| OLD | NEW |
| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #if !defined(DART_IO_DISABLED) | 5 #if !defined(DART_IO_DISABLED) |
| 6 | 6 |
| 7 #include "platform/globals.h" | 7 #include "platform/globals.h" |
| 8 #if defined(HOST_OS_LINUX) | 8 #if defined(HOST_OS_LINUX) |
| 9 | 9 |
| 10 #include "bin/socket.h" | 10 #include "bin/socket.h" |
| 11 #include "bin/socket_linux.h" | 11 #include "bin/socket_common_linux.h" |
| 12 | 12 |
| 13 #include <errno.h> // NOLINT | 13 #include <errno.h> // NOLINT |
| 14 #include <ifaddrs.h> // NOLINT | 14 #include <ifaddrs.h> // NOLINT |
| 15 #include <net/if.h> // NOLINT | 15 #include <net/if.h> // NOLINT |
| 16 #include <netinet/tcp.h> // NOLINT | 16 #include <netinet/tcp.h> // NOLINT |
| 17 #include <stdio.h> // NOLINT | 17 #include <stdio.h> // NOLINT |
| 18 #include <stdlib.h> // NOLINT | 18 #include <stdlib.h> // NOLINT |
| 19 #include <string.h> // NOLINT | 19 #include <string.h> // NOLINT |
| 20 #include <sys/stat.h> // NOLINT | 20 #include <sys/stat.h> // NOLINT |
| 21 #include <unistd.h> // NOLINT | 21 #include <unistd.h> // NOLINT |
| 22 | 22 |
| 23 #include "bin/fdutils.h" | 23 #include "bin/fdutils.h" |
| 24 #include "bin/file.h" | 24 #include "bin/file.h" |
| 25 #include "bin/thread.h" | 25 #include "bin/thread.h" |
| 26 #include "platform/signal_blocker.h" | 26 #include "platform/signal_blocker.h" |
| 27 | 27 |
| 28 namespace dart { | 28 namespace dart { |
| 29 namespace bin { | 29 namespace bin { |
| 30 | 30 |
| 31 SocketAddress::SocketAddress(struct sockaddr* sa) { | 31 SocketAddress::SocketAddress(struct sockaddr* sa) { |
| 32 ASSERT(INET6_ADDRSTRLEN >= INET_ADDRSTRLEN); | 32 ASSERT(INET6_ADDRSTRLEN >= INET_ADDRSTRLEN); |
| 33 if (!Socket::FormatNumericAddress(*reinterpret_cast<RawAddr*>(sa), as_string_, | 33 if (!BaseSocket::FormatNumericAddress(*reinterpret_cast<RawAddr*>(sa), |
| 34 INET6_ADDRSTRLEN)) { | 34 as_string_, INET6_ADDRSTRLEN)) { |
| 35 as_string_[0] = 0; | 35 as_string_[0] = 0; |
| 36 } | 36 } |
| 37 socklen_t salen = GetAddrLength(*reinterpret_cast<RawAddr*>(sa)); | 37 socklen_t salen = GetAddrLength(*reinterpret_cast<RawAddr*>(sa)); |
| 38 memmove(reinterpret_cast<void*>(&addr_), sa, salen); | 38 memmove(reinterpret_cast<void*>(&addr_), sa, salen); |
| 39 } | 39 } |
| 40 | 40 |
| 41 | 41 |
| 42 bool Socket::FormatNumericAddress(const RawAddr& addr, char* address, int len) { | 42 bool BaseSocket::FormatNumericAddress(const RawAddr& addr, |
| 43 char* address, |
| 44 int len) { |
| 43 socklen_t salen = SocketAddress::GetAddrLength(addr); | 45 socklen_t salen = SocketAddress::GetAddrLength(addr); |
| 44 return (NO_RETRY_EXPECTED(getnameinfo(&addr.addr, salen, address, len, NULL, | 46 return (NO_RETRY_EXPECTED(getnameinfo(&addr.addr, salen, address, len, NULL, |
| 45 0, NI_NUMERICHOST) == 0)); | 47 0, NI_NUMERICHOST) == 0)); |
| 46 } | 48 } |
| 47 | 49 |
| 48 | 50 |
| 49 Socket::Socket(intptr_t fd) | 51 Socket::Socket(intptr_t fd) |
| 50 : ReferenceCounted(), fd_(fd), port_(ILLEGAL_PORT) {} | 52 : ReferenceCounted(), fd_(fd), port_(ILLEGAL_PORT) {} |
| 51 | 53 |
| 52 | 54 |
| 53 void Socket::SetClosedFd() { | 55 void Socket::SetClosedFd() { |
| 54 fd_ = kClosedFd; | 56 fd_ = kClosedFd; |
| 55 } | 57 } |
| 56 | 58 |
| 57 | 59 |
| 58 bool Socket::Initialize() { | 60 bool Socket::Initialize() { |
| 59 // Nothing to do on Linux. | 61 // Nothing to do on Linux. |
| 60 return true; | 62 return true; |
| 61 } | 63 } |
| 62 | 64 |
| 63 | 65 |
| 64 static intptr_t Create(const RawAddr& addr) { | 66 static intptr_t Create(const RawAddr& addr) { |
| 65 intptr_t fd; | 67 intptr_t fd; |
