1 //===-- GDBRemoteCommunication.cpp ------------------------------*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 10 #include "GDBRemoteCommunication.h" 11 12 #include <future> 13 #include <limits.h> 14 #include <string.h> 15 #include <sys/stat.h> 16 17 #include "lldb/Core/StreamFile.h" 18 #include "lldb/Host/ConnectionFileDescriptor.h" 19 #include "lldb/Host/FileSystem.h" 20 #include "lldb/Host/Host.h" 21 #include "lldb/Host/HostInfo.h" 22 #include "lldb/Host/Pipe.h" 23 #include "lldb/Host/Socket.h" 24 #include "lldb/Host/StringConvert.h" 25 #include "lldb/Host/ThreadLauncher.h" 26 #include "lldb/Host/common/TCPSocket.h" 27 #include "lldb/Host/posix/ConnectionFileDescriptorPosix.h" 28 #include "lldb/Target/Platform.h" 29 #include "lldb/Target/Process.h" 30 #include "lldb/Utility/FileSpec.h" 31 #include "lldb/Utility/Log.h" 32 #include "lldb/Utility/RegularExpression.h" 33 #include "lldb/Utility/StreamString.h" 34 #include "llvm/ADT/SmallString.h" 35 #include "llvm/Support/ScopedPrinter.h" 36 37 #include "ProcessGDBRemoteLog.h" 38 39 #if defined(__APPLE__) 40 #define DEBUGSERVER_BASENAME "debugserver" 41 #else 42 #define DEBUGSERVER_BASENAME "lldb-server" 43 #endif 44 45 #if defined(HAVE_LIBCOMPRESSION) 46 #include <compression.h> 47 #endif 48 49 #if defined(HAVE_LIBZ) 50 #include <zlib.h> 51 #endif 52 53 using namespace lldb; 54 using namespace lldb_private; 55 using namespace lldb_private::process_gdb_remote; 56 57 //---------------------------------------------------------------------- 58 // GDBRemoteCommunication constructor 59 //---------------------------------------------------------------------- 60 GDBRemoteCommunication::GDBRemoteCommunication(const char *comm_name, 61 const char *listener_name) 62 : Communication(comm_name), 63 #ifdef LLDB_CONFIGURATION_DEBUG 64 m_packet_timeout(1000), 65 #else 66 m_packet_timeout(1), 67 #endif 68 m_echo_number(0), m_supports_qEcho(eLazyBoolCalculate), m_history(512), 69 m_send_acks(true), m_compression_type(CompressionType::None), 70 m_listen_url() { 71 } 72 73 //---------------------------------------------------------------------- 74 // Destructor 75 //---------------------------------------------------------------------- 76 GDBRemoteCommunication::~GDBRemoteCommunication() { 77 if (IsConnected()) { 78 Disconnect(); 79 } 80 81 // Stop the communications read thread which is used to parse all incoming 82 // packets. This function will block until the read thread returns. 83 if (m_read_thread_enabled) 84 StopReadThread(); 85 } 86 87 char GDBRemoteCommunication::CalculcateChecksum(llvm::StringRef payload) { 88 int checksum = 0; 89 90 for (char c : payload) 91 checksum += c; 92 93 return checksum & 255; 94 } 95 96 size_t GDBRemoteCommunication::SendAck() { 97 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 98 ConnectionStatus status = eConnectionStatusSuccess; 99 char ch = '+'; 100 const size_t bytes_written = Write(&ch, 1, status, NULL); 101 if (log) 102 log->Printf("<%4" PRIu64 "> send packet: %c", (uint64_t)bytes_written, ch); 103 m_history.AddPacket(ch, GDBRemoteCommunicationHistory::ePacketTypeSend, 104 bytes_written); 105 return bytes_written; 106 } 107 108 size_t GDBRemoteCommunication::SendNack() { 109 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 110 ConnectionStatus status = eConnectionStatusSuccess; 111 char ch = '-'; 112 const size_t bytes_written = Write(&ch, 1, status, NULL); 113 if (log) 114 log->Printf("<%4" PRIu64 "> send packet: %c", (uint64_t)bytes_written, ch); 115 m_history.AddPacket(ch, GDBRemoteCommunicationHistory::ePacketTypeSend, 116 bytes_written); 117 return bytes_written; 118 } 119 120 GDBRemoteCommunication::PacketResult 121 GDBRemoteCommunication::SendPacketNoLock(llvm::StringRef payload) { 122 StreamString packet(0, 4, eByteOrderBig); 123 packet.PutChar('$'); 124 packet.Write(payload.data(), payload.size()); 125 packet.PutChar('#'); 126 packet.PutHex8(CalculcateChecksum(payload)); 127 std::string packet_str = packet.GetString(); 128 129 return SendRawPacketNoLock(packet_str); 130 } 131 132 GDBRemoteCommunication::PacketResult 133 GDBRemoteCommunication::SendRawPacketNoLock(llvm::StringRef packet, 134 bool skip_ack) { 135 if (IsConnected()) { 136 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 137 ConnectionStatus status = eConnectionStatusSuccess; 138 const char *packet_data = packet.data(); 139 const size_t packet_length = packet.size(); 140 size_t bytes_written = Write(packet_data, packet_length, status, NULL); 141 if (log) { 142 size_t binary_start_offset = 0; 143 if (strncmp(packet_data, "$vFile:pwrite:", strlen("$vFile:pwrite:")) == 144 0) { 145 const char *first_comma = strchr(packet_data, ','); 146 if (first_comma) { 147 const char *second_comma = strchr(first_comma + 1, ','); 148 if (second_comma) 149 binary_start_offset = second_comma - packet_data + 1; 150 } 151 } 152 153 // If logging was just enabled and we have history, then dump out what we 154 // have to the log so we get the historical context. The Dump() call that 155 // logs all of the packet will set a boolean so that we don't dump this 156 // more than once 157 if (!m_history.DidDumpToLog()) 158 m_history.Dump(log); 159 160 if (binary_start_offset) { 161 StreamString strm; 162 // Print non binary data header 163 strm.Printf("<%4" PRIu64 "> send packet: %.*s", (uint64_t)bytes_written, 164 (int)binary_start_offset, packet_data); 165 const uint8_t *p; 166 // Print binary data exactly as sent 167 for (p = (const uint8_t *)packet_data + binary_start_offset; *p != '#'; 168 ++p) 169 strm.Printf("\\x%2.2x", *p); 170 // Print the checksum 171 strm.Printf("%*s", (int)3, p); 172 log->PutString(strm.GetString()); 173 } else 174 log->Printf("<%4" PRIu64 "> send packet: %.*s", (uint64_t)bytes_written, 175 (int)packet_length, packet_data); 176 } 177 178 m_history.AddPacket(packet.str(), packet_length, 179 GDBRemoteCommunicationHistory::ePacketTypeSend, 180 bytes_written); 181 182 if (bytes_written == packet_length) { 183 if (!skip_ack && GetSendAcks()) 184 return GetAck(); 185 else 186 return PacketResult::Success; 187 } else { 188 if (log) 189 log->Printf("error: failed to send packet: %.