1 //===-- GDBRemoteCommunication.h --------------------------------*- 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 #ifndef liblldb_GDBRemoteCommunication_h_ 11 #define liblldb_GDBRemoteCommunication_h_ 12 13 // C Includes 14 // C++ Includes 15 #include <condition_variable> 16 #include <mutex> 17 #include <queue> 18 #include <string> 19 #include <vector> 20 21 // Other libraries and framework includes 22 // Project includes 23 #include "lldb/Core/Communication.h" 24 #include "lldb/Core/Listener.h" 25 #include "lldb/Host/HostThread.h" 26 #include "lldb/Host/Predicate.h" 27 #include "lldb/Interpreter/Args.h" 28 #include "lldb/lldb-public.h" 29 30 #include "Utility/StringExtractorGDBRemote.h" 31 32 namespace lldb_private { 33 namespace process_gdb_remote { 34 35 typedef enum { 36 eStoppointInvalid = -1, 37 eBreakpointSoftware = 0, 38 eBreakpointHardware, 39 eWatchpointWrite, 40 eWatchpointRead, 41 eWatchpointReadWrite 42 } GDBStoppointType; 43 44 enum class CompressionType { 45 None = 0, // no compression 46 ZlibDeflate, // zlib's deflate compression scheme, requires zlib or Apple's 47 // libcompression 48 LZFSE, // an Apple compression scheme, requires Apple's libcompression 49 LZ4, // lz compression - called "lz4 raw" in libcompression terms, compat with 50 // https://code.google.com/p/lz4/ 51 LZMA, // Lempel–Ziv–Markov chain algorithm 52 }; 53 54 class ProcessGDBRemote; 55 56 class GDBRemoteCommunication : public Communication { 57 public: 58 enum { 59 eBroadcastBitRunPacketSent = kLoUserBroadcastBit, 60 eBroadcastBitGdbReadThreadGotNotify = 61 kLoUserBroadcastBit << 1 // Sent when we received a notify packet. 62 }; 63 64 enum class PacketType { Invalid = 0, Standard, Notify }; 65 66 enum class PacketResult { 67 Success = 0, // Success 68 ErrorSendFailed, // Status sending the packet 69 ErrorSendAck, // Didn't get an ack back after sending a packet 70 ErrorReplyFailed, // Status getting the reply 71 ErrorReplyTimeout, // Timed out waiting for reply 72 ErrorReplyInvalid, // Got a reply but it wasn't valid for the packet that 73 // was sent 74 ErrorReplyAck, // Sending reply ack failed 75 ErrorDisconnected, // We were disconnected 76 ErrorNoSequenceLock // We couldn't get the sequence lock for a multi-packet 77 // request 78 }; 79 80 // Class to change the timeout for a given scope and restore it to the 81 // original value when the 82 // created ScopedTimeout object got out of scope 83 class ScopedTimeout { 84 public: 85 ScopedTimeout(GDBRemoteCommunication &gdb_comm, 86 std::chrono::seconds timeout); 87 ~ScopedTimeout(); 88 89 private: 90 GDBRemoteCommunication &m_gdb_comm; 91 std::chrono::seconds m_saved_timeout; 92 // Don't ever reduce the timeout for a packet, only increase it. If the 93 // requested timeout if less than the current timeout, we don't set it 94 // and won't need to restore it. 95 bool m_timeout_modified; 96 }; 97 98 GDBRemoteCommunication(const char *comm_name, const char *listener_name); 99 100 ~GDBRemoteCommunication() override; 101 102 PacketResult GetAck(); 103 104 size_t SendAck(); 105 106 size_t SendNack(); 107 108 char CalculcateChecksum(llvm::StringRef payload); 109 110 PacketType CheckForPacket(const uint8_t *src, size_t src_len, 111 StringExtractorGDBRemote &packet); 112 113 bool GetSendAcks() { return m_send_acks; } 114 115 //------------------------------------------------------------------ 116 // Set the global packet timeout. 117 // 118 // For clients, this is the timeout that gets used when sending 119 // packets and waiting for responses. For servers, this is used when waiting 120 // for ACKs. 121 //------------------------------------------------------------------ 122 std::chrono::seconds SetPacketTimeout(std::chrono::seconds packet_timeout) { 123 const auto old_packet_timeout = m_packet_timeout; 124 m_packet_timeout = packet_timeout; 125 return old_packet_timeout; 126 } 127 128 std::chrono::seconds GetPacketTimeout() const { return m_packet_timeout; } 129 130 //------------------------------------------------------------------ 131 // Start a debugserver instance on the current host using the 132 // supplied connection URL. 133 //------------------------------------------------------------------ 134 Status StartDebugserverProcess( 135 const char *url, 136 Platform *platform, // If non nullptr, then check with the platform for 137 // the GDB server binary if it can't be located 138 ProcessLaunchInfo &launch_info, uint16_t *port, const Args *inferior_args, 139 int pass_comm_fd); // Communication file descriptor to pass during 140 // fork/exec to avoid having to connect/accept 141 142 void DumpHistory(Stream &strm); 143 144 protected: 145 class History { 146 public: 147 enum PacketType { 148 ePacketTypeInvalid = 0, 149 ePacketTypeSend, 150 