4539536b34
Change-Id: Iac2ef051a822223a20b2a440756de18f9b2bf11e Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/120601 Reviewed-by: Zach Anderson <zra@google.com> Commit-Queue: Zach Anderson <zra@google.com>
436 lines
14 KiB
C++
436 lines
14 KiB
C++
// Copyright (c) 2016, 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(HOST_OS_FUCHSIA)
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#include "bin/socket_base.h"
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#include <errno.h>
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#include <fuchsia/netstack/cpp/fidl.h>
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#include <ifaddrs.h>
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#include <lib/sys/cpp/service_directory.h>
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#include <net/if.h>
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#include <netinet/tcp.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <vector>
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#include "bin/eventhandler.h"
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#include "bin/fdutils.h"
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#include "bin/file.h"
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#include "bin/socket_base_fuchsia.h"
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#include "platform/signal_blocker.h"
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// #define SOCKET_LOG_INFO 1
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// #define SOCKET_LOG_ERROR 1
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// define SOCKET_LOG_ERROR to get log messages only for errors.
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// define SOCKET_LOG_INFO to get log messages for both information and errors.
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#if defined(SOCKET_LOG_INFO) || defined(SOCKET_LOG_ERROR)
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#define LOG_ERR(msg, ...) \
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{ \
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int err = errno; \
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Syslog::PrintErr("Dart Socket ERROR: %s:%d: " msg, __FILE__, __LINE__, \
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##__VA_ARGS__); \
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errno = err; \
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}
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#if defined(SOCKET_LOG_INFO)
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#define LOG_INFO(msg, ...) \
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Syslog::Print("Dart Socket INFO: %s:%d: " msg, __FILE__, __LINE__, \
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##__VA_ARGS__)
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#else
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#define LOG_INFO(msg, ...)
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#endif // defined(SOCKET_LOG_INFO)
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#else
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#define LOG_ERR(msg, ...)
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#define LOG_INFO(msg, ...)
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#endif // defined(SOCKET_LOG_INFO) || defined(SOCKET_LOG_ERROR)
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namespace dart {
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namespace bin {
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SocketAddress::SocketAddress(struct sockaddr* sa) {
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ASSERT(INET6_ADDRSTRLEN >= INET_ADDRSTRLEN);
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if (!SocketBase::FormatNumericAddress(*reinterpret_cast<RawAddr*>(sa),
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as_string_, INET6_ADDRSTRLEN)) {
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as_string_[0] = 0;
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}
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socklen_t salen = GetAddrLength(*reinterpret_cast<RawAddr*>(sa));
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memmove(reinterpret_cast<void*>(&addr_), sa, salen);
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}
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static fidl::SynchronousInterfacePtr<fuchsia::netstack::Netstack> netstack;
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static std::once_flag once;
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bool SocketBase::Initialize() {
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static zx_status_t status;
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std::call_once(once, [&]() {
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auto directory = sys::ServiceDirectory::CreateFromNamespace();
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status = directory->Connect(netstack.NewRequest());
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if (status != ZX_OK) {
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Syslog::PrintErr(
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"Initialize: connecting to fuchsia.netstack failed: %s\n",
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zx_status_get_string(status));
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}
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});
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return status == ZX_OK;
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}
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bool SocketBase::FormatNumericAddress(const RawAddr& addr,
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char* address,
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int len) {
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socklen_t salen = SocketAddress::GetAddrLength(addr);
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LOG_INFO("SocketBase::FormatNumericAddress: calling getnameinfo\n");
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return (NO_RETRY_EXPECTED(getnameinfo(&addr.addr, salen, address, len, NULL,
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0, NI_NUMERICHOST) == 0));
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}
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bool SocketBase::IsBindError(intptr_t error_number) {
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return error_number == EADDRINUSE || error_number == EADDRNOTAVAIL ||
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error_number == EINVAL;
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}
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intptr_t SocketBase::Available(intptr_t fd) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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return handle->AvailableBytes();
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}
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intptr_t SocketBase::Read(intptr_t fd,
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void* buffer,
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intptr_t num_bytes,
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SocketOpKind sync) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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LOG_INFO("SocketBase::Read: calling read(%ld, %p, %ld)\n", handle->fd(),
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buffer, num_bytes);
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intptr_t read_bytes = handle->Read(buffer, num_bytes);
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ASSERT(EAGAIN == EWOULDBLOCK);
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if ((sync == kAsync) && (read_bytes == -1) && (errno == EWOULDBLOCK)) {
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// If the read would block we need to retry and therefore return 0
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// as the number of bytes written.
