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Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001/*
2 * QUIC transport layer over SOCK_DGRAM sockets.
3 *
4 * Copyright 2020 HAProxy Technologies, Frédéric Lécaille <flecaille@haproxy.com>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12
13#define _GNU_SOURCE
14#include <errno.h>
15#include <fcntl.h>
16#include <stdio.h>
17#include <stdlib.h>
18
19#include <sys/socket.h>
20#include <sys/stat.h>
21#include <sys/types.h>
22
23#include <netinet/tcp.h>
24
Amaury Denoyelleeb01f592021-10-07 16:44:05 +020025#include <import/ebmbtree.h>
26
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010027#include <haproxy/buf-t.h>
28#include <haproxy/compat.h>
29#include <haproxy/api.h>
30#include <haproxy/debug.h>
31#include <haproxy/tools.h>
32#include <haproxy/ticks.h>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010033
34#include <haproxy/connection.h>
35#include <haproxy/fd.h>
36#include <haproxy/freq_ctr.h>
37#include <haproxy/global.h>
Frédéric Lécailledfbae762021-02-18 09:59:01 +010038#include <haproxy/h3.h>
Amaury Denoyelle154bc7f2021-11-12 16:09:54 +010039#include <haproxy/hq_interop.h>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010040#include <haproxy/log.h>
Frédéric Lécailledfbae762021-02-18 09:59:01 +010041#include <haproxy/mux_quic.h>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010042#include <haproxy/pipe.h>
43#include <haproxy/proxy.h>
44#include <haproxy/quic_cc.h>
45#include <haproxy/quic_frame.h>
46#include <haproxy/quic_loss.h>
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +020047#include <haproxy/cbuf.h>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010048#include <haproxy/quic_tls.h>
Amaury Denoyelle118b2cb2021-11-25 16:05:16 +010049#include <haproxy/sink.h>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010050#include <haproxy/ssl_sock.h>
51#include <haproxy/stream_interface.h>
52#include <haproxy/task.h>
53#include <haproxy/trace.h>
54#include <haproxy/xprt_quic.h>
55
Amaury Denoyellea22d8602021-11-10 15:17:56 +010056/* list of supported QUIC versions by this implementation */
57static int quic_supported_version[] = {
58 0x00000001,
Frédéric Lécaille56d3e1b2021-11-19 14:32:52 +010059 0xff00001d, /* draft-29 */
Amaury Denoyellea22d8602021-11-10 15:17:56 +010060
61 /* placeholder, do not add entry after this */
62 0x0
63};
64
Frédéric Lécaille48fc74a2021-09-03 16:42:19 +020065/* This is the values of some QUIC transport parameters when absent.
66 * Should be used to initialize any transport parameters (local or remote)
67 * before updating them with customized values.
68 */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010069struct quic_transport_params quic_dflt_transport_params = {
Frédéric Lécaille46be7e92021-10-22 15:04:27 +020070 .max_udp_payload_size = QUIC_PACKET_MAXLEN,
Frédéric Lécaille785c9c92021-05-17 16:42:21 +020071 .ack_delay_exponent = QUIC_DFLT_ACK_DELAY_COMPONENT,
72 .max_ack_delay = QUIC_DFLT_MAX_ACK_DELAY,
Frédéric Lécaille48fc74a2021-09-03 16:42:19 +020073 .active_connection_id_limit = QUIC_ACTIVE_CONNECTION_ID_LIMIT,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010074};
75
76/* trace source and events */
77static void quic_trace(enum trace_level level, uint64_t mask, \
78 const struct trace_source *src,
79 const struct ist where, const struct ist func,
80 const void *a1, const void *a2, const void *a3, const void *a4);
81
82static const struct trace_event quic_trace_events[] = {
83 { .mask = QUIC_EV_CONN_NEW, .name = "new_conn", .desc = "new QUIC connection" },
84 { .mask = QUIC_EV_CONN_INIT, .name = "new_conn_init", .desc = "new QUIC connection initialization" },
85 { .mask = QUIC_EV_CONN_ISEC, .name = "init_secs", .desc = "initial secrets derivation" },
86 { .mask = QUIC_EV_CONN_RSEC, .name = "read_secs", .desc = "read secrets derivation" },
87 { .mask = QUIC_EV_CONN_WSEC, .name = "write_secs", .desc = "write secrets derivation" },
88 { .mask = QUIC_EV_CONN_LPKT, .name = "lstnr_packet", .desc = "new listener received packet" },
89 { .mask = QUIC_EV_CONN_SPKT, .name = "srv_packet", .desc = "new server received packet" },
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +050090 { .mask = QUIC_EV_CONN_ENCPKT, .name = "enc_hdshk_pkt", .desc = "handhshake packet encryption" },
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +010091 { .mask = QUIC_EV_CONN_HPKT, .name = "hdshk_pkt", .desc = "handhshake packet building" },
92 { .mask = QUIC_EV_CONN_PAPKT, .name = "phdshk_apkt", .desc = "post handhshake application packet preparation" },
93 { .mask = QUIC_EV_CONN_PAPKTS, .name = "phdshk_apkts", .desc = "post handhshake application packets preparation" },
94 { .mask = QUIC_EV_CONN_HDSHK, .name = "hdshk", .desc = "SSL handhshake processing" },
95 { .mask = QUIC_EV_CONN_RMHP, .name = "rm_hp", .desc = "Remove header protection" },
96 { .mask = QUIC_EV_CONN_PRSHPKT, .name = "parse_hpkt", .desc = "parse handshake packet" },
97 { .mask = QUIC_EV_CONN_PRSAPKT, .name = "parse_apkt", .desc = "parse application packet" },
98 { .mask = QUIC_EV_CONN_PRSFRM, .name = "parse_frm", .desc = "parse frame" },
99 { .mask = QUIC_EV_CONN_PRSAFRM, .name = "parse_ack_frm", .desc = "parse ACK frame" },
100 { .mask = QUIC_EV_CONN_BFRM, .name = "build_frm", .desc = "build frame" },
101 { .mask = QUIC_EV_CONN_PHPKTS, .name = "phdshk_pkts", .desc = "handhshake packets preparation" },
102 { .mask = QUIC_EV_CONN_TRMHP, .name = "rm_hp_try", .desc = "header protection removing try" },
103 { .mask = QUIC_EV_CONN_ELRMHP, .name = "el_rm_hp", .desc = "handshake enc. level header protection removing" },
104 { .mask = QUIC_EV_CONN_ELRXPKTS, .name = "el_treat_rx_pkts", .desc = "handshake enc. level rx packets treatment" },
105 { .mask = QUIC_EV_CONN_SSLDATA, .name = "ssl_provide_data", .desc = "CRYPTO data provision to TLS stack" },
106 { .mask = QUIC_EV_CONN_RXCDATA, .name = "el_treat_rx_cfrms",.desc = "enc. level RX CRYPTO frames processing"},
107 { .mask = QUIC_EV_CONN_ADDDATA, .name = "add_hdshk_data", .desc = "TLS stack ->add_handshake_data() call"},
108 { .mask = QUIC_EV_CONN_FFLIGHT, .name = "flush_flight", .desc = "TLS stack ->flush_flight() call"},
109 { .mask = QUIC_EV_CONN_SSLALERT, .name = "send_alert", .desc = "TLS stack ->send_alert() call"},
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100110 { .mask = QUIC_EV_CONN_RTTUPDT, .name = "rtt_updt", .desc = "RTT sampling" },
111 { .mask = QUIC_EV_CONN_SPPKTS, .name = "sppkts", .desc = "send prepared packets" },
112 { .mask = QUIC_EV_CONN_PKTLOSS, .name = "pktloss", .desc = "detect packet loss" },
113 { .mask = QUIC_EV_CONN_STIMER, .name = "stimer", .desc = "set timer" },
114 { .mask = QUIC_EV_CONN_PTIMER, .name = "ptimer", .desc = "process timer" },
115 { .mask = QUIC_EV_CONN_SPTO, .name = "spto", .desc = "set PTO" },
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +0100116 { .mask = QUIC_EV_CONN_BCFRMS, .name = "bcfrms", .desc = "build CRYPTO data frames" },
Frédéric Lécaille513b4f22021-09-20 15:23:17 +0200117 { .mask = QUIC_EV_CONN_XPRTSEND, .name = "xprt_send", .desc = "sending XRPT subscription" },
118 { .mask = QUIC_EV_CONN_XPRTRECV, .name = "xprt_recv", .desc = "receiving XRPT subscription" },
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100119 { /* end */ }
120};
121
122static const struct name_desc quic_trace_lockon_args[4] = {
123 /* arg1 */ { /* already used by the connection */ },
124 /* arg2 */ { .name="quic", .desc="QUIC transport" },
125 /* arg3 */ { },
126 /* arg4 */ { }
127};
128
129static const struct name_desc quic_trace_decoding[] = {
130#define QUIC_VERB_CLEAN 1
131 { .name="clean", .desc="only user-friendly stuff, generally suitable for level \"user\"" },
132 { /* end */ }
133};
134
135
136struct trace_source trace_quic = {
137 .name = IST("quic"),
138 .desc = "QUIC xprt",
139 .arg_def = TRC_ARG1_CONN, /* TRACE()'s first argument is always a connection */
140 .default_cb = quic_trace,
141 .known_events = quic_trace_events,
142 .lockon_args = quic_trace_lockon_args,
143 .decoding = quic_trace_decoding,
144 .report_events = ~0, /* report everything by default */
145};
146
147#define TRACE_SOURCE &trace_quic
148INITCALL1(STG_REGISTER, trace_register_source, TRACE_SOURCE);
149
150static BIO_METHOD *ha_quic_meth;
151
Frédéric Lécailledbe25af2021-08-04 15:27:37 +0200152DECLARE_POOL(pool_head_quic_tx_ring, "quic_tx_ring_pool", QUIC_TX_RING_BUFSZ);
Frédéric Lécaillec1029f62021-10-20 11:09:58 +0200153DECLARE_POOL(pool_head_quic_rxbuf, "quic_rxbuf_pool", QUIC_RX_BUFSZ);
Frédéric Lécaille324ecda2021-11-02 10:14:44 +0100154DECLARE_POOL(pool_head_quic_conn_rxbuf, "quic_conn_rxbuf", QUIC_CONN_RX_BUFSZ);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100155DECLARE_STATIC_POOL(pool_head_quic_conn_ctx,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +0200156 "quic_conn_ctx_pool", sizeof(struct ssl_sock_ctx));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100157DECLARE_STATIC_POOL(pool_head_quic_conn, "quic_conn", sizeof(struct quic_conn));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100158DECLARE_POOL(pool_head_quic_connection_id,
159 "quic_connnection_id_pool", sizeof(struct quic_connection_id));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100160DECLARE_POOL(pool_head_quic_rx_packet, "quic_rx_packet_pool", sizeof(struct quic_rx_packet));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100161DECLARE_POOL(pool_head_quic_tx_packet, "quic_tx_packet_pool", sizeof(struct quic_tx_packet));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100162DECLARE_STATIC_POOL(pool_head_quic_rx_crypto_frm, "quic_rx_crypto_frm_pool", sizeof(struct quic_rx_crypto_frm));
Frédéric Lécailledfbae762021-02-18 09:59:01 +0100163DECLARE_POOL(pool_head_quic_rx_strm_frm, "quic_rx_strm_frm", sizeof(struct quic_rx_strm_frm));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100164DECLARE_STATIC_POOL(pool_head_quic_crypto_buf, "quic_crypto_buf_pool", sizeof(struct quic_crypto_buf));
Frédéric Lécaille0ad04582021-07-27 14:51:54 +0200165DECLARE_POOL(pool_head_quic_frame, "quic_frame_pool", sizeof(struct quic_frame));
Frédéric Lécaille8090b512020-11-30 16:19:22 +0100166DECLARE_STATIC_POOL(pool_head_quic_arng, "quic_arng_pool", sizeof(struct quic_arng_node));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100167
Frédéric Lécaille9445abc2021-08-04 10:49:51 +0200168static struct quic_tx_packet *qc_build_pkt(unsigned char **pos, const unsigned char *buf_end,
Frédéric Lécaille4436cb62021-08-16 12:06:46 +0200169 struct quic_enc_level *qel,
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +0100170 struct quic_conn *qc, size_t dglen, int pkt_type,
Frédéric Lécaille66cbb822021-11-17 11:56:21 +0100171 int padding, int ack, int nb_pto_dgrams, int cc, int *err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100172
173/* Add traces to <buf> depending on <frm> TX frame type. */
174static inline void chunk_tx_frm_appendf(struct buffer *buf,
Frédéric Lécaille0ad04582021-07-27 14:51:54 +0200175 const struct quic_frame *frm)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100176{
177 switch (frm->type) {
178 case QUIC_FT_CRYPTO:
179 chunk_appendf(buf, " cfoff=%llu cflen=%llu",
180 (unsigned long long)frm->crypto.offset,
181 (unsigned long long)frm->crypto.len);
182 break;
183 default:
184 chunk_appendf(buf, " %s", quic_frame_type_string(frm->type));
185 }
186}
187
Frédéric Lécaillef63921f2020-12-18 09:48:20 +0100188/* Only for debug purpose */
189struct enc_debug_info {
190 unsigned char *payload;
191 size_t payload_len;
192 unsigned char *aad;
193 size_t aad_len;
194 uint64_t pn;
195};
196
197/* Initializes a enc_debug_info struct (only for debug purpose) */
198static inline void enc_debug_info_init(struct enc_debug_info *edi,
199 unsigned char *payload, size_t payload_len,
200 unsigned char *aad, size_t aad_len, uint64_t pn)
201{
202 edi->payload = payload;
203 edi->payload_len = payload_len;
204 edi->aad = aad;
205 edi->aad_len = aad_len;
206 edi->pn = pn;
207}
208
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100209/* Trace callback for QUIC.
210 * These traces always expect that arg1, if non-null, is of type connection.
211 */
212static void quic_trace(enum trace_level level, uint64_t mask, const struct trace_source *src,
213 const struct ist where, const struct ist func,
214 const void *a1, const void *a2, const void *a3, const void *a4)
215{
216 const struct connection *conn = a1;
217
218 if (conn) {
219 struct quic_tls_secrets *secs;
220 struct quic_conn *qc;
221
222 qc = conn->qc;
223 chunk_appendf(&trace_buf, " : conn@%p", conn);
224 if ((mask & QUIC_EV_CONN_INIT) && qc) {
225 chunk_appendf(&trace_buf, "\n odcid");
226 quic_cid_dump(&trace_buf, &qc->odcid);
Frédéric Lécaillec5e72b92020-12-02 16:11:40 +0100227 chunk_appendf(&trace_buf, "\n dcid");
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100228 quic_cid_dump(&trace_buf, &qc->dcid);
Frédéric Lécaillec5e72b92020-12-02 16:11:40 +0100229 chunk_appendf(&trace_buf, "\n scid");
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100230 quic_cid_dump(&trace_buf, &qc->scid);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100231 }
232
233 if (mask & QUIC_EV_CONN_ADDDATA) {
234 const enum ssl_encryption_level_t *level = a2;
235 const size_t *len = a3;
236
237 if (level) {
238 enum quic_tls_enc_level lvl = ssl_to_quic_enc_level(*level);
239
240 chunk_appendf(&trace_buf, " el=%c(%d)", quic_enc_level_char(lvl), lvl);
241 }
242 if (len)
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100243 chunk_appendf(&trace_buf, " len=%llu", (unsigned long long)*len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100244 }
245 if ((mask & QUIC_EV_CONN_ISEC) && qc) {
246 /* Initial read & write secrets. */
247 enum quic_tls_enc_level level = QUIC_TLS_ENC_LEVEL_INITIAL;
248 const unsigned char *rx_sec = a2;
249 const unsigned char *tx_sec = a3;
250
251 secs = &qc->els[level].tls_ctx.rx;
252 if (secs->flags & QUIC_FL_TLS_SECRETS_SET) {
253 chunk_appendf(&trace_buf, "\n RX el=%c", quic_enc_level_char(level));
254 if (rx_sec)
255 quic_tls_secret_hexdump(&trace_buf, rx_sec, 32);
256 quic_tls_keys_hexdump(&trace_buf, secs);
257 }
258 secs = &qc->els[level].tls_ctx.tx;
259 if (secs->flags & QUIC_FL_TLS_SECRETS_SET) {
260 chunk_appendf(&trace_buf, "\n TX el=%c", quic_enc_level_char(level));
261 if (tx_sec)
262 quic_tls_secret_hexdump(&trace_buf, tx_sec, 32);
263 quic_tls_keys_hexdump(&trace_buf, secs);
264 }
265 }
266 if (mask & (QUIC_EV_CONN_RSEC|QUIC_EV_CONN_RWSEC)) {
267 const enum ssl_encryption_level_t *level = a2;
268 const unsigned char *secret = a3;
269 const size_t *secret_len = a4;
270
271 if (level) {
272 enum quic_tls_enc_level lvl = ssl_to_quic_enc_level(*level);
273
274 chunk_appendf(&trace_buf, "\n RX el=%c", quic_enc_level_char(lvl));
275 if (secret && secret_len)
276 quic_tls_secret_hexdump(&trace_buf, secret, *secret_len);
277 secs = &qc->els[lvl].tls_ctx.rx;
278 if (secs->flags & QUIC_FL_TLS_SECRETS_SET)
279 quic_tls_keys_hexdump(&trace_buf, secs);
280 }
281 }
282
283 if (mask & (QUIC_EV_CONN_WSEC|QUIC_EV_CONN_RWSEC)) {
284 const enum ssl_encryption_level_t *level = a2;
285 const unsigned char *secret = a3;
286 const size_t *secret_len = a4;
287
288 if (level) {
289 enum quic_tls_enc_level lvl = ssl_to_quic_enc_level(*level);
290
291 chunk_appendf(&trace_buf, "\n TX el=%c", quic_enc_level_char(lvl));
292 if (secret && secret_len)
293 quic_tls_secret_hexdump(&trace_buf, secret, *secret_len);
294 secs = &qc->els[lvl].tls_ctx.tx;
295 if (secs->flags & QUIC_FL_TLS_SECRETS_SET)
296 quic_tls_keys_hexdump(&trace_buf, secs);
297 }
298
299 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100300
Frédéric Lécaille133e8a72020-12-18 09:33:27 +0100301 if (mask & (QUIC_EV_CONN_HPKT|QUIC_EV_CONN_PAPKT)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100302 const struct quic_tx_packet *pkt = a2;
303 const struct quic_enc_level *qel = a3;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100304 const ssize_t *room = a4;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100305
306 if (qel) {
307 struct quic_pktns *pktns;
308
309 pktns = qc->pktns;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100310 chunk_appendf(&trace_buf, " qel=%c cwnd=%llu ppif=%lld pif=%llu "
311 "if=%llu pp=%u pdg=%d",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100312 quic_enc_level_char_from_qel(qel, qc),
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100313 (unsigned long long)qc->path->cwnd,
314 (unsigned long long)qc->path->prep_in_flight,
315 (unsigned long long)qc->path->in_flight,
316 (unsigned long long)pktns->tx.in_flight,
317 pktns->tx.pto_probe, qc->tx.nb_pto_dgrams);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100318 }
319 if (pkt) {
Frédéric Lécaille0ad04582021-07-27 14:51:54 +0200320 const struct quic_frame *frm;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100321 chunk_appendf(&trace_buf, " pn=%llu cdlen=%u",
322 (unsigned long long)pkt->pn_node.key, pkt->cdata_len);
323 list_for_each_entry(frm, &pkt->frms, list)
324 chunk_tx_frm_appendf(&trace_buf, frm);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100325 chunk_appendf(&trace_buf, " tx.bytes=%llu", (unsigned long long)qc->tx.bytes);
326 }
327
328 if (room) {
329 chunk_appendf(&trace_buf, " room=%lld", (long long)*room);
330 chunk_appendf(&trace_buf, " dcid.len=%llu scid.len=%llu",
331 (unsigned long long)qc->dcid.len, (unsigned long long)qc->scid.len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100332 }
333 }
334
335 if (mask & QUIC_EV_CONN_HDSHK) {
336 const enum quic_handshake_state *state = a2;
337 const int *err = a3;
338
339 if (state)
340 chunk_appendf(&trace_buf, " state=%s", quic_hdshk_state_str(*state));
341 if (err)
342 chunk_appendf(&trace_buf, " err=%s", ssl_error_str(*err));
343 }
344
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +0100345 if (mask & (QUIC_EV_CONN_TRMHP|QUIC_EV_CONN_ELRMHP|QUIC_EV_CONN_SPKT)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100346 const struct quic_rx_packet *pkt = a2;
347 const unsigned long *pktlen = a3;
348 const SSL *ssl = a4;
349
350 if (pkt) {
Frédéric Lécaillec5e72b92020-12-02 16:11:40 +0100351 chunk_appendf(&trace_buf, " pkt@%p el=%c",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100352 pkt, quic_packet_type_enc_level_char(pkt->type));
353 if (pkt->pnl)
354 chunk_appendf(&trace_buf, " pnl=%u pn=%llu", pkt->pnl,
355 (unsigned long long)pkt->pn);
356 if (pkt->token_len)
357 chunk_appendf(&trace_buf, " toklen=%llu",
358 (unsigned long long)pkt->token_len);
359 if (pkt->aad_len)
360 chunk_appendf(&trace_buf, " aadlen=%llu",
361 (unsigned long long)pkt->aad_len);
362 chunk_appendf(&trace_buf, " flags=0x%x len=%llu",
363 pkt->flags, (unsigned long long)pkt->len);
364 }
365 if (pktlen)
366 chunk_appendf(&trace_buf, " (%ld)", *pktlen);
367 if (ssl) {
368 enum ssl_encryption_level_t level = SSL_quic_read_level(ssl);
369 chunk_appendf(&trace_buf, " el=%c",
370 quic_enc_level_char(ssl_to_quic_enc_level(level)));
371 }
372 }
373
374 if (mask & (QUIC_EV_CONN_ELRXPKTS|QUIC_EV_CONN_PRSHPKT|QUIC_EV_CONN_SSLDATA)) {
375 const struct quic_rx_packet *pkt = a2;
376 const struct quic_rx_crypto_frm *cf = a3;
377 const SSL *ssl = a4;
378
379 if (pkt)
380 chunk_appendf(&trace_buf, " pkt@%p el=%c pn=%llu", pkt,
381 quic_packet_type_enc_level_char(pkt->type),
382 (unsigned long long)pkt->pn);
383 if (cf)
384 chunk_appendf(&trace_buf, " cfoff=%llu cflen=%llu",
385 (unsigned long long)cf->offset_node.key,
386 (unsigned long long)cf->len);
387 if (ssl) {
388 enum ssl_encryption_level_t level = SSL_quic_read_level(ssl);
Frédéric Lécaille57e6e9e2021-09-23 18:10:56 +0200389 chunk_appendf(&trace_buf, " rel=%c",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100390 quic_enc_level_char(ssl_to_quic_enc_level(level)));
391 }
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100392
393 if (qc->err_code)
394 chunk_appendf(&trace_buf, " err_code=0x%llx", (ull)conn->qc->err_code);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100395 }
396
397 if (mask & (QUIC_EV_CONN_PRSFRM|QUIC_EV_CONN_BFRM)) {
398 const struct quic_frame *frm = a2;
399
400 if (frm)
401 chunk_appendf(&trace_buf, " %s", quic_frame_type_string(frm->type));
402 }
403
404 if (mask & QUIC_EV_CONN_PHPKTS) {
405 const struct quic_enc_level *qel = a2;
406
407 if (qel) {
408 struct quic_pktns *pktns;
409
410 pktns = qc->pktns;
411 chunk_appendf(&trace_buf,
Frédéric Lécaille546186b2021-08-03 14:25:36 +0200412 " qel=%c state=%s ack?%d cwnd=%llu ppif=%lld pif=%llu if=%llu pp=%u pdg=%llu",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100413 quic_enc_level_char_from_qel(qel, qc),
Frédéric Lécaille546186b2021-08-03 14:25:36 +0200414 quic_hdshk_state_str(HA_ATOMIC_LOAD(&qc->state)),
Frédéric Lécaille2766e782021-08-30 17:16:07 +0200415 !!(HA_ATOMIC_LOAD(&qc->flags) & QUIC_FL_PKTNS_ACK_REQUIRED),
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100416 (unsigned long long)qc->path->cwnd,
417 (unsigned long long)qc->path->prep_in_flight,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100418 (unsigned long long)qc->path->in_flight,
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100419 (unsigned long long)pktns->tx.in_flight, pktns->tx.pto_probe,
420 (unsigned long long)qc->tx.nb_pto_dgrams);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100421 }
422 }
423
Frédéric Lécaillef63921f2020-12-18 09:48:20 +0100424 if (mask & QUIC_EV_CONN_ENCPKT) {
425 const struct enc_debug_info *edi = a2;
426
427 if (edi)
428 chunk_appendf(&trace_buf,
429 " payload=@%p payload_len=%llu"
430 " aad=@%p aad_len=%llu pn=%llu",
431 edi->payload, (unsigned long long)edi->payload_len,
432 edi->aad, (unsigned long long)edi->aad_len,
433 (unsigned long long)edi->pn);
434 }
435
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100436 if (mask & QUIC_EV_CONN_RMHP) {
437 const struct quic_rx_packet *pkt = a2;
438
439 if (pkt) {
440 const int *ret = a3;
441
442 chunk_appendf(&trace_buf, " pkt@%p", pkt);
443 if (ret && *ret)
444 chunk_appendf(&trace_buf, " pnl=%u pn=%llu",
445 pkt->pnl, (unsigned long long)pkt->pn);
446 }
447 }
448
449 if (mask & QUIC_EV_CONN_PRSAFRM) {
Frédéric Lécaille0ad04582021-07-27 14:51:54 +0200450 const struct quic_frame *frm = a2;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100451 const unsigned long *val1 = a3;
452 const unsigned long *val2 = a4;
453
454 if (frm)
455 chunk_tx_frm_appendf(&trace_buf, frm);
456 if (val1)