*s", (int)packet_length, 190 packet_data); 191 } 192 } 193 return PacketResult::ErrorSendFailed; 194 } 195 196 GDBRemoteCommunication::PacketResult GDBRemoteCommunication::GetAck() { 197 StringExtractorGDBRemote packet; 198 PacketResult result = ReadPacket(packet, GetPacketTimeout(), false); 199 if (result == PacketResult::Success) { 200 if (packet.GetResponseType() == 201 StringExtractorGDBRemote::ResponseType::eAck) 202 return PacketResult::Success; 203 else 204 return PacketResult::ErrorSendAck; 205 } 206 return result; 207 } 208 209 GDBRemoteCommunication::PacketResult 210 GDBRemoteCommunication::ReadPacketWithOutputSupport( 211 StringExtractorGDBRemote &response, Timeout<std::micro> timeout, 212 bool sync_on_timeout, 213 llvm::function_ref<void(llvm::StringRef)> output_callback) { 214 auto result = ReadPacket(response, timeout, sync_on_timeout); 215 while (result == PacketResult::Success && response.IsNormalResponse() && 216 response.PeekChar() == 'O') { 217 response.GetChar(); 218 std::string output; 219 if (response.GetHexByteString(output)) 220 output_callback(output); 221 result = ReadPacket(response, timeout, sync_on_timeout); 222 } 223 return result; 224 } 225 226 GDBRemoteCommunication::PacketResult 227 GDBRemoteCommunication::ReadPacket(StringExtractorGDBRemote &response, 228 Timeout<std::micro> timeout, 229 bool sync_on_timeout) { 230 if (m_read_thread_enabled) 231 return PopPacketFromQueue(response, timeout); 232 else 233 return WaitForPacketNoLock(response, timeout, sync_on_timeout); 234 } 235 236 // This function is called when a packet is requested. 237 // A whole packet is popped from the packet queue and returned to the caller. 238 // Packets are placed into this queue from the communication read thread. See 239 // GDBRemoteCommunication::AppendBytesToCache. 240 GDBRemoteCommunication::PacketResult 241 GDBRemoteCommunication::PopPacketFromQueue(StringExtractorGDBRemote &response, 242 Timeout<std::micro> timeout) { 243 auto pred = [&] { return !m_packet_queue.empty() && IsConnected(); }; 244 // lock down the packet queue 245 std::unique_lock<std::mutex> lock(m_packet_queue_mutex); 246 247 if (!timeout) 248 m_condition_queue_not_empty.wait(lock, pred); 249 else { 250 if (!m_condition_queue_not_empty.wait_for(lock, *timeout, pred)) 251 return PacketResult::ErrorReplyTimeout; 252 if (!IsConnected()) 253 return PacketResult::ErrorDisconnected; 254 } 255 256 // get the front element of the queue 257 response = m_packet_queue.front(); 258 259 // remove the front element 260 m_packet_queue.pop(); 261 262 // we got a packet 263 return PacketResult::Success; 264 } 265 266 GDBRemoteCommunication::PacketResult 267 GDBRemoteCommunication::WaitForPacketNoLock(StringExtractorGDBRemote &packet, 268 Timeout<std::micro> timeout, 269 bool sync_on_timeout) { 270 uint8_t buffer[8192]; 271 Status error; 272 273 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 274 275 // Check for a packet from our cache first without trying any reading... 276 if (CheckForPacket(NULL, 0, packet) != PacketType::Invalid) 277 return PacketResult::Success; 278 279 bool timed_out = false; 280 bool disconnected = false; 281 while (IsConnected() && !timed_out) { 282 lldb::ConnectionStatus status = eConnectionStatusNoConnection; 283 size_t bytes_read = Read(buffer, sizeof(buffer), timeout, status, &error); 284 285 LLDB_LOGV(log, 286 "Read(buffer, sizeof(buffer), timeout = {0}, " 287 "status = {1}, error = {2}) => bytes_read = {3}", 288 timeout, Communication::ConnectionStatusAsCString(status), error, 289 bytes_read); 290 291 if (bytes_read > 0) { 292 if (CheckForPacket(buffer, bytes_read, packet) != PacketType::Invalid) 293 return PacketResult::Success; 294 } else { 295 switch (status) { 296 case eConnectionStatusTimedOut: 297 case eConnectionStatusInterrupted: 298 if (sync_on_timeout) { 299 //------------------------------------------------------------------ 300 /// Sync the remote GDB server and make sure we get a response that 301 /// corresponds to what we send. 302 /// 303 /// Sends a "qEcho" packet and makes sure it gets the exact packet 304 /// echoed back. If the qEcho packet isn't supported, we send a qC 305 /// packet and make sure we get a valid thread ID back. We use the 306 /// "qC" packet since its response if very unique: is responds with 307 /// "QC%x" where %x is the thread ID of the current thread. This 308 /// makes the response unique enough from other packet responses to 309 /// ensure we are back on track. 310 /// 311 /// This packet is needed after we time out sending a packet so we 312 /// can ensure that we are getting the response for the packet we 313 /// are sending. There are no sequence IDs in the GDB remote 314 /// protocol (there used to be, but they are not supported anymore) 315 /// so if you timeout sending packet "abc", you might then send 316 /// packet "cde" and get the response for the previous "abc" packet. 317 /// Many responses are "OK" or "" (unsupported) or "EXX" (error) so 318 /// many responses for packets can look like responses for other 319 /// packets. So if we timeout, we need to ensure that we can get 320 /// back on track. If we can't get back on track, we must 321 /// disconnect. 