| 66 fd = NO_RETRY_EXPECTED( | 68 intptr_t type = SOCK_STREAM | SOCK_NONBLOCK | SOCK_CLOEXEC; |
| 67 socket(addr.ss.ss_family, SOCK_STREAM | SOCK_NONBLOCK | SOCK_CLOEXEC, 0)); | 69 fd = NO_RETRY_EXPECTED(socket(addr.ss.ss_family, type, 0)); |
| 68 if (fd < 0) { | 70 if (fd < 0) { |
| 69 return -1; | 71 return -1; |
| 70 } | 72 } |
| 71 return fd; | 73 return fd; |
| 72 } | 74 } |
| 73 | 75 |
| 74 | 76 |
| 75 static intptr_t Connect(intptr_t fd, const RawAddr& addr) { | 77 static intptr_t Connect(intptr_t fd, const RawAddr& addr) { |
| 76 intptr_t result = TEMP_FAILURE_RETRY( | 78 intptr_t result = TEMP_FAILURE_RETRY( |
| 77 connect(fd, &addr.addr, SocketAddress::GetAddrLength(addr))); | 79 connect(fd, &addr.addr, SocketAddress::GetAddrLength(addr))); |
| (...skipping 25 matching lines...) Expand all Loading... |
| 103 bind(fd, &source_addr.addr, SocketAddress::GetAddrLength(source_addr))); | 105 bind(fd, &source_addr.addr, SocketAddress::GetAddrLength(source_addr))); |
| 104 if ((result != 0) && (errno != EINPROGRESS)) { | 106 if ((result != 0) && (errno != EINPROGRESS)) { |
| 105 FDUtils::SaveErrorAndClose(fd); | 107 FDUtils::SaveErrorAndClose(fd); |
| 106 return -1; | 108 return -1; |
| 107 } | 109 } |
| 108 | 110 |
| 109 return Connect(fd, addr); | 111 return Connect(fd, addr); |
| 110 } | 112 } |
| 111 | 113 |
| 112 | 114 |
| 113 bool Socket::IsBindError(intptr_t error_number) { | 115 bool BaseSocket::IsBindError(intptr_t error_number) { |
| 114 return error_number == EADDRINUSE || error_number == EADDRNOTAVAIL || | 116 return error_number == EADDRINUSE || error_number == EADDRNOTAVAIL || |
| 115 error_number == EINVAL; | 117 error_number == EINVAL; |
| 116 } | 118 } |
| 117 | 119 |
| 118 | 120 |
| 119 intptr_t Socket::Available(intptr_t fd) { | 121 intptr_t BaseSocket::Available(intptr_t fd) { |
| 120 return FDUtils::AvailableBytes(fd); | 122 return FDUtils::AvailableBytes(fd); |
| 121 } | 123 } |
| 122 | 124 |
| 123 | 125 |
| 124 intptr_t Socket::Read(intptr_t fd, void* buffer, intptr_t num_bytes) { | 126 intptr_t BaseSocket::Read(intptr_t fd, void* buffer, intptr_t num_bytes) { |
| 125 ASSERT(fd >= 0); | 127 ASSERT(fd >= 0); |
| 126 ssize_t read_bytes = TEMP_FAILURE_RETRY(read(fd, buffer, num_bytes)); | 128 ssize_t read_bytes = TEMP_FAILURE_RETRY(read(fd, buffer, num_bytes)); |
| 127 ASSERT(EAGAIN == EWOULDBLOCK); | 129 ASSERT(EAGAIN == EWOULDBLOCK); |
| 128 if ((read_bytes == -1) && (errno == EWOULDBLOCK)) { | 130 if ((read_bytes == -1) && (errno == EWOULDBLOCK)) { |
| 129 // If the read would block we need to retry and therefore return 0 | 131 // If the read would block we need to retry and therefore return 0 |
| 130 // as the number of bytes written. | 132 // as the number of bytes written. |
| 131 read_bytes = 0; | 133 read_bytes = 0; |
| 132 } | 134 } |
| 133 return read_bytes; | 135 return read_bytes; |
| 134 } | 136 } |
| 135 | 137 |
| 136 | 138 |
| 137 intptr_t Socket::RecvFrom(intptr_t fd, | 139 intptr_t BaseSocket::RecvFrom(intptr_t fd, |
| 138 void* buffer, | 140 void* buffer, |
| 139 intptr_t num_bytes, | 141 intptr_t num_bytes, |
| 140 RawAddr* addr) { | 142 RawAddr* addr) { |
| 141 ASSERT(fd >= 0); | 143 ASSERT(fd >= 0); |
| 142 socklen_t addr_len = sizeof(addr->ss); | 144 socklen_t addr_len = sizeof(addr->ss); |
| 143 ssize_t read_bytes = TEMP_FAILURE_RETRY( | 145 ssize_t read_bytes = TEMP_FAILURE_RETRY( |
| 144 recvfrom(fd, buffer, num_bytes, 0, &addr->addr, &addr_len)); | 146 recvfrom(fd, buffer, num_bytes, 0, &addr->addr, &addr_len)); |
| 145 if ((read_bytes == -1) && (errno == EWOULDBLOCK)) { | 147 if ((read_bytes == -1) && (errno == EWOULDBLOCK)) { |