457 chunk_appendf(&trace_buf, " %lu", *val1);
458 if (val2)
459 chunk_appendf(&trace_buf, "..%lu", *val2);
460 }
461
462 if (mask & QUIC_EV_CONN_RTTUPDT) {
463 const unsigned int *rtt_sample = a2;
464 const unsigned int *ack_delay = a3;
465 const struct quic_loss *ql = a4;
466
467 if (rtt_sample)
468 chunk_appendf(&trace_buf, " rtt_sample=%ums", *rtt_sample);
469 if (ack_delay)
470 chunk_appendf(&trace_buf, " ack_delay=%ums", *ack_delay);
471 if (ql)
472 chunk_appendf(&trace_buf,
473 " srtt=%ums rttvar=%ums min_rtt=%ums",
474 ql->srtt >> 3, ql->rtt_var >> 2, ql->rtt_min);
475 }
476 if (mask & QUIC_EV_CONN_CC) {
477 const struct quic_cc_event *ev = a2;
478 const struct quic_cc *cc = a3;
479
480 if (a2)
481 quic_cc_event_trace(&trace_buf, ev);
482 if (a3)
483 quic_cc_state_trace(&trace_buf, cc);
484 }
485
486 if (mask & QUIC_EV_CONN_PKTLOSS) {
487 const struct quic_pktns *pktns = a2;
488 const struct list *lost_pkts = a3;
489 struct quic_conn *qc = conn->qc;
490
491 if (pktns) {
492 chunk_appendf(&trace_buf, " pktns=%s",
493 pktns == &qc->pktns[QUIC_TLS_PKTNS_INITIAL] ? "I" :
494 pktns == &qc->pktns[QUIC_TLS_PKTNS_01RTT] ? "01RTT": "H");
495 if (pktns->tx.loss_time)
496 chunk_appendf(&trace_buf, " loss_time=%dms",
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +0100497 TICKS_TO_MS(tick_remain(now_ms, pktns->tx.loss_time)));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100498 }
499 if (lost_pkts && !LIST_ISEMPTY(lost_pkts)) {
500 struct quic_tx_packet *pkt;
501
502 chunk_appendf(&trace_buf, " lost_pkts:");
503 list_for_each_entry(pkt, lost_pkts, list)
504 chunk_appendf(&trace_buf, " %lu", (unsigned long)pkt->pn_node.key);
505 }
506 }
507
508 if (mask & (QUIC_EV_CONN_STIMER|QUIC_EV_CONN_PTIMER|QUIC_EV_CONN_SPTO)) {
509 struct quic_conn *qc = conn->qc;
510 const struct quic_pktns *pktns = a2;
511 const int *duration = a3;
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +0100512 const uint64_t *ifae_pkts = a4;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100513
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +0100514 if (ifae_pkts)
515 chunk_appendf(&trace_buf, " ifae_pkts=%llu",
516 (unsigned long long)*ifae_pkts);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100517 if (pktns) {
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100518 chunk_appendf(&trace_buf, " pktns=%s pp=%d",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100519 pktns == &qc->pktns[QUIC_TLS_PKTNS_INITIAL] ? "I" :
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100520 pktns == &qc->pktns[QUIC_TLS_PKTNS_01RTT] ? "01RTT": "H",
521 pktns->tx.pto_probe);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100522 if (mask & QUIC_EV_CONN_STIMER) {
523 if (pktns->tx.loss_time)
524 chunk_appendf(&trace_buf, " loss_time=%dms",
525 TICKS_TO_MS(pktns->tx.loss_time - now_ms));
526 }
527 if (mask & QUIC_EV_CONN_SPTO) {
528 if (pktns->tx.time_of_last_eliciting)
529 chunk_appendf(&trace_buf, " tole=%dms",
530 TICKS_TO_MS(pktns->tx.time_of_last_eliciting - now_ms));
531 if (duration)
Frédéric Lécaillec5e72b92020-12-02 16:11:40 +0100532 chunk_appendf(&trace_buf, " dur=%dms", TICKS_TO_MS(*duration));
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100533 }
534 }
535
536 if (!(mask & QUIC_EV_CONN_SPTO) && qc->timer_task) {
537 chunk_appendf(&trace_buf,
538 " expire=%dms", TICKS_TO_MS(qc->timer - now_ms));
539 }
540 }
541
542 if (mask & QUIC_EV_CONN_SPPKTS) {
543 const struct quic_tx_packet *pkt = a2;
544
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100545 chunk_appendf(&trace_buf, " cwnd=%llu ppif=%llu pif=%llu",
546 (unsigned long long)qc->path->cwnd,
547 (unsigned long long)qc->path->prep_in_flight,
548 (unsigned long long)qc->path->in_flight);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100549 if (pkt) {
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100550 chunk_appendf(&trace_buf, " pn=%lu(%s) iflen=%llu cdlen=%llu",
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100551 (unsigned long)pkt->pn_node.key,
552 pkt->pktns == &qc->pktns[QUIC_TLS_PKTNS_INITIAL] ? "I" :
553 pkt->pktns == &qc->pktns[QUIC_TLS_PKTNS_01RTT] ? "01RTT": "H",
Frédéric Lécaille04ffb662020-12-08 15:58:39 +0100554 (unsigned long long)pkt->in_flight_len,
555 (unsigned long long)pkt->cdata_len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100556 }
557 }
Frédéric Lécaille47c433f2020-12-10 17:03:11 +0100558
559 if (mask & QUIC_EV_CONN_SSLALERT) {
560 const uint8_t *alert = a2;
561 const enum ssl_encryption_level_t *level = a3;
562
563 if (alert)
564 chunk_appendf(&trace_buf, " alert=0x%02x", *alert);
565 if (level)
566 chunk_appendf(&trace_buf, " el=%c",
567 quic_enc_level_char(ssl_to_quic_enc_level(*level)));
568 }
Frédéric Lécailleea604992020-12-24 13:01:37 +0100569
570 if (mask & QUIC_EV_CONN_BCFRMS) {
571 const size_t *sz1 = a2;
572 const size_t *sz2 = a3;
573 const size_t *sz3 = a4;
574
575 if (sz1)
576 chunk_appendf(&trace_buf, " %llu", (unsigned long long)*sz1);
577 if (sz2)
578 chunk_appendf(&trace_buf, " %llu", (unsigned long long)*sz2);
579 if (sz3)
580 chunk_appendf(&trace_buf, " %llu", (unsigned long long)*sz3);
581 }
Frédéric Lécaille242fb1b2020-12-31 12:45:38 +0100582
583 if (mask & QUIC_EV_CONN_PSTRM) {
584 const struct quic_frame *frm = a2;
Frédéric Lécaille577fe482021-01-11 15:10:06 +0100585
586 if (a2) {
587 const struct quic_stream *s = &frm->stream;
Frédéric Lécaille242fb1b2020-12-31 12:45:38 +0100588
Frédéric Lécaille577fe482021-01-11 15:10:06 +0100589 chunk_appendf(&trace_buf, " uni=%d fin=%d id=%llu off=%llu len=%llu",
590 !!(s->id & QUIC_STREAM_FRAME_ID_DIR_BIT),
591 !!(frm->type & QUIC_STREAM_FRAME_TYPE_FIN_BIT),
592 (unsigned long long)s->id,
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +0200593 (unsigned long long)s->offset.key,
Frédéric Lécaille577fe482021-01-11 15:10:06 +0100594 (unsigned long long)s->len);
595 }
Frédéric Lécaille242fb1b2020-12-31 12:45:38 +0100596 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100597 }
598 if (mask & QUIC_EV_CONN_LPKT) {
599 const struct quic_rx_packet *pkt = a2;
Frédéric Lécaille865b0782021-09-23 07:33:20 +0200600 const uint64_t *len = a3;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100601
602 if (conn)
Frédéric Lécaille2e7ffc92021-06-10 08:18:45 +0200603 chunk_appendf(&trace_buf, " xprt_ctx@%p qc@%p", conn->xprt_ctx, conn->qc);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100604 if (pkt)
Frédéric Lécaille2e7ffc92021-06-10 08:18:45 +0200605 chunk_appendf(&trace_buf, " pkt@%p type=0x%02x %s pkt->qc@%p",
606 pkt, pkt->type, qc_pkt_long(pkt) ? "long" : "short", pkt->qc);
Frédéric Lécaille865b0782021-09-23 07:33:20 +0200607 if (len)
608 chunk_appendf(&trace_buf, " len=%llu", (ull)*len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100609 }
610
611}
612
613/* Returns 1 if the peer has validated <qc> QUIC connection address, 0 if not. */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +0200614static inline int quic_peer_validated_addr(struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100615{
616 struct quic_conn *qc;
Frédéric Lécaille67f47d02021-08-19 15:19:09 +0200617 struct quic_pktns *hdshk_pktns, *app_pktns;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100618
619 qc = ctx->conn->qc;
620 if (objt_server(qc->conn->target))
621 return 1;
622
Frédéric Lécaille67f47d02021-08-19 15:19:09 +0200623 hdshk_pktns = qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE].pktns;
624 app_pktns = qc->els[QUIC_TLS_ENC_LEVEL_APP].pktns;
625 if ((HA_ATOMIC_LOAD(&hdshk_pktns->flags) & QUIC_FL_PKTNS_ACK_RECEIVED) ||
626 (HA_ATOMIC_LOAD(&app_pktns->flags) & QUIC_FL_PKTNS_ACK_RECEIVED) ||
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +0200627 HA_ATOMIC_LOAD(&qc->state) >= QUIC_HS_ST_COMPLETE)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100628 return 1;
629
630 return 0;
631}
632
633/* Set the timer attached to the QUIC connection with <ctx> as I/O handler and used for
634 * both loss detection and PTO and schedule the task assiated to this timer if needed.
635 */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +0200636static inline void qc_set_timer(struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100637{
638 struct quic_conn *qc;
639 struct quic_pktns *pktns;
640 unsigned int pto;
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +0200641 int handshake_complete;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100642
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +0100643 TRACE_ENTER(QUIC_EV_CONN_STIMER, ctx->conn,
644 NULL, NULL, &ctx->conn->qc->path->ifae_pkts);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100645 qc = ctx->conn->qc;
646 pktns = quic_loss_pktns(qc);
647 if (tick_isset(pktns->tx.loss_time)) {
648 qc->timer = pktns->tx.loss_time;
649 goto out;
650 }
651
Frédéric Lécailleca98a7f2021-11-10 17:30:15 +0100652 /* anti-amplification: the timer must be
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100653 * cancelled for a server which reached the anti-amplification limit.
654 */
Frédéric Lécailleca98a7f2021-11-10 17:30:15 +0100655 if (qc->flags & QUIC_FL_CONN_ANTI_AMPLIFICATION_REACHED) {
656 TRACE_PROTO("anti-amplification reached", QUIC_EV_CONN_STIMER, ctx->conn);
657 qc->timer = TICK_ETERNITY;
658 goto out;
659 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100660
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +0100661 if (!qc->path->ifae_pkts && quic_peer_validated_addr(ctx)) {
662 TRACE_PROTO("timer cancellation", QUIC_EV_CONN_STIMER, ctx->conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100663 /* Timer cancellation. */
664 qc->timer = TICK_ETERNITY;
665 goto out;
666 }
667
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +0200668 handshake_complete = HA_ATOMIC_LOAD(&qc->state) >= QUIC_HS_ST_COMPLETE;
669 pktns = quic_pto_pktns(qc, handshake_complete, &pto);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100670 if (tick_isset(pto))
671 qc->timer = pto;
672 out:
Amaury Denoyelle336f6fd2021-10-05 14:42:25 +0200673 if (qc->timer != TICK_ETERNITY)
674 task_schedule(qc->timer_task, qc->timer);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100675 TRACE_LEAVE(QUIC_EV_CONN_STIMER, ctx->conn, pktns);
676}
677
Frédéric Lécaillea7973a62021-11-30 11:10:36 +0100678/* Derive new keys and ivs required for Key Update feature for <qc> QUIC
679 * connection.
680 * Return 1 if succeeded, 0 if not.
681 */
682static int quic_tls_key_update(struct quic_conn *qc)
683{
684 struct quic_tls_ctx *tls_ctx = &qc->els[QUIC_TLS_ENC_LEVEL_APP].tls_ctx;
685 struct quic_tls_secrets *rx, *tx;
686 struct quic_tls_kp *nxt_rx = &qc->ku.nxt_rx;
687 struct quic_tls_kp *nxt_tx = &qc->ku.nxt_tx;
688
689 tls_ctx = &qc->els[QUIC_TLS_ENC_LEVEL_APP].tls_ctx;
690 rx = &tls_ctx->rx;
691 tx = &tls_ctx->tx;
692 nxt_rx = &qc->ku.nxt_rx;
693 nxt_tx = &qc->ku.nxt_tx;
694
695 /* Prepare new RX secrets */
696 if (!quic_tls_sec_update(rx->md, nxt_rx->secret, nxt_rx->secretlen,
697 rx->secret, rx->secretlen)) {
698 TRACE_DEVEL("New RX secret update failed", QUIC_EV_CONN_RWSEC, qc->conn);
699 return 0;
700 }
701
702 if (!quic_tls_derive_keys(rx->aead, NULL, rx->md,
703 nxt_rx->key, nxt_rx->keylen,
704 nxt_rx->iv, nxt_rx->ivlen, NULL, 0,
705 nxt_rx->secret, nxt_rx->secretlen)) {
706 TRACE_DEVEL("New RX key derivation failed", QUIC_EV_CONN_RWSEC, qc->conn);
707 return 0;
708 }
709
710 /* Prepare new TX secrets */
711 if (!quic_tls_sec_update(tx->md, nxt_tx->secret, nxt_tx->secretlen,
712 tx->secret, tx->secretlen)) {
713 TRACE_DEVEL("New TX secret update failed", QUIC_EV_CONN_RWSEC, qc->conn);
714 return 0;
715 }
716
717 if (!quic_tls_derive_keys(tx->aead, NULL, tx->md,
718 nxt_tx->key, nxt_tx->keylen,
719 nxt_tx->iv, nxt_tx->ivlen, NULL, 0,
720 nxt_tx->secret, nxt_tx->secretlen)) {
721 TRACE_DEVEL("New TX key derivation failed", QUIC_EV_CONN_RWSEC, qc->conn);
722 return 0;
723 }
724
725 return 1;
726}
727
728/* Rotate the Key Update information for <qc> QUIC connection.
729 * Must be used after having updated them.
730 * Always succeeds.
731 */
732static void quic_tls_rotate_keys(struct quic_conn *qc)
733{
734 struct quic_tls_ctx *tls_ctx = &qc->els[QUIC_TLS_ENC_LEVEL_APP].tls_ctx;
735 unsigned char *curr_secret, *curr_iv, *curr_key;
736
737 /* Rotate the RX secrets */
738 curr_secret = tls_ctx->rx.secret;
739 curr_iv = tls_ctx->rx.iv;
740 curr_key = tls_ctx->rx.key;
741
742 tls_ctx->rx.secret = qc->ku.nxt_rx.secret;
743 tls_ctx->rx.iv = qc->ku.nxt_rx.iv;
744 tls_ctx->rx.key = qc->ku.nxt_rx.key;
745
746 qc->ku.nxt_rx.secret = qc->ku.prv_rx.secret;
747 qc->ku.nxt_rx.iv = qc->ku.prv_rx.iv;
748 qc->ku.nxt_rx.key = qc->ku.prv_rx.key;
749
750 qc->ku.prv_rx.secret = curr_secret;
751 qc->ku.prv_rx.iv = curr_iv;
752 qc->ku.prv_rx.key = curr_key;
753 qc->ku.prv_rx.pn = tls_ctx->rx.pn;
754
755 /* Update the TX secrets */
756 curr_secret = tls_ctx->tx.secret;
757 curr_iv = tls_ctx->tx.iv;
758 curr_key = tls_ctx->tx.key;
759
760 tls_ctx->tx.secret = qc->ku.nxt_tx.secret;
761 tls_ctx->tx.iv = qc->ku.nxt_tx.iv;
762 tls_ctx->tx.key = qc->ku.nxt_tx.key;
763
764 qc->ku.nxt_tx.secret = curr_secret;
765 qc->ku.nxt_tx.iv = curr_iv;
766 qc->ku.nxt_tx.key = curr_key;
767}
768
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100769#ifndef OPENSSL_IS_BORINGSSL
770int ha_quic_set_encryption_secrets(SSL *ssl, enum ssl_encryption_level_t level,
771 const uint8_t *read_secret,
772 const uint8_t *write_secret, size_t secret_len)
773{
774 struct connection *conn = SSL_get_ex_data(ssl, ssl_app_data_index);
775 struct quic_tls_ctx *tls_ctx =
776 &conn->qc->els[ssl_to_quic_enc_level(level)].tls_ctx;
777 const SSL_CIPHER *cipher = SSL_get_current_cipher(ssl);
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100778 struct quic_tls_secrets *rx, *tx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100779
780 TRACE_ENTER(QUIC_EV_CONN_RWSEC, conn);
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100781 BUG_ON(secret_len > QUIC_TLS_SECRET_LEN);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100782 if (HA_ATOMIC_LOAD(&conn->qc->flags) & QUIC_FL_CONN_IMMEDIATE_CLOSE) {
783 TRACE_PROTO("CC required", QUIC_EV_CONN_RWSEC, conn);
784 goto out;
785 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100786
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100787 if (!quic_tls_ctx_keys_alloc(tls_ctx)) {
788 TRACE_DEVEL("keys allocation failed", QUIC_EV_CONN_RWSEC, conn);
789 goto err;
790 }
791
792 rx = &tls_ctx->rx;
793 tx = &tls_ctx->tx;
794
795 rx->aead = tx->aead = tls_aead(cipher);
796 rx->md = tx->md = tls_md(cipher);
797 rx->hp = tx->hp = tls_hp(cipher);
798
799 if (!quic_tls_derive_keys(rx->aead, rx->hp, rx->md, rx->key, rx->keylen,
800 rx->iv, rx->ivlen, rx->hp_key, sizeof rx->hp_key,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100801 read_secret, secret_len)) {
802 TRACE_DEVEL("RX key derivation failed", QUIC_EV_CONN_RWSEC, conn);
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100803 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100804 }
805
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100806 rx->flags |= QUIC_FL_TLS_SECRETS_SET;
807 if (!quic_tls_derive_keys(tx->aead, tx->hp, tx->md, tx->key, tx->keylen,
808 tx->iv, tx->ivlen, tx->hp_key, sizeof tx->hp_key,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100809 write_secret, secret_len)) {
810 TRACE_DEVEL("TX key derivation failed", QUIC_EV_CONN_RWSEC, conn);
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100811 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100812 }
813
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100814 tx->flags |= QUIC_FL_TLS_SECRETS_SET;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100815 if (objt_server(conn->target) && level == ssl_encryption_application) {
816 const unsigned char *buf;
817 size_t buflen;
818
819 SSL_get_peer_quic_transport_params(ssl, &buf, &buflen);
820 if (!buflen)
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100821 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100822
823 if (!quic_transport_params_store(conn->qc, 1, buf, buf + buflen))
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100824 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100825 }
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +0100826
827 if (level == ssl_encryption_application) {
828 struct quic_conn *qc = conn->qc;
829 struct quic_tls_kp *prv_rx = &qc->ku.prv_rx;
830 struct quic_tls_kp *nxt_rx = &qc->ku.nxt_rx;
831 struct quic_tls_kp *nxt_tx = &qc->ku.nxt_tx;
832
833 if (!(rx->secret = pool_alloc(pool_head_quic_tls_secret)) ||
834 !(tx->secret = pool_alloc(pool_head_quic_tls_secret))) {
835 TRACE_DEVEL("Could not allocate secrete keys", QUIC_EV_CONN_RWSEC, conn);
836 goto err;
837 }
838
839 memcpy(rx->secret, read_secret, secret_len);
840 rx->secretlen = secret_len;
841 memcpy(tx->secret, write_secret, secret_len);
842 tx->secretlen = secret_len;
843 /* Initialize all the secret keys lengths */
844 prv_rx->secretlen = nxt_rx->secretlen = nxt_tx->secretlen = secret_len;
845 /* Prepare the next key update */
846 if (!quic_tls_key_update(qc))
847 goto err;
848 }
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100849 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100850 TRACE_LEAVE(QUIC_EV_CONN_RWSEC, conn, &level);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100851 return 1;
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100852
853 err:
854 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_RWSEC, conn);
855 return 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100856}
857#else
858/* ->set_read_secret callback to derive the RX secrets at <level> encryption
859 * level.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +0500860 * Returns 1 if succeeded, 0 if not.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100861 */
862int ha_set_rsec(SSL *ssl, enum ssl_encryption_level_t level,
863 const SSL_CIPHER *cipher,
864 const uint8_t *secret, size_t secret_len)
865{
866 struct connection *conn = SSL_get_ex_data(ssl, ssl_app_data_index);
867 struct quic_tls_ctx *tls_ctx =
868 &conn->qc->els[ssl_to_quic_enc_level(level)].tls_ctx;
869
870 TRACE_ENTER(QUIC_EV_CONN_RSEC, conn);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100871 if (HA_ATOMIC_LOAD(&conn->qc->flags) & QUIC_FL_CONN_IMMEDIATE_CLOSE) {
872 TRACE_PROTO("CC required", QUIC_EV_CONN_RSEC, conn);
873 goto out;
874 }
875
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100876 tls_ctx->rx.aead = tls_aead(cipher);
877 tls_ctx->rx.md = tls_md(cipher);
878 tls_ctx->rx.hp = tls_hp(cipher);
879
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100880 if (!(ctx->rx.key = pool_alloc(pool_head_quic_tls_key)))
881 goto err;
882
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100883 if (!quic_tls_derive_keys(tls_ctx->rx.aead, tls_ctx->rx.hp, tls_ctx->rx.md,
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100884 tls_ctx->rx.key, tls_ctx->rx.keylen,
885 tls_ctx->rx.iv, tls_ctx->rx.ivlen,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100886 tls_ctx->rx.hp_key, sizeof tls_ctx->rx.hp_key,
887 secret, secret_len)) {
888 TRACE_DEVEL("RX key derivation failed", QUIC_EV_CONN_RSEC, conn);
889 goto err;
890 }
891
892 if (objt_server(conn->target) && level == ssl_encryption_application) {
893 const unsigned char *buf;
894 size_t buflen;
895
896 SSL_get_peer_quic_transport_params(ssl, &buf, &buflen);
897 if (!buflen)
898 goto err;
899
900 if (!quic_transport_params_store(conn->qc, 1, buf, buf + buflen))
901 goto err;
902 }
903
904 tls_ctx->rx.flags |= QUIC_FL_TLS_SECRETS_SET;
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100905 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100906 TRACE_LEAVE(QUIC_EV_CONN_RSEC, conn, &level, secret, &secret_len);
907
908 return 1;
909
910 err:
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +0100911 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_RSEC, conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100912 return 0;
913}
914
915/* ->set_write_secret callback to derive the TX secrets at <level>
916 * encryption level.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +0500917 * Returns 1 if succeeded, 0 if not.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100918 */
919int ha_set_wsec(SSL *ssl, enum ssl_encryption_level_t level,
920 const SSL_CIPHER *cipher,
921 const uint8_t *secret, size_t secret_len)
922{
923 struct connection *conn = SSL_get_ex_data(ssl, ssl_app_data_index);
924 struct quic_tls_ctx *tls_ctx =
925 &conn->qc->els[ssl_to_quic_enc_level(level)].tls_ctx;
926
927 TRACE_ENTER(QUIC_EV_CONN_WSEC, conn);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100928 if (HA_ATOMIC_LOAD(&conn->qc->flags) & QUIC_FL_CONN_IMMEDIATE_CLOSE) {
929 TRACE_PROTO("CC required", QUIC_EV_CONN_WSEC, conn);
930 goto out;
931 }
932
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100933 if (!(ctx->tx.key = pool_alloc(pool_head_quic_tls_key)))
934 goto err;
935
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100936 tls_ctx->tx.aead = tls_aead(cipher);
937 tls_ctx->tx.md = tls_md(cipher);
938 tls_ctx->tx.hp = tls_hp(cipher);
939
940 if (!quic_tls_derive_keys(tls_ctx->tx.aead, tls_ctx->tx.hp, tls_ctx->tx.md,
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +0100941 tls_ctx->tx.key, tls_ctx->tx.keylen,
942 tls_ctx->tx.iv, tls_ctx->tx.ivlen,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100943 tls_ctx->tx.hp_key, sizeof tls_ctx->tx.hp_key,
944 secret, secret_len)) {
945 TRACE_DEVEL("TX key derivation failed", QUIC_EV_CONN_WSEC, conn);
946 goto err;
947 }
948
949 tls_ctx->tx.flags |= QUIC_FL_TLS_SECRETS_SET;
950 TRACE_LEAVE(QUIC_EV_CONN_WSEC, conn, &level, secret, &secret_len);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +0100951 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100952 return 1;
953
954 err:
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +0100955 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_WSEC, conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +0100956 return 0;
957}
958#endif
959
960/* This function copies the CRYPTO data provided by the TLS stack found at <data>
961 * with <len> as size in CRYPTO buffers dedicated to store the information about
962 * outgoing CRYPTO frames so that to be able to replay the CRYPTO data streams.
963 * It fails only if it could not managed to allocate enough CRYPTO buffers to
964 * store all the data.
965 * Note that CRYPTO data may exist at any encryption level except at 0-RTT.