322 //------------------------------------------------------------------ 323 bool sync_success = false; 324 bool got_actual_response = false; 325 // We timed out, we need to sync back up with the 326 char echo_packet[32]; 327 int echo_packet_len = 0; 328 RegularExpression response_regex; 329 330 if (m_supports_qEcho == eLazyBoolYes) { 331 echo_packet_len = ::snprintf(echo_packet, sizeof(echo_packet), 332 "qEcho:%u", ++m_echo_number); 333 std::string regex_str = "^"; 334 regex_str += echo_packet; 335 regex_str += "$"; 336 response_regex.Compile(regex_str); 337 } else { 338 echo_packet_len = 339 ::snprintf(echo_packet, sizeof(echo_packet), "qC"); 340 response_regex.Compile(llvm::StringRef("^QC[0-9A-Fa-f]+$")); 341 } 342 343 PacketResult echo_packet_result = 344 SendPacketNoLock(llvm::StringRef(echo_packet, echo_packet_len)); 345 if (echo_packet_result == PacketResult::Success) { 346 const uint32_t max_retries = 3; 347 uint32_t successful_responses = 0; 348 for (uint32_t i = 0; i < max_retries; ++i) { 349 StringExtractorGDBRemote echo_response; 350 echo_packet_result = 351 WaitForPacketNoLock(echo_response, timeout, false); 352 if (echo_packet_result == PacketResult::Success) { 353 ++successful_responses; 354 if (response_regex.Execute(echo_response.GetStringRef())) { 355 sync_success = true; 356 break; 357 } else if (successful_responses == 1) { 358 // We got something else back as the first successful 359 // response, it probably is the response to the packet we 360 // actually wanted, so copy it over if this is the first 361 // success and continue to try to get the qEcho response 362 packet = echo_response; 363 got_actual_response = true; 364 } 365 } else if (echo_packet_result == PacketResult::ErrorReplyTimeout) 366 continue; // Packet timed out, continue waiting for a response 367 else 368 break; // Something else went wrong getting the packet back, we 369 // failed and are done trying 370 } 371 } 372 373 // We weren't able to sync back up with the server, we must abort 374 // otherwise all responses might not be from the right packets... 375 if (sync_success) { 376 // We timed out, but were able to recover 377 if (got_actual_response) { 378 // We initially timed out, but we did get a response that came in 379 // before the successful reply to our qEcho packet, so lets say 380 // everything is fine... 381 return PacketResult::Success; 382 } 383 } else { 384 disconnected = true; 385 Disconnect(); 386 } 387 } 388 timed_out = true; 389 break; 390 case eConnectionStatusSuccess: 391 // printf ("status = success but error = %s\n", 392 // error.AsCString("<invalid>")); 393 break; 394 395 case eConnectionStatusEndOfFile: 396 case eConnectionStatusNoConnection: 397 case eConnectionStatusLostConnection: 398 case eConnectionStatusError: 399 disconnected = true; 400 Disconnect(); 401 break; 402 } 403 } 404 } 405 packet.Clear(); 406 if (disconnected) 407 return PacketResult::ErrorDisconnected; 408 if (timed_out) 409 return PacketResult::ErrorReplyTimeout; 410 else 411 return PacketResult::ErrorReplyFailed; 412 } 413 414 bool GDBRemoteCommunication::DecompressPacket() { 415 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 416 417 if (!CompressionIsEnabled()) 418 return true; 419 420 size_t pkt_size = m_bytes.size(); 421 422 // Smallest possible compressed packet is $N#00 - an uncompressed empty 423 // reply, most commonly indicating an unsupported packet. Anything less than 424 // 5 characters, it's definitely not a compressed packet. 425 if (pkt_size < 5) 426 return true; 427 428 if (m_bytes[0] != '$' && m_bytes[0] != '%') 429 return true; 430 if (m_bytes[1] != 'C' && m_bytes[1] != 'N') 431 return true; 432 433 size_t hash_mark_idx = m_bytes.find('#'); 434 if (hash_mark_idx == std::string::npos) 435 return true; 436 if (hash_mark_idx + 2 >= m_bytes.size()) 437 return true; 438 439 if (!::isxdigit(m_bytes[hash_mark_idx + 1]) || 440 !::isxdigit(m_bytes[hash_mark_idx + 2])) 441 return true; 442 443 size_t content_length = 444 pkt_size - 445 5; // not counting '$', 'C' | 'N', '#', & the two hex checksum chars 446 size_t content_start = 2; // The first character of the 447 // compressed/not-compressed text of the packet 448 size_t checksum_idx = 449 hash_mark_idx + 450 1; // The first character of the two hex checksum characters 451 452 // Normally size_of_first_packet == m_bytes.size() but m_bytes may contain 453 // multiple packets. size_of_first_packet is the size of the initial packet 454 // which we'll replace with the decompressed version of, leaving the rest of 455 // m_bytes unmodified. 456 size_t size_of_first_packet = hash_mark_idx + 3; 457 458 // Compressed packets ("$C") start with a base10 number which is the size of 459 // the uncompressed payload, then a : and then the compressed data. e.g. 460 // $C1024:<binary>#00 Update content_start and content_length to only include 461 // the <binary> part of the packet. 462 463 uint64_t decompressed_bufsize = ULONG_MAX; 464 if (m_bytes[1] == 'C') { 465 size_t i = content_start; 466 while (i < hash_mark_idx && isdigit(m_bytes[i])) 467 i++; 468 if (i < hash_mark_idx && m_bytes[i] == ':') { 469 i++; 470 content_start = i; 471 content_length = hash_mark_idx - content_start; 472 std::string bufsize_str(m_bytes.data() + 2, i - 2 - 1); 473 errno = 0; 474 decompressed_bufsize = ::strtoul(bufsize_str.c_str(), NULL, 10); 475 if (errno != 0 || decompressed_bufsize == ULONG_MAX) { 476 m_bytes.erase(0, size_of_first_packet); 477 return false; 478 } 479 } 480 } 481 482 if (GetSendAcks()) { 483 char packet_checksum_cstr[3]; 484 packet_checksum_cstr[0] = m_bytes[checksum_idx]; 485 packet_checksum_cstr[1] = m_bytes[checksum_idx + 1]; 486 packet_checksum_cstr[2] = '\0'; 487 long packet_checksum = strtol(packet_checksum_cstr, NULL, 16); 488 489 long actual_checksum = CalculcateChecksum( 490 llvm::StringRef(m_bytes).substr(1, hash_mark_idx - 1)); 491 bool success = packet_checksum == actual_checksum; 492 if (!success) { 493 if (log) 494 log->Printf( 495 "error: checksum mismatch: %.