| 146 // If the read would block we need to retry and therefore return 0 | 148 // If the read would block we need to retry and therefore return 0 |
| 147 // as the number of bytes written. | 149 // as the number of bytes written. |
| 148 read_bytes = 0; | 150 read_bytes = 0; |
| 149 } | 151 } |
| 150 return read_bytes; | 152 return read_bytes; |
| 151 } | 153 } |
| 152 | 154 |
| 153 | 155 |
| 154 intptr_t Socket::Write(intptr_t fd, const void* buffer, intptr_t num_bytes) { | 156 intptr_t BaseSocket::Write(intptr_t fd, |
| 157 const void* buffer, |
| 158 intptr_t num_bytes) { |
| 155 ASSERT(fd >= 0); | 159 ASSERT(fd >= 0); |
| 156 ssize_t written_bytes = TEMP_FAILURE_RETRY(write(fd, buffer, num_bytes)); | 160 ssize_t written_bytes = TEMP_FAILURE_RETRY(write(fd, buffer, num_bytes)); |
| 157 ASSERT(EAGAIN == EWOULDBLOCK); | 161 ASSERT(EAGAIN == EWOULDBLOCK); |
| 158 if ((written_bytes == -1) && (errno == EWOULDBLOCK)) { | 162 if ((written_bytes == -1) && (errno == EWOULDBLOCK)) { |
| 159 // If the would block we need to retry and therefore return 0 as | 163 // If the would block we need to retry and therefore return 0 as |
| 160 // the number of bytes written. | 164 // the number of bytes written. |
| 161 written_bytes = 0; | 165 written_bytes = 0; |
| 162 } | 166 } |
| 163 return written_bytes; | 167 return written_bytes; |
| 164 } | 168 } |
| 165 | 169 |
| 166 | 170 |
| 167 intptr_t Socket::SendTo(intptr_t fd, | 171 intptr_t BaseSocket::SendTo(intptr_t fd, |
| 168 const void* buffer, | 172 const void* buffer, |
| 169 intptr_t num_bytes, | 173 intptr_t num_bytes, |
| 170 const RawAddr& addr) { | 174 const RawAddr& addr) { |
| 171 ASSERT(fd >= 0); | 175 ASSERT(fd >= 0); |
| 172 ssize_t written_bytes = | 176 ssize_t written_bytes = |
| 173 TEMP_FAILURE_RETRY(sendto(fd, buffer, num_bytes, 0, &addr.addr, | 177 TEMP_FAILURE_RETRY(sendto(fd, buffer, num_bytes, 0, &addr.addr, |
| 174 SocketAddress::GetAddrLength(addr))); | 178 SocketAddress::GetAddrLength(addr))); |
| 175 ASSERT(EAGAIN == EWOULDBLOCK); | 179 ASSERT(EAGAIN == EWOULDBLOCK); |
| 176 if ((written_bytes == -1) && (errno == EWOULDBLOCK)) { | 180 if ((written_bytes == -1) && (errno == EWOULDBLOCK)) { |
| 177 // If the would block we need to retry and therefore return 0 as | 181 // If the would block we need to retry and therefore return 0 as |
| 178 // the number of bytes written. | 182 // the number of bytes written. |
| 179 written_bytes = 0; | 183 written_bytes = 0; |
| 180 } | 184 } |
| 181 return written_bytes; | 185 return written_bytes; |
| 182 } | 186 } |
| 183 | 187 |
| 184 | 188 |
| 185 intptr_t Socket::GetPort(intptr_t fd) { | 189 intptr_t BaseSocket::GetPort(intptr_t fd) { |
| 186 ASSERT(fd >= 0); | 190 ASSERT(fd >= 0); |
| 187 RawAddr raw; | 191 RawAddr raw; |
| 188 socklen_t size = sizeof(raw); | 192 socklen_t size = sizeof(raw); |
| 189 if (NO_RETRY_EXPECTED(getsockname(fd, &raw.addr, &size))) { | 193 if (NO_RETRY_EXPECTED(getsockname(fd, &raw.addr, &size))) { |
| 190 return 0; | 194 return 0; |
| 191 } | 195 } |
| 192 return SocketAddress::GetAddrPort(raw); | 196 return SocketAddress::GetAddrPort(raw); |
| 193 } | 197 } |
| 194 | 198 |
| 195 | 199 |
| 196 SocketAddress* Socket::GetRemotePeer(intptr_t fd, intptr_t* port) { | 200 SocketAddress* BaseSocket::GetRemotePeer(intptr_t fd, intptr_t* port) { |
| 197 ASSERT(fd >= 0); | 201 ASSERT(fd >= 0); |
| 198 RawAddr raw; | 202 RawAddr raw; |
| 199 socklen_t size = sizeof(raw); | 203 socklen_t size = sizeof(raw); |
| 200 if (NO_RETRY_EXPECTED(getpeername(fd, &raw.addr, &size))) { | 204 if (NO_RETRY_EXPECTED(getpeername(fd, &raw.addr, &size))) { |
