1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
|
const std = @import("std");
const libc = std.c;
const ssl = @import("openssl");
comptime {
if (ssl.OPENSSL_VERSION_NUMBER < 0x30600000)
@compileError("9P over QUIC requires OpenSSL 3.6 or newer");
}
pub const alpn = "pardes-9p";
pub const Error = error{ Tls, Socket, SocketFlags, SocketOption, Bind, Address, Closed, InvalidWrite };
pub const Listener = struct {
fd: c_int,
handle: *ssl.SSL,
address: std.Io.net.IpAddress,
pub fn init(address: std.Io.net.IpAddress) Error!Listener {
ssl.ERR_clear_error();
const ctx = ssl.SSL_CTX_new(ssl.OSSL_QUIC_server_method()) orelse return error.Tls;
defer ssl.SSL_CTX_free(ctx);
const key = ssl.EVP_PKEY_Q_keygen(null, null, "EC", @as([*:0]const u8, "prime256v1")) orelse return error.Tls;
defer ssl.EVP_PKEY_free(key);
const cert = ssl.X509_new() orelse return error.Tls;
defer ssl.X509_free(cert);
if (ssl.X509_set_version(cert, 2) != 1 or
ssl.ASN1_INTEGER_set(ssl.X509_get_serialNumber(cert), 1) != 1 or
ssl.X509_gmtime_adj(ssl.X509_getm_notBefore(cert), -60) == null or
ssl.X509_gmtime_adj(ssl.X509_getm_notAfter(cert), 365 * 24 * 60 * 60) == null or
ssl.X509_set_pubkey(cert, key) != 1) return error.Tls;
const name = ssl.X509_get_subject_name(cert) orelse return error.Tls;
if (ssl.X509_NAME_add_entry_by_txt(name, "CN", ssl.MBSTRING_ASC, "pardes", -1, -1, 0) != 1 or
ssl.X509_set_issuer_name(cert, name) != 1 or
ssl.X509_sign(cert, key, ssl.EVP_sha256()) <= 0 or
ssl.SSL_CTX_use_certificate(ctx, cert) != 1 or
ssl.SSL_CTX_use_PrivateKey(ctx, key) != 1) return error.Tls;
ssl.SSL_CTX_set_verify(ctx, ssl.SSL_VERIFY_NONE, null);
ssl.SSL_CTX_set_alpn_select_cb(ctx, selectAlpn, null);
var addr: libc.sockaddr.storage = undefined;
const addr_len = sockaddr(address, &addr);
const fd = try udp(addr.family);
errdefer _ = libc.close(fd);
if (libc.bind(fd, @ptrCast(&addr), addr_len) != 0) return error.Bind;
var actual_len: libc.socklen_t = @sizeOf(@TypeOf(addr));
if (libc.getsockname(fd, @ptrCast(&addr), &actual_len) != 0) return error.Address;
var actual = address;
actual.setPort(switch (address) {
.ip4 => std.mem.bigToNative(u16, @as(*const libc.sockaddr.in, @ptrCast(&addr)).port),
.ip6 => std.mem.bigToNative(u16, @as(*const libc.sockaddr.in6, @ptrCast(&addr)).port),
});
const handle = ssl.SSL_new_listener(ctx, 0) orelse return error.Tls;
errdefer ssl.SSL_free(handle);
if (ssl.SSL_set_fd(handle, fd) != 1 or ssl.SSL_set_blocking_mode(handle, 0) != 1 or
ssl.SSL_listen(handle) != 1) return error.Tls;
return .{ .fd = fd, .handle = handle, .address = actual };
}
pub fn accept(l: *Listener) Error!?Connection {
ssl.ERR_clear_error();
const handle = ssl.SSL_accept_connection(l.handle, ssl.SSL_ACCEPT_CONNECTION_NO_BLOCK) orelse {
if (ssl.ERR_peek_error() != 0) return error.Tls;
return null;
};
errdefer ssl.SSL_free(handle);
if (ssl.SSL_set_default_stream_mode(handle, ssl.SSL_DEFAULT_STREAM_MODE_NONE) != 1 or
ssl.SSL_set_blocking_mode(handle, 0) != 1) return error.Tls;
return .{ .handle = handle };
}
pub fn events(l: *Listener) Error!void {
ssl.ERR_clear_error();
if (ssl.SSL_handle_events(l.handle) != 1) return error.Tls;
}
pub fn poll(l: *const Listener) libc.pollfd {
return pollFd(l.handle, l.fd);
}
pub fn nextDue(l: *const Listener) ?i32 {
return due(l.handle);
}
// Accepted connections must be released before the shared UDP socket.
