1d2085e773
R=asiva@google.com Review URL: https://codereview.chromium.org//312343002 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@37037 260f80e4-7a28-3924-810f-c04153c831b5
710 lines
21 KiB
C++
710 lines
21 KiB
C++
// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "platform/globals.h"
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#if defined(TARGET_OS_WINDOWS)
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#include "bin/builtin.h"
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#include "bin/eventhandler.h"
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#include "bin/file.h"
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#include "bin/log.h"
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#include "bin/socket.h"
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#include "bin/utils.h"
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#include "vm/thread.h"
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namespace dart {
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namespace bin {
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SocketAddress::SocketAddress(struct sockaddr* sockaddr) {
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ASSERT(INET6_ADDRSTRLEN >= INET_ADDRSTRLEN);
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RawAddr* raw = reinterpret_cast<RawAddr*>(sockaddr);
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// Clear the port before calling WSAAddressToString as WSAAddressToString
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// includes the port in the formatted string.
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int err = Socket::FormatNumericAddress(raw, as_string_, INET6_ADDRSTRLEN);
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if (err != 0) {
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as_string_[0] = 0;
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}
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memmove(reinterpret_cast<void *>(&addr_),
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sockaddr,
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SocketAddress::GetAddrLength(raw));
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}
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bool Socket::FormatNumericAddress(RawAddr* addr, char* address, int len) {
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socklen_t salen = SocketAddress::GetAddrLength(addr);
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DWORD l = len;
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return WSAAddressToStringA(&addr->addr,
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salen,
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NULL,
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address,
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&l) != 0;
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}
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static Mutex* init_mutex = new Mutex();
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static bool socket_initialized = false;
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bool Socket::Initialize() {
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MutexLocker lock(init_mutex);
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if (socket_initialized) return true;
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int err;
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WSADATA winsock_data;
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WORD version_requested = MAKEWORD(2, 2);
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err = WSAStartup(version_requested, &winsock_data);
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if (err == 0) {
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socket_initialized = true;
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} else {
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Log::PrintErr("Unable to initialize Winsock: %d\n", WSAGetLastError());
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}
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return err == 0;
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}
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intptr_t Socket::Available(intptr_t fd) {
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ClientSocket* client_socket = reinterpret_cast<ClientSocket*>(fd);
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return client_socket->Available();
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}
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intptr_t Socket::Read(intptr_t fd, void* buffer, intptr_t num_bytes) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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return handle->Read(buffer, num_bytes);
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}
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intptr_t Socket::RecvFrom(intptr_t fd, void* buffer, intptr_t num_bytes,
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RawAddr* addr) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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socklen_t addr_len = sizeof(addr->ss);
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return handle->RecvFrom(buffer, num_bytes, &addr->addr, addr_len);
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}
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intptr_t Socket::Write(intptr_t fd, const void* buffer, intptr_t num_bytes) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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return handle->Write(buffer, num_bytes);
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}
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intptr_t Socket::SendTo(
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intptr_t fd, const void* buffer, intptr_t num_bytes, RawAddr addr) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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return handle->SendTo(
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buffer, num_bytes, &addr.addr, SocketAddress::GetAddrLength(&addr));
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}
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intptr_t Socket::GetPort(intptr_t fd) {
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ASSERT(reinterpret_cast<Handle*>(fd)->is_socket());
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SocketHandle* socket_handle = reinterpret_cast<SocketHandle*>(fd);
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RawAddr raw;
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socklen_t size = sizeof(raw);
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if (getsockname(socket_handle->socket(),
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&raw.addr,
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&size) == SOCKET_ERROR) {
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Log::PrintErr("Error getsockname: %d\n", WSAGetLastError());
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return 0;
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}
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return SocketAddress::GetAddrPort(&raw);
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}
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SocketAddress* Socket::GetRemotePeer(intptr_t fd, intptr_t* port) {
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ASSERT(reinterpret_cast<Handle*>(fd)->is_socket());
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SocketHandle* socket_handle = reinterpret_cast<SocketHandle*>(fd);
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RawAddr raw;
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socklen_t size = sizeof(raw);
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if (getpeername(socket_handle->socket(),
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&raw.addr,
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&size)) {
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return NULL;
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}
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*port = SocketAddress::GetAddrPort(&raw);
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// Clear the port before calling WSAAddressToString as WSAAddressToString
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// includes the port in the formatted string.
