xref: /llvm-project/lldb/source/Plugins/Process/gdb-remote/GDBRemoteCommunicationClient.cpp (revision 6e1a0cf46bae77e1a83416f9479884cbb5e0164a)
1 //===-- GDBRemoteCommunicationClient.cpp ------------------------*- C++ -*-===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "GDBRemoteCommunicationClient.h"
10 
11 #include <math.h>
12 #include <sys/stat.h>
13 
14 #include <numeric>
15 #include <sstream>
16 
17 #include "lldb/Core/ModuleSpec.h"
18 #include "lldb/Host/HostInfo.h"
19 #include "lldb/Host/XML.h"
20 #include "lldb/Symbol/Symbol.h"
21 #include "lldb/Target/MemoryRegionInfo.h"
22 #include "lldb/Target/Target.h"
23 #include "lldb/Target/UnixSignals.h"
24 #include "lldb/Utility/Args.h"
25 #include "lldb/Utility/DataBufferHeap.h"
26 #include "lldb/Utility/LLDBAssert.h"
27 #include "lldb/Utility/Log.h"
28 #include "lldb/Utility/State.h"
29 #include "lldb/Utility/StreamString.h"
30 
31 #include "ProcessGDBRemote.h"
32 #include "ProcessGDBRemoteLog.h"
33 #include "lldb/Host/Config.h"
34 #include "lldb/Utility/StringExtractorGDBRemote.h"
35 
36 #include "llvm/ADT/StringSwitch.h"
37 #include "llvm/Support/JSON.h"
38 
39 #if defined(HAVE_LIBCOMPRESSION)
40 #include <compression.h>
41 #endif
42 
43 using namespace lldb;
44 using namespace lldb_private::process_gdb_remote;
45 using namespace lldb_private;
46 using namespace std::chrono;
47 
48 // GDBRemoteCommunicationClient constructor
49 GDBRemoteCommunicationClient::GDBRemoteCommunicationClient()
50     : GDBRemoteClientBase("gdb-remote.client", "gdb-remote.client.rx_packet"),
51       m_supports_not_sending_acks(eLazyBoolCalculate),
52       m_supports_thread_suffix(eLazyBoolCalculate),
53       m_supports_threads_in_stop_reply(eLazyBoolCalculate),
54       m_supports_vCont_all(eLazyBoolCalculate),
55       m_supports_vCont_any(eLazyBoolCalculate),
56       m_supports_vCont_c(eLazyBoolCalculate),
57       m_supports_vCont_C(eLazyBoolCalculate),
58       m_supports_vCont_s(eLazyBoolCalculate),
59       m_supports_vCont_S(eLazyBoolCalculate),
60       m_qHostInfo_is_valid(eLazyBoolCalculate),
61       m_curr_pid_is_valid(eLazyBoolCalculate),
62       m_qProcessInfo_is_valid(eLazyBoolCalculate),
63       m_qGDBServerVersion_is_valid(eLazyBoolCalculate),
64       m_supports_alloc_dealloc_memory(eLazyBoolCalculate),
65       m_supports_memory_region_info(eLazyBoolCalculate),
66       m_supports_watchpoint_support_info(eLazyBoolCalculate),
67       m_supports_detach_stay_stopped(eLazyBoolCalculate),
68       m_watchpoints_trigger_after_instruction(eLazyBoolCalculate),
69       m_attach_or_wait_reply(eLazyBoolCalculate),
70       m_prepare_for_reg_writing_reply(eLazyBoolCalculate),
71       m_supports_p(eLazyBoolCalculate), m_supports_x(eLazyBoolCalculate),
72       m_avoid_g_packets(eLazyBoolCalculate),
73       m_supports_QSaveRegisterState(eLazyBoolCalculate),
74       m_supports_qXfer_auxv_read(eLazyBoolCalculate),
75       m_supports_qXfer_libraries_read(eLazyBoolCalculate),
76       m_supports_qXfer_libraries_svr4_read(eLazyBoolCalculate),
77       m_supports_qXfer_features_read(eLazyBoolCalculate),
78       m_supports_qXfer_memory_map_read(eLazyBoolCalculate),
79       m_supports_augmented_libraries_svr4_read(eLazyBoolCalculate),
80       m_supports_jThreadExtendedInfo(eLazyBoolCalculate),
81       m_supports_jLoadedDynamicLibrariesInfos(eLazyBoolCalculate),
82       m_supports_jGetSharedCacheInfo(eLazyBoolCalculate),
83       m_supports_QPassSignals(eLazyBoolCalculate),
84       m_supports_error_string_reply(eLazyBoolCalculate),
85       m_supports_qProcessInfoPID(true), m_supports_qfProcessInfo(true),
86       m_supports_qUserName(true), m_supports_qGroupName(true),
87       m_supports_qThreadStopInfo(true), m_supports_z0(true),
88       m_supports_z1(true), m_supports_z2(true), m_supports_z3(true),
89       m_supports_z4(true), m_supports_QEnvironment(true),
90       m_supports_QEnvironmentHexEncoded(true), m_supports_qSymbol(true),
91       m_qSymbol_requests_done(false), m_supports_qModuleInfo(true),
92       m_supports_jThreadsInfo(true), m_supports_jModulesInfo(true),
93       m_curr_pid(LLDB_INVALID_PROCESS_ID), m_curr_tid(LLDB_INVALID_THREAD_ID),
94       m_curr_tid_run(LLDB_INVALID_THREAD_ID),
95       m_num_supported_hardware_watchpoints(0), m_host_arch(), m_process_arch(),
96       m_os_build(), m_os_kernel(), m_hostname(), m_gdb_server_name(),
97       m_gdb_server_version(UINT32_MAX), m_default_packet_timeout(0),
98       m_max_packet_size(0), m_qSupported_response(),
99       m_supported_async_json_packets_is_valid(false),
100       m_supported_async_json_packets_sp(), m_qXfer_memory_map(),
101       m_qXfer_memory_map_loaded(false) {}
102 
103 // Destructor
104 GDBRemoteCommunicationClient::~GDBRemoteCommunicationClient() {
105   if (IsConnected())
106     Disconnect();
107 }
108 
109 bool GDBRemoteCommunicationClient::HandshakeWithServer(Status *error_ptr) {
110   ResetDiscoverableSettings(false);
111 
112   // Start the read thread after we send the handshake ack since if we fail to
113   // send the handshake ack, there is no reason to continue...
114   if (SendAck()) {
115     // Wait for any responses that might have been queued up in the remote
116     // GDB server and flush them all
117     StringExtractorGDBRemote response;
118     PacketResult packet_result = PacketResult::Success;
119     while (packet_result == PacketResult::Success)
120       packet_result = ReadPacket(response, milliseconds(10), false);
121 
122     // The return value from QueryNoAckModeSupported() is true if the packet
123     // was sent and _any_ response (including UNIMPLEMENTED) was received), or
124     // false if no response was received. This quickly tells us if we have a
125     // live connection to a remote GDB server...
126     if (QueryNoAckModeSupported()) {
127       return true;
128     } else {
129       if (error_ptr)
130         error_ptr->SetErrorString("failed to get reply to handshake packet");
131     }
132   } else {
133     if (error_ptr)
134       error_ptr->SetErrorString("failed to send the handshake ack");
135   }
136   return false;
137 }
138 
139 bool GDBRemoteCommunicationClient::GetEchoSupported() {
140   if (m_supports_qEcho == eLazyBoolCalculate) {
141     GetRemoteQSupported();
142   }
143   return m_supports_qEcho == eLazyBoolYes;
144 }
145 
146 bool GDBRemoteCommunicationClient::GetQPassSignalsSupported() {
147   if (m_supports_QPassSignals == eLazyBoolCalculate) {
148     GetRemoteQSupported();
149   }
150   return m_supports_QPassSignals == eLazyBoolYes;
151 }
152 
153 bool GDBRemoteCommunicationClient::GetAugmentedLibrariesSVR4ReadSupported() {
154   if (m_supports_augmented_libraries_svr4_read == eLazyBoolCalculate) {
155     GetRemoteQSupported();
156   }
157   return m_supports_augmented_libraries_svr4_read == eLazyBoolYes;
158 }
159 
160 bool GDBRemoteCommunicationClient::GetQXferLibrariesSVR4ReadSupported() {
161   if (m_supports_qXfer_libraries_svr4_read == eLazyBoolCalculate) {
162     GetRemoteQSupported();
163   }
164   return m_supports_qXfer_libraries_svr4_read == eLazyBoolYes;
165 }
166 
167 bool GDBRemoteCommunicationClient::GetQXferLibrariesReadSupported() {
168   if (m_supports_qXfer_libraries_read == eLazyBoolCalculate) {
169     GetRemoteQSupported();
170   }
171   return m_supports_qXfer_libraries_read == eLazyBoolYes;
172 }
173 
174 bool GDBRemoteCommunicationClient::GetQXferAuxvReadSupported() {
175   if (m_supports_qXfer_auxv_read == eLazyBoolCalculate) {
176     GetRemoteQSupported();
177   }
178   return m_supports_qXfer_auxv_read == eLazyBoolYes;
179 }
180 
181 bool GDBRemoteCommunicationClient::GetQXferFeaturesReadSupported() {
182   if (m_supports_qXfer_features_read == eLazyBoolCalculate) {
183     GetRemoteQSupported();
184   }
185   return m_supports_qXfer_features_read == eLazyBoolYes;
186 }
187 
188 bool GDBRemoteCommunicationClient::GetQXferMemoryMapReadSupported() {
189   if (m_supports_qXfer_memory_map_read == eLazyBoolCalculate) {
190     GetRemoteQSupported();
191   }
192   return m_supports_qXfer_memory_map_read == eLazyBoolYes;
193 }
194 
195 uint64_t GDBRemoteCommunicationClient::GetRemoteMaxPacketSize() {
196   if (m_max_packet_size == 0) {
197     GetRemoteQSupported();
198   }
199   return m_max_packet_size;
200 }
201 
202 bool GDBRemoteCommunicationClient::QueryNoAckModeSupported() {
203   if (m_supports_not_sending_acks == eLazyBoolCalculate) {
204     m_send_acks = true;
205     m_supports_not_sending_acks = eLazyBoolNo;
206 
207     // This is the first real packet that we'll send in a debug session and it
208     // may take a little longer than normal to receive a reply.  Wait at least
209     // 6 seconds for a reply to this packet.
210 
211     ScopedTimeout timeout(*this, std::max(GetPacketTimeout(), seconds(6)));
212 
213     StringExtractorGDBRemote response;
214     if (SendPacketAndWaitForResponse("QStartNoAckMode", response, false) ==
215         PacketResult::Success) {
216       if (response.IsOKResponse()) {
217         m_send_acks = false;
218         m_supports_not_sending_acks = eLazyBoolYes;
219       }
220       return true;
221     }
222   }
223   return false;
224 }
225 
226 void GDBRemoteCommunicationClient::GetListThreadsInStopReplySupported() {
227   if (m_supports_threads_in_stop_reply == eLazyBoolCalculate) {
228     m_supports_threads_in_stop_reply = eLazyBoolNo;
229 
230     StringExtractorGDBRemote response;
231     if (SendPacketAndWaitForResponse("QListThreadsInStopReply", response,
232                                      false) == PacketResult::Success) {
233       if (response.IsOKResponse())
234         m_supports_threads_in_stop_reply = eLazyBoolYes;
235     }
236   }
237 }
238 
239 bool GDBRemoteCommunicationClient::GetVAttachOrWaitSupported() {
240   if (m_attach_or_wait_reply == eLazyBoolCalculate) {
241     m_attach_or_wait_reply = eLazyBoolNo;
242 
243     StringExtractorGDBRemote response;
244     if (SendPacketAndWaitForResponse("qVAttachOrWaitSupported", response,
245                                      false) == PacketResult::Success) {
246       if (response.IsOKResponse())
247         m_attach_or_wait_reply = eLazyBoolYes;
248     }
249   }
250   return m_attach_or_wait_reply == eLazyBoolYes;
251 }
252 
253 bool GDBRemoteCommunicationClient::GetSyncThreadStateSupported() {
254   if (m_prepare_for_reg_writing_reply == eLazyBoolCalculate) {
255     m_prepare_for_reg_writing_reply = eLazyBoolNo;
256 
257     StringExtractorGDBRemote response;
258     if (SendPacketAndWaitForResponse("qSyncThreadStateSupported", response,
259                                      false) == PacketResult::Success) {
260       if (response.IsOKResponse())
261         m_prepare_for_reg_writing_reply = eLazyBoolYes;
262     }
263   }
264   return m_prepare_for_reg_writing_reply == eLazyBoolYes;
265 }
266 
267 void GDBRemoteCommunicationClient::ResetDiscoverableSettings(bool did_exec) {
268   if (!did_exec) {
269     // Hard reset everything, this is when we first connect to a GDB server
270     m_supports_not_sending_acks = eLazyBoolCalculate;
271     m_supports_thread_suffix = eLazyBoolCalculate;
272     m_supports_threads_in_stop_reply = eLazyBoolCalculate;
273     m_supports_vCont_c = eLazyBoolCalculate;
274     m_supports_vCont_C = eLazyBoolCalculate;
275     m_supports_vCont_s = eLazyBoolCalculate;
276     m_supports_vCont_S = eLazyBoolCalculate;
277     m_supports_p = eLazyBoolCalculate;
278     m_supports_x = eLazyBoolCalculate;
279     m_supports_QSaveRegisterState = eLazyBoolCalculate;
280     m_qHostInfo_is_valid = eLazyBoolCalculate;
281     m_curr_pid_is_valid = eLazyBoolCalculate;
282     m_qGDBServerVersion_is_valid = eLazyBoolCalculate;
283     m_supports_alloc_dealloc_memory = eLazyBoolCalculate;
284     m_supports_memory_region_info = eLazyBoolCalculate;
285     m_prepare_for_reg_writing_reply = eLazyBoolCalculate;
286     m_attach_or_wait_reply = eLazyBoolCalculate;
287     m_avoid_g_packets = eLazyBoolCalculate;
288     m_supports_qXfer_auxv_read = eLazyBoolCalculate;
289     m_supports_qXfer_libraries_read = eLazyBoolCalculate;
290     m_supports_qXfer_libraries_svr4_read = eLazyBoolCalculate;
291     m_supports_qXfer_features_read = eLazyBoolCalculate;
292     m_supports_qXfer_memory_map_read = eLazyBoolCalculate;
293     m_supports_augmented_libraries_svr4_read = eLazyBoolCalculate;
294     m_supports_qProcessInfoPID = true;
295     m_supports_qfProcessInfo = true;
296     m_supports_qUserName = true;
297     m_supports_qGroupName = true;
298     m_supports_qThreadStopInfo = true;
299     m_supports_z0 = true;
300     m_supports_z1 = true;
301     m_supports_z2 = true;
302     m_supports_z3 = true;
303     m_supports_z4 = true;
304     m_supports_QEnvironment = true;
305     m_supports_QEnvironmentHexEncoded = true;
306     m_supports_qSymbol = true;
307     m_qSymbol_requests_done = false;
308     m_supports_qModuleInfo = true;
309     m_host_arch.Clear();
310     m_os_version = llvm::VersionTuple();
311     m_os_build.clear();
312     m_os_kernel.clear();
313     m_hostname.clear();
314     m_gdb_server_name.clear();
315     m_gdb_server_version = UINT32_MAX;
316     m_default_packet_timeout = seconds(0);
317     m_max_packet_size = 0;
318     m_qSupported_response.clear();
319     m_supported_async_json_packets_is_valid = false;
320     m_supported_async_json_packets_sp.reset();
321     m_supports_jModulesInfo = true;
322   }
323 
324   // These flags should be reset when we first connect to a GDB server and when
325   // our inferior process execs
326   m_qProcessInfo_is_valid = eLazyBoolCalculate;
327   m_process_arch.Clear();
328 }
329 
330 void GDBRemoteCommunicationClient::GetRemoteQSupported() {
331   // Clear out any capabilities we expect to see in the qSupported response
332   m_supports_qXfer_auxv_read = eLazyBoolNo;
333   m_supports_qXfer_libraries_read = eLazyBoolNo;
334   m_supports_qXfer_libraries_svr4_read = eLazyBoolNo;
335   m_supports_augmented_libraries_svr4_read = eLazyBoolNo;
336   m_supports_qXfer_features_read = eLazyBoolNo;
337   m_supports_qXfer_memory_map_read = eLazyBoolNo;
338   m_max_packet_size = UINT64_MAX; // It's supposed to always be there, but if
339                                   // not, we assume no limit
340 
341   // build the qSupported packet
342   std::vector<std::string> features = {"xmlRegisters=i386,arm,mips"};
343   StreamString packet;
344   packet.PutCString("qSupported");
345   for (uint32_t i = 0; i < features.size(); ++i) {
346     packet.PutCString(i == 0 ? ":" : ";");
347     packet.PutCString(features[i]);
348   }
349 
350   StringExtractorGDBRemote response;
351   if (SendPacketAndWaitForResponse(packet.GetString(), response,
352                                    /*send_async=*/false) ==
353       PacketResult::Success) {
354     const char *response_cstr = response.GetStringRef().data();
355 
356     // Hang on to the qSupported packet, so that platforms can do custom
357     // configuration of the transport before attaching/launching the process.
358     m_qSupported_response = response_cstr;
359 
360     if (::strstr(response_cstr, "qXfer:auxv:read+"))
361       m_supports_qXfer_auxv_read = eLazyBoolYes;
362     if (::strstr(response_cstr, "qXfer:libraries-svr4:read+"))
363       m_supports_qXfer_libraries_svr4_read = eLazyBoolYes;
364     if (::strstr(response_cstr, "augmented-libraries-svr4-read")) {
365       m_supports_qXfer_libraries_svr4_read = eLazyBoolYes; // implied
366       m_supports_augmented_libraries_svr4_read = eLazyBoolYes;
367     }
368     if (::strstr(response_cstr, "qXfer:libraries:read+"))
369       m_supports_qXfer_libraries_read = eLazyBoolYes;
370     if (::strstr(response_cstr, "qXfer:features:read+"))
371       m_supports_qXfer_features_read = eLazyBoolYes;
372     if (::strstr(response_cstr, "qXfer:memory-map:read+"))
373       m_supports_qXfer_memory_map_read = eLazyBoolYes;
374 
375     // Look for a list of compressions in the features list e.g.
