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e2e7c4d574
In a bunch of cases, this actually ends up simplifying the code as to_number will handle something such as: ``` Optional<I> opt; if constexpr (IsSigned<I>) opt = view.to_int<I>(); else opt = view.to_uint<I>(); ``` For us. The main goal here however is to have a single generic number conversion API between all of the String classes.
220 lines
7.9 KiB
C++
220 lines
7.9 KiB
C++
/*
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* Copyright (c) 2022, Brandon Pruitt <brapru@pm.me>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/ByteString.h>
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#include <AK/IPv4Address.h>
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#include <AK/JsonArray.h>
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#include <AK/JsonObject.h>
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#include <AK/QuickSort.h>
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#include <AK/StringView.h>
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#include <LibCore/ArgsParser.h>
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#include <LibCore/File.h>
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#include <LibCore/ProcessStatisticsReader.h>
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#include <LibCore/System.h>
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#include <LibMain/Main.h>
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#include <net/if.h>
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#include <net/route.h>
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#include <netinet/in.h>
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#include <sys/ioctl.h>
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#include <sys/socket.h>
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#include <unistd.h>
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ErrorOr<int> serenity_main(Main::Arguments arguments)
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{
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TRY(Core::System::pledge("stdio rpath inet"));
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TRY(Core::System::unveil("/sys/kernel/net", "r"));
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TRY(Core::System::unveil(nullptr, nullptr));
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StringView modify_action;
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StringView value_host_address;
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StringView value_network_address;
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StringView value_gateway_address;
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StringView value_netmask_address;
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StringView value_interface;
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Core::ArgsParser args_parser;
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args_parser.set_general_help("Display kernel routing table");
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args_parser.add_positional_argument(modify_action, "Modify the global routing table { add | del }", "action", Core::ArgsParser::Required::No);
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args_parser.add_option(value_host_address, "Target destination is an IPv4 address", "host", 'h', "host");
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args_parser.add_option(value_network_address, "Target destination is a network address", "net", 'n', "net");
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args_parser.add_option(value_gateway_address, "Route packets via a gateway", "gw", 'g', "gw");
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args_parser.add_option(value_netmask_address, "The netmask to be used when adding a network route", "netmask", 'm', "netmask");
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args_parser.add_option(value_interface, "Force the route to be associated with the specified device interface", "interface", 'i', "interface");
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args_parser.parse(arguments);
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enum class Alignment {
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Left,
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Right
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};
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struct Column {
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ByteString title;
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Alignment alignment { Alignment::Left };
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int width { 0 };
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ByteString buffer;
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};
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Vector<Column> columns;
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int destination_column = -1;
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int gateway_column = -1;
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int genmask_column = -1;
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int flags_column = -1;
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int interface_column = -1;
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auto add_column = [&](auto title, auto alignment, auto width) {
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columns.append({ title, alignment, width, {} });
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return columns.size() - 1;
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};
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destination_column = add_column("Destination", Alignment::Left, 15);
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gateway_column = add_column("Gateway", Alignment::Left, 15);
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genmask_column = add_column("Genmask", Alignment::Left, 15);
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flags_column = add_column("Flags", Alignment::Left, 5);
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interface_column = add_column("Interface", Alignment::Left, 9);
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auto print_column = [](auto& column, auto& string) {
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if (!column.width) {
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out("{}", string);
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return;
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}
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if (column.alignment == Alignment::Right) {
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out("{:>{1}} "sv, string, column.width);
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} else {
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out("{:<{1}} "sv, string, column.width);
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}
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};
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if (modify_action.is_empty()) {
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auto file = TRY(Core::File::open("/sys/kernel/net/route"sv, Core::File::OpenMode::Read));
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auto file_contents = TRY(file->read_until_eof());
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auto json = TRY(JsonValue::from_string(file_contents));
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outln("Kernel IP routing table");
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for (auto& column : columns)
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print_column(column, column.title);
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outln();
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Vector<JsonValue> sorted_regions = json.as_array().values();
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quick_sort(sorted_regions, [](auto& a, auto& b) {
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return a.as_object().get_byte_string("destination"sv).value_or({}) < b.as_object().get_byte_string("destination"sv).value_or({});
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});
