reference, declarationdefinition
definition → references, declarations, derived classes, virtual overrides
reference to multiple definitions → definitions
unreferenced
    1
    2
    3
    4
    5
    6
    7
    8
    9
   10
   11
   12
   13
   14
   15
   16
   17
   18
   19
   20
   21
   22
   23
   24
   25
   26
   27
   28
   29
   30
   31
   32
   33
   34
   35
   36
   37
   38
   39
   40
   41
   42
   43
   44
   45
   46
   47
   48
   49
   50
   51
   52
   53
   54
   55
   56
   57
   58
   59
   60
   61
   62
   63
   64
   65
   66
   67
   68
   69
   70
   71
   72
   73
   74
   75
   76
   77
   78
   79
   80
   81
   82
   83
   84
   85
   86
   87
   88
   89
   90
   91
   92
   93
   94
   95
   96
   97
   98
   99
  100
  101
  102
  103
  104
  105
  106
  107
  108
  109
  110
  111
  112
  113
  114
  115
  116
  117
  118
  119
  120
  121
  122
  123
  124
  125
  126
  127
  128
  129
  130
  131
  132
  133
  134
  135
  136
  137
  138
  139
  140
  141
  142
  143
  144
  145
  146
  147
  148
  149
  150
  151
  152
  153
  154
  155
  156
  157
  158
  159
  160
  161
  162
  163
  164
  165
  166
  167
  168
  169
  170
  171
  172
  173
  174
  175
  176
  177
  178
  179
  180
  181
  182
  183
  184
  185
  186
  187
  188
  189
  190
  191
  192
  193
  194
  195
  196
  197
  198
  199
  200
  201
  202
  203
  204
  205
  206
  207
  208
  209
  210
  211
  212
  213
  214
  215
  216
  217
  218
  219
  220
  221
  222
  223
  224
  225
  226
  227
  228
  229
  230
  231
  232
  233
  234
  235
  236
  237
  238
  239
  240
  241
  242
  243
  244
  245
  246
  247
  248
  249
  250
  251
  252
  253
  254
  255
  256
  257
  258
  259
  260
  261
  262
  263
  264
  265
  266
  267
  268
  269
  270
  271
  272
  273
  274
  275
  276
  277
  278
  279
  280
  281
  282
  283
  284
  285
  286
  287
  288
  289
  290
  291
  292
  293
  294
  295
  296
  297
  298
  299
  300
  301
  302
  303
  304
  305
  306
  307
  308
  309
  310
  311
  312
  313
  314
  315
  316
  317
  318
  319
  320
  321
  322
  323
  324
  325
  326
  327
  328
  329
  330
  331
  332
  333
  334
  335
  336
  337
  338
  339
  340
  341
  342
  343
  344
  345
  346
  347
  348
  349
  350
  351
  352
  353
  354
  355
  356
  357
  358
  359
  360
  361
  362
  363
  364
  365
  366
  367
  368
  369
  370
  371
  372
  373
  374
  375
  376
  377
  378
  379
  380
  381
  382
  383
  384
  385
  386
  387
  388
  389
  390
  391
  392
  393
  394
  395
  396
  397
  398
  399
  400
  401
  402
  403
  404
  405
  406
  407
  408
  409
  410
  411
  412
  413
  414
  415
  416
  417
  418
  419
  420
  421
  422
  423
  424
  425
  426
  427
  428
  429
  430
  431
  432
  433
  434
  435
  436
  437
  438
  439
  440
  441
  442
  443
  444
  445
  446
  447
  448
  449
  450
  451
  452
  453
  454
  455
  456
  457
  458
  459
  460
  461
  462
  463
  464
  465
  466
  467
  468
  469
  470
  471
  472
  473
  474
  475
  476
  477
  478
  479
  480
  481
  482
  483
  484
  485
  486
  487
  488
  489
//===-- Socket.cpp ----------------------------------------------*- C++ -*-===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//

#include "lldb/Host/Socket.h"