376     // qXfer:features:read+;PacketSize=20000;qEcho+;SupportedCompressions=zlib-
377     // deflate,lzma
378     const char *features_list = ::strstr(response_cstr, "qXfer:features:");
379     if (features_list) {
380       const char *compressions =
381           ::strstr(features_list, "SupportedCompressions=");
382       if (compressions) {
383         std::vector<std::string> supported_compressions;
384         compressions += sizeof("SupportedCompressions=") - 1;
385         const char *end_of_compressions = strchr(compressions, ';');
386         if (end_of_compressions == nullptr) {
387           end_of_compressions = strchr(compressions, '\0');
388         }
389         const char *current_compression = compressions;
390         while (current_compression < end_of_compressions) {
391           const char *next_compression_name = strchr(current_compression, ',');
392           const char *end_of_this_word = next_compression_name;
393           if (next_compression_name == nullptr ||
394               end_of_compressions < next_compression_name) {
395             end_of_this_word = end_of_compressions;
396           }
397 
398           if (end_of_this_word) {
399             if (end_of_this_word == current_compression) {
400               current_compression++;
401             } else {
402               std::string this_compression(
403                   current_compression, end_of_this_word - current_compression);
404               supported_compressions.push_back(this_compression);
405               current_compression = end_of_this_word + 1;
406             }
407           } else {
408             supported_compressions.push_back(current_compression);
409             current_compression = end_of_compressions;
410           }
411         }
412 
413         if (supported_compressions.size() > 0) {
414           MaybeEnableCompression(supported_compressions);
415         }
416       }
417     }
418 
419     if (::strstr(response_cstr, "qEcho"))
420       m_supports_qEcho = eLazyBoolYes;
421     else
422       m_supports_qEcho = eLazyBoolNo;
423 
424     if (::strstr(response_cstr, "QPassSignals+"))
425       m_supports_QPassSignals = eLazyBoolYes;
426     else
427       m_supports_QPassSignals = eLazyBoolNo;
428 
429     const char *packet_size_str = ::strstr(response_cstr, "PacketSize=");
430     if (packet_size_str) {
431       StringExtractorGDBRemote packet_response(packet_size_str +
432                                                strlen("PacketSize="));
433       m_max_packet_size =
434           packet_response.GetHexMaxU64(/*little_endian=*/false, UINT64_MAX);
435       if (m_max_packet_size == 0) {
436         m_max_packet_size = UINT64_MAX; // Must have been a garbled response
437         Log *log(
438             ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
439         LLDB_LOGF(log, "Garbled PacketSize spec in qSupported response");
440       }
441     }
442   }
443 }
444 
445 bool GDBRemoteCommunicationClient::GetThreadSuffixSupported() {
446   if (m_supports_thread_suffix == eLazyBoolCalculate) {
447     StringExtractorGDBRemote response;
448     m_supports_thread_suffix = eLazyBoolNo;
449     if (SendPacketAndWaitForResponse("QThreadSuffixSupported", response,
450                                      false) == PacketResult::Success) {
451       if (response.IsOKResponse())
452         m_supports_thread_suffix = eLazyBoolYes;
453     }
454   }
455   return m_supports_thread_suffix;
456 }
457 bool GDBRemoteCommunicationClient::GetVContSupported(char flavor) {
458   if (m_supports_vCont_c == eLazyBoolCalculate) {
459     StringExtractorGDBRemote response;
460     m_supports_vCont_any = eLazyBoolNo;
461     m_supports_vCont_all = eLazyBoolNo;
462     m_supports_vCont_c = eLazyBoolNo;
463     m_supports_vCont_C = eLazyBoolNo;
464     m_supports_vCont_s = eLazyBoolNo;
465     m_supports_vCont_S = eLazyBoolNo;
466     if (SendPacketAndWaitForResponse("vCont?", response, false) ==
467         PacketResult::Success) {
468       const char *response_cstr = response.GetStringRef().data();
469       if (::strstr(response_cstr, ";c"))
470         m_supports_vCont_c = eLazyBoolYes;
471 
472       if (::strstr(response_cstr, ";C"))
473         m_supports_vCont_C = eLazyBoolYes;
474 
475       if (::strstr(response_cstr, ";s"))
476         m_supports_vCont_s = eLazyBoolYes;
477 
478       if (::strstr(response_cstr, ";S"))
479         m_supports_vCont_S = eLazyBoolYes;
480 
481       if (m_supports_vCont_c == eLazyBoolYes &&
482           m_supports_vCont_C == eLazyBoolYes &&
483           m_supports_vCont_s == eLazyBoolYes &&
484           m_supports_vCont_S == eLazyBoolYes) {
485         m_supports_vCont_all = eLazyBoolYes;
486       }
487 
488       if (m_supports_vCont_c == eLazyBoolYes ||
489           m_supports_vCont_C == eLazyBoolYes ||
490           m_supports_vCont_s == eLazyBoolYes ||
491           m_supports_vCont_S == eLazyBoolYes) {
492         m_supports_vCont_any = eLazyBoolYes;
493       }
494     }
495   }
496 
497   switch (flavor) {
498   case 'a':
499     return m_supports_vCont_any;
500   case 'A':
501     return m_supports_vCont_all;
502   case 'c':
503     return m_supports_vCont_c;
504   case 'C':
505     return m_supports_vCont_C;
506   case 's':
507     return m_supports_vCont_s;
508   case 'S':
509     return m_supports_vCont_S;
510   default:
511     break;
512   }
513   return false;
514 }
515 
516 GDBRemoteCommunication::PacketResult
517 GDBRemoteCommunicationClient::SendThreadSpecificPacketAndWaitForResponse(
518     lldb::tid_t tid, StreamString &&payload, StringExtractorGDBRemote &response,
519     bool send_async) {
520   Lock lock(*this, send_async);
521   if (!lock) {
522     if (Log *log = ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(
523             GDBR_LOG_PROCESS | GDBR_LOG_PACKETS))
524       LLDB_LOGF(log,
525                 "GDBRemoteCommunicationClient::%s: Didn't get sequence mutex "
526                 "for %s packet.",
527                 __FUNCTION__, payload.GetData());
528     return PacketResult::ErrorNoSequenceLock;
529   }
530 
531   if (GetThreadSuffixSupported())
532     payload.Printf(";thread:%4.4" PRIx64 ";", tid);
533   else {
534     if (!SetCurrentThread(tid))
535       return PacketResult::ErrorSendFailed;
536   }
537 
538   return SendPacketAndWaitForResponseNoLock(payload.GetString(), response);
539 }
540 
541 // Check if the target supports 'p' packet. It sends out a 'p' packet and
542 // checks the response. A normal packet will tell us that support is available.
543 //
544 // Takes a valid thread ID because p needs to apply to a thread.
545 bool GDBRemoteCommunicationClient::GetpPacketSupported(lldb::tid_t tid) {
546   if (m_supports_p == eLazyBoolCalculate) {
547     m_supports_p = eLazyBoolNo;
548     StreamString payload;
549     payload.PutCString("p0");
550     StringExtractorGDBRemote response;
551     if (SendThreadSpecificPacketAndWaitForResponse(tid, std::move(payload),
552                                                    response, false) ==
553             PacketResult::Success &&
554         response.IsNormalResponse()) {
555       m_supports_p = eLazyBoolYes;
556     }
557   }
558   return m_supports_p;
559 }
560 
561 StructuredData::ObjectSP GDBRemoteCommunicationClient::GetThreadsInfo() {
562   // Get information on all threads at one using the "jThreadsInfo" packet
563   StructuredData::ObjectSP object_sp;
564 
565   if (m_supports_jThreadsInfo) {
566     StringExtractorGDBRemote response;
567     response.SetResponseValidatorToJSON();
568     if (SendPacketAndWaitForResponse("jThreadsInfo", response, false) ==
569         PacketResult::Success) {
570       if (response.IsUnsupportedResponse()) {
571         m_supports_jThreadsInfo = false;
572       } else if (!response.Empty()) {
573         object_sp = StructuredData::ParseJSON(response.GetStringRef());
574       }
575     }
576   }
577   return object_sp;
578 }
579 
580 bool GDBRemoteCommunicationClient::GetThreadExtendedInfoSupported() {
581   if (m_supports_jThreadExtendedInfo == eLazyBoolCalculate) {
582     StringExtractorGDBRemote response;
583     m_supports_jThreadExtendedInfo = eLazyBoolNo;
584     if (SendPacketAndWaitForResponse("jThreadExtendedInfo:", response, false) ==
585         PacketResult::Success) {
586       if (response.IsOKResponse()) {
587         m_supports_jThreadExtendedInfo = eLazyBoolYes;
588       }
589     }
590   }
591   return m_supports_jThreadExtendedInfo;
592 }
593 
594 void GDBRemoteCommunicationClient::EnableErrorStringInPacket() {
595   if (m_supports_error_string_reply == eLazyBoolCalculate) {
596     StringExtractorGDBRemote response;
597     // We try to enable error strings in remote packets but if we fail, we just
598     // work in the older way.
599     m_supports_error_string_reply = eLazyBoolNo;
600     if (SendPacketAndWaitForResponse("QEnableErrorStrings", response, false) ==
601         PacketResult::Success) {
602       if (response.IsOKResponse()) {
603         m_supports_error_string_reply = eLazyBoolYes;
604       }
605     }
606   }
607 }
608 
609 bool GDBRemoteCommunicationClient::GetLoadedDynamicLibrariesInfosSupported() {
610   if (m_supports_jLoadedDynamicLibrariesInfos == eLazyBoolCalculate) {
611     StringExtractorGDBRemote response;
612     m_supports_jLoadedDynamicLibrariesInfos = eLazyBoolNo;
613     if (SendPacketAndWaitForResponse("jGetLoadedDynamicLibrariesInfos:",
614                                      response,
615                                      false) == PacketResult::Success) {
616       if (response.IsOKResponse()) {
617         m_supports_jLoadedDynamicLibrariesInfos = eLazyBoolYes;
618       }
619     }
620   }
621   return m_supports_jLoadedDynamicLibrariesInfos;
622 }
623 
624 bool GDBRemoteCommunicationClient::GetSharedCacheInfoSupported() {
625   if (m_supports_jGetSharedCacheInfo == eLazyBoolCalculate) {
626     StringExtractorGDBRemote response;
627     m_supports_jGetSharedCacheInfo = eLazyBoolNo;
628     if (SendPacketAndWaitForResponse("jGetSharedCacheInfo:", response, false) ==
629         PacketResult::Success) {
630       if (response.IsOKResponse()) {
631         m_supports_jGetSharedCacheInfo = eLazyBoolYes;
632       }
633     }
634   }
635   return m_supports_jGetSharedCacheInfo;
636 }
637 
638 bool GDBRemoteCommunicationClient::GetxPacketSupported() {
639   if (m_supports_x == eLazyBoolCalculate) {
640     StringExtractorGDBRemote response;
641     m_supports_x = eLazyBoolNo;
642     char packet[256];
643     snprintf(packet, sizeof(packet), "x0,0");
644     if (SendPacketAndWaitForResponse(packet, response, false) ==
645         PacketResult::Success) {
646       if (response.IsOKResponse())
647         m_supports_x = eLazyBoolYes;
648     }
649   }
650   return m_supports_x;
651 }
652 
653 GDBRemoteCommunicationClient::PacketResult
654 GDBRemoteCommunicationClient::SendPacketsAndConcatenateResponses(
655     const char *payload_prefix, std::string &response_string) {
656   Lock lock(*this, false);
657   if (!lock) {
658     Log *log(ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(GDBR_LOG_PROCESS |
659                                                            GDBR_LOG_PACKETS));
660     LLDB_LOGF(log,
661               "error: failed to get packet sequence mutex, not sending "
662               "packets with prefix '%s'",
663               payload_prefix);
664     return PacketResult::ErrorNoSequenceLock;
665   }
666 
667   response_string = "";
668   std::string payload_prefix_str(payload_prefix);
669   unsigned int response_size = 0x1000;
670   if (response_size > GetRemoteMaxPacketSize()) { // May send qSupported packet
671     response_size = GetRemoteMaxPacketSize();
672   }
673 
674   for (unsigned int offset = 0; true; offset += response_size) {
675     StringExtractorGDBRemote this_response;
676     // Construct payload
677     char sizeDescriptor[128];
678     snprintf(sizeDescriptor, sizeof(sizeDescriptor), "%x,%x", offset,
679              response_size);
680     PacketResult result = SendPacketAndWaitForResponseNoLock(
681         payload_prefix_str + sizeDescriptor, this_response);
682     if (result != PacketResult::Success)
683       return result;
684 
685     const std::string &this_string = this_response.GetStringRef();
686 
687     // Check for m or l as first character; l seems to mean this is the last
688     // chunk
689     char first_char = *this_string.c_str();
690     if (first_char != 'm' && first_char != 'l') {
691       return PacketResult::ErrorReplyInvalid;
692     }
693     // Concatenate the result so far (skipping 'm' or 'l')
694     response_string.append(this_string, 1, std::string::npos);
695     if (first_char == 'l')
696       // We're done
697       return PacketResult::Success;
698   }
699 }
700 
701 lldb::pid_t GDBRemoteCommunicationClient::GetCurrentProcessID(bool allow_lazy) {
702   if (allow_lazy && m_curr_pid_is_valid == eLazyBoolYes)
703     return m_curr_pid;
704 
705   // First try to retrieve the pid via the qProcessInfo request.
706   GetCurrentProcessInfo(allow_lazy);
707   if (m_curr_pid_is_valid == eLazyBoolYes) {
708     // We really got it.
709     return m_curr_pid;
710   } else {
711     // If we don't get a response for qProcessInfo, check if $qC gives us a
712     // result. $qC only returns a real process id on older debugserver and
713     // lldb-platform stubs. The gdb remote protocol documents $qC as returning
714     // the thread id, which newer debugserver and lldb-gdbserver stubs return
715     // correctly.
716     StringExtractorGDBRemote response;
717     if (SendPacketAndWaitForResponse("qC", response, false) ==
718         PacketResult::Success) {
719       if (response.GetChar() == 'Q') {
720         if (response.GetChar() == 'C') {
721           m_curr_pid = response.GetHexMaxU32(false, LLDB_INVALID_PROCESS_ID);
722           if (m_curr_pid != LLDB_INVALID_PROCESS_ID) {
723             m_curr_pid_is_valid = eLazyBoolYes;
724             return m_curr_pid;
725           }
726         }
727       }
728     }
729 
730     // If we don't get a response for $qC, check if $qfThreadID gives us a
731     // result.
732     if (m_curr_pid == LLDB_INVALID_PROCESS_ID) {
733       std::vector<lldb::tid_t> thread_ids;
734       bool sequence_mutex_unavailable;
735       size_t size;
736       size = GetCurrentThreadIDs(thread_ids, sequence_mutex_unavailable);
737       if (size && !sequence_mutex_unavailable) {
738         m_curr_pid = thread_ids.front();
739         m_curr_pid_is_valid = eLazyBoolYes;
740         return m_curr_pid;
741       }
742     }
743   }
744 
745   return LLDB_INVALID_PROCESS_ID;
746 }
747 
748 bool GDBRemoteCommunicationClient::GetLaunchSuccess(std::string &error_str) {
749   error_str.clear();
750   StringExtractorGDBRemote response;
751   if (SendPacketAndWaitForResponse("qLaunchSuccess", response, false) ==
752       PacketResult::Success) {
753     if (response.IsOKResponse())
754       return true;
755     if (response.GetChar() == 'E') {
756       // A string the describes what failed when launching...
757       error_str = response.GetStringRef().substr(1);
758     } else {
759       error_str.assign("unknown error occurred launching process");
760     }
761   } else {
762     error_str.assign("timed out waiting for app to launch");
763   }
764   return false;
765 }
766 
767 int GDBRemoteCommunicationClient::SendArgumentsPacket(
768     const ProcessLaunchInfo &launch_info) {
769   // Since we don't get the send argv0 separate from the executable path, we
770   // need to make sure to use the actual executable path found in the
771   // launch_info...
772   std::vector<const char *> argv;
773   FileSpec exe_file = launch_info.GetExecutableFile();
774   std::string exe_path;
775   const char *arg = nullptr;
776   const Args &launch_args = launch_info.GetArguments();
777   if (exe_file)
778     exe_path = exe_file.GetPath(false);
779   else {
780     arg = launch_args.GetArgumentAtIndex(0);
781     if (arg)
782       exe_path = arg;
783   }
784   if (!exe_path.empty()) {
785     argv.push_back(exe_path.c_str());
786     for (uint32_t i = 1; (arg = launch_args.GetArgumentAtIndex(i)) != nullptr;
787          ++i) {
788       if (arg)
789         argv.push_back(arg);
790     }
791   }
792   if (!argv.empty()) {
793     StreamString packet;
794     packet.PutChar('A');
795     for (size_t i = 0, n = argv.size(); i < n; ++i) {
796       arg = argv[i];
797       const int arg_len = strlen(arg);
798       if (i > 0)
799         packet.PutChar(',');
800       packet.Printf("%i,%i,", arg_len * 2, (int)i);
801       packet.PutBytesAsRawHex8(arg, arg_len);
802     }
803 
804     StringExtractorGDBRemote response;
805     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
806         PacketResult::Success) {
807       if (response.IsOKResponse())
808         return 0;
809       uint8_t error = response.GetError();
810       if (error)
811         return error;
812     }
813   }
814   return -1;
815 }
816 
817 int GDBRemoteCommunicationClient::SendEnvironment(const Environment &env) {
818   for (const auto &KV : env) {
819     int r = SendEnvironmentPacket(Environment::compose(KV).c_str());
820     if (r != 0)
821       return r;
822   }
823   return 0;
824 }
825 
826 int GDBRemoteCommunicationClient::SendEnvironmentPacket(
827     char const *name_equal_value) {
828   if (name_equal_value && name_equal_value[0]) {
829     StreamString packet;
830     bool send_hex_encoding = false;
831     for (const char *p = name_equal_value; *p != '\0' && !send_hex_encoding;
832          ++p) {
833       if (isprint(*p)) {
834         switch (*p) {
835         case '$':
836         case '#':
837         case '*':
838         case '}':
839           send_hex_encoding = true;
840           break;
841         default:
842           break;
843         }
844       } else {
845         // We have non printable characters, lets hex encode this...
846         send_hex_encoding = true;
847       }
848     }
849 
850     StringExtractorGDBRemote response;
851     if (send_hex_encoding) {
852       if (m_supports_QEnvironmentHexEncoded) {
853         packet.PutCString("QEnvironmentHexEncoded:");
854         packet.PutBytesAsRawHex8(name_equal_value, strlen(name_equal_value));
855         if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
856             PacketResult::Success) {
857           if (response.IsOKResponse())
858             return 0;
859           uint8_t error = response.GetError();
860           if (error)
861             return error;
862           if (response.IsUnsupportedResponse())
863             m_supports_QEnvironmentHexEncoded = false;
864         }
865       }
866 
867     } else if (m_supports_QEnvironment) {
868       packet.Printf("QEnvironment:%s", name_equal_value);
869       if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
870           PacketResult::Success) {
871         if (response.IsOKResponse())
872           return 0;
873         uint8_t error = response.GetError();
874         if (error)
875           return error;
876         if (response.IsUnsupportedResponse())
877           m_supports_QEnvironment = false;
878       }
879     }
880   }
881   return -1;
882 }
883 
884 int GDBRemoteCommunicationClient::SendLaunchArchPacket(char const *arch) {
885   if (arch && arch[0]) {
886     StreamString packet;
887     packet.Printf("QLaunchArch:%s", arch);
888     StringExtractorGDBRemote response;
889     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
890         PacketResult::Success) {
891       if (response.IsOKResponse())
892         return 0;
893       uint8_t error = response.GetError();
894       if (error)
895         return error;
896     }
897   }
898   return -1;
899 }
900 
901 int GDBRemoteCommunicationClient::SendLaunchEventDataPacket(
902     char const *data, bool *was_supported) {
903   if (data && *data != '\0') {
904     StreamString packet;
905     packet.Printf("QSetProcessEvent:%s", data);
906     StringExtractorGDBRemote response;
907     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
908         PacketResult::Success) {
909       if (response.IsOKResponse()) {
910         if (was_supported)
911           *was_supported = true;
912         return 0;
913       } else if (response.IsUnsupportedResponse()) {
914         if (was_supported)
915           *was_supported = false;
916         return -1;
917       } else {
918         uint8_t error = response.GetError();
919         if (was_supported)
920           *was_supported = true;
921         if (error)
922           return error;
923       }
924     }
925   }
926   return -1;
927 }
928 
929 llvm::VersionTuple GDBRemoteCommunicationClient::GetOSVersion() {
930   GetHostInfo();
931   return m_os_version;
932 }
933 
934 llvm::VersionTuple GDBRemoteCommunicationClient::GetMacCatalystVersion() {
935   GetHostInfo();
936   return m_maccatalyst_version;
937 }
938 
939 bool GDBRemoteCommunicationClient::GetOSBuildString(std::string &s) {
940   if (GetHostInfo()) {
941     if (!m_os_build.empty()) {
942       s = m_os_build;
943       return true;
944     }
945   }
946   s.clear();
947   return false;
948 }
949 
950 bool GDBRemoteCommunicationClient::GetOSKernelDescription(std::string &s) {
951   if (GetHostInfo()) {
952     if (!m_os_kernel.empty()) {
953       s = m_os_kernel;
954       return true;
955     }
956   }
957   s.clear();
958   return false;
959 }
960 
961 bool GDBRemoteCommunicationClient::GetHostname(std::string &s) {
962   if (GetHostInfo()) {
963     if (!m_hostname.empty()) {
964       s = m_hostname;
965       return true;
966     }
967   }
968   s.clear();
969   return false;
970 }
971 
972 ArchSpec GDBRemoteCommunicationClient::GetSystemArchitecture() {
973   if (GetHostInfo())
974     return m_host_arch;
975   return ArchSpec();
976 }
977 
978 const lldb_private::ArchSpec &
979 GDBRemoteCommunicationClient::GetProcessArchitecture() {
980   if (m_qProcessInfo_is_valid == eLazyBoolCalculate)
981     GetCurrentProcessInfo();
982   return m_process_arch;
983 }
984 
985 bool GDBRemoteCommunicationClient::GetGDBServerVersion() {
986   if (m_qGDBServerVersion_is_valid == eLazyBoolCalculate) {
987     m_gdb_server_name.clear();
988     m_gdb_server_version = 0;
989     m_qGDBServerVersion_is_valid = eLazyBoolNo;
990 
991     StringExtractorGDBRemote response;
992     if (SendPacketAndWaitForResponse("qGDBServerVersion", response, false) ==
993         PacketResult::Success) {
994       if (response.IsNormalResponse()) {
995         llvm::StringRef name, value;
996         bool success = false;
997         while (response.GetNameColonValue(name, value)) {
998           if (name.equals("name")) {
999             success = true;
1000             m_gdb_server_name = value;
1001           } else if (name.equals("version")) {
1002             llvm::StringRef major, minor;
1003             std::tie(major, minor) = value.split('.');
1004             if (!major.getAsInteger(0, m_gdb_server_version))
1005               success = true;
1006           }
1007         }
1008         if (success)
1009           m_qGDBServerVersion_is_valid = eLazyBoolYes;
1010       }
1011     }
1012   }
1013   return m_qGDBServerVersion_is_valid == eLazyBoolYes;
1014 }
1015 
1016 void GDBRemoteCommunicationClient::MaybeEnableCompression(
1017     std::vector<std::string> supported_compressions) {
1018   CompressionType avail_type = CompressionType::None;
1019   std::string avail_name;
1020 
1021 #if defined(HAVE_LIBCOMPRESSION)
1022   if (avail_type == CompressionType::None) {
1023     for (auto compression : supported_compressions) {
1024       if (compression == "lzfse") {
1025         avail_type = CompressionType::LZFSE;
1026         avail_name = compression;
1027         break;
1028       }
1029     }
1030   }
1031 #endif
1032 
1033 #if defined(HAVE_LIBCOMPRESSION)
1034   if (avail_type == CompressionType::None) {
1035     for (auto compression : supported_compressions) {
1036       if (compression == "zlib-deflate") {
1037         avail_type = CompressionType::ZlibDeflate;
1038         avail_name = compression;
1039         break;
1040       }
1041     }
1042   }
1043 #endif
1044 
1045 #if defined(HAVE_LIBZ)
1046   if (avail_type == CompressionType::None) {
1047     for (auto compression : supported_compressions) {
1048       if (compression == "zlib-deflate") {
1049         avail_type = CompressionType::ZlibDeflate;
1050         avail_name = compression;
1051         break;
1052       }
1053     }
1054   }
1055 #endif
1056 
1057 #if defined(HAVE_LIBCOMPRESSION)
1058   if (avail_type == CompressionType::None) {
1059     for (auto compression : supported_compressions) {
1060       if (compression == "lz4") {
1061         avail_type = CompressionType::LZ4;
1062         avail_name = compression;
1063         break;
1064       }
1065     }
1066   }
1067 #endif
1068 
1069 #if defined(HAVE_LIBCOMPRESSION)
1070   if (avail_type == CompressionType::None) {
1071     for (auto compression : supported_compressions) {
1072       if (compression == "lzma") {
1073         avail_type = CompressionType::LZMA;
1074         avail_name = compression;
1075         break;
1076       }
1077     }
1078   }
1079 #endif
1080 
1081   if (avail_type != CompressionType::None) {
1082     StringExtractorGDBRemote response;
1083     std::string packet = "QEnableCompression:type:" + avail_name + ";";
1084     if (SendPacketAndWaitForResponse(packet, response, false) !=
1085         PacketResult::Success)
1086       return;
1087 
1088     if (response.IsOKResponse()) {
1089       m_compression_type = avail_type;
1090     }
1091   }
1092 }
1093 
1094 const char *GDBRemoteCommunicationClient::GetGDBServerProgramName() {
1095   if (GetGDBServerVersion()) {
1096     if (!m_gdb_server_name.empty())
1097       return m_gdb_server_name.c_str();
1098   }
1099   return nullptr;
1100 }
1101 
1102 uint32_t GDBRemoteCommunicationClient::GetGDBServerProgramVersion() {
1103   if (GetGDBServerVersion())
1104     return m_gdb_server_version;
1105   return 0;
1106 }
1107 
1108 bool GDBRemoteCommunicationClient::GetDefaultThreadId(lldb::tid_t &tid) {
1109   StringExtractorGDBRemote response;
1110   if (SendPacketAndWaitForResponse("qC", response, false) !=
1111       PacketResult::Success)
1112     return false;
1113 
1114   if (!response.IsNormalResponse())
1115     return false;
1116 
1117   if (response.GetChar() == 'Q' && response.GetChar() == 'C')
1118     tid = response.GetHexMaxU32(true, -1);
1119 
1120   return true;
1121 }
1122 
1123 bool GDBRemoteCommunicationClient::GetHostInfo(bool force) {
1124   Log *log(ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(GDBR_LOG_PROCESS));
1125 
1126   if (force || m_qHostInfo_is_valid == eLazyBoolCalculate) {
1127     // host info computation can require DNS traffic and shelling out to external processes.
