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Chris Lattner24943d22010-06-08 16:52:24 +00001//===-- GDBRemoteCommunication.cpp ------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10
11#include "GDBRemoteCommunication.h"
12
13// C Includes
14// C++ Includes
15// Other libraries and framework includes
16#include "lldb/Core/Args.h"
17#include "lldb/Core/ConnectionFileDescriptor.h"
18#include "lldb/Core/Log.h"
19#include "lldb/Core/State.h"
20#include "lldb/Core/StreamString.h"
21#include "lldb/Host/TimeValue.h"
22
23// Project includes
24#include "StringExtractorGDBRemote.h"
25#include "ProcessGDBRemote.h"
26#include "ProcessGDBRemoteLog.h"
27
28using namespace lldb;
29using namespace lldb_private;
30
31//----------------------------------------------------------------------
32// GDBRemoteCommunication constructor
33//----------------------------------------------------------------------
34GDBRemoteCommunication::GDBRemoteCommunication() :
35 Communication("gdb-remote.packets"),
36 m_send_acks (true),
37 m_rx_packet_listener ("gdbremote.rx_packet"),
38 m_sequence_mutex (Mutex::eMutexTypeRecursive),
39 m_is_running (false),
40 m_async_mutex (Mutex::eMutexTypeRecursive),
41 m_async_packet_predicate (false),
42 m_async_packet (),
43 m_async_response (),
44 m_async_timeout (UINT32_MAX),
45 m_async_signal (-1),
46 m_arch(),
47 m_os(),
48 m_vendor(),
49 m_byte_order(eByteOrderHost),
50 m_pointer_byte_size(0)
51{
52 m_rx_packet_listener.StartListeningForEvents(this,
53 Communication::eBroadcastBitPacketAvailable |
54 Communication::eBroadcastBitReadThreadDidExit);
55}
56
57//----------------------------------------------------------------------
58// Destructor
59//----------------------------------------------------------------------
60GDBRemoteCommunication::~GDBRemoteCommunication()
61{
62 m_rx_packet_listener.StopListeningForEvents(this,
63 Communication::eBroadcastBitPacketAvailable |
64 Communication::eBroadcastBitReadThreadDidExit);
65 if (IsConnected())
66 {
67 StopReadThread();
68 Disconnect();
69 }
70}
71
72
73char
74GDBRemoteCommunication::CalculcateChecksum (const char *payload, size_t payload_length)
75{
76 int checksum = 0;
77
78 // We only need to compute the checksum if we are sending acks
79 if (m_send_acks)
80 {
81 for (int i = 0; i < payload_length; ++i)
82 checksum += payload[i];
83 }
84 return checksum & 255;
85}
86
87size_t
88GDBRemoteCommunication::SendAck (char ack_char)
89{
90 Mutex::Locker locker(m_sequence_mutex);
91 ProcessGDBRemoteLog::LogIf (GDBR_LOG_PACKETS, "send packet: %c", ack_char);
92 ConnectionStatus status = eConnectionStatusSuccess;
93 return Write (&ack_char, 1, status, NULL) == 1;
94}
95
96size_t
97GDBRemoteCommunication::SendPacketAndWaitForResponse
98(
99 const char *payload,
100 StringExtractorGDBRemote &response,
101 uint32_t timeout_seconds,
102 bool send_async
103)
104{
105 return SendPacketAndWaitForResponse (payload,
106 ::strlen (payload),
107 response,
108 timeout_seconds,
109 send_async);
110}
111
112size_t
113GDBRemoteCommunication::SendPacketAndWaitForResponse
114(
115 const char *payload,
116 size_t payload_length,
117 StringExtractorGDBRemote &response,
118 uint32_t timeout_seconds,
119 bool send_async
120)
121{
122 Mutex::Locker locker;
123 TimeValue timeout_time;
124 timeout_time = TimeValue::Now();
125 timeout_time.OffsetWithSeconds (timeout_seconds);
126
127 if (locker.TryLock (m_sequence_mutex.GetMutex()))
128 {
129 if (SendPacketNoLock (payload, strlen(payload)))
130 return WaitForPacketNoLock (response, &timeout_time);
131 }
132 else
133 {
134 if (send_async)
135 {
136 Mutex::Locker async_locker (m_async_mutex);
137 m_async_packet.assign(payload, payload_length);
138 m_async_timeout = timeout_seconds;
139 m_async_packet_predicate.SetValue (true, eBroadcastNever);
140
141 bool timed_out = false;
142 if (SendInterrupt(1, &timed_out))
143 {
144 if (m_async_packet_predicate.WaitForValueEqualTo (false, &timeout_time, &timed_out))
145 {
146 response = m_async_response;
147 return response.GetStringRef().size();
148 }
149 }
150// if (timed_out)
151// m_error.SetErrorString("Timeout.");
152// else
153// m_error.SetErrorString("Unknown error.");
154 }
155 else
156 {
157// m_error.SetErrorString("Sequence mutex is locked.");
158 }
159 }
160 return 0;
161}
162
163//template<typename _Tp>
164//class ScopedValueChanger
165//{
166//public:
167// // Take a value reference and the value to assing it to when this class
168// // instance goes out of scope.