*s expected 0x%2.2x, got 0x%2.2x", 496 (int)(pkt_size), m_bytes.c_str(), (uint8_t)packet_checksum, 497 (uint8_t)actual_checksum); 498 } 499 // Send the ack or nack if needed 500 if (!success) { 501 SendNack(); 502 m_bytes.erase(0, size_of_first_packet); 503 return false; 504 } else { 505 SendAck(); 506 } 507 } 508 509 if (m_bytes[1] == 'N') { 510 // This packet was not compressed -- delete the 'N' character at the start 511 // and the packet may be processed as-is. 512 m_bytes.erase(1, 1); 513 return true; 514 } 515 516 // Reverse the gdb-remote binary escaping that was done to the compressed 517 // text to guard characters like '$', '#', '}', etc. 518 std::vector<uint8_t> unescaped_content; 519 unescaped_content.reserve(content_length); 520 size_t i = content_start; 521 while (i < hash_mark_idx) { 522 if (m_bytes[i] == '}') { 523 i++; 524 unescaped_content.push_back(m_bytes[i] ^ 0x20); 525 } else { 526 unescaped_content.push_back(m_bytes[i]); 527 } 528 i++; 529 } 530 531 uint8_t *decompressed_buffer = nullptr; 532 size_t decompressed_bytes = 0; 533 534 if (decompressed_bufsize != ULONG_MAX) { 535 decompressed_buffer = (uint8_t *)malloc(decompressed_bufsize + 1); 536 if (decompressed_buffer == nullptr) { 537 m_bytes.erase(0, size_of_first_packet); 538 return false; 539 } 540 } 541 542 #if defined(HAVE_LIBCOMPRESSION) 543 // libcompression is weak linked so check that compression_decode_buffer() is 544 // available 545 if (m_compression_type == CompressionType::ZlibDeflate || 546 m_compression_type == CompressionType::LZFSE || 547 m_compression_type == CompressionType::LZ4) { 548 compression_algorithm compression_type; 549 if (m_compression_type == CompressionType::LZFSE) 550 compression_type = COMPRESSION_LZFSE; 551 else if (m_compression_type == CompressionType::ZlibDeflate) 552 compression_type = COMPRESSION_ZLIB; 553 else if (m_compression_type == CompressionType::LZ4) 554 compression_type = COMPRESSION_LZ4_RAW; 555 else if (m_compression_type == CompressionType::LZMA) 556 compression_type = COMPRESSION_LZMA; 557 558 // If we have the expected size of the decompressed payload, we can 559 // allocate the right-sized buffer and do it. If we don't have that 560 // information, we'll need to try decoding into a big buffer and if the 561 // buffer wasn't big enough, increase it and try again. 562 563 if (decompressed_bufsize != ULONG_MAX && decompressed_buffer != nullptr) { 564 decompressed_bytes = compression_decode_buffer( 565 decompressed_buffer, decompressed_bufsize + 10, 566 (uint8_t *)unescaped_content.data(), unescaped_content.size(), NULL, 567 compression_type); 568 } 569 } 570 #endif 571 572 #if defined(HAVE_LIBZ) 573 if (decompressed_bytes == 0 && decompressed_bufsize != ULONG_MAX && 574 decompressed_buffer != nullptr && 575 m_compression_type == CompressionType::ZlibDeflate) { 576 z_stream stream; 577 memset(&stream, 0, sizeof(z_stream)); 578 stream.next_in = (Bytef *)unescaped_content.data(); 579 stream.avail_in = (uInt)unescaped_content.size(); 580 stream.total_in = 0; 581 stream.next_out = (Bytef *)decompressed_buffer; 582 stream.avail_out = decompressed_bufsize; 583 stream.total_out = 0; 584 stream.zalloc = Z_NULL; 585 stream.zfree = Z_NULL; 586 stream.opaque = Z_NULL; 587 588 if (inflateInit2(&stream, -15) == Z_OK) { 589 int status = inflate(&stream, Z_NO_FLUSH); 590 inflateEnd(&stream); 591 if (status == Z_STREAM_END) { 592 decompressed_bytes = stream.total_out; 593 } 594 } 595 } 596 #endif 597 598 if (decompressed_bytes == 0 || decompressed_buffer == nullptr) { 599 if (decompressed_buffer) 600 free(decompressed_buffer); 601 m_bytes.erase(0, size_of_first_packet); 602 return false; 603 } 604 605 std::string new_packet; 606 new_packet.reserve(decompressed_bytes + 6); 607 new_packet.push_back(m_bytes[0]); 608 new_packet.append((const char *)decompressed_buffer, decompressed_bytes); 609 new_packet.push_back('#'); 610 if (GetSendAcks()) { 611 uint8_t decompressed_checksum = CalculcateChecksum( 612 llvm::StringRef((const char *)decompressed_buffer, decompressed_bytes)); 613 char decompressed_checksum_str[3]; 614 snprintf(decompressed_checksum_str, 3, "%02x", decompressed_checksum); 615 new_packet.append(decompressed_checksum_str); 616 } else { 617 new_packet.push_back('0'); 618 new_packet.push_back('0'); 619 } 620 621 m_bytes.replace(0, size_of_first_packet, new_packet.data(), 622 new_packet.size()); 623 624 free(decompressed_buffer); 625 return true; 626 } 627 628 GDBRemoteCommunication::PacketType 629 GDBRemoteCommunication::CheckForPacket(const uint8_t *src, size_t src_len, 630 StringExtractorGDBRemote &packet) { 631 // Put the packet data into the buffer in a thread safe fashion 632 std::lock_guard<std::recursive_mutex> guard(m_bytes_mutex); 633 634 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PACKETS)); 635 636 if (src && src_len > 0) { 637 if (log && log->GetVerbose()) { 638 StreamString s; 639 log->Printf("GDBRemoteCommunication::%s adding %u bytes: %.*s", 640 __FUNCTION__, (uint32_t)src_len, (uint32_t)src_len, src); 641 } 642 m_bytes.append((const char *)src, src_len); 643 } 644 645 bool isNotifyPacket = false; 646 647 // Parse up the packets into gdb remote packets 648 if (!m_bytes.empty()) { 649 // end_idx must be one past the last valid packet byte. Start it off with 650 // an invalid value that is the same as the current index. 651 size_t content_start = 0; 652 size_t content_length = 0; 653 size_t total_length = 0; 654 size_t checksum_idx = std::string::npos; 655 656 // Size of packet before it is decompressed, for logging purposes 657 size_t original_packet_size = m_bytes.size(); 658 if (CompressionIsEnabled()) { 659 if (DecompressPacket() == false) { 660 packet.Clear(); 661 return GDBRemoteCommunication::PacketType::Standard; 662 } 663 } 664 665 switch (m_bytes[0]) { 666 case '+': // Look for ack 667 case '-': // Look for cancel 668 case '\x03': // ^C to halt target 669 content_length = total_length = 1; // The command is one byte long... 670 break; 671 672 case '%': // Async notify packet 673 isNotifyPacket = true; 674 LLVM_FALLTHROUGH; 675 676 case '$': 677 // Look for a standard gdb packet? 678 { 679 size_t hash_pos = m_bytes.find('#'); 680 if (hash_pos != std::string::npos) { 681 if (hash_pos + 2 < m_bytes.size()) { 682 checksum_idx = hash_pos + 1; 683 // Skip the dollar sign 684 content_start = 1; 685 // Don't include the # in the content or the $ in the content 686 // length 687 content_length = hash_pos - 1; 688 689 total_length = 690 hash_pos + 3; // Skip the # and the two hex checksum bytes 691 } else { 692 // Checksum bytes aren't all here yet 693 content_length = std::string::npos; 694 } 695 } 696 } 697 break; 698 699 default: { 700 // We have an unexpected byte and we need to flush all bad data that is 701 // in m_bytes, so we need to find the first byte that is a '+' (ACK), '-' 702 // (NACK), \x03 (CTRL+C interrupt), or '$' character (start of packet 703 // header) or of course, the end of the data in m_bytes... 