1128     // Increase the timeout to account for that.
1129     ScopedTimeout timeout(*this, seconds(10));
1130     m_qHostInfo_is_valid = eLazyBoolNo;
1131     StringExtractorGDBRemote response;
1132     if (SendPacketAndWaitForResponse("qHostInfo", response, false) ==
1133         PacketResult::Success) {
1134       if (response.IsNormalResponse()) {
1135         llvm::StringRef name;
1136         llvm::StringRef value;
1137         uint32_t cpu = LLDB_INVALID_CPUTYPE;
1138         uint32_t sub = 0;
1139         std::string arch_name;
1140         std::string os_name;
1141         std::string environment;
1142         std::string vendor_name;
1143         std::string triple;
1144         std::string distribution_id;
1145         uint32_t pointer_byte_size = 0;
1146         ByteOrder byte_order = eByteOrderInvalid;
1147         uint32_t num_keys_decoded = 0;
1148         while (response.GetNameColonValue(name, value)) {
1149           if (name.equals("cputype")) {
1150             // exception type in big endian hex
1151             if (!value.getAsInteger(0, cpu))
1152               ++num_keys_decoded;
1153           } else if (name.equals("cpusubtype")) {
1154             // exception count in big endian hex
1155             if (!value.getAsInteger(0, sub))
1156               ++num_keys_decoded;
1157           } else if (name.equals("arch")) {
1158             arch_name = value;
1159             ++num_keys_decoded;
1160           } else if (name.equals("triple")) {
1161             StringExtractor extractor(value);
1162             extractor.GetHexByteString(triple);
1163             ++num_keys_decoded;
1164           } else if (name.equals("distribution_id")) {
1165             StringExtractor extractor(value);
1166             extractor.GetHexByteString(distribution_id);
1167             ++num_keys_decoded;
1168           } else if (name.equals("os_build")) {
1169             StringExtractor extractor(value);
1170             extractor.GetHexByteString(m_os_build);
1171             ++num_keys_decoded;
1172           } else if (name.equals("hostname")) {
1173             StringExtractor extractor(value);
1174             extractor.GetHexByteString(m_hostname);
1175             ++num_keys_decoded;
1176           } else if (name.equals("os_kernel")) {
1177             StringExtractor extractor(value);
1178             extractor.GetHexByteString(m_os_kernel);
1179             ++num_keys_decoded;
1180           } else if (name.equals("ostype")) {
1181             if (value.equals("maccatalyst")) {
1182               os_name = "ios";
1183               environment = "macabi";
1184             } else
1185               os_name = value;
1186             ++num_keys_decoded;
1187           } else if (name.equals("vendor")) {
1188             vendor_name = value;
1189             ++num_keys_decoded;
1190           } else if (name.equals("endian")) {
1191             byte_order = llvm::StringSwitch<lldb::ByteOrder>(value)
1192                              .Case("little", eByteOrderLittle)
1193                              .Case("big", eByteOrderBig)
1194                              .Case("pdp", eByteOrderPDP)
1195                              .Default(eByteOrderInvalid);
1196             if (byte_order != eByteOrderInvalid)
1197               ++num_keys_decoded;
1198           } else if (name.equals("ptrsize")) {
1199             if (!value.getAsInteger(0, pointer_byte_size))
1200               ++num_keys_decoded;
1201           } else if (name.equals("os_version") ||
1202                      name.equals(
1203                          "version")) // Older debugserver binaries used the
1204                                      // "version" key instead of
1205                                      // "os_version"...
1206           {
1207             if (!m_os_version.tryParse(value))
1208               ++num_keys_decoded;
1209           } else if (name.equals("maccatalyst_version")) {
1210             if (!m_maccatalyst_version.tryParse(value))
1211               ++num_keys_decoded;
1212           } else if (name.equals("watchpoint_exceptions_received")) {
1213             m_watchpoints_trigger_after_instruction =
1214                 llvm::StringSwitch<LazyBool>(value)
1215                     .Case("before", eLazyBoolNo)
1216                     .Case("after", eLazyBoolYes)
1217                     .Default(eLazyBoolCalculate);
1218             if (m_watchpoints_trigger_after_instruction != eLazyBoolCalculate)
1219               ++num_keys_decoded;
1220           } else if (name.equals("default_packet_timeout")) {
1221             uint32_t timeout_seconds;
1222             if (!value.getAsInteger(0, timeout_seconds)) {
1223               m_default_packet_timeout = seconds(timeout_seconds);
1224               SetPacketTimeout(m_default_packet_timeout);
1225               ++num_keys_decoded;
1226             }
1227           }
1228         }
1229 
1230         if (num_keys_decoded > 0)
1231           m_qHostInfo_is_valid = eLazyBoolYes;
1232 
1233         if (triple.empty()) {
1234           if (arch_name.empty()) {
1235             if (cpu != LLDB_INVALID_CPUTYPE) {
1236               m_host_arch.SetArchitecture(eArchTypeMachO, cpu, sub);
1237               if (pointer_byte_size) {
1238                 assert(pointer_byte_size == m_host_arch.GetAddressByteSize());
1239               }
1240               if (byte_order != eByteOrderInvalid) {
1241                 assert(byte_order == m_host_arch.GetByteOrder());
1242               }
1243 
1244               if (!vendor_name.empty())
1245                 m_host_arch.GetTriple().setVendorName(
1246                     llvm::StringRef(vendor_name));
1247               if (!os_name.empty())
1248                 m_host_arch.GetTriple().setOSName(llvm::StringRef(os_name));
1249               if (!environment.empty())
1250                 m_host_arch.GetTriple().setEnvironmentName(environment);
1251             }
1252           } else {
1253             std::string triple;
1254             triple += arch_name;
1255             if (!vendor_name.empty() || !os_name.empty()) {
1256               triple += '-';
1257               if (vendor_name.empty())
1258                 triple += "unknown";
1259               else
1260                 triple += vendor_name;
1261               triple += '-';
1262               if (os_name.empty())
1263                 triple += "unknown";
1264               else
1265                 triple += os_name;
1266             }
1267             m_host_arch.SetTriple(triple.c_str());
1268 
1269             llvm::Triple &host_triple = m_host_arch.GetTriple();
1270             if (host_triple.getVendor() == llvm::Triple::Apple &&
1271                 host_triple.getOS() == llvm::Triple::Darwin) {
1272               switch (m_host_arch.GetMachine()) {
1273               case llvm::Triple::aarch64:
1274               case llvm::Triple::arm:
1275               case llvm::Triple::thumb:
1276                 host_triple.setOS(llvm::Triple::IOS);
1277                 break;
1278               default:
1279                 host_triple.setOS(llvm::Triple::MacOSX);
1280                 break;
1281               }
1282             }
1283             if (pointer_byte_size) {
1284               assert(pointer_byte_size == m_host_arch.GetAddressByteSize());
1285             }
1286             if (byte_order != eByteOrderInvalid) {
1287               assert(byte_order == m_host_arch.GetByteOrder());
1288             }
1289           }
1290         } else {
1291           m_host_arch.SetTriple(triple.c_str());
1292           if (pointer_byte_size) {
1293             assert(pointer_byte_size == m_host_arch.GetAddressByteSize());
1294           }
1295           if (byte_order != eByteOrderInvalid) {
1296             assert(byte_order == m_host_arch.GetByteOrder());
1297           }
1298 
1299           LLDB_LOGF(log,
1300                     "GDBRemoteCommunicationClient::%s parsed host "
1301                     "architecture as %s, triple as %s from triple text %s",
1302                     __FUNCTION__,
1303                     m_host_arch.GetArchitectureName()
1304                         ? m_host_arch.GetArchitectureName()
1305                         : "<null-arch-name>",
1306                     m_host_arch.GetTriple().getTriple().c_str(),
1307                     triple.c_str());
1308         }
1309         if (!distribution_id.empty())
1310           m_host_arch.SetDistributionId(distribution_id.c_str());
1311       }
1312     }
1313   }
1314   return m_qHostInfo_is_valid == eLazyBoolYes;
1315 }
1316 
1317 int GDBRemoteCommunicationClient::SendAttach(
1318     lldb::pid_t pid, StringExtractorGDBRemote &response) {
1319   if (pid != LLDB_INVALID_PROCESS_ID) {
1320     char packet[64];
1321     const int packet_len =
1322         ::snprintf(packet, sizeof(packet), "vAttach;%" PRIx64, pid);
1323     UNUSED_IF_ASSERT_DISABLED(packet_len);
1324     assert(packet_len < (int)sizeof(packet));
1325     if (SendPacketAndWaitForResponse(packet, response, false) ==
1326         PacketResult::Success) {
1327       if (response.IsErrorResponse())
1328         return response.GetError();
1329       return 0;
1330     }
1331   }
1332   return -1;
1333 }
1334 
1335 int GDBRemoteCommunicationClient::SendStdinNotification(const char *data,
1336                                                         size_t data_len) {
1337   StreamString packet;
1338   packet.PutCString("I");
1339   packet.PutBytesAsRawHex8(data, data_len);
1340   StringExtractorGDBRemote response;
1341   if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
1342       PacketResult::Success) {
1343     return 0;
1344   }
1345   return response.GetError();
1346 }
1347 
1348 const lldb_private::ArchSpec &
1349 GDBRemoteCommunicationClient::GetHostArchitecture() {
1350   if (m_qHostInfo_is_valid == eLazyBoolCalculate)
1351     GetHostInfo();
1352   return m_host_arch;
1353 }
1354 
1355 seconds GDBRemoteCommunicationClient::GetHostDefaultPacketTimeout() {
1356   if (m_qHostInfo_is_valid == eLazyBoolCalculate)
1357     GetHostInfo();
1358   return m_default_packet_timeout;
1359 }
1360 
1361 addr_t GDBRemoteCommunicationClient::AllocateMemory(size_t size,
1362                                                     uint32_t permissions) {
1363   if (m_supports_alloc_dealloc_memory != eLazyBoolNo) {
1364     m_supports_alloc_dealloc_memory = eLazyBoolYes;
1365     char packet[64];
1366     const int packet_len = ::snprintf(
1367         packet, sizeof(packet), "_M%" PRIx64 ",%s%s%s", (uint64_t)size,
1368         permissions & lldb::ePermissionsReadable ? "r" : "",
1369         permissions & lldb::ePermissionsWritable ? "w" : "",
1370         permissions & lldb::ePermissionsExecutable ? "x" : "");
1371     assert(packet_len < (int)sizeof(packet));
1372     UNUSED_IF_ASSERT_DISABLED(packet_len);
1373     StringExtractorGDBRemote response;
1374     if (SendPacketAndWaitForResponse(packet, response, false) ==
1375         PacketResult::Success) {
1376       if (response.IsUnsupportedResponse())
1377         m_supports_alloc_dealloc_memory = eLazyBoolNo;
1378       else if (!response.IsErrorResponse())
1379         return response.GetHexMaxU64(false, LLDB_INVALID_ADDRESS);
1380     } else {
1381       m_supports_alloc_dealloc_memory = eLazyBoolNo;
1382     }
1383   }
1384   return LLDB_INVALID_ADDRESS;
1385 }
1386 
1387 bool GDBRemoteCommunicationClient::DeallocateMemory(addr_t addr) {
1388   if (m_supports_alloc_dealloc_memory != eLazyBoolNo) {
1389     m_supports_alloc_dealloc_memory = eLazyBoolYes;
1390     char packet[64];
1391     const int packet_len =
1392         ::snprintf(packet, sizeof(packet), "_m%" PRIx64, (uint64_t)addr);
1393     assert(packet_len < (int)sizeof(packet));
1394     UNUSED_IF_ASSERT_DISABLED(packet_len);
1395     StringExtractorGDBRemote response;
1396     if (SendPacketAndWaitForResponse(packet, response, false) ==
1397         PacketResult::Success) {
1398       if (response.IsUnsupportedResponse())
1399         m_supports_alloc_dealloc_memory = eLazyBoolNo;
1400       else if (response.IsOKResponse())
1401         return true;
1402     } else {
1403       m_supports_alloc_dealloc_memory = eLazyBoolNo;
1404     }
1405   }
1406   return false;
1407 }
1408 
1409 Status GDBRemoteCommunicationClient::Detach(bool keep_stopped) {
1410   Status error;
1411 
1412   if (keep_stopped) {
1413     if (m_supports_detach_stay_stopped == eLazyBoolCalculate) {
1414       char packet[64];
1415       const int packet_len =
1416           ::snprintf(packet, sizeof(packet), "qSupportsDetachAndStayStopped:");
1417       assert(packet_len < (int)sizeof(packet));
1418       UNUSED_IF_ASSERT_DISABLED(packet_len);
1419       StringExtractorGDBRemote response;
1420       if (SendPacketAndWaitForResponse(packet, response, false) ==
1421               PacketResult::Success &&
1422           response.IsOKResponse()) {
1423         m_supports_detach_stay_stopped = eLazyBoolYes;
1424       } else {
1425         m_supports_detach_stay_stopped = eLazyBoolNo;
1426       }
1427     }
1428 
1429     if (m_supports_detach_stay_stopped == eLazyBoolNo) {
1430       error.SetErrorString("Stays stopped not supported by this target.");
1431       return error;
1432     } else {
1433       StringExtractorGDBRemote response;
1434       PacketResult packet_result =
1435           SendPacketAndWaitForResponse("D1", response, false);
1436       if (packet_result != PacketResult::Success)
1437         error.SetErrorString("Sending extended disconnect packet failed.");
1438     }
1439   } else {
1440     StringExtractorGDBRemote response;
1441     PacketResult packet_result =
1442         SendPacketAndWaitForResponse("D", response, false);
1443     if (packet_result != PacketResult::Success)
1444       error.SetErrorString("Sending disconnect packet failed.");
1445   }
1446   return error;
1447 }
1448 
1449 Status GDBRemoteCommunicationClient::GetMemoryRegionInfo(
1450     lldb::addr_t addr, lldb_private::MemoryRegionInfo &region_info) {
1451   Status error;
1452   region_info.Clear();
1453 
1454   if (m_supports_memory_region_info != eLazyBoolNo) {
1455     m_supports_memory_region_info = eLazyBoolYes;
1456     char packet[64];
1457     const int packet_len = ::snprintf(
1458         packet, sizeof(packet), "qMemoryRegionInfo:%" PRIx64, (uint64_t)addr);
1459     assert(packet_len < (int)sizeof(packet));
1460     UNUSED_IF_ASSERT_DISABLED(packet_len);
1461     StringExtractorGDBRemote response;
1462     if (SendPacketAndWaitForResponse(packet, response, false) ==
1463             PacketResult::Success &&
1464         response.GetResponseType() == StringExtractorGDBRemote::eResponse) {
1465       llvm::StringRef name;
1466       llvm::StringRef value;
1467       addr_t addr_value = LLDB_INVALID_ADDRESS;
1468       bool success = true;
1469       bool saw_permissions = false;
1470       while (success && response.GetNameColonValue(name, value)) {
1471         if (name.equals("start")) {
1472           if (!value.getAsInteger(16, addr_value))
1473             region_info.GetRange().SetRangeBase(addr_value);
1474         } else if (name.equals("size")) {
1475           if (!value.getAsInteger(16, addr_value))
1476             region_info.GetRange().SetByteSize(addr_value);
1477         } else if (name.equals("permissions") &&
1478                    region_info.GetRange().IsValid()) {
1479           saw_permissions = true;
1480           if (region_info.GetRange().Contains(addr)) {
1481             if (value.find('r') != llvm::StringRef::npos)
1482               region_info.SetReadable(MemoryRegionInfo::eYes);
1483             else
1484               region_info.SetReadable(MemoryRegionInfo::eNo);
1485 
1486             if (value.find('w') != llvm::StringRef::npos)
1487               region_info.SetWritable(MemoryRegionInfo::eYes);
1488             else
1489               region_info.SetWritable(MemoryRegionInfo::eNo);
1490 
1491             if (value.find('x') != llvm::StringRef::npos)
1492               region_info.SetExecutable(MemoryRegionInfo::eYes);
1493             else
1494               region_info.SetExecutable(MemoryRegionInfo::eNo);
1495 
1496             region_info.SetMapped(MemoryRegionInfo::eYes);
1497           } else {
1498             // The reported region does not contain this address -- we're
1499             // looking at an unmapped page
1500             region_info.SetReadable(MemoryRegionInfo::eNo);
1501             region_info.SetWritable(MemoryRegionInfo::eNo);
1502             region_info.SetExecutable(MemoryRegionInfo::eNo);
1503             region_info.SetMapped(MemoryRegionInfo::eNo);
1504           }
1505         } else if (name.equals("name")) {
1506           StringExtractorGDBRemote name_extractor(value);
1507           std::string name;
1508           name_extractor.GetHexByteString(name);
1509           region_info.SetName(name.c_str());
1510         } else if (name.equals("error")) {
1511           StringExtractorGDBRemote error_extractor(value);
1512           std::string error_string;
1513           // Now convert the HEX bytes into a string value
1514           error_extractor.GetHexByteString(error_string);
1515           error.SetErrorString(error_string.c_str());
1516         }
1517       }
1518 
1519       if (region_info.GetRange().IsValid()) {
1520         // We got a valid address range back but no permissions -- which means
1521         // this is an unmapped page
1522         if (!saw_permissions) {
1523           region_info.SetReadable(MemoryRegionInfo::eNo);
1524           region_info.SetWritable(MemoryRegionInfo::eNo);
1525           region_info.SetExecutable(MemoryRegionInfo::eNo);
1526           region_info.SetMapped(MemoryRegionInfo::eNo);
1527         }
1528       } else {
1529         // We got an invalid address range back
1530         error.SetErrorString("Server returned invalid range");
1531       }
1532     } else {
1533       m_supports_memory_region_info = eLazyBoolNo;
1534     }
1535   }
1536 
1537   if (m_supports_memory_region_info == eLazyBoolNo) {
1538     error.SetErrorString("qMemoryRegionInfo is not supported");
1539   }
1540 
1541   // Try qXfer:memory-map:read to get region information not included in
1542   // qMemoryRegionInfo
1543   MemoryRegionInfo qXfer_region_info;
1544   Status qXfer_error = GetQXferMemoryMapRegionInfo(addr, qXfer_region_info);
1545 
1546   if (error.Fail()) {
1547     // If qMemoryRegionInfo failed, but qXfer:memory-map:read succeeded, use
1548     // the qXfer result as a fallback
1549     if (qXfer_error.Success()) {
1550       region_info = qXfer_region_info;
1551       error.Clear();
1552     } else {
1553       region_info.Clear();
1554     }
1555   } else if (qXfer_error.Success()) {
1556     // If both qMemoryRegionInfo and qXfer:memory-map:read succeeded, and if
1557     // both regions are the same range, update the result to include the flash-
1558     // memory information that is specific to the qXfer result.