966 */
967static int quic_crypto_data_cpy(struct quic_enc_level *qel,
968 const unsigned char *data, size_t len)
969{
970 struct quic_crypto_buf **qcb;
971 /* The remaining byte to store in CRYPTO buffers. */
972 size_t cf_offset, cf_len, *nb_buf;
973 unsigned char *pos;
974
975 nb_buf = &qel->tx.crypto.nb_buf;
976 qcb = &qel->tx.crypto.bufs[*nb_buf - 1];
977 cf_offset = (*nb_buf - 1) * QUIC_CRYPTO_BUF_SZ + (*qcb)->sz;
978 cf_len = len;
979
980 while (len) {
981 size_t to_copy, room;
982
983 pos = (*qcb)->data + (*qcb)->sz;
984 room = QUIC_CRYPTO_BUF_SZ - (*qcb)->sz;
985 to_copy = len > room ? room : len;
986 if (to_copy) {
987 memcpy(pos, data, to_copy);
988 /* Increment the total size of this CRYPTO buffers by <to_copy>. */
989 qel->tx.crypto.sz += to_copy;
990 (*qcb)->sz += to_copy;
991 pos += to_copy;
992 len -= to_copy;
993 data += to_copy;
994 }
995 else {
996 struct quic_crypto_buf **tmp;
997
998 tmp = realloc(qel->tx.crypto.bufs,
999 (*nb_buf + 1) * sizeof *qel->tx.crypto.bufs);
1000 if (tmp) {
1001 qel->tx.crypto.bufs = tmp;
1002 qcb = &qel->tx.crypto.bufs[*nb_buf];
1003 *qcb = pool_alloc(pool_head_quic_crypto_buf);
1004 if (!*qcb)
1005 return 0;
1006
1007 (*qcb)->sz = 0;
1008 ++*nb_buf;
1009 }
1010 else {
1011 break;
1012 }
1013 }
1014 }
1015
1016 /* Allocate a TX CRYPTO frame only if all the CRYPTO data
1017 * have been buffered.
1018 */
1019 if (!len) {
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001020 struct quic_frame *frm;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001021
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001022 frm = pool_alloc(pool_head_quic_frame);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001023 if (!frm)
1024 return 0;
1025
1026 frm->type = QUIC_FT_CRYPTO;
1027 frm->crypto.offset = cf_offset;
1028 frm->crypto.len = cf_len;
Frédéric Lécaillef252adb2021-08-03 17:01:25 +02001029 frm->crypto.qel = qel;
Frédéric Lécaillec88df072021-07-27 11:43:11 +02001030 MT_LIST_APPEND(&qel->pktns->tx.frms, &frm->mt_list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001031 }
1032
1033 return len == 0;
1034}
1035
1036
Frédéric Lécaille067a82b2021-11-19 17:02:20 +01001037/* Set <alert> TLS alert as QUIC CRYPTO_ERROR error */
1038void quic_set_tls_alert(struct quic_conn *qc, int alert)
1039{
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01001040 HA_ATOMIC_STORE(&qc->err_code, QC_ERR_CRYPTO_ERROR | alert);
Frédéric Lécaille067a82b2021-11-19 17:02:20 +01001041 HA_ATOMIC_OR(&qc->flags, QUIC_FL_CONN_IMMEDIATE_CLOSE);
1042 TRACE_PROTO("Alert set", QUIC_EV_CONN_SSLDATA, qc->conn);
1043}
1044
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001045/* ->add_handshake_data QUIC TLS callback used by the QUIC TLS stack when it
1046 * wants to provide the QUIC layer with CRYPTO data.
1047 * Returns 1 if succeeded, 0 if not.
1048 */
1049int ha_quic_add_handshake_data(SSL *ssl, enum ssl_encryption_level_t level,
1050 const uint8_t *data, size_t len)
1051{
1052 struct connection *conn;
1053 enum quic_tls_enc_level tel;
1054 struct quic_enc_level *qel;
1055
1056 conn = SSL_get_ex_data(ssl, ssl_app_data_index);
1057 TRACE_ENTER(QUIC_EV_CONN_ADDDATA, conn);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01001058 if (HA_ATOMIC_LOAD(&conn->qc->flags) & QUIC_FL_CONN_IMMEDIATE_CLOSE) {
1059 TRACE_PROTO("CC required", QUIC_EV_CONN_ADDDATA, conn);
1060 goto out;
1061 }
1062
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001063 tel = ssl_to_quic_enc_level(level);
1064 qel = &conn->qc->els[tel];
1065
1066 if (tel == -1) {
1067 TRACE_PROTO("Wrong encryption level", QUIC_EV_CONN_ADDDATA, conn);
1068 goto err;
1069 }
1070
1071 if (!quic_crypto_data_cpy(qel, data, len)) {
1072 TRACE_PROTO("Could not bufferize", QUIC_EV_CONN_ADDDATA, conn);
1073 goto err;
1074 }
1075
1076 TRACE_PROTO("CRYPTO data buffered", QUIC_EV_CONN_ADDDATA,
1077 conn, &level, &len);
1078
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01001079 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001080 TRACE_LEAVE(QUIC_EV_CONN_ADDDATA, conn);
1081 return 1;
1082
1083 err:
1084 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_ADDDATA, conn);
1085 return 0;
1086}
1087
1088int ha_quic_flush_flight(SSL *ssl)
1089{
1090 struct connection *conn = SSL_get_ex_data(ssl, ssl_app_data_index);
1091
1092 TRACE_ENTER(QUIC_EV_CONN_FFLIGHT, conn);
1093 TRACE_LEAVE(QUIC_EV_CONN_FFLIGHT, conn);
1094
1095 return 1;
1096}
1097
1098int ha_quic_send_alert(SSL *ssl, enum ssl_encryption_level_t level, uint8_t alert)
1099{
1100 struct connection *conn = SSL_get_ex_data(ssl, ssl_app_data_index);
1101
Frédéric Lécaille47c433f2020-12-10 17:03:11 +01001102 TRACE_DEVEL("SSL alert", QUIC_EV_CONN_SSLALERT, conn, &alert, &level);
Frédéric Lécaille067a82b2021-11-19 17:02:20 +01001103 quic_set_tls_alert(conn->qc, alert);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01001104 HA_ATOMIC_STORE(&conn->qc->flags, QUIC_FL_CONN_IMMEDIATE_CLOSE);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001105 return 1;
1106}
1107
1108/* QUIC TLS methods */
1109static SSL_QUIC_METHOD ha_quic_method = {
1110#ifdef OPENSSL_IS_BORINGSSL
1111 .set_read_secret = ha_set_rsec,
1112 .set_write_secret = ha_set_wsec,
1113#else
1114 .set_encryption_secrets = ha_quic_set_encryption_secrets,
1115#endif
1116 .add_handshake_data = ha_quic_add_handshake_data,
1117 .flush_flight = ha_quic_flush_flight,
1118 .send_alert = ha_quic_send_alert,
1119};
1120
1121/* Initialize the TLS context of a listener with <bind_conf> as configuration.
1122 * Returns an error count.
1123 */
1124int ssl_quic_initial_ctx(struct bind_conf *bind_conf)
1125{
1126 struct proxy *curproxy = bind_conf->frontend;
1127 struct ssl_bind_conf __maybe_unused *ssl_conf_cur;
1128 int cfgerr = 0;
1129
1130#if 0
1131 /* XXX Did not manage to use this. */
1132 const char *ciphers =
1133 "TLS_AES_128_GCM_SHA256:"
1134 "TLS_AES_256_GCM_SHA384:"
1135 "TLS_CHACHA20_POLY1305_SHA256:"
1136 "TLS_AES_128_CCM_SHA256";
1137#endif
Frédéric Lécaille4b1fddc2021-07-01 17:09:05 +02001138 const char *groups = "X25519:P-256:P-384:P-521";
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001139 long options =
1140 (SSL_OP_ALL & ~SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS) |
1141 SSL_OP_SINGLE_ECDH_USE |
1142 SSL_OP_CIPHER_SERVER_PREFERENCE;
1143 SSL_CTX *ctx;
1144
1145 ctx = SSL_CTX_new(TLS_server_method());
1146 bind_conf->initial_ctx = ctx;
1147
1148 SSL_CTX_set_options(ctx, options);
1149#if 0
1150 if (SSL_CTX_set_cipher_list(ctx, ciphers) != 1) {
1151 ha_alert("Proxy '%s': unable to set TLS 1.3 cipher list to '%s' "
1152 "for bind '%s' at [%s:%d].\n",
1153 curproxy->id, ciphers,
1154 bind_conf->arg, bind_conf->file, bind_conf->line);
1155 cfgerr++;
1156 }
1157#endif
1158
1159 if (SSL_CTX_set1_curves_list(ctx, groups) != 1) {
1160 ha_alert("Proxy '%s': unable to set TLS 1.3 curves list to '%s' "
1161 "for bind '%s' at [%s:%d].\n",
1162 curproxy->id, groups,
1163 bind_conf->arg, bind_conf->file, bind_conf->line);
1164 cfgerr++;
1165 }
1166
1167 SSL_CTX_set_mode(ctx, SSL_MODE_RELEASE_BUFFERS);
1168 SSL_CTX_set_min_proto_version(ctx, TLS1_3_VERSION);
1169 SSL_CTX_set_max_proto_version(ctx, TLS1_3_VERSION);
1170 SSL_CTX_set_default_verify_paths(ctx);
1171
1172#ifdef SSL_CTRL_SET_TLSEXT_HOSTNAME
1173#ifdef OPENSSL_IS_BORINGSSL
1174 SSL_CTX_set_select_certificate_cb(ctx, ssl_sock_switchctx_cbk);
1175 SSL_CTX_set_tlsext_servername_callback(ctx, ssl_sock_switchctx_err_cbk);
1176#elif (HA_OPENSSL_VERSION_NUMBER >= 0x10101000L)
1177 if (bind_conf->ssl_conf.early_data) {
1178 SSL_CTX_set_options(ctx, SSL_OP_NO_ANTI_REPLAY);
1179 SSL_CTX_set_max_early_data(ctx, global.tune.bufsize - global.tune.maxrewrite);
1180 }
1181 SSL_CTX_set_client_hello_cb(ctx, ssl_sock_switchctx_cbk, NULL);
1182 SSL_CTX_set_tlsext_servername_callback(ctx, ssl_sock_switchctx_err_cbk);
1183#else
1184 SSL_CTX_set_tlsext_servername_callback(ctx, ssl_sock_switchctx_cbk);
1185#endif
1186 SSL_CTX_set_tlsext_servername_arg(ctx, bind_conf);
1187#endif
1188 SSL_CTX_set_quic_method(ctx, &ha_quic_method);
1189
1190 return cfgerr;
1191}
1192
1193/* Decode an expected packet number from <truncated_on> its truncated value,
1194 * depending on <largest_pn> the largest received packet number, and <pn_nbits>
1195 * the number of bits used to encode this packet number (its length in bytes * 8).
1196 * See https://quicwg.org/base-drafts/draft-ietf-quic-transport.html#packet-encoding
1197 */
1198static uint64_t decode_packet_number(uint64_t largest_pn,
1199 uint32_t truncated_pn, unsigned int pn_nbits)
1200{
1201 uint64_t expected_pn = largest_pn + 1;
1202 uint64_t pn_win = (uint64_t)1 << pn_nbits;
1203 uint64_t pn_hwin = pn_win / 2;
1204 uint64_t pn_mask = pn_win - 1;
1205 uint64_t candidate_pn;
1206
1207
1208 candidate_pn = (expected_pn & ~pn_mask) | truncated_pn;
1209 /* Note that <pn_win> > <pn_hwin>. */
1210 if (candidate_pn < QUIC_MAX_PACKET_NUM - pn_win &&
1211 candidate_pn + pn_hwin <= expected_pn)
1212 return candidate_pn + pn_win;
1213
1214 if (candidate_pn > expected_pn + pn_hwin && candidate_pn >= pn_win)
1215 return candidate_pn - pn_win;
1216
1217 return candidate_pn;
1218}
1219
1220/* Remove the header protection of <pkt> QUIC packet using <tls_ctx> as QUIC TLS
1221 * cryptographic context.
1222 * <largest_pn> is the largest received packet number and <pn> the address of
1223 * the packet number field for this packet with <byte0> address of its first byte.
1224 * <end> points to one byte past the end of this packet.
1225 * Returns 1 if succeeded, 0 if not.
1226 */
1227static int qc_do_rm_hp(struct quic_rx_packet *pkt, struct quic_tls_ctx *tls_ctx,
1228 int64_t largest_pn, unsigned char *pn,
1229 unsigned char *byte0, const unsigned char *end,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001230 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001231{
1232 int ret, outlen, i, pnlen;
1233 uint64_t packet_number;
1234 uint32_t truncated_pn = 0;
1235 unsigned char mask[5] = {0};
1236 unsigned char *sample;
1237 EVP_CIPHER_CTX *cctx;
1238 unsigned char *hp_key;
1239
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001240 /* Check there is enough data in this packet. */
1241 if (end - pn < QUIC_PACKET_PN_MAXLEN + sizeof mask) {
1242 TRACE_DEVEL("too short packet", QUIC_EV_CONN_RMHP, ctx->conn, pkt);
1243 return 0;
1244 }
1245
1246 cctx = EVP_CIPHER_CTX_new();
1247 if (!cctx) {
1248 TRACE_DEVEL("memory allocation failed", QUIC_EV_CONN_RMHP, ctx->conn, pkt);
1249 return 0;
1250 }
1251
1252 ret = 0;
1253 sample = pn + QUIC_PACKET_PN_MAXLEN;
1254
1255 hp_key = tls_ctx->rx.hp_key;
1256 if (!EVP_DecryptInit_ex(cctx, tls_ctx->rx.hp, NULL, hp_key, sample) ||
1257 !EVP_DecryptUpdate(cctx, mask, &outlen, mask, sizeof mask) ||
1258 !EVP_DecryptFinal_ex(cctx, mask, &outlen)) {
1259 TRACE_DEVEL("decryption failed", QUIC_EV_CONN_RMHP, ctx->conn, pkt);
1260 goto out;
1261 }
1262
1263 *byte0 ^= mask[0] & (*byte0 & QUIC_PACKET_LONG_HEADER_BIT ? 0xf : 0x1f);
1264 pnlen = (*byte0 & QUIC_PACKET_PNL_BITMASK) + 1;
1265 for (i = 0; i < pnlen; i++) {
1266 pn[i] ^= mask[i + 1];
1267 truncated_pn = (truncated_pn << 8) | pn[i];
1268 }
1269
1270 packet_number = decode_packet_number(largest_pn, truncated_pn, pnlen * 8);
1271 /* Store remaining information for this unprotected header */
1272 pkt->pn = packet_number;
1273 pkt->pnl = pnlen;
1274
1275 ret = 1;
1276
1277 out:
1278 EVP_CIPHER_CTX_free(cctx);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001279
1280 return ret;
1281}
1282
1283/* Encrypt the payload of a QUIC packet with <pn> as number found at <payload>
1284 * address, with <payload_len> as payload length, <aad> as address of
1285 * the ADD and <aad_len> as AAD length depending on the <tls_ctx> QUIC TLS
1286 * context.
1287 * Returns 1 if succeeded, 0 if not.
1288 */
1289static int quic_packet_encrypt(unsigned char *payload, size_t payload_len,
1290 unsigned char *aad, size_t aad_len, uint64_t pn,
1291 struct quic_tls_ctx *tls_ctx, struct connection *conn)
1292{
1293 unsigned char iv[12];
1294 unsigned char *tx_iv = tls_ctx->tx.iv;
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +01001295 size_t tx_iv_sz = tls_ctx->tx.ivlen;
Frédéric Lécaillef63921f2020-12-18 09:48:20 +01001296 struct enc_debug_info edi;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001297
1298 if (!quic_aead_iv_build(iv, sizeof iv, tx_iv, tx_iv_sz, pn)) {
1299 TRACE_DEVEL("AEAD IV building for encryption failed", QUIC_EV_CONN_HPKT, conn);
Frédéric Lécaillef63921f2020-12-18 09:48:20 +01001300 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001301 }
1302
1303 if (!quic_tls_encrypt(payload, payload_len, aad, aad_len,
1304 tls_ctx->tx.aead, tls_ctx->tx.key, iv)) {
1305 TRACE_DEVEL("QUIC packet encryption failed", QUIC_EV_CONN_HPKT, conn);
Frédéric Lécaillef63921f2020-12-18 09:48:20 +01001306 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001307 }
1308
1309 return 1;
Frédéric Lécaillef63921f2020-12-18 09:48:20 +01001310
1311 err:
1312 enc_debug_info_init(&edi, payload, payload_len, aad, aad_len, pn);
1313 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_ENCPKT, conn, &edi);
1314 return 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001315}
1316
1317/* Decrypt <pkt> QUIC packet with <tls_ctx> as QUIC TLS cryptographic context.
1318 * Returns 1 if succeeded, 0 if not.
1319 */
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001320static int qc_pkt_decrypt(struct quic_rx_packet *pkt, struct quic_enc_level *qel)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001321{
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001322 int ret, kp_changed;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001323 unsigned char iv[12];
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001324 struct quic_tls_ctx *tls_ctx = &qel->tls_ctx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001325 unsigned char *rx_iv = tls_ctx->rx.iv;
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001326 size_t rx_iv_sz = tls_ctx->rx.ivlen;
1327 unsigned char *rx_key = tls_ctx->rx.key;
1328
1329 kp_changed = 0;
1330 if (pkt->type == QUIC_PACKET_TYPE_SHORT) {
1331 /* The two tested bits are not at the same position,
1332 * this is why they are first both inversed.
1333 */
1334 if (!(*pkt->data & QUIC_PACKET_KEY_PHASE_BIT) ^ !(tls_ctx->flags & QUIC_FL_TLS_KP_BIT_SET)) {
1335 if (pkt->pn < tls_ctx->rx.pn) {
1336 /* The lowest packet number of a previous key phase
1337 * cannot be null if it really stores previous key phase
1338 * secrets.
1339 */
1340 if (!pkt->qc->ku.prv_rx.pn)
1341 return 0;
1342
1343 rx_iv = pkt->qc->ku.prv_rx.iv;
1344 rx_key = pkt->qc->ku.prv_rx.key;
1345 }
1346 else if (pkt->pn > qel->pktns->rx.largest_pn) {
1347 /* Next key phase */
1348 kp_changed = 1;
1349 rx_iv = pkt->qc->ku.nxt_rx.iv;
1350 rx_key = pkt->qc->ku.nxt_rx.key;
1351 }
1352 }
1353 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001354
1355 if (!quic_aead_iv_build(iv, sizeof iv, rx_iv, rx_iv_sz, pkt->pn))
1356 return 0;
1357
1358 ret = quic_tls_decrypt(pkt->data + pkt->aad_len, pkt->len - pkt->aad_len,
1359 pkt->data, pkt->aad_len,
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001360 tls_ctx->rx.aead, rx_key, iv);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001361 if (!ret)
1362 return 0;
1363
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01001364 /* Update the keys only if the packet decryption succeeded. */
1365 if (kp_changed) {
1366 quic_tls_rotate_keys(pkt->qc);
1367 /* Toggle the Key Phase bit */
1368 tls_ctx->flags ^= QUIC_FL_TLS_KP_BIT_SET;
1369 /* Store the lowest packet number received for the current key phase */
1370 tls_ctx->rx.pn = pkt->pn;
1371 /* Prepare the next key update */
1372 if (!quic_tls_key_update(pkt->qc))
1373 return 0;
1374 }
1375
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001376 /* Update the packet length (required to parse the frames). */
1377 pkt->len = pkt->aad_len + ret;
1378
1379 return 1;
1380}
1381
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001382/* Remove from <qcs> stream the acknowledged frames.
1383 * Never fails.
1384 */
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001385static int qcs_try_to_consume(struct qcs *qcs)
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001386{
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001387 int ret;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001388 struct eb64_node *frm_node;
1389
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001390 ret = 0;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001391 frm_node = eb64_first(&qcs->tx.acked_frms);
1392 while (frm_node) {
1393 struct quic_stream *strm;
1394
1395 strm = eb64_entry(&frm_node->node, struct quic_stream, offset);
1396 if (strm->offset.key != qcs->tx.ack_offset)
1397 break;
1398
1399 b_del(strm->buf, strm->len);
1400 qcs->tx.ack_offset += strm->len;
1401 frm_node = eb64_next(frm_node);
1402 eb64_delete(&strm->offset);
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001403 ret = 1;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001404 }
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001405
1406 return ret;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001407}
1408
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001409/* Treat <frm> frame whose packet it is attached to has just been acknowledged. */
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001410static inline void qc_treat_acked_tx_frm(struct quic_frame *frm,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001411 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001412{
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001413 int stream_acked;
1414 struct quic_conn *qc = ctx->conn->qc;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001415
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001416 TRACE_PROTO("Removing frame", QUIC_EV_CONN_PRSAFRM, ctx->conn, frm);
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001417 stream_acked = 0;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001418 switch (frm->type) {
1419 case QUIC_FT_STREAM_8 ... QUIC_FT_STREAM_F:
1420 {
1421 struct qcs *qcs = frm->stream.qcs;
1422 struct quic_stream *strm = &frm->stream;
1423
1424 if (qcs->tx.ack_offset == strm->offset.key) {
1425 b_del(strm->buf, strm->len);
1426 qcs->tx.ack_offset += strm->len;
1427 LIST_DELETE(&frm->list);
1428 pool_free(pool_head_quic_frame, frm);
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001429 stream_acked = 1;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001430 }
1431 else {
1432 eb64_insert(&qcs->tx.acked_frms, &strm->offset);
1433 }
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001434 stream_acked |= qcs_try_to_consume(qcs);
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001435 }
1436 break;
1437 default:
1438 LIST_DELETE(&frm->list);
1439 pool_free(pool_head_quic_frame, frm);
1440 }
Frédéric Lécaille1c482c62021-09-20 16:59:51 +02001441
1442 if (stream_acked) {
1443 struct qcc *qcc = qc->qcc;
1444
1445 if (qcc->subs && qcc->subs->events & SUB_RETRY_SEND) {
1446 tasklet_wakeup(qcc->subs->tasklet);
1447 qcc->subs->events &= ~SUB_RETRY_SEND;
1448 if (!qcc->subs->events)
1449 qcc->subs = NULL;
1450 }
1451 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001452}
1453
1454/* Remove <largest> down to <smallest> node entries from <pkts> tree of TX packet,
1455 * deallocating them, and their TX frames.
1456 * Returns the last node reached to be used for the next range.
1457 * May be NULL if <largest> node could not be found.
1458 */
1459static inline struct eb64_node *qc_ackrng_pkts(struct eb_root *pkts, unsigned int *pkt_flags,
1460 struct list *newly_acked_pkts,
1461 struct eb64_node *largest_node,
1462 uint64_t largest, uint64_t smallest,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001463 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001464{
1465 struct eb64_node *node;
1466 struct quic_tx_packet *pkt;
1467
1468 if (largest_node)
1469 node = largest_node;
1470 else {
1471 node = eb64_lookup(pkts, largest);
1472 while (!node && largest > smallest) {
1473 node = eb64_lookup(pkts, --largest);
1474 }
1475 }
1476
1477 while (node && node->key >= smallest) {
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001478 struct quic_frame *frm, *frmbak;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001479
1480 pkt = eb64_entry(&node->node, struct quic_tx_packet, pn_node);
1481 *pkt_flags |= pkt->flags;
Willy Tarreau2b718102021-04-21 07:32:39 +02001482 LIST_INSERT(newly_acked_pkts, &pkt->list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001483 TRACE_PROTO("Removing packet #", QUIC_EV_CONN_PRSAFRM, ctx->conn,, &pkt->pn_node.key);
1484 list_for_each_entry_safe(frm, frmbak, &pkt->frms, list)
1485 qc_treat_acked_tx_frm(frm, ctx);
1486 node = eb64_prev(node);
1487 eb64_delete(&pkt->pn_node);
1488 }
1489
1490 return node;
1491}
1492
1493/* Treat <frm> frame whose packet it is attached to has just been detected as non
1494 * acknowledged.
1495 */
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001496static inline void qc_treat_nacked_tx_frm(struct quic_frame *frm,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001497 struct quic_pktns *pktns,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001498 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001499{
1500 TRACE_PROTO("to resend frame", QUIC_EV_CONN_PRSAFRM, ctx->conn, frm);
Willy Tarreau2b718102021-04-21 07:32:39 +02001501 LIST_DELETE(&frm->list);
Frédéric Lécaillec88df072021-07-27 11:43:11 +02001502 MT_LIST_INSERT(&pktns->tx.frms, &frm->mt_list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001503}
1504
1505
1506/* Free the TX packets of <pkts> list */
1507static inline void free_quic_tx_pkts(struct list *pkts)
1508{
1509 struct quic_tx_packet *pkt, *tmp;
1510
1511 list_for_each_entry_safe(pkt, tmp, pkts, list) {
Willy Tarreau2b718102021-04-21 07:32:39 +02001512 LIST_DELETE(&pkt->list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001513 eb64_delete(&pkt->pn_node);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02001514 quic_tx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001515 }
1516}
1517
1518/* Send a packet loss event nofification to the congestion controller
1519 * attached to <qc> connection with <lost_bytes> the number of lost bytes,
1520 * <oldest_lost>, <newest_lost> the oldest lost packet and newest lost packet
1521 * at <now_us> current time.
1522 * Always succeeds.
1523 */
1524static inline void qc_cc_loss_event(struct quic_conn *qc,
1525 unsigned int lost_bytes,
1526 unsigned int newest_time_sent,
1527 unsigned int period,
1528 unsigned int now_us)
1529{
1530 struct quic_cc_event ev = {
1531 .type = QUIC_CC_EVT_LOSS,
1532 .loss.now_ms = now_ms,
1533 .loss.max_ack_delay = qc->max_ack_delay,
1534 .loss.lost_bytes = lost_bytes,
1535 .loss.newest_time_sent = newest_time_sent,
1536 .loss.period = period,
1537 };
1538
1539 quic_cc_event(&qc->path->cc, &ev);
1540}
1541
1542/* Send a packet ack event nofication for each newly acked packet of
1543 * <newly_acked_pkts> list and free them.