#include "lldb/Host/Config.h"
#include "lldb/Host/Host.h"
#include "lldb/Host/SocketAddress.h"
#include "lldb/Host/StringConvert.h"
#include "lldb/Host/common/TCPSocket.h"
#include "lldb/Host/common/UDPSocket.h"
#include "lldb/Utility/Log.h"
#include "lldb/Utility/RegularExpression.h"

#include "llvm/ADT/STLExtras.h"
#include "llvm/Support/Errno.h"
#include "llvm/Support/Error.h"
#include "llvm/Support/WindowsError.h"

#ifndef LLDB_DISABLE_POSIX
#include "lldb/Host/posix/DomainSocket.h"

#include <arpa/inet.h>
#include <netdb.h>
#include <netinet/in.h>
#include <netinet/tcp.h>
#include <sys/socket.h>
#include <sys/un.h>
#include <unistd.h>
#endif

#ifdef __linux__
#include "lldb/Host/linux/AbstractSocket.h"
#endif

#ifdef __ANDROID__
#include <arpa/inet.h>
#include <asm-generic/errno-base.h>
#include <errno.h>
#include <linux/tcp.h>
#include <fcntl.h>
#include <sys/syscall.h>
#include <unistd.h>
#endif // __ANDROID__

using namespace lldb;
using namespace lldb_private;

#if defined(_WIN32)
typedef const char *set_socket_option_arg_type;
typedef char *get_socket_option_arg_type;
const NativeSocket Socket::kInvalidSocketValue = INVALID_SOCKET;
#else  // #if defined(_WIN32)
typedef const void *set_socket_option_arg_type;
typedef void *get_socket_option_arg_type;
const NativeSocket Socket::kInvalidSocketValue = -1;
#endif // #if defined(_WIN32)

namespace {

bool IsInterrupted() {
#if defined(_WIN32)
  return ::WSAGetLastError() == WSAEINTR;
#else
  return errno == EINTR;
#endif
}
}

Socket::Socket(SocketProtocol protocol, bool should_close,
               bool child_processes_inherit)
    : IOObject(eFDTypeSocket), m_protocol(protocol),
      m_socket(kInvalidSocketValue),
      m_child_processes_inherit(child_processes_inherit),
      m_should_close_fd(should_close) {}

Socket::~Socket() { Close(); }

llvm::Error Socket::Initialize() {
#if defined(_WIN32)
  auto wVersion = WINSOCK_VERSION;
  WSADATA wsaData;
  int err = ::WSAStartup(wVersion, &wsaData);
  if (err == 0) {
    if (wsaData.wVersion < wVersion) {
      WSACleanup();
      return llvm::make_error<llvm::StringError>(
          "WSASock version is not expected.", llvm::inconvertibleErrorCode());
    }
  } else {
    return llvm::errorCodeToError(llvm::mapWindowsError(::WSAGetLastError()));
  }
#endif

  return llvm::Error::success();
}

void Socket::Terminate() {
#if defined(_WIN32)
  ::WSACleanup();
#endif
}

std::unique_ptr<Socket> Socket::Create(const SocketProtocol protocol,
                                       bool child_processes_inherit,
                                       Status &error) {
  error.Clear();

  std::unique_ptr<Socket> socket_up;
  switch (protocol) {
  case ProtocolTcp:
    socket_up =
        std::make_unique<TCPSocket>(true, child_processes_inherit);
    break;
  case ProtocolUdp:
    socket_up =
        std::make_unique<UDPSocket>(true, child_processes_inherit);
    break;
  case ProtocolUnixDomain:
#ifndef LLDB_DISABLE_POSIX
    socket_up =
        std::make_unique<DomainSocket>(true, child_processes_inherit);
#else
    error.SetErrorString(
        "Unix domain sockets are not supported on this platform.");
#endif
    break;
  case ProtocolUnixAbstract:
#ifdef __linux__
    socket_up =
        std::make_unique<AbstractSocket>(child_processes_inherit);
#else
    error.SetErrorString(
        "Abstract domain sockets are not supported on this platform.");
#endif
    break;
  }

  if (error.Fail())
    socket_up.reset();

  return socket_up;
}

Status Socket::TcpConnect(llvm::StringRef host_and_port,
                          bool child_processes_inherit, Socket *&socket) {
  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_COMMUNICATION));
  LLDB_LOGF(log, "Socket::%s (host/port = %s)", __FUNCTION__,
            host_and_port.str().c_str());