704 const size_t bytes_len = m_bytes.size(); 705 bool done = false; 706 uint32_t idx; 707 for (idx = 1; !done && idx < bytes_len; ++idx) { 708 switch (m_bytes[idx]) { 709 case '+': 710 case '-': 711 case '\x03': 712 case '%': 713 case '$': 714 done = true; 715 break; 716 717 default: 718 break; 719 } 720 } 721 if (log) 722 log->Printf("GDBRemoteCommunication::%s tossing %u junk bytes: '%.*s'", 723 __FUNCTION__, idx - 1, idx - 1, m_bytes.c_str()); 724 m_bytes.erase(0, idx - 1); 725 } break; 726 } 727 728 if (content_length == std::string::npos) { 729 packet.Clear(); 730 return GDBRemoteCommunication::PacketType::Invalid; 731 } else if (total_length > 0) { 732 733 // We have a valid packet... 734 assert(content_length <= m_bytes.size()); 735 assert(total_length <= m_bytes.size()); 736 assert(content_length <= total_length); 737 size_t content_end = content_start + content_length; 738 739 bool success = true; 740 std::string &packet_str = packet.GetStringRef(); 741 if (log) { 742 // If logging was just enabled and we have history, then dump out what 743 // we have to the log so we get the historical context. The Dump() call 744 // that logs all of the packet will set a boolean so that we don't dump 745 // this more than once 746 if (!m_history.DidDumpToLog()) 747 m_history.Dump(log); 748 749 bool binary = false; 750 // Only detect binary for packets that start with a '$' and have a 751 // '#CC' checksum 752 if (m_bytes[0] == '$' && total_length > 4) { 753 for (size_t i = 0; !binary && i < total_length; ++i) { 754 unsigned char c = m_bytes[i]; 755 if (isprint(c) == 0 && isspace(c) == 0) { 756 binary = true; 757 } 758 } 759 } 760 if (binary) { 761 StreamString strm; 762 // Packet header... 763 if (CompressionIsEnabled()) 764 strm.Printf("<%4" PRIu64 ":%" PRIu64 "> read packet: %c", 765 (uint64_t)original_packet_size, (uint64_t)total_length, 766 m_bytes[0]); 767 else 768 strm.Printf("<%4" PRIu64 "> read packet: %c", 769 (uint64_t)total_length, m_bytes[0]); 770 for (size_t i = content_start; i < content_end; ++i) { 771 // Remove binary escaped bytes when displaying the packet... 772 const char ch = m_bytes[i]; 773 if (ch == 0x7d) { 774 // 0x7d is the escape character. The next character is to be 775 // XOR'd with 0x20. 776 const char escapee = m_bytes[++i] ^ 0x20; 777 strm.Printf("%2.2x", escapee); 778 } else { 779 strm.Printf("%2.2x", (uint8_t)ch); 780 } 781 } 782 // Packet footer... 783 strm.Printf("%c%c%c", m_bytes[total_length - 3], 784 m_bytes[total_length - 2], m_bytes[total_length - 1]); 785 log->PutString(strm.GetString()); 786 } else { 787 if (CompressionIsEnabled()) 788 log->Printf("<%4" PRIu64 ":%" PRIu64 "> read packet: %.*s", 789 (uint64_t)original_packet_size, (uint64_t)total_length, 790 (int)(total_length), m_bytes.c_str()); 791 else 792 log->Printf("<%4" PRIu64 "> read packet: %.*s", 793 (uint64_t)total_length, (int)(total_length), 794 m_bytes.c_str()); 795 } 796 } 797 798 m_history.AddPacket(m_bytes, total_length, 799 GDBRemoteCommunicationHistory::ePacketTypeRecv, 800 total_length); 801 802 // Clear packet_str in case there is some existing data in it. 803 packet_str.clear(); 804 // Copy the packet from m_bytes to packet_str expanding the run-length 805 // encoding in the process. Reserve enough byte for the most common case 806 // (no RLE used) 807 packet_str.reserve(m_bytes.length()); 808 for (std::string::const_iterator c = m_bytes.begin() + content_start; 809 c != m_bytes.begin() + content_end; ++c) { 810 if (*c == '*') { 811 // '*' indicates RLE. Next character will give us the repeat count 812 // and previous character is what is to be repeated. 813 char char_to_repeat = packet_str.back(); 814 // Number of time the previous character is repeated 815 int repeat_count = *++c + 3 - ' '; 816 // We have the char_to_repeat and repeat_count. Now push it in the 817 // packet. 818 for (int i = 0; i < repeat_count; ++i) 819 packet_str.push_back(char_to_repeat); 820 } else if (*c == 0x7d) { 821 // 0x7d is the escape character. The next character is to be XOR'd 822 // with 0x20. 823 char escapee = *++c ^ 0x20; 824 packet_str.push_back(escapee); 825 } else { 826 packet_str.push_back(*c); 827 } 828 } 829 830 if (m_bytes[0] == '$' || m_bytes[0] == '%') { 831 assert(checksum_idx < m_bytes.size()); 832 if (::isxdigit(m_bytes[checksum_idx + 0]) || 833 ::isxdigit(m_bytes[checksum_idx + 1])) { 834 if (GetSendAcks()) { 835 const char *packet_checksum_cstr = &m_bytes[checksum_idx]; 836 char packet_checksum = strtol(packet_checksum_cstr, NULL, 16); 837 char actual_checksum = CalculcateChecksum( 838 llvm::StringRef(m_bytes).slice(content_start, content_end)); 839 success = packet_checksum == actual_checksum; 840 if (!success) { 841 if (log) 842 log->Printf("error: checksum mismatch: %.*s expected 0x%2.2x, " 843 "got 0x%2.2x", 844 (int)(total_length), m_bytes.c_str(), 845 (uint8_t)packet_checksum, (uint8_t)actual_checksum); 846 } 847 // Send the ack or nack if needed 848 if (!success) 849 SendNack(); 850 else 851 SendAck(); 852 } 853 } else { 854 success = false; 855 if (log) 856 log->Printf("error: invalid checksum in packet: '%s'\n", 857 m_bytes.c_str()); 858 } 859 } 860 861 m_bytes.erase(0, total_length); 862 packet.SetFilePos(0); 863 864 if (isNotifyPacket) 865 return GDBRemoteCommunication::PacketType::Notify; 866 else 867 return GDBRemoteCommunication::PacketType::Standard; 868 } 869 } 870 packet.Clear(); 871 return GDBRemoteCommunication::PacketType::Invalid; 872 } 873 874 Status GDBRemoteCommunication::StartListenThread(const char *hostname, 875 uint16_t port) { 876 Status error; 877 if (m_listen_thread.IsJoinable()) { 878 error.SetErrorString("listen thread already running"); 879 } else { 880 char listen_url[512]; 881 if (hostname && hostname[0]) 882 snprintf(listen_url, sizeof(listen_url), "listen://%s:%i", hostname, 883 port); 884 else 885 