mirror of
https://codeberg.org/ziglang/zig.git
synced 2025-12-09 15:19:07 +00:00
450 lines
14 KiB
Zig
450 lines
14 KiB
Zig
const builtin = @import("builtin");
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const native_os = builtin.os.tag;
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const std = @import("../std.zig");
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const Io = std.Io;
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pub const ListenError = std.net.Address.ListenError || Io.Cancelable;
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pub const ListenOptions = struct {
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/// How many connections the kernel will accept on the application's behalf.
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/// If more than this many connections pool in the kernel, clients will start
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/// seeing "Connection refused".
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kernel_backlog: u31 = 128,
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/// Sets SO_REUSEADDR and SO_REUSEPORT on POSIX.
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/// Sets SO_REUSEADDR on Windows, which is roughly equivalent.
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reuse_address: bool = false,
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force_nonblocking: bool = false,
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};
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pub const IpAddress = union(enum) {
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ip4: Ip4Address,
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ip6: Ip6Address,
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/// Parse the given IP address string into an `IpAddress` value.
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pub fn parse(name: []const u8, port: u16) !IpAddress {
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if (parseIp4(name, port)) |ip4| return ip4 else |err| switch (err) {
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error.Overflow,
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error.InvalidEnd,
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error.InvalidCharacter,
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error.Incomplete,
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error.NonCanonical,
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=> {},
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}
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if (parseIp6(name, port)) |ip6| return ip6 else |err| switch (err) {
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error.Overflow,
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error.InvalidEnd,
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error.InvalidCharacter,
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error.Incomplete,
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error.InvalidIpv4Mapping,
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=> {},
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}
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return error.InvalidIpAddressFormat;
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}
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pub fn parseIp6(buffer: []const u8, port: u16) Ip6Address.ParseError!IpAddress {
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return .{ .ip6 = try Ip6Address.parse(buffer, port) };
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}
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pub fn parseIp4(buffer: []const u8, port: u16) Ip4Address.ParseError!IpAddress {
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return .{ .ip4 = try Ip4Address.parse(buffer, port) };
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}
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/// Returns the port in native endian.
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pub fn getPort(a: IpAddress) u16 {
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return switch (a) {
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inline .ip4, .ip6 => |x| x.port,
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};
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}
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/// `port` is native-endian.
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pub fn setPort(a: *IpAddress, port: u16) void {
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switch (a) {
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inline .ip4, .ip6 => |*x| x.port = port,
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}
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}
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pub fn format(a: IpAddress, w: *std.io.Writer) std.io.Writer.Error!void {
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switch (a) {
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.ip4, .ip6 => |x| return x.format(w),
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}
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}
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pub fn eql(a: IpAddress, b: IpAddress) bool {
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return switch (a) {
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.ip4 => |a_ip4| switch (b) {
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.ip4 => |b_ip4| a_ip4.eql(b_ip4),
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else => false,
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},
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.ip6 => |a_ip6| switch (b) {
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.ip6 => |b_ip6| a_ip6.eql(b_ip6),
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else => false,
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},
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};
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}
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/// The returned `Server` has an open `stream`.
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pub fn listen(address: IpAddress, io: Io, options: ListenOptions) ListenError!Server {
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return io.vtable.listen(io.userdata, address, options);
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}
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};
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pub const Ip4Address = struct {
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bytes: [4]u8,
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port: u16,
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pub const ParseError = error{
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Overflow,
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InvalidEnd,
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InvalidCharacter,
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Incomplete,
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NonCanonical,
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};
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pub fn parse(buffer: []const u8, port: u16) ParseError!Ip4Address {
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var bytes: [4]u8 = @splat(0);
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var index: u8 = 0;
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var saw_any_digits = false;
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var has_zero_prefix = false;
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for (buffer) |c| switch (c) {
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'.' => {
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if (!saw_any_digits) return error.InvalidCharacter;
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if (index == 3) return error.InvalidEnd;
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index += 1;
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saw_any_digits = false;
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has_zero_prefix = false;
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},
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'0'...'9' => {
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if (c == '0' and !saw_any_digits) {
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has_zero_prefix = true;
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} else if (has_zero_prefix) {
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return error.NonCanonical;
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}
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saw_any_digits = true;
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bytes[index] = try std.math.mul(u8, bytes[index], 10);
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bytes[index] = try std.math.add(u8, bytes[index], c - '0');
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},
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else => return error.InvalidCharacter,
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};
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if (index == 3 and saw_any_digits) return .{
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.bytes = bytes,
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.port = port,
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};
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return error.Incomplete;
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}
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pub fn format(a: Ip4Address, w: *std.io.Writer) std.io.Writer.Error!void {
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const bytes = &a.bytes;
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try w.print("{d}.{d}.{d}.{d}:{d}", .{ bytes[0], bytes[1], bytes[2], bytes[3], a.port });
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}
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pub fn eql(a: Ip4Address, b: Ip4Address) bool {
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const a_int: u32 = @bitCast(a.bytes);
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const b_int: u32 = @bitCast(b.bytes);
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return a.port == b.port and a_int == b_int;
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}
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};