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read_bytes = 0;
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} else if (read_bytes == -1) {
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LOG_ERR("SocketBase::Read: read(%ld, %p, %ld) failed\n", handle->fd(),
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buffer, num_bytes);
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} else {
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LOG_INFO("SocketBase::Read: read(%ld, %p, %ld) succeeded\n", handle->fd(),
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buffer, num_bytes);
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}
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return read_bytes;
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}
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intptr_t SocketBase::RecvFrom(intptr_t fd,
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void* buffer,
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intptr_t num_bytes,
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RawAddr* addr,
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SocketOpKind sync) {
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errno = ENOSYS;
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return -1;
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}
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intptr_t SocketBase::Write(intptr_t fd,
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const void* buffer,
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intptr_t num_bytes,
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SocketOpKind sync) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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LOG_INFO("SocketBase::Write: calling write(%ld, %p, %ld)\n", handle->fd(),
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buffer, num_bytes);
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intptr_t written_bytes = handle->Write(buffer, num_bytes);
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ASSERT(EAGAIN == EWOULDBLOCK);
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if ((sync == kAsync) && (written_bytes == -1) && (errno == EWOULDBLOCK)) {
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// If the would block we need to retry and therefore return 0 as
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// the number of bytes written.
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written_bytes = 0;
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} else if (written_bytes == -1) {
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LOG_ERR("SocketBase::Write: write(%ld, %p, %ld) failed\n", handle->fd(),
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buffer, num_bytes);
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} else {
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LOG_INFO("SocketBase::Write: write(%ld, %p, %ld) succeeded\n", handle->fd(),
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buffer, num_bytes);
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}
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return written_bytes;
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}
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intptr_t SocketBase::SendTo(intptr_t fd,
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const void* buffer,
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intptr_t num_bytes,
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const RawAddr& addr,
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SocketOpKind sync) {
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errno = ENOSYS;
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return -1;
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}
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intptr_t SocketBase::GetPort(intptr_t fd) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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RawAddr raw;
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socklen_t size = sizeof(raw);
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LOG_INFO("SocketBase::GetPort: calling getsockname(%ld)\n", handle->fd());
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if (NO_RETRY_EXPECTED(getsockname(handle->fd(), &raw.addr, &size))) {
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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* SocketBase::GetRemotePeer(intptr_t fd, intptr_t* port) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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RawAddr raw;
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socklen_t size = sizeof(raw);
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if (NO_RETRY_EXPECTED(getpeername(handle->fd(), &raw.addr, &size))) {
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return NULL;
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}
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*port = SocketAddress::GetAddrPort(raw);
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return new SocketAddress(&raw.addr);
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}
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void SocketBase::GetError(intptr_t fd, OSError* os_error) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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int len = sizeof(errno);
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int err = 0;
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VOID_NO_RETRY_EXPECTED(getsockopt(handle->fd(), SOL_SOCKET, SO_ERROR, &err,
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reinterpret_cast<socklen_t*>(&len)));
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errno = err;
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os_error->SetCodeAndMessage(OSError::kSystem, errno);
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}
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int SocketBase::GetType(intptr_t fd) {
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errno = ENOSYS;
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return -1;
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}
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intptr_t SocketBase::GetStdioHandle(intptr_t num) {
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return num;
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}
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AddressList<SocketAddress>* SocketBase::LookupAddress(const char* host,
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int type,
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OSError** os_error) {
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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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LOG_INFO("SocketBase::LookupAddress: calling getaddrinfo\n");
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int status = NO_RETRY_EXPECTED(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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LOG_INFO("SocketBase::LookupAddress: calling getaddrinfo again\n");
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status = NO_RETRY_EXPECTED(getaddrinfo(host, 0, &hints, &info));
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if (status != 0) {
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ASSERT(*os_error == NULL);
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*os_error =
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new OSError(status, gai_strerror(status), OSError::kGetAddressInfo);
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return NULL;
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}
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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)) {
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count++;
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}
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}
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intptr_t i = 0;
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AddressList<SocketAddress>* addresses = new AddressList<SocketAddress>(count);
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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 SocketBase::ReverseLookup(const 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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errno = ENOSYS;
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return false;
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}
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bool SocketBase::ParseAddress(int type, const char* address, RawAddr* addr) {
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int result;
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if (type == SocketAddress::TYPE_IPV4) {
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result = NO_RETRY_EXPECTED(inet_pton(AF_INET, address, &addr->in.sin_addr));
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} else {
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ASSERT(type == SocketAddress::TYPE_IPV6);
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result =
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NO_RETRY_EXPECTED(inet_pton(AF_INET6, address, &addr->in6.sin6_addr));
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}
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return (result == 1);
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}
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bool SocketBase::ListInterfacesSupported() {
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return true;
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}
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AddressList<InterfaceSocketAddress>* SocketBase::ListInterfaces(
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int type,
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OSError** os_error) {
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std::vector<fuchsia::netstack::NetInterface2> interfaces;
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zx_status_t status = netstack->GetInterfaces2(&interfaces);
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if (status != ZX_OK) {
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LOG_ERR("ListInterfaces: fuchsia.netstack.GetInterfaces2 failed: %s\n",
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zx_status_get_string(status));
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errno = EIO;
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return NULL;
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}
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// Process the results.