169// ScopedValueChanger (_Tp &value_ref, _Tp value) :
170// m_value_ref (value_ref),
171// m_value (value)
172// {
173// }
174//
175// // This object is going out of scope, change the value pointed to by
176// // m_value_ref to the value we got during construction which was stored in
177// // m_value;
178// ~ScopedValueChanger ()
179// {
180// m_value_ref = m_value;
181// }
182//protected:
183// _Tp &m_value_ref; // A reference to the value we wil change when this object destructs
184// _Tp m_value; // The value to assign to m_value_ref when this goes out of scope.
185//};
186
187StateType
188GDBRemoteCommunication::SendContinuePacketAndWaitForResponse
189(
190 ProcessGDBRemote *process,
191 const char *payload,
192 size_t packet_length,
193 StringExtractorGDBRemote &response
194)
195{
196 Log *log = ProcessGDBRemoteLog::GetLogIfAllCategoriesSet (GDBR_LOG_PROCESS);
197 if (log)
198 log->Printf ("GDBRemoteCommunication::%s ()", __FUNCTION__);
199
200 Mutex::Locker locker(m_sequence_mutex);
201 m_is_running.SetValue (true, eBroadcastNever);
202
203// ScopedValueChanger<bool> restore_running_to_false (m_is_running, false);
204 StateType state = eStateRunning;
205
206 if (SendPacket(payload, packet_length) == 0)
207 state = eStateInvalid;
208
209 while (state == eStateRunning)
210 {
211 if (log)
212 log->Printf ("GDBRemoteCommunication::%s () WaitForPacket(...)", __FUNCTION__);
213
214 if (WaitForPacket (response, (TimeValue*)NULL))
215 {
216 if (response.Empty())
217 state = eStateInvalid;
218 else
219 {
220 const char stop_type = response.GetChar();
221 if (log)
222 log->Printf ("GDBRemoteCommunication::%s () got '%c' packet", __FUNCTION__, stop_type);
223 switch (stop_type)
224 {
225 case 'T':
226 case 'S':
227 if (m_async_signal != -1)
228 {
229 // Save off the async signal we are supposed to send
230 const int async_signal = m_async_signal;
231 // Clear the async signal member so we don't end up
232 // sending the signal multiple times...
233 m_async_signal = -1;
234 // Check which signal we stopped with
235 uint8_t signo = response.GetHexU8(255);
236 if (signo == async_signal)
237 {
238 // We already stopped with a signal that we wanted
239 // to stop with, so we are done
240 response.SetFilePos (0);
241 }
242 else
243 {
244 // We stopped with a different signal that the one
245 // we wanted to stop with, so now we must resume
246 // with the signal we want
247 char signal_packet[32];
248 int signal_packet_len = 0;
249 signal_packet_len = ::snprintf (signal_packet,
250 sizeof (signal_packet),
251 "C%2.2x",
252 async_signal);
253
254 if (SendPacket(signal_packet, signal_packet_len) == 0)
255 {
256 state = eStateInvalid;
257 break;
258 }
259 else
260 continue;
261 }
262 }
263 else if (m_async_packet_predicate.GetValue())
264 {
265 // We are supposed to send an asynchronous packet while
266 // we are running.
267 m_async_response.Clear();
268 if (!m_async_packet.empty())
269 {
270 SendPacketAndWaitForResponse (m_async_packet.data(),
271 m_async_packet.size(),
272 m_async_response,
273 m_async_timeout,
274 false);
275 }
276 // Let the other thread that was trying to send the async
277 // packet know that the packet has been sent.