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SocketAddress::SetAddrPort(&raw, 0);
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return new SocketAddress(&raw.addr);
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}
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intptr_t Socket::Create(RawAddr addr) {
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SOCKET s = socket(addr.ss.ss_family, SOCK_STREAM, 0);
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if (s == INVALID_SOCKET) {
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return -1;
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}
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linger l;
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l.l_onoff = 1;
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l.l_linger = 10;
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int status = setsockopt(s,
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SOL_SOCKET,
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SO_LINGER,
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reinterpret_cast<char*>(&l),
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sizeof(l));
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if (status != NO_ERROR) {
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FATAL("Failed setting SO_LINGER on socket");
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}
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ClientSocket* client_socket = new ClientSocket(s);
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return reinterpret_cast<intptr_t>(client_socket);
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}
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intptr_t Socket::Connect(intptr_t fd, RawAddr addr, const intptr_t port) {
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ASSERT(reinterpret_cast<Handle*>(fd)->is_client_socket());
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ClientSocket* handle = reinterpret_cast<ClientSocket*>(fd);
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SOCKET s = handle->socket();
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RawAddr bind_addr;
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memset(&bind_addr, 0, sizeof(bind_addr));
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bind_addr.ss.ss_family = addr.ss.ss_family;
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if (addr.ss.ss_family == AF_INET) {
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bind_addr.in.sin_addr.s_addr = INADDR_ANY;
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} else {
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bind_addr.in6.sin6_addr = in6addr_any;
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}
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int status = bind(
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s, &bind_addr.addr, SocketAddress::GetAddrLength(&bind_addr));
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if (status != NO_ERROR) {
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int rc = WSAGetLastError();
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delete handle;
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closesocket(s);
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SetLastError(rc);
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return -1;
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}
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SocketAddress::SetAddrPort(&addr, port);
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LPFN_CONNECTEX connectEx = NULL;
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GUID guid_connect_ex = WSAID_CONNECTEX;
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DWORD bytes;
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status = WSAIoctl(s,
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SIO_GET_EXTENSION_FUNCTION_POINTER,
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&guid_connect_ex,
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sizeof(guid_connect_ex),
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&connectEx,
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sizeof(connectEx),
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&bytes,
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NULL,
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NULL);
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DWORD rc;
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if (status != SOCKET_ERROR) {
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handle->EnsureInitialized(EventHandler::delegate());
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OverlappedBuffer* overlapped = OverlappedBuffer::AllocateConnectBuffer();
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status = connectEx(s,
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&addr.addr,
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SocketAddress::GetAddrLength(&addr),
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NULL,
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0,
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NULL,
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overlapped->GetCleanOverlapped());
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if (status == TRUE) {
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handle->ConnectComplete(overlapped);
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return fd;
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} else if (WSAGetLastError() == ERROR_IO_PENDING) {
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return fd;
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}
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rc = WSAGetLastError();
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// Cleanup in case of error.