  Status error;
  std::unique_ptr<Socket> connect_socket(
      Create(ProtocolTcp, child_processes_inherit, error));
  if (error.Fail())
    return error;

  error = connect_socket->Connect(host_and_port);
  if (error.Success())
    socket = connect_socket.release();

  return error;
}

Status Socket::TcpListen(llvm::StringRef host_and_port,
                         bool child_processes_inherit, Socket *&socket,
                         Predicate<uint16_t> *predicate, int backlog) {
  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_CONNECTION));
  LLDB_LOGF(log, "Socket::%s (%s)", __FUNCTION__, host_and_port.str().c_str());

  Status error;
  std::string host_str;
  std::string port_str;
  int32_t port = INT32_MIN;
  if (!DecodeHostAndPort(host_and_port, host_str, port_str, port, &error))
    return error;

  std::unique_ptr<TCPSocket> listen_socket(
      new TCPSocket(true, child_processes_inherit));
  if (error.Fail())
    return error;

  error = listen_socket->Listen(host_and_port, backlog);
  if (error.Success()) {
    // We were asked to listen on port zero which means we must now read the
    // actual port that was given to us as port zero is a special code for
    // "find an open port for me".
    if (port == 0)
      port = listen_socket->GetLocalPortNumber();

    // Set the port predicate since when doing a listen://<host>:<port> it
    // often needs to accept the incoming connection which is a blocking system
    // call. Allowing access to the bound port using a predicate allows us to
    // wait for the port predicate to be set to a non-zero value from another
    // thread in an efficient manor.
    if (predicate)
      predicate->SetValue(port, eBroadcastAlways);
    socket = listen_socket.release();
  }

  return error;
}

Status Socket::UdpConnect(llvm::StringRef host_and_port,
                          bool child_processes_inherit, Socket *&socket) {
  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_CONNECTION));
  LLDB_LOGF(log, "Socket::%s (host/port = %s)", __FUNCTION__,
            host_and_port.str().c_str());

  return UDPSocket::Connect(host_and_port, child_processes_inherit, socket);
}

Status Socket::UnixDomainConnect(llvm::StringRef name,
                                 bool child_processes_inherit,
                                 Socket *&socket) {
  Status error;
  std::unique_ptr<Socket> connect_socket(
      Create(ProtocolUnixDomain, child_processes_inherit, error));
  if (error.Fail())
    return error;

  error = connect_socket->Connect(name);
  if (error.Success())
    socket = connect_socket.release();

  return error;
}

Status Socket::UnixDomainAccept(llvm::StringRef name,
                                bool child_processes_inherit, Socket *&socket) {
  Status error;
  std::unique_ptr<Socket> listen_socket(
      Create(ProtocolUnixDomain, child_processes_inherit, error));
  if (error.Fail())
    return error;

  error = listen_socket->Listen(name, 5);
  if (error.Fail())
    return error;

  error = listen_socket->Accept(socket);
  return error;
}

Status Socket::UnixAbstractConnect(llvm::StringRef name,
                                   bool child_processes_inherit,
                                   Socket *&socket) {
  Status error;
  std::unique_ptr<Socket> connect_socket(
      Create(ProtocolUnixAbstract, child_processes_inherit, error));
  if (error.Fail())
    return error;

  error = connect_socket->Connect(name);
  if (error.Success())
    socket = connect_socket.release();
  return error;
}