snprintf(listen_url, sizeof(listen_url), "listen://%i", port); 886 m_listen_url = listen_url; 887 SetConnection(new ConnectionFileDescriptor()); 888 m_listen_thread = ThreadLauncher::LaunchThread( 889 listen_url, GDBRemoteCommunication::ListenThread, this, &error); 890 } 891 return error; 892 } 893 894 bool GDBRemoteCommunication::JoinListenThread() { 895 if (m_listen_thread.IsJoinable()) 896 m_listen_thread.Join(nullptr); 897 return true; 898 } 899 900 lldb::thread_result_t 901 GDBRemoteCommunication::ListenThread(lldb::thread_arg_t arg) { 902 GDBRemoteCommunication *comm = (GDBRemoteCommunication *)arg; 903 Status error; 904 ConnectionFileDescriptor *connection = 905 (ConnectionFileDescriptor *)comm->GetConnection(); 906 907 if (connection) { 908 // Do the listen on another thread so we can continue on... 909 if (connection->Connect(comm->m_listen_url.c_str(), &error) != 910 eConnectionStatusSuccess) 911 comm->SetConnection(NULL); 912 } 913 return NULL; 914 } 915 916 Status GDBRemoteCommunication::StartDebugserverProcess( 917 const char *url, Platform *platform, ProcessLaunchInfo &launch_info, 918 uint16_t *port, const Args *inferior_args, int pass_comm_fd) { 919 Log *log(ProcessGDBRemoteLog::GetLogIfAllCategoriesSet(GDBR_LOG_PROCESS)); 920 if (log) 921 log->Printf("GDBRemoteCommunication::%s(url=%s, port=%" PRIu16 ")", 922 __FUNCTION__, url ? url : "<empty>", 923 port ? *port : uint16_t(0)); 924 925 Status error; 926 // If we locate debugserver, keep that located version around 927 static FileSpec g_debugserver_file_spec; 928 929 char debugserver_path[PATH_MAX]; 930 FileSpec &debugserver_file_spec = launch_info.GetExecutableFile(); 931 932 // Always check to see if we have an environment override for the path to the 933 // debugserver to use and use it if we do. 934 const char *env_debugserver_path = getenv("LLDB_DEBUGSERVER_PATH"); 935 if (env_debugserver_path) { 936 debugserver_file_spec.SetFile(env_debugserver_path, 937 FileSpec::Style::native); 938 if (log) 939 log->Printf("GDBRemoteCommunication::%s() gdb-remote stub exe path set " 940 "from environment variable: %s", 941 __FUNCTION__, env_debugserver_path); 942 } else 943 debugserver_file_spec = g_debugserver_file_spec; 944 bool debugserver_exists = 945 FileSystem::Instance().Exists(debugserver_file_spec); 946 if (!debugserver_exists) { 947 // The debugserver binary is in the LLDB.framework/Resources directory. 948 debugserver_file_spec = HostInfo::GetSupportExeDir(); 949 if (debugserver_file_spec) { 950 debugserver_file_spec.AppendPathComponent(DEBUGSERVER_BASENAME); 951 debugserver_exists = FileSystem::Instance().Exists(debugserver_file_spec); 952 if (debugserver_exists) { 953 if (log) 954 log->Printf( 955 "GDBRemoteCommunication::%s() found gdb-remote stub exe '%s'", 956 __FUNCTION__, debugserver_file_spec.GetPath().c_str()); 957 958 g_debugserver_file_spec = debugserver_file_spec; 959 } else { 960 debugserver_file_spec = 961 platform->LocateExecutable(DEBUGSERVER_BASENAME); 962 if (debugserver_file_spec) { 963 // Platform::LocateExecutable() wouldn't return a path if it doesn't 964 // exist 965 debugserver_exists = true; 966 } else { 967 if (log) 968 log->Printf("GDBRemoteCommunication::%s() could not find " 969 "gdb-remote stub exe '%s'", 970 __FUNCTION__, debugserver_file_spec.GetPath().c_str()); 971 } 972 // Don't cache the platform specific GDB server binary as it could 973 // change from platform to platform 974 g_debugserver_file_spec.Clear(); 975 } 976 } 977 } 978 979 if (debugserver_exists) { 980 debugserver_file_spec.GetPath(debugserver_path, sizeof(debugserver_path)); 981 982 Args &debugserver_args = launch_info.GetArguments(); 983 debugserver_args.Clear(); 984 char arg_cstr[PATH_MAX]; 985 986 // Start args with "debugserver /file/path -r --" 987 debugserver_args.AppendArgument(llvm::StringRef(debugserver_path)); 988 989 #if !defined(__APPLE__) 990 // First argument to lldb-server must be mode in which to run. 991 debugserver_args.AppendArgument(llvm::StringRef("gdbserver")); 992 #endif 993 994 // If a url is supplied then use it 995 if (url) 996 debugserver_args.AppendArgument(llvm::StringRef(url)); 997 998 if (pass_comm_fd >= 0) { 999 StreamString fd_arg; 1000 fd_arg.Printf("--fd=%i", pass_comm_fd); 1001 debugserver_args.AppendArgument(fd_arg.GetString()); 1002 // Send "pass_comm_fd" down to the inferior so it can use it to 1003 // communicate back with this process 1004 launch_info.AppendDuplicateFileAction(pass_comm_fd, pass_comm_fd); 1005 } 1006 1007 // use native registers, not the GDB registers 1008 debugserver_args.AppendArgument(llvm::StringRef("--native-regs")); 1009 1010 if (launch_info.GetLaunchInSeparateProcessGroup()) { 1011 debugserver_args.AppendArgument(llvm::StringRef("--setsid")); 1012 } 1013 1014 llvm::SmallString<128> named_pipe_path; 1015 // socket_pipe is used by debug server to communicate back either 1016 // TCP port or domain socket name which it listens on. 1017 // The second purpose of the pipe to serve as a synchronization point - 1018 // once data is written to the pipe, debug server is up and running. 1019 Pipe socket_pipe; 1020 1021 // port is null when debug server should listen on domain socket - we're 1022 // not interested in port value but rather waiting for debug server to 1023 // become available. 