1544 * Always succeeds.
1545 */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001546static inline void qc_treat_newly_acked_pkts(struct ssl_sock_ctx *ctx,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001547 struct list *newly_acked_pkts)
1548{
1549 struct quic_conn *qc = ctx->conn->qc;
1550 struct quic_tx_packet *pkt, *tmp;
1551 struct quic_cc_event ev = { .type = QUIC_CC_EVT_ACK, };
1552
1553 list_for_each_entry_safe(pkt, tmp, newly_acked_pkts, list) {
1554 pkt->pktns->tx.in_flight -= pkt->in_flight_len;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01001555 qc->path->prep_in_flight -= pkt->in_flight_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001556 if (pkt->flags & QUIC_FL_TX_PACKET_ACK_ELICITING)
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +01001557 qc->path->ifae_pkts--;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001558 ev.ack.acked = pkt->in_flight_len;
1559 ev.ack.time_sent = pkt->time_sent;
1560 quic_cc_event(&qc->path->cc, &ev);
Willy Tarreau2b718102021-04-21 07:32:39 +02001561 LIST_DELETE(&pkt->list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001562 eb64_delete(&pkt->pn_node);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02001563 quic_tx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001564 }
1565
1566}
1567
1568/* Handle <pkts> list of lost packets detected at <now_us> handling
1569 * their TX frames.
1570 * Send a packet loss event to the congestion controller if
1571 * in flight packet have been lost.
1572 * Also frees the packet in <pkts> list.
1573 * Never fails.
1574 */
1575static inline void qc_release_lost_pkts(struct quic_pktns *pktns,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001576 struct ssl_sock_ctx *ctx,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001577 struct list *pkts,
1578 uint64_t now_us)
1579{
1580 struct quic_conn *qc = ctx->conn->qc;
1581 struct quic_tx_packet *pkt, *tmp, *oldest_lost, *newest_lost;
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02001582 struct quic_frame *frm, *frmbak;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001583 uint64_t lost_bytes;
1584
1585 lost_bytes = 0;
1586 oldest_lost = newest_lost = NULL;
1587 list_for_each_entry_safe(pkt, tmp, pkts, list) {
1588 lost_bytes += pkt->in_flight_len;
1589 pkt->pktns->tx.in_flight -= pkt->in_flight_len;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01001590 qc->path->prep_in_flight -= pkt->in_flight_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001591 if (pkt->flags & QUIC_FL_TX_PACKET_ACK_ELICITING)
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +01001592 qc->path->ifae_pkts--;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001593 /* Treat the frames of this lost packet. */
1594 list_for_each_entry_safe(frm, frmbak, &pkt->frms, list)
1595 qc_treat_nacked_tx_frm(frm, pktns, ctx);
Willy Tarreau2b718102021-04-21 07:32:39 +02001596 LIST_DELETE(&pkt->list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001597 if (!oldest_lost) {
1598 oldest_lost = newest_lost = pkt;
1599 }
1600 else {
1601 if (newest_lost != oldest_lost)
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02001602 quic_tx_packet_refdec(newest_lost);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001603 newest_lost = pkt;
1604 }
1605 }
1606
1607 if (lost_bytes) {
1608 /* Sent a packet loss event to the congestion controller. */
1609 qc_cc_loss_event(ctx->conn->qc, lost_bytes, newest_lost->time_sent,
1610 newest_lost->time_sent - oldest_lost->time_sent, now_us);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02001611 quic_tx_packet_refdec(oldest_lost);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001612 if (newest_lost != oldest_lost)
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02001613 quic_tx_packet_refdec(newest_lost);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001614 }
1615}
1616
1617/* Look for packet loss from sent packets for <qel> encryption level of a
1618 * connection with <ctx> as I/O handler context. If remove is true, remove them from
1619 * their tree if deemed as lost or set the <loss_time> value the packet number
1620 * space if any not deemed lost.
1621 * Should be called after having received an ACK frame with newly acknowledged
1622 * packets or when the the loss detection timer has expired.
1623 * Always succeeds.
1624 */
1625static void qc_packet_loss_lookup(struct quic_pktns *pktns,
1626 struct quic_conn *qc,
1627 struct list *lost_pkts)
1628{
1629 struct eb_root *pkts;
1630 struct eb64_node *node;
1631 struct quic_loss *ql;
1632 unsigned int loss_delay;
1633
1634 TRACE_ENTER(QUIC_EV_CONN_PKTLOSS, qc->conn, pktns);
1635 pkts = &pktns->tx.pkts;
1636 pktns->tx.loss_time = TICK_ETERNITY;
1637 if (eb_is_empty(pkts))
1638 goto out;
1639
1640 ql = &qc->path->loss;
1641 loss_delay = QUIC_MAX(ql->latest_rtt, ql->srtt >> 3);
1642 loss_delay += loss_delay >> 3;
1643 loss_delay = QUIC_MAX(loss_delay, MS_TO_TICKS(QUIC_TIMER_GRANULARITY));
1644
1645 node = eb64_first(pkts);
1646 while (node) {
1647 struct quic_tx_packet *pkt;
1648 int64_t largest_acked_pn;
1649 unsigned int loss_time_limit, time_sent;
1650
1651 pkt = eb64_entry(&node->node, struct quic_tx_packet, pn_node);
Frédéric Lécaille59b07c72021-08-03 16:06:01 +02001652 largest_acked_pn = HA_ATOMIC_LOAD(&pktns->tx.largest_acked_pn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001653 node = eb64_next(node);
1654 if ((int64_t)pkt->pn_node.key > largest_acked_pn)
1655 break;
1656
1657 time_sent = pkt->time_sent;
1658 loss_time_limit = tick_add(time_sent, loss_delay);
1659 if (tick_is_le(time_sent, now_ms) ||
1660 (int64_t)largest_acked_pn >= pkt->pn_node.key + QUIC_LOSS_PACKET_THRESHOLD) {
1661 eb64_delete(&pkt->pn_node);
Willy Tarreau2b718102021-04-21 07:32:39 +02001662 LIST_APPEND(lost_pkts, &pkt->list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001663 }
1664 else {
1665 pktns->tx.loss_time = tick_first(pktns->tx.loss_time, loss_time_limit);
1666 }
1667 }
1668
1669 out:
1670 TRACE_LEAVE(QUIC_EV_CONN_PKTLOSS, qc->conn, pktns, lost_pkts);
1671}
1672
1673/* Parse ACK frame into <frm> from a buffer at <buf> address with <end> being at
1674 * one byte past the end of this buffer. Also update <rtt_sample> if needed, i.e.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05001675 * if the largest acked packet was newly acked and if there was at least one newly
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001676 * acked ack-eliciting packet.
1677 * Return 1, if succeeded, 0 if not.
1678 */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001679static inline int qc_parse_ack_frm(struct quic_frame *frm, struct ssl_sock_ctx *ctx,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001680 struct quic_enc_level *qel,
1681 unsigned int *rtt_sample,
1682 const unsigned char **pos, const unsigned char *end)
1683{
1684 struct quic_ack *ack = &frm->ack;
1685 uint64_t smallest, largest;
1686 struct eb_root *pkts;
1687 struct eb64_node *largest_node;
1688 unsigned int time_sent, pkt_flags;
1689 struct list newly_acked_pkts = LIST_HEAD_INIT(newly_acked_pkts);
1690 struct list lost_pkts = LIST_HEAD_INIT(lost_pkts);
1691
1692 if (ack->largest_ack > qel->pktns->tx.next_pn) {
1693 TRACE_DEVEL("ACK for not sent packet", QUIC_EV_CONN_PRSAFRM,
1694 ctx->conn,, &ack->largest_ack);
1695 goto err;
1696 }
1697
1698 if (ack->first_ack_range > ack->largest_ack) {
1699 TRACE_DEVEL("too big first ACK range", QUIC_EV_CONN_PRSAFRM,
1700 ctx->conn,, &ack->first_ack_range);
1701 goto err;
1702 }
1703
1704 largest = ack->largest_ack;
1705 smallest = largest - ack->first_ack_range;
1706 pkts = &qel->pktns->tx.pkts;
1707 pkt_flags = 0;
1708 largest_node = NULL;
1709 time_sent = 0;
1710
Frédéric Lécaille59b07c72021-08-03 16:06:01 +02001711 if ((int64_t)ack->largest_ack > HA_ATOMIC_LOAD(&qel->pktns->tx.largest_acked_pn)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001712 largest_node = eb64_lookup(pkts, largest);
1713 if (!largest_node) {
1714 TRACE_DEVEL("Largest acked packet not found",
1715 QUIC_EV_CONN_PRSAFRM, ctx->conn);
Frédéric Lécaille83b7a5b2021-11-17 16:16:04 +01001716 }
1717 else {
1718 time_sent = eb64_entry(&largest_node->node,
1719 struct quic_tx_packet, pn_node)->time_sent;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001720 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001721 }
1722
1723 TRACE_PROTO("ack range", QUIC_EV_CONN_PRSAFRM,
1724 ctx->conn,, &largest, &smallest);
1725 do {
1726 uint64_t gap, ack_range;
1727
1728 qc_ackrng_pkts(pkts, &pkt_flags, &newly_acked_pkts,
1729 largest_node, largest, smallest, ctx);
1730 if (!ack->ack_range_num--)
1731 break;
1732
1733 if (!quic_dec_int(&gap, pos, end))
1734 goto err;
1735
1736 if (smallest < gap + 2) {
1737 TRACE_DEVEL("wrong gap value", QUIC_EV_CONN_PRSAFRM,
1738 ctx->conn,, &gap, &smallest);
1739 goto err;
1740 }
1741
1742 largest = smallest - gap - 2;
1743 if (!quic_dec_int(&ack_range, pos, end))
1744 goto err;
1745
1746 if (largest < ack_range) {
1747 TRACE_DEVEL("wrong ack range value", QUIC_EV_CONN_PRSAFRM,
1748 ctx->conn,, &largest, &ack_range);
1749 goto err;
1750 }
1751
1752 /* Do not use this node anymore. */
1753 largest_node = NULL;
1754 /* Next range */
1755 smallest = largest - ack_range;
1756
1757 TRACE_PROTO("ack range", QUIC_EV_CONN_PRSAFRM,
1758 ctx->conn,, &largest, &smallest);
1759 } while (1);
1760
1761 /* Flag this packet number space as having received an ACK. */
Frédéric Lécaille67f47d02021-08-19 15:19:09 +02001762 HA_ATOMIC_OR(&qel->pktns->flags, QUIC_FL_PKTNS_ACK_RECEIVED);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001763
1764 if (time_sent && (pkt_flags & QUIC_FL_TX_PACKET_ACK_ELICITING)) {
1765 *rtt_sample = tick_remain(time_sent, now_ms);
Frédéric Lécaille59b07c72021-08-03 16:06:01 +02001766 HA_ATOMIC_STORE(&qel->pktns->tx.largest_acked_pn, ack->largest_ack);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001767 }
1768
1769 if (!LIST_ISEMPTY(&newly_acked_pkts)) {
1770 if (!eb_is_empty(&qel->pktns->tx.pkts)) {
1771 qc_packet_loss_lookup(qel->pktns, ctx->conn->qc, &lost_pkts);
1772 if (!LIST_ISEMPTY(&lost_pkts))
1773 qc_release_lost_pkts(qel->pktns, ctx, &lost_pkts, now_ms);
1774 }
1775 qc_treat_newly_acked_pkts(ctx, &newly_acked_pkts);
1776 if (quic_peer_validated_addr(ctx))
1777 ctx->conn->qc->path->loss.pto_count = 0;
1778 qc_set_timer(ctx);
1779 }
1780
1781
1782 return 1;
1783
1784 err:
1785 free_quic_tx_pkts(&newly_acked_pkts);
1786 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_PRSAFRM, ctx->conn);
1787 return 0;
1788}
1789
Frédéric Lécaille6f0fadb2021-09-28 09:04:12 +02001790/* This function gives the detail of the SSL error. It is used only
1791 * if the debug mode and the verbose mode are activated. It dump all
1792 * the SSL error until the stack was empty.
1793 */
1794static forceinline void qc_ssl_dump_errors(struct connection *conn)
1795{
1796 if (unlikely(global.mode & MODE_DEBUG)) {
1797 while (1) {
1798 unsigned long ret;
1799
1800 ret = ERR_get_error();
1801 if (!ret)
1802 return;
1803
1804 fprintf(stderr, "conn. @%p OpenSSL error[0x%lx] %s: %s\n", conn, ret,
1805 ERR_func_error_string(ret), ERR_reason_error_string(ret));
1806 }
1807 }
1808}
1809
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001810int ssl_sock_get_alpn(const struct connection *conn, void *xprt_ctx,
1811 const char **str, int *len);
1812
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001813/* Provide CRYPTO data to the TLS stack found at <data> with <len> as length
1814 * from <qel> encryption level with <ctx> as QUIC connection context.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05001815 * Remaining parameter are there for debugging purposes.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001816 * Return 1 if succeeded, 0 if not.
1817 */
1818static inline int qc_provide_cdata(struct quic_enc_level *el,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02001819 struct ssl_sock_ctx *ctx,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001820 const unsigned char *data, size_t len,
1821 struct quic_rx_packet *pkt,
1822 struct quic_rx_crypto_frm *cf)
1823{
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001824 int ssl_err, state;
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02001825 struct quic_conn *qc;
Amaury Denoyellee2288c32021-12-03 14:44:21 +01001826 const struct qcc_app_ops *app_ops;
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001827 const char *alpn;
1828 int alpn_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001829
1830 TRACE_ENTER(QUIC_EV_CONN_SSLDATA, ctx->conn);
1831 ssl_err = SSL_ERROR_NONE;
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02001832 qc = ctx->conn->qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001833 if (SSL_provide_quic_data(ctx->ssl, el->level, data, len) != 1) {
1834 TRACE_PROTO("SSL_provide_quic_data() error",
1835 QUIC_EV_CONN_SSLDATA, ctx->conn, pkt, cf, ctx->ssl);
1836 goto err;
1837 }
1838
1839 el->rx.crypto.offset += len;
1840 TRACE_PROTO("in order CRYPTO data",
1841 QUIC_EV_CONN_SSLDATA, ctx->conn,, cf, ctx->ssl);
1842
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001843 state = HA_ATOMIC_LOAD(&qc->state);
1844 if (state < QUIC_HS_ST_COMPLETE) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001845 ssl_err = SSL_do_handshake(ctx->ssl);
1846 if (ssl_err != 1) {
1847 ssl_err = SSL_get_error(ctx->ssl, ssl_err);
1848 if (ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE) {
1849 TRACE_PROTO("SSL handshake",
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001850 QUIC_EV_CONN_HDSHK, ctx->conn, &state, &ssl_err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001851 goto out;
1852 }
1853
1854 TRACE_DEVEL("SSL handshake error",
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001855 QUIC_EV_CONN_HDSHK, ctx->conn, &state, &ssl_err);
Frédéric Lécaille7c881bd2021-09-28 09:05:59 +02001856 qc_ssl_dump_errors(ctx->conn);
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01001857 ERR_clear_error();
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001858 goto err;
1859 }
1860
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001861 TRACE_PROTO("SSL handshake OK", QUIC_EV_CONN_HDSHK, ctx->conn, &state);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001862 if (objt_listener(ctx->conn->target))
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001863 HA_ATOMIC_STORE(&qc->state, QUIC_HS_ST_CONFIRMED);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001864 else
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001865 HA_ATOMIC_STORE(&qc->state, QUIC_HS_ST_COMPLETE);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001866 } else {
1867 ssl_err = SSL_process_quic_post_handshake(ctx->ssl);
1868 if (ssl_err != 1) {
1869 ssl_err = SSL_get_error(ctx->ssl, ssl_err);
1870 if (ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE) {
1871 TRACE_DEVEL("SSL post handshake",
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001872 QUIC_EV_CONN_HDSHK, ctx->conn, &state, &ssl_err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001873 goto out;
1874 }
1875
1876 TRACE_DEVEL("SSL post handshake error",
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001877 QUIC_EV_CONN_HDSHK, ctx->conn, &state, &ssl_err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001878 goto err;
1879 }
1880
1881 TRACE_PROTO("SSL post handshake succeeded",
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02001882 QUIC_EV_CONN_HDSHK, ctx->conn, &state);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001883 }
1884
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001885 conn_get_alpn(ctx->conn, &alpn, &alpn_len);
1886 if (alpn_len >= 2 && memcmp(alpn, "h3", 2) == 0) {
Amaury Denoyellee2288c32021-12-03 14:44:21 +01001887 app_ops = qc->qcc->app_ops = &h3_ops;
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001888 }
Amaury Denoyelle154bc7f2021-11-12 16:09:54 +01001889 else if (alpn_len >= 10 && memcmp(alpn, "hq-interop", 10) == 0) {
Amaury Denoyellee2288c32021-12-03 14:44:21 +01001890 app_ops = qc->qcc->app_ops = &hq_interop_ops;
Amaury Denoyelle154bc7f2021-11-12 16:09:54 +01001891 }
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001892 else {
1893 /* TODO RFC9001 8.1. Protocol Negotiation
1894 * must return no_application_protocol TLS alert
1895 */
Frédéric Lécaille067a82b2021-11-19 17:02:20 +01001896 TRACE_PROTO("No matching ALPN", QUIC_EV_CONN_SSLDATA, ctx->conn);
1897 goto err;
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01001898 }
1899
Amaury Denoyellee2288c32021-12-03 14:44:21 +01001900 if (app_ops->init) {
1901 if (!app_ops->init(qc->qcc))
1902 goto err;
1903 }
1904
1905 if (app_ops->finalize)
1906 app_ops->finalize(qc->qcc->ctx);
1907
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01001908 out:
1909 TRACE_LEAVE(QUIC_EV_CONN_SSLDATA, ctx->conn);
1910 return 1;
1911
1912 err:
1913 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_SSLDATA, ctx->conn);
1914 return 0;
1915}
1916
Frédéric Lécailledfbae762021-02-18 09:59:01 +01001917/* Allocate a new STREAM RX frame from <stream_fm> STREAM frame attached to
1918 * <pkt> RX packet.
1919 * Return it if succeeded, NULL if not.
1920 */
1921static inline
1922struct quic_rx_strm_frm *new_quic_rx_strm_frm(struct quic_stream *stream_frm,
1923 struct quic_rx_packet *pkt)
1924{
1925 struct quic_rx_strm_frm *frm;
1926
1927 frm = pool_alloc(pool_head_quic_rx_strm_frm);
1928 if (frm) {
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02001929 frm->offset_node.key = stream_frm->offset.key;
Frédéric Lécailledfbae762021-02-18 09:59:01 +01001930 frm->len = stream_frm->len;
1931 frm->data = stream_frm->data;
1932 frm->pkt = pkt;
1933 }
1934
1935 return frm;
1936}
1937
1938/* Retrieve as an ebtree node the stream with <id> as ID, possibly allocates
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05001939 * several streams, depending on the already open ones.
Frédéric Lécailledfbae762021-02-18 09:59:01 +01001940 * Return this node if succeeded, NULL if not.
1941 */
1942static struct eb64_node *qcc_get_qcs(struct qcc *qcc, uint64_t id)
1943{
1944 unsigned int strm_type;
1945 int64_t sub_id;
1946 struct eb64_node *strm_node;
1947
1948 TRACE_ENTER(QUIC_EV_CONN_PSTRM, qcc->conn);
1949
1950 strm_type = id & QCS_ID_TYPE_MASK;
1951 sub_id = id >> QCS_ID_TYPE_SHIFT;
1952 strm_node = NULL;
1953 if (qc_local_stream_id(qcc, id)) {
1954 /* Local streams: this stream must be already opened. */
1955 strm_node = eb64_lookup(&qcc->streams_by_id, id);
1956 if (!strm_node) {
1957 TRACE_PROTO("Unknown stream ID", QUIC_EV_CONN_PSTRM, qcc->conn);
1958 goto out;
1959 }
1960 }
1961 else {
1962 /* Remote streams. */
1963 struct eb_root *strms;
1964 uint64_t largest_id;
1965 enum qcs_type qcs_type;
1966
1967 strms = &qcc->streams_by_id;
1968 qcs_type = qcs_id_type(id);
1969 if (sub_id + 1 > qcc->strms[qcs_type].max_streams) {
1970 TRACE_PROTO("Streams limit reached", QUIC_EV_CONN_PSTRM, qcc->conn);
1971 goto out;
1972 }
1973
1974 /* Note: ->largest_id was initialized with (uint64_t)-1 as value, 0 being a
1975 * correct value.
1976 */
1977 largest_id = qcc->strms[qcs_type].largest_id;
1978 if (sub_id > (int64_t)largest_id) {
1979 /* RFC: "A stream ID that is used out of order results in all streams
1980 * of that type with lower-numbered stream IDs also being opened".
1981 * So, let's "open" these streams.
1982 */
1983 int64_t i;
1984 struct qcs *qcs;
1985
1986 qcs = NULL;
1987 for (i = largest_id + 1; i <= sub_id; i++) {
Amaury Denoyelledeed7772021-12-03 11:36:46 +01001988 uint64_t id = (i << QCS_ID_TYPE_SHIFT) | strm_type;
1989 enum qcs_type type = id & QCS_ID_DIR_BIT ? QCS_CLT_UNI : QCS_CLT_BIDI;
1990 qcs = qcs_new(qcc, id, type);
Frédéric Lécailledfbae762021-02-18 09:59:01 +01001991 if (!qcs) {
1992 TRACE_PROTO("Could not allocate a new stream",
1993 QUIC_EV_CONN_PSTRM, qcc->conn);
1994 goto out;
1995 }
1996
1997 qcc->strms[qcs_type].largest_id = i;
1998 }
1999 if (qcs)
2000 strm_node = &qcs->by_id;
2001 }
2002 else {
2003 strm_node = eb64_lookup(strms, id);
2004 }
2005 }
2006
2007 TRACE_LEAVE(QUIC_EV_CONN_PSTRM, qcc->conn);
2008 return strm_node;
2009
2010 out:
2011 TRACE_LEAVE(QUIC_EV_CONN_PSTRM, qcc->conn);
2012 return NULL;
2013}
2014
2015/* Copy as most as possible STREAM data from <strm_frm> into <strm> stream.
2016 * Returns the number of bytes copied or -1 if failed. Also update <strm_frm> frame
2017 * to reflect the data which have been consumed.
2018 */
2019static size_t qc_strm_cpy(struct buffer *buf, struct quic_stream *strm_frm)
2020{
2021 size_t ret;
2022
2023 ret = 0;
2024 while (strm_frm->len) {
2025 size_t try;
2026
2027 try = b_contig_space(buf);
2028 if (!try)
2029 break;
2030
2031 if (try > strm_frm->len)
2032 try = strm_frm->len;
2033 memcpy(b_tail(buf), strm_frm->data, try);
2034 strm_frm->len -= try;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002035 strm_frm->offset.key += try;
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002036 b_add(buf, try);
2037 ret += try;
2038 }
2039
2040 return ret;
2041}
2042
2043/* Handle <strm_frm> bidirectional STREAM frame. Depending on its ID, several
2044 * streams may be open. The data are copied to the stream RX buffer if possible.
2045 * If not, the STREAM frame is stored to be treated again later.
2046 * We rely on the flow control so that not to store too much STREAM frames.
2047 * Return 1 if succeeded, 0 if not.
2048 */
2049static int qc_handle_bidi_strm_frm(struct quic_rx_packet *pkt,
2050 struct quic_stream *strm_frm,
2051 struct quic_conn *qc)
2052{
2053 struct qcs *strm;
2054 struct eb64_node *strm_node, *frm_node;
2055 struct quic_rx_strm_frm *frm;
2056
2057 strm_node = qcc_get_qcs(qc->qcc, strm_frm->id);
2058 if (!strm_node) {
2059 TRACE_PROTO("Stream not found", QUIC_EV_CONN_PSTRM, qc->conn);
2060 return 0;
2061 }
2062
2063 strm = eb64_entry(&strm_node->node, struct qcs, by_id);
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002064 frm_node = eb64_lookup(&strm->rx.frms, strm_frm->offset.key);
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002065 /* FIXME: handle the case where this frame overlap others */
2066 if (frm_node) {
2067 TRACE_PROTO("Already existing stream data",
2068 QUIC_EV_CONN_PSTRM, qc->conn);
2069 goto out;
2070 }
2071
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002072 if (strm_frm->offset.key == strm->rx.offset) {
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002073 int ret;
2074
Amaury Denoyelle1e308ff2021-10-12 18:14:12 +02002075 if (!qc_get_buf(strm, &strm->rx.buf))
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002076 goto store_frm;
2077
2078 ret = qc_strm_cpy(&strm->rx.buf, strm_frm);
Amaury Denoyelleb9ce14e2021-11-08 09:13:42 +01002079 if (ret && qc->qcc->app_ops->decode_qcs(strm, qc->qcc->ctx) < 0) {
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002080 TRACE_PROTO("Decoding error", QUIC_EV_CONN_PSTRM);
2081 return 0;
2082 }
2083
2084 strm->rx.offset += ret;
2085 }
2086
2087 if (!strm_frm->len)
2088 goto out;
2089
2090 store_frm:
2091 frm = new_quic_rx_strm_frm(strm_frm, pkt);
2092 if (!frm) {
2093 TRACE_PROTO("Could not alloc RX STREAM frame",
2094 QUIC_EV_CONN_PSTRM, qc->conn);
2095 return 0;
2096 }
2097
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002098 eb64_insert(&strm->rx.frms, &frm->offset_node);
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002099 quic_rx_packet_refinc(pkt);
2100
2101 out:
2102 return 1;
2103}
2104
2105/* Handle <strm_frm> unidirectional STREAM frame. Depending on its ID, several
2106 * streams may be open. The data are copied to the stream RX buffer if possible.
