feat: get list of IP addresses to send to potential players
parent
cb62ac2f63
commit
fc166b9ee9
113
src/LocalUI.zig
113
src/LocalUI.zig
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@ -24,6 +24,10 @@ fn main_menu_handler(_: ?*anyopaque, request: Request) Handler.Error!Response {
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return Response{ .arena = arena, .body = .{ .element = page.element() } };
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return Response{ .arena = arena, .body = .{ .element = page.element() } };
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}
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}
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const SERVICE_NAME = "_rummy._udp.local.";
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const SIOCGIFCONF = 0x8912;
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const SIOCGIFADDR = 0x8915;
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const JoinMultiplayerGame = struct {
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const JoinMultiplayerGame = struct {
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allocator: std.mem.Allocator,
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allocator: std.mem.Allocator,
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discovery_thread: std.Thread,
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discovery_thread: std.Thread,
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@ -84,9 +88,8 @@ const JoinMultiplayerGame = struct {
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const mdns_ipv6_socket = c.mdns_socket_open_ipv6(null);
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const mdns_ipv6_socket = c.mdns_socket_open_ipv6(null);
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defer c.mdns_socket_close(mdns_ipv6_socket);
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defer c.mdns_socket_close(mdns_ipv6_socket);
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const service_name = "rummy._udp.local.";
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for (&[_]c_int{ mdns_ipv4_socket, mdns_ipv6_socket }) |socket| {
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for (&[_]c_int{ mdns_ipv4_socket, mdns_ipv6_socket }) |socket| {
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switch (c.mdns_query_send(socket, c.MDNS_RECORDTYPE_PTR, service_name.ptr, service_name.len, buffer.ptr, buffer.len, 0)) {
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switch (c.mdns_query_send(socket, c.MDNS_RECORDTYPE_PTR, SERVICE_NAME.ptr, SERVICE_NAME.len, buffer.ptr, buffer.len, 0)) {
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0 => {},
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0 => {},
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else => |err_code| log.warn("Failed to send question; error code = {}", .{err_code}),
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else => |err_code| log.warn("Failed to send question; error code = {}", .{err_code}),
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}
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}
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@ -159,9 +162,6 @@ const JoinMultiplayerGame = struct {
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c.MDNS_RECORDTYPE_TXT => "TXT",
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c.MDNS_RECORDTYPE_TXT => "TXT",
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else => "???",
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else => "???",
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};
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};
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if (rtype == c.MDNS_RECORDTYPE_PTR) {
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log.info("{?} : {s} {s} \"{}\"", .{ std_from, entrytype_str, recordtype_str, std.zig.fmtEscapes(name) });
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}
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switch (rtype) {
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switch (rtype) {
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c.MDNS_RECORDTYPE_PTR => {
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c.MDNS_RECORDTYPE_PTR => {
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@ -169,6 +169,16 @@ const JoinMultiplayerGame = struct {
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const namestr = c.mdns_record_parse_ptr(data_ptr_opaque, data_len, record_offset, record_length, &namebuffer, namebuffer.len);
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const namestr = c.mdns_record_parse_ptr(data_ptr_opaque, data_len, record_offset, record_length, &namebuffer, namebuffer.len);
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log.info("{?} : {s} {s} \"{}\"", .{ std_from, entrytype_str, recordtype_str, std.zig.fmtEscapes(namestr.str[0..namestr.length]) });
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log.info("{?} : {s} {s} \"{}\"", .{ std_from, entrytype_str, recordtype_str, std.zig.fmtEscapes(namestr.str[0..namestr.length]) });
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},
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},
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c.MDNS_RECORDTYPE_A => {
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var std_address: std.net.Ip4Address = undefined;
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_ = c.mdns_record_parse_a(data_ptr_opaque, data_len, record_offset, record_length, @ptrCast(&std_address.sa));
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log.info("{?} : {s} {s} \"{}\" -> {}", .{ std_from, entrytype_str, recordtype_str, std.zig.fmtEscapes(name), std_address });
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},
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c.MDNS_RECORDTYPE_AAAA => {