278 m_async_packet_predicate.SetValue(false, eBroadcastAlways);
279
280 // Continue again
281 if (SendPacket("c", 1) == 0)
282 {
283 state = eStateInvalid;
284 break;
285 }
286 else
287 continue;
288 }
289 // Stop with signal and thread info
290 state = eStateStopped;
291 break;
292
293 case 'W':
294 // process exited
295 state = eStateExited;
296 break;
297
298 case 'O':
299 // STDOUT
300 {
301 std::string inferior_stdout;
302 inferior_stdout.reserve(response.GetBytesLeft () / 2);
303 char ch;
304 while ((ch = response.GetHexU8()) != '\0')
305 inferior_stdout.append(1, ch);
306 process->AppendSTDOUT (inferior_stdout.c_str(), inferior_stdout.size());
307 }
308 break;
309
310 case 'E':
311 // ERROR
312 state = eStateInvalid;
313 break;
314
315 default:
316 if (log)
317 log->Printf ("GDBRemoteCommunication::%s () got unrecognized async packet: '%s'", __FUNCTION__, stop_type);
318 break;
319 }
320 }
321 }
322 else
323 {
324 if (log)
325 log->Printf ("GDBRemoteCommunication::%s () WaitForPacket(...) => false", __FUNCTION__);
326 state = eStateInvalid;
327 }
328 }
329 if (log)
330 log->Printf ("GDBRemoteCommunication::%s () => %s", __FUNCTION__, StateAsCString(state));
331 response.SetFilePos(0);
332 m_is_running.SetValue (false, eBroadcastOnChange);
333 return state;
334}
335
336size_t
337GDBRemoteCommunication::SendPacket (const char *payload)
338{
339 Mutex::Locker locker(m_sequence_mutex);
340 return SendPacketNoLock (payload, ::strlen (payload));
341}
342
343size_t
344GDBRemoteCommunication::SendPacket (const char *payload, size_t payload_length)
345{
346 Mutex::Locker locker(m_sequence_mutex);
347 return SendPacketNoLock (payload, payload_length);
348}
349
350size_t
351GDBRemoteCommunication::SendPacketNoLock (const char *payload, size_t payload_length)
352{
353 if (IsConnected())
354 {
355 StreamString packet(0, 4, eByteOrderBig);
356
357 packet.PutChar('$');
358 packet.Write (payload, payload_length);
359 packet.PutChar('#');
360 packet.PutHex8(CalculcateChecksum (payload, payload_length));
361
362 ProcessGDBRemoteLog::LogIf (GDBR_LOG_PACKETS, "send packet: %s", packet.GetData());
363 ConnectionStatus status = eConnectionStatusSuccess;
364 size_t bytes_written = Write (packet.GetData(), packet.GetSize(), status, NULL);
365 if (bytes_written == packet.GetSize())
366 {
367 if (m_send_acks)
368 GetAck (1) == '+';
369 }
370 return bytes_written;
371 }
372 //m_error.SetErrorString("Not connected.");
373 return 0;
374}
375
376char
377GDBRemoteCommunication::GetAck (uint32_t timeout_seconds)
378{
379 StringExtractorGDBRemote response;
380 if (WaitForPacket (response, timeout_seconds) == 1)
381 return response.GetChar();
382 return 0;
383}
384
385bool
386GDBRemoteCommunication::GetSequenceMutex (Mutex::Locker& locker)
387{
388 return locker.TryLock (m_sequence_mutex.GetMutex());
389}
390
391bool
392GDBRemoteCommunication::SendAsyncSignal (int signo)
393{
394 m_async_signal = signo;
395 bool timed_out = false;
396 if (SendInterrupt(1, &timed_out))
397 return true;
398 m_async_signal = -1;
399 return false;
400}
401
402bool
403GDBRemoteCommunication::SendInterrupt (uint32_t seconds_to_wait_for_stop, bool *timed_out)
404{
405 if (timed_out)
406 *timed_out = false;
407
408 if (IsConnected() && IsRunning())
409 {
410 // Only send an interrupt if our debugserver is running...
411 if (m_sequence_mutex.TryLock() != 0)
412 {
413 // Someone has the mutex locked waiting for a response or for the
414 // inferior to stop, so send the interrupt on the down low...