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pub const Ip6Address = struct {
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/// Native endian
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port: u16,
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/// Big endian
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bytes: [16]u8,
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flowinfo: u32 = 0,
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scope_id: u32 = 0,
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pub const ParseError = error{
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Overflow,
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InvalidCharacter,
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InvalidEnd,
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InvalidIpv4Mapping,
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Incomplete,
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};
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pub fn parse(buffer: []const u8, port: u16) ParseError!Ip6Address {
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var result: Ip6Address = .{
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.port = port,
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.bytes = undefined,
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};
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var ip_slice: *[16]u8 = &result.bytes;
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var tail: [16]u8 = undefined;
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var x: u16 = 0;
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var saw_any_digits = false;
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var index: u8 = 0;
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var scope_id = false;
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var abbrv = false;
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for (buffer, 0..) |c, i| {
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if (scope_id) {
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if (c >= '0' and c <= '9') {
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const digit = c - '0';
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{
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const ov = @mulWithOverflow(result.scope_id, 10);
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if (ov[1] != 0) return error.Overflow;
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result.scope_id = ov[0];
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}
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{
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const ov = @addWithOverflow(result.scope_id, digit);
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if (ov[1] != 0) return error.Overflow;
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result.scope_id = ov[0];
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}
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} else {
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return error.InvalidCharacter;
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}
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} else if (c == ':') {
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if (!saw_any_digits) {
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if (abbrv) return error.InvalidCharacter; // ':::'
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if (i != 0) abbrv = true;
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@memset(ip_slice[index..], 0);
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ip_slice = tail[0..];
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index = 0;
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continue;
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}
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if (index == 14) {
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return error.InvalidEnd;
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}
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ip_slice[index] = @as(u8, @truncate(x >> 8));
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index += 1;
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ip_slice[index] = @as(u8, @truncate(x));
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index += 1;
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x = 0;
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saw_any_digits = false;
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} else if (c == '%') {
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if (!saw_any_digits) {
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return error.InvalidCharacter;
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}
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scope_id = true;
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saw_any_digits = false;
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} else if (c == '.') {
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if (!abbrv or ip_slice[0] != 0xff or ip_slice[1] != 0xff) {
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// must start with '::ffff:'
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return error.InvalidIpv4Mapping;
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}
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const start_index = std.mem.lastIndexOfScalar(u8, buffer[0..i], ':').? + 1;
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const addr = (Ip4Address.parse(buffer[start_index..], 0) catch {
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return error.InvalidIpv4Mapping;
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}).bytes;
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ip_slice = result.bytes[0..];
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ip_slice[10] = 0xff;
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ip_slice[11] = 0xff;
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ip_slice[12] = addr[0];
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ip_slice[13] = addr[1];
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ip_slice[14] = addr[2];
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ip_slice[15] = addr[3];
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return result;
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} else {
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const digit = try std.fmt.charToDigit(c, 16);
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{
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const ov = @mulWithOverflow(x, 16);
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if (ov[1] != 0) return error.Overflow;
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x = ov[0];
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}
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{
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const ov = @addWithOverflow(x, digit);
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if (ov[1] != 0) return error.Overflow;
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x = ov[0];
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}
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saw_any_digits = true;
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}
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}
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if (!saw_any_digits and !abbrv) {
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return error.Incomplete;
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}
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if (!abbrv and index < 14) {
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return error.Incomplete;
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}
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if (index == 14) {
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ip_slice[14] = @as(u8, @truncate(x >> 8));
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ip_slice[15] = @as(u8, @truncate(x));
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return result;
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} else {
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ip_slice[index] = @as(u8, @truncate(x >> 8));
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index += 1;
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ip_slice[index] = @as(u8, @truncate(x));
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index += 1;
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@memcpy(result.bytes[16 - index ..][0..index], ip_slice[0..index]);
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return result;
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}
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}
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pub fn format(a: Ip6Address, w: *std.io.Writer) std.io.Writer.Error!void {
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const bytes = &a.bytes;
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if (std.mem.eql(u8, bytes[0..12], &[_]u8{ 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0xff, 0xff })) {
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try w.print("[::ffff:{d}.{d}.{d}.{d}]:{d}", .{
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bytes[12], bytes[13], bytes[14], bytes[15], a.port,
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});
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return;
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}
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const parts: [8]u16 = .{
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std.mem.readInt(u16, bytes[0..2], .big),
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std.mem.readInt(u16, bytes[2..4], .big),
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std.mem.readInt(u16, bytes[4..6], .big),
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std.mem.readInt(u16, bytes[6..8], .big),
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std.mem.readInt(u16, bytes[8..10], .big),
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std.mem.readInt(u16, bytes[10..12], .big),
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std.mem.readInt(u16, bytes[12..14], .big),
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std.mem.readInt(u16, bytes[14..16], .big),