| 201 return NULL; | 205 return NULL; |
| 202 } | 206 } |
| 203 *port = SocketAddress::GetAddrPort(raw); | 207 *port = SocketAddress::GetAddrPort(raw); |
| 204 return new SocketAddress(&raw.addr); | 208 return new SocketAddress(&raw.addr); |
| 205 } | 209 } |
| 206 | 210 |
| 207 | 211 |
| 208 void Socket::GetError(intptr_t fd, OSError* os_error) { | 212 void BaseSocket::GetError(intptr_t fd, OSError* os_error) { |
| 209 int len = sizeof(errno); | 213 int len = sizeof(errno); |
| 210 int err = 0; | 214 int err = 0; |
| 211 VOID_NO_RETRY_EXPECTED(getsockopt(fd, SOL_SOCKET, SO_ERROR, &err, | 215 VOID_NO_RETRY_EXPECTED(getsockopt(fd, SOL_SOCKET, SO_ERROR, &err, |
| 212 reinterpret_cast<socklen_t*>(&len))); | 216 reinterpret_cast<socklen_t*>(&len))); |
| 213 errno = err; | 217 errno = err; |
| 214 os_error->SetCodeAndMessage(OSError::kSystem, errno); | 218 os_error->SetCodeAndMessage(OSError::kSystem, errno); |
| 215 } | 219 } |
| 216 | 220 |
| 217 | 221 |
| 218 int Socket::GetType(intptr_t fd) { | 222 int BaseSocket::GetType(intptr_t fd) { |
| 219 struct stat64 buf; | 223 struct stat64 buf; |
| 220 int result = TEMP_FAILURE_RETRY(fstat64(fd, &buf)); | 224 int result = TEMP_FAILURE_RETRY(fstat64(fd, &buf)); |
| 221 if (result == -1) { | 225 if (result == -1) { |
| 222 return -1; | 226 return -1; |
| 223 } | 227 } |
| 224 if (S_ISCHR(buf.st_mode)) { | 228 if (S_ISCHR(buf.st_mode)) { |
| 225 return File::kTerminal; | 229 return File::kTerminal; |
| 226 } | 230 } |
| 227 if (S_ISFIFO(buf.st_mode)) { | 231 if (S_ISFIFO(buf.st_mode)) { |
| 228 return File::kPipe; | 232 return File::kPipe; |
| 229 } | 233 } |
| 230 if (S_ISREG(buf.st_mode)) { | 234 if (S_ISREG(buf.st_mode)) { |
| 231 return File::kFile; | 235 return File::kFile; |
| 232 } | 236 } |
| 233 return File::kOther; | 237 return File::kOther; |
| 234 } | 238 } |
| 235 | 239 |
| 236 | 240 |
| 237 intptr_t Socket::GetStdioHandle(intptr_t num) { | 241 intptr_t BaseSocket::GetStdioHandle(intptr_t num) { |
| 238 return num; | 242 return num; |
| 239 } | 243 } |
| 240 | 244 |
| 241 | 245 |
| 242 AddressList<SocketAddress>* Socket::LookupAddress(const char* host, | 246 AddressList<SocketAddress>* BaseSocket::LookupAddress(const char* host, |
| 243 int type, | 247 int type, |
| 244 OSError** os_error) { | 248 OSError** os_error) { |
| 245 // Perform a name lookup for a host name. | 249 // Perform a name lookup for a host name. |
| 246 struct addrinfo hints; | 250 struct addrinfo hints; |
| 247 memset(&hints, 0, sizeof(hints)); | 251 memset(&hints, 0, sizeof(hints)); |
| 248 hints.ai_family = SocketAddress::FromType(type); | 252 hints.ai_family = SocketAddress::FromType(type); |
| 249 hints.ai_socktype = SOCK_STREAM; | 253 hints.ai_socktype = SOCK_STREAM; |
| 250 hints.ai_flags = AI_ADDRCONFIG; | 254 hints.ai_flags = AI_ADDRCONFIG; |
| 251 hints.ai_protocol = IPPROTO_TCP; | 255 hints.ai_protocol = IPPROTO_TCP; |
| 252 struct addrinfo* info = NULL; | 256 struct addrinfo* info = NULL; |
| 253 int status = NO_RETRY_EXPECTED(getaddrinfo(host, 0, &hints, &info)); | 257 int status = NO_RETRY_EXPECTED(getaddrinfo(host, 0, &hints, &info)); |
| 254 if (status != 0) { | 258 if (status != 0) { |
| (...skipping 20 matching lines...) Expand all Loading... |
| 275 if ((c->ai_family == AF_INET) || (c->ai_family == AF_INET6)) { | 279 if ((c->ai_family == AF_INET) || (c->ai_family == AF_INET6)) { |
| 276 addresses->SetAt(i, new SocketAddress(c->ai_addr)); | 280 addresses->SetAt(i, new SocketAddress(c->ai_addr)); |
| 277 i++; | 281 i++; |
| 278 } | 282 } |
| 279 } | 283 } |