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OverlappedBuffer::DisposeBuffer(overlapped);
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} else {
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rc = WSAGetLastError();
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}
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handle->Close();
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delete handle;
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SetLastError(rc);
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return -1;
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}
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intptr_t Socket::CreateConnect(RawAddr addr, const intptr_t port) {
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intptr_t fd = Socket::Create(addr);
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if (fd < 0) {
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return fd;
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}
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return Socket::Connect(fd, addr, port);
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}
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void Socket::GetError(intptr_t fd, OSError* os_error) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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os_error->SetCodeAndMessage(OSError::kSystem, handle->last_error());
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}
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int Socket::GetType(intptr_t fd) {
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Handle* handle = reinterpret_cast<Handle*>(fd);
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switch (GetFileType(handle->handle())) {
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case FILE_TYPE_CHAR: return File::kTerminal;
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case FILE_TYPE_PIPE: return File::kPipe;
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case FILE_TYPE_DISK: return File::kFile;
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default: return GetLastError == NO_ERROR ? File::kOther : -1;
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}
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}
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intptr_t Socket::GetStdioHandle(intptr_t num) {
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if (num != 0) return -1;
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HANDLE handle = GetStdHandle(STD_INPUT_HANDLE);
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if (handle == INVALID_HANDLE_VALUE) {
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return -1;
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}
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StdHandle* std_handle = new StdHandle(handle);
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std_handle->MarkDoesNotSupportOverlappedIO();
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std_handle->EnsureInitialized(EventHandler::delegate());
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return reinterpret_cast<intptr_t>(std_handle);
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}
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intptr_t ServerSocket::Accept(intptr_t fd) {
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ListenSocket* listen_socket = reinterpret_cast<ListenSocket*>(fd);
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ClientSocket* client_socket = listen_socket->Accept();
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if (client_socket != NULL) {
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return reinterpret_cast<intptr_t>(client_socket);
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} else {
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return -1;
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}
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}
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AddressList<SocketAddress>* Socket::LookupAddress(const char* host,
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int type,
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OSError** os_error) {
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Initialize();
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// Perform a name lookup for a host name.
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struct addrinfo hints;
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memset(&hints, 0, sizeof(hints));
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hints.ai_family = SocketAddress::FromType(type);
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hints.ai_socktype = SOCK_STREAM;
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hints.ai_flags = AI_ADDRCONFIG;
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hints.ai_protocol = IPPROTO_TCP;
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struct addrinfo* info = NULL;
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int status = getaddrinfo(host, 0, &hints, &info);
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if (status != 0) {
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// We failed, try without AI_ADDRCONFIG. This can happen when looking up
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// e.g. '::1', when there are no global IPv6 addresses.
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hints.ai_flags = 0;
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status = getaddrinfo(host, 0, &hints, &info);
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}
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if (status != 0) {
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ASSERT(*os_error == NULL);
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DWORD error_code = WSAGetLastError();
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SetLastError(error_code);
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*os_error = new OSError();
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return NULL;
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}
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intptr_t count = 0;
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for (struct addrinfo* c = info; c != NULL; c = c->ai_next) {
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if (c->ai_family == AF_INET || c->ai_family == AF_INET6) count++;
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}
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AddressList<SocketAddress>* addresses = new AddressList<SocketAddress>(count);
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intptr_t i = 0;
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for (struct addrinfo* c = info; c != NULL; c = c->ai_next) {
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if (c->ai_family == AF_INET || c->ai_family == AF_INET6) {
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addresses->SetAt(i, new SocketAddress(c->ai_addr));
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i++;
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}
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}
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freeaddrinfo(info);
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return addresses;
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}
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bool Socket::ReverseLookup(RawAddr addr,
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char* host,
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intptr_t host_len,
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OSError** os_error) {
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ASSERT(host_len >= NI_MAXHOST);
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int status = getnameinfo(&addr.addr,
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SocketAddress::GetAddrLength(&addr),
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host,
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host_len,
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NULL,
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0,
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NI_NAMEREQD);
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if (status != 0) {
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ASSERT(*os_error == NULL);
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DWORD error_code = WSAGetLastError();
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SetLastError(error_code);
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*os_error = new OSError();
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return false;
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}
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return true;
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}
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bool Socket::ParseAddress(int type, const char* address, RawAddr* addr) {
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int result;
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const wchar_t* system_address = StringUtils::Utf8ToWide(address);
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if (type == SocketAddress::TYPE_IPV4) {
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result = InetPton(AF_INET, system_address, &addr->in.sin_addr);
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} else {
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ASSERT(type == SocketAddress::TYPE_IPV6);
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result = InetPton(AF_INET6, system_address, &addr->in6.sin6_addr);
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}
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free(const_cast<wchar_t*>(system_address));
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return result == 1;
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}