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var std_address: std.net.Ip6Address = undefined;
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_ = c.mdns_record_parse_aaaa(data_ptr_opaque, data_len, record_offset, record_length, @ptrCast(&std_address.sa));
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log.info("{?} : {s} {s} \"{}\" -> {}", .{ std_from, entrytype_str, recordtype_str, std.zig.fmtEscapes(name), std_address });
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},
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else => {},
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else => {},
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}
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}
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return 0;
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return 0;
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@ -213,6 +223,7 @@ const HostMultiplayerGame = struct {
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if (server == null) {
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if (server == null) {
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return error.OutOfMemory; // TODO: add better error message
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return error.OutOfMemory; // TODO: add better error message
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}
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}
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errdefer c.enet_host_destroy(server);
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// setup mDNS discovery service
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// setup mDNS discovery service
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@ -315,22 +326,6 @@ const HostMultiplayerGame = struct {
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interface: c_int,
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interface: c_int,
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};
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};
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// TODO: get ipv4 and ipv6 adress of server to send out over mDNS
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// const SIOCGIFADDR = 0x8915;
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// var ifr: std.os.ifreq = undefined;
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// ifr.ifru.addr.family = std.os.AF.INET;
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// const interface_name = "wlp170s0";
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// @memset(&ifr.ifrn.name, 0);
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// @memcpy(ifr.ifrn.name[0..interface_name.len], interface_name);
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// const ifr_ret_value = std.os.linux.getErrno(std.os.linux.ioctl(mdns_socket6, SIOCGIFADDR, @intFromPtr(&ifr)));
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// std.log.scoped(.mdns).debug("ioctl({}, SIOCGIFADDR, {*}) = {}", .{ mdns_socket6, &ifr, ifr_ret_value });
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// std.os.ioctl_SIOCGIFINDEX(mdns_socket6, &ifr) catch unreachable;
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// const interface = ifr.ifru.ivalue;
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// const mdns_ipv6_multicast_group = std.net.Address.parseIp6("ff02::fb", c.MDNS_PORT) catch unreachable;
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// var socklen = mdns_sock_addr6.getOsSockLen();
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std.os.setsockopt(
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std.os.setsockopt(
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mdns_socket6,
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mdns_socket6,
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std.os.IPPROTO.IPV6,
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std.os.IPPROTO.IPV6,
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@ -344,7 +339,6 @@ const HostMultiplayerGame = struct {
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const mdns_sock_addr6 = std.net.Address.parseIp6("::", c.MDNS_PORT) catch unreachable;
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const mdns_sock_addr6 = std.net.Address.parseIp6("::", c.MDNS_PORT) catch unreachable;
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var socklen = mdns_sock_addr6.getOsSockLen();
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var socklen = mdns_sock_addr6.getOsSockLen();
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std.os.bind(mdns_socket6, &mdns_sock_addr6.any, socklen) catch unreachable;
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std.os.bind(mdns_socket6, &mdns_sock_addr6.any, socklen) catch unreachable;
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// std.os.listen(mdns_socket6, self.kernel_backlog) catch unreachable;
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var mdns_listen_addr: std.net.Address = undefined;
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var mdns_listen_addr: std.net.Address = undefined;
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std.os.getsockname(mdns_socket, &mdns_listen_addr.any, &socklen) catch unreachable;
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std.os.getsockname(mdns_socket, &mdns_listen_addr.any, &socklen) catch unreachable;
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@ -355,12 +349,7 @@ const HostMultiplayerGame = struct {
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std.os.getsockname(mdns_socket6, &mdns_listen_addr6.any, &socklen) catch unreachable;
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std.os.getsockname(mdns_socket6, &mdns_listen_addr6.any, &socklen) catch unreachable;
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const ipv6_sockaddr_string = try std.fmt.allocPrint(allocator, "{}", .{mdns_listen_addr6});