1559     if (region_info.GetRange() == qXfer_region_info.GetRange()) {
1560       region_info.SetFlash(qXfer_region_info.GetFlash());
1561       region_info.SetBlocksize(qXfer_region_info.GetBlocksize());
1562     }
1563   }
1564   return error;
1565 }
1566 
1567 Status GDBRemoteCommunicationClient::GetQXferMemoryMapRegionInfo(
1568     lldb::addr_t addr, MemoryRegionInfo &region) {
1569   Status error = LoadQXferMemoryMap();
1570   if (!error.Success())
1571     return error;
1572   for (const auto &map_region : m_qXfer_memory_map) {
1573     if (map_region.GetRange().Contains(addr)) {
1574       region = map_region;
1575       return error;
1576     }
1577   }
1578   error.SetErrorString("Region not found");
1579   return error;
1580 }
1581 
1582 Status GDBRemoteCommunicationClient::LoadQXferMemoryMap() {
1583 
1584   Status error;
1585 
1586   if (m_qXfer_memory_map_loaded)
1587     // Already loaded, return success
1588     return error;
1589 
1590   if (!XMLDocument::XMLEnabled()) {
1591     error.SetErrorString("XML is not supported");
1592     return error;
1593   }
1594 
1595   if (!GetQXferMemoryMapReadSupported()) {
1596     error.SetErrorString("Memory map is not supported");
1597     return error;
1598   }
1599 
1600   std::string xml;
1601   lldb_private::Status lldberr;
1602   if (!ReadExtFeature(ConstString("memory-map"), ConstString(""), xml,
1603                       lldberr)) {
1604     error.SetErrorString("Failed to read memory map");
1605     return error;
1606   }
1607 
1608   XMLDocument xml_document;
1609 
1610   if (!xml_document.ParseMemory(xml.c_str(), xml.size())) {
1611     error.SetErrorString("Failed to parse memory map xml");
1612     return error;
1613   }
1614 
1615   XMLNode map_node = xml_document.GetRootElement("memory-map");
1616   if (!map_node) {
1617     error.SetErrorString("Invalid root node in memory map xml");
1618     return error;
1619   }
1620 
1621   m_qXfer_memory_map.clear();
1622 
1623   map_node.ForEachChildElement([this](const XMLNode &memory_node) -> bool {
1624     if (!memory_node.IsElement())
1625       return true;
1626     if (memory_node.GetName() != "memory")
1627       return true;
1628     auto type = memory_node.GetAttributeValue("type", "");
1629     uint64_t start;
1630     uint64_t length;
1631     if (!memory_node.GetAttributeValueAsUnsigned("start", start))
1632       return true;
1633     if (!memory_node.GetAttributeValueAsUnsigned("length", length))
1634       return true;
1635     MemoryRegionInfo region;
1636     region.GetRange().SetRangeBase(start);
1637     region.GetRange().SetByteSize(length);
1638     if (type == "rom") {
1639       region.SetReadable(MemoryRegionInfo::eYes);
1640       this->m_qXfer_memory_map.push_back(region);
1641     } else if (type == "ram") {
1642       region.SetReadable(MemoryRegionInfo::eYes);
1643       region.SetWritable(MemoryRegionInfo::eYes);
1644       this->m_qXfer_memory_map.push_back(region);
1645     } else if (type == "flash") {
1646       region.SetFlash(MemoryRegionInfo::eYes);
1647       memory_node.ForEachChildElement(
1648           [&region](const XMLNode &prop_node) -> bool {
1649             if (!prop_node.IsElement())
1650               return true;
1651             if (prop_node.GetName() != "property")
1652               return true;
1653             auto propname = prop_node.GetAttributeValue("name", "");
1654             if (propname == "blocksize") {
1655               uint64_t blocksize;
1656               if (prop_node.GetElementTextAsUnsigned(blocksize))
1657                 region.SetBlocksize(blocksize);
1658             }
1659             return true;
1660           });
1661       this->m_qXfer_memory_map.push_back(region);
1662     }
1663     return true;
1664   });
1665 
1666   m_qXfer_memory_map_loaded = true;
1667 
1668   return error;
1669 }
1670 
1671 Status GDBRemoteCommunicationClient::GetWatchpointSupportInfo(uint32_t &num) {
1672   Status error;
1673 
1674   if (m_supports_watchpoint_support_info == eLazyBoolYes) {
1675     num = m_num_supported_hardware_watchpoints;
1676     return error;
1677   }
1678 
1679   // Set num to 0 first.
1680   num = 0;
1681   if (m_supports_watchpoint_support_info != eLazyBoolNo) {
1682     char packet[64];
1683     const int packet_len =
1684         ::snprintf(packet, sizeof(packet), "qWatchpointSupportInfo:");
1685     assert(packet_len < (int)sizeof(packet));
1686     UNUSED_IF_ASSERT_DISABLED(packet_len);
1687     StringExtractorGDBRemote response;
1688     if (SendPacketAndWaitForResponse(packet, response, false) ==
1689         PacketResult::Success) {
1690       m_supports_watchpoint_support_info = eLazyBoolYes;
1691       llvm::StringRef name;
1692       llvm::StringRef value;
1693       bool found_num_field = false;
1694       while (response.GetNameColonValue(name, value)) {
1695         if (name.equals("num")) {
1696           value.getAsInteger(0, m_num_supported_hardware_watchpoints);
1697           num = m_num_supported_hardware_watchpoints;
1698           found_num_field = true;
1699         }
1700       }
1701       if (!found_num_field) {
1702         m_supports_watchpoint_support_info = eLazyBoolNo;
1703       }
1704     } else {
1705       m_supports_watchpoint_support_info = eLazyBoolNo;
1706     }
1707   }
1708 
1709   if (m_supports_watchpoint_support_info == eLazyBoolNo) {
1710     error.SetErrorString("qWatchpointSupportInfo is not supported");
1711   }
1712   return error;
1713 }
1714 
1715 lldb_private::Status GDBRemoteCommunicationClient::GetWatchpointSupportInfo(
1716     uint32_t &num, bool &after, const ArchSpec &arch) {
1717   Status error(GetWatchpointSupportInfo(num));
1718   if (error.Success())
1719     error = GetWatchpointsTriggerAfterInstruction(after, arch);
1720   return error;
1721 }
1722 
1723 lldb_private::Status
1724 GDBRemoteCommunicationClient::GetWatchpointsTriggerAfterInstruction(
1725     bool &after, const ArchSpec &arch) {
1726   Status error;
1727   llvm::Triple triple = arch.GetTriple();
1728 
1729   // we assume watchpoints will happen after running the relevant opcode and we
1730   // only want to override this behavior if we have explicitly received a
1731   // qHostInfo telling us otherwise
1732   if (m_qHostInfo_is_valid != eLazyBoolYes) {
1733     // On targets like MIPS and ppc64, watchpoint exceptions are always
1734     // generated before the instruction is executed. The connected target may
1735     // not support qHostInfo or qWatchpointSupportInfo packets.
1736     after = !(triple.isMIPS() || triple.isPPC64());
1737   } else {
1738     // For MIPS and ppc64, set m_watchpoints_trigger_after_instruction to
1739     // eLazyBoolNo if it is not calculated before.
1740     if (m_watchpoints_trigger_after_instruction == eLazyBoolCalculate &&
1741         (triple.isMIPS() || triple.isPPC64()))
1742       m_watchpoints_trigger_after_instruction = eLazyBoolNo;
1743 
1744     after = (m_watchpoints_trigger_after_instruction != eLazyBoolNo);
1745   }
1746   return error;
1747 }
1748 
1749 int GDBRemoteCommunicationClient::SetSTDIN(const FileSpec &file_spec) {
1750   if (file_spec) {
1751     std::string path{file_spec.GetPath(false)};
1752     StreamString packet;
1753     packet.PutCString("QSetSTDIN:");
1754     packet.PutStringAsRawHex8(path);
1755 
1756     StringExtractorGDBRemote response;
1757     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
1758         PacketResult::Success) {
1759       if (response.IsOKResponse())
1760         return 0;
1761       uint8_t error = response.GetError();
1762       if (error)
1763         return error;
1764     }
1765   }
1766   return -1;
1767 }
1768 
1769 int GDBRemoteCommunicationClient::SetSTDOUT(const FileSpec &file_spec) {
1770   if (file_spec) {
1771     std::string path{file_spec.GetPath(false)};
1772     StreamString packet;
1773     packet.PutCString("QSetSTDOUT:");
1774     packet.PutStringAsRawHex8(path);
1775 
1776     StringExtractorGDBRemote response;
1777     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
1778         PacketResult::Success) {
1779       if (response.IsOKResponse())
1780         return 0;
1781       uint8_t error = response.GetError();
1782       if (error)
1783         return error;
1784     }
1785   }
1786   return -1;
1787 }
1788 
1789 int GDBRemoteCommunicationClient::SetSTDERR(const FileSpec &file_spec) {
1790   if (file_spec) {
1791     std::string path{file_spec.GetPath(false)};
1792     StreamString packet;
1793     packet.PutCString("QSetSTDERR:");
1794     packet.PutStringAsRawHex8(path);
1795 
1796     StringExtractorGDBRemote response;
1797     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
1798         PacketResult::Success) {
1799       if (response.IsOKResponse())
1800         return 0;
1801       uint8_t error = response.GetError();
1802       if (error)
1803         return error;
1804     }
1805   }
1806   return -1;
1807 }
1808 
1809 bool GDBRemoteCommunicationClient::GetWorkingDir(FileSpec &working_dir) {
1810   StringExtractorGDBRemote response;
1811   if (SendPacketAndWaitForResponse("qGetWorkingDir", response, false) ==
1812       PacketResult::Success) {
1813     if (response.IsUnsupportedResponse())
1814       return false;
1815     if (response.IsErrorResponse())
1816       return false;
1817     std::string cwd;
1818     response.GetHexByteString(cwd);
1819     working_dir.SetFile(cwd, GetHostArchitecture().GetTriple());
1820     return !cwd.empty();
1821   }
1822   return false;
1823 }
1824 
1825 int GDBRemoteCommunicationClient::SetWorkingDir(const FileSpec &working_dir) {
1826   if (working_dir) {
1827     std::string path{working_dir.GetPath(false)};
1828     StreamString packet;
1829     packet.PutCString("QSetWorkingDir:");
1830     packet.PutStringAsRawHex8(path);
1831 
1832     StringExtractorGDBRemote response;
1833     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
1834         PacketResult::Success) {
1835       if (response.IsOKResponse())
1836         return 0;
1837       uint8_t error = response.GetError();
1838       if (error)
1839         return error;
1840     }
1841   }
1842   return -1;
1843 }
1844 
1845 int GDBRemoteCommunicationClient::SetDisableASLR(bool enable) {
1846   char packet[32];
1847   const int packet_len =
1848       ::snprintf(packet, sizeof(packet), "QSetDisableASLR:%i", enable ? 1 : 0);
1849   assert(packet_len < (int)sizeof(packet));
1850   UNUSED_IF_ASSERT_DISABLED(packet_len);
1851   StringExtractorGDBRemote response;
1852   if (SendPacketAndWaitForResponse(packet, response, false) ==
1853       PacketResult::Success) {
1854     if (response.IsOKResponse())
1855       return 0;
1856     uint8_t error = response.GetError();
1857     if (error)
1858       return error;
1859   }
1860   return -1;
1861 }
1862 
1863 int GDBRemoteCommunicationClient::SetDetachOnError(bool enable) {
1864   char packet[32];
1865   const int packet_len = ::snprintf(packet, sizeof(packet),
1866                                     "QSetDetachOnError:%i", enable ? 1 : 0);
1867   assert(packet_len < (int)sizeof(packet));
1868   UNUSED_IF_ASSERT_DISABLED(packet_len);
1869   StringExtractorGDBRemote response;
1870   if (SendPacketAndWaitForResponse(packet, response, false) ==
1871       PacketResult::Success) {
1872     if (response.IsOKResponse())
1873       return 0;
1874     uint8_t error = response.GetError();
1875     if (error)
1876       return error;
1877   }
1878   return -1;
1879 }
1880 
1881 bool GDBRemoteCommunicationClient::DecodeProcessInfoResponse(
1882     StringExtractorGDBRemote &response, ProcessInstanceInfo &process_info) {
1883   if (response.IsNormalResponse()) {
1884     llvm::StringRef name;
1885     llvm::StringRef value;
1886     StringExtractor extractor;
1887 
1888     uint32_t cpu = LLDB_INVALID_CPUTYPE;
1889     uint32_t sub = 0;
1890     std::string vendor;
1891     std::string os_type;
1892 
1893     while (response.GetNameColonValue(name, value)) {
1894       if (name.equals("pid")) {
1895         lldb::pid_t pid = LLDB_INVALID_PROCESS_ID;
1896         value.getAsInteger(0, pid);
1897         process_info.SetProcessID(pid);
1898       } else if (name.equals("ppid")) {
1899         lldb::pid_t pid = LLDB_INVALID_PROCESS_ID;
1900         value.getAsInteger(0, pid);
1901         process_info.SetParentProcessID(pid);
1902       } else if (name.equals("uid")) {
1903         uint32_t uid = UINT32_MAX;
1904         value.getAsInteger(0, uid);
1905         process_info.SetUserID(uid);
1906       } else if (name.equals("euid")) {
1907         uint32_t uid = UINT32_MAX;
1908         value.getAsInteger(0, uid);
1909         process_info.SetEffectiveGroupID(uid);
1910       } else if (name.equals("gid")) {
1911         uint32_t gid = UINT32_MAX;
1912         value.getAsInteger(0, gid);
1913         process_info.SetGroupID(gid);
1914       } else if (name.equals("egid")) {
1915         uint32_t gid = UINT32_MAX;
1916         value.getAsInteger(0, gid);
1917         process_info.SetEffectiveGroupID(gid);
1918       } else if (name.equals("triple")) {
1919         StringExtractor extractor(value);
1920         std::string triple;
1921         extractor.GetHexByteString(triple);
1922         process_info.GetArchitecture().SetTriple(triple.c_str());
1923       } else if (name.equals("name")) {
1924         StringExtractor extractor(value);
1925         // The process name from ASCII hex bytes since we can't control the
1926         // characters in a process name
1927         std::string name;
1928         extractor.GetHexByteString(name);
1929         process_info.GetExecutableFile().SetFile(name, FileSpec::Style::native);
1930       } else if (name.equals("cputype")) {
1931         value.getAsInteger(0, cpu);
1932       } else if (name.equals("cpusubtype")) {
1933         value.getAsInteger(0, sub);
1934       } else if (name.equals("vendor")) {
1935         vendor = value;
1936       } else if (name.equals("ostype")) {
1937         os_type = value;
1938       }
1939     }
1940 
1941     if (cpu != LLDB_INVALID_CPUTYPE && !vendor.empty() && !os_type.empty()) {
1942       if (vendor == "apple") {
1943         process_info.GetArchitecture().SetArchitecture(eArchTypeMachO, cpu,
1944                                                        sub);
1945         process_info.GetArchitecture().GetTriple().setVendorName(
1946             llvm::StringRef(vendor));
1947         process_info.GetArchitecture().GetTriple().setOSName(
1948             llvm::StringRef(os_type));
1949       }
1950     }
1951 
1952     if (process_info.GetProcessID() != LLDB_INVALID_PROCESS_ID)
1953       return true;
1954   }
1955   return false;
1956 }
1957 
1958 bool GDBRemoteCommunicationClient::GetProcessInfo(
1959     lldb::pid_t pid, ProcessInstanceInfo &process_info) {
1960   process_info.Clear();
1961 
1962   if (m_supports_qProcessInfoPID) {
1963     char packet[32];
1964     const int packet_len =
1965         ::snprintf(packet, sizeof(packet), "qProcessInfoPID:%" PRIu64, pid);
1966     assert(packet_len < (int)sizeof(packet));
1967     UNUSED_IF_ASSERT_DISABLED(packet_len);
1968     StringExtractorGDBRemote response;
1969     if (SendPacketAndWaitForResponse(packet, response, false) ==
1970         PacketResult::Success) {
1971       return DecodeProcessInfoResponse(response, process_info);
1972     } else {
1973       m_supports_qProcessInfoPID = false;
1974       return false;
1975     }
1976   }
1977   return false;
1978 }
1979 
1980 bool GDBRemoteCommunicationClient::GetCurrentProcessInfo(bool allow_lazy) {
1981   Log *log(ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(GDBR_LOG_PROCESS |
1982                                                          GDBR_LOG_PACKETS));
1983 
1984   if (allow_lazy) {
1985     if (m_qProcessInfo_is_valid == eLazyBoolYes)
1986       return true;
1987     if (m_qProcessInfo_is_valid == eLazyBoolNo)
1988       return false;
1989   }
1990 
1991   GetHostInfo();
1992 
1993   StringExtractorGDBRemote response;
1994   if (SendPacketAndWaitForResponse("qProcessInfo", response, false) ==
1995       PacketResult::Success) {
1996     if (response.IsNormalResponse()) {
1997       llvm::StringRef name;
1998       llvm::StringRef value;
1999       uint32_t cpu = LLDB_INVALID_CPUTYPE;
2000       uint32_t sub = 0;
2001       std::string arch_name;
2002       std::string os_name;
2003       std::string environment;
2004       std::string vendor_name;
2005       std::string triple;
2006       std::string elf_abi;
2007       uint32_t pointer_byte_size = 0;
2008       StringExtractor extractor;
2009       ByteOrder byte_order = eByteOrderInvalid;
2010       uint32_t num_keys_decoded = 0;
2011       lldb::pid_t pid = LLDB_INVALID_PROCESS_ID;
2012       while (response.GetNameColonValue(name, value)) {
2013         if (name.equals("cputype")) {
2014           if (!value.getAsInteger(16, cpu))
2015             ++num_keys_decoded;
2016         } else if (name.equals("cpusubtype")) {
2017           if (!value.getAsInteger(16, sub))
2018             ++num_keys_decoded;
2019         } else if (name.equals("triple")) {
2020           StringExtractor extractor(value);
2021           extractor.GetHexByteString(triple);
2022           ++num_keys_decoded;
2023         } else if (name.equals("ostype")) {
2024           if (value.equals("maccatalyst")) {
2025             os_name = "ios";
2026             environment = "macabi";
2027           } else
2028             os_name = value;
2029           ++num_keys_decoded;
2030         } else if (name.equals("vendor")) {
2031           vendor_name = value;
2032           ++num_keys_decoded;
2033         } else if (name.equals("endian")) {
2034           byte_order = llvm::StringSwitch<lldb::ByteOrder>(value)
2035                            .Case("little", eByteOrderLittle)
2036                            .Case("big", eByteOrderBig)
2037                            .Case("pdp", eByteOrderPDP)
2038                            .Default(eByteOrderInvalid);
2039           if (byte_order != eByteOrderInvalid)
2040             ++num_keys_decoded;
2041         } else if (name.equals("ptrsize")) {
2042           if (!value.getAsInteger(16, pointer_byte_size))
2043             ++num_keys_decoded;
2044         } else if (name.equals("pid")) {
2045           if (!value.getAsInteger(16, pid))
2046             ++num_keys_decoded;
2047         } else if (name.equals("elf_abi")) {
2048           elf_abi = value;
2049           ++num_keys_decoded;
2050         }
2051       }
2052       if (num_keys_decoded > 0)
2053         m_qProcessInfo_is_valid = eLazyBoolYes;
2054       if (pid != LLDB_INVALID_PROCESS_ID) {
2055         m_curr_pid_is_valid = eLazyBoolYes;
2056         m_curr_pid = pid;
2057       }
2058 
2059       // Set the ArchSpec from the triple if we have it.