| 280 freeaddrinfo(info); | 284 freeaddrinfo(info); |
| 281 return addresses; | 285 return addresses; |
| 282 } | 286 } |
| 283 | 287 |
| 284 | 288 |
| 285 bool Socket::ReverseLookup(const RawAddr& addr, | 289 bool BaseSocket::ReverseLookup(const RawAddr& addr, |
| 286 char* host, | 290 char* host, |
| 287 intptr_t host_len, | 291 intptr_t host_len, |
| 288 OSError** os_error) { | 292 OSError** os_error) { |
| 289 ASSERT(host_len >= NI_MAXHOST); | 293 ASSERT(host_len >= NI_MAXHOST); |
| 290 int status = NO_RETRY_EXPECTED( | 294 int status = NO_RETRY_EXPECTED( |
| 291 getnameinfo(&addr.addr, SocketAddress::GetAddrLength(addr), host, | 295 getnameinfo(&addr.addr, SocketAddress::GetAddrLength(addr), host, |
| 292 host_len, NULL, 0, NI_NAMEREQD)); | 296 host_len, NULL, 0, NI_NAMEREQD)); |
| 293 if (status != 0) { | 297 if (status != 0) { |
| 294 ASSERT(*os_error == NULL); | 298 ASSERT(*os_error == NULL); |
| 295 *os_error = | 299 *os_error = |
| 296 new OSError(status, gai_strerror(status), OSError::kGetAddressInfo); | 300 new OSError(status, gai_strerror(status), OSError::kGetAddressInfo); |
| 297 return false; | 301 return false; |
| 298 } | 302 } |
| 299 return true; | 303 return true; |
| 300 } | 304 } |
| 301 | 305 |
| 302 | 306 |
| 303 bool Socket::ParseAddress(int type, const char* address, RawAddr* addr) { | 307 bool BaseSocket::ParseAddress(int type, const char* address, RawAddr* addr) { |
| 304 int result; | 308 int result; |
| 305 if (type == SocketAddress::TYPE_IPV4) { | 309 if (type == SocketAddress::TYPE_IPV4) { |
| 306 result = NO_RETRY_EXPECTED(inet_pton(AF_INET, address, &addr->in.sin_addr)); | 310 result = NO_RETRY_EXPECTED(inet_pton(AF_INET, address, &addr->in.sin_addr)); |
| 307 } else { | 311 } else { |
| 308 ASSERT(type == SocketAddress::TYPE_IPV6); | 312 ASSERT(type == SocketAddress::TYPE_IPV6); |
| 309 result = | 313 result = |
| 310 NO_RETRY_EXPECTED(inet_pton(AF_INET6, address, &addr->in6.sin6_addr)); | 314 NO_RETRY_EXPECTED(inet_pton(AF_INET6, address, &addr->in6.sin6_addr)); |
| 311 } | 315 } |
| 312 return (result == 1); | 316 return (result == 1); |
| 313 } | 317 } |
| (...skipping 29 matching lines...) Expand all Loading... |
| 343 // OpenVPN's virtual device tun0. | 347 // OpenVPN's virtual device tun0. |
| 344 return false; | 348 return false; |
| 345 } | 349 } |
| 346 int family = ifa->ifa_addr->sa_family; | 350 int family = ifa->ifa_addr->sa_family; |
| 347 return ((lookup_family == family) || | 351 return ((lookup_family == family) || |
| 348 (((lookup_family == AF_UNSPEC) && | 352 (((lookup_family == AF_UNSPEC) && |
| 349 ((family == AF_INET) || (family == AF_INET6))))); | 353 ((family == AF_INET) || (family == AF_INET6))))); |
| 350 } | 354 } |
| 351 | 355 |
| 352 | 356 |
| 353 bool Socket::ListInterfacesSupported() { | 357 bool BaseSocket::ListInterfacesSupported() { |
| 354 return true; | 358 return true; |
| 355 } | 359 } |
| 356 | 360 |
| 357 | 361 |
| 358 AddressList<InterfaceSocketAddress>* Socket::ListInterfaces( | 362 AddressList<InterfaceSocketAddress>* BaseSocket::ListInterfaces( |
| 359 int type, | 363 int type, |
| 360 OSError** os_error) { | 364 OSError** os_error) { |
| 361 struct ifaddrs* ifaddr; | 365 struct ifaddrs* ifaddr; |
| 362 | 366 |
| 363 int status = NO_RETRY_EXPECTED(getifaddrs(&ifaddr)); | 367 int status = NO_RETRY_EXPECTED(getifaddrs(&ifaddr)); |
| 364 if (status != 0) { | 368 if (status != 0) { |
| 365 ASSERT(*os_error == NULL); | 369 ASSERT(*os_error == NULL); |
| 366 *os_error = | 370 *os_error = |
| 367 new OSError(status, gai_strerror(status), OSError::kGetAddressInfo); | 371 new OSError(status, gai_strerror(status), OSError::kGetAddressInfo); |