pub fn deinit(l: *Listener) void {
ssl.SSL_free(l.handle);
_ = libc.close(l.fd);
l.* = undefined;
}
};
pub const Connection = struct {
handle: *ssl.SSL,
stream: ?*ssl.SSL = null,
fd: c_int = -1,
pending_write_len: usize = 0,
pub fn dial(address: std.Io.net.IpAddress) Error!Connection {
ssl.ERR_clear_error();
const ctx = ssl.SSL_CTX_new(ssl.OSSL_QUIC_client_method()) orelse return error.Tls;
defer ssl.SSL_CTX_free(ctx);
ssl.SSL_CTX_set_verify(ctx, ssl.SSL_VERIFY_NONE, null);
const fd = try udp(if (address == .ip4) libc.AF.INET else libc.AF.INET6);
errdefer _ = libc.close(fd);
const handle = ssl.SSL_new(ctx) orelse return error.Tls;
errdefer ssl.SSL_free(handle);
if (ssl.SSL_set_fd(handle, fd) != 1 or ssl.SSL_set_blocking_mode(handle, 0) != 1 or
ssl.SSL_set_default_stream_mode(handle, ssl.SSL_DEFAULT_STREAM_MODE_NONE) != 1) return error.Tls;
const protocols = [_]u8{alpn.len} ++ alpn.*;
if (ssl.SSL_set_alpn_protos(handle, &protocols, protocols.len) != 0) return error.Tls;
const peer = ssl.BIO_ADDR_new() orelse return error.Tls;
defer ssl.BIO_ADDR_free(peer);
const made = switch (address) {
.ip4 => |ip| ssl.BIO_ADDR_rawmake(peer, libc.AF.INET, &ip.bytes, ip.bytes.len, std.mem.nativeToBig(u16, ip.port)),
.ip6 => |ip| ssl.BIO_ADDR_rawmake(peer, libc.AF.INET6, &ip.bytes, ip.bytes.len, std.mem.nativeToBig(u16, ip.port)),
};
if (made != 1 or ssl.SSL_set1_initial_peer_addr(handle, peer) != 1) return error.Tls;
return .{ .handle = handle, .fd = fd };
}
pub fn handshake(c: *Connection) Error!bool {
ssl.ERR_clear_error();
var close_info: ssl.SSL_CONN_CLOSE_INFO = undefined;
if (ssl.SSL_get_conn_close_info(c.handle, &close_info, @sizeOf(@TypeOf(close_info))) == 1)
return error.Closed;
if (ssl.SSL_is_init_finished(c.handle) == 1) return true;
const rc = if (c.fd >= 0) ssl.SSL_connect(c.handle) else ssl.SSL_accept(c.handle);
if (rc == 1) return true;
try retry(c.handle, rc);
return false;
}
fn ready(c: *Connection) Error!bool {
if (!try c.handshake()) return false;
if (c.stream != null) return true;
ssl.ERR_clear_error();
const stream = if (c.fd >= 0)
ssl.SSL_new_stream(c.handle, ssl.SSL_STREAM_FLAG_NO_BLOCK)
else
ssl.SSL_accept_stream(c.handle, ssl.SSL_ACCEPT_STREAM_NO_BLOCK);
if (stream == null) {
if (ssl.ERR_peek_error() != 0) return error.Tls;
return false;
}
errdefer ssl.SSL_free(stream);
if (ssl.SSL_set_blocking_mode(stream, 0) != 1 or
ssl.SSL_get_stream_id(stream) != 0 or
ssl.SSL_set_incoming_stream_policy(c.handle, ssl.SSL_INCOMING_STREAM_POLICY_REJECT, 0) != 1)
return error.Tls;
_ = ssl.SSL_set_mode(stream, ssl.SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
c.stream = stream;
return true;
}
pub fn read(c: *Connection, bytes: []u8) Error!?usize {
if (!try c.ready()) return null;
ssl.ERR_clear_error();
var len: usize = 0;
const rc = ssl.SSL_read_ex(c.stream, bytes.ptr, bytes.len, &len);
if (rc == 1) return len;
if (ssl.SSL_get_error(c.stream, rc) == ssl.SSL_ERROR_ZERO_RETURN) return 0;
try retry(c.stream.?, rc);
return null;
}
pub fn pending(c: *const Connection) bool {
var close_info: ssl.SSL_CONN_CLOSE_INFO = undefined;
if (ssl.SSL_get_conn_close_info(c.handle, &close_info, @sizeOf(@TypeOf(close_info))) == 1) return true;
if (c.stream) |stream| {