Status Socket::UnixAbstractAccept(llvm::StringRef name,
                                  bool child_processes_inherit,
                                  Socket *&socket) {
  Status error;
  std::unique_ptr<Socket> listen_socket(
      Create(ProtocolUnixAbstract, child_processes_inherit, error));
  if (error.Fail())
    return error;

  error = listen_socket->Listen(name, 5);
  if (error.Fail())
    return error;

  error = listen_socket->Accept(socket);
  return error;
}

bool Socket::DecodeHostAndPort(llvm::StringRef host_and_port,
                               std::string &host_str, std::string &port_str,
                               int32_t &port, Status *error_ptr) {
  static RegularExpression g_regex(
      llvm::StringRef("([^:]+|\\[[0-9a-fA-F:]+.*\\]):([0-9]+)"));
  llvm::SmallVector<llvm::StringRef, 3> matches;
  if (g_regex.Execute(host_and_port, &matches)) {
    host_str = matches[1].str();
    port_str = matches[2].str();
    // IPv6 addresses are wrapped in [] when specified with ports
    if (host_str.front() == '[' && host_str.back() == ']')
      host_str = host_str.substr(1, host_str.size() - 2);
    bool ok = false;
    port = StringConvert::ToUInt32(port_str.c_str(), UINT32_MAX, 10, &ok);
    if (ok && port <= UINT16_MAX) {
      if (error_ptr)
        error_ptr->Clear();
      return true;
    }
    // port is too large
    if (error_ptr)
      error_ptr->SetErrorStringWithFormat(
          "invalid host:port specification: '%s'", host_and_port.str().c_str());
    return false;
  }

  // If this was unsuccessful, then check if it's simply a signed 32-bit
  // integer, representing a port with an empty host.
  host_str.clear();
  port_str.clear();
  if (to_integer(host_and_port, port, 10) && port < UINT16_MAX) {
    port_str = host_and_port;
    if (error_ptr)
      error_ptr->Clear();
    return true;
  }

  if (error_ptr)
    error_ptr->SetErrorStringWithFormat("invalid host:port specification: '%s'",
                                        host_and_port.str().c_str());
  return false;
}

IOObject::WaitableHandle Socket::GetWaitableHandle() {
  // TODO: On Windows, use WSAEventSelect
  return m_socket;
}

Status Socket::Read(void *buf, size_t &num_bytes) {
  Status error;
  int bytes_received = 0;
  do {
    bytes_received = ::recv(m_socket, static_cast<char *>(buf), num_bytes, 0);
  } while (bytes_received < 0 && IsInterrupted());

  if (bytes_received < 0) {
    SetLastError(error);
    num_bytes = 0;
  } else
    num_bytes = bytes_received;

  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_COMMUNICATION));
  if (log) {
    LLDB_LOGF(log,
              "%p Socket::Read() (socket = %" PRIu64
              ", src = %p, src_len = %" PRIu64 ", flags = 0) => %" PRIi64
              " (error = %s)",
              static_cast<void *>(this), static_cast<uint64_t>(m_socket), buf,
              static_cast<uint64_t>(num_bytes),
              static_cast<int64_t>(bytes_received), error.AsCString());
  }

  return error;
}

Status Socket::Write(const void *buf, size_t &num_bytes) {
  const size_t src_len = num_bytes;
  Status error;
  int bytes_sent = 0;
  do {
    bytes_sent = Send(buf, num_bytes);
  } while (bytes_sent < 0 && IsInterrupted());

  if (bytes_sent < 0) {
    SetLastError(error);
    num_bytes = 0;
  } else
    num_bytes = bytes_sent;

  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_COMMUNICATION));
  if (log) {
    LLDB_LOGF(log,
              "%p Socket::Write() (socket = %" PRIu64
              ", src = %p, src_len = %" PRIu64 ", flags = 0) => %" PRIi64
              " (error = %s)",
              static_cast<void *>(this), static_cast<uint64_t>(m_socket), buf,
              static_cast<uint64_t>(src_len),
              static_cast<int64_t>(bytes_sent), error.AsCString());
  }

  return error;
}

Status Socket::PreDisconnect() {
  Status error;
  return error;
}

Status Socket::Close() {
  Status error;
  if (!IsValid() || !m_should_close_fd)
    return error;