415 char ctrl_c = '\x03';
416 ConnectionStatus status = eConnectionStatusSuccess;
417 TimeValue timeout;
418 if (seconds_to_wait_for_stop)
419 {
420 timeout = TimeValue::Now();
421 timeout.OffsetWithSeconds (seconds_to_wait_for_stop);
422 }
423 ProcessGDBRemoteLog::LogIf (GDBR_LOG_PACKETS, "send packet: \\x03");
424 if (Write (&ctrl_c, 1, status, NULL) > 0)
425 {
426 if (seconds_to_wait_for_stop)
427 m_is_running.WaitForValueEqualTo (false, &timeout, timed_out);
428 return true;
429 }
430 }
431 }
432 return false;
433}
434
435size_t
436GDBRemoteCommunication::WaitForPacket (StringExtractorGDBRemote &response, uint32_t timeout_seconds)
437{
438 TimeValue timeout_time;
439 timeout_time = TimeValue::Now();
440 timeout_time.OffsetWithSeconds (timeout_seconds);
441 return WaitForPacketNoLock (response, &timeout_time);
442}
443
444size_t
445GDBRemoteCommunication::WaitForPacket (StringExtractorGDBRemote &response, TimeValue* timeout_time_ptr)
446{
447 Mutex::Locker locker(m_sequence_mutex);
448 return WaitForPacketNoLock (response, timeout_time_ptr);
449}
450
451size_t
452GDBRemoteCommunication::WaitForPacketNoLock (StringExtractorGDBRemote &response, TimeValue* timeout_time_ptr)
453{
454 bool checksum_error = false;
455 response.Clear ();
456
457 EventSP event_sp;
458
459 if (m_rx_packet_listener.WaitForEvent (timeout_time_ptr, event_sp))
460 {
461 const uint32_t event_type = event_sp->GetType();
462 if (event_type | Communication::eBroadcastBitPacketAvailable)
463 {
464 const EventDataBytes *event_bytes = EventDataBytes::GetEventDataFromEvent(event_sp.get());
465 if (event_bytes)
466 {
467 const char * packet_data = (const char *)event_bytes->GetBytes();
468 ProcessGDBRemoteLog::LogIf (GDBR_LOG_PACKETS, "read packet: %s", packet_data);
469 const size_t packet_size = event_bytes->GetByteSize();
470 if (packet_data && packet_size > 0)
471 {
472 std::string &response_str = response.GetStringRef();
473 if (packet_data[0] == '$')
474 {
475 assert (packet_size >= 4); // Must have at least '$#CC' where CC is checksum
476 assert (packet_data[packet_size-3] == '#');
477 assert (::isxdigit (packet_data[packet_size-2])); // Must be checksum hex byte
478 assert (::isxdigit (packet_data[packet_size-1])); // Must be checksum hex byte
479 response_str.assign (packet_data + 1, packet_size - 4);
480 if (m_send_acks)
481 {
482 char packet_checksum = strtol (&packet_data[packet_size-2], NULL, 16);
483 char actual_checksum = CalculcateChecksum (response_str.data(), response_str.size());
484 checksum_error = packet_checksum != actual_checksum;
485 // Send the ack or nack if needed
486 if (checksum_error)
487 SendAck('-');
488 else
489 SendAck('+');
490 }
491 }
492 else
493 {
494 response_str.assign (packet_data, packet_size);
495 }
496 return response_str.size();
497 }
498 }
499 }
500 else if (Communication::eBroadcastBitReadThreadDidExit)
501 {
502 // Our read thread exited on us so just fall through and return zero...
503 }
504 }
505 return 0;
506}
507
508void
509GDBRemoteCommunication::AppendBytesToCache (const uint8_t *src, size_t src_len, bool broadcast)
510{
511 // Put the packet data into the buffer in a thread safe fashion
512 Mutex::Locker locker(m_bytes_mutex);
513 m_bytes.append ((const char *)src, src_len);
514
515 // Parse up the packets into gdb remote packets
516 while (!m_bytes.empty())
517 {
518 // end_idx must be one past the last valid packet byte. Start
519 // it off with an invalid value that is the same as the current
520 // index.
521 size_t end_idx = 0;
522
523 switch (m_bytes[0])
524 {
525 case '+': // Look for ack
526 case '-': // Look for cancel
527 case '\x03': // ^C to halt target
528 end_idx = 1; // The command is one byte long...
529 break;
530
531 case '$':
532 // Look for a standard gdb packet?
533 end_idx = m_bytes.find('#');
534 if (end_idx != std::string::npos)
535 {
536 if (end_idx + 2 < m_bytes.size())
537 {
538 end_idx += 3;
539 }
540 else
541 {
542 // Checksum bytes aren't all here yet
543 end_idx = std::string::npos;
544 }
545 }
546 break;
547
548 default:
549 break;
550 }
551
552 if (end_idx == std::string::npos)
553 {
554 //ProcessGDBRemoteLog::LogIf (GDBR_LOG_PACKETS | GDBR_LOG_VERBOSE, "GDBRemoteCommunication::%s packet not yet complete: '%s'",__FUNCTION__, m_bytes.c_str());
555 return;
556 }
557 else if (end_idx > 0)
558 {
559 // We have a valid packet...