ePacketTypeRecv 151 }; 152 153 struct Entry { 154 Entry() 155 : packet(), type(ePacketTypeInvalid), bytes_transmitted(0), 156 packet_idx(0), tid(LLDB_INVALID_THREAD_ID) {} 157 158 void Clear() { 159 packet.clear(); 160 type = ePacketTypeInvalid; 161 bytes_transmitted = 0; 162 packet_idx = 0; 163 tid = LLDB_INVALID_THREAD_ID; 164 } 165 std::string packet; 166 PacketType type; 167 uint32_t bytes_transmitted; 168 uint32_t packet_idx; 169 lldb::tid_t tid; 170 }; 171 172 History(uint32_t size); 173 174 ~History(); 175 176 // For single char packets for ack, nack and /x03 177 void AddPacket(char packet_char, PacketType type, 178 uint32_t bytes_transmitted); 179 180 void AddPacket(const std::string &src, uint32_t src_len, PacketType type, 181 uint32_t bytes_transmitted); 182 183 void Dump(Stream &strm) const; 184 185 void Dump(Log *log) const; 186 187 bool DidDumpToLog() const { return m_dumped_to_log; } 188 189 protected: 190 uint32_t GetFirstSavedPacketIndex() const { 191 if (m_total_packet_count < m_packets.size()) 192 return 0; 193 else 194 return m_curr_idx + 1; 195 } 196 197 uint32_t GetNumPacketsInHistory() const { 198 if (m_total_packet_count < m_packets.size()) 199 return m_total_packet_count; 200 else 201 return (uint32_t)m_packets.size(); 202 } 203 204 uint32_t GetNextIndex() { 205 ++m_total_packet_count; 206 const uint32_t idx = m_curr_idx; 207 m_curr_idx = NormalizeIndex(idx + 1); 208 return idx; 209 } 210 211 uint32_t NormalizeIndex(uint32_t i) const { return i % m_packets.size(); } 212 213 std::vector<Entry> m_packets; 214 uint32_t m_curr_idx; 215 uint32_t m_total_packet_count; 216 mutable bool m_dumped_to_log; 217 }; 218 219 std::chrono::seconds m_packet_timeout; 220 uint32_t m_echo_number; 221 LazyBool m_supports_qEcho; 222 History m_history; 223 bool m_send_acks; 224 bool m_is_platform; // Set to true if this class represents a platform, 225 // false if this class represents a debug session for 226 // a single process 227 228 CompressionType m_compression_type; 229 230 PacketResult SendPacketNoLock(llvm::StringRef payload); 231 232 PacketResult ReadPacket(StringExtractorGDBRemote &response, 233 Timeout<std::micro> timeout, bool sync_on_timeout); 234 235 // Pop a packet from the queue in a thread safe manner 236 PacketResult PopPacketFromQueue(StringExtractorGDBRemote &response, 237 Timeout<std::micro> timeout); 238 239 PacketResult WaitForPacketNoLock(StringExtractorGDBRemote &response, 240 Timeout<std::micro> timeout, 241 bool sync_on_timeout); 242 243 bool CompressionIsEnabled() { 244 return m_compression_type != CompressionType::None; 245 } 246 247 // If compression is enabled, decompress the packet in m_bytes and update 248 // m_bytes with the uncompressed version. 249 // Returns 'true' packet was decompressed and m_bytes is the now-decompressed 250 // text. 251 // Returns 'false' if unable to decompress or if the checksum was invalid. 252 // 253 // NB: Once the packet has been decompressed, checksum cannot be computed 254 // based 255 // on m_bytes. The checksum was for the compressed packet. 256 bool DecompressPacket(); 257 258 Status StartListenThread(const char *hostname = "127.0.0.1", 259 uint16_t port = 0); 260 261 bool JoinListenThread(); 262 263 static lldb::thread_result_t ListenThread(lldb::thread_arg_t arg); 264 265 // GDB-Remote read thread 266 // . this thread constantly tries to read from the communication 267 // class and stores all packets received in a queue. The usual 268 // threads read requests simply pop packets off the queue in the 269 // usual order. 270 // This setup allows us to intercept and handle async packets, such 271 // as the notify packet. 272 273 // This method is defined as part of communication.h 274 // when the read thread gets any bytes it will pass them on to this function 275 void AppendBytesToCache(const uint8_t *bytes, size_t len, bool broadcast, 276 lldb::ConnectionStatus status) override; 277 278 private: 279 std::queue<StringExtractorGDBRemote> m_packet_queue; // The packet queue 280 std::mutex m_packet_queue_mutex; // Mutex for accessing queue 281 std::condition_variable 282 m_condition_queue_not_empty; // Condition variable to wait for packets 283 284 HostThread m_listen_thread; 285 std::string m_listen_url; 286 287 DISALLOW_COPY_AND_ASSIGN(GDBRemoteCommunication); 288 }; 289 290 } // namespace process_gdb_remote 291 } // namespace lldb_private 292 293 namespace llvm { 294 template <> 295 struct format_provider< 296 lldb_private::process_gdb_remote::GDBRemoteCommunication::PacketResult> { 297 static void format(const lldb_private::process_gdb_remote:: 298 GDBRemoteCommunication::PacketResult &state, 299 raw_ostream &Stream, StringRef Style); 300 }; 301 } // namespace llvm 302 303 #endif // liblldb_GDBRemoteCommunication_h_ 304