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const ipv6_sockaddr_string = try std.fmt.allocPrint(allocator, "{}", .{mdns_listen_addr6});
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// // const SIOCGIFNAME = 0x8910;
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const service_string = try allocator.dupe(u8, SERVICE_NAME);
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// const ipv4_sockaddr: std.os.sockaddr.in = @bitCast(ifr.ifru.addr);
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// // const ipv4_bytes: [4]u8 = @bitCast(ipv4_sockaddr.addr);
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const service_string = try allocator.dupe(u8, "rummy._udp.local.");
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var hostname_buffer: [std.os.HOST_NAME_MAX]u8 = undefined;
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var hostname_buffer: [std.os.HOST_NAME_MAX]u8 = undefined;
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const hostname = std.os.gethostname(&hostname_buffer) catch unreachable;
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const hostname = std.os.gethostname(&hostname_buffer) catch unreachable;
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@ -404,18 +393,36 @@ const HostMultiplayerGame = struct {
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.ttl = 0,
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.ttl = 0,
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});
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});
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// TODO: Add AAAA and A records to mdns service
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// get a list of addresses to populate A and AAAA DNS records
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// // DNS A that maps "<hostname>.local." to the an ip address
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const addresses = @import("./multiplayer.zig").getIPAddresses(allocator) catch return error.OutOfMemory;
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// const mdns_a_record = c.mdns_record_t{
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defer this.allocator.free(addresses);
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// .name = .{ .str = qualified_hostname.ptr, .length = qualified_hostname.len },
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// .type = c.MDNS_RECORDTYPE_A,
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for (addresses) |ip_address| {
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// .data = .{ .a = .{
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switch (ip_address) {
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// .addr = @bitCast(ipv4_sockaddr),
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.ipv4 => |ipv4| {
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// } },
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try mdns_records.append(c.mdns_record_t{
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// .rclass = 0,
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.name = .{ .str = qualified_hostname.ptr, .length = qualified_hostname.len },
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// .ttl = 0,
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.type = c.MDNS_RECORDTYPE_A,
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// };
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.data = .{ .a = .{ .addr = .{
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// try mdns_records.append(mdns_a_record);
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.sin_addr = @bitCast(ipv4),
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} } },
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.rclass = 0,
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.ttl = 0,
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});
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},
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.ipv6 => |ipv6| {
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try mdns_records.append(c.mdns_record_t{
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.name = .{ .str = qualified_hostname.ptr, .length = qualified_hostname.len },
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.type = c.MDNS_RECORDTYPE_AAAA,
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.data = .{ .aaaa = .{ .addr = .{
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.sin6_addr = @bitCast(ipv6),
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} } },
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.rclass = 0,
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.ttl = 0,
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});
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},
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}
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}
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const mdns_record_slice = try mdns_records.toOwnedSlice();
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const mdns_record_slice = try mdns_records.toOwnedSlice();
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errdefer allocator.free(mdns_record_slice);
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errdefer allocator.free(mdns_record_slice);
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@ -482,6 +489,14 @@ const HostMultiplayerGame = struct {
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this.allocator.destroy(this);
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this.allocator.destroy(this);
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}
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}
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const nlmsghdr = extern struct {
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len: u32,