2060       if (!triple.empty()) {
2061         m_process_arch.SetTriple(triple.c_str());
2062         m_process_arch.SetFlags(elf_abi);
2063         if (pointer_byte_size) {
2064           assert(pointer_byte_size == m_process_arch.GetAddressByteSize());
2065         }
2066       } else if (cpu != LLDB_INVALID_CPUTYPE && !os_name.empty() &&
2067                  !vendor_name.empty()) {
2068         llvm::Triple triple(llvm::Twine("-") + vendor_name + "-" + os_name);
2069         if (!environment.empty())
2070             triple.setEnvironmentName(environment);
2071 
2072         assert(triple.getObjectFormat() != llvm::Triple::UnknownObjectFormat);
2073         assert(triple.getObjectFormat() != llvm::Triple::Wasm);
2074         assert(triple.getObjectFormat() != llvm::Triple::XCOFF);
2075         switch (triple.getObjectFormat()) {
2076         case llvm::Triple::MachO:
2077           m_process_arch.SetArchitecture(eArchTypeMachO, cpu, sub);
2078           break;
2079         case llvm::Triple::ELF:
2080           m_process_arch.SetArchitecture(eArchTypeELF, cpu, sub);
2081           break;
2082         case llvm::Triple::COFF:
2083           m_process_arch.SetArchitecture(eArchTypeCOFF, cpu, sub);
2084           break;
2085         case llvm::Triple::Wasm:
2086         case llvm::Triple::XCOFF:
2087           LLDB_LOGF(log, "error: not supported target architecture");
2088           return false;
2089         case llvm::Triple::UnknownObjectFormat:
2090           LLDB_LOGF(log, "error: failed to determine target architecture");
2091           return false;
2092         }
2093 
2094         if (pointer_byte_size) {
2095           assert(pointer_byte_size == m_process_arch.GetAddressByteSize());
2096         }
2097         if (byte_order != eByteOrderInvalid) {
2098           assert(byte_order == m_process_arch.GetByteOrder());
2099         }
2100         m_process_arch.GetTriple().setVendorName(llvm::StringRef(vendor_name));
2101         m_process_arch.GetTriple().setOSName(llvm::StringRef(os_name));
2102         m_process_arch.GetTriple().setEnvironmentName(llvm::StringRef(environment));
2103         m_host_arch.GetTriple().setVendorName(llvm::StringRef(vendor_name));
2104         m_host_arch.GetTriple().setOSName(llvm::StringRef(os_name));
2105         m_host_arch.GetTriple().setEnvironmentName(llvm::StringRef(environment));
2106       }
2107       return true;
2108     }
2109   } else {
2110     m_qProcessInfo_is_valid = eLazyBoolNo;
2111   }
2112 
2113   return false;
2114 }
2115 
2116 uint32_t GDBRemoteCommunicationClient::FindProcesses(
2117     const ProcessInstanceInfoMatch &match_info,
2118     ProcessInstanceInfoList &process_infos) {
2119   process_infos.Clear();
2120 
2121   if (m_supports_qfProcessInfo) {
2122     StreamString packet;
2123     packet.PutCString("qfProcessInfo");
2124     if (!match_info.MatchAllProcesses()) {
2125       packet.PutChar(':');
2126       const char *name = match_info.GetProcessInfo().GetName();
2127       bool has_name_match = false;
2128       if (name && name[0]) {
2129         has_name_match = true;
2130         NameMatch name_match_type = match_info.GetNameMatchType();
2131         switch (name_match_type) {
2132         case NameMatch::Ignore:
2133           has_name_match = false;
2134           break;
2135 
2136         case NameMatch::Equals:
2137           packet.PutCString("name_match:equals;");
2138           break;
2139 
2140         case NameMatch::Contains:
2141           packet.PutCString("name_match:contains;");
2142           break;
2143 
2144         case NameMatch::StartsWith:
2145           packet.PutCString("name_match:starts_with;");
2146           break;
2147 
2148         case NameMatch::EndsWith:
2149           packet.PutCString("name_match:ends_with;");
2150           break;
2151 
2152         case NameMatch::RegularExpression:
2153           packet.PutCString("name_match:regex;");
2154           break;
2155         }
2156         if (has_name_match) {
2157           packet.PutCString("name:");
2158           packet.PutBytesAsRawHex8(name, ::strlen(name));
2159           packet.PutChar(';');
2160         }
2161       }
2162 
2163       if (match_info.GetProcessInfo().ProcessIDIsValid())
2164         packet.Printf("pid:%" PRIu64 ";",
2165                       match_info.GetProcessInfo().GetProcessID());
2166       if (match_info.GetProcessInfo().ParentProcessIDIsValid())
2167         packet.Printf("parent_pid:%" PRIu64 ";",
2168                       match_info.GetProcessInfo().GetParentProcessID());
2169       if (match_info.GetProcessInfo().UserIDIsValid())
2170         packet.Printf("uid:%u;", match_info.GetProcessInfo().GetUserID());
2171       if (match_info.GetProcessInfo().GroupIDIsValid())
2172         packet.Printf("gid:%u;", match_info.GetProcessInfo().GetGroupID());
2173       if (match_info.GetProcessInfo().EffectiveUserIDIsValid())
2174         packet.Printf("euid:%u;",
2175                       match_info.GetProcessInfo().GetEffectiveUserID());
2176       if (match_info.GetProcessInfo().EffectiveGroupIDIsValid())
2177         packet.Printf("egid:%u;",
2178                       match_info.GetProcessInfo().GetEffectiveGroupID());
2179       packet.Printf("all_users:%u;", match_info.GetMatchAllUsers() ? 1 : 0);
2180       if (match_info.GetProcessInfo().GetArchitecture().IsValid()) {
2181         const ArchSpec &match_arch =
2182             match_info.GetProcessInfo().GetArchitecture();
2183         const llvm::Triple &triple = match_arch.GetTriple();
2184         packet.PutCString("triple:");
2185         packet.PutCString(triple.getTriple());
2186         packet.PutChar(';');
2187       }
2188     }
2189     StringExtractorGDBRemote response;
2190     // Increase timeout as the first qfProcessInfo packet takes a long time on
2191     // Android. The value of 1min was arrived at empirically.
2192     ScopedTimeout timeout(*this, minutes(1));
2193     if (SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
2194         PacketResult::Success) {
2195       do {
2196         ProcessInstanceInfo process_info;
2197         if (!DecodeProcessInfoResponse(response, process_info))
2198           break;
2199         process_infos.Append(process_info);
2200         response = StringExtractorGDBRemote();
2201       } while (SendPacketAndWaitForResponse("qsProcessInfo", response, false) ==
2202                PacketResult::Success);
2203     } else {
2204       m_supports_qfProcessInfo = false;
2205       return 0;
2206     }
2207   }
2208   return process_infos.GetSize();
2209 }
2210 
2211 bool GDBRemoteCommunicationClient::GetUserName(uint32_t uid,
2212                                                std::string &name) {
2213   if (m_supports_qUserName) {
2214     char packet[32];
2215     const int packet_len =
2216         ::snprintf(packet, sizeof(packet), "qUserName:%i", uid);
2217     assert(packet_len < (int)sizeof(packet));
2218     UNUSED_IF_ASSERT_DISABLED(packet_len);
2219     StringExtractorGDBRemote response;
2220     if (SendPacketAndWaitForResponse(packet, response, false) ==
2221         PacketResult::Success) {
2222       if (response.IsNormalResponse()) {
2223         // Make sure we parsed the right number of characters. The response is
2224         // the hex encoded user name and should make up the entire packet. If
2225         // there are any non-hex ASCII bytes, the length won't match below..
2226         if (response.GetHexByteString(name) * 2 ==
2227             response.GetStringRef().size())
2228           return true;
2229       }
2230     } else {
2231       m_supports_qUserName = false;
2232       return false;
2233     }
2234   }
2235   return false;
2236 }
2237 
2238 bool GDBRemoteCommunicationClient::GetGroupName(uint32_t gid,
2239                                                 std::string &name) {
2240   if (m_supports_qGroupName) {
2241     char packet[32];
2242     const int packet_len =
2243         ::snprintf(packet, sizeof(packet), "qGroupName:%i", gid);
2244     assert(packet_len < (int)sizeof(packet));
2245     UNUSED_IF_ASSERT_DISABLED(packet_len);
2246     StringExtractorGDBRemote response;
2247     if (SendPacketAndWaitForResponse(packet, response, false) ==
2248         PacketResult::Success) {
2249       if (response.IsNormalResponse()) {
2250         // Make sure we parsed the right number of characters. The response is
2251         // the hex encoded group name and should make up the entire packet. If
2252         // there are any non-hex ASCII bytes, the length won't match below..
2253         if (response.GetHexByteString(name) * 2 ==
2254             response.GetStringRef().size())
2255           return true;
2256       }
2257     } else {
2258       m_supports_qGroupName = false;
2259       return false;
2260     }
2261   }
2262   return false;
2263 }
2264 
2265 bool GDBRemoteCommunicationClient::SetNonStopMode(const bool enable) {
2266   // Form non-stop packet request
2267   char packet[32];
2268   const int packet_len =
2269       ::snprintf(packet, sizeof(packet), "QNonStop:%1d", (int)enable);
2270   assert(packet_len < (int)sizeof(packet));
2271   UNUSED_IF_ASSERT_DISABLED(packet_len);
2272 
2273   StringExtractorGDBRemote response;
2274   // Send to target
2275   if (SendPacketAndWaitForResponse(packet, response, false) ==
2276       PacketResult::Success)
2277     if (response.IsOKResponse())
2278       return true;
2279 
2280   // Failed or not supported
2281   return false;
2282 }
2283 
2284 static void MakeSpeedTestPacket(StreamString &packet, uint32_t send_size,
2285                                 uint32_t recv_size) {
2286   packet.Clear();
2287   packet.Printf("qSpeedTest:response_size:%i;data:", recv_size);
2288   uint32_t bytes_left = send_size;
2289   while (bytes_left > 0) {
2290     if (bytes_left >= 26) {
2291       packet.PutCString("abcdefghijklmnopqrstuvwxyz");
2292       bytes_left -= 26;
2293     } else {
2294       packet.Printf("%*.*s;", bytes_left, bytes_left,
2295                     "abcdefghijklmnopqrstuvwxyz");
2296       bytes_left = 0;
2297     }
2298   }
2299 }
2300 
2301 duration<float>
2302 calculate_standard_deviation(const std::vector<duration<float>> &v) {
2303   using Dur = duration<float>;
2304   Dur sum = std::accumulate(std::begin(v), std::end(v), Dur());
2305   Dur mean = sum / v.size();
2306   float accum = 0;
2307   for (auto d : v) {
2308     float delta = (d - mean).count();
2309     accum += delta * delta;
2310   };
2311 
2312   return Dur(sqrtf(accum / (v.size() - 1)));
2313 }
2314 
2315 void GDBRemoteCommunicationClient::TestPacketSpeed(const uint32_t num_packets,
2316                                                    uint32_t max_send,
2317                                                    uint32_t max_recv,
2318                                                    uint64_t recv_amount,
2319                                                    bool json, Stream &strm) {
2320   uint32_t i;
2321   if (SendSpeedTestPacket(0, 0)) {
2322     StreamString packet;
2323     if (json)
2324       strm.Printf("{ \"packet_speeds\" : {\n    \"num_packets\" : %u,\n    "
2325                   "\"results\" : [",
2326                   num_packets);
2327     else
2328       strm.Printf("Testing sending %u packets of various sizes:\n",
2329                   num_packets);
2330     strm.Flush();
2331 
2332     uint32_t result_idx = 0;
2333     uint32_t send_size;
2334     std::vector<duration<float>> packet_times;
2335 
2336     for (send_size = 0; send_size <= max_send;
2337          send_size ? send_size *= 2 : send_size = 4) {
2338       for (uint32_t recv_size = 0; recv_size <= max_recv;
2339            recv_size ? recv_size *= 2 : recv_size = 4) {
2340         MakeSpeedTestPacket(packet, send_size, recv_size);
2341 
2342         packet_times.clear();
2343         // Test how long it takes to send 'num_packets' packets
2344         const auto start_time = steady_clock::now();
2345         for (i = 0; i < num_packets; ++i) {
2346           const auto packet_start_time = steady_clock::now();
2347           StringExtractorGDBRemote response;
2348           SendPacketAndWaitForResponse(packet.GetString(), response, false);
2349           const auto packet_end_time = steady_clock::now();
2350           packet_times.push_back(packet_end_time - packet_start_time);
2351         }
2352         const auto end_time = steady_clock::now();
2353         const auto total_time = end_time - start_time;
2354 
2355         float packets_per_second =
2356             ((float)num_packets) / duration<float>(total_time).count();
2357         auto average_per_packet = total_time / num_packets;
2358         const duration<float> standard_deviation =
2359             calculate_standard_deviation(packet_times);
2360         if (json) {
2361           strm.Format("{0}\n     {{\"send_size\" : {1,6}, \"recv_size\" : "
2362                       "{2,6}, \"total_time_nsec\" : {3,12:ns-}, "
2363                       "\"standard_deviation_nsec\" : {4,9:ns-f0}}",
2364                       result_idx > 0 ? "," : "", send_size, recv_size,
2365                       total_time, standard_deviation);
2366           ++result_idx;
2367         } else {
2368           strm.Format("qSpeedTest(send={0,7}, recv={1,7}) in {2:s+f9} for "
2369                       "{3,9:f2} packets/s ({4,10:ms+f6} per packet) with "
2370                       "standard deviation of {5,10:ms+f6}\n",
2371                       send_size, recv_size, duration<float>(total_time),
2372                       packets_per_second, duration<float>(average_per_packet),
2373                       standard_deviation);
2374         }
2375         strm.Flush();
2376       }
2377     }
2378 
2379     const float k_recv_amount_mb = (float)recv_amount / (1024.0f * 1024.0f);
2380     if (json)
2381       strm.Printf("\n    ]\n  },\n  \"download_speed\" : {\n    \"byte_size\" "
2382                   ": %" PRIu64 ",\n    \"results\" : [",
2383                   recv_amount);
2384     else
2385       strm.Printf("Testing receiving %2.1fMB of data using varying receive "
2386                   "packet sizes:\n",
2387                   k_recv_amount_mb);
2388     strm.Flush();
2389     send_size = 0;
2390     result_idx = 0;
2391     for (uint32_t recv_size = 32; recv_size <= max_recv; recv_size *= 2) {
2392       MakeSpeedTestPacket(packet, send_size, recv_size);
2393 
2394       // If we have a receive size, test how long it takes to receive 4MB of
2395       // data
2396       if (recv_size > 0) {
2397         const auto start_time = steady_clock::now();
2398         uint32_t bytes_read = 0;
2399         uint32_t packet_count = 0;
2400         while (bytes_read < recv_amount) {
2401           StringExtractorGDBRemote response;
2402           SendPacketAndWaitForResponse(packet.GetString(), response, false);
2403           bytes_read += recv_size;
2404           ++packet_count;
2405         }
2406         const auto end_time = steady_clock::now();
2407         const auto total_time = end_time - start_time;
2408         float mb_second = ((float)recv_amount) /
2409                           duration<float>(total_time).count() /
2410                           (1024.0 * 1024.0);
2411         float packets_per_second =
2412             ((float)packet_count) / duration<float>(total_time).count();
2413         const auto average_per_packet = total_time / packet_count;
2414 
2415         if (json) {
2416           strm.Format("{0}\n     {{\"send_size\" : {1,6}, \"recv_size\" : "
2417                       "{2,6}, \"total_time_nsec\" : {3,12:ns-}}",
2418                       result_idx > 0 ? "," : "", send_size, recv_size,
2419                       total_time);
2420           ++result_idx;
2421         } else {
2422           strm.Format("qSpeedTest(send={0,7}, recv={1,7}) {2,6} packets needed "
2423                       "to receive {3:f1}MB in {4:s+f9} for {5} MB/sec for "
2424                       "{6,9:f2} packets/sec ({7,10:ms+f6} per packet)\n",
2425                       send_size, recv_size, packet_count, k_recv_amount_mb,
2426                       duration<float>(total_time), mb_second,
2427                       packets_per_second, duration<float>(average_per_packet));
2428         }
2429         strm.Flush();
2430       }
2431     }
2432     if (json)
2433       strm.Printf("\n    ]\n  }\n}\n");
2434     else
2435       strm.EOL();
2436   }
2437 }
2438 
2439 bool GDBRemoteCommunicationClient::SendSpeedTestPacket(uint32_t send_size,
2440                                                        uint32_t recv_size) {
2441   StreamString packet;
2442   packet.Printf("qSpeedTest:response_size:%i;data:", recv_size);
2443   uint32_t bytes_left = send_size;
2444   while (bytes_left > 0) {
2445     if (bytes_left >= 26) {
2446       packet.PutCString("abcdefghijklmnopqrstuvwxyz");
2447       bytes_left -= 26;
2448     } else {
2449       packet.Printf("%*.*s;", bytes_left, bytes_left,
2450                     "abcdefghijklmnopqrstuvwxyz");
2451       bytes_left = 0;
2452     }
2453   }
2454 
2455   StringExtractorGDBRemote response;
2456   return SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
2457          PacketResult::Success;
2458 }
2459 
2460 bool GDBRemoteCommunicationClient::LaunchGDBServer(
2461     const char *remote_accept_hostname, lldb::pid_t &pid, uint16_t &port,
2462     std::string &socket_name) {
2463   pid = LLDB_INVALID_PROCESS_ID;
2464   port = 0;
2465   socket_name.clear();
2466 
2467   StringExtractorGDBRemote response;
2468   StreamString stream;
2469   stream.PutCString("qLaunchGDBServer;");
2470   std::string hostname;
2471   if (remote_accept_hostname && remote_accept_hostname[0])
2472     hostname = remote_accept_hostname;
2473   else {
2474     if (HostInfo::GetHostname(hostname)) {
2475       // Make the GDB server we launch only accept connections from this host
2476       stream.Printf("host:%s;", hostname.c_str());
2477     } else {
2478       // Make the GDB server we launch accept connections from any host since
2479       // we can't figure out the hostname
2480       stream.Printf("host:*;");
2481     }
2482   }
2483   // give the process a few seconds to startup
2484   ScopedTimeout timeout(*this, seconds(10));
2485 
2486   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2487       PacketResult::Success) {
2488     llvm::StringRef name;
2489     llvm::StringRef value;
2490     while (response.GetNameColonValue(name, value)) {
2491       if (name.equals("port"))
2492         value.getAsInteger(0, port);
2493       else if (name.equals("pid"))
2494         value.getAsInteger(0, pid);
2495       else if (name.compare("socket_name") == 0) {
2496         StringExtractor extractor(value);
2497         extractor.GetHexByteString(socket_name);
2498       }
2499     }
2500     return true;
2501   }
2502   return false;
2503 }
2504 
2505 size_t GDBRemoteCommunicationClient::QueryGDBServer(
2506     std::vector<std::pair<uint16_t, std::string>> &connection_urls) {
2507   connection_urls.clear();
2508 
2509   StringExtractorGDBRemote response;
2510   if (SendPacketAndWaitForResponse("qQueryGDBServer", response, false) !=
2511       PacketResult::Success)
2512     return 0;
2513 
2514   StructuredData::ObjectSP data =
2515       StructuredData::ParseJSON(response.GetStringRef());
2516   if (!data)
2517     return 0;
2518 
2519   StructuredData::Array *array = data->GetAsArray();
2520   if (!array)
2521     return 0;
2522 
2523   for (size_t i = 0, count = array->GetSize(); i < count; ++i) {
2524     StructuredData::Dictionary *element = nullptr;
2525     if (!array->GetItemAtIndexAsDictionary(i, element))
2526       continue;
2527 
2528     uint16_t port = 0;
2529     if (StructuredData::ObjectSP port_osp =
2530             element->GetValueForKey(llvm::StringRef("port")))
2531       port = port_osp->GetIntegerValue(0);
2532 
2533     std::string socket_name;
2534     if (StructuredData::ObjectSP socket_name_osp =
2535             element->GetValueForKey(llvm::StringRef("socket_name")))
2536       socket_name = socket_name_osp->GetStringValue();
2537 
2538     if (port != 0 || !socket_name.empty())
2539       connection_urls.emplace_back(port, socket_name);
2540   }
2541   return connection_urls.size();
2542 }
2543 
2544 bool GDBRemoteCommunicationClient::KillSpawnedProcess(lldb::pid_t pid) {
2545   StreamString stream;
2546   stream.Printf("qKillSpawnedProcess:%" PRId64, pid);
2547 
2548   StringExtractorGDBRemote response;
2549   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2550       PacketResult::Success) {
2551     if (response.IsOKResponse())
2552       return true;
2553   }
2554   return false;
2555 }
2556 
2557 bool GDBRemoteCommunicationClient::SetCurrentThread(uint64_t tid) {
2558   if (m_curr_tid == tid)
2559     return true;
2560 
2561   char packet[32];
2562   int packet_len;
2563   if (tid == UINT64_MAX)
2564     packet_len = ::snprintf(packet, sizeof(packet), "Hg-1");
2565   else
2566     packet_len = ::snprintf(packet, sizeof(packet), "Hg%" PRIx64, tid);
2567   assert(packet_len + 1 < (int)sizeof(packet));
2568   UNUSED_IF_ASSERT_DISABLED(packet_len);
2569   StringExtractorGDBRemote response;
2570   if (SendPacketAndWaitForResponse(packet, response, false) ==
2571       PacketResult::Success) {
2572     if (response.IsOKResponse()) {
2573       m_curr_tid = tid;
2574       return true;
2575     }
2576 
2577     /*
2578      * Connected bare-iron target (like YAMON gdb-stub) may not have support for
2579      * Hg packet.