var item: ssl.SSL_POLL_ITEM = .{ .desc = ssl.SSL_as_poll_descriptor(stream), .events = ssl.SSL_POLL_EVENT_RE, .revents = 0 };
const timeout: ssl.struct_timeval = .{ .tv_sec = 0, .tv_usec = 0 };
if (ssl.SSL_poll(&item, 1, @sizeOf(@TypeOf(item)), &timeout, ssl.SSL_POLL_FLAG_NO_HANDLE_EVENTS, null) != 1) return true;
return item.revents != 0;
}
return ssl.SSL_get_accept_stream_queue_len(c.handle) != 0;
}
pub fn write(c: *Connection, bytes: []const u8) Error!usize {
if (!try c.ready()) return 0;
if (bytes.len < c.pending_write_len) return error.InvalidWrite;
const requested = if (c.pending_write_len != 0) c.pending_write_len else bytes.len;
if (requested == 0) return 0;
ssl.ERR_clear_error();
var len: usize = 0;
const rc = ssl.SSL_write_ex(c.stream, bytes.ptr, requested, &len);
if (rc == 1) {
c.pending_write_len = 0;
return len;
}
try retry(c.stream.?, rc);
c.pending_write_len = requested;
return 0;
}
pub fn conclude(c: *Connection) Error!void {
if (c.pending_write_len != 0) return error.InvalidWrite;
if (!try c.ready()) return error.Closed;
ssl.ERR_clear_error();
if (ssl.SSL_stream_conclude(c.stream, 0) != 1) return error.Tls;
}
pub fn events(c: *Connection) Error!void {
if (c.fd < 0) return;
ssl.ERR_clear_error();
if (ssl.SSL_handle_events(c.handle) != 1) return error.Tls;
}
pub fn poll(c: *const Connection) ?libc.pollfd {
return if (c.fd >= 0) pollFd(c.handle, c.fd) else null;
}
pub fn nextDue(c: *const Connection) ?i32 {
return if (c.fd >= 0) due(c.handle) else null;
}
pub fn deinit(c: *Connection) void {
ssl.ERR_clear_error();
_ = ssl.SSL_shutdown_ex(c.handle, ssl.SSL_SHUTDOWN_FLAG_RAPID | ssl.SSL_SHUTDOWN_FLAG_NO_STREAM_FLUSH | ssl.SSL_SHUTDOWN_FLAG_NO_BLOCK, null, 0);
ssl.SSL_free(c.stream);
ssl.SSL_free(c.handle);
if (c.fd >= 0) _ = libc.close(c.fd);
c.* = undefined;
}
};
fn udp(family: u16) Error!c_int {
const fd = libc.socket(family, libc.SOCK.DGRAM, 0);
if (fd < 0) return error.Socket;
errdefer _ = libc.close(fd);
const flags = libc.fcntl(fd, libc.F.GETFL, @as(c_int, 0));
if (flags < 0) return error.SocketFlags;
var options: libc.O = @bitCast(@as(u32, @bitCast(flags)));
options.NONBLOCK = true;
if (libc.fcntl(fd, libc.F.SETFL, @as(c_int, @bitCast(@as(u32, @bitCast(options))))) != 0 or
libc.fcntl(fd, libc.F.SETFD, @as(c_int, libc.FD_CLOEXEC)) != 0) return error.SocketFlags;
if (family == libc.AF.INET6) {
const enabled: c_int = 1;
const v6only = if (@import("builtin").os.tag.isDarwin()) 27 else libc.IPV6.V6ONLY;
if (libc.setsockopt(fd, libc.IPPROTO.IPV6, v6only, &enabled, @sizeOf(c_int)) != 0) return error.SocketOption;
}
return fd;
}
fn sockaddr(address: std.Io.net.IpAddress, out: *libc.sockaddr.storage) libc.socklen_t {
switch (address) {
.ip4 => |ip| {
const addr: *libc.sockaddr.in = @ptrCast(out);
addr.* = .{ .port = std.mem.nativeToBig(u16, ip.port), .addr = @bitCast(ip.bytes) };
return @sizeOf(libc.sockaddr.in);
},
.ip6 => |ip| {
const addr: *libc.sockaddr.in6 = @ptrCast(out);
addr.* = .{ .port = std.mem.nativeToBig(u16, ip.port), .addr = ip.bytes, .flowinfo = 0, .scope_id = 0 };
return @sizeOf(libc.sockaddr.in6);
},
}
}
fn pollFd(handle: *ssl.SSL, fd: c_int) libc.pollfd {
var result: libc.pollfd = .{ .fd = fd, .events = 0, .revents = 0 };
if (ssl.SSL_net_read_desired(handle) == 1) result.events |= libc.POLL.IN;