2107 * If not, the STREAM frame is stored to be treated again later.
2108 * We rely on the flow control so that not to store too much STREAM frames.
2109 * Return 1 if succeeded, 0 if not.
2110 */
2111static int qc_handle_uni_strm_frm(struct quic_rx_packet *pkt,
2112 struct quic_stream *strm_frm,
2113 struct quic_conn *qc)
2114{
2115 struct qcs *strm;
2116 struct eb64_node *strm_node, *frm_node;
2117 struct quic_rx_strm_frm *frm;
2118 size_t strm_frm_len;
2119
2120 strm_node = qcc_get_qcs(qc->qcc, strm_frm->id);
2121 if (!strm_node) {
2122 TRACE_PROTO("Stream not found", QUIC_EV_CONN_PSTRM, qc->conn);
2123 return 0;
2124 }
2125
2126 strm = eb64_entry(&strm_node->node, struct qcs, by_id);
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002127 frm_node = eb64_lookup(&strm->rx.frms, strm_frm->offset.key);
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002128 /* FIXME: handle the case where this frame overlap others */
2129 if (frm_node) {
2130 TRACE_PROTO("Already existing stream data",
2131 QUIC_EV_CONN_PSTRM, qc->conn);
2132 goto out;
2133 }
2134
2135 strm_frm_len = strm_frm->len;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002136 if (strm_frm->offset.key == strm->rx.offset) {
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002137 int ret;
2138
Amaury Denoyelle1e308ff2021-10-12 18:14:12 +02002139 if (!qc_get_buf(strm, &strm->rx.buf))
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002140 goto store_frm;
2141
2142 /* qc_strm_cpy() will modify the offset, depending on the number
2143 * of bytes copied.
2144 */
2145 ret = qc_strm_cpy(&strm->rx.buf, strm_frm);
2146 /* Inform the application of the arrival of this new stream */
2147 if (!strm->rx.offset && !qc->qcc->app_ops->attach_ruqs(strm, qc->qcc->ctx)) {
2148 TRACE_PROTO("Could not set an uni-stream", QUIC_EV_CONN_PSTRM, qc->conn);
2149 return 0;
2150 }
2151
Amaury Denoyellea3f222d2021-12-06 11:24:00 +01002152 if (ret)
2153 qcs_notify_recv(strm);
2154
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002155 strm_frm->offset.key += ret;
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002156 }
2157 /* Take this frame into an account for the stream flow control */
2158 strm->rx.offset += strm_frm_len;
2159 /* It all the data were provided to the application, there is no need to
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05002160 * store any more information for it.
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002161 */
2162 if (!strm_frm->len)
2163 goto out;
2164
2165 store_frm:
2166 frm = new_quic_rx_strm_frm(strm_frm, pkt);
2167 if (!frm) {
2168 TRACE_PROTO("Could not alloc RX STREAM frame",
2169 QUIC_EV_CONN_PSTRM, qc->conn);
2170 return 0;
2171 }
2172
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02002173 eb64_insert(&strm->rx.frms, &frm->offset_node);
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002174 quic_rx_packet_refinc(pkt);
2175
2176 out:
2177 return 1;
2178}
2179
2180static inline int qc_handle_strm_frm(struct quic_rx_packet *pkt,
2181 struct quic_stream *strm_frm,
2182 struct quic_conn *qc)
2183{
2184 if (strm_frm->id & QCS_ID_DIR_BIT)
2185 return qc_handle_uni_strm_frm(pkt, strm_frm, qc);
2186 else
2187 return qc_handle_bidi_strm_frm(pkt, strm_frm, qc);
2188}
2189
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002190/* Parse all the frames of <pkt> QUIC packet for QUIC connection with <ctx>
2191 * as I/O handler context and <qel> as encryption level.
2192 * Returns 1 if succeeded, 0 if failed.
2193 */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02002194static int qc_parse_pkt_frms(struct quic_rx_packet *pkt, struct ssl_sock_ctx *ctx,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002195 struct quic_enc_level *qel)
2196{
2197 struct quic_frame frm;
2198 const unsigned char *pos, *end;
2199 struct quic_conn *conn = ctx->conn->qc;
2200
2201 TRACE_ENTER(QUIC_EV_CONN_PRSHPKT, ctx->conn);
2202 /* Skip the AAD */
2203 pos = pkt->data + pkt->aad_len;
2204 end = pkt->data + pkt->len;
2205
2206 while (pos < end) {
2207 if (!qc_parse_frm(&frm, pkt, &pos, end, conn))
2208 goto err;
2209
2210 switch (frm.type) {
Frédéric Lécaille0c140202020-12-09 15:56:48 +01002211 case QUIC_FT_PADDING:
Frédéric Lécaille0c140202020-12-09 15:56:48 +01002212 break;
2213 case QUIC_FT_PING:
2214 break;
2215 case QUIC_FT_ACK:
2216 {
2217 unsigned int rtt_sample;
2218
2219 rtt_sample = 0;
2220 if (!qc_parse_ack_frm(&frm, ctx, qel, &rtt_sample, &pos, end))
2221 goto err;
2222
2223 if (rtt_sample) {
2224 unsigned int ack_delay;
2225
2226 ack_delay = !quic_application_pktns(qel->pktns, conn) ? 0 :
2227 MS_TO_TICKS(QUIC_MIN(quic_ack_delay_ms(&frm.ack, conn), conn->max_ack_delay));
2228 quic_loss_srtt_update(&conn->path->loss, rtt_sample, ack_delay, conn);
2229 }
Frédéric Lécaille0c140202020-12-09 15:56:48 +01002230 break;
2231 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002232 case QUIC_FT_CRYPTO:
2233 if (frm.crypto.offset != qel->rx.crypto.offset) {
2234 struct quic_rx_crypto_frm *cf;
2235
2236 cf = pool_alloc(pool_head_quic_rx_crypto_frm);
2237 if (!cf) {
2238 TRACE_DEVEL("CRYPTO frame allocation failed",
2239 QUIC_EV_CONN_PRSHPKT, ctx->conn);
2240 goto err;
2241 }
2242
2243 cf->offset_node.key = frm.crypto.offset;
2244 cf->len = frm.crypto.len;
2245 cf->data = frm.crypto.data;
2246 cf->pkt = pkt;
2247 eb64_insert(&qel->rx.crypto.frms, &cf->offset_node);
2248 quic_rx_packet_refinc(pkt);
2249 }
2250 else {
2251 /* XXX TO DO: <cf> is used only for the traces. */
2252 struct quic_rx_crypto_frm cf = { };
2253
2254 cf.offset_node.key = frm.crypto.offset;
2255 cf.len = frm.crypto.len;
2256 if (!qc_provide_cdata(qel, ctx,
2257 frm.crypto.data, frm.crypto.len,
2258 pkt, &cf))
2259 goto err;
2260 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002261 break;
Frédéric Lécaille0c140202020-12-09 15:56:48 +01002262 case QUIC_FT_STREAM_8:
2263 case QUIC_FT_STREAM_9:
2264 case QUIC_FT_STREAM_A:
2265 case QUIC_FT_STREAM_B:
2266 case QUIC_FT_STREAM_C:
2267 case QUIC_FT_STREAM_D:
2268 case QUIC_FT_STREAM_E:
2269 case QUIC_FT_STREAM_F:
Frédéric Lécaille242fb1b2020-12-31 12:45:38 +01002270 {
2271 struct quic_stream *stream = &frm.stream;
2272
2273 TRACE_PROTO("STREAM frame", QUIC_EV_CONN_PSTRM, ctx->conn, &frm);
2274 if (objt_listener(ctx->conn->target)) {
2275 if (stream->id & QUIC_STREAM_FRAME_ID_INITIATOR_BIT)
2276 goto err;
2277 } else if (!(stream->id & QUIC_STREAM_FRAME_ID_INITIATOR_BIT))
2278 goto err;
Frédéric Lécailledfbae762021-02-18 09:59:01 +01002279
2280 if (!qc_handle_strm_frm(pkt, stream, ctx->conn->qc))
2281 goto err;
2282
Frédéric Lécaille242fb1b2020-12-31 12:45:38 +01002283 break;
2284 }
Frédéric Lécaillef366cb72021-11-18 10:57:18 +01002285 case QUIC_FT_MAX_DATA:
2286 case QUIC_FT_MAX_STREAM_DATA:
2287 case QUIC_FT_MAX_STREAMS_BIDI:
2288 case QUIC_FT_MAX_STREAMS_UNI:
2289 case QUIC_FT_DATA_BLOCKED:
2290 case QUIC_FT_STREAM_DATA_BLOCKED:
2291 case QUIC_FT_STREAMS_BLOCKED_BIDI:
2292 case QUIC_FT_STREAMS_BLOCKED_UNI:
2293 break;
Frédéric Lécaille0c140202020-12-09 15:56:48 +01002294 case QUIC_FT_NEW_CONNECTION_ID:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002295 break;
2296 case QUIC_FT_CONNECTION_CLOSE:
2297 case QUIC_FT_CONNECTION_CLOSE_APP:
Amaury Denoyelledeed7772021-12-03 11:36:46 +01002298 /* TODO warn the mux to close the connection */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002299 break;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002300 case QUIC_FT_HANDSHAKE_DONE:
2301 if (objt_listener(ctx->conn->target))
2302 goto err;
2303
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02002304 HA_ATOMIC_STORE(&conn->state, QUIC_HS_ST_CONFIRMED);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002305 break;
2306 default:
2307 goto err;
2308 }
2309 }
2310
2311 /* The server must switch from INITIAL to HANDSHAKE handshake state when it
2312 * has successfully parse a Handshake packet. The Initial encryption must also
2313 * be discarded.
2314 */
Frédéric Lécaille8c27de72021-09-20 11:00:46 +02002315 if (pkt->type == QUIC_PACKET_TYPE_HANDSHAKE && objt_listener(ctx->conn->target)) {
2316 int state = HA_ATOMIC_LOAD(&conn->state);
2317
2318 if (state >= QUIC_HS_ST_SERVER_INITIAL) {
2319 quic_tls_discard_keys(&conn->els[QUIC_TLS_ENC_LEVEL_INITIAL]);
2320 TRACE_PROTO("discarding Initial pktns", QUIC_EV_CONN_PRSHPKT, ctx->conn);
2321 quic_pktns_discard(conn->els[QUIC_TLS_ENC_LEVEL_INITIAL].pktns, conn);
2322 qc_set_timer(ctx);
2323 if (state < QUIC_HS_ST_SERVER_HANDSHAKE)
2324 HA_ATOMIC_STORE(&conn->state, QUIC_HS_ST_SERVER_HANDSHAKE);
2325 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002326 }
2327
2328 TRACE_LEAVE(QUIC_EV_CONN_PRSHPKT, ctx->conn);
2329 return 1;
2330
2331 err:
2332 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_PRSHPKT, ctx->conn);
2333 return 0;
2334}
2335
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002336/* Write <dglen> datagram length and <pkt> first packet address into <cbuf> ring
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05002337 * buffer. This is the responsibility of the caller to check there is enough
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002338 * room in <cbuf>. Also increase the <cbuf> write index consequently.
2339 * This function must be called only after having built a correct datagram.
2340 * Always succeeds.
2341 */
2342static inline void qc_set_dg(struct cbuf *cbuf,
2343 uint16_t dglen, struct quic_tx_packet *pkt)
2344{
2345 write_u16(cb_wr(cbuf), dglen);
2346 write_ptr(cb_wr(cbuf) + sizeof dglen, pkt);
2347 cb_add(cbuf, dglen + sizeof dglen + sizeof pkt);
2348}
2349
Frédéric Lécaillee2660e62021-11-23 11:36:51 +01002350/* Prepare as much as possible packets into <qr> ring buffer for
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002351 * the QUIC connection with <ctx> as I/O handler context, possibly concatenating
2352 * several packets in the same datagram. A header made of two fields is added
2353 * to each datagram: the datagram length followed by the address of the first
2354 * packet in this datagram.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002355 * Returns 1 if succeeded, or 0 if something wrong happened.
2356 */
Frédéric Lécaillee2660e62021-11-23 11:36:51 +01002357static int qc_prep_pkts(struct qring *qr, struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002358{
2359 struct quic_conn *qc;
2360 enum quic_tls_enc_level tel, next_tel;
2361 struct quic_enc_level *qel;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002362 struct cbuf *cbuf;
2363 unsigned char *end_buf, *end, *pos, *spos;
2364 struct quic_tx_packet *first_pkt, *cur_pkt, *prv_pkt;
2365 /* length of datagrams */
2366 uint16_t dglen;
2367 size_t total;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002368 int padding;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002369 /* Each datagram is prepended with its length followed by the
2370 * address of the first packet in the datagram.
2371 */
2372 size_t dg_headlen = sizeof dglen + sizeof first_pkt;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002373
2374 TRACE_ENTER(QUIC_EV_CONN_PHPKTS, ctx->conn);
2375 qc = ctx->conn->qc;
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02002376 if (!quic_get_tls_enc_levels(&tel, &next_tel, HA_ATOMIC_LOAD(&qc->state))) {
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002377 TRACE_DEVEL("unknown enc. levels", QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002378 goto err;
2379 }
2380
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002381 start:
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002382 dglen = 0;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002383 total = 0;
2384 padding = 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002385 qel = &qc->els[tel];
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002386 cbuf = qr->cbuf;
2387 spos = pos = cb_wr(cbuf);
2388 /* Leave at least <dglen> bytes at the end of this buffer
2389 * to ensure there is enough room to mark the end of prepared
2390 * contiguous data with a zero length.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002391 */
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002392 end_buf = pos + cb_contig_space(cbuf) - sizeof dglen;
2393 first_pkt = prv_pkt = NULL;
2394 while (end_buf - pos >= (int)qc->path->mtu + dg_headlen || prv_pkt) {
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01002395 int err, nb_ptos, ack, cc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002396 enum quic_pkt_type pkt_type;
2397
Frédéric Lécaillec5e72b92020-12-02 16:11:40 +01002398 TRACE_POINT(QUIC_EV_CONN_PHPKTS, ctx->conn, qel);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01002399 nb_ptos = ack = 0;
2400 cc = HA_ATOMIC_LOAD(&qc->flags) & QUIC_FL_CONN_IMMEDIATE_CLOSE;
2401 if (!cc) {
2402 if (!prv_pkt) {
2403 /* Consume a PTO dgram only if building a new dgrams (!prv_pkt) */
2404 do {
2405 nb_ptos = HA_ATOMIC_LOAD(&qc->tx.nb_pto_dgrams);
2406 } while (nb_ptos && !HA_ATOMIC_CAS(&qc->tx.nb_pto_dgrams, &nb_ptos, nb_ptos - 1));
2407 }
2408 ack = HA_ATOMIC_BTR(&qc->flags, QUIC_FL_PKTNS_ACK_REQUIRED_BIT);
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02002409 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002410 /* Do not build any more packet if the TX secrets are not available or
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01002411 * if there is nothing to send, i.e. if no CONNECTION_CLOSE or ACK are required
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002412 * and if there is no more packets to send upon PTO expiration
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01002413 * and if there is no more CRYPTO data available or in flight
2414 * congestion control limit is reached for prepared data
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002415 */
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01002416 if (!(qel->tls_ctx.tx.flags & QUIC_FL_TLS_SECRETS_SET) ||
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01002417 (!cc && !ack && !nb_ptos &&
Frédéric Lécaille67f47d02021-08-19 15:19:09 +02002418 (MT_LIST_ISEMPTY(&qel->pktns->tx.frms) ||
2419 qc->path->prep_in_flight >= qc->path->cwnd))) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002420 TRACE_DEVEL("nothing more to do", QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002421 /* Set the current datagram as prepared into <cbuf> if
2422 * the was already a correct packet which was previously written.
2423 */
2424 if (prv_pkt)
2425 qc_set_dg(cbuf, dglen, first_pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002426 break;
2427 }
2428
2429 pkt_type = quic_tls_level_pkt_type(tel);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002430 if (!prv_pkt) {
2431 /* Leave room for the datagram header */
2432 pos += dg_headlen;
Frédéric Lécailleca98a7f2021-11-10 17:30:15 +01002433 if (!quic_peer_validated_addr(ctx) && objt_listener(ctx->conn->target)) {
2434 if (qc->tx.prep_bytes >= 3 * qc->rx.bytes)
2435 qc->flags |= QUIC_FL_CONN_ANTI_AMPLIFICATION_REACHED;
2436 end = pos + QUIC_MIN(qc->path->mtu, 3 * qc->rx.bytes - qc->tx.prep_bytes);
2437 }
2438 else {
2439 end = pos + qc->path->mtu;
2440 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002441 }
2442
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002443 cur_pkt = qc_build_pkt(&pos, end, qel, qc, dglen, padding,
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01002444 pkt_type, ack, nb_ptos, cc, &err);
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02002445 /* Restore the PTO dgrams counter if a packet could not be built */
Frédéric Lécaille67f47d02021-08-19 15:19:09 +02002446 if (err < 0) {
2447 if (!prv_pkt && nb_ptos)
2448 HA_ATOMIC_ADD(&qc->tx.nb_pto_dgrams, 1);
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002449 if (ack)
2450 HA_ATOMIC_BTS(&qc->flags, QUIC_FL_PKTNS_ACK_REQUIRED_BIT);
Frédéric Lécaille67f47d02021-08-19 15:19:09 +02002451 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002452 switch (err) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002453 case -2:
2454 goto err;
2455 case -1:
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002456 /* If there was already a correct packet present, set the
2457 * current datagram as prepared into <cbuf>.
2458 */
2459 if (prv_pkt) {
2460 qc_set_dg(cbuf, dglen, first_pkt);
2461 goto stop_build;
2462 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002463 goto out;
2464 default:
Frédéric Lécaille67f47d02021-08-19 15:19:09 +02002465 /* This is to please to GCC. We cannot have (err >= 0 && !cur_pkt) */
2466 if (!cur_pkt)
2467 goto err;
2468
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002469 total += cur_pkt->len;
2470 /* keep trace of the first packet in the datagram */
2471 if (!first_pkt)
2472 first_pkt = cur_pkt;
2473 /* Attach the current one to the previous one */
2474 if (prv_pkt)
2475 prv_pkt->next = cur_pkt;
2476 /* Let's say we have to build a new dgram */
2477 prv_pkt = NULL;
2478 dglen += cur_pkt->len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002479 /* Discard the Initial encryption keys as soon as
2480 * a handshake packet could be built.
2481 */
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02002482 if (HA_ATOMIC_LOAD(&qc->state) == QUIC_HS_ST_CLIENT_INITIAL &&
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002483 pkt_type == QUIC_PACKET_TYPE_HANDSHAKE) {
2484 quic_tls_discard_keys(&qc->els[QUIC_TLS_ENC_LEVEL_INITIAL]);
Frédéric Lécailleacd43a52021-09-20 11:18:24 +02002485 TRACE_PROTO("discarding Initial pktns", QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002486 quic_pktns_discard(qc->els[QUIC_TLS_ENC_LEVEL_INITIAL].pktns, qc);
2487 qc_set_timer(ctx);
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02002488 HA_ATOMIC_STORE(&qc->state, QUIC_HS_ST_CLIENT_HANDSHAKE);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002489 }
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002490 /* If the data for the current encryption level have all been sent,
2491 * select the next level.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002492 */
Frédéric Lécailled0670882021-08-19 07:53:27 +02002493 if ((tel == QUIC_TLS_ENC_LEVEL_INITIAL || tel == QUIC_TLS_ENC_LEVEL_HANDSHAKE) &&
Frédéric Lécaillef7980962021-08-19 17:35:21 +02002494 (MT_LIST_ISEMPTY(&qel->pktns->tx.frms) ||
2495 (next_tel != QUIC_TLS_ENC_LEVEL_NONE && qc->els[next_tel].pktns->tx.in_flight))) {
Frédéric Lécaille4bade772021-08-23 08:54:28 +02002496 /* If QUIC_TLS_ENC_LEVEL_HANDSHAKE was already reached let's try QUIC_TLS_ENC_LEVEL_APP */
2497 if (tel == QUIC_TLS_ENC_LEVEL_HANDSHAKE && next_tel == tel)
2498 next_tel = QUIC_TLS_ENC_LEVEL_APP;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002499 tel = next_tel;
2500 qel = &qc->els[tel];
Frédéric Lécaillec88df072021-07-27 11:43:11 +02002501 if (!MT_LIST_ISEMPTY(&qel->pktns->tx.frms)) {
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002502 /* If there is data for the next level, do not
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002503 * consume a datagram.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002504 */
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002505 prv_pkt = cur_pkt;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002506 }
2507 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002508 }
2509
2510 /* If we have to build a new datagram, set the current datagram as
2511 * prepared into <cbuf>.
2512 */
2513 if (!prv_pkt) {
2514 qc_set_dg(cbuf, dglen, first_pkt);
2515 first_pkt = NULL;
2516 dglen = 0;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01002517 padding = 0;
2518 }
2519 else if (prv_pkt->type == QUIC_TLS_ENC_LEVEL_INITIAL &&
2520 (objt_server(qc->conn->target) ||
2521 prv_pkt->flags & QUIC_FL_TX_PACKET_ACK_ELICITING)) {
2522 padding = 1;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002523 }
2524 }
2525
2526 stop_build:
2527 /* Reset <wr> writer index if in front of <rd> index */
2528 if (end_buf - pos < (int)qc->path->mtu + dg_headlen) {
2529 int rd = HA_ATOMIC_LOAD(&cbuf->rd);
2530
2531 TRACE_DEVEL("buffer full", QUIC_EV_CONN_PHPKTS, ctx->conn);
2532 if (cb_contig_space(cbuf) >= sizeof(uint16_t)) {
2533 if ((pos != spos && cbuf->wr > rd) || (pos == spos && rd <= cbuf->wr)) {
2534 /* Mark the end of contiguous data for the reader */
2535 write_u16(cb_wr(cbuf), 0);
2536 cb_add(cbuf, sizeof(uint16_t));
2537 }
2538 }
2539
2540 if (rd && rd <= cbuf->wr) {
2541 cb_wr_reset(cbuf);
2542 if (pos == spos) {
2543 /* Reuse the same buffer if nothing was built. */
2544 goto start;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002545 }
2546 }
2547 }
2548
2549 out:
2550 TRACE_LEAVE(QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002551 return total;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002552
2553 err:
2554 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002555 return -1;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002556}
2557
2558/* Send the QUIC packets which have been prepared for QUIC connections
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002559 * from <qr> ring buffer with <ctx> as I/O handler context.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002560 */
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002561int qc_send_ppkts(struct qring *qr, struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002562{
2563 struct quic_conn *qc;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002564 struct cbuf *cbuf;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002565
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002566 qc = ctx->conn->qc;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002567 cbuf = qr->cbuf;
2568 while (cb_contig_data(cbuf)) {
2569 unsigned char *pos;
2570 struct buffer tmpbuf = { };
2571 struct quic_tx_packet *first_pkt, *pkt, *next_pkt;
2572 uint16_t dglen;
2573 size_t headlen = sizeof dglen + sizeof first_pkt;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002574 unsigned int time_sent;
2575
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002576 pos = cb_rd(cbuf);
2577 dglen = read_u16(pos);
2578 /* End of prepared datagrams.
2579 * Reset the reader index only if in front of the writer index.
2580 */
2581 if (!dglen) {
2582 int wr = HA_ATOMIC_LOAD(&cbuf->wr);
2583
2584 if (wr && wr < cbuf->rd) {
2585 cb_rd_reset(cbuf);
2586 continue;
2587 }
2588 break;
2589 }
2590
2591 pos += sizeof dglen;
2592 first_pkt = read_ptr(pos);
2593 pos += sizeof first_pkt;
2594 tmpbuf.area = (char *)pos;
2595 tmpbuf.size = tmpbuf.data = dglen;
2596
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01002597 TRACE_PROTO("to send", QUIC_EV_CONN_SPPKTS, ctx->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002598 for (pkt = first_pkt; pkt; pkt = pkt->next)
2599 quic_tx_packet_refinc(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002600 if (ctx->xprt->snd_buf(qc->conn, qc->conn->xprt_ctx,
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002601 &tmpbuf, tmpbuf.data, 0) <= 0) {
2602 for (pkt = first_pkt; pkt; pkt = pkt->next)
2603 quic_tx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002604 break;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002605 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002606
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002607 cb_del(cbuf, dglen + headlen);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002608 qc->tx.bytes += tmpbuf.data;
2609 time_sent = now_ms;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002610
2611 for (pkt = first_pkt; pkt; pkt = next_pkt) {
2612 pkt->time_sent = time_sent;
2613 if (pkt->flags & QUIC_FL_TX_PACKET_ACK_ELICITING) {
2614 pkt->pktns->tx.time_of_last_eliciting = time_sent;
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +01002615 qc->path->ifae_pkts++;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002616 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002617 qc->path->in_flight += pkt->in_flight_len;
2618 pkt->pktns->tx.in_flight += pkt->in_flight_len;
2619 if (pkt->in_flight_len)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002620 qc_set_timer(ctx);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002621 TRACE_PROTO("sent pkt", QUIC_EV_CONN_SPPKTS, ctx->conn, pkt);
2622 next_pkt = pkt->next;
Frédéric Lécaille0eb60c52021-07-19 14:48:36 +02002623 eb64_insert(&pkt->pktns->tx.pkts, &pkt->pn_node);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02002624 quic_tx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002625 }
2626 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002627
2628 return 1;
2629}
2630
2631/* Build all the frames which must be sent just after the handshake have succeeded.