2580      * The reply from '?' packet could be as simple as 'S05'. There is no packet
2581      * which can
2582      * give us pid and/or tid. Assume pid=tid=1 in such cases.
2583     */
2584     if (response.IsUnsupportedResponse() && IsConnected()) {
2585       m_curr_tid = 1;
2586       return true;
2587     }
2588   }
2589   return false;
2590 }
2591 
2592 bool GDBRemoteCommunicationClient::SetCurrentThreadForRun(uint64_t tid) {
2593   if (m_curr_tid_run == tid)
2594     return true;
2595 
2596   char packet[32];
2597   int packet_len;
2598   if (tid == UINT64_MAX)
2599     packet_len = ::snprintf(packet, sizeof(packet), "Hc-1");
2600   else
2601     packet_len = ::snprintf(packet, sizeof(packet), "Hc%" PRIx64, tid);
2602 
2603   assert(packet_len + 1 < (int)sizeof(packet));
2604   UNUSED_IF_ASSERT_DISABLED(packet_len);
2605   StringExtractorGDBRemote response;
2606   if (SendPacketAndWaitForResponse(packet, response, false) ==
2607       PacketResult::Success) {
2608     if (response.IsOKResponse()) {
2609       m_curr_tid_run = tid;
2610       return true;
2611     }
2612 
2613     /*
2614      * Connected bare-iron target (like YAMON gdb-stub) may not have support for
2615      * Hc packet.
2616      * The reply from '?' packet could be as simple as 'S05'. There is no packet
2617      * which can
2618      * give us pid and/or tid. Assume pid=tid=1 in such cases.
2619     */
2620     if (response.IsUnsupportedResponse() && IsConnected()) {
2621       m_curr_tid_run = 1;
2622       return true;
2623     }
2624   }
2625   return false;
2626 }
2627 
2628 bool GDBRemoteCommunicationClient::GetStopReply(
2629     StringExtractorGDBRemote &response) {
2630   if (SendPacketAndWaitForResponse("?", response, false) ==
2631       PacketResult::Success)
2632     return response.IsNormalResponse();
2633   return false;
2634 }
2635 
2636 bool GDBRemoteCommunicationClient::GetThreadStopInfo(
2637     lldb::tid_t tid, StringExtractorGDBRemote &response) {
2638   if (m_supports_qThreadStopInfo) {
2639     char packet[256];
2640     int packet_len =
2641         ::snprintf(packet, sizeof(packet), "qThreadStopInfo%" PRIx64, tid);
2642     assert(packet_len < (int)sizeof(packet));
2643     UNUSED_IF_ASSERT_DISABLED(packet_len);
2644     if (SendPacketAndWaitForResponse(packet, response, false) ==
2645         PacketResult::Success) {
2646       if (response.IsUnsupportedResponse())
2647         m_supports_qThreadStopInfo = false;
2648       else if (response.IsNormalResponse())
2649         return true;
2650       else
2651         return false;
2652     } else {
2653       m_supports_qThreadStopInfo = false;
2654     }
2655   }
2656   return false;
2657 }
2658 
2659 uint8_t GDBRemoteCommunicationClient::SendGDBStoppointTypePacket(
2660     GDBStoppointType type, bool insert, addr_t addr, uint32_t length) {
2661   Log *log(GetLogIfAnyCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
2662   LLDB_LOGF(log, "GDBRemoteCommunicationClient::%s() %s at addr = 0x%" PRIx64,
2663             __FUNCTION__, insert ? "add" : "remove", addr);
2664 
2665   // Check if the stub is known not to support this breakpoint type
2666   if (!SupportsGDBStoppointPacket(type))
2667     return UINT8_MAX;
2668   // Construct the breakpoint packet
2669   char packet[64];
2670   const int packet_len =
2671       ::snprintf(packet, sizeof(packet), "%c%i,%" PRIx64 ",%x",
2672                  insert ? 'Z' : 'z', type, addr, length);
2673   // Check we haven't overwritten the end of the packet buffer
2674   assert(packet_len + 1 < (int)sizeof(packet));
2675   UNUSED_IF_ASSERT_DISABLED(packet_len);
2676   StringExtractorGDBRemote response;
2677   // Make sure the response is either "OK", "EXX" where XX are two hex digits,
2678   // or "" (unsupported)
2679   response.SetResponseValidatorToOKErrorNotSupported();
2680   // Try to send the breakpoint packet, and check that it was correctly sent
2681   if (SendPacketAndWaitForResponse(packet, response, true) ==
2682       PacketResult::Success) {
2683     // Receive and OK packet when the breakpoint successfully placed
2684     if (response.IsOKResponse())
2685       return 0;
2686 
2687     // Status while setting breakpoint, send back specific error
2688     if (response.IsErrorResponse())
2689       return response.GetError();
2690 
2691     // Empty packet informs us that breakpoint is not supported
2692     if (response.IsUnsupportedResponse()) {
2693       // Disable this breakpoint type since it is unsupported
2694       switch (type) {
2695       case eBreakpointSoftware:
2696         m_supports_z0 = false;
2697         break;
2698       case eBreakpointHardware:
2699         m_supports_z1 = false;
2700         break;
2701       case eWatchpointWrite:
2702         m_supports_z2 = false;
2703         break;
2704       case eWatchpointRead:
2705         m_supports_z3 = false;
2706         break;
2707       case eWatchpointReadWrite:
2708         m_supports_z4 = false;
2709         break;
2710       case eStoppointInvalid:
2711         return UINT8_MAX;
2712       }
2713     }
2714   }
2715   // Signal generic failure
2716   return UINT8_MAX;
2717 }
2718 
2719 size_t GDBRemoteCommunicationClient::GetCurrentThreadIDs(
2720     std::vector<lldb::tid_t> &thread_ids, bool &sequence_mutex_unavailable) {
2721   thread_ids.clear();
2722 
2723   Lock lock(*this, false);
2724   if (lock) {
2725     sequence_mutex_unavailable = false;
2726     StringExtractorGDBRemote response;
2727 
2728     PacketResult packet_result;
2729     for (packet_result =
2730              SendPacketAndWaitForResponseNoLock("qfThreadInfo", response);
2731          packet_result == PacketResult::Success && response.IsNormalResponse();
2732          packet_result =
2733              SendPacketAndWaitForResponseNoLock("qsThreadInfo", response)) {
2734       char ch = response.GetChar();
2735       if (ch == 'l')
2736         break;
2737       if (ch == 'm') {
2738         do {
2739           tid_t tid = response.GetHexMaxU64(false, LLDB_INVALID_THREAD_ID);
2740 
2741           if (tid != LLDB_INVALID_THREAD_ID) {
2742             thread_ids.push_back(tid);
2743           }
2744           ch = response.GetChar(); // Skip the command separator
2745         } while (ch == ',');       // Make sure we got a comma separator
2746       }
2747     }
2748 
2749     /*
2750      * Connected bare-iron target (like YAMON gdb-stub) may not have support for
2751      * qProcessInfo, qC and qfThreadInfo packets. The reply from '?' packet
2752      * could
2753      * be as simple as 'S05'. There is no packet which can give us pid and/or
2754      * tid.
2755      * Assume pid=tid=1 in such cases.
2756     */
2757     if ((response.IsUnsupportedResponse() || response.IsNormalResponse()) &&
2758         thread_ids.size() == 0 && IsConnected()) {
2759       thread_ids.push_back(1);
2760     }
2761   } else {
2762 #if !defined(LLDB_CONFIGURATION_DEBUG)
2763     Log *log(ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(GDBR_LOG_PROCESS |
2764                                                            GDBR_LOG_PACKETS));
2765     LLDB_LOGF(log, "error: failed to get packet sequence mutex, not sending "
2766                    "packet 'qfThreadInfo'");
2767 #endif
2768     sequence_mutex_unavailable = true;
2769   }
2770   return thread_ids.size();
2771 }
2772 
2773 lldb::addr_t GDBRemoteCommunicationClient::GetShlibInfoAddr() {
2774   StringExtractorGDBRemote response;
2775   if (SendPacketAndWaitForResponse("qShlibInfoAddr", response, false) !=
2776           PacketResult::Success ||
2777       !response.IsNormalResponse())
2778     return LLDB_INVALID_ADDRESS;
2779   return response.GetHexMaxU64(false, LLDB_INVALID_ADDRESS);
2780 }
2781 
2782 lldb_private::Status GDBRemoteCommunicationClient::RunShellCommand(
2783     const char *command, // Shouldn't be NULL
2784     const FileSpec &
2785         working_dir, // Pass empty FileSpec to use the current working directory
2786     int *status_ptr, // Pass NULL if you don't want the process exit status
2787     int *signo_ptr,  // Pass NULL if you don't want the signal that caused the
2788                      // process to exit
2789     std::string
2790         *command_output, // Pass NULL if you don't want the command output
2791     const Timeout<std::micro> &timeout) {
2792   lldb_private::StreamString stream;
2793   stream.PutCString("qPlatform_shell:");
2794   stream.PutBytesAsRawHex8(command, strlen(command));
2795   stream.PutChar(',');
2796   uint32_t timeout_sec = UINT32_MAX;
2797   if (timeout) {
2798     // TODO: Use chrono version of std::ceil once c++17 is available.
2799     timeout_sec = std::ceil(std::chrono::duration<double>(*timeout).count());
2800   }
2801   stream.PutHex32(timeout_sec);
2802   if (working_dir) {
2803     std::string path{working_dir.GetPath(false)};
2804     stream.PutChar(',');
2805     stream.PutStringAsRawHex8(path);
2806   }
2807   StringExtractorGDBRemote response;
2808   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2809       PacketResult::Success) {
2810     if (response.GetChar() != 'F')
2811       return Status("malformed reply");
2812     if (response.GetChar() != ',')
2813       return Status("malformed reply");
2814     uint32_t exitcode = response.GetHexMaxU32(false, UINT32_MAX);
2815     if (exitcode == UINT32_MAX)
2816       return Status("unable to run remote process");
2817     else if (status_ptr)
2818       *status_ptr = exitcode;
2819     if (response.GetChar() != ',')
2820       return Status("malformed reply");
2821     uint32_t signo = response.GetHexMaxU32(false, UINT32_MAX);
2822     if (signo_ptr)
2823       *signo_ptr = signo;
2824     if (response.GetChar() != ',')
2825       return Status("malformed reply");
2826     std::string output;
2827     response.GetEscapedBinaryData(output);
2828     if (command_output)
2829       command_output->assign(output);
2830     return Status();
2831   }
2832   return Status("unable to send packet");
2833 }
2834 
2835 Status GDBRemoteCommunicationClient::MakeDirectory(const FileSpec &file_spec,
2836                                                    uint32_t file_permissions) {
2837   std::string path{file_spec.GetPath(false)};
2838   lldb_private::StreamString stream;
2839   stream.PutCString("qPlatform_mkdir:");
2840   stream.PutHex32(file_permissions);
2841   stream.PutChar(',');
2842   stream.PutStringAsRawHex8(path);
2843   llvm::StringRef packet = stream.GetString();
2844   StringExtractorGDBRemote response;
2845 
2846   if (SendPacketAndWaitForResponse(packet, response, false) !=
2847       PacketResult::Success)
2848     return Status("failed to send '%s' packet", packet.str().c_str());
2849 
2850   if (response.GetChar() != 'F')
2851     return Status("invalid response to '%s' packet", packet.str().c_str());
2852 
2853   return Status(response.GetU32(UINT32_MAX), eErrorTypePOSIX);
2854 }
2855 
2856 Status
2857 GDBRemoteCommunicationClient::SetFilePermissions(const FileSpec &file_spec,
2858                                                  uint32_t file_permissions) {
2859   std::string path{file_spec.GetPath(false)};
2860   lldb_private::StreamString stream;
2861   stream.PutCString("qPlatform_chmod:");
2862   stream.PutHex32(file_permissions);
2863   stream.PutChar(',');
2864   stream.PutStringAsRawHex8(path);
2865   llvm::StringRef packet = stream.GetString();
2866   StringExtractorGDBRemote response;
2867 
2868   if (SendPacketAndWaitForResponse(packet, response, false) !=
2869       PacketResult::Success)
2870     return Status("failed to send '%s' packet", stream.GetData());
2871 
2872   if (response.GetChar() != 'F')
2873     return Status("invalid response to '%s' packet", stream.GetData());
2874 
2875   return Status(response.GetU32(UINT32_MAX), eErrorTypePOSIX);
2876 }
2877 
2878 static uint64_t ParseHostIOPacketResponse(StringExtractorGDBRemote &response,
2879                                           uint64_t fail_result, Status &error) {
2880   response.SetFilePos(0);
2881   if (response.GetChar() != 'F')
2882     return fail_result;
2883   int32_t result = response.GetS32(-2);
2884   if (result == -2)
2885     return fail_result;
2886   if (response.GetChar() == ',') {
2887     int result_errno = response.GetS32(-2);
2888     if (result_errno != -2)
2889       error.SetError(result_errno, eErrorTypePOSIX);
2890     else
2891       error.SetError(-1, eErrorTypeGeneric);
2892   } else
2893     error.Clear();
2894   return result;
2895 }
2896 lldb::user_id_t
2897 GDBRemoteCommunicationClient::OpenFile(const lldb_private::FileSpec &file_spec,
2898                                        uint32_t flags, mode_t mode,
2899                                        Status &error) {
2900   std::string path(file_spec.GetPath(false));
2901   lldb_private::StreamString stream;
2902   stream.PutCString("vFile:open:");
2903   if (path.empty())
2904     return UINT64_MAX;
2905   stream.PutStringAsRawHex8(path);
2906   stream.PutChar(',');
2907   stream.PutHex32(flags);
2908   stream.PutChar(',');
2909   stream.PutHex32(mode);
2910   StringExtractorGDBRemote response;
2911   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2912       PacketResult::Success) {
2913     return ParseHostIOPacketResponse(response, UINT64_MAX, error);
2914   }
2915   return UINT64_MAX;
2916 }
2917 
2918 bool GDBRemoteCommunicationClient::CloseFile(lldb::user_id_t fd,
2919                                              Status &error) {
2920   lldb_private::StreamString stream;
2921   stream.Printf("vFile:close:%i", (int)fd);
2922   StringExtractorGDBRemote response;
2923   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2924       PacketResult::Success) {
2925     return ParseHostIOPacketResponse(response, -1, error) == 0;
2926   }
2927   return false;
2928 }
2929 
2930 // Extension of host I/O packets to get the file size.