| 368 return NULL; | 372 return NULL; |
| (...skipping 47 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 416 } | 420 } |
| 417 | 421 |
| 418 if (NO_RETRY_EXPECTED( | 422 if (NO_RETRY_EXPECTED( |
| 419 bind(fd, &addr.addr, SocketAddress::GetAddrLength(addr))) < 0) { | 423 bind(fd, &addr.addr, SocketAddress::GetAddrLength(addr))) < 0) { |
| 420 FDUtils::SaveErrorAndClose(fd); | 424 FDUtils::SaveErrorAndClose(fd); |
| 421 return -1; | 425 return -1; |
| 422 } | 426 } |
| 423 | 427 |
| 424 // Test for invalid socket port 65535 (some browsers disallow it). | 428 // Test for invalid socket port 65535 (some browsers disallow it). |
| 425 if ((SocketAddress::GetAddrPort(addr) == 0) && | 429 if ((SocketAddress::GetAddrPort(addr) == 0) && |
| 426 (Socket::GetPort(fd) == 65535)) { | 430 (BaseSocket::GetPort(fd) == 65535)) { |
| 427 // Don't close the socket until we have created a new socket, ensuring | 431 // Don't close the socket until we have created a new socket, ensuring |
| 428 // that we do not get the bad port number again. | 432 // that we do not get the bad port number again. |
| 429 intptr_t new_fd = CreateBindListen(addr, backlog, v6_only); | 433 intptr_t new_fd = CreateBindListen(addr, backlog, v6_only); |
| 430 FDUtils::SaveErrorAndClose(fd); | 434 FDUtils::SaveErrorAndClose(fd); |
| 431 return new_fd; | 435 return new_fd; |
| 432 } | 436 } |
| 433 | 437 |
| 434 if (NO_RETRY_EXPECTED(listen(fd, backlog > 0 ? backlog : SOMAXCONN)) != 0) { | 438 if (NO_RETRY_EXPECTED(listen(fd, backlog > 0 ? backlog : SOMAXCONN)) != 0) { |
| 435 FDUtils::SaveErrorAndClose(fd); | 439 FDUtils::SaveErrorAndClose(fd); |
| 436 return -1; | 440 return -1; |
| (...skipping 39 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 476 } | 480 } |
| 477 if (!FDUtils::SetNonBlocking(socket)) { | 481 if (!FDUtils::SetNonBlocking(socket)) { |
| 478 FDUtils::SaveErrorAndClose(socket); | 482 FDUtils::SaveErrorAndClose(socket); |
| 479 return -1; | 483 return -1; |
| 480 } | 484 } |
| 481 } | 485 } |
| 482 return socket; | 486 return socket; |
| 483 } | 487 } |
| 484 | 488 |
| 485 | 489 |
| 486 void Socket::Close(intptr_t fd) { | 490 void BaseSocket::Close(intptr_t fd) { |
| 487 ASSERT(fd >= 0); | 491 ASSERT(fd >= 0); |
| 488 VOID_TEMP_FAILURE_RETRY(close(fd)); | 492 VOID_TEMP_FAILURE_RETRY(close(fd)); |
| 489 } | 493 } |
| 490 | 494 |
| 491 | 495 |
| 492 bool Socket::GetNoDelay(intptr_t fd, bool* enabled) { | 496 bool BaseSocket::GetNoDelay(intptr_t fd, bool* enabled) { |
| 493 int on; | 497 int on; |
| 494 socklen_t len = sizeof(on); | 498 socklen_t len = sizeof(on); |
| 495 int err = NO_RETRY_EXPECTED(getsockopt(fd, IPPROTO_TCP, TCP_NODELAY, | 499 int err = NO_RETRY_EXPECTED(getsockopt(fd, IPPROTO_TCP, TCP_NODELAY, |
| 496 reinterpret_cast<void*>(&on), &len)); | 500 reinterpret_cast<void*>(&on), &len)); |
| 497 if (err == 0) { | 501 if (err == 0) { |
| 498 *enabled = (on == 1); | 502 *enabled = (on == 1); |
| 499 } | 503 } |
| 500 return (err == 0); | 504 return (err == 0); |
| 501 } | 505 } |
| 502 | 506 |
| 503 | 507 |
| 504 bool Socket::SetNoDelay(intptr_t fd, bool enabled) { | 508 bool BaseSocket::SetNoDelay(intptr_t fd, bool enabled) { |
| 505 int on = enabled ? 1 : 0; | 509 int on = enabled ? 1 : 0; |
| 506 return NO_RETRY_EXPECTED(setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, | 510 return NO_RETRY_EXPECTED(setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, |
| 507 reinterpret_cast<char*>(&on), | 511 reinterpret_cast<char*>(&on), |
| 508 sizeof(on))) == 0; | 512 sizeof(on))) == 0; |
| 509 } | 513 } |
| 510 | 514 |