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intptr_t Socket::CreateBindDatagram(
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RawAddr* addr, intptr_t port, bool reuseAddress) {
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SOCKET s = socket(addr->ss.ss_family, SOCK_DGRAM, IPPROTO_UDP);
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if (s == INVALID_SOCKET) {
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return -1;
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}
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int status;
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if (reuseAddress) {
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BOOL optval = true;
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status = setsockopt(s,
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SOL_SOCKET,
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SO_REUSEADDR,
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reinterpret_cast<const char*>(&optval),
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sizeof(optval));
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if (status == SOCKET_ERROR) {
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DWORD rc = WSAGetLastError();
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closesocket(s);
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SetLastError(rc);
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return -1;
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}
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}
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SocketAddress::SetAddrPort(addr, port);
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status = bind(s,
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&addr->addr,
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SocketAddress::GetAddrLength(addr));
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if (status == SOCKET_ERROR) {
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DWORD rc = WSAGetLastError();
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closesocket(s);
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SetLastError(rc);
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return -1;
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}
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DatagramSocket* datagram_socket = new DatagramSocket(s);
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datagram_socket->EnsureInitialized(EventHandler::delegate());
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return reinterpret_cast<intptr_t>(datagram_socket);
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}
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AddressList<InterfaceSocketAddress>* Socket::ListInterfaces(
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int type,
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OSError** os_error) {
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Initialize();
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ULONG size = 0;
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DWORD flags = GAA_FLAG_SKIP_ANYCAST |
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GAA_FLAG_SKIP_MULTICAST |
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GAA_FLAG_SKIP_DNS_SERVER;
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// Query the size needed.
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int status = GetAdaptersAddresses(SocketAddress::FromType(type),
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flags,
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NULL,
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NULL,
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&size);
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IP_ADAPTER_ADDRESSES* addrs = NULL;
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if (status == ERROR_BUFFER_OVERFLOW) {
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addrs = reinterpret_cast<IP_ADAPTER_ADDRESSES*>(malloc(size));
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// Get the addresses now we have the right buffer.
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status = GetAdaptersAddresses(SocketAddress::FromType(type),
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flags,
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NULL,
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addrs,
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&size);
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}
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if (status != NO_ERROR) {
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ASSERT(*os_error == NULL);
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DWORD error_code = WSAGetLastError();
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SetLastError(error_code);
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*os_error = new OSError();
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return NULL;
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}
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intptr_t count = 0;
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for (IP_ADAPTER_ADDRESSES* a = addrs; a != NULL; a = a->Next) {
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for (IP_ADAPTER_UNICAST_ADDRESS* u = a->FirstUnicastAddress;
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u != NULL; u = u->Next) {
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count++;
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}
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}
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AddressList<InterfaceSocketAddress>* addresses =
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new AddressList<InterfaceSocketAddress>(count);
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intptr_t i = 0;
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for (IP_ADAPTER_ADDRESSES* a = addrs; a != NULL; a = a->Next) {
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for (IP_ADAPTER_UNICAST_ADDRESS* u = a->FirstUnicastAddress;
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u != NULL; u = u->Next) {
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addresses->SetAt(i, new InterfaceSocketAddress(
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u->Address.lpSockaddr,
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StringUtils::WideToUtf8(a->FriendlyName),
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a->Ipv6IfIndex));
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i++;
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}
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}
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free(addrs);
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return addresses;
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}
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intptr_t ServerSocket::CreateBindListen(RawAddr addr,
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intptr_t port,
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intptr_t backlog,
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bool v6_only) {
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SOCKET s = socket(addr.ss.ss_family, SOCK_STREAM, IPPROTO_TCP);
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if (s == INVALID_SOCKET) {
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return -1;
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}
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BOOL optval = true;
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int status = setsockopt(s,
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SOL_SOCKET,
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SO_EXCLUSIVEADDRUSE,
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reinterpret_cast<const char*>(&optval),
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sizeof(optval));
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if (status == SOCKET_ERROR) {
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DWORD rc = WSAGetLastError();
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closesocket(s);
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SetLastError(rc);
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return -1;
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}
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if (addr.ss.ss_family == AF_INET6) {
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optval = v6_only;
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setsockopt(s,
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IPPROTO_IPV6,
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IPV6_V6ONLY,
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reinterpret_cast<const char*>(&optval),
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sizeof(optval));
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}
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SocketAddress::SetAddrPort(&addr, port);
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status = bind(s,
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&addr.addr,
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SocketAddress::GetAddrLength(&addr));
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if (status == SOCKET_ERROR) {
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DWORD rc = WSAGetLastError();
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closesocket(s);
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SetLastError(rc);
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return -1;
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}
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ListenSocket* listen_socket = new ListenSocket(s);
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// Test for invalid socket port 65535 (some browsers disallow it).