2931 lldb::user_id_t GDBRemoteCommunicationClient::GetFileSize(
2932     const lldb_private::FileSpec &file_spec) {
2933   std::string path(file_spec.GetPath(false));
2934   lldb_private::StreamString stream;
2935   stream.PutCString("vFile:size:");
2936   stream.PutStringAsRawHex8(path);
2937   StringExtractorGDBRemote response;
2938   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2939       PacketResult::Success) {
2940     if (response.GetChar() != 'F')
2941       return UINT64_MAX;
2942     uint32_t retcode = response.GetHexMaxU64(false, UINT64_MAX);
2943     return retcode;
2944   }
2945   return UINT64_MAX;
2946 }
2947 
2948 Status
2949 GDBRemoteCommunicationClient::GetFilePermissions(const FileSpec &file_spec,
2950                                                  uint32_t &file_permissions) {
2951   std::string path{file_spec.GetPath(false)};
2952   Status error;
2953   lldb_private::StreamString stream;
2954   stream.PutCString("vFile:mode:");
2955   stream.PutStringAsRawHex8(path);
2956   StringExtractorGDBRemote response;
2957   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2958       PacketResult::Success) {
2959     if (response.GetChar() != 'F') {
2960       error.SetErrorStringWithFormat("invalid response to '%s' packet",
2961                                      stream.GetData());
2962     } else {
2963       const uint32_t mode = response.GetS32(-1);
2964       if (static_cast<int32_t>(mode) == -1) {
2965         if (response.GetChar() == ',') {
2966           int response_errno = response.GetS32(-1);
2967           if (response_errno > 0)
2968             error.SetError(response_errno, lldb::eErrorTypePOSIX);
2969           else
2970             error.SetErrorToGenericError();
2971         } else
2972           error.SetErrorToGenericError();
2973       } else {
2974         file_permissions = mode & (S_IRWXU | S_IRWXG | S_IRWXO);
2975       }
2976     }
2977   } else {
2978     error.SetErrorStringWithFormat("failed to send '%s' packet",
2979                                    stream.GetData());
2980   }
2981   return error;
2982 }
2983 
2984 uint64_t GDBRemoteCommunicationClient::ReadFile(lldb::user_id_t fd,
2985                                                 uint64_t offset, void *dst,
2986                                                 uint64_t dst_len,
2987                                                 Status &error) {
2988   lldb_private::StreamString stream;
2989   stream.Printf("vFile:pread:%i,%" PRId64 ",%" PRId64, (int)fd, dst_len,
2990                 offset);
2991   StringExtractorGDBRemote response;
2992   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
2993       PacketResult::Success) {
2994     if (response.GetChar() != 'F')
2995       return 0;
2996     uint32_t retcode = response.GetHexMaxU32(false, UINT32_MAX);
2997     if (retcode == UINT32_MAX)
2998       return retcode;
2999     const char next = (response.Peek() ? *response.Peek() : 0);
3000     if (next == ',')
3001       return 0;
3002     if (next == ';') {
3003       response.GetChar(); // skip the semicolon
3004       std::string buffer;
3005       if (response.GetEscapedBinaryData(buffer)) {
3006         const uint64_t data_to_write =
3007             std::min<uint64_t>(dst_len, buffer.size());
3008         if (data_to_write > 0)
3009           memcpy(dst, &buffer[0], data_to_write);
3010         return data_to_write;
3011       }
3012     }
3013   }
3014   return 0;
3015 }
3016 
3017 uint64_t GDBRemoteCommunicationClient::WriteFile(lldb::user_id_t fd,
3018                                                  uint64_t offset,
3019                                                  const void *src,
3020                                                  uint64_t src_len,
3021                                                  Status &error) {
3022   lldb_private::StreamGDBRemote stream;
3023   stream.Printf("vFile:pwrite:%i,%" PRId64 ",", (int)fd, offset);
3024   stream.PutEscapedBytes(src, src_len);
3025   StringExtractorGDBRemote response;
3026   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
3027       PacketResult::Success) {
3028     if (response.GetChar() != 'F') {
3029       error.SetErrorStringWithFormat("write file failed");
3030       return 0;
3031     }
3032     uint64_t bytes_written = response.GetU64(UINT64_MAX);
3033     if (bytes_written == UINT64_MAX) {
3034       error.SetErrorToGenericError();
3035       if (response.GetChar() == ',') {
3036         int response_errno = response.GetS32(-1);
3037         if (response_errno > 0)
3038           error.SetError(response_errno, lldb::eErrorTypePOSIX);
3039       }
3040       return 0;
3041     }
3042     return bytes_written;
3043   } else {
3044     error.SetErrorString("failed to send vFile:pwrite packet");
3045   }
3046   return 0;
3047 }
3048 
3049 Status GDBRemoteCommunicationClient::CreateSymlink(const FileSpec &src,
3050                                                    const FileSpec &dst) {
3051   std::string src_path{src.GetPath(false)}, dst_path{dst.GetPath(false)};
3052   Status error;
3053   lldb_private::StreamGDBRemote stream;
3054   stream.PutCString("vFile:symlink:");
3055   // the unix symlink() command reverses its parameters where the dst if first,
3056   // so we follow suit here
3057   stream.PutStringAsRawHex8(dst_path);
3058   stream.PutChar(',');
3059   stream.PutStringAsRawHex8(src_path);
3060   StringExtractorGDBRemote response;
3061   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
3062       PacketResult::Success) {
3063     if (response.GetChar() == 'F') {
3064       uint32_t result = response.GetU32(UINT32_MAX);
3065       if (result != 0) {
3066         error.SetErrorToGenericError();
3067         if (response.GetChar() == ',') {
3068           int response_errno = response.GetS32(-1);
3069           if (response_errno > 0)
3070             error.SetError(response_errno, lldb::eErrorTypePOSIX);
3071         }
3072       }
3073     } else {
3074       // Should have returned with 'F<result>[,<errno>]'
3075       error.SetErrorStringWithFormat("symlink failed");
3076     }
3077   } else {
3078     error.SetErrorString("failed to send vFile:symlink packet");
3079   }
3080   return error;
3081 }
3082 
3083 Status GDBRemoteCommunicationClient::Unlink(const FileSpec &file_spec) {
3084   std::string path{file_spec.GetPath(false)};
3085   Status error;
3086   lldb_private::StreamGDBRemote stream;
3087   stream.PutCString("vFile:unlink:");
3088   // the unix symlink() command reverses its parameters where the dst if first,
3089   // so we follow suit here
3090   stream.PutStringAsRawHex8(path);
3091   StringExtractorGDBRemote response;
3092   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
3093       PacketResult::Success) {
3094     if (response.GetChar() == 'F') {
3095       uint32_t result = response.GetU32(UINT32_MAX);
3096       if (result != 0) {
3097         error.SetErrorToGenericError();
3098         if (response.GetChar() == ',') {
3099           int response_errno = response.GetS32(-1);
3100           if (response_errno > 0)
3101             error.SetError(response_errno, lldb::eErrorTypePOSIX);
3102         }
3103       }
3104     } else {
3105       // Should have returned with 'F<result>[,<errno>]'
3106       error.SetErrorStringWithFormat("unlink failed");
3107     }
3108   } else {
3109     error.SetErrorString("failed to send vFile:unlink packet");
3110   }
3111   return error;
3112 }
3113 
3114 // Extension of host I/O packets to get whether a file exists.
3115 bool GDBRemoteCommunicationClient::GetFileExists(
3116     const lldb_private::FileSpec &file_spec) {
3117   std::string path(file_spec.GetPath(false));
3118   lldb_private::StreamString stream;
3119   stream.PutCString("vFile:exists:");
3120   stream.PutStringAsRawHex8(path);
3121   StringExtractorGDBRemote response;
3122   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
3123       PacketResult::Success) {
3124     if (response.GetChar() != 'F')
3125       return false;
3126     if (response.GetChar() != ',')
3127       return false;
3128     bool retcode = (response.GetChar() != '0');
3129     return retcode;
3130   }
3131   return false;
3132 }
3133 
3134 bool GDBRemoteCommunicationClient::CalculateMD5(
3135     const lldb_private::FileSpec &file_spec, uint64_t &high, uint64_t &low) {
3136   std::string path(file_spec.GetPath(false));
3137   lldb_private::StreamString stream;
3138   stream.PutCString("vFile:MD5:");
3139   stream.PutStringAsRawHex8(path);
3140   StringExtractorGDBRemote response;
3141   if (SendPacketAndWaitForResponse(stream.GetString(), response, false) ==
3142       PacketResult::Success) {
3143     if (response.GetChar() != 'F')
3144       return false;
3145     if (response.GetChar() != ',')
3146       return false;
3147     if (response.Peek() && *response.Peek() == 'x')
3148       return false;
3149     low = response.GetHexMaxU64(false, UINT64_MAX);
3150     high = response.GetHexMaxU64(false, UINT64_MAX);
3151     return true;
3152   }
3153   return false;
3154 }
3155 
3156 bool GDBRemoteCommunicationClient::AvoidGPackets(ProcessGDBRemote *process) {
3157   // Some targets have issues with g/G packets and we need to avoid using them
3158   if (m_avoid_g_packets == eLazyBoolCalculate) {
3159     if (process) {
3160       m_avoid_g_packets = eLazyBoolNo;
3161       const ArchSpec &arch = process->GetTarget().GetArchitecture();
3162       if (arch.IsValid() &&
3163           arch.GetTriple().getVendor() == llvm::Triple::Apple &&
3164           arch.GetTriple().getOS() == llvm::Triple::IOS &&
3165           arch.GetTriple().getArch() == llvm::Triple::aarch64) {
3166         m_avoid_g_packets = eLazyBoolYes;
3167         uint32_t gdb_server_version = GetGDBServerProgramVersion();
3168         if (gdb_server_version != 0) {
3169           const char *gdb_server_name = GetGDBServerProgramName();
3170           if (gdb_server_name && strcmp(gdb_server_name, "debugserver") == 0) {
3171             if (gdb_server_version >= 310)
3172               m_avoid_g_packets = eLazyBoolNo;
3173           }
3174         }
3175       }
3176     }
3177   }
3178   return m_avoid_g_packets == eLazyBoolYes;
3179 }
3180 
3181 DataBufferSP GDBRemoteCommunicationClient::ReadRegister(lldb::tid_t tid,
3182                                                         uint32_t reg) {
3183   StreamString payload;
3184   payload.Printf("p%x", reg);
3185   StringExtractorGDBRemote response;
3186   if (SendThreadSpecificPacketAndWaitForResponse(
3187           tid, std::move(payload), response, false) != PacketResult::Success ||
3188       !response.IsNormalResponse())
3189     return nullptr;
3190 
3191   DataBufferSP buffer_sp(
3192       new DataBufferHeap(response.GetStringRef().size() / 2, 0));
3193   response.GetHexBytes(buffer_sp->GetData(), '\xcc');
3194   return buffer_sp;
3195 }
3196 
3197 DataBufferSP GDBRemoteCommunicationClient::ReadAllRegisters(lldb::tid_t tid) {
3198   StreamString payload;
3199   payload.PutChar('g');
3200   StringExtractorGDBRemote response;
3201   if (SendThreadSpecificPacketAndWaitForResponse(
3202           tid, std::move(payload), response, false) != PacketResult::Success ||
3203       !response.IsNormalResponse())
3204     return nullptr;
3205 
3206   DataBufferSP buffer_sp(
3207       new DataBufferHeap(response.GetStringRef().size() / 2, 0));
3208   response.GetHexBytes(buffer_sp->GetData(), '\xcc');
3209   return buffer_sp;
3210 }
3211 
3212 bool GDBRemoteCommunicationClient::WriteRegister(lldb::tid_t tid,
3213                                                  uint32_t reg_num,
3214                                                  llvm::ArrayRef<uint8_t> data) {
3215   StreamString payload;
3216   payload.Printf("P%x=", reg_num);
3217   payload.PutBytesAsRawHex8(data.data(), data.size(),
3218                             endian::InlHostByteOrder(),
3219                             endian::InlHostByteOrder());
3220   StringExtractorGDBRemote response;
3221   return SendThreadSpecificPacketAndWaitForResponse(tid, std::move(payload),
3222                                                     response, false) ==
3223              PacketResult::Success &&
3224          response.IsOKResponse();
3225 }
3226 
3227 bool GDBRemoteCommunicationClient::WriteAllRegisters(
3228     lldb::tid_t tid, llvm::ArrayRef<uint8_t> data) {
3229   StreamString payload;
3230   payload.PutChar('G');
3231   payload.PutBytesAsRawHex8(data.data(), data.size(),
3232                             endian::InlHostByteOrder(),
3233                             endian::InlHostByteOrder());
3234   StringExtractorGDBRemote response;
3235   return SendThreadSpecificPacketAndWaitForResponse(tid, std::move(payload),
3236                                                     response, false) ==
3237              PacketResult::Success &&
3238          response.IsOKResponse();
3239 }
3240 
3241 bool GDBRemoteCommunicationClient::SaveRegisterState(lldb::tid_t tid,
3242                                                      uint32_t &save_id) {
3243   save_id = 0; // Set to invalid save ID
3244   if (m_supports_QSaveRegisterState == eLazyBoolNo)
3245     return false;
3246 
3247   m_supports_QSaveRegisterState = eLazyBoolYes;
3248   StreamString payload;
3249   payload.PutCString("QSaveRegisterState");
3250   StringExtractorGDBRemote response;
3251   if (SendThreadSpecificPacketAndWaitForResponse(
3252           tid, std::move(payload), response, false) != PacketResult::Success)
3253     return false;
3254 
3255   if (response.IsUnsupportedResponse())
3256     m_supports_QSaveRegisterState = eLazyBoolNo;
3257 
3258   const uint32_t response_save_id = response.GetU32(0);
3259   if (response_save_id == 0)
3260     return false;
3261 
3262   save_id = response_save_id;
3263   return true;
3264 }
3265 
3266 bool GDBRemoteCommunicationClient::RestoreRegisterState(lldb::tid_t tid,
3267                                                         uint32_t save_id) {
3268   // We use the "m_supports_QSaveRegisterState" variable here because the
3269   // QSaveRegisterState and QRestoreRegisterState packets must both be
3270   // supported in order to be useful
3271   if (m_supports_QSaveRegisterState == eLazyBoolNo)
3272     return false;
3273 
3274   StreamString payload;
3275   payload.Printf("QRestoreRegisterState:%u", save_id);
3276   StringExtractorGDBRemote response;
3277   if (SendThreadSpecificPacketAndWaitForResponse(
3278           tid, std::move(payload), response, false) != PacketResult::Success)
3279     return false;
3280 
3281   if (response.IsOKResponse())
3282     return true;
3283 
3284   if (response.IsUnsupportedResponse())
3285     m_supports_QSaveRegisterState = eLazyBoolNo;
3286   return false;
3287 }
3288 
3289 bool GDBRemoteCommunicationClient::SyncThreadState(lldb::tid_t tid) {
3290   if (!GetSyncThreadStateSupported())
3291     return false;
3292 
3293   StreamString packet;
3294   StringExtractorGDBRemote response;
3295   packet.Printf("QSyncThreadState:%4.4" PRIx64 ";", tid);
3296   return SendPacketAndWaitForResponse(packet.GetString(), response, false) ==
3297              GDBRemoteCommunication::PacketResult::Success &&
3298          response.IsOKResponse();
3299 }
3300 
3301 lldb::user_id_t
3302 GDBRemoteCommunicationClient::SendStartTracePacket(const TraceOptions &options,
3303                                                    Status &error) {
3304   Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3305   lldb::user_id_t ret_uid = LLDB_INVALID_UID;
3306 
3307   StreamGDBRemote escaped_packet;
3308   escaped_packet.PutCString("jTraceStart:");
3309 
3310   StructuredData::Dictionary json_packet;
3311   json_packet.AddIntegerItem("type", options.getType());
3312   json_packet.AddIntegerItem("buffersize", options.getTraceBufferSize());
3313   json_packet.AddIntegerItem("metabuffersize", options.getMetaDataBufferSize());
3314 
3315   if (options.getThreadID() != LLDB_INVALID_THREAD_ID)
3316     json_packet.AddIntegerItem("threadid", options.getThreadID());
3317 
3318   StructuredData::DictionarySP custom_params = options.getTraceParams();
3319   if (custom_params)
3320     json_packet.AddItem("params", custom_params);
3321 
3322   StreamString json_string;
3323   json_packet.Dump(json_string, false);
3324   escaped_packet.PutEscapedBytes(json_string.GetData(), json_string.GetSize());
3325 
3326   StringExtractorGDBRemote response;
3327   if (SendPacketAndWaitForResponse(escaped_packet.GetString(), response,
3328                                    true) ==
3329       GDBRemoteCommunication::PacketResult::Success) {
3330     if (!response.IsNormalResponse()) {
3331       error = response.GetStatus();
3332       LLDB_LOG(log, "Target does not support Tracing , error {0}", error);
3333     } else {
3334       ret_uid = response.GetHexMaxU64(false, LLDB_INVALID_UID);
3335     }
3336   } else {
3337     LLDB_LOG(log, "failed to send packet");
3338     error.SetErrorStringWithFormat("failed to send packet: '%s'",
3339                                    escaped_packet.GetData());
3340   }
3341   return ret_uid;
3342 }
3343 
3344 Status
3345 GDBRemoteCommunicationClient::SendStopTracePacket(lldb::user_id_t uid,
3346                                                   lldb::tid_t thread_id) {
3347   Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3348   StringExtractorGDBRemote response;
3349   Status error;
3350 
3351   StructuredData::Dictionary json_packet;
3352   StreamGDBRemote escaped_packet;
3353   StreamString json_string;
3354   escaped_packet.PutCString("jTraceStop:");
3355 
3356   json_packet.AddIntegerItem("traceid", uid);
3357 
3358   if (thread_id != LLDB_INVALID_THREAD_ID)
3359     json_packet.AddIntegerItem("threadid", thread_id);
3360 
3361   json_packet.Dump(json_string, false);
3362 
3363   escaped_packet.PutEscapedBytes(json_string.GetData(), json_string.GetSize());
3364 
3365   if (SendPacketAndWaitForResponse(escaped_packet.GetString(), response,
3366                                    true) ==
3367       GDBRemoteCommunication::PacketResult::Success) {
3368     if (!response.IsOKResponse()) {
3369       error = response.GetStatus();
3370       LLDB_LOG(log, "stop tracing failed");
3371     }
3372   } else {
3373     LLDB_LOG(log, "failed to send packet");
3374     error.SetErrorStringWithFormat(
3375         "failed to send packet: '%s' with error '%d'", escaped_packet.GetData(),
3376         response.GetError());
3377   }
3378   return error;
3379 }
3380 
3381 Status GDBRemoteCommunicationClient::SendGetDataPacket(
3382     lldb::user_id_t uid, lldb::tid_t thread_id,
3383     llvm::MutableArrayRef<uint8_t> &buffer, size_t offset) {
3384 
3385   StreamGDBRemote escaped_packet;
3386   escaped_packet.PutCString("jTraceBufferRead:");
3387   return SendGetTraceDataPacket(escaped_packet, uid, thread_id, buffer, offset);
3388 }
3389 
3390 Status GDBRemoteCommunicationClient::SendGetMetaDataPacket(
3391     lldb::user_id_t uid, lldb::tid_t thread_id,
3392     llvm::MutableArrayRef<uint8_t> &buffer, size_t offset) {
3393 
3394   StreamGDBRemote escaped_packet;
3395   escaped_packet.PutCString("jTraceMetaRead:");
3396   return SendGetTraceDataPacket(escaped_packet, uid, thread_id, buffer, offset);
3397 }
3398 
3399 Status
3400 GDBRemoteCommunicationClient::SendGetTraceConfigPacket(lldb::user_id_t uid,
3401                                                        TraceOptions &options) {
3402   Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3403   StringExtractorGDBRemote response;
3404   Status error;
3405 
3406   StreamString json_string;
3407   StreamGDBRemote escaped_packet;
3408   escaped_packet.PutCString("jTraceConfigRead:");
3409 
3410   StructuredData::Dictionary json_packet;
3411   json_packet.AddIntegerItem("traceid", uid);
3412 
3413   if (options.getThreadID() != LLDB_INVALID_THREAD_ID)
3414     json_packet.AddIntegerItem("threadid", options.getThreadID());
3415 
3416   json_packet.Dump(json_string, false);
3417   escaped_packet.PutEscapedBytes(json_string.GetData(), json_string.GetSize());
3418 
3419   if (SendPacketAndWaitForResponse(escaped_packet.GetString(), response,
3420                                    true) ==
3421       GDBRemoteCommunication::PacketResult::Success) {
3422     if (response.IsNormalResponse()) {
3423       uint64_t type = std::numeric_limits<uint64_t>::max();
3424       uint64_t buffersize = std::numeric_limits<uint64_t>::max();
3425       uint64_t metabuffersize = std::numeric_limits<uint64_t>::max();
3426 
3427       auto json_object = StructuredData::ParseJSON(response.Peek());
3428 
3429       if (!json_object ||
3430           json_object->GetType() != lldb::eStructuredDataTypeDictionary) {
3431         error.SetErrorString("Invalid Configuration obtained");
3432         return error;
3433       }
3434 
3435       auto json_dict = json_object->GetAsDictionary();
3436 
3437       json_dict->GetValueForKeyAsInteger<uint64_t>("metabuffersize",
3438                                                    metabuffersize);
3439       options.setMetaDataBufferSize(metabuffersize);
3440 
3441       json_dict->GetValueForKeyAsInteger<uint64_t>("buffersize", buffersize);
3442       options.setTraceBufferSize(buffersize);
3443 
3444       json_dict->GetValueForKeyAsInteger<uint64_t>("type", type);
3445       options.setType(static_cast<lldb::TraceType>(type));
3446 
3447       StructuredData::ObjectSP custom_params_sp =
3448           json_dict->GetValueForKey("params");
3449       if (custom_params_sp) {
3450         if (custom_params_sp->GetType() !=
3451             lldb::eStructuredDataTypeDictionary) {
3452           error.SetErrorString("Invalid Configuration obtained");
3453           return error;
3454         } else
3455           options.setTraceParams(
3456               static_pointer_cast<StructuredData::Dictionary>(
3457                   custom_params_sp));
3458       }
3459     } else {
3460       error = response.GetStatus();
3461     }
3462   } else {
3463     LLDB_LOG(log, "failed to send packet");
3464     error.SetErrorStringWithFormat("failed to send packet: '%s'",
3465                                    escaped_packet.GetData());
3466   }
3467   return error;
3468 }
3469 
3470 Status GDBRemoteCommunicationClient::SendGetTraceDataPacket(
3471     StreamGDBRemote &packet, lldb::user_id_t uid, lldb::tid_t thread_id,
3472     llvm::MutableArrayRef<uint8_t> &buffer, size_t offset) {
3473   Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3474   Status error;
3475 
3476   StructuredData::Dictionary json_packet;
3477 
3478   json_packet.AddIntegerItem("traceid", uid);
3479   json_packet.AddIntegerItem("offset", offset);
3480   json_packet.AddIntegerItem("buffersize", buffer.size());
3481 
3482   if (thread_id != LLDB_INVALID_THREAD_ID)
3483     json_packet.AddIntegerItem("threadid", thread_id);
3484 
3485   StreamString json_string;
3486   json_packet.Dump(json_string, false);
3487 
3488   packet.PutEscapedBytes(json_string.GetData(), json_string.GetSize());
3489   StringExtractorGDBRemote response;
3490   if (SendPacketAndWaitForResponse(packet.GetString(), response, true) ==
3491       GDBRemoteCommunication::PacketResult::Success) {
3492     if (response.IsNormalResponse()) {
3493       size_t filled_size = response.GetHexBytesAvail(buffer);
3494       buffer = llvm::MutableArrayRef<uint8_t>(buffer.data(), filled_size);
3495     } else {
3496       error = response.GetStatus();
3497       buffer = buffer.slice(buffer.size());
3498     }
3499   } else {
3500     LLDB_LOG(log, "failed to send packet");
3501     error.SetErrorStringWithFormat("failed to send packet: '%s'",
3502                                    packet.GetData());
3503     buffer = buffer.slice(buffer.size());
3504   }
3505   return error;
3506 }
3507 
3508 bool GDBRemoteCommunicationClient::GetModuleInfo(
3509     const FileSpec &module_file_spec, const lldb_private::ArchSpec &arch_spec,
3510     ModuleSpec &module_spec) {
3511   if (!m_supports_qModuleInfo)
3512     return false;
3513 
3514   std::string module_path = module_file_spec.GetPath(false);
3515   if (module_path.empty())
3516     return false;
3517 
3518   StreamString packet;
3519   packet.PutCString("qModuleInfo:");
3520   packet.PutStringAsRawHex8(module_path);
3521   packet.PutCString(";");
3522   const auto &triple = arch_spec.GetTriple().getTriple();
3523   packet.PutStringAsRawHex8(triple);
3524 
3525   StringExtractorGDBRemote response;
3526   if (SendPacketAndWaitForResponse(packet.GetString(), response, false) !=
3527       PacketResult::Success)
3528     return false;
3529 
3530   if (response.IsErrorResponse())
3531     return false;
3532 
3533   if (response.IsUnsupportedResponse()) {
3534     m_supports_qModuleInfo = false;
3535     return false;
3536   }
3537 
3538   llvm::StringRef name;
3539   llvm::StringRef value;
3540 
3541   module_spec.Clear();
3542   module_spec.GetFileSpec() = module_file_spec;
3543 
3544   while (response.GetNameColonValue(name, value)) {
3545     if (name == "uuid" || name == "md5") {
3546       StringExtractor extractor(value);
3547       std::string uuid;
3548       extractor.GetHexByteString(uuid);
3549       module_spec.GetUUID().SetFromStringRef(uuid, uuid.size() / 2);
3550     } else if (name == "triple") {
3551       StringExtractor extractor(value);
3552       std::string triple;
3553       extractor.GetHexByteString(triple);
3554       module_spec.GetArchitecture().SetTriple(triple.c_str());
3555     } else if (name == "file_offset") {
3556       uint64_t ival = 0;
3557       if (!value.getAsInteger(16, ival))
3558         module_spec.SetObjectOffset(ival);
3559     } else if (name == "file_size") {
3560       uint64_t ival = 0;
3561       if (!value.getAsInteger(16, ival))
3562         module_spec.SetObjectSize(ival);
3563     } else if (name == "file_path") {
3564       StringExtractor extractor(value);
3565       std::string path;
3566       extractor.GetHexByteString(path);
3567       module_spec.GetFileSpec() = FileSpec(path, arch_spec.GetTriple());
3568     }
3569   }
3570 
3571   return true;
3572 }
3573 
3574 static llvm::Optional<ModuleSpec>
3575 ParseModuleSpec(StructuredData::Dictionary *dict) {
3576   ModuleSpec result;
3577   if (!dict)
3578     return llvm::None;
3579 
3580   llvm::StringRef string;
3581   uint64_t integer;
3582 
3583   if (!dict->GetValueForKeyAsString("uuid", string))
3584     return llvm::None;
3585   if (result.GetUUID().SetFromStringRef(string, string.size() / 2) !=
3586       string.size())
3587     return llvm::None;
3588 
3589   if (!dict->GetValueForKeyAsInteger("file_offset", integer))
3590     return llvm::None;
3591   result.SetObjectOffset(integer);
3592 
3593   if (!dict->GetValueForKeyAsInteger("file_size", integer))
3594     return llvm::None;
3595   result.SetObjectSize(integer);
3596 
3597   if (!dict->GetValueForKeyAsString("triple", string))
3598     return llvm::None;
3599   result.GetArchitecture().SetTriple(string);
3600 
3601   if (!dict->GetValueForKeyAsString("file_path", string))
3602     return llvm::None;
3603   result.GetFileSpec() = FileSpec(string, result.GetArchitecture().GetTriple());
3604 
3605   return result;
3606 }
3607 
3608 llvm::Optional<std::vector<ModuleSpec>>
3609 GDBRemoteCommunicationClient::GetModulesInfo(
3610     llvm::ArrayRef<FileSpec> module_file_specs, const llvm::Triple &triple) {
3611   namespace json = llvm::json;
3612 
3613   if (!m_supports_jModulesInfo)
3614     return llvm::None;
3615 
3616   json::Array module_array;
3617   for (const FileSpec &module_file_spec : module_file_specs) {
3618     module_array.push_back(
3619         json::Object{{"file", module_file_spec.GetPath(false)},
3620                      {"triple", triple.getTriple()}});
3621   }
3622   StreamString unescaped_payload;
3623   unescaped_payload.PutCString("jModulesInfo:");
3624   unescaped_payload.AsRawOstream() << std::move(module_array);
3625 
3626   StreamGDBRemote payload;
3627   payload.PutEscapedBytes(unescaped_payload.GetString().data(),
3628                           unescaped_payload.GetSize());
3629 
3630   // Increase the timeout for jModulesInfo since this packet can take longer.