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type: u16,
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flags: u16,
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seq: u32,
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pid: u32,
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};
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fn mdns_thread_main(this: *@This()) !void {
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fn mdns_thread_main(this: *@This()) !void {
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const buffer = try this.allocator.alloc(u8, 2048);
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const buffer = try this.allocator.alloc(u8, 2048);
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defer this.allocator.free(buffer);
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defer this.allocator.free(buffer);
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@ -516,7 +531,8 @@ const HostMultiplayerGame = struct {
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.{ .fd = this.mdns_socket6, .events = std.os.POLL.IN, .revents = undefined },
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.{ .fd = this.mdns_socket6, .events = std.os.POLL.IN, .revents = undefined },
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};
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};
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_ = std.os.poll(&pollfds, 1000) catch break;
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_ = std.os.poll(&pollfds, 1000) catch break;
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for (pollfds) |pollfd| {
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// listen for mdns messages
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for (pollfds[0..2]) |pollfd| {
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if (pollfd.revents & std.os.POLL.IN == 0) continue;
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if (pollfd.revents & std.os.POLL.IN == 0) continue;
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_ = c.mdns_socket_listen(pollfd.fd, buffer.ptr, buffer.len, &mdns_thread_service_callback, this);
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_ = c.mdns_socket_listen(pollfd.fd, buffer.ptr, buffer.len, &mdns_thread_service_callback, this);
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}
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}
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@ -562,7 +578,7 @@ const HostMultiplayerGame = struct {
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const std_from: ?std.net.Address = if (from) |f| std.net.Address{ .any = @bitCast(f.*) } else null;
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const std_from: ?std.net.Address = if (from) |f| std.net.Address{ .any = @bitCast(f.*) } else null;
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if (std.mem.eql(u8, name, DNS_SD)) {
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if (std.mem.eql(u8, name, DNS_SD) and (rtype == c.MDNS_RECORDTYPE_PTR or rtype == c.MDNS_RECORDTYPE_ANY)) {
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const answer = c.mdns_record_t{
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const answer = c.mdns_record_t{
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.name = .{ .str = name.ptr, .length = name.len },
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.name = .{ .str = name.ptr, .length = name.len },
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.type = c.MDNS_RECORDTYPE_PTR,
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.type = c.MDNS_RECORDTYPE_PTR,
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@ -605,7 +621,7 @@ const HostMultiplayerGame = struct {
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log.warn("{s}:{} failed to answer query, error code = {}", .{ @src().file, @src().line, ret_val });
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log.warn("{s}:{} failed to answer query, error code = {}", .{ @src().file, @src().line, ret_val });
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}
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}
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}
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}
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} else if (std.mem.eql(u8, name, this.service_string)) {
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} else if (std.mem.eql(u8, name, this.service_string) and (rtype == c.MDNS_RECORDTYPE_PTR or rtype == c.MDNS_RECORDTYPE_ANY)) {
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const answer = this.mdns_records[0];
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const answer = this.mdns_records[0];
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const additional = this.mdns_records[1..];
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const additional = this.mdns_records[1..];
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@ -649,8 +665,9 @@ const HostMultiplayerGame = struct {
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log.warn("{s}:{} failed to answer query with multicast, error code = {}", .{ @src().file, @src().line, ret_val });
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log.warn("{s}:{} failed to answer query with multicast, error code = {}", .{ @src().file, @src().line, ret_val });
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}
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}
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}
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}
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} else if (std.mem.eql(u8, name, this.service_instance_string)) {
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} else if (std.mem.eql(u8, name, this.service_instance_string) and (rtype == c.MDNS_RECORDTYPE_SRV or rtype == c.MDNS_RECORDTYPE_ANY)) {