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if (port == 0 &&
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Socket::GetPort(reinterpret_cast<intptr_t>(listen_socket)) == 65535) {
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// Don't close fd until we have created new. By doing that we ensure another
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// port.
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intptr_t new_s = CreateBindListen(addr, 0, backlog, v6_only);
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DWORD rc = WSAGetLastError();
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closesocket(s);
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delete listen_socket;
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SetLastError(rc);
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return new_s;
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}
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status = listen(s, backlog > 0 ? backlog : SOMAXCONN);
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if (status == SOCKET_ERROR) {
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DWORD rc = WSAGetLastError();
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closesocket(s);
|
|
delete listen_socket;
|
|
SetLastError(rc);
|
|
return -1;
|
|
}
|
|
|
|
return reinterpret_cast<intptr_t>(listen_socket);
|
|
}
|
|
|
|
|
|
void Socket::Close(intptr_t fd) {
|
|
ClientSocket* client_socket = reinterpret_cast<ClientSocket*>(fd);
|
|
client_socket->Close();
|
|
}
|
|
|
|
|
|
static bool SetBlockingHelper(intptr_t fd, bool blocking) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
u_long iMode = blocking ? 0 : 1;
|
|
int status = ioctlsocket(handle->socket(), FIONBIO, &iMode);
|
|
if (status != NO_ERROR) {
|
|
Log::PrintErr("ioctlsocket FIONBIO failed: %d\n", status);
|
|
return false;
|
|
}
|
|
return true;
|
|
}
|
|
|
|
|
|
bool Socket::SetNonBlocking(intptr_t fd) {
|
|
return SetBlockingHelper(fd, false);
|
|
}
|
|
|
|
|
|
bool Socket::SetBlocking(intptr_t fd) {
|
|
return SetBlockingHelper(fd, true);
|
|
}
|
|
|
|
|
|
bool Socket::GetNoDelay(intptr_t fd, bool* enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int on;
|
|
socklen_t len = sizeof(on);
|
|
int err = getsockopt(handle->socket(),
|
|
IPPROTO_TCP,
|
|
TCP_NODELAY,
|
|
reinterpret_cast<char *>(&on),
|
|
&len);
|
|
if (err == 0) {
|
|
*enabled = on == 1;
|
|
}
|
|
return err == 0;
|
|
}
|
|
|
|
|
|
bool Socket::SetNoDelay(intptr_t fd, bool enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int on = enabled ? 1 : 0;
|
|
return setsockopt(handle->socket(),
|
|
IPPROTO_TCP,
|
|
TCP_NODELAY,
|
|
reinterpret_cast<char *>(&on),
|
|
sizeof(on)) == 0;
|
|
}
|
|
|
|
|
|
bool Socket::GetMulticastLoop(intptr_t fd, intptr_t protocol, bool* enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
uint8_t on;
|
|
socklen_t len = sizeof(on);
|
|
int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6;
|
|
int optname = protocol == SocketAddress::TYPE_IPV4
|
|
? IP_MULTICAST_LOOP : IPV6_MULTICAST_LOOP;
|
|
if (getsockopt(handle->socket(),
|
|
level,
|
|
optname,
|
|
reinterpret_cast<char *>(&on),
|
|
&len) == 0) {
|
|
*enabled = (on == 1);