2632 * This is essentially NEW_CONNECTION_ID frames. A QUIC server must also send
2633 * a HANDSHAKE_DONE frame.
2634 * Return 1 if succeeded, 0 if not.
2635 */
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002636static int quic_build_post_handshake_frames(struct quic_conn *qc)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002637{
2638 int i;
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002639 struct quic_enc_level *qel;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002640 struct quic_frame *frm;
2641
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002642 qel = &qc->els[QUIC_TLS_ENC_LEVEL_APP];
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002643 /* Only servers must send a HANDSHAKE_DONE frame. */
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002644 if (!objt_server(qc->conn->target)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002645 frm = pool_alloc(pool_head_quic_frame);
Frédéric Lécaille153d4a82021-01-06 12:12:39 +01002646 if (!frm)
2647 return 0;
2648
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002649 frm->type = QUIC_FT_HANDSHAKE_DONE;
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002650 MT_LIST_APPEND(&qel->pktns->tx.frms, &frm->mt_list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002651 }
2652
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002653 for (i = 1; i < qc->tx.params.active_connection_id_limit; i++) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002654 struct quic_connection_id *cid;
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01002655 struct listener *l = __objt_listener(qc->conn->target);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002656
2657 frm = pool_alloc(pool_head_quic_frame);
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01002658 if (!frm)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002659 goto err;
2660
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01002661 cid = new_quic_cid(&qc->cids, qc, i);
2662 if (!cid)
2663 goto err;
2664
2665 /* insert the allocated CID in the receiver tree */
2666 HA_RWLOCK_WRLOCK(QUIC_LOCK, &l->rx.cids_lock);
2667 ebmb_insert(&l->rx.cids, &cid->node, cid->cid.len);
2668 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &l->rx.cids_lock);
2669
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002670 quic_connection_id_to_frm_cpy(frm, cid);
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002671 MT_LIST_APPEND(&qel->pktns->tx.frms, &frm->mt_list);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002672 }
2673
2674 return 1;
2675
2676 err:
Frédéric Lécaille522c65c2021-08-03 14:29:03 +02002677 free_quic_conn_cids(qc);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002678 return 0;
2679}
2680
2681/* Deallocate <l> list of ACK ranges. */
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002682void free_quic_arngs(struct quic_arngs *arngs)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002683{
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002684 struct eb64_node *n;
2685 struct quic_arng_node *ar;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002686
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002687 n = eb64_first(&arngs->root);
2688 while (n) {
2689 struct eb64_node *next;
2690
2691 ar = eb64_entry(&n->node, struct quic_arng_node, first);
2692 next = eb64_next(n);
2693 eb64_delete(n);
2694 free(ar);
2695 n = next;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002696 }
2697}
2698
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002699/* Return the gap value between <p> and <q> ACK ranges where <q> follows <p> in
2700 * descending order.
2701 */
2702static inline size_t sack_gap(struct quic_arng_node *p,
2703 struct quic_arng_node *q)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002704{
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002705 return p->first.key - q->last - 2;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002706}
2707
2708
2709/* Remove the last elements of <ack_ranges> list of ack range updating its
2710 * encoded size until it goes below <limit>.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05002711 * Returns 1 if succeeded, 0 if not (no more element to remove).
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002712 */
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002713static int quic_rm_last_ack_ranges(struct quic_arngs *arngs, size_t limit)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002714{
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002715 struct eb64_node *last, *prev;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002716
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002717 last = eb64_last(&arngs->root);
2718 while (last && arngs->enc_sz > limit) {
2719 struct quic_arng_node *last_node, *prev_node;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002720
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002721 prev = eb64_prev(last);
2722 if (!prev)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002723 return 0;
2724
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002725 last_node = eb64_entry(&last->node, struct quic_arng_node, first);
2726 prev_node = eb64_entry(&prev->node, struct quic_arng_node, first);
2727 arngs->enc_sz -= quic_int_getsize(last_node->last - last_node->first.key);
2728 arngs->enc_sz -= quic_int_getsize(sack_gap(prev_node, last_node));
2729 arngs->enc_sz -= quic_decint_size_diff(arngs->sz);
2730 --arngs->sz;
2731 eb64_delete(last);
2732 pool_free(pool_head_quic_arng, last);
2733 last = prev;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002734 }
2735
2736 return 1;
2737}
2738
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002739/* Set the encoded size of <arngs> QUIC ack ranges. */
2740static void quic_arngs_set_enc_sz(struct quic_arngs *arngs)
2741{
2742 struct eb64_node *node, *next;
2743 struct quic_arng_node *ar, *ar_next;
2744
2745 node = eb64_last(&arngs->root);
2746 if (!node)
2747 return;
2748
2749 ar = eb64_entry(&node->node, struct quic_arng_node, first);
2750 arngs->enc_sz = quic_int_getsize(ar->last) +
2751 quic_int_getsize(ar->last - ar->first.key) + quic_int_getsize(arngs->sz - 1);
2752
2753 while ((next = eb64_prev(node))) {
2754 ar_next = eb64_entry(&next->node, struct quic_arng_node, first);
2755 arngs->enc_sz += quic_int_getsize(sack_gap(ar, ar_next)) +
2756 quic_int_getsize(ar_next->last - ar_next->first.key);
2757 node = next;
2758 ar = eb64_entry(&node->node, struct quic_arng_node, first);
2759 }
2760}
2761
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002762/* Insert <ar> ack range into <argns> tree of ack ranges.
2763 * Returns the ack range node which has been inserted if succeeded, NULL if not.
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002764 */
2765static inline
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002766struct quic_arng_node *quic_insert_new_range(struct quic_arngs *arngs,
2767 struct quic_arng *ar)
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002768{
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002769 struct quic_arng_node *new_ar;
2770
2771 new_ar = pool_alloc(pool_head_quic_arng);
2772 if (new_ar) {
2773 new_ar->first.key = ar->first;
2774 new_ar->last = ar->last;
2775 eb64_insert(&arngs->root, &new_ar->first);
2776 arngs->sz++;
2777 }
2778
2779 return new_ar;
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002780}
2781
2782/* Update <arngs> tree of ACK ranges with <ar> as new ACK range value.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002783 * Note that this function computes the number of bytes required to encode
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002784 * this tree of ACK ranges in descending order.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002785 *
2786 * Descending order
2787 * ------------->
2788 * range1 range2
2789 * ..........|--------|..............|--------|
2790 * ^ ^ ^ ^
2791 * | | | |
2792 * last1 first1 last2 first2
2793 * ..........+--------+--------------+--------+......
2794 * diff1 gap12 diff2
2795 *
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002796 * To encode the previous list of ranges we must encode integers as follows in
2797 * descending order:
2798 * enc(last2),enc(diff2),enc(gap12),enc(diff1)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002799 * with diff1 = last1 - first1
2800 * diff2 = last2 - first2
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002801 * gap12 = first1 - last2 - 2 (>= 0)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002802 *
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002803 */
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002804int quic_update_ack_ranges_list(struct quic_arngs *arngs,
2805 struct quic_arng *ar)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002806{
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002807 struct eb64_node *le;
2808 struct quic_arng_node *new_node;
2809 struct eb64_node *new;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002810
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002811 new = NULL;
2812 if (eb_is_empty(&arngs->root)) {
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002813 new_node = quic_insert_new_range(arngs, ar);
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002814 if (!new_node)
2815 return 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002816
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002817 goto out;
2818 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002819
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002820 le = eb64_lookup_le(&arngs->root, ar->first);
2821 if (!le) {
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002822 new_node = quic_insert_new_range(arngs, ar);
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002823 if (!new_node)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002824 return 0;
Frédéric Lécaille0e257832021-11-16 10:54:19 +01002825
2826 new = &new_node->first;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002827 }
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002828 else {
2829 struct quic_arng_node *le_ar =
2830 eb64_entry(&le->node, struct quic_arng_node, first);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002831
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002832 /* Already existing range */
Frédéric Lécailled3f4dd82021-06-02 15:36:12 +02002833 if (le_ar->last >= ar->last)
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002834 return 1;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002835
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002836 if (le_ar->last + 1 >= ar->first) {
2837 le_ar->last = ar->last;
2838 new = le;
2839 new_node = le_ar;
2840 }
2841 else {
Frédéric Lécaille9ef64cd2021-06-02 15:27:34 +02002842 new_node = quic_insert_new_range(arngs, ar);
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002843 if (!new_node)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002844 return 0;
Frédéric Lécaille8ba42762021-06-02 17:40:09 +02002845
2846 new = &new_node->first;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002847 }
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002848 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002849
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002850 /* Verify that the new inserted node does not overlap the nodes
2851 * which follow it.
2852 */
2853 if (new) {
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002854 struct eb64_node *next;
2855 struct quic_arng_node *next_node;
2856
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002857 while ((next = eb64_next(new))) {
2858 next_node =
2859 eb64_entry(&next->node, struct quic_arng_node, first);
Frédéric Lécaillec825eba2021-06-02 17:38:13 +02002860 if (new_node->last + 1 < next_node->first.key)
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002861 break;
2862
2863 if (next_node->last > new_node->last)
2864 new_node->last = next_node->last;
2865 eb64_delete(next);
Frédéric Lécaillebaea2842021-06-02 15:04:03 +02002866 pool_free(pool_head_quic_arng, next_node);
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002867 /* Decrement the size of these ranges. */
2868 arngs->sz--;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002869 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002870 }
2871
Frédéric Lécaille82b86522021-08-10 09:54:03 +02002872 out:
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002873 quic_arngs_set_enc_sz(arngs);
2874
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002875 return 1;
2876}
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002877/* Remove the header protection of packets at <el> encryption level.
2878 * Always succeeds.
2879 */
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02002880static inline void qc_rm_hp_pkts(struct quic_enc_level *el, struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002881{
2882 struct quic_tls_ctx *tls_ctx;
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02002883 struct quic_rx_packet *pqpkt;
2884 struct mt_list *pkttmp1, pkttmp2;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002885 struct quic_enc_level *app_qel;
2886
2887 TRACE_ENTER(QUIC_EV_CONN_ELRMHP, ctx->conn);
2888 app_qel = &ctx->conn->qc->els[QUIC_TLS_ENC_LEVEL_APP];
2889 /* A server must not process incoming 1-RTT packets before the handshake is complete. */
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02002890 if (el == app_qel && objt_listener(ctx->conn->target) &&
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02002891 HA_ATOMIC_LOAD(&ctx->conn->qc->state) < QUIC_HS_ST_COMPLETE) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002892 TRACE_PROTO("hp not removed (handshake not completed)",
2893 QUIC_EV_CONN_ELRMHP, ctx->conn);
2894 goto out;
2895 }
2896 tls_ctx = &el->tls_ctx;
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02002897 mt_list_for_each_entry_safe(pqpkt, &el->rx.pqpkts, list, pkttmp1, pkttmp2) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002898 if (!qc_do_rm_hp(pqpkt, tls_ctx, el->pktns->rx.largest_pn,
2899 pqpkt->data + pqpkt->pn_offset,
2900 pqpkt->data, pqpkt->data + pqpkt->len, ctx)) {
2901 TRACE_PROTO("hp removing error", QUIC_EV_CONN_ELRMHP, ctx->conn);
2902 /* XXX TO DO XXX */
2903 }
2904 else {
2905 /* The AAD includes the packet number field */
2906 pqpkt->aad_len = pqpkt->pn_offset + pqpkt->pnl;
2907 /* Store the packet into the tree of packets to decrypt. */
2908 pqpkt->pn_node.key = pqpkt->pn;
Frédéric Lécaille98cdeb22021-07-26 16:38:14 +02002909 HA_RWLOCK_WRLOCK(QUIC_LOCK, &el->rx.pkts_rwlock);
Frédéric Lécailleebc3fc12021-09-22 08:34:21 +02002910 eb64_insert(&el->rx.pkts, &pqpkt->pn_node);
2911 quic_rx_packet_refinc(pqpkt);
Frédéric Lécaille98cdeb22021-07-26 16:38:14 +02002912 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &el->rx.pkts_rwlock);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002913 TRACE_PROTO("hp removed", QUIC_EV_CONN_ELRMHP, ctx->conn, pqpkt);
2914 }
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02002915 MT_LIST_DELETE_SAFE(pkttmp1);
2916 quic_rx_packet_refdec(pqpkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002917 }
2918
2919 out:
2920 TRACE_LEAVE(QUIC_EV_CONN_ELRMHP, ctx->conn);
2921}
2922
2923/* Process all the CRYPTO frame at <el> encryption level.
2924 * Return 1 if succeeded, 0 if not.
2925 */
2926static inline int qc_treat_rx_crypto_frms(struct quic_enc_level *el,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02002927 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002928{
2929 struct eb64_node *node;
2930
2931 TRACE_ENTER(QUIC_EV_CONN_RXCDATA, ctx->conn);
2932 node = eb64_first(&el->rx.crypto.frms);
2933 while (node) {
2934 struct quic_rx_crypto_frm *cf;
2935
2936 cf = eb64_entry(&node->node, struct quic_rx_crypto_frm, offset_node);
2937 if (cf->offset_node.key != el->rx.crypto.offset)
2938 break;
2939
2940 if (!qc_provide_cdata(el, ctx, cf->data, cf->len, cf->pkt, cf))
2941 goto err;
2942
2943 node = eb64_next(node);
2944 quic_rx_packet_refdec(cf->pkt);
2945 eb64_delete(&cf->offset_node);
2946 pool_free(pool_head_quic_rx_crypto_frm, cf);
2947 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002948 TRACE_LEAVE(QUIC_EV_CONN_RXCDATA, ctx->conn);
2949 return 1;
2950
2951 err:
2952 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_RXCDATA, ctx->conn);
2953 return 0;
2954}
2955
Frédéric Lécaille3230bcf2021-09-22 15:15:46 +02002956/* Process all the packets at <el> and <next_el> encryption level.
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05002957 * This is the caller responsibility to check that <cur_el> is different of <next_el>
Frédéric Lécaille3230bcf2021-09-22 15:15:46 +02002958 * as pointer value.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002959 * Return 1 if succeeded, 0 if not.
2960 */
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002961int qc_treat_rx_pkts(struct quic_enc_level *cur_el, struct quic_enc_level *next_el,
2962 struct ssl_sock_ctx *ctx, int force_ack)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002963{
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002964 struct eb64_node *node;
Frédéric Lécaille120ea6f2021-07-26 16:42:56 +02002965 int64_t largest_pn = -1;
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002966 struct quic_conn *qc = ctx->conn->qc;
2967 struct quic_enc_level *qel = cur_el;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002968
2969 TRACE_ENTER(QUIC_EV_CONN_ELRXPKTS, ctx->conn);
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002970 qel = cur_el;
2971 next_tel:
2972 if (!qel)
2973 goto out;
2974
2975 HA_RWLOCK_WRLOCK(QUIC_LOCK, &qel->rx.pkts_rwlock);
2976 node = eb64_first(&qel->rx.pkts);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002977 while (node) {
2978 struct quic_rx_packet *pkt;
2979
2980 pkt = eb64_entry(&node->node, struct quic_rx_packet, pn_node);
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002981 TRACE_PROTO("new packet", QUIC_EV_CONN_ELRXPKTS,
2982 ctx->conn, pkt, NULL, ctx->ssl);
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01002983 if (!qc_pkt_decrypt(pkt, qel)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002984 /* Drop the packet */
2985 TRACE_PROTO("packet decryption failed -> dropped",
2986 QUIC_EV_CONN_ELRXPKTS, ctx->conn, pkt);
2987 }
2988 else {
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002989 if (!qc_parse_pkt_frms(pkt, ctx, qel)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01002990 /* Drop the packet */
2991 TRACE_PROTO("packet parsing failed -> dropped",
2992 QUIC_EV_CONN_ELRXPKTS, ctx->conn, pkt);
2993 }
2994 else {
Frédéric Lécaille8090b512020-11-30 16:19:22 +01002995 struct quic_arng ar = { .first = pkt->pn, .last = pkt->pn };
2996
Frédéric Lécaille120ea6f2021-07-26 16:42:56 +02002997 if (pkt->flags & QUIC_FL_RX_PACKET_ACK_ELICITING &&
Frédéric Lécaille2766e782021-08-30 17:16:07 +02002998 (!(HA_ATOMIC_ADD_FETCH(&qc->rx.nb_ack_eliciting, 1) & 1) || force_ack))
2999 HA_ATOMIC_BTS(&qc->flags, QUIC_FL_PKTNS_ACK_REQUIRED_BIT);
Frédéric Lécaille120ea6f2021-07-26 16:42:56 +02003000 if (pkt->pn > largest_pn)
3001 largest_pn = pkt->pn;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003002 /* Update the list of ranges to acknowledge. */
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003003 if (!quic_update_ack_ranges_list(&qel->pktns->rx.arngs, &ar))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003004 TRACE_DEVEL("Could not update ack range list",
3005 QUIC_EV_CONN_ELRXPKTS, ctx->conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003006 }
3007 }
3008 node = eb64_next(node);
Frédéric Lécailleebc3fc12021-09-22 08:34:21 +02003009 eb64_delete(&pkt->pn_node);
3010 quic_rx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003011 }
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003012 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qel->rx.pkts_rwlock);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003013
Frédéric Lécaille120ea6f2021-07-26 16:42:56 +02003014 /* Update the largest packet number. */
3015 if (largest_pn != -1)
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003016 HA_ATOMIC_UPDATE_MAX(&qel->pktns->rx.largest_pn, largest_pn);
3017 if (!qc_treat_rx_crypto_frms(qel, ctx))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003018 goto err;
3019
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003020 if (qel == cur_el) {
Frédéric Lécaille3230bcf2021-09-22 15:15:46 +02003021 BUG_ON(qel == next_el);
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003022 qel = next_el;
3023 goto next_tel;
3024 }
3025
3026 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003027 TRACE_LEAVE(QUIC_EV_CONN_ELRXPKTS, ctx->conn);
3028 return 1;
3029
3030 err:
3031 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_ELRXPKTS, ctx->conn);
3032 return 0;
3033}
3034
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003035/* QUIC connection packet handler task. */
3036struct task *quic_conn_io_cb(struct task *t, void *context, unsigned int state)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003037{
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003038 int ret, ssl_err;
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003039 struct ssl_sock_ctx *ctx;
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02003040 struct quic_conn *qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003041 enum quic_tls_enc_level tel, next_tel;
3042 struct quic_enc_level *qel, *next_qel;
3043 struct quic_tls_ctx *tls_ctx;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003044 struct qring *qr; // Tx ring
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003045 int prev_st, st, force_ack;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003046
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003047 ctx = context;
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02003048 qc = ctx->conn->qc;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003049 qr = NULL;
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003050 st = HA_ATOMIC_LOAD(&qc->state);
3051 TRACE_ENTER(QUIC_EV_CONN_HDSHK, ctx->conn, &st);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003052 ssl_err = SSL_ERROR_NONE;
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003053 start:
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003054 if (!quic_get_tls_enc_levels(&tel, &next_tel, st))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003055 goto err;
3056
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02003057 qel = &qc->els[tel];
Frédéric Lécaillef7980962021-08-19 17:35:21 +02003058 next_qel = next_tel == QUIC_TLS_ENC_LEVEL_NONE ? NULL : &qc->els[next_tel];
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003059
3060 next_level:
3061 tls_ctx = &qel->tls_ctx;
3062
3063 /* If the header protection key for this level has been derived,
3064 * remove the packet header protections.
3065 */
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02003066 if (!MT_LIST_ISEMPTY(&qel->rx.pqpkts) &&
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003067 (tls_ctx->rx.flags & QUIC_FL_TLS_SECRETS_SET))
3068 qc_rm_hp_pkts(qel, ctx);
3069
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003070 prev_st = HA_ATOMIC_LOAD(&qc->state);
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003071 force_ack = qel == &qc->els[QUIC_TLS_ENC_LEVEL_INITIAL] ||
3072 qel == &qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE];
3073 if (!qc_treat_rx_pkts(qel, next_qel, ctx, force_ack))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003074 goto err;
3075
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003076 st = HA_ATOMIC_LOAD(&qc->state);
Frédéric Lécaille754f99e2021-08-19 15:35:59 +02003077 if (st >= QUIC_HS_ST_COMPLETE &&
3078 (prev_st == QUIC_HS_ST_SERVER_INITIAL || prev_st == QUIC_HS_ST_SERVER_HANDSHAKE)) {
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003079 /* Discard the Handshake keys. */
3080 quic_tls_discard_keys(&qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE]);
Frédéric Lécailleacd43a52021-09-20 11:18:24 +02003081 TRACE_PROTO("discarding Handshake pktns", QUIC_EV_CONN_PHPKTS, ctx->conn);
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003082 quic_pktns_discard(qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE].pktns, qc);
3083 qc_set_timer(ctx);
3084 if (!quic_build_post_handshake_frames(qc))
3085 goto err;
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003086 goto start;
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003087 }
3088
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003089 if (!qr)
3090 qr = MT_LIST_POP(qc->tx.qring_list, typeof(qr), mt_list);
Frédéric Lécaillee2660e62021-11-23 11:36:51 +01003091 ret = qc_prep_pkts(qr, ctx);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003092 if (ret == -1)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003093 goto err;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003094 else if (ret == 0)
3095 goto skip_send;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003096
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003097 if (!qc_send_ppkts(qr, ctx))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003098 goto err;
3099
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003100 skip_send:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003101 /* Check if there is something to do for the next level.
3102 */
Frédéric Lécaille3230bcf2021-09-22 15:15:46 +02003103 if (next_qel && next_qel != qel &&
3104 (next_qel->tls_ctx.rx.flags & QUIC_FL_TLS_SECRETS_SET) &&
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02003105 (!MT_LIST_ISEMPTY(&next_qel->rx.pqpkts) || !eb_is_empty(&next_qel->rx.pkts))) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003106 qel = next_qel;
Frédéric Lécaille3230bcf2021-09-22 15:15:46 +02003107 next_qel = NULL;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003108 goto next_level;
3109 }
3110
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003111 MT_LIST_APPEND(qc->tx.qring_list, &qr->mt_list);
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003112 TRACE_LEAVE(QUIC_EV_CONN_HDSHK, ctx->conn, &st);
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003113 return t;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003114
3115 err:
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02003116 if (qr)
3117 MT_LIST_APPEND(qc->tx.qring_list, &qr->mt_list);
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003118 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_HDSHK, ctx->conn, &st, &ssl_err);
Frédéric Lécaille91ae7aa2021-08-03 16:45:39 +02003119 return t;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003120}
3121
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05003122/* Uninitialize <qel> QUIC encryption level. Never fails. */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003123static void quic_conn_enc_level_uninit(struct quic_enc_level *qel)
3124{
3125 int i;
3126
3127 for (i = 0; i < qel->tx.crypto.nb_buf; i++) {
3128 if (qel->tx.crypto.bufs[i]) {
3129 pool_free(pool_head_quic_crypto_buf, qel->tx.crypto.bufs[i]);
3130 qel->tx.crypto.bufs[i] = NULL;
3131 }
3132 }
Willy Tarreau61cfdf42021-02-20 10:46:51 +01003133 ha_free(&qel->tx.crypto.bufs);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003134}
3135
3136/* Initialize QUIC TLS encryption level with <level<> as level for <qc> QUIC
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05003137 * connection allocating everything needed.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003138 * Returns 1 if succeeded, 0 if not.