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const answer = this.mdns_records[1];
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const answer = this.mdns_records[1];
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const additional = this.mdns_records[2..];
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var sendbuffer: [1024]u8 = undefined;
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var sendbuffer: [1024]u8 = undefined;
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if (rclass & c.MDNS_UNICAST_RESPONSE != 0) {
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if (rclass & c.MDNS_UNICAST_RESPONSE != 0) {
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@ -667,8 +684,8 @@ const HostMultiplayerGame = struct {
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answer,
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answer,
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null,
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null,
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0,
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0,
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null,
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additional.ptr,
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0,
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additional.len,
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);
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);
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} else {
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} else {
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_ = c.mdns_query_answer_multicast(
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_ = c.mdns_query_answer_multicast(
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@ -678,8 +695,8 @@ const HostMultiplayerGame = struct {
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answer,
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answer,
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null,
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null,
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0,
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0,
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null,
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additional.ptr,
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0,
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additional.len,
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);
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);
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}
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}
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}
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}
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@ -0,0 +1,186 @@
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const IpAddress = union(enum) {
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ipv4: [4]u8,
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ipv6: [16]u8,
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pub fn format(
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this: @This(),
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comptime fmt: []const u8,
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options: std.fmt.FormatOptions,
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writer: anytype,
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) !void {
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_ = fmt;
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_ = options;
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switch (this) {
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.ipv4 => |ip| return std.fmt.format(writer, "{}.{}.{}.{}", .{ ip[0], ip[1], ip[2], ip[3] }),
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.ipv6 => |ip| {
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const sextets: [8][2]u8 = @bitCast(ip);
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for (sextets, 0..) |sextet, i| {
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if (i > 0) {
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try std.fmt.format(writer, ":{}", .{std.fmt.fmtSliceHexLower(&sextet)});
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} else {
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try std.fmt.format(writer, "{}", .{std.fmt.fmtSliceHexLower(&sextet)});
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}
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}
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},
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}
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}
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};
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pub fn getIPAddresses(allocator: std.mem.Allocator) ![]IpAddress {
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const rtnetlink_socket = try std.os.socket(std.os.AF.NETLINK, std.os.SOCK.DGRAM, std.os.linux.NETLINK.ROUTE);
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defer std.os.closeSocket(rtnetlink_socket);
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const rtnetlink_addr = std.os.sockaddr.nl{
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.pid = @intCast(std.os.linux.getpid()),
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.groups = 0,
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};
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try std.os.bind(rtnetlink_socket, @ptrCast(&rtnetlink_addr), @sizeOf(std.os.sockaddr.nl));
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var addresses = std.ArrayList(IpAddress).init(allocator);
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defer addresses.deinit();