| 511 | 515 |
| 512 bool Socket::GetMulticastLoop(intptr_t fd, intptr_t protocol, bool* enabled) { | 516 bool BaseSocket::GetMulticastLoop(intptr_t fd, |
| 517 intptr_t protocol, |
| 518 bool* enabled) { |
| 513 uint8_t on; | 519 uint8_t on; |
| 514 socklen_t len = sizeof(on); | 520 socklen_t len = sizeof(on); |
| 515 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; | 521 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; |
| 516 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_LOOP | 522 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_LOOP |
| 517 : IPV6_MULTICAST_LOOP; | 523 : IPV6_MULTICAST_LOOP; |
| 518 if (NO_RETRY_EXPECTED(getsockopt(fd, level, optname, | 524 if (NO_RETRY_EXPECTED(getsockopt(fd, level, optname, |
| 519 reinterpret_cast<char*>(&on), &len)) == 0) { | 525 reinterpret_cast<char*>(&on), &len)) == 0) { |
| 520 *enabled = (on == 1); | 526 *enabled = (on == 1); |
| 521 return true; | 527 return true; |
| 522 } | 528 } |
| 523 return false; | 529 return false; |
| 524 } | 530 } |
| 525 | 531 |
| 526 | 532 |
| 527 bool Socket::SetMulticastLoop(intptr_t fd, intptr_t protocol, bool enabled) { | 533 bool BaseSocket::SetMulticastLoop(intptr_t fd, |
| 534 intptr_t protocol, |
| 535 bool enabled) { |
| 528 int on = enabled ? 1 : 0; | 536 int on = enabled ? 1 : 0; |
| 529 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; | 537 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; |
| 530 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_LOOP | 538 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_LOOP |
| 531 : IPV6_MULTICAST_LOOP; | 539 : IPV6_MULTICAST_LOOP; |
| 532 return NO_RETRY_EXPECTED(setsockopt( | 540 return NO_RETRY_EXPECTED(setsockopt( |
| 533 fd, level, optname, reinterpret_cast<char*>(&on), sizeof(on))) == | 541 fd, level, optname, reinterpret_cast<char*>(&on), sizeof(on))) == |
| 534 0; | 542 0; |
| 535 } | 543 } |
| 536 | 544 |
| 537 | 545 |
| 538 bool Socket::GetMulticastHops(intptr_t fd, intptr_t protocol, int* value) { | 546 bool BaseSocket::GetMulticastHops(intptr_t fd, intptr_t protocol, int* value) { |
| 539 uint8_t v; | 547 uint8_t v; |
| 540 socklen_t len = sizeof(v); | 548 socklen_t len = sizeof(v); |
| 541 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; | 549 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; |
| 542 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_TTL | 550 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_TTL |
| 543 : IPV6_MULTICAST_HOPS; | 551 : IPV6_MULTICAST_HOPS; |
| 544 if (NO_RETRY_EXPECTED(getsockopt(fd, level, optname, | 552 if (NO_RETRY_EXPECTED(getsockopt(fd, level, optname, |
| 545 reinterpret_cast<char*>(&v), &len)) == 0) { | 553 reinterpret_cast<char*>(&v), &len)) == 0) { |
| 546 *value = v; | 554 *value = v; |
| 547 return true; | 555 return true; |
| 548 } | 556 } |
| 549 return false; | 557 return false; |
| 550 } | 558 } |
| 551 | 559 |
| 552 | 560 |
| 553 bool Socket::SetMulticastHops(intptr_t fd, intptr_t protocol, int value) { | 561 bool BaseSocket::SetMulticastHops(intptr_t fd, intptr_t protocol, int value) { |
| 554 int v = value; | 562 int v = value; |
| 555 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; | 563 int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6; |
| 556 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_TTL | 564 int optname = protocol == SocketAddress::TYPE_IPV4 ? IP_MULTICAST_TTL |
| 557 : IPV6_MULTICAST_HOPS; | 565 : IPV6_MULTICAST_HOPS; |
| 558 return NO_RETRY_EXPECTED(setsockopt( | 566 return NO_RETRY_EXPECTED(setsockopt( |