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const int lookup_family = SocketAddress::FromType(type);
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std::remove_if(
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interfaces.begin(), interfaces.end(),
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[lookup_family](const auto& interface) {
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switch (interface.addr.Which()) {
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case fuchsia::net::IpAddress::Tag::kIpv4:
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return !(lookup_family == AF_UNSPEC || lookup_family == AF_INET);
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case fuchsia::net::IpAddress::Tag::kIpv6:
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return !(lookup_family == AF_UNSPEC || lookup_family == AF_INET6);
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case fuchsia::net::IpAddress::Tag::Invalid:
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return true;
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}
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});
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auto addresses = new AddressList<InterfaceSocketAddress>(interfaces.size());
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int addresses_idx = 0;
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for (const auto& interface : interfaces) {
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struct sockaddr_storage addr = {};
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auto addr_in = reinterpret_cast<struct sockaddr_in*>(&addr);
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auto addr_in6 = reinterpret_cast<struct sockaddr_in6*>(&addr);
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switch (interface.addr.Which()) {
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case fuchsia::net::IpAddress::Tag::kIpv4:
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addr_in->sin_family = AF_INET;
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memmove(&addr_in->sin_addr, interface.addr.ipv4().addr.data(),
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sizeof(addr_in->sin_addr));
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break;
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case fuchsia::net::IpAddress::Tag::kIpv6:
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addr_in6->sin6_family = AF_INET6;
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memmove(&addr_in6->sin6_addr, interface.addr.ipv6().addr.data(),
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sizeof(addr_in6->sin6_addr));
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break;
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case fuchsia::net::IpAddress::Tag::Invalid:
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// Should have been filtered out above.
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UNREACHABLE();
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}
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addresses->SetAt(addresses_idx,
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new InterfaceSocketAddress(
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reinterpret_cast<sockaddr*>(&addr),
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DartUtils::ScopedCopyCString(interface.name.c_str()),
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if_nametoindex(interface.name.c_str())));
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addresses_idx++;
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}
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return addresses;
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}
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void SocketBase::Close(intptr_t fd) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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ASSERT(handle->fd() >= 0);
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NO_RETRY_EXPECTED(close(handle->fd()));
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}
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bool SocketBase::GetNoDelay(intptr_t fd, bool* enabled) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::SetNoDelay(intptr_t fd, bool enabled) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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int on = enabled ? 1 : 0;
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return NO_RETRY_EXPECTED(setsockopt(handle->fd(), IPPROTO_TCP, TCP_NODELAY,
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reinterpret_cast<char*>(&on),
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sizeof(on))) == 0;
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}
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bool SocketBase::GetMulticastLoop(intptr_t fd,
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intptr_t protocol,
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bool* enabled) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::SetMulticastLoop(intptr_t fd,
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intptr_t protocol,
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bool enabled) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::GetMulticastHops(intptr_t fd, intptr_t protocol, int* value) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::SetMulticastHops(intptr_t fd, intptr_t protocol, int value) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::GetBroadcast(intptr_t fd, bool* enabled) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::SetBroadcast(intptr_t fd, bool enabled) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::SetOption(intptr_t fd,
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int level,
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int option,
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const char* data,
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int length) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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return NO_RETRY_EXPECTED(
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setsockopt(handle->fd(), level, option, data, length)) == 0;
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}
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bool SocketBase::GetOption(intptr_t fd,
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int level,
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int option,
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char* data,
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unsigned int* length) {
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IOHandle* handle = reinterpret_cast<IOHandle*>(fd);
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socklen_t optlen = static_cast<socklen_t>(*length);
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auto result =
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NO_RETRY_EXPECTED(getsockopt(handle->fd(), level, option, data, &optlen));
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*length = static_cast<unsigned int>(optlen);
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return result == 0;
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}
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bool SocketBase::JoinMulticast(intptr_t fd,
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const RawAddr& addr,
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const RawAddr&,
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int interfaceIndex) {
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errno = ENOSYS;
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return false;
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}
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bool SocketBase::LeaveMulticast(intptr_t fd,
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const RawAddr& addr,
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const RawAddr&,
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int interfaceIndex) {
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errno = ENOSYS;
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return false;
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}
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} // namespace bin
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} // namespace dart
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#endif // defined(HOST_OS_FUCHSIA)
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