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const msg_get_links = addrmsg_t{
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.hdr = std.os.linux.nlmsghdr{
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.len = @sizeOf(addrmsg_t),
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.type = .RTM_GETADDR,
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.flags = std.os.linux.NLM_F_REQUEST | std.os.linux.NLM_F_DUMP,
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.seq = 2,
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.pid = @intCast(std.os.linux.getpid()),
|
||||||
|
},
|
||||||
|
.body = ifaddrmsg_t{
|
||||||
|
.family = 0,
|
||||||
|
.prefixlen = 0,
|
||||||
|
.flags = 0,
|
||||||
|
.scope = 0,
|
||||||
|
.interface_index = 0,
|
||||||
|
},
|
||||||
|
};
|
||||||
|
const iovs = [_]std.os.iovec_const{
|
||||||
|
.{ .iov_base = &std.mem.toBytes(msg_get_links), .iov_len = @sizeOf(addrmsg_t) },
|
||||||
|
};
|
||||||
|
_ = try std.os.sendmsg(rtnetlink_socket, &std.os.msghdr_const{
|
||||||
|
.name = @ptrCast(&std.os.sockaddr.nl{ .pid = 0, .groups = 0 }),
|
||||||
|
.namelen = @sizeOf(std.os.sockaddr.nl),
|
||||||
|
.iov = &iovs,
|
||||||
|
.iovlen = iovs.len,
|
||||||
|
.control = null,
|
||||||
|
.controllen = 0,
|
||||||
|
.flags = 0,
|
||||||
|
}, 0);
|
||||||
|
|
||||||
|
// listen for netlink messages
|
||||||
|
netlink_loop: while (true) {
|
||||||
|
var buf: [8192]u8 = undefined;
|
||||||
|
|
||||||
|
var kernel_addr = std.os.sockaddr.nl{ .pid = 0, .groups = 0 };
|
||||||
|
var recv_iovs = [_]std.os.iovec{
|
||||||
|
.{ .iov_base = &buf, .iov_len = buf.len },
|
||||||
|
};
|
||||||
|
var recv_hdr = std.os.linux.msghdr{
|
||||||
|
.name = @ptrCast(&kernel_addr),
|
||||||
|
.namelen = @sizeOf(std.os.sockaddr.nl),
|
||||||
|
.iov = &recv_iovs,
|
||||||
|
.iovlen = recv_iovs.len,
|
||||||
|
.control = null,
|
||||||
|
.controllen = 0,
|
||||||
|
.flags = 0,
|
||||||
|
};
|
||||||
|
const recv_msg_len = std.os.linux.recvmsg(rtnetlink_socket, &recv_hdr, 0);
|
||||||
|
const recv_msg = buf[0..recv_msg_len];
|
||||||
|
|
||||||
|
var nlmsg_offset: usize = 0;
|
||||||
|
while (nlmsg_offset < recv_msg.len) {
|
||||||
|
const recv_nlmsghdr: *std.os.linux.nlmsghdr = @ptrCast(@alignCast(recv_msg[nlmsg_offset..][0..@sizeOf(std.os.linux.nlmsghdr)]));
|
||||||
|
defer nlmsg_offset += recv_nlmsghdr.len;
|
||||||
|
|
||||||
|
const nlmsg_data = recv_msg[nlmsg_offset..][0..recv_nlmsghdr.len];
|
||||||
|
|
||||||
|
if (recv_nlmsghdr.type == .DONE) {
|
||||||
|
break :netlink_loop;
|
||||||
|
} else if (recv_nlmsghdr.type == .RTM_NEWADDR) {
|
||||||
|
const address_message: *ifaddrmsg_t = @ptrCast(@alignCast(nlmsg_data[@sizeOf(std.os.linux.nlmsghdr)..][0..@sizeOf(ifaddrmsg_t)]));
|
||||||
|
|
||||||
|
switch (@as(RtScope, @enumFromInt(address_message.scope))) {
|
||||||
|
.universe, .site, .link => {},
|
||||||
|
// ignore IPs relevant only to the current machine
|
||||||
|
.host, .nowhere => continue,
|
||||||
|
}
|
||||||
|
|
||||||
|
var attr_offset: usize = std.mem.alignForward(usize, @sizeOf(ifaddrmsg_t) + @sizeOf(std.os.linux.nlmsghdr), @alignOf(std.os.linux.rtattr));
|
||||||
|
while (attr_offset < nlmsg_data.len) {
|
||||||
|
const attr_hdr: std.os.linux.rtattr = @bitCast(nlmsg_data[attr_offset..][0..@sizeOf(std.os.linux.rtattr)].*);
|
||||||
|
|
||||||
|
const attr_len_u32: u32 = @intCast(attr_hdr.len);
|
||||||
|
const attr_len_aligned = std.mem.alignForward(usize, @sizeOf(std.os.linux.rtattr) + attr_len_u32, @alignOf(std.os.linux.rtattr));
|
||||||
|
|
||||||
|
const attr_data_offset = std.mem.alignForward(usize, attr_offset + @sizeOf(std.os.linux.rtattr), @alignOf(std.os.linux.rtattr));
|
||||||
|
|
||||||
|
switch (attr_hdr.type) {
|
||||||
|
.ADDRESS => {
|
||||||
|
const attr_data = nlmsg_data[attr_data_offset..][0 .. attr_hdr.len - @sizeOf(std.os.linux.rtattr)];
|
||||||
|
switch (address_message.family) {
|
||||||
|
std.os.linux.AF.INET => try addresses.append(.{ .ipv4 = attr_data[0..4].* }),
|
||||||
|
std.os.linux.AF.INET6 => try addresses.append(.{ .ipv6 = attr_data[0..16].* }),
|
||||||
|
else => {},
|
||||||
|
}
|
||||||
|
},
|
||||||
|
else => {},
|
||||||
|
}
|
||||||
|
|
||||||
|
attr_offset += attr_len_aligned;
|
||||||
|
}
|
||||||
|
} else if (recv_nlmsghdr.type == .ERROR) {
|
||||||
|
const nlmsgerr_t = extern struct {
|
||||||
|
@"error": c_int,
|
||||||
|
hdr: std.os.linux.nlmsghdr,
|
||||||
|
};
|
||||||
|
const err: *nlmsgerr_t = @ptrCast(@alignCast(nlmsg_data[@sizeOf(std.os.linux.nlmsghdr)..][0..@sizeOf(nlmsgerr_t)]));
|
||||||
|
std.log.warn("errno = {}", .{err.@"error"});
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
return addresses.toOwnedSlice();
|
||||||
|
}
|
||||||
|
|
||||||
|
const IFF = struct {
|
||||||
|
const UP = 1 << 0;
|
||||||
|
const BROADCAST = 1 << 1;
|
||||||
|
const DEBUG = 1 << 2;
|
||||||
|
const LOOPBACK = 1 << 3;
|
||||||
|
const POINTOPOINT = 1 << 4;
|
||||||
|
const NOTRAILERS = 1 << 5;
|
||||||
|
const RUNNING = 1 << 6;
|
||||||
|
const NOARP = 1 << 7;
|
||||||
|
const PROMISC = 1 << 8;
|
||||||
|
const ALLMULTI = 1 << 9;
|
||||||
|
const MASTER = 1 << 10;
|
||||||
|
const SLAVE = 1 << 11;
|
||||||
|
const MULTICAST = 1 << 12;
|
||||||
|
const PORTSEL = 1 << 13;
|
||||||
|
const AUTOMEDIA = 1 << 14;
|
||||||
|
const DYNAMIC = 1 << 15;
|
||||||
|
};
|
||||||
|
|
||||||
|
const RtScope = enum(c_int) {
|
||||||
|
universe = 0,
|
||||||
|
site = 200,
|
||||||
|
link = 253,
|
||||||
|
host = 254,
|
||||||
|
nowhere = 255,
|
||||||
|
};
|
||||||
|
|
||||||
|
const ifaddrmsg_t = extern struct {
|
||||||
|
family: u8,
|
||||||
|
prefixlen: u8,
|
||||||
|
flags: u8,
|
||||||
|
scope: u8,
|
||||||
|
interface_index: c_uint,
|
||||||
|
};
|
||||||
|
|
||||||
|
const addrmsg_t = extern struct {
|
||||||
|
hdr: std.os.linux.nlmsghdr,
|
||||||
|
body: ifaddrmsg_t,
|
||||||
|
};
|
||||||
|
|
||||||
|
const std = @import("std");
|
Loading…
Reference in New Issue