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};
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// Find the longest zero run
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var longest_start: usize = 8;
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var longest_len: usize = 0;
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var current_start: usize = 0;
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var current_len: usize = 0;
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for (parts, 0..) |part, i| {
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if (part == 0) {
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if (current_len == 0) {
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current_start = i;
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}
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current_len += 1;
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if (current_len > longest_len) {
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longest_start = current_start;
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longest_len = current_len;
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}
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} else {
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current_len = 0;
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}
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}
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// Only compress if the longest zero run is 2 or more
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if (longest_len < 2) {
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longest_start = 8;
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longest_len = 0;
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}
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try w.writeAll("[");
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var i: usize = 0;
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var abbrv = false;
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while (i < parts.len) : (i += 1) {
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if (i == longest_start) {
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// Emit "::" for the longest zero run
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if (!abbrv) {
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try w.writeAll(if (i == 0) "::" else ":");
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abbrv = true;
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}
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i += longest_len - 1; // Skip the compressed range
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continue;
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}
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if (abbrv) {
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abbrv = false;
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}
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try w.print("{x}", .{parts[i]});
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if (i != parts.len - 1) {
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try w.writeAll(":");
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}
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}
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try w.print("]:{d}", .{a.port});
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}
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pub fn eql(a: Ip6Address, b: Ip6Address) bool {
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return a.port == b.port and std.mem.eql(u8, &a.bytes, &b.bytes);
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}
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};
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pub const Stream = struct {
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/// Underlying platform-defined type which may or may not be
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/// interchangeable with a file system file descriptor.
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handle: Handle,
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pub const Handle = switch (native_os) {
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.windows => std.windows.ws2_32.SOCKET,
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else => std.posix.fd_t,
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};
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pub fn close(s: Stream, io: Io) void {
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return io.vtable.close(io.userdata, s);
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}
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pub const Reader = struct {
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io: Io,
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interface: Io.Reader,
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stream: Stream,
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err: ?Error,
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pub const Error = std.net.Stream.ReadError || Io.Cancelable || Io.Writer.Error || error{EndOfStream};
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pub fn init(stream: Stream, buffer: []u8) Reader {
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return .{
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.interface = .{
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.vtable = &.{ .stream = streamImpl },
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.buffer = buffer,
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.seek = 0,
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.end = 0,
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},
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.stream = stream,
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.err = null,
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};
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}
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fn streamImpl(io_r: *Io.Reader, io_w: *Io.Writer, limit: Io.Limit) Io.Reader.StreamError!usize {
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const r: *Reader = @alignCast(@fieldParentPtr("interface", io_r));
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const io = r.io;
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return io.vtable.netRead(io.vtable.userdata, r.stream, io_w, limit);
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}
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};
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pub const Writer = struct {
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io: Io,
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interface: Io.Writer,
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stream: Stream,
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err: ?Error = null,
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pub const Error = std.net.Stream.WriteError || Io.Cancelable;
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pub fn init(stream: Stream, buffer: []u8) Writer {
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return .{
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.stream = stream,
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.interface = .{
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.vtable = &.{ .drain = drain },
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.buffer = buffer,
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},
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};
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}
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fn drain(io_w: *Io.Writer, data: []const []const u8, splat: usize) Io.Writer.Error!usize {
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const w: *Writer = @alignCast(@fieldParentPtr("interface", io_w));
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const io = w.io;
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const buffered = io_w.buffered();
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const n = try io.vtable.netWrite(io.vtable.userdata, w.stream, buffered, data, splat);
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return io_w.consume(n);
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}
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};
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pub fn reader(stream: Stream, buffer: []u8) Reader {
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return .init(stream, buffer);
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}
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pub fn writer(stream: Stream, buffer: []u8) Writer {
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return .init(stream, buffer);
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}
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};
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pub const Server = struct {
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listen_address: IpAddress,
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stream: Stream,
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pub const Connection = struct {
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stream: Stream,
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address: IpAddress,
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};
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pub fn deinit(s: *Server, io: Io) void {
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s.stream.close(io);
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s.* = undefined;
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}
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pub const AcceptError = std.posix.AcceptError || Io.Cancelable;
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/// Blocks until a client connects to the server. The returned `Connection` has
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/// an open stream.
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pub fn accept(s: *Server, io: Io) AcceptError!Connection {
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return io.vtable.accept(io, s);
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}
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};
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