1024 if (pass_comm_fd == -1) { 1025 if (url) { 1026 // Create a temporary file to get the stdout/stderr and redirect the output of 1027 // the command into this file. We will later read this file if all goes well 1028 // and fill the data into "command_output_ptr" 1029 #if defined(__APPLE__) 1030 // Binding to port zero, we need to figure out what port it ends up 1031 // using using a named pipe... 1032 error = socket_pipe.CreateWithUniqueName("debugserver-named-pipe", 1033 false, named_pipe_path); 1034 if (error.Fail()) { 1035 if (log) 1036 log->Printf("GDBRemoteCommunication::%s() " 1037 "named pipe creation failed: %s", 1038 __FUNCTION__, error.AsCString()); 1039 return error; 1040 } 1041 debugserver_args.AppendArgument(llvm::StringRef("--named-pipe")); 1042 debugserver_args.AppendArgument(named_pipe_path); 1043 #else 1044 // Binding to port zero, we need to figure out what port it ends up 1045 // using using an unnamed pipe... 1046 error = socket_pipe.CreateNew(true); 1047 if (error.Fail()) { 1048 if (log) 1049 log->Printf("GDBRemoteCommunication::%s() " 1050 "unnamed pipe creation failed: %s", 1051 __FUNCTION__, error.AsCString()); 1052 return error; 1053 } 1054 int write_fd = socket_pipe.GetWriteFileDescriptor(); 1055 debugserver_args.AppendArgument(llvm::StringRef("--pipe")); 1056 debugserver_args.AppendArgument(llvm::to_string(write_fd)); 1057 launch_info.AppendCloseFileAction(socket_pipe.GetReadFileDescriptor()); 1058 #endif 1059 } else { 1060 // No host and port given, so lets listen on our end and make the 1061 // debugserver connect to us.. 1062 error = StartListenThread("127.0.0.1", 0); 1063 if (error.Fail()) { 1064 if (log) 1065 log->Printf("GDBRemoteCommunication::%s() unable to start listen " 1066 "thread: %s", 1067 __FUNCTION__, error.AsCString()); 1068 return error; 1069 } 1070 1071 ConnectionFileDescriptor *connection = 1072 (ConnectionFileDescriptor *)GetConnection(); 1073 // Wait for 10 seconds to resolve the bound port 1074 uint16_t port_ = connection->GetListeningPort(std::chrono::seconds(10)); 1075 if (port_ > 0) { 1076 char port_cstr[32]; 1077 snprintf(port_cstr, sizeof(port_cstr), "127.0.0.1:%i", port_); 1078 // Send the host and port down that debugserver and specify an option 1079 // so that it connects back to the port we are listening to in this 1080 // process 1081 debugserver_args.AppendArgument(llvm::StringRef("--reverse-connect")); 1082 debugserver_args.AppendArgument(llvm::StringRef(port_cstr)); 1083 if (port) 1084 *port = port_; 1085 } else { 1086 error.SetErrorString("failed to bind to port 0 on 127.0.0.1"); 1087 if (log) 1088 log->Printf("GDBRemoteCommunication::%s() failed: %s", __FUNCTION__, 1089 error.AsCString()); 1090 return error; 1091 } 1092 } 1093 } 1094 1095 const char *env_debugserver_log_file = getenv("LLDB_DEBUGSERVER_LOG_FILE"); 1096 if (env_debugserver_log_file) { 1097 ::snprintf(arg_cstr, sizeof(arg_cstr), "--log-file=%s", 1098 env_debugserver_log_file); 1099 debugserver_args.AppendArgument(llvm::StringRef(arg_cstr)); 1100 } 1101 1102 #if defined(__APPLE__) 1103 const char *env_debugserver_log_flags = 1104 getenv("LLDB_DEBUGSERVER_LOG_FLAGS"); 1105 if (env_debugserver_log_flags) { 1106 ::snprintf(arg_cstr, sizeof(arg_cstr), "--log-flags=%s", 1107 env_debugserver_log_flags); 1108 debugserver_args.AppendArgument(llvm::StringRef(arg_cstr)); 1109 } 1110 #else 1111 const char *env_debugserver_log_channels = 1112 getenv("LLDB_SERVER_LOG_CHANNELS"); 1113 if (env_debugserver_log_channels) { 1114 ::snprintf(arg_cstr, sizeof(arg_cstr), "--log-channels=%s", 1115 env_debugserver_log_channels); 1116 debugserver_args.AppendArgument(llvm::StringRef(arg_cstr)); 1117 } 1118 #endif 1119 1120 // Add additional args, starting with LLDB_DEBUGSERVER_EXTRA_ARG_1 until an 1121 // env var doesn't come back. 1122 uint32_t env_var_index = 1; 1123 bool has_env_var; 1124 do { 1125 char env_var_name[64]; 1126 snprintf(env_var_name, sizeof(env_var_name), 1127 "LLDB_DEBUGSERVER_EXTRA_ARG_%" PRIu32, env_var_index++); 1128 const char *extra_arg = getenv(env_var_name); 1129 has_env_var = extra_arg != nullptr; 1130 1131 if (has_env_var) { 1132 debugserver_args.AppendArgument(llvm::StringRef(extra_arg)); 1133 if (log) 1134 log->Printf("GDBRemoteCommunication::%s adding env var %s contents " 1135 "to stub command line (%s)", 1136 __FUNCTION__, env_var_name, extra_arg); 1137 } 1138 } while (has_env_var); 1139 1140 if (inferior_args && inferior_args->GetArgumentCount() > 0) { 1141 debugserver_args.AppendArgument(llvm::StringRef("--")); 1142 debugserver_args.AppendArguments(*inferior_args); 1143 } 1144 1145 // Copy the current environment to the gdbserver/debugserver instance 1146 launch_info.GetEnvironment() = Host::GetEnvironment(); 1147 1148 // Close STDIN, STDOUT and STDERR. 1149 launch_info.AppendCloseFileAction(STDIN_FILENO); 1150 launch_info.AppendCloseFileAction(STDOUT_FILENO); 1151 launch_info.AppendCloseFileAction(STDERR_FILENO); 1152 1153 // Redirect STDIN, STDOUT and STDERR to "/dev/null". 1154 launch_info.AppendSuppressFileAction(STDIN_FILENO, true, false); 1155 launch_info.AppendSuppressFileAction(STDOUT_FILENO, false, true); 1156 launch_info.AppendSuppressFileAction(STDERR_FILENO, false, true); 1157 1158 if (log) { 1159 StreamString string_stream; 1160 Platform *const platform = nullptr; 1161 launch_info.Dump(string_stream, platform); 1162 log->Printf("launch info for gdb-remote stub:\n%s", 1163 string_stream.GetData()); 1164 } 1165 error = Host::LaunchProcess(launch_info); 1166 1167 if (error.Success() && 1168 (launch_info.GetProcessID() != LLDB_INVALID_PROCESS_ID) && 1169 pass_comm_fd == -1) { 1170 if (named_pipe_path.size() > 0) { 1171 error = socket_pipe.OpenAsReader(named_pipe_path, false); 1172 if (error.Fail()) 1173 if (log) 1174 log->Printf("GDBRemoteCommunication::%s() " 1175 "failed to open named pipe %s for reading: %s", 1176 __FUNCTION__, named_pipe_path.c_str(), 1177 error.AsCString()); 1178 } 1179 1180 if (socket_pipe.CanWrite()) 1181 socket_pipe.CloseWriteFileDescriptor(); 1182 if (socket_pipe.CanRead()) { 1183 char port_cstr[PATH_MAX] = {0}; 1184 port_cstr[0] = '\0'; 1185 size_t num_bytes = sizeof(port_cstr); 1186 // Read port from pipe with 10 second timeout. 