
380 // Returns "false" if we encounter a connection-fatal error.
HandlePacket()381 bool JdwpState::HandlePacket() {
382 JdwpNetStateBase* netStateBase = reinterpret_cast<JdwpNetStateBase*>(netState);
383 JDWP::Request request(netStateBase->input_buffer_, netStateBase->input_count_);
384
385 ExpandBuf* pReply = expandBufAlloc();
386 ProcessRequest(request, pReply);
387 ssize_t cc = netStateBase->WritePacket(pReply);
388 if (cc != (ssize_t) expandBufGetLength(pReply)) {
389 PLOG(ERROR) << "Failed sending reply to debugger";
390 expandBufFree(pReply);
391 return false;
392 }
393 expandBufFree(pReply);
394 netStateBase->ConsumeBytes(request.GetLength());
395 return true;
396 }
397
398 /*
399 * Entry point for JDWP thread. The thread was created through the VM
400 * mechanisms, so there is a java/lang/Thread associated with us.
401 */
StartJdwpThread(void * arg)402 static void* StartJdwpThread(void* arg) {
403 JdwpState* state = reinterpret_cast<JdwpState*>(arg);
404 CHECK(state != NULL);
405
406 state->Run();
407 return NULL;
408 }
409
Run()410 void JdwpState::Run() {
411 Runtime* runtime = Runtime::Current();
412 CHECK(runtime->AttachCurrentThread("JDWP", true, runtime->GetSystemThreadGroup(),
413 !runtime->IsCompiler()));
414
415 VLOG(jdwp) << "JDWP: thread running";
416
417 /*
418 * Finish initializing, then notify the creating thread that
419 * we're running.
420 */
421 thread_ = Thread::Current();
422 run = true;
423
424 {
425 MutexLock locker(thread_, thread_start_lock_);
426 debug_thread_started_ = true;
427 thread_start_cond_.Broadcast(thread_);
428 }
429
430 /* set the thread state to kWaitingInMainDebuggerLoop so GCs don't wait for us */
431 CHECK_EQ(thread_->GetState(), kNative);
432 Locks::mutator_lock_->AssertNotHeld(thread_);
433 thread_->SetState(kWaitingInMainDebuggerLoop);
434
435 /*
436 * Loop forever if we're in server mode, processing connections. In
437 * non-server mode, we bail out of the thread when the debugger drops
438 * us.
439 *
440 * We broadcast a notification when a debugger attaches, after we
441 * successfully process the handshake.
442 */
443 while (run) {
444 if (options_->server) {
445 /*
446 * Block forever, waiting for a connection. To support the
447 * "timeout=xxx" option we'll need to tweak this.
448 */
449 if (!netState->Accept()) {
450 break;
451 }
452 } else {
453 /*
454 * If we're not acting as a server, we need to connect out to the
455 * debugger. To support the "timeout=xxx" option we need to
456 * have a timeout if the handshake reply isn't received in a
457 * reasonable amount of time.
458 */
459 if (!netState->Establish(options_)) {
460 /* wake anybody who was waiting for us to succeed */
461 MutexLock mu(thread_, attach_lock_);
462 attach_cond_.Broadcast(thread_);
463 break;
464 }
465 }
466
467 /* prep debug code to handle the new connection */
468 Dbg::Connected();
469
470 /* process requests until the debugger drops */
471 bool first = true;
472 while (!Dbg::IsDisposed()) {
473 {
474 // sanity check -- shouldn't happen?
475 MutexLock mu(thread_, *Locks::thread_suspend_count_lock_);
476 CHECK_EQ(thread_->GetState(), kWaitingInMainDebuggerLoop);
477 }
478
479 if (!netState->ProcessIncoming()) {
480 /* blocking read */
481 break;
482 }
483
484 if (should_exit_) {
485 exit(exit_status_);
486 }
487
488 if (first && !netState->IsAwaitingHandshake()) {
489 /* handshake worked, tell the interpreter that we're active */
490 first = false;
491
492 /* set thread ID; requires object registry to be active */
493 {
494 ScopedObjectAccess soa(thread_);
495 debug_thread_id_ = Dbg::GetThreadSelfId();
496 }
497
498 /* wake anybody who's waiting for us */
499 MutexLock mu(thread_, attach_lock_);
500 attach_cond_.Broadcast(thread_);
501 }
502 }
503
504 netState->Close();
505
506 if (ddm_is_active_) {
507 ddm_is_active_ = false;
508
509 /* broadcast the disconnect; must be in RUNNING state */
510 thread_->TransitionFromSuspendedToRunnable();
511 Dbg::DdmDisconnected();
512 thread_->TransitionFromRunnableToSuspended(kWaitingInMainDebuggerLoop);
513 }
514
515 {
516 ScopedObjectAccess soa(thread_);
517
518 // Release session state, e.g. remove breakpoint instructions.