560 assert (end_idx <= m_bytes.size());
561 std::auto_ptr<EventDataBytes> event_bytes_ap (new EventDataBytes (&m_bytes[0], end_idx));
562 ProcessGDBRemoteLog::LogIf (GDBR_LOG_COMM, "got full packet: %s", event_bytes_ap->GetBytes());
563 BroadcastEvent (eBroadcastBitPacketAvailable, event_bytes_ap.release());
564 m_bytes.erase(0, end_idx);
565 }
566 else
567 {
568 assert (1 <= m_bytes.size());
569 ProcessGDBRemoteLog::LogIf (GDBR_LOG_COMM, "GDBRemoteCommunication::%s tossing junk byte at %c",__FUNCTION__, m_bytes[0]);
570 m_bytes.erase(0, 1);
571 }
572 }
573}
574
575lldb::pid_t
576GDBRemoteCommunication::GetCurrentProcessID (uint32_t timeout_seconds)
577{
578 StringExtractorGDBRemote response;
579 if (SendPacketAndWaitForResponse("qC", strlen("qC"), response, timeout_seconds, false))
580 {
581 if (response.GetChar() == 'Q')
582 if (response.GetChar() == 'C')
583 return response.GetHexMaxU32 (false, LLDB_INVALID_PROCESS_ID);
584 }
585 return LLDB_INVALID_PROCESS_ID;
586}
587
588bool
589GDBRemoteCommunication::GetLaunchSuccess (uint32_t timeout_seconds, std::string &error_str)
590{
591 error_str.clear();
592 StringExtractorGDBRemote response;
593 if (SendPacketAndWaitForResponse("qLaunchSuccess", strlen("qLaunchSuccess"), response, timeout_seconds, false))
594 {
595 if (response.IsOKPacket())
596 return true;
597 if (response.GetChar() == 'E')
598 {
599 // A string the describes what failed when launching...
600 error_str = response.GetStringRef().substr(1);
601 }
602 else
603 {
604 error_str.assign ("unknown error occurred launching process");
605 }
606 }
607 else
608 {
609 error_str.assign ("failed to send the qLaunchSuccess packet");
610 }
611 return false;
612}
613
614int
615GDBRemoteCommunication::SendArgumentsPacket (char const *argv[], uint32_t timeout_seconds)
616{
617 if (argv && argv[0])
618 {
619 StreamString packet;
620 packet.PutChar('A');
621 const char *arg;
622 for (uint32_t i = 0; (arg = argv[i]) != NULL; ++i)
623 {
624 const int arg_len = strlen(arg);
625 if (i > 0)
626 packet.PutChar(',');
627 packet.Printf("%i,%i,", arg_len * 2, i);
628 packet.PutBytesAsRawHex8(arg, arg_len, eByteOrderHost, eByteOrderHost);
629 }
630
631 StringExtractorGDBRemote response;
632 if (SendPacketAndWaitForResponse (packet.GetData(), packet.GetSize(), response, timeout_seconds, false))
633 {
634 if (response.IsOKPacket())
635 return 0;
636 uint8_t error = response.GetError();
637 if (error)
638 return error;
639 }
640 }
641 return -1;
642}
643
644int
645GDBRemoteCommunication::SendEnvironmentPacket (char const *name_equal_value, uint32_t timeout_seconds)
646{
647 if (name_equal_value && name_equal_value[0])
648 {
649 StreamString packet;
650 packet.Printf("QEnvironment:%s", name_equal_value);
651 StringExtractorGDBRemote response;
652 if (SendPacketAndWaitForResponse (packet.GetData(), packet.GetSize(), response, timeout_seconds, false))
653 {
654 if (response.IsOKPacket())
655 return 0;
656 uint8_t error = response.GetError();
657 if (error)
658 return error;
659 }
660 }
661 return -1;
662}
663
664bool
665GDBRemoteCommunication::GetHostInfo (uint32_t timeout_seconds)
666{
667 m_arch.Clear();
668 m_os.Clear();
669 m_vendor.Clear();
670 m_byte_order = eByteOrderHost;
671 m_pointer_byte_size = 0;
672
673 StringExtractorGDBRemote response;
674 if (SendPacketAndWaitForResponse ("qHostInfo", response, timeout_seconds, false))
675 {
676 if (response.IsUnsupportedPacket())
677 return false;
678
679