3139 */
3140static int quic_conn_enc_level_init(struct quic_conn *qc,
3141 enum quic_tls_enc_level level)
3142{
3143 struct quic_enc_level *qel;
3144
3145 qel = &qc->els[level];
3146 qel->level = quic_to_ssl_enc_level(level);
3147 qel->tls_ctx.rx.aead = qel->tls_ctx.tx.aead = NULL;
3148 qel->tls_ctx.rx.md = qel->tls_ctx.tx.md = NULL;
3149 qel->tls_ctx.rx.hp = qel->tls_ctx.tx.hp = NULL;
3150 qel->tls_ctx.rx.flags = 0;
3151 qel->tls_ctx.tx.flags = 0;
Frédéric Lécaillefc768ec2021-11-23 21:02:04 +01003152 qel->tls_ctx.flags = 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003153
3154 qel->rx.pkts = EB_ROOT;
Frédéric Lécaille98cdeb22021-07-26 16:38:14 +02003155 HA_RWLOCK_INIT(&qel->rx.pkts_rwlock);
Frédéric Lécaillea11d0e22021-06-07 14:38:18 +02003156 MT_LIST_INIT(&qel->rx.pqpkts);
Frédéric Lécaille9054d1b2021-07-26 16:23:53 +02003157 qel->rx.crypto.offset = 0;
3158 qel->rx.crypto.frms = EB_ROOT_UNIQUE;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003159
3160 /* Allocate only one buffer. */
3161 qel->tx.crypto.bufs = malloc(sizeof *qel->tx.crypto.bufs);
3162 if (!qel->tx.crypto.bufs)
3163 goto err;
3164
3165 qel->tx.crypto.bufs[0] = pool_alloc(pool_head_quic_crypto_buf);
3166 if (!qel->tx.crypto.bufs[0])
3167 goto err;
3168
3169 qel->tx.crypto.bufs[0]->sz = 0;
3170 qel->tx.crypto.nb_buf = 1;
3171
3172 qel->tx.crypto.sz = 0;
3173 qel->tx.crypto.offset = 0;
3174
3175 return 1;
3176
3177 err:
Willy Tarreau61cfdf42021-02-20 10:46:51 +01003178 ha_free(&qel->tx.crypto.bufs);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003179 return 0;
3180}
3181
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003182/* Release all the memory allocated for <conn> QUIC connection. */
3183static void quic_conn_free(struct quic_conn *conn)
3184{
3185 int i;
3186
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003187 if (!conn)
3188 return;
3189
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003190 free_quic_conn_cids(conn);
Amaury Denoyelle2af19852021-09-30 11:03:28 +02003191
3192 /* remove the connection from receiver cids trees */
Frédéric Lécailleb0006ee2021-11-03 19:01:31 +01003193 HA_RWLOCK_WRLOCK(QUIC_LOCK, &conn->li->rx.cids_lock);
Amaury Denoyelle2af19852021-09-30 11:03:28 +02003194 ebmb_delete(&conn->odcid_node);
3195 ebmb_delete(&conn->scid_node);
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01003196
Frédéric Lécailleb0006ee2021-11-03 19:01:31 +01003197 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &conn->li->rx.cids_lock);
Amaury Denoyelle2af19852021-09-30 11:03:28 +02003198
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003199 for (i = 0; i < QUIC_TLS_ENC_LEVEL_MAX; i++)
3200 quic_conn_enc_level_uninit(&conn->els[i]);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003201 if (conn->timer_task)
3202 task_destroy(conn->timer_task);
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003203 pool_free(pool_head_quic_conn_rxbuf, conn->rx.buf.area);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003204 pool_free(pool_head_quic_conn, conn);
3205}
3206
Amaury Denoyelle414cac52021-09-22 11:14:37 +02003207void quic_close(struct connection *conn, void *xprt_ctx)
3208{
3209 struct ssl_sock_ctx *conn_ctx = xprt_ctx;
3210 struct quic_conn *qc = conn_ctx->conn->qc;
3211 quic_conn_free(qc);
3212}
3213
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003214/* Callback called upon loss detection and PTO timer expirations. */
Willy Tarreau144f84a2021-03-02 16:09:26 +01003215static struct task *process_timer(struct task *task, void *ctx, unsigned int state)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003216{
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02003217 struct ssl_sock_ctx *conn_ctx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003218 struct quic_conn *qc;
3219 struct quic_pktns *pktns;
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003220 int st;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003221
3222 conn_ctx = task->context;
3223 qc = conn_ctx->conn->qc;
Frédéric Lécaillef7e0b8d2020-12-16 17:33:11 +01003224 TRACE_ENTER(QUIC_EV_CONN_PTIMER, conn_ctx->conn,
3225 NULL, NULL, &qc->path->ifae_pkts);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003226 task->expire = TICK_ETERNITY;
3227 pktns = quic_loss_pktns(qc);
3228 if (tick_isset(pktns->tx.loss_time)) {
3229 struct list lost_pkts = LIST_HEAD_INIT(lost_pkts);
3230
3231 qc_packet_loss_lookup(pktns, qc, &lost_pkts);
3232 if (!LIST_ISEMPTY(&lost_pkts))
3233 qc_release_lost_pkts(pktns, ctx, &lost_pkts, now_ms);
3234 qc_set_timer(conn_ctx);
3235 goto out;
3236 }
3237
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003238 st = HA_ATOMIC_LOAD(&qc->state);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003239 if (qc->path->in_flight) {
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003240 pktns = quic_pto_pktns(qc, st >= QUIC_HS_ST_COMPLETE, NULL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003241 pktns->tx.pto_probe = 1;
3242 }
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003243 else if (objt_server(qc->conn->target) && st <= QUIC_HS_ST_COMPLETE) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003244 struct quic_enc_level *iel = &qc->els[QUIC_TLS_ENC_LEVEL_INITIAL];
3245 struct quic_enc_level *hel = &qc->els[QUIC_TLS_ENC_LEVEL_HANDSHAKE];
3246
3247 if (hel->tls_ctx.rx.flags == QUIC_FL_TLS_SECRETS_SET)
3248 hel->pktns->tx.pto_probe = 1;
3249 if (iel->tls_ctx.rx.flags == QUIC_FL_TLS_SECRETS_SET)
3250 iel->pktns->tx.pto_probe = 1;
3251 }
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02003252 HA_ATOMIC_STORE(&qc->tx.nb_pto_dgrams, QUIC_MAX_NB_PTO_DGRAMS);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003253 tasklet_wakeup(conn_ctx->wait_event.tasklet);
3254 qc->path->loss.pto_count++;
3255
3256 out:
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01003257 TRACE_LEAVE(QUIC_EV_CONN_PTIMER, conn_ctx->conn, pktns);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003258
3259 return task;
3260}
3261
3262/* Initialize <conn> QUIC connection with <quic_initial_clients> as root of QUIC
3263 * connections used to identify the first Initial packets of client connecting
3264 * to listeners. This parameter must be NULL for QUIC connections attached
3265 * to listeners. <dcid> is the destination connection ID with <dcid_len> as length.
3266 * <scid> is the source connection ID with <scid_len> as length.
3267 * Returns 1 if succeeded, 0 if not.
3268 */
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003269static struct quic_conn *qc_new_conn(unsigned int version, int ipv4,
3270 unsigned char *dcid, size_t dcid_len,
Frédéric Lécaille6b197642021-07-06 16:25:08 +02003271 unsigned char *scid, size_t scid_len, int server, void *owner)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003272{
3273 int i;
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003274 struct quic_conn *qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003275 /* Initial CID. */
3276 struct quic_connection_id *icid;
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003277 char *buf_area;
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01003278 struct listener *l = NULL;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003279
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003280 TRACE_ENTER(QUIC_EV_CONN_INIT);
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003281 qc = pool_zalloc(pool_head_quic_conn);
3282 if (!qc) {
3283 TRACE_PROTO("Could not allocate a new connection", QUIC_EV_CONN_INIT);
3284 goto err;
3285 }
3286
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003287 buf_area = pool_alloc(pool_head_quic_conn_rxbuf);
3288 if (!buf_area) {
3289 TRACE_PROTO("Could not allocate a new RX buffer", QUIC_EV_CONN_INIT);
3290 goto err;
3291 }
3292
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003293 qc->cids = EB_ROOT;
3294 /* QUIC Server (or listener). */
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003295 if (server) {
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01003296 l = owner;
Frédéric Lécaille6b197642021-07-06 16:25:08 +02003297
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003298 HA_ATOMIC_STORE(&qc->state, QUIC_HS_ST_SERVER_INITIAL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003299 /* Copy the initial DCID. */
3300 qc->odcid.len = dcid_len;
3301 if (qc->odcid.len)
3302 memcpy(qc->odcid.data, dcid, dcid_len);
3303
Amaury Denoyelle42b9f1c2021-11-24 15:29:53 +01003304 /* copy the packet SCID to reuse it as DCID for sending */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003305 if (scid_len)
3306 memcpy(qc->dcid.data, scid, scid_len);
3307 qc->dcid.len = scid_len;
Frédéric Lécaillec1029f62021-10-20 11:09:58 +02003308 qc->tx.qring_list = &l->rx.tx_qring_list;
Amaury Denoyelle2af19852021-09-30 11:03:28 +02003309 qc->li = l;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003310 }
3311 /* QUIC Client (outgoing connection to servers) */
3312 else {
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003313 HA_ATOMIC_STORE(&qc->state, QUIC_HS_ST_CLIENT_INITIAL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003314 if (dcid_len)
3315 memcpy(qc->dcid.data, dcid, dcid_len);
3316 qc->dcid.len = dcid_len;
3317 }
3318
3319 /* Initialize the output buffer */
3320 qc->obuf.pos = qc->obuf.data;
3321
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01003322 icid = new_quic_cid(&qc->cids, qc, 0);
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003323 if (!icid) {
3324 TRACE_PROTO("Could not allocate a new connection ID", QUIC_EV_CONN_INIT);
3325 goto err;
3326 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003327
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01003328 /* insert the allocated CID in the receiver tree */
3329 if (server) {
3330 HA_RWLOCK_WRLOCK(QUIC_LOCK, &l->rx.cids_lock);
3331 ebmb_insert(&l->rx.cids, &icid->node, icid->cid.len);
3332 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &l->rx.cids_lock);
3333 }
3334
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003335 /* Select our SCID which is the first CID with 0 as sequence number. */
3336 qc->scid = icid->cid;
3337
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003338 /* Packet number spaces initialization. */
3339 for (i = 0; i < QUIC_TLS_PKTNS_MAX; i++)
3340 quic_pktns_init(&qc->pktns[i]);
3341 /* QUIC encryption level context initialization. */
3342 for (i = 0; i < QUIC_TLS_ENC_LEVEL_MAX; i++) {
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003343 if (!quic_conn_enc_level_init(qc, i)) {
3344 TRACE_PROTO("Could not initialize an encryption level", QUIC_EV_CONN_INIT);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003345 goto err;
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003346 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003347 /* Initialize the packet number space. */
3348 qc->els[i].pktns = &qc->pktns[quic_tls_pktns(i)];
3349 }
3350
Frédéric Lécaillec8d3f872021-07-06 17:19:44 +02003351 qc->version = version;
Frédéric Lécaillea956d152021-11-10 09:24:22 +01003352 qc->tps_tls_ext = qc->version & 0xff000000 ?
3353 TLS_EXTENSION_QUIC_TRANSPORT_PARAMETERS_DRAFT:
3354 TLS_EXTENSION_QUIC_TRANSPORT_PARAMETERS;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003355 /* TX part. */
3356 LIST_INIT(&qc->tx.frms_to_send);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003357 qc->tx.nb_buf = QUIC_CONN_TX_BUFS_NB;
3358 qc->tx.wbuf = qc->tx.rbuf = 0;
3359 qc->tx.bytes = 0;
3360 qc->tx.nb_pto_dgrams = 0;
3361 /* RX part. */
3362 qc->rx.bytes = 0;
Frédéric Lécaille2766e782021-08-30 17:16:07 +02003363 qc->rx.nb_ack_eliciting = 0;
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003364 qc->rx.buf = b_make(buf_area, QUIC_CONN_RX_BUFSZ, 0, 0);
3365 HA_RWLOCK_INIT(&qc->rx.buf_rwlock);
3366 LIST_INIT(&qc->rx.pkt_list);
Frédéric Lécaille40df78f2021-11-30 10:59:37 +01003367 if (!quic_tls_ku_init(qc)) {
3368 TRACE_PROTO("Key update initialization failed", QUIC_EV_CONN_INIT);
3369 goto err;
3370 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003371
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003372 /* XXX TO DO: Only one path at this time. */
3373 qc->path = &qc->paths[0];
3374 quic_path_init(qc->path, ipv4, default_quic_cc_algo, qc);
3375
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003376 TRACE_LEAVE(QUIC_EV_CONN_INIT);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003377
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003378 return qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003379
3380 err:
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003381 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_INIT);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003382 quic_conn_free(qc);
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003383 return NULL;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003384}
3385
3386/* Initialize the timer task of <qc> QUIC connection.
3387 * Returns 1 if succeeded, 0 if not.
3388 */
3389static int quic_conn_init_timer(struct quic_conn *qc)
3390{
Willy Tarreaubeeabf52021-10-01 18:23:30 +02003391 qc->timer_task = task_new_anywhere();
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003392 if (!qc->timer_task)
3393 return 0;
3394
3395 qc->timer = TICK_ETERNITY;
3396 qc->timer_task->process = process_timer;
3397 qc->timer_task->context = qc->conn->xprt_ctx;
3398
3399 return 1;
3400}
3401
3402/* Parse into <pkt> a long header located at <*buf> buffer, <end> begin a pointer to the end
3403 * past one byte of this buffer.
3404 */
3405static inline int quic_packet_read_long_header(unsigned char **buf, const unsigned char *end,
3406 struct quic_rx_packet *pkt)
3407{
3408 unsigned char dcid_len, scid_len;
3409
3410 /* Version */
3411 if (!quic_read_uint32(&pkt->version, (const unsigned char **)buf, end))
3412 return 0;
3413
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003414 /* Destination Connection ID Length */
3415 dcid_len = *(*buf)++;
3416 /* We want to be sure we can read <dcid_len> bytes and one more for <scid_len> value */
3417 if (dcid_len > QUIC_CID_MAXLEN || end - *buf < dcid_len + 1)
3418 /* XXX MUST BE DROPPED */
3419 return 0;
3420
3421 if (dcid_len) {
3422 /* Check that the length of this received DCID matches the CID lengths
3423 * of our implementation for non Initials packets only.
3424 */
3425 if (pkt->type != QUIC_PACKET_TYPE_INITIAL && dcid_len != QUIC_CID_LEN)
3426 return 0;
3427
3428 memcpy(pkt->dcid.data, *buf, dcid_len);
3429 }
3430
3431 pkt->dcid.len = dcid_len;
3432 *buf += dcid_len;
3433
3434 /* Source Connection ID Length */
3435 scid_len = *(*buf)++;
3436 if (scid_len > QUIC_CID_MAXLEN || end - *buf < scid_len)
3437 /* XXX MUST BE DROPPED */
3438 return 0;
3439
3440 if (scid_len)
3441 memcpy(pkt->scid.data, *buf, scid_len);
3442 pkt->scid.len = scid_len;
3443 *buf += scid_len;
3444
3445 return 1;
3446}
3447
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003448/* If the header protection of <pkt> packet attached to <qc> connection with <ctx>
3449 * as context may be removed, return 1, 0 if not. Also set <*qel> to the associated
3450 * encryption level matching with the packet type. <*qel> may be null if not found.
3451 * Note that <ctx> may be null (for Initial packets).
3452 */
3453static int qc_pkt_may_rm_hp(struct quic_rx_packet *pkt,
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02003454 struct quic_conn *qc, struct ssl_sock_ctx *ctx,
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003455 struct quic_enc_level **qel)
3456{
3457 enum quic_tls_enc_level tel;
3458
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05003459 /* Special case without connection context (first Initial packets) */
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003460 if (!ctx) {
3461 *qel = &qc->els[QUIC_TLS_ENC_LEVEL_INITIAL];
3462 return 1;
3463 }
3464
3465 tel = quic_packet_type_enc_level(pkt->type);
3466 if (tel == QUIC_TLS_ENC_LEVEL_NONE) {
3467 *qel = NULL;
3468 return 0;
3469 }
3470
3471 *qel = &qc->els[tel];
3472 if ((*qel)->tls_ctx.rx.flags & QUIC_FL_TLS_SECRETS_DCD) {
3473 TRACE_DEVEL("Discarded keys", QUIC_EV_CONN_TRMHP, ctx->conn);
3474 return 0;
3475 }
3476
3477 if (((*qel)->tls_ctx.rx.flags & QUIC_FL_TLS_SECRETS_SET) &&
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02003478 (tel != QUIC_TLS_ENC_LEVEL_APP ||
3479 HA_ATOMIC_LOAD(&ctx->conn->qc->state) >= QUIC_HS_ST_COMPLETE))
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003480 return 1;
3481
3482 return 0;
3483}
3484
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003485/* Insert <pkt> RX packet in its <qel> RX packets tree */
3486static void qc_pkt_insert(struct quic_rx_packet *pkt, struct quic_enc_level *qel)
3487{
3488 pkt->pn_node.key = pkt->pn;
3489 HA_RWLOCK_WRLOCK(QUIC_LOCK, &qel->rx.pkts_rwlock);
3490 eb64_insert(&qel->rx.pkts, &pkt->pn_node);
3491 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qel->rx.pkts_rwlock);
3492 quic_rx_packet_refinc(pkt);
3493}
3494
3495/* Try to remove the header protection of <pkt> QUIC packet attached to <qc>
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003496 * QUIC connection with <buf> as packet number field address, <end> a pointer to one
3497 * byte past the end of the buffer containing this packet and <beg> the address of
3498 * the packet first byte.
3499 * If succeeded, this function updates <*buf> to point to the next packet in the buffer.
3500 * Returns 1 if succeeded, 0 if not.
3501 */
3502static inline int qc_try_rm_hp(struct quic_rx_packet *pkt,
3503 unsigned char **buf, unsigned char *beg,
3504 const unsigned char *end,
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003505 struct quic_conn *qc, struct quic_enc_level **el,
3506 struct ssl_sock_ctx *ctx)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003507{
3508 unsigned char *pn = NULL; /* Packet number field */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003509 struct quic_enc_level *qel;
3510 /* Only for traces. */
3511 struct quic_rx_packet *qpkt_trace;
3512
3513 qpkt_trace = NULL;
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003514 TRACE_ENTER(QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003515 /* The packet number is here. This is also the start minus
3516 * QUIC_PACKET_PN_MAXLEN of the sample used to add/remove the header
3517 * protection.
3518 */
3519 pn = *buf;
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003520 if (qc_pkt_may_rm_hp(pkt, qc, ctx, &qel)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003521 /* Note that the following function enables us to unprotect the packet
3522 * number and its length subsequently used to decrypt the entire
3523 * packets.
3524 */
3525 if (!qc_do_rm_hp(pkt, &qel->tls_ctx,
3526 qel->pktns->rx.largest_pn, pn, beg, end, ctx)) {
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003527 TRACE_PROTO("hp error", QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003528 goto err;
3529 }
3530
3531 /* The AAD includes the packet number field found at <pn>. */
3532 pkt->aad_len = pn - beg + pkt->pnl;
3533 qpkt_trace = pkt;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003534 }
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003535 else if (qel) {
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003536 if (qel->tls_ctx.rx.flags & QUIC_FL_TLS_SECRETS_DCD) {
3537 /* If the packet number space has been discarded, this packet
3538 * will be not parsed.
3539 */
3540 TRACE_PROTO("Discarded pktns", QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL, pkt);
3541 goto out;
3542 }
3543
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003544 TRACE_PROTO("hp not removed", QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL, pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003545 pkt->pn_offset = pn - beg;
Frédéric Lécailleebc3fc12021-09-22 08:34:21 +02003546 MT_LIST_APPEND(&qel->rx.pqpkts, &pkt->list);
3547 quic_rx_packet_refinc(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003548 }
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003549 else {
3550 TRACE_PROTO("Unknown packet type", QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL);
3551 goto err;
3552 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003553
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003554 *el = qel;
3555 /* No reference counter incrementation here!!! */
3556 LIST_APPEND(&qc->rx.pkt_list, &pkt->qc_rx_pkt_list);
3557 memcpy(b_tail(&qc->rx.buf), beg, pkt->len);
3558 pkt->data = (unsigned char *)b_tail(&qc->rx.buf);
3559 b_add(&qc->rx.buf, pkt->len);
3560 out:
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003561 /* Updtate the offset of <*buf> for the next QUIC packet. */
3562 *buf = beg + pkt->len;
3563
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003564 TRACE_LEAVE(QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL, qpkt_trace);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003565 return 1;
3566
3567 err:
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02003568 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_TRMHP, ctx ? ctx->conn : NULL, qpkt_trace);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003569 return 0;
3570}
3571
3572/* Parse the header form from <byte0> first byte of <pkt> pacekt to set type.
3573 * Also set <*long_header> to 1 if this form is long, 0 if not.
3574 */
3575static inline void qc_parse_hd_form(struct quic_rx_packet *pkt,
3576 unsigned char byte0, int *long_header)
3577{
3578 if (byte0 & QUIC_PACKET_LONG_HEADER_BIT) {
3579 pkt->type =
3580 (byte0 >> QUIC_PACKET_TYPE_SHIFT) & QUIC_PACKET_TYPE_BITMASK;
3581 *long_header = 1;
3582 }
3583 else {
3584 pkt->type = QUIC_PACKET_TYPE_SHORT;
3585 *long_header = 0;
3586 }
3587}
3588
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003589/*
3590 * Check if the QUIC version in packet <pkt> is supported. Returns a boolean.
3591 */
3592static inline int qc_pkt_is_supported_version(struct quic_rx_packet *pkt)
3593{
3594 int j = 0, version;
3595
3596 do {
3597 version = quic_supported_version[j];
3598 if (version == pkt->version)
3599 return 1;
3600
3601 version = quic_supported_version[++j];
3602 } while(version);
3603
3604 return 0;
3605}
3606
Frédéric Lécaillec5c69a02021-10-20 17:24:42 +02003607__attribute__((unused))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003608static ssize_t qc_srv_pkt_rcv(unsigned char **buf, const unsigned char *end,
3609 struct quic_rx_packet *pkt,
3610 struct quic_dgram_ctx *dgram_ctx,
3611 struct sockaddr_storage *saddr)
3612{
3613 unsigned char *beg;
3614 uint64_t len;
3615 struct quic_conn *qc;
3616 struct eb_root *cids;
3617 struct ebmb_node *node;
3618 struct connection *srv_conn;
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02003619 struct ssl_sock_ctx *conn_ctx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003620 int long_header;
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003621 size_t b_cspace;
3622 struct quic_enc_level *qel;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003623
3624 qc = NULL;
Frédéric Lécaillec4becf52021-11-08 11:23:17 +01003625 qel = NULL;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003626 TRACE_ENTER(QUIC_EV_CONN_SPKT);
3627 if (end <= *buf)
3628 goto err;
3629
3630 /* Fixed bit */
3631 if (!(**buf & QUIC_PACKET_FIXED_BIT))
3632 /* XXX TO BE DISCARDED */
3633 goto err;
3634
3635 srv_conn = dgram_ctx->owner;
3636 beg = *buf;
3637 /* Header form */
3638 qc_parse_hd_form(pkt, *(*buf)++, &long_header);
3639 if (long_header) {
3640 size_t cid_lookup_len;
3641
3642 if (!quic_packet_read_long_header(buf, end, pkt))
3643 goto err;
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003644
3645 /* unsupported QUIC version */
3646 if (!qc_pkt_is_supported_version(pkt)) {
3647 TRACE_PROTO("Null QUIC version, packet dropped", QUIC_EV_CONN_LPKT);
3648 goto err;
3649 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003650
3651 /* For Initial packets, and for servers (QUIC clients connections),
3652 * there is no Initial connection IDs storage.
3653 */
3654 if (pkt->type == QUIC_PACKET_TYPE_INITIAL) {
3655 cids = &((struct server *)__objt_server(srv_conn->target))->cids;
3656 cid_lookup_len = pkt->dcid.len;
3657 }
3658 else {
3659 cids = &((struct server *)__objt_server(srv_conn->target))->cids;
3660 cid_lookup_len = QUIC_CID_LEN;
3661 }
3662
3663 node = ebmb_lookup(cids, pkt->dcid.data, cid_lookup_len);
3664 if (!node)
3665 goto err;
3666
3667 qc = ebmb_entry(node, struct quic_conn, scid_node);
3668
3669 if (pkt->type == QUIC_PACKET_TYPE_INITIAL) {
3670 qc->dcid.len = pkt->scid.len;
3671 if (pkt->scid.len)
3672 memcpy(qc->dcid.data, pkt->scid.data, pkt->scid.len);
3673 }
3674
3675 if (pkt->type == QUIC_PACKET_TYPE_INITIAL) {
3676 uint64_t token_len;
3677
3678 if (!quic_dec_int(&token_len, (const unsigned char **)buf, end) || end - *buf < token_len)
3679 goto err;
3680
3681 /* XXX TO DO XXX 0 value means "the token is not present".
3682 * A server which sends an Initial packet must not set the token.
3683 * So, a client which receives an Initial packet with a token
3684 * MUST discard the packet or generate a connection error with
3685 * PROTOCOL_VIOLATION as type.
3686 * The token must be provided in a Retry packet or NEW_TOKEN frame.
3687 */
3688 pkt->token_len = token_len;
3689 }
3690 }
3691 else {
3692 /* XXX TO DO: Short header XXX */
3693 if (end - *buf < QUIC_CID_LEN)
3694 goto err;
3695
3696 cids = &((struct server *)__objt_server(srv_conn->target))->cids;
3697 node = ebmb_lookup(cids, *buf, QUIC_CID_LEN);
3698 if (!node)
3699 goto err;
3700
3701 qc = ebmb_entry(node, struct quic_conn, scid_node);
3702 *buf += QUIC_CID_LEN;
3703 }
3704 /* Store the DCID used for this packet to check the packet which
3705 * come in this UDP datagram match with it.
3706 */
3707 if (!dgram_ctx->dcid_node)
3708 dgram_ctx->dcid_node = node;
3709 /* Only packets packets with long headers and not RETRY or VERSION as type
3710 * have a length field.
3711 */
3712 if (long_header && pkt->type != QUIC_PACKET_TYPE_RETRY && pkt->version) {
3713 if (!quic_dec_int(&len, (const unsigned char **)buf, end) || end - *buf < len)
3714 goto err;
3715
3716 pkt->len = len;
3717 }
3718 else if (!long_header) {
3719 /* A short packet is the last one of an UDP datagram. */
3720 pkt->len = end - *buf;
3721 }
3722
3723 conn_ctx = qc->conn->xprt_ctx;
3724
3725 /* Increase the total length of this packet by the header length. */
3726 pkt->len += *buf - beg;
3727 /* Do not check the DCID node before the length. */
3728 if (dgram_ctx->dcid_node != node) {
3729 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_SPKT, qc->conn);
3730 goto err;
3731 }
3732
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003733 HA_RWLOCK_WRLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
3734 b_cspace = b_contig_space(&qc->rx.buf);
3735 if (b_cspace < pkt->len) {
3736 /* Let us consume the remaining contiguous space. */
3737 b_add(&qc->rx.buf, b_cspace);
3738 if (b_contig_space(&qc->rx.buf) < pkt->len) {
3739 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
3740 TRACE_PROTO("Too big packet", QUIC_EV_CONN_SPKT, qc->conn, pkt, &pkt->len);
3741 goto err;
3742 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003743 }
3744
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003745 if (!qc_try_rm_hp(pkt, buf, beg, end, qc, &qel, conn_ctx)) {
3746 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
3747 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_SPKT, qc->conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003748 goto err;
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003749 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003750
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003751 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
3752 if (pkt->aad_len)
3753 qc_pkt_insert(pkt, qel);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003754 /* Wake the tasklet of the QUIC connection packet handler. */
3755 if (conn_ctx)
3756 tasklet_wakeup(conn_ctx->wait_event.tasklet);
3757
3758 TRACE_LEAVE(QUIC_EV_CONN_SPKT, qc->conn);
3759
3760 return pkt->len;
3761
3762 err:
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +01003763 TRACE_DEVEL("Leaing in error", QUIC_EV_CONN_SPKT, qc ? qc->conn : NULL);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003764 return -1;
3765}
3766
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003767/*
3768 * Send a Version Negotiation packet on response to <pkt> on socket <fd> to
3769 * address <addr>.