519 ResetState();
520 }
521 // Tell the rest of the runtime that the debugger is no longer around.
522 Dbg::Disconnected();
523
524 /* if we had threads suspended, resume them now */
525 Dbg::UndoDebuggerSuspensions();
526
527 /* if we connected out, this was a one-shot deal */
528 if (!options_->server) {
529 run = false;
530 }
531 }
532
533 /* back to native, for thread shutdown */
534 CHECK_EQ(thread_->GetState(), kWaitingInMainDebuggerLoop);
535 thread_->SetState(kNative);
536
537 VLOG(jdwp) << "JDWP: thread detaching and exiting...";
538 runtime->DetachCurrentThread();
539 }
540
NotifyDdmsActive()541 void JdwpState::NotifyDdmsActive() {
542 if (!ddm_is_active_) {
543 ddm_is_active_ = true;
544 Dbg::DdmConnected();
545 }
546 }
547
GetDebugThread()548 Thread* JdwpState::GetDebugThread() {
549 return thread_;
550 }
551
552 /*
553 * Support routines for waitForDebugger().
554 *
555 * We can't have a trivial "waitForDebugger" function that returns the
556 * instant the debugger connects, because we run the risk of executing code
557 * before the debugger has had a chance to configure breakpoints or issue
558 * suspend calls. It would be nice to just sit in the suspended state, but
559 * most debuggers don't expect any threads to be suspended when they attach.
560 *
561 * There's no JDWP event we can post to tell the debugger, "we've stopped,
562 * and we like it that way". We could send a fake breakpoint, which should
563 * cause the debugger to immediately send a resume, but the debugger might
564 * send the resume immediately or might throw an exception of its own upon
565 * receiving a breakpoint event that it didn't ask for.
566 *
567 * What we really want is a "wait until the debugger is done configuring
568 * stuff" event. We can approximate this with a "wait until the debugger
569 * has been idle for a brief period".
570 */
571
572 /*
573 * Return the time, in milliseconds, since the last debugger activity.
574 *
575 * Returns -1 if no debugger is attached, or 0 if we're in the middle of
576 * processing a debugger request.
577 */
LastDebuggerActivity()578 int64_t JdwpState::LastDebuggerActivity() {
579 if (!Dbg::IsDebuggerActive()) {
580 LOG(DEBUG) << "no active debugger";
581 return -1;
582 }
583
584 int64_t last = QuasiAtomic::Read64(&last_activity_time_ms_);
585
586 /* initializing or in the middle of something? */
587 if (last == 0) {
588 VLOG(jdwp) << "+++ last=busy";
589 return 0;
590 }
591
592 /* now get the current time */
593 int64_t now = MilliTime();
594 CHECK_GE(now, last);
595
596 VLOG(jdwp) << "+++ debugger interval=" << (now - last);
597 return now - last;
598 }
599
ExitAfterReplying(int exit_status)600 void JdwpState::ExitAfterReplying(int exit_status) {
601 LOG(WARNING) << "Debugger told VM to exit with status " << exit_status;
602 should_exit_ = true;
603 exit_status_ = exit_status;
604 }
605
operator <<(std::ostream & os,const JdwpLocation & rhs)606 std::ostream& operator<<(std::ostream& os, const JdwpLocation& rhs) {
607 os << "JdwpLocation["
608 << Dbg::GetClassName(rhs.class_id) << "." << Dbg::GetMethodName(rhs.method_id)
609 << "@" << StringPrintf("%#llx", rhs.dex_pc) << " " << rhs.type_tag << "]";
610 return os;
611 }
612
operator ==(const JdwpLocation & lhs,const JdwpLocation & rhs)613 bool operator==(const JdwpLocation& lhs, const JdwpLocation& rhs) {
614 return lhs.dex_pc == rhs.dex_pc && lhs.method_id == rhs.method_id &&
615 lhs.class_id == rhs.class_id && lhs.type_tag == rhs.type_tag;
616 }
617
operator !=(const JdwpLocation & lhs,const JdwpLocation & rhs)618 bool operator!=(const JdwpLocation& lhs, const JdwpLocation& rhs) {
619 return !(lhs == rhs);
620 }
621
622 } // namespace JDWP
623
624 } // namespace art
625