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for (auto& value : sorted_regions) {
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auto& if_object = value.as_object();
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auto destination = if_object.get_byte_string("destination"sv).value_or({});
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auto gateway = if_object.get_byte_string("gateway"sv).value_or({});
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auto genmask = if_object.get_byte_string("genmask"sv).value_or({});
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auto interface = if_object.get_byte_string("interface"sv).value_or({});
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auto flags = if_object.get_u32("flags"sv).value_or(0);
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StringBuilder flags_builder;
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if (flags & RTF_UP)
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flags_builder.append('U');
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if (flags & RTF_GATEWAY)
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flags_builder.append('G');
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if (flags & RTF_HOST)
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flags_builder.append('H');
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if (destination_column != -1)
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columns[destination_column].buffer = destination;
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if (gateway_column != -1)
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columns[gateway_column].buffer = gateway;
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if (genmask_column != -1)
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columns[genmask_column].buffer = genmask;
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if (flags_column != -1)
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columns[flags_column].buffer = flags_builder.string_view();
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if (interface_column != -1)
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columns[interface_column].buffer = interface;
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for (auto& column : columns)
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print_column(column, column.buffer);
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outln();
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};
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}
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if (!modify_action.is_empty()) {
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bool const action_add = (modify_action == "add");
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bool const action_del = (modify_action == "del");
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if (!action_add && !action_del) {
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warnln("Invalid modify action: {}", modify_action);
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return 1;
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}
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if (value_host_address.is_empty() && value_network_address.is_empty()) {
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warnln("No target host or network specified");
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return 1;
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}
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Optional<IPv4Address> destination;
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if (!value_host_address.is_empty())
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destination = AK::IPv4Address::from_string(value_host_address);
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StringView address;
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StringView cidr;
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if (!value_network_address.is_empty()) {
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// Check if a CIDR notation was provided and parse accordingly
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if (auto position = value_network_address.find('/'); position.has_value()) {
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address = value_network_address.substring_view(0, position.value());
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cidr = value_network_address.substring_view(position.value() + 1);
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} else {
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address = value_network_address;
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}
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destination = AK::IPv4Address::from_string(address);
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}
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if (!destination.has_value()) {
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warnln("Invalid destination IPv4 address");
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return 1;
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}
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auto gateway = AK::IPv4Address::from_string(value_gateway_address);
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if (action_add && !gateway.has_value()) {
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warnln("Invalid gateway IPv4 address: '{}'", value_gateway_address);
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return 1;
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}
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Optional<IPv4Address> genmask;
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if (auto cidr_int = cidr.to_number<int>(); cidr_int.has_value())
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genmask = AK::IPv4Address::netmask_from_cidr(cidr_int.value());
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else
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genmask = AK::IPv4Address::from_string(value_netmask_address);
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if (!genmask.has_value()) {
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warnln("Invalid genmask IPv4 address: '{}'", value_netmask_address);
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return 1;
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}
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int fd = TRY(Core::System::socket(AF_INET, SOCK_DGRAM, IPPROTO_IP));
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rtentry rt {};
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memset(&rt, 0, sizeof(rt));
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rt.rt_dev = const_cast<char*>(value_interface.characters_without_null_termination());
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rt.rt_gateway.sa_family = AF_INET;
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((sockaddr_in&)rt.rt_dst).sin_addr.s_addr = destination.value().to_in_addr_t();
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((sockaddr_in&)rt.rt_gateway).sin_addr.s_addr = gateway.value_or(IPv4Address {}).to_in_addr_t();
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((sockaddr_in&)rt.rt_genmask).sin_addr.s_addr = genmask.value().to_in_addr_t();
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rt.rt_flags = RTF_UP;
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if (!value_host_address.is_empty())
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rt.rt_flags |= RTF_HOST;
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rt.rt_flags |= RTF_GATEWAY;
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if (action_add)
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TRY(Core::System::ioctl(fd, SIOCADDRT, &rt));
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if (action_del)
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TRY(Core::System::ioctl(fd, SIOCDELRT, &rt));
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}
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return 0;
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}
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