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
|
|
bool Socket::SetMulticastLoop(intptr_t fd, intptr_t protocol, bool enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int on = enabled ? 1 : 0;
|
|
int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6;
|
|
int optname = protocol == SocketAddress::TYPE_IPV4
|
|
? IP_MULTICAST_LOOP : IPV6_MULTICAST_LOOP;
|
|
return setsockopt(handle->socket(),
|
|
level,
|
|
optname,
|
|
reinterpret_cast<char *>(&on),
|
|
sizeof(on)) == 0;
|
|
return false;
|
|
}
|
|
|
|
|
|
bool Socket::GetMulticastHops(intptr_t fd, intptr_t protocol, int* value) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
uint8_t v;
|
|
socklen_t len = sizeof(v);
|
|
int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6;
|
|
int optname = protocol == SocketAddress::TYPE_IPV4
|
|
? IP_MULTICAST_TTL : IPV6_MULTICAST_HOPS;
|
|
if (getsockopt(handle->socket(),
|
|
level,
|
|
optname,
|
|
reinterpret_cast<char *>(&v),
|
|
&len) == 0) {
|
|
*value = v;
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
|
|
bool Socket::SetMulticastHops(intptr_t fd, intptr_t protocol, int value) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int v = value;
|
|
int level = protocol == SocketAddress::TYPE_IPV4 ? IPPROTO_IP : IPPROTO_IPV6;
|
|
int optname = protocol == SocketAddress::TYPE_IPV4
|
|
? IP_MULTICAST_TTL : IPV6_MULTICAST_HOPS;
|
|
return setsockopt(handle->socket(),
|
|
level,
|
|
optname,
|
|
reinterpret_cast<char *>(&v),
|
|
sizeof(v)) == 0;
|
|
}
|
|
|
|
|
|
bool Socket::GetBroadcast(intptr_t fd, bool* enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int on;
|
|
socklen_t len = sizeof(on);
|
|
int err = getsockopt(handle->socket(),
|
|
SOL_SOCKET,
|
|
SO_BROADCAST,
|
|
reinterpret_cast<char *>(&on),
|
|
&len);
|
|
if (err == 0) {
|
|
*enabled = on == 1;
|
|
}
|
|
return err == 0;
|
|
}
|
|
|
|
|
|
bool Socket::SetBroadcast(intptr_t fd, bool enabled) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int on = enabled ? 1 : 0;
|
|
return setsockopt(handle->socket(),
|
|
SOL_SOCKET,
|
|
SO_BROADCAST,
|
|
reinterpret_cast<char *>(&on),
|
|
sizeof(on)) == 0;
|
|
}
|
|
|
|
|
|
bool Socket::JoinMulticast(
|
|
intptr_t fd, RawAddr* addr, RawAddr*, int interfaceIndex) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int proto = addr->addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6;
|
|
struct group_req mreq;
|
|
mreq.gr_interface = interfaceIndex;
|
|
memmove(&mreq.gr_group, &addr->ss, SocketAddress::GetAddrLength(addr));
|
|
return setsockopt(handle->socket(),
|
|
proto,
|
|
MCAST_JOIN_GROUP,
|
|
reinterpret_cast<char *>(&mreq),
|
|
sizeof(mreq)) == 0;
|
|
}
|
|
|
|
|
|
bool Socket::LeaveMulticast(
|
|
intptr_t fd, RawAddr* addr, RawAddr*, int interfaceIndex) {
|
|
SocketHandle* handle = reinterpret_cast<SocketHandle*>(fd);
|
|
int proto = addr->addr.sa_family == AF_INET ? IPPROTO_IP : IPPROTO_IPV6;
|
|
struct group_req mreq;
|
|
mreq.gr_interface = interfaceIndex;
|
|
memmove(&mreq.gr_group, &addr->ss, SocketAddress::GetAddrLength(addr));
|
|
return setsockopt(handle->socket(),
|
|
proto,
|
|
MCAST_LEAVE_GROUP,
|
|
reinterpret_cast<char *>(&mreq),
|
|
sizeof(mreq)) == 0;
|
|
}
|
|
|
|
} // namespace bin
|
|
} // namespace dart
|
|
|
|
#endif // defined(TARGET_OS_WINDOWS)
|