3631   ScopedTimeout timeout(*this, std::chrono::seconds(10));
3632 
3633   StringExtractorGDBRemote response;
3634   if (SendPacketAndWaitForResponse(payload.GetString(), response, false) !=
3635           PacketResult::Success ||
3636       response.IsErrorResponse())
3637     return llvm::None;
3638 
3639   if (response.IsUnsupportedResponse()) {
3640     m_supports_jModulesInfo = false;
3641     return llvm::None;
3642   }
3643 
3644   StructuredData::ObjectSP response_object_sp =
3645       StructuredData::ParseJSON(response.GetStringRef());
3646   if (!response_object_sp)
3647     return llvm::None;
3648 
3649   StructuredData::Array *response_array = response_object_sp->GetAsArray();
3650   if (!response_array)
3651     return llvm::None;
3652 
3653   std::vector<ModuleSpec> result;
3654   for (size_t i = 0; i < response_array->GetSize(); ++i) {
3655     if (llvm::Optional<ModuleSpec> module_spec = ParseModuleSpec(
3656             response_array->GetItemAtIndex(i)->GetAsDictionary()))
3657       result.push_back(*module_spec);
3658   }
3659 
3660   return result;
3661 }
3662 
3663 // query the target remote for extended information using the qXfer packet
3664 //
3665 // example: object='features', annex='target.xml', out=<xml output> return:
3666 // 'true'  on success
3667 //          'false' on failure (err set)
3668 bool GDBRemoteCommunicationClient::ReadExtFeature(
3669     const lldb_private::ConstString object,
3670     const lldb_private::ConstString annex, std::string &out,
3671     lldb_private::Status &err) {
3672 
3673   std::stringstream output;
3674   StringExtractorGDBRemote chunk;
3675 
3676   uint64_t size = GetRemoteMaxPacketSize();
3677   if (size == 0)
3678     size = 0x1000;
3679   size = size - 1; // Leave space for the 'm' or 'l' character in the response
3680   int offset = 0;
3681   bool active = true;
3682 
3683   // loop until all data has been read
3684   while (active) {
3685 
3686     // send query extended feature packet
3687     std::stringstream packet;
3688     packet << "qXfer:" << object.AsCString("")
3689            << ":read:" << annex.AsCString("") << ":" << std::hex << offset
3690            << "," << std::hex << size;
3691 
3692     GDBRemoteCommunication::PacketResult res =
3693         SendPacketAndWaitForResponse(packet.str(), chunk, false);
3694 
3695     if (res != GDBRemoteCommunication::PacketResult::Success) {
3696       err.SetErrorString("Error sending $qXfer packet");
3697       return false;
3698     }
3699 
3700     const std::string &str = chunk.GetStringRef();
3701     if (str.length() == 0) {
3702       // should have some data in chunk
3703       err.SetErrorString("Empty response from $qXfer packet");
3704       return false;
3705     }
3706 
3707     // check packet code
3708     switch (str[0]) {
3709     // last chunk
3710     case ('l'):
3711       active = false;
3712       LLVM_FALLTHROUGH;
3713 
3714     // more chunks
3715     case ('m'):
3716       if (str.length() > 1)
3717         output << &str[1];
3718       offset += size;
3719       break;
3720 
3721     // unknown chunk
3722     default:
3723       err.SetErrorString("Invalid continuation code from $qXfer packet");
3724       return false;
3725     }
3726   }
3727 
3728   out = output.str();
3729   err.Success();
3730   return true;
3731 }
3732 
3733 // Notify the target that gdb is prepared to serve symbol lookup requests.
3734 //  packet: "qSymbol::"
3735 //  reply:
3736 //  OK                  The target does not need to look up any (more) symbols.
3737 //  qSymbol:<sym_name>  The target requests the value of symbol sym_name (hex
3738 //  encoded).
3739 //                      LLDB may provide the value by sending another qSymbol
3740 //                      packet
3741 //                      in the form of"qSymbol:<sym_value>:<sym_name>".
3742 //
3743 //  Three examples:
3744 //
3745 //  lldb sends:    qSymbol::
3746 //  lldb receives: OK
3747 //     Remote gdb stub does not need to know the addresses of any symbols, lldb
3748 //     does not
3749 //     need to ask again in this session.
3750 //
3751 //  lldb sends:    qSymbol::
3752 //  lldb receives: qSymbol:64697370617463685f71756575655f6f666673657473
3753 //  lldb sends:    qSymbol::64697370617463685f71756575655f6f666673657473
3754 //  lldb receives: OK
3755 //     Remote gdb stub asks for address of 'dispatch_queue_offsets'.  lldb does
3756 //     not know
3757 //     the address at this time.  lldb needs to send qSymbol:: again when it has
3758 //     more
3759 //     solibs loaded.
3760 //
3761 //  lldb sends:    qSymbol::
3762 //  lldb receives: qSymbol:64697370617463685f71756575655f6f666673657473
3763 //  lldb sends:    qSymbol:2bc97554:64697370617463685f71756575655f6f666673657473
3764 //  lldb receives: OK
3765 //     Remote gdb stub asks for address of 'dispatch_queue_offsets'.  lldb says
3766 //     that it
3767 //     is at address 0x2bc97554.  Remote gdb stub sends 'OK' indicating that it
3768 //     does not
3769 //     need any more symbols.  lldb does not need to ask again in this session.
3770 
3771 void GDBRemoteCommunicationClient::ServeSymbolLookups(
3772     lldb_private::Process *process) {
3773   // Set to true once we've resolved a symbol to an address for the remote
3774   // stub. If we get an 'OK' response after this, the remote stub doesn't need
3775   // any more symbols and we can stop asking.
3776   bool symbol_response_provided = false;
3777 
3778   // Is this the initial qSymbol:: packet?
3779   bool first_qsymbol_query = true;
3780 
3781   if (m_supports_qSymbol && !m_qSymbol_requests_done) {
3782     Lock lock(*this, false);
3783     if (lock) {
3784       StreamString packet;
3785       packet.PutCString("qSymbol::");
3786       StringExtractorGDBRemote response;
3787       while (SendPacketAndWaitForResponseNoLock(packet.GetString(), response) ==
3788              PacketResult::Success) {
3789         if (response.IsOKResponse()) {
3790           if (symbol_response_provided || first_qsymbol_query) {
3791             m_qSymbol_requests_done = true;
3792           }
3793 
3794           // We are done serving symbols requests
3795           return;
3796         }
3797         first_qsymbol_query = false;
3798 
3799         if (response.IsUnsupportedResponse()) {
3800           // qSymbol is not supported by the current GDB server we are
3801           // connected to
3802           m_supports_qSymbol = false;
3803           return;
3804         } else {
3805           llvm::StringRef response_str(response.GetStringRef());
3806           if (response_str.startswith("qSymbol:")) {
3807             response.SetFilePos(strlen("qSymbol:"));
3808             std::string symbol_name;
3809             if (response.GetHexByteString(symbol_name)) {
3810               if (symbol_name.empty())
3811                 return;
3812 
3813               addr_t symbol_load_addr = LLDB_INVALID_ADDRESS;
3814               lldb_private::SymbolContextList sc_list;
3815               if (process->GetTarget().GetImages().FindSymbolsWithNameAndType(
3816                       ConstString(symbol_name), eSymbolTypeAny, sc_list)) {
3817                 const size_t num_scs = sc_list.GetSize();
3818                 for (size_t sc_idx = 0;
3819                      sc_idx < num_scs &&
3820                      symbol_load_addr == LLDB_INVALID_ADDRESS;
3821                      ++sc_idx) {
3822                   SymbolContext sc;
3823                   if (sc_list.GetContextAtIndex(sc_idx, sc)) {
3824                     if (sc.symbol) {
3825                       switch (sc.symbol->GetType()) {
3826                       case eSymbolTypeInvalid:
3827                       case eSymbolTypeAbsolute:
3828                       case eSymbolTypeUndefined:
3829                       case eSymbolTypeSourceFile:
3830                       case eSymbolTypeHeaderFile:
3831                       case eSymbolTypeObjectFile:
3832                       case eSymbolTypeCommonBlock:
3833                       case eSymbolTypeBlock:
3834                       case eSymbolTypeLocal:
3835                       case eSymbolTypeParam:
3836                       case eSymbolTypeVariable:
3837                       case eSymbolTypeVariableType:
3838                       case eSymbolTypeLineEntry:
3839                       case eSymbolTypeLineHeader:
3840                       case eSymbolTypeScopeBegin:
3841                       case eSymbolTypeScopeEnd:
3842                       case eSymbolTypeAdditional:
3843                       case eSymbolTypeCompiler:
3844                       case eSymbolTypeInstrumentation:
3845                       case eSymbolTypeTrampoline:
3846                         break;
3847 
3848                       case eSymbolTypeCode:
3849                       case eSymbolTypeResolver:
3850                       case eSymbolTypeData:
3851                       case eSymbolTypeRuntime:
3852                       case eSymbolTypeException:
3853                       case eSymbolTypeObjCClass:
3854                       case eSymbolTypeObjCMetaClass:
3855                       case eSymbolTypeObjCIVar:
3856                       case eSymbolTypeReExported:
3857                         symbol_load_addr =
3858                             sc.symbol->GetLoadAddress(&process->GetTarget());
3859                         break;
3860                       }
3861                     }
3862                   }
3863                 }
3864               }
3865               // This is the normal path where our symbol lookup was successful
3866               // and we want to send a packet with the new symbol value and see
3867               // if another lookup needs to be done.
3868 
3869               // Change "packet" to contain the requested symbol value and name
3870               packet.Clear();
3871               packet.PutCString("qSymbol:");
3872               if (symbol_load_addr != LLDB_INVALID_ADDRESS) {
3873                 packet.Printf("%" PRIx64, symbol_load_addr);
3874                 symbol_response_provided = true;
3875               } else {
3876                 symbol_response_provided = false;
3877               }
3878               packet.PutCString(":");
3879               packet.PutBytesAsRawHex8(symbol_name.data(), symbol_name.size());
3880               continue; // go back to the while loop and send "packet" and wait
3881                         // for another response
3882             }
3883           }
3884         }
3885       }
3886       // If we make it here, the symbol request packet response wasn't valid or
3887       // our symbol lookup failed so we must abort
3888       return;
3889 
3890     } else if (Log *log = ProcessGDBRemoteLog::GetLogIfAnyCategoryIsSet(
3891                    GDBR_LOG_PROCESS | GDBR_LOG_PACKETS)) {
3892       LLDB_LOGF(log,
3893                 "GDBRemoteCommunicationClient::%s: Didn't get sequence mutex.",
3894                 __FUNCTION__);
3895     }
3896   }
3897 }
3898 
3899 StructuredData::Array *
3900 GDBRemoteCommunicationClient::GetSupportedStructuredDataPlugins() {
3901   if (!m_supported_async_json_packets_is_valid) {
3902     // Query the server for the array of supported asynchronous JSON packets.
3903     m_supported_async_json_packets_is_valid = true;
3904 
3905     Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS));
3906 
3907     // Poll it now.
3908     StringExtractorGDBRemote response;
3909     const bool send_async = false;
3910     if (SendPacketAndWaitForResponse("qStructuredDataPlugins", response,
3911                                      send_async) == PacketResult::Success) {
3912       m_supported_async_json_packets_sp =
3913           StructuredData::ParseJSON(response.GetStringRef());
3914       if (m_supported_async_json_packets_sp &&
3915           !m_supported_async_json_packets_sp->GetAsArray()) {
3916         // We were returned something other than a JSON array.  This is
3917         // invalid.  Clear it out.
3918         LLDB_LOGF(log,
3919                   "GDBRemoteCommunicationClient::%s(): "
3920                   "QSupportedAsyncJSONPackets returned invalid "
3921                   "result: %s",
3922                   __FUNCTION__, response.GetStringRef().data());
3923         m_supported_async_json_packets_sp.reset();
3924       }
3925     } else {
3926       LLDB_LOGF(log,
3927                 "GDBRemoteCommunicationClient::%s(): "
3928                 "QSupportedAsyncJSONPackets unsupported",
3929                 __FUNCTION__);
3930     }
3931 
3932     if (log && m_supported_async_json_packets_sp) {
3933       StreamString stream;
3934       m_supported_async_json_packets_sp->Dump(stream);
3935       LLDB_LOGF(log,
3936                 "GDBRemoteCommunicationClient::%s(): supported async "
3937                 "JSON packets: %s",
3938                 __FUNCTION__, stream.GetData());
3939     }
3940   }
3941 
3942   return m_supported_async_json_packets_sp
3943              ? m_supported_async_json_packets_sp->GetAsArray()
3944              : nullptr;
3945 }
3946 
3947 Status GDBRemoteCommunicationClient::SendSignalsToIgnore(
3948     llvm::ArrayRef<int32_t> signals) {
3949   // Format packet:
3950   // QPassSignals:<hex_sig1>;<hex_sig2>...;<hex_sigN>
3951   auto range = llvm::make_range(signals.begin(), signals.end());
3952   std::string packet = formatv("QPassSignals:{0:$[;]@(x-2)}", range).str();
3953 
3954   StringExtractorGDBRemote response;
3955   auto send_status = SendPacketAndWaitForResponse(packet, response, false);
3956 
3957   if (send_status != GDBRemoteCommunication::PacketResult::Success)
3958     return Status("Sending QPassSignals packet failed");
3959 
3960   if (response.IsOKResponse()) {
3961     return Status();
3962   } else {
3963     return Status("Unknown error happened during sending QPassSignals packet.");
3964   }
3965 }
3966 
3967 Status GDBRemoteCommunicationClient::ConfigureRemoteStructuredData(
3968     ConstString type_name, const StructuredData::ObjectSP &config_sp) {
3969   Status error;
3970 
3971   if (type_name.GetLength() == 0) {
3972     error.SetErrorString("invalid type_name argument");
3973     return error;
3974   }
3975 
3976   // Build command: Configure{type_name}: serialized config data.
3977   StreamGDBRemote stream;
3978   stream.PutCString("QConfigure");
3979   stream.PutCString(type_name.AsCString());
3980   stream.PutChar(':');
3981   if (config_sp) {
3982     // Gather the plain-text version of the configuration data.
3983     StreamString unescaped_stream;
3984     config_sp->Dump(unescaped_stream);
3985     unescaped_stream.Flush();
3986 
3987     // Add it to the stream in escaped fashion.
3988     stream.PutEscapedBytes(unescaped_stream.GetString().data(),
3989                            unescaped_stream.GetSize());
3990   }
3991   stream.Flush();
3992 
3993   // Send the packet.
3994   const bool send_async = false;
3995   StringExtractorGDBRemote response;
3996   auto result =
3997       SendPacketAndWaitForResponse(stream.GetString(), response, send_async);
3998   if (result == PacketResult::Success) {
3999     // We failed if the config result comes back other than OK.
4000     if (strcmp(response.GetStringRef().data(), "OK") == 0) {
4001       // Okay!
4002       error.Clear();
4003     } else {
4004       error.SetErrorStringWithFormat("configuring StructuredData feature "
4005                                      "%s failed with error %s",
4006                                      type_name.AsCString(),
4007                                      response.GetStringRef().data());
4008     }
4009   } else {
4010     // Can we get more data here on the failure?
4011     error.SetErrorStringWithFormat("configuring StructuredData feature %s "
4012                                    "failed when sending packet: "
4013                                    "PacketResult=%d",
4014                                    type_name.AsCString(), (int)result);
4015   }
4016   return error;
4017 }
4018 
4019 void GDBRemoteCommunicationClient::OnRunPacketSent(bool first) {
4020   GDBRemoteClientBase::OnRunPacketSent(first);
4021   m_curr_tid = LLDB_INVALID_THREAD_ID;
4022 }
4023