1187 error = socket_pipe.ReadWithTimeout( 1188 port_cstr, num_bytes, std::chrono::seconds{10}, num_bytes); 1189 if (error.Success() && (port != nullptr)) { 1190 assert(num_bytes > 0 && port_cstr[num_bytes - 1] == '\0'); 1191 uint16_t child_port = StringConvert::ToUInt32(port_cstr, 0); 1192 if (*port == 0 || *port == child_port) { 1193 *port = child_port; 1194 if (log) 1195 log->Printf("GDBRemoteCommunication::%s() " 1196 "debugserver listens %u port", 1197 __FUNCTION__, *port); 1198 } else { 1199 if (log) 1200 log->Printf("GDBRemoteCommunication::%s() " 1201 "debugserver listening on port " 1202 "%d but requested port was %d", 1203 __FUNCTION__, (uint32_t)child_port, 1204 (uint32_t)(*port)); 1205 } 1206 } else { 1207 if (log) 1208 log->Printf("GDBRemoteCommunication::%s() " 1209 "failed to read a port value from pipe %s: %s", 1210 __FUNCTION__, named_pipe_path.c_str(), 1211 error.AsCString()); 1212 } 1213 socket_pipe.Close(); 1214 } 1215 1216 if (named_pipe_path.size() > 0) { 1217 const auto err = socket_pipe.Delete(named_pipe_path); 1218 if (err.Fail()) { 1219 if (log) 1220 log->Printf( 1221 "GDBRemoteCommunication::%s failed to delete pipe %s: %s", 1222 __FUNCTION__, named_pipe_path.c_str(), err.AsCString()); 1223 } 1224 } 1225 1226 // Make sure we actually connect with the debugserver... 1227 JoinListenThread(); 1228 } 1229 } else { 1230 error.SetErrorStringWithFormat("unable to locate " DEBUGSERVER_BASENAME); 1231 } 1232 1233 if (error.Fail()) { 1234 if (log) 1235 log->Printf("GDBRemoteCommunication::%s() failed: %s", __FUNCTION__, 1236 error.AsCString()); 1237 } 1238 1239 return error; 1240 } 1241 1242 void GDBRemoteCommunication::DumpHistory(Stream &strm) { m_history.Dump(strm); } 1243 1244 void GDBRemoteCommunication::SetHistoryStream(llvm::raw_ostream *strm) { 1245 m_history.SetStream(strm); 1246 }; 1247 1248 llvm::Error 1249 GDBRemoteCommunication::ConnectLocally(GDBRemoteCommunication &client, 1250 GDBRemoteCommunication &server) { 1251 const bool child_processes_inherit = false; 1252 const int backlog = 5; 1253 TCPSocket listen_socket(true, child_processes_inherit); 1254 if (llvm::Error error = 1255 listen_socket.Listen("127.0.0.1:0", backlog).ToError()) 1256 return error; 1257 1258 Socket *accept_socket; 1259 std::future<Status> accept_status = std::async( 1260 std::launch::async, [&] { return listen_socket.Accept(accept_socket); }); 1261 1262 llvm::SmallString<32> remote_addr; 1263 llvm::raw_svector_ostream(remote_addr) 1264 << "connect://localhost:" << listen_socket.GetLocalPortNumber(); 1265 1266 std::unique_ptr<ConnectionFileDescriptor> conn_up( 1267 new ConnectionFileDescriptor()); 1268 if (conn_up->Connect(remote_addr, nullptr) != lldb::eConnectionStatusSuccess) 1269 return llvm::make_error<llvm::StringError>("Unable to connect", 1270 llvm::inconvertibleErrorCode()); 1271 1272 client.SetConnection(conn_up.release()); 1273 if (llvm::Error error = accept_status.get().ToError()) 1274 return error; 1275 1276 server.SetConnection(new ConnectionFileDescriptor(accept_socket)); 1277 return llvm::Error::success(); 1278 } 1279 1280 GDBRemoteCommunication::ScopedTimeout::ScopedTimeout( 1281 GDBRemoteCommunication &gdb_comm, std::chrono::seconds timeout) 1282 : m_gdb_comm(gdb_comm), m_timeout_modified(false) { 1283 auto curr_timeout = gdb_comm.GetPacketTimeout(); 1284 // Only update the timeout if the timeout is greater than the current 1285 // timeout. If the current timeout is larger, then just use that. 1286 if (curr_timeout < timeout) { 1287 m_timeout_modified = true; 1288 m_saved_timeout = m_gdb_comm.SetPacketTimeout(timeout); 1289 } 1290 } 1291 1292 GDBRemoteCommunication::ScopedTimeout::~ScopedTimeout() { 1293 // Only restore the timeout if we set it in the constructor. 1294 if (m_timeout_modified) 1295 m_gdb_comm.SetPacketTimeout(m_saved_timeout); 1296 } 1297 1298 // This function is called via the Communications class read thread when bytes 1299 // become available for this connection. This function will consume all 1300 // incoming bytes and try to parse whole packets as they become available. Full 1301 // packets are placed in a queue, so that all packet requests can simply pop 1302 // from this queue. Async notification packets will be dispatched immediately 1303 // to the ProcessGDBRemote Async thread via an event. 1304 void GDBRemoteCommunication::AppendBytesToCache(const uint8_t *bytes, 1305 size_t len, bool broadcast, 1306 lldb::ConnectionStatus status) { 1307 StringExtractorGDBRemote packet; 1308 1309 while (true) { 1310 PacketType type = CheckForPacket(bytes, len, packet); 1311 1312 // scrub the data so we do not pass it back to CheckForPacket on future 1313 // passes of the loop 1314 bytes = nullptr; 1315 len = 0; 1316 1317 // we may have received no packet so lets bail out 1318 if (type == PacketType::Invalid) 1319 break; 1320 1321 if (type == PacketType::Standard) { 1322 // scope for the mutex 1323 { 1324 // lock down the packet queue 1325 std::lock_guard<std::mutex> guard(m_packet_queue_mutex); 1326 // push a new packet into the queue 1327 m_packet_queue.push(packet); 1328 // Signal condition variable that we have a packet 1329 m_condition_queue_not_empty.notify_one(); 1330 } 1331 } 1332 1333 if (type == PacketType::Notify) { 1334 // put this packet into an event 1335 const char *pdata = packet.GetStringRef().c_str(); 1336 1337 // as the communication class, we are a broadcaster and the async thread 1338 // is tuned to listen to us 1339 BroadcastEvent(eBroadcastBitGdbReadThreadGotNotify, 1340 new EventDataBytes(pdata)); 1341 } 1342 } 1343 } 1344 1345 void llvm::format_provider<GDBRemoteCommunication::PacketResult>::format( 1346 const GDBRemoteCommunication::PacketResult &result, raw_ostream &Stream, 1347 StringRef Style) { 1348 using PacketResult = GDBRemoteCommunication::PacketResult; 1349 1350 switch (result) { 1351 case PacketResult::Success: 1352 Stream << "Success"; 1353 break; 1354 case PacketResult::ErrorSendFailed: 1355 Stream << "ErrorSendFailed"; 1356 break; 1357 case PacketResult::ErrorSendAck: 1358 Stream << "ErrorSendAck"; 1359 break; 1360 case PacketResult::ErrorReplyFailed: 1361 Stream << "ErrorReplyFailed"; 1362 break; 1363 case PacketResult::ErrorReplyTimeout: 1364 Stream << "ErrorReplyTimeout"; 1365 break; 1366 case PacketResult::ErrorReplyInvalid: 1367 Stream << "ErrorReplyInvalid"; 1368 break; 1369 case PacketResult::ErrorReplyAck: 1370 Stream << "ErrorReplyAck"; 1371 break; 1372 case PacketResult::ErrorDisconnected: 1373 Stream << "ErrorDisconnected"; 1374 break; 1375 case PacketResult::ErrorNoSequenceLock: 1376 Stream << "ErrorNoSequenceLock"; 1377 break; 1378 } 1379 } 1380