  Log *log(lldb_private::GetLogIfAnyCategoriesSet(LIBLLDB_LOG_CONNECTION));
  LLDB_LOGF(log, "%p Socket::Close (fd = %" PRIu64 ")",
            static_cast<void *>(this), static_cast<uint64_t>(m_socket));

#if defined(_WIN32)
  bool success = !!closesocket(m_socket);
#else
  bool success = !!::close(m_socket);
#endif
  // A reference to a FD was passed in, set it to an invalid value
  m_socket = kInvalidSocketValue;
  if (!success) {
    SetLastError(error);
  }

  return error;
}

int Socket::GetOption(int level, int option_name, int &option_value) {
  get_socket_option_arg_type option_value_p =
      reinterpret_cast<get_socket_option_arg_type>(&option_value);
  socklen_t option_value_size = sizeof(int);
  return ::getsockopt(m_socket, level, option_name, option_value_p,
                      &option_value_size);
}

int Socket::SetOption(int level, int option_name, int option_value) {
  set_socket_option_arg_type option_value_p =
      reinterpret_cast<get_socket_option_arg_type>(&option_value);
  return ::setsockopt(m_socket, level, option_name, option_value_p,
                      sizeof(option_value));
}

size_t Socket::Send(const void *buf, const size_t num_bytes) {
  return ::send(m_socket, static_cast<const char *>(buf), num_bytes, 0);
}

void Socket::SetLastError(Status &error) {
#if defined(_WIN32)
  error.SetError(::WSAGetLastError(), lldb::eErrorTypeWin32);
#else
  error.SetErrorToErrno();
#endif
}

NativeSocket Socket::CreateSocket(const int domain, const int type,
                                  const int protocol,
                                  bool child_processes_inherit, Status &error) {
  error.Clear();
  auto socket_type = type;
#ifdef SOCK_CLOEXEC
  if (!child_processes_inherit)
    socket_type |= SOCK_CLOEXEC;
#endif
  auto sock = ::socket(domain, socket_type, protocol);
  if (sock == kInvalidSocketValue)
    SetLastError(error);

  return sock;
}

NativeSocket Socket::AcceptSocket(NativeSocket sockfd, struct sockaddr *addr,
                                  socklen_t *addrlen,
                                  bool child_processes_inherit, Status &error) {
  error.Clear();
#if defined(ANDROID_USE_ACCEPT_WORKAROUND)
  // Hack:
  // This enables static linking lldb-server to an API 21 libc, but still
  // having it run on older devices. It is necessary because API 21 libc's
  // implementation of accept() uses the accept4 syscall(), which is not
  // available in older kernels. Using an older libc would fix this issue, but
  // introduce other ones, as the old libraries were quite buggy.
  int fd = syscall(__NR_accept, sockfd, addr, addrlen);
  if (fd >= 0 && !child_processes_inherit) {
    int flags = ::fcntl(fd, F_GETFD);
    if (flags != -1 && ::fcntl(fd, F_SETFD, flags | FD_CLOEXEC) != -1)
      return fd;
    SetLastError(error);
    close(fd);
  }
  return fd;
#elif defined(SOCK_CLOEXEC) && defined(HAVE_ACCEPT4)
  int flags = 0;
  if (!child_processes_inherit) {
    flags |= SOCK_CLOEXEC;
  }
  NativeSocket fd = llvm::sys::RetryAfterSignal(
      static_cast<NativeSocket>(-1), ::accept4, sockfd, addr, addrlen, flags);
#else
  NativeSocket fd = llvm::sys::RetryAfterSignal(
      static_cast<NativeSocket>(-1), ::accept, sockfd, addr, addrlen);
#endif
  if (fd == kInvalidSocketValue)
    SetLastError(error);
  return fd;
}