| 559 fd, level, optname, reinterpret_cast<char*>(&v), sizeof(v))) == 0; | 567 fd, level, optname, reinterpret_cast<char*>(&v), sizeof(v))) == 0; |
| 560 } | 568 } |
| 561 | 569 |
| 562 | 570 |
| 563 bool Socket::GetBroadcast(intptr_t fd, bool* enabled) { | 571 bool BaseSocket::GetBroadcast(intptr_t fd, bool* enabled) { |
| 564 int on; | 572 int on; |
| 565 socklen_t len = sizeof(on); | 573 socklen_t len = sizeof(on); |
| 566 int err = NO_RETRY_EXPECTED(getsockopt(fd, SOL_SOCKET, SO_BROADCAST, | 574 int err = NO_RETRY_EXPECTED(getsockopt(fd, SOL_SOCKET, SO_BROADCAST, |
| 567 reinterpret_cast<char*>(&on), &len)); | 575 reinterpret_cast<char*>(&on), &len)); |
| 568 if (err == 0) { | 576 if (err == 0) { |
| 569 *enabled = (on == 1); | 577 *enabled = (on == 1); |
| 570 } | 578 } |
| 571 return (err == 0); | 579 return (err == 0); |
| 572 } | 580 } |
| 573 | 581 |
| 574 | 582 |
| 575 bool Socket::SetBroadcast(intptr_t fd, bool enabled) { | 583 bool BaseSocket::SetBroadcast(intptr_t fd, bool enabled) { |
| 576 int on = enabled ? 1 : 0; | 584 int on = enabled ? 1 : 0; |
| 577 return NO_RETRY_EXPECTED(setsockopt(fd, SOL_SOCKET, SO_BROADCAST, | 585 return NO_RETRY_EXPECTED(setsockopt(fd, SOL_SOCKET, SO_BROADCAST, |
| 578 reinterpret_cast<char*>(&on), | 586 reinterpret_cast<char*>(&on), |
| 579 sizeof(on))) == 0; | 587 sizeof(on))) == 0; |
| 580 } | 588 } |
| 581 | 589 |
| 582 | 590 |
| 583 bool Socket::JoinMulticast(intptr_t fd, | 591 bool BaseSocket::JoinMulticast(intptr_t fd, |
| 584 const RawAddr& addr, | 592 const RawAddr& addr, |
| 585 const RawAddr&, | 593 const RawAddr&, |
| 586 int interfaceIndex) { | 594 int interfaceIndex) { |
| 587 int proto = addr.addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6; | 595 int proto = addr.addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6; |
| 588 struct group_req mreq; | 596 struct group_req mreq; |
| 589 mreq.gr_interface = interfaceIndex; | 597 mreq.gr_interface = interfaceIndex; |
| 590 memmove(&mreq.gr_group, &addr.ss, SocketAddress::GetAddrLength(addr)); | 598 memmove(&mreq.gr_group, &addr.ss, SocketAddress::GetAddrLength(addr)); |
| 591 return NO_RETRY_EXPECTED( | 599 return NO_RETRY_EXPECTED( |
| 592 setsockopt(fd, proto, MCAST_JOIN_GROUP, &mreq, sizeof(mreq))) == 0; | 600 setsockopt(fd, proto, MCAST_JOIN_GROUP, &mreq, sizeof(mreq))) == 0; |
| 593 } | 601 } |
| 594 | 602 |
| 595 | 603 |
| 596 bool Socket::LeaveMulticast(intptr_t fd, | 604 bool BaseSocket::LeaveMulticast(intptr_t fd, |
| 597 const RawAddr& addr, | 605 const RawAddr& addr, |
| 598 const RawAddr&, | 606 const RawAddr&, |
| 599 int interfaceIndex) { | 607 int interfaceIndex) { |
| 600 int proto = addr.addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6; | 608 int proto = addr.addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6; |
| 601 struct group_req mreq; | 609 struct group_req mreq; |
| 602 mreq.gr_interface = interfaceIndex; | 610 mreq.gr_interface = interfaceIndex; |
| 603 memmove(&mreq.gr_group, &addr.ss, SocketAddress::GetAddrLength(addr)); | 611 memmove(&mreq.gr_group, &addr.ss, SocketAddress::GetAddrLength(addr)); |
| 604 return NO_RETRY_EXPECTED(setsockopt(fd, proto, MCAST_LEAVE_GROUP, &mreq, | 612 return NO_RETRY_EXPECTED(setsockopt(fd, proto, MCAST_LEAVE_GROUP, &mreq, |
| 605 sizeof(mreq))) == 0; | 613 sizeof(mreq))) == 0; |
| 606 } | 614 } |
| 607 | 615 |
| 608 } // namespace bin | 616 } // namespace bin |
| 609 } // namespace dart | 617 } // namespace dart |
| 610 | 618 |
| 611 #endif // defined(HOST_OS_LINUX) | 619 #endif // defined(HOST_OS_LINUX) |
| 612 | 620 |
| 613 #endif // !defined(DART_IO_DISABLED) | 621 #endif // !defined(DART_IO_DISABLED) |
| OLD | NEW |