if (ssl.SSL_net_write_desired(handle) == 1) result.events |= libc.POLL.OUT;
return result;
}
fn due(handle: *ssl.SSL) ?i32 {
var tv: ssl.struct_timeval = undefined;
var infinite: c_int = undefined;
if (ssl.SSL_get_event_timeout(handle, &tv, &infinite) != 1) return 0;
if (infinite != 0) return null;
const ms = @as(i128, tv.tv_sec) * 1000 + @divFloor(@as(i128, tv.tv_usec) + 999, 1000);
return @intCast(std.math.clamp(ms, 0, std.math.maxInt(i32)));
}
fn retry(handle: *ssl.SSL, rc: c_int) Error!void {
switch (ssl.SSL_get_error(handle, rc)) {
ssl.SSL_ERROR_WANT_READ, ssl.SSL_ERROR_WANT_WRITE => {},
ssl.SSL_ERROR_ZERO_RETURN => return error.Closed,
else => return error.Tls,
}
}
fn selectAlpn(_: ?*ssl.SSL, out: [*c][*c]const u8, outlen: [*c]u8, input: [*c]const u8, len: c_uint, _: ?*anyopaque) callconv(.c) c_int {
var offset: usize = 0;
while (offset < len) {
const size = input[offset];
offset += 1;
if (size > len - offset) return ssl.SSL_TLSEXT_ERR_ALERT_FATAL;
if (std.mem.eql(u8, input[offset..][0..size], alpn)) {
out.* = input + offset;
outlen.* = size;
return ssl.SSL_TLSEXT_ERR_OK;
}
offset += size;
}
return ssl.SSL_TLSEXT_ERR_ALERT_FATAL;
}
const TestPair = struct {
listener: *Listener,
client: Connection,
server: ?Connection = null,
fn init(listener: *Listener) !TestPair {
var p: TestPair = .{ .listener = listener, .client = try .dial(listener.address) };
errdefer p.deinit();
const deadline = testNow() + 3000;
while (true) {
try listener.events();
try p.client.events();
if (p.server == null) p.server = try listener.accept();
const connected = try p.client.handshake();
if (p.server) |*server| if (connected and try server.handshake()) return p;
try p.wait(deadline);
}
}
fn wait(p: *TestPair, deadline: i64) !void {
const remaining = deadline - testNow();
if (remaining <= 0) return error.Deadline;
var timeout: i32 = @intCast(@min(remaining, std.math.maxInt(i32)));
if (p.listener.nextDue()) |ms| timeout = @min(timeout, ms);
if (p.client.nextDue()) |ms| timeout = @min(timeout, ms);
var fds = [_]libc.pollfd{ p.listener.poll(), p.client.poll().? };
const rc = libc.poll(&fds, fds.len, timeout);
if (rc < 0 and libc.errno(rc) != .INTR) return error.Poll;
if (testNow() >= deadline) return error.Deadline;
try p.listener.events();
try p.client.events();
}
fn transfer(p: *TestPair, from_client: bool, bytes: []const u8, fragment: usize) !void {
const writer = if (from_client) &p.client else &p.server.?;
const reader = if (from_client) &p.server.? else &p.client;
var sent: usize = 0;
var received: usize = 0;
var buffer: [8192]u8 = undefined;
const deadline = testNow() + 3000;
while (received < bytes.len) {
const written = if (sent != bytes.len) try writer.write(bytes[sent..][0..@min(fragment, bytes.len - sent)]) else 0;
sent += written;
const count = try reader.read(buffer[0..@min(fragment, buffer.len)]);
if (count) |n| {
try std.testing.expect(n > 0 and n <= bytes.len - received);
try std.testing.expectEqualSlices(u8, bytes[received..][0..n], buffer[0..n]);
received += n;
}
if (testNow() >= deadline) return error.Deadline;
if (received != bytes.len and written == 0 and count == null) {
try p.wait(deadline);
} else {
try p.listener.events();
try p.client.events();
}
}
try std.testing.expectEqual(bytes.len, sent);