3770 * Implementation of RFC9000 6. Version Negotiation
3771 *
3772 * TODO implement a rate-limiting sending of Version Negotiation packets
3773 *
3774 * Returns 0 on success else non-zero
3775 */
3776static int qc_send_version_negotiation(int fd, struct sockaddr_storage *addr,
3777 struct quic_rx_packet *pkt)
3778{
3779 char buf[256];
3780 int i = 0, j, version;
3781 const socklen_t addrlen = get_addr_len(addr);
3782
3783 /*
3784 * header form
3785 * long header, fixed bit to 0 for Version Negotiation
3786 */
Frédéric Lécailleea78ee12021-11-18 13:54:43 +01003787 if (RAND_bytes((unsigned char *)buf, 1) != 1)
3788 return 1;
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003789
Frédéric Lécailleea78ee12021-11-18 13:54:43 +01003790 buf[i++] |= '\x80';
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003791 /* null version for Version Negotiation */
3792 buf[i++] = '\x00';
3793 buf[i++] = '\x00';
3794 buf[i++] = '\x00';
3795 buf[i++] = '\x00';
3796
3797 /* source connection id */
3798 buf[i++] = pkt->scid.len;
Amaury Denoyelle10eed8e2021-11-18 13:48:57 +01003799 memcpy(&buf[i], pkt->scid.data, pkt->scid.len);
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003800 i += pkt->scid.len;
3801
3802 /* destination connection id */
3803 buf[i++] = pkt->dcid.len;
Amaury Denoyelle10eed8e2021-11-18 13:48:57 +01003804 memcpy(&buf[i], pkt->dcid.data, pkt->dcid.len);
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003805 i += pkt->dcid.len;
3806
3807 /* supported version */
3808 j = 0;
3809 do {
3810 version = htonl(quic_supported_version[j]);
3811 memcpy(&buf[i], &version, sizeof(version));
3812 i += sizeof(version);
3813
3814 version = quic_supported_version[++j];
3815 } while (version);
3816
3817 if (sendto(fd, buf, i, 0, (struct sockaddr *)addr, addrlen) < 0)
3818 return 1;
3819
3820 return 0;
3821}
3822
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003823static ssize_t qc_lstnr_pkt_rcv(unsigned char **buf, const unsigned char *end,
3824 struct quic_rx_packet *pkt,
3825 struct quic_dgram_ctx *dgram_ctx,
3826 struct sockaddr_storage *saddr)
3827{
3828 unsigned char *beg;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003829 struct quic_conn *qc;
3830 struct eb_root *cids;
3831 struct ebmb_node *node;
3832 struct listener *l;
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02003833 struct ssl_sock_ctx *conn_ctx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003834 int long_header = 0;
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01003835 size_t b_cspace;
3836 struct quic_enc_level *qel;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003837
3838 qc = NULL;
Frédéric Lécailled24c2ec2021-05-31 10:24:49 +02003839 conn_ctx = NULL;
Frédéric Lécaillec4becf52021-11-08 11:23:17 +01003840 qel = NULL;
Frédéric Lécaille2e7ffc92021-06-10 08:18:45 +02003841 TRACE_ENTER(QUIC_EV_CONN_LPKT, NULL, pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003842 if (end <= *buf)
3843 goto err;
3844
3845 /* Fixed bit */
3846 if (!(**buf & QUIC_PACKET_FIXED_BIT)) {
3847 /* XXX TO BE DISCARDED */
3848 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
3849 goto err;
3850 }
3851
3852 l = dgram_ctx->owner;
3853 beg = *buf;
3854 /* Header form */
3855 qc_parse_hd_form(pkt, *(*buf)++, &long_header);
3856 if (long_header) {
3857 unsigned char dcid_len;
3858
3859 if (!quic_packet_read_long_header(buf, end, pkt)) {
3860 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
3861 goto err;
3862 }
3863
Amaury Denoyellea22d8602021-11-10 15:17:56 +01003864 /* RFC9000 6. Version Negotiation */
3865 if (!qc_pkt_is_supported_version(pkt)) {
3866 /* do not send Version Negotiation in response to a
3867 * Version Negotiation packet.
3868 */
3869 if (!pkt->version) {
3870 TRACE_PROTO("Null QUIC version, packet dropped", QUIC_EV_CONN_LPKT);
3871 goto err;
3872 }
3873
3874 /* unsupported version, send Negotiation packet */
3875 if (qc_send_version_negotiation(l->rx.fd, saddr, pkt)) {
3876 TRACE_PROTO("Error on Version Negotiation sending", QUIC_EV_CONN_LPKT);
3877 goto err;
3878 }
3879
3880 TRACE_PROTO("Unsupported QUIC version, send Version Negotiation packet", QUIC_EV_CONN_LPKT);
3881 goto out;
3882 }
3883
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003884 dcid_len = pkt->dcid.len;
3885 /* For Initial packets, and for servers (QUIC clients connections),
3886 * there is no Initial connection IDs storage.
3887 */
3888 if (pkt->type == QUIC_PACKET_TYPE_INITIAL) {
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02003889 uint64_t token_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003890 /* DCIDs of first packets coming from clients may have the same values.
3891 * Let's distinguish them concatenating the socket addresses to the DCIDs.
3892 */
3893 quic_cid_saddr_cat(&pkt->dcid, saddr);
3894 cids = &l->rx.odcids;
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02003895
3896 if (!quic_dec_int(&token_len, (const unsigned char **)buf, end) ||
3897 end - *buf < token_len) {
3898 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
3899 goto err;
3900 }
3901
3902 /* XXX TO DO XXX 0 value means "the token is not present".
3903 * A server which sends an Initial packet must not set the token.
3904 * So, a client which receives an Initial packet with a token
3905 * MUST discard the packet or generate a connection error with
3906 * PROTOCOL_VIOLATION as type.
3907 * The token must be provided in a Retry packet or NEW_TOKEN frame.
3908 */
3909 pkt->token_len = token_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003910 }
3911 else {
3912 if (pkt->dcid.len != QUIC_CID_LEN) {
3913 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
3914 goto err;
3915 }
3916
3917 cids = &l->rx.cids;
3918 }
3919
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02003920 /* Only packets packets with long headers and not RETRY or VERSION as type
3921 * have a length field.
3922 */
3923 if (pkt->type != QUIC_PACKET_TYPE_RETRY && pkt->version) {
3924 uint64_t len;
3925
3926 if (!quic_dec_int(&len, (const unsigned char **)buf, end) ||
3927 end - *buf < len) {
3928 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
3929 goto err;
3930 }
3931
3932 pkt->len = len;
3933 }
3934
3935
3936 HA_RWLOCK_RDLOCK(OTHER_LOCK, &l->rx.cids_lock);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003937 node = ebmb_lookup(cids, pkt->dcid.data, pkt->dcid.len);
3938 if (!node && pkt->type == QUIC_PACKET_TYPE_INITIAL && dcid_len == QUIC_CID_LEN &&
3939 cids == &l->rx.odcids) {
3940 /* Switch to the definitive tree ->cids containing the final CIDs. */
3941 node = ebmb_lookup(&l->rx.cids, pkt->dcid.data, dcid_len);
3942 if (node) {
3943 /* If found, signal this with NULL as special value for <cids>. */
3944 pkt->dcid.len = dcid_len;
3945 cids = NULL;
3946 }
3947 }
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02003948 HA_RWLOCK_RDUNLOCK(OTHER_LOCK, &l->rx.cids_lock);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003949
3950 if (!node) {
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003951 int ipv4;
3952 struct quic_cid *odcid;
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02003953 struct ebmb_node *n = NULL;
Frédéric Lécaille2fc76cf2021-08-31 19:10:40 +02003954 const unsigned char *salt = initial_salt_v1;
3955 size_t salt_len = sizeof initial_salt_v1;
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003956
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003957 if (pkt->type != QUIC_PACKET_TYPE_INITIAL) {
3958 TRACE_PROTO("Non Initiial packet", QUIC_EV_CONN_LPKT);
3959 goto err;
3960 }
3961
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01003962 pkt->saddr = *saddr;
3963 /* Note that here, odcid_len equals to pkt->dcid.len minus the length
3964 * of <saddr>.
3965 */
3966 pkt->odcid_len = dcid_len;
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003967 ipv4 = saddr->ss_family == AF_INET;
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003968 qc = qc_new_conn(pkt->version, ipv4, pkt->dcid.data, pkt->dcid.len,
Frédéric Lécaille6b197642021-07-06 16:25:08 +02003969 pkt->scid.data, pkt->scid.len, 1, l);
Frédéric Lécaille6de72872021-06-11 15:44:24 +02003970 if (qc == NULL)
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02003971 goto err;
3972
3973 odcid = &qc->rx.params.original_destination_connection_id;
3974 /* Copy the transport parameters. */
3975 qc->rx.params = l->bind_conf->quic_params;
3976 /* Copy original_destination_connection_id transport parameter. */
3977 memcpy(odcid->data, &pkt->dcid, pkt->odcid_len);
3978 odcid->len = pkt->odcid_len;
3979 /* Copy the initial source connection ID. */
3980 quic_cid_cpy(&qc->rx.params.initial_source_connection_id, &qc->scid);
3981 qc->enc_params_len =
3982 quic_transport_params_encode(qc->enc_params,
3983 qc->enc_params + sizeof qc->enc_params,
3984 &qc->rx.params, 1);
3985 if (!qc->enc_params_len)
3986 goto err;
3987
Frédéric Lécaille497fa782021-05-31 15:16:13 +02003988 /* NOTE: the socket address has been concatenated to the destination ID
3989 * chosen by the client for Initial packets.
3990 */
Frédéric Lécaille2fc76cf2021-08-31 19:10:40 +02003991 if (pkt->version == QUIC_PROTOCOL_VERSION_DRAFT_29) {
3992 salt = initial_salt_draft_29;
3993 salt_len = sizeof initial_salt_draft_29;
3994 }
3995 if (!qc_new_isecs(qc, salt, salt_len,
3996 pkt->dcid.data, pkt->odcid_len, 1)) {
Frédéric Lécaille497fa782021-05-31 15:16:13 +02003997 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT, qc->conn);
3998 goto err;
3999 }
4000
Frédéric Lécailleb0006ee2021-11-03 19:01:31 +01004001 HA_RWLOCK_WRLOCK(QUIC_LOCK, &l->rx.cids_lock);
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02004002 /* Insert the DCID the QUIC client has chosen (only for listeners) */
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004003 n = ebmb_insert(&l->rx.odcids, &qc->odcid_node, qc->odcid.len);
Frédéric Lécaille008386b2021-11-30 12:01:32 +01004004 HA_ATOMIC_OR(&qc->flags, QUIC_FL_CONN_ODCID_NODE_TO_DELETE);
Frédéric Lécailleb0006ee2021-11-03 19:01:31 +01004005 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &l->rx.cids_lock);
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004006
Amaury Denoyelleaff4ec82021-11-24 15:16:08 +01004007 /* If the insertion failed, it means that another
4008 * thread has already allocated a QUIC connection for
4009 * the same CID. Liberate our allocated connection.
4010 */
4011 if (unlikely(n != &qc->odcid_node)) {
4012 quic_conn_free(qc);
4013 qc = ebmb_entry(n, struct quic_conn, odcid_node);
4014 pkt->qc = qc;
4015 }
4016 else {
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004017 /* Enqueue this packet. */
Frédéric Lécaillef67b3562021-11-15 16:21:40 +01004018 pkt->qc = qc;
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004019 MT_LIST_APPEND(&l->rx.pkts, &pkt->rx_list);
4020 /* Try to accept a new connection. */
4021 listener_accept(l);
4022 }
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004023
4024 /* This is the DCID node sent in this packet by the client. */
4025 node = &qc->odcid_node;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004026 }
4027 else {
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01004028 if (pkt->type == QUIC_PACKET_TYPE_INITIAL && cids == &l->rx.odcids) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004029 qc = ebmb_entry(node, struct quic_conn, odcid_node);
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01004030 }
4031 else {
4032 struct quic_connection_id *cid = ebmb_entry(node, struct quic_connection_id, node);
4033 qc = cid->qc;
Frédéric Lécaille008386b2021-11-30 12:01:32 +01004034 if (HA_ATOMIC_BTR(&qc->flags, QUIC_FL_CONN_ODCID_NODE_TO_DELETE_BIT)) {
4035 /* Delete the ODCID from its tree */
4036 HA_RWLOCK_WRLOCK(QUIC_LOCK, &l->rx.cids_lock);
4037 ebmb_delete(&qc->odcid_node);
4038 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &l->rx.cids_lock);
4039 }
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01004040 }
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004041 pkt->qc = qc;
Frédéric Lécailled77c50b2021-11-23 15:59:59 +01004042 if (HA_ATOMIC_LOAD(&qc->conn))
4043 conn_ctx = HA_ATOMIC_LOAD(&qc->conn->xprt_ctx);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004044 }
4045 }
4046 else {
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01004047 struct quic_connection_id *cid;
4048
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004049 if (end - *buf < QUIC_CID_LEN) {
4050 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
4051 goto err;
4052 }
4053
4054 cids = &l->rx.cids;
4055 node = ebmb_lookup(cids, *buf, QUIC_CID_LEN);
4056 if (!node) {
4057 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT);
4058 goto err;
4059 }
4060
Amaury Denoyelled6a352a2021-11-24 15:32:46 +01004061 cid = ebmb_entry(node, struct quic_connection_id, node);
4062 qc = cid->qc;
Frédéric Lécailled77c50b2021-11-23 15:59:59 +01004063 if (HA_ATOMIC_LOAD(&qc->conn))
4064 conn_ctx = HA_ATOMIC_LOAD(&qc->conn->xprt_ctx);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004065 *buf += QUIC_CID_LEN;
Frédéric Lécaille8370c932021-11-08 17:01:46 +01004066 pkt->qc = qc;
Frédéric Lécaillef3d078d2021-06-14 14:18:10 +02004067 /* A short packet is the last one of an UDP datagram. */
4068 pkt->len = end - *buf;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004069 }
4070
4071 /* Store the DCID used for this packet to check the packet which
4072 * come in this UDP datagram match with it.
4073 */
4074 if (!dgram_ctx->dcid_node) {
4075 dgram_ctx->dcid_node = node;
4076 dgram_ctx->qc = qc;
4077 }
4078
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004079 /* Increase the total length of this packet by the header length. */
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01004080 pkt->raw_len = pkt->len += *buf - beg;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004081 /* Do not check the DCID node before the length. */
4082 if (dgram_ctx->dcid_node != node) {
4083 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT, qc->conn);
4084 goto err;
4085 }
4086
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004087 if (HA_ATOMIC_LOAD(&qc->err_code)) {
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004088 TRACE_PROTO("Connection error", QUIC_EV_CONN_LPKT, qc->conn);
4089 goto out;
4090 }
4091
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01004092 HA_RWLOCK_WRLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
4093 b_cspace = b_contig_space(&qc->rx.buf);
4094 if (b_cspace < pkt->len) {
4095 /* Let us consume the remaining contiguous space. */
4096 b_add(&qc->rx.buf, b_cspace);
4097 if (b_contig_space(&qc->rx.buf) < pkt->len) {
4098 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
4099 TRACE_PROTO("Too big packet", QUIC_EV_CONN_LPKT, qc->conn, pkt, &pkt->len);
4100 goto err;
4101 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004102 }
4103
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01004104 if (!qc_try_rm_hp(pkt, buf, beg, end, qc, &qel, conn_ctx)) {
4105 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
Frédéric Lécaille1a5e88c2021-05-31 18:04:07 +02004106 TRACE_PROTO("Packet dropped", QUIC_EV_CONN_LPKT, qc->conn);
4107 goto err;
4108 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004109
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01004110 HA_RWLOCK_WRUNLOCK(QUIC_LOCK, &qc->rx.buf_rwlock);
Frédéric Lécaille2e7ffc92021-06-10 08:18:45 +02004111 TRACE_PROTO("New packet", QUIC_EV_CONN_LPKT, qc->conn, pkt);
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01004112 if (pkt->aad_len)
4113 qc_pkt_insert(pkt, qel);
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004114 out:
Frédéric Lécaille01abc462021-07-21 09:34:27 +02004115 /* Wake up the connection packet handler task from here only if all
4116 * the contexts have been initialized, especially the mux context
4117 * conn_ctx->conn->ctx. Note that this is ->start xprt callback which
4118 * will start it if these contexts for the connection are not already
4119 * initialized.
4120 */
4121 if (conn_ctx && HA_ATOMIC_LOAD(&conn_ctx->conn->ctx))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004122 tasklet_wakeup(conn_ctx->wait_event.tasklet);
Frédéric Lécailled24c2ec2021-05-31 10:24:49 +02004123
Amaury Denoyelleed66b0f2021-11-18 14:38:00 +01004124 TRACE_LEAVE(QUIC_EV_CONN_LPKT, qc ? qc->conn : NULL, pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004125
4126 return pkt->len;
4127
4128 err:
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +01004129 TRACE_DEVEL("Leaving in error", QUIC_EV_CONN_LPKT,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004130 qc ? qc->conn : NULL, pkt);
4131 return -1;
4132}
4133
4134/* This function builds into <buf> buffer a QUIC long packet header whose size may be computed
4135 * in advance. This is the reponsability of the caller to check there is enough room in this
4136 * buffer to build a long header.
4137 * Returns 0 if <type> QUIC packet type is not supported by long header, or 1 if succeeded.
4138 */
4139static int quic_build_packet_long_header(unsigned char **buf, const unsigned char *end,
4140 int type, size_t pn_len, struct quic_conn *conn)
4141{
4142 if (type > QUIC_PACKET_TYPE_RETRY)
4143 return 0;
4144
4145 /* #0 byte flags */
4146 *(*buf)++ = QUIC_PACKET_FIXED_BIT | QUIC_PACKET_LONG_HEADER_BIT |
4147 (type << QUIC_PACKET_TYPE_SHIFT) | (pn_len - 1);
4148 /* Version */
4149 quic_write_uint32(buf, end, conn->version);
4150 *(*buf)++ = conn->dcid.len;
4151 /* Destination connection ID */
4152 if (conn->dcid.len) {
4153 memcpy(*buf, conn->dcid.data, conn->dcid.len);
4154 *buf += conn->dcid.len;
4155 }
4156 /* Source connection ID */
4157 *(*buf)++ = conn->scid.len;
4158 if (conn->scid.len) {
4159 memcpy(*buf, conn->scid.data, conn->scid.len);
4160 *buf += conn->scid.len;
4161 }
4162
4163 return 1;
4164}
4165
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01004166/* This function builds into <buf> buffer a QUIC short packet header whose size may be computed
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004167 * in advance. This is the reponsability of the caller to check there is enough room in this
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01004168 * buffer to build a short header.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004169 */
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01004170static void quic_build_packet_short_header(unsigned char **buf, const unsigned char *end,
4171 size_t pn_len, struct quic_conn *conn,
4172 unsigned char tls_flags)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004173{
4174 /* #0 byte flags */
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01004175 *(*buf)++ = QUIC_PACKET_FIXED_BIT |
4176 ((tls_flags & QUIC_FL_TLS_KP_BIT_SET) ? QUIC_PACKET_KEY_PHASE_BIT : 0) | (pn_len - 1);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004177 /* Destination connection ID */
4178 if (conn->dcid.len) {
4179 memcpy(*buf, conn->dcid.data, conn->dcid.len);
4180 *buf += conn->dcid.len;
4181 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004182}
4183
4184/* Apply QUIC header protection to the packet with <buf> as first byte address,
4185 * <pn> as address of the Packet number field, <pnlen> being this field length
4186 * with <aead> as AEAD cipher and <key> as secret key.
4187 * Returns 1 if succeeded or 0 if failed.
4188 */
4189static int quic_apply_header_protection(unsigned char *buf, unsigned char *pn, size_t pnlen,
4190 const EVP_CIPHER *aead, const unsigned char *key)
4191{
4192 int i, ret, outlen;
4193 EVP_CIPHER_CTX *ctx;
4194 /* We need an IV of at least 5 bytes: one byte for bytes #0
4195 * and at most 4 bytes for the packet number
4196 */
4197 unsigned char mask[5] = {0};
4198
4199 ret = 0;
4200 ctx = EVP_CIPHER_CTX_new();
4201 if (!ctx)
4202 return 0;
4203
4204 if (!EVP_EncryptInit_ex(ctx, aead, NULL, key, pn + QUIC_PACKET_PN_MAXLEN) ||
4205 !EVP_EncryptUpdate(ctx, mask, &outlen, mask, sizeof mask) ||
4206 !EVP_EncryptFinal_ex(ctx, mask, &outlen))
4207 goto out;
4208
4209 *buf ^= mask[0] & (*buf & QUIC_PACKET_LONG_HEADER_BIT ? 0xf : 0x1f);
4210 for (i = 0; i < pnlen; i++)
4211 pn[i] ^= mask[i + 1];
4212
4213 ret = 1;
4214
4215 out:
4216 EVP_CIPHER_CTX_free(ctx);
4217
4218 return ret;
4219}
4220
4221/* Reduce the encoded size of <ack_frm> ACK frame removing the last
4222 * ACK ranges if needed to a value below <limit> in bytes.
4223 * Return 1 if succeeded, 0 if not.
4224 */
4225static int quic_ack_frm_reduce_sz(struct quic_frame *ack_frm, size_t limit)
4226{
4227 size_t room, ack_delay_sz;
4228
4229 ack_delay_sz = quic_int_getsize(ack_frm->tx_ack.ack_delay);
4230 /* A frame is made of 1 byte for the frame type. */
4231 room = limit - ack_delay_sz - 1;
Frédéric Lécaille8090b512020-11-30 16:19:22 +01004232 if (!quic_rm_last_ack_ranges(ack_frm->tx_ack.arngs, room))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004233 return 0;
4234
Frédéric Lécaille8090b512020-11-30 16:19:22 +01004235 return 1 + ack_delay_sz + ack_frm->tx_ack.arngs->enc_sz;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004236}
4237
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004238/* Prepare as most as possible CRYPTO or STREAM frames from their prebuilt frames
4239 * for <qel> encryption level to be encoded in a buffer with <room> as available room,
Frédéric Lécailleea604992020-12-24 13:01:37 +01004240 * and <*len> the packet Length field initialized with the number of bytes already present
4241 * in this buffer which must be taken into an account for the Length packet field value.
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004242 * <headlen> is the number of bytes already present in this packet before building frames.
4243 *
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004244 * Update consequently <*len> to reflect the size of these frames built
4245 * by this function. Also attach these frames to <pkt> QUIC packet.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004246 * Return 1 if succeeded, 0 if not.
4247 */
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004248static inline int qc_build_frms(struct quic_tx_packet *pkt,
4249 size_t room, size_t *len, size_t headlen,
4250 struct quic_enc_level *qel,
4251 struct quic_conn *conn)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004252{
Frédéric Lécailleea604992020-12-24 13:01:37 +01004253 int ret;
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02004254 struct quic_frame *cf;
Frédéric Lécaillec88df072021-07-27 11:43:11 +02004255 struct mt_list *tmp1, tmp2;
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004256 size_t remain = quic_path_prep_data(conn->path);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004257
Frédéric Lécailleea604992020-12-24 13:01:37 +01004258 ret = 0;
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004259 if (*len > room || headlen > remain)
4260 return 0;
4261
Frédéric Lécailleea604992020-12-24 13:01:37 +01004262 /* If we are not probing we must take into an account the congestion
4263 * control window.
4264 */
4265 if (!conn->tx.nb_pto_dgrams)
4266 room = QUIC_MIN(room, quic_path_prep_data(conn->path) - headlen);
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004267 TRACE_PROTO("************** frames build (headlen)",
Frédéric Lécailleea604992020-12-24 13:01:37 +01004268 QUIC_EV_CONN_BCFRMS, conn->conn, &headlen);
Frédéric Lécaillec88df072021-07-27 11:43:11 +02004269 mt_list_for_each_entry_safe(cf, &qel->pktns->tx.frms, mt_list, tmp1, tmp2) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004270 /* header length, data length, frame length. */
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004271 size_t hlen, dlen, dlen_sz, avail_room, flen;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004272
Frédéric Lécailleea604992020-12-24 13:01:37 +01004273 if (!room)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004274 break;
4275
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004276 switch (cf->type) {
4277 case QUIC_FT_CRYPTO:
4278 TRACE_PROTO(" New CRYPTO frame build (room, len)",
4279 QUIC_EV_CONN_BCFRMS, conn->conn, &room, len);
4280 /* Compute the length of this CRYPTO frame header */
4281 hlen = 1 + quic_int_getsize(cf->crypto.offset);
4282 /* Compute the data length of this CRyPTO frame. */
4283 dlen = max_stream_data_size(room, *len + hlen, cf->crypto.len);
4284 TRACE_PROTO(" CRYPTO data length (hlen, crypto.len, dlen)",
4285 QUIC_EV_CONN_BCFRMS, conn->conn, &hlen, &cf->crypto.len, &dlen);
4286 if (!dlen)
4287 break;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004288
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004289 pkt->cdata_len += dlen;
4290 /* CRYPTO frame length. */
4291 flen = hlen + quic_int_getsize(dlen) + dlen;
4292 TRACE_PROTO(" CRYPTO frame length (flen)",