680 std::string name;
681 std::string value;
682 while (response.GetNameColonValue(name, value))
683 {
684 if (name.compare("cputype") == 0)
685 {
686 // exception type in big endian hex
687 m_arch.SetCPUType(Args::StringToUInt32 (value.c_str(), LLDB_INVALID_CPUTYPE, 0));
688 }
689 else if (name.compare("cpusubtype") == 0)
690 {
691 // exception count in big endian hex
692 m_arch.SetCPUSubtype(Args::StringToUInt32 (value.c_str(), 0, 0));
693 }
694 else if (name.compare("ostype") == 0)
695 {
696 // exception data in big endian hex
697 m_os.SetCString(value.c_str());
698 }
699 else if (name.compare("vendor") == 0)
700 {
701 m_vendor.SetCString(value.c_str());
702 }
703 else if (name.compare("endian") == 0)
704 {
705 if (value.compare("little") == 0)
706 m_byte_order = eByteOrderLittle;
707 else if (value.compare("big") == 0)
708 m_byte_order = eByteOrderBig;
709 else if (value.compare("pdp") == 0)
710 m_byte_order = eByteOrderPDP;
711 }
712 else if (name.compare("ptrsize") == 0)
713 {
714 m_pointer_byte_size = Args::StringToUInt32 (value.c_str(), 0, 0);
715 }
716 }
717 }
718 return HostInfoIsValid();
719}
720
721int
722GDBRemoteCommunication::SendAttach
723(
724 lldb::pid_t pid,
725 uint32_t timeout_seconds,
726 StringExtractorGDBRemote& response
727)
728{
729 if (pid != LLDB_INVALID_PROCESS_ID)
730 {
731 StreamString packet;
732 packet.Printf("vAttach;%x", pid);
733
734 if (SendPacketAndWaitForResponse (packet.GetData(), packet.GetSize(), response, timeout_seconds, false))
735 {
736 if (response.IsErrorPacket())
737 return response.GetError();
738 return 0;
739 }
740 }
741 return -1;
742}
743
744const lldb_private::ArchSpec &
745GDBRemoteCommunication::GetHostArchitecture ()
746{
747 if (!HostInfoIsValid ())
748 GetHostInfo (1);
749 return m_arch;
750}
751
752const lldb_private::ConstString &
753GDBRemoteCommunication::GetOSString ()
754{
755 if (!HostInfoIsValid ())
756 GetHostInfo (1);
757 return m_os;
758}
759
760const lldb_private::ConstString &
761GDBRemoteCommunication::GetVendorString()
762{
763 if (!HostInfoIsValid ())
764 GetHostInfo (1);
765 return m_vendor;
766}
767
768lldb::ByteOrder
769GDBRemoteCommunication::GetByteOrder ()
770{
771 if (!HostInfoIsValid ())
772 GetHostInfo (1);
773 return m_byte_order;
774}
775
776uint32_t
777GDBRemoteCommunication::GetAddressByteSize ()
778{
779 if (!HostInfoIsValid ())
780 GetHostInfo (1);
781 return m_pointer_byte_size;
782}
783
784addr_t
785GDBRemoteCommunication::AllocateMemory (size_t size, uint32_t permissions, uint32_t timeout_seconds)
786{
787 char packet[64];
788 ::snprintf (packet, sizeof(packet), "_M%zx,%s%s%s", size,
789 permissions & lldb::ePermissionsReadable ? "r" : "",
790 permissions & lldb::ePermissionsWritable ? "w" : "",
791 permissions & lldb::ePermissionsExecutable ? "x" : "");
792 StringExtractorGDBRemote response;
793 if (SendPacketAndWaitForResponse (packet, response, timeout_seconds, false))
794 {
795 if (!response.IsErrorPacket())
796 return response.GetHexMaxU64(false, LLDB_INVALID_ADDRESS);
797 }
798 return LLDB_INVALID_ADDRESS;
799}
800
801bool
802GDBRemoteCommunication::DeallocateMemory (addr_t addr, uint32_t timeout_seconds)
803{
804 char packet[64];
805 snprintf(packet, sizeof(packet), "_m%llx", (uint64_t)addr);
806 StringExtractorGDBRemote response;
807 if (SendPacketAndWaitForResponse (packet, response, timeout_seconds, false))
808 {
809 if (!response.IsOKPacket())
810 return true;
811 }
812 return false;
813}