}
fn finish(p: *TestPair) !void {
try p.client.conclude();
try p.server.?.conclude();
var buffer: [16]u8 = undefined;
var a = false;
var b = false;
const deadline = testNow() + 3000;
while (!a or !b) {
if (!a) if (try p.client.read(&buffer)) |n| {
try std.testing.expectEqual(@as(usize, 0), n);
a = true;
};
if (!b) if (try p.server.?.read(&buffer)) |n| {
try std.testing.expectEqual(@as(usize, 0), n);
b = true;
};
if (!a or !b) try p.wait(deadline);
}
}
fn deinit(p: *TestPair) void {
if (p.server) |*server| server.deinit();
p.client.deinit();
}
};
fn testNow() i64 {
var ts: libc.timespec = undefined;
std.debug.assert(libc.clock_gettime(.MONOTONIC, &ts) == 0);
return @as(i64, @intCast(ts.sec)) * 1000 + @divFloor(@as(i64, @intCast(ts.nsec)), 1_000_000);
}
test "QUIC fragmented 9P frames reconnect and stream EOF over IPv4 and IPv6" {
const request = "\x13\x00\x00\x00\x64\xff\xff\x00\x20\x00\x00\x06\x00" ++ "9P2000";
const response = "\x13\x00\x00\x00\x65\xff\xff\x00\x20\x00\x00\x06\x00" ++ "9P2000";
const read_request = "\x17\x00\x00\x00\x74\x01\x00\x02\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x0b\x00\x00\x00";
const read_response = "\x16\x00\x00\x00\x75\x01\x00\x0b\x00\x00\x00" ++ "hello ninep";
for ([_][]const u8{ "127.0.0.1", "::1" }) |host| {
var listener = try Listener.init(try .parse(host, 0));
defer listener.deinit();
try std.testing.expect(listener.address.getPort() != 0);
if (listener.address == .ip6) {
var enabled: c_int = 0;
var len: libc.socklen_t = @sizeOf(c_int);
const v6only = if (@import("builtin").os.tag.isDarwin()) 27 else libc.IPV6.V6ONLY;
try std.testing.expectEqual(@as(c_int, 0), libc.getsockopt(listener.fd, libc.IPPROTO.IPV6, v6only, @ptrCast(&enabled), &len));
try std.testing.expectEqual(@as(c_int, 1), enabled);
}
for (0..3) |_| {
var pair = try TestPair.init(&listener);
defer pair.deinit();
try std.testing.expect(pair.server.?.poll() == null);
try std.testing.expect(pair.server.?.nextDue() == null);
for ([_]usize{ 1, 2, 7, 64 }) |fragment| {
try pair.transfer(true, request, fragment);
try pair.transfer(false, response, fragment);
try pair.transfer(true, read_request, fragment);
try pair.transfer(false, read_response, fragment);
}
try pair.finish();
}
}
}
test "QUIC backpressure retries a moved prefix while new replies are appended" {
var listener = try Listener.init(try .parse("127.0.0.1", 0));
defer listener.deinit();
var pair = try TestPair.init(&listener);
defer pair.deinit();
try pair.transfer(true, "hello", 1);
const bytes: [8192]u8 = @splat(0x5a);
var total: usize = 0;
const deadline = testNow() + 3000;
while (total < 64 * 1024 * 1024) {
const written = try pair.client.write(&bytes);
total += written;
if (written == 0) break;
try pair.listener.events();
try pair.client.events();
if (testNow() >= deadline) return error.Deadline;
}
try std.testing.expect(total > 0 and total < 64 * 1024 * 1024);
try std.testing.expectEqual(bytes.len, pair.client.pending_write_len);
try std.testing.expectError(error.InvalidWrite, pair.client.write(bytes[0..1]));
var buffer: [8192]u8 = undefined;
var received: usize = 0;
// A pending SSL write may already have delivered a prefix before it
// reports completion. Leave that prefix for the retry check below.
while (received < total) {
if (try pair.server.?.read(buffer[0..@min(buffer.len, total - received)])) |n| {
try std.testing.expect(n > 0);
try std.testing.expect(std.mem.allEqual(u8, buffer[0..n], 0x5a));
received += n;
} else try pair.wait(deadline);
}
try std.testing.expectEqual(total, received);
var moved: [8192 + 7]u8 = undefined;
@memcpy(moved[0..bytes.len], &bytes);
@memset(moved[bytes.len..], 0x6b);
while (true) {
const n = try pair.client.write(&moved);
if (n != 0) {
try std.testing.expectEqual(bytes.len, n);
break;
}
try pair.wait(deadline);
}
received = 0;
while (received < bytes.len) {
if (try pair.server.?.read(&buffer)) |n| {
try std.testing.expect(n > 0);
try std.testing.expect(std.mem.allEqual(u8, buffer[0..n], 0x5a));
received += n;
} else try pair.wait(deadline);
}
try std.testing.expectEqual(bytes.len, received);
try pair.transfer(true, moved[bytes.len..], 7);
try pair.finish();
}
test "QUIC owner can enforce handshake and read deadlines without busy polling" {
var listener = try Listener.init(try .parse("127.0.0.1", 0));
defer listener.deinit();
var client = try Connection.dial(listener.address);
defer client.deinit();
const handshake_deadline = testNow() + 100;
var turns: usize = 0;
while (testNow() < handshake_deadline) {
try std.testing.expect(!try client.handshake());
try client.events();
var timeout: i32 = @intCast(@max(0, handshake_deadline - testNow()));
if (client.nextDue()) |ms| timeout = @min(timeout, ms);
var fds = [_]libc.pollfd{client.poll().?};
const rc = libc.poll(&fds, fds.len, timeout);
if (rc < 0 and libc.errno(rc) != .INTR) return error.Poll;
turns += 1;
}
try std.testing.expect(turns < 100);
var serving = try Listener.init(try .parse("127.0.0.1", 0));
defer serving.deinit();
var pair = try TestPair.init(&serving);
defer pair.deinit();
try pair.transfer(true, "request", 2);
var buffer: [32]u8 = undefined;
const read_deadline = testNow() + 100;
turns = 0;
while (true) {
try std.testing.expect(try pair.client.read(&buffer) == null);
pair.wait(read_deadline) catch |err| {
try std.testing.expectEqual(error.Deadline, err);
break;
};
turns += 1;
}
try std.testing.expect(turns < 100);
}
test "QUIC bind failure leaves the existing listener usable" {
var listener = try Listener.init(try .parse("127.0.0.1", 0));
defer listener.deinit();
for (0..8) |_| try std.testing.expectError(error.Bind, Listener.init(listener.address));
var pair = try TestPair.init(&listener);
defer pair.deinit();
try pair.transfer(true, "still listening", 3);
try pair.transfer(false, "still serving", 2);
try pair.finish();
}
test "QUIC pending reports buffered bytes and EOF without UDP readiness" {
var listener = try Listener.init(try .parse("127.0.0.1", 0));
defer listener.deinit();
var pair = try TestPair.init(&listener);
defer pair.deinit();
try std.testing.expect(!pair.server.?.pending());
try std.testing.expectEqual(@as(usize, 3), try pair.client.write("abc"));
const deadline = testNow() + 3000;
while (!pair.server.?.pending()) try pair.wait(deadline);
var buffer: [3]u8 = undefined;
try std.testing.expectEqual(@as(?usize, 1), try pair.server.?.read(buffer[0..1]));
try std.testing.expectEqual(@as(u8, 'a'), buffer[0]);
try listener.events();
try pair.client.events();
try std.testing.expect(pair.server.?.pending());
try std.testing.expectEqual(@as(?usize, 2), try pair.server.?.read(buffer[1..]));
try std.testing.expectEqualStrings("abc", &buffer);
try std.testing.expect(!pair.server.?.pending());
try pair.client.conclude();
while (!pair.server.?.pending()) try pair.wait(deadline);
try std.testing.expectEqual(@as(?usize, 0), try pair.server.?.read(&buffer));
}
test "QUIC moved listener retains its in-memory identity" {
var original = try Listener.init(try .parse("127.0.0.1", 0));
var listener = original;
original = undefined;
defer listener.deinit();
var pair = try TestPair.init(&listener);
defer pair.deinit();
try pair.transfer(true, "moved listener", 2);
try pair.transfer(false, "same identity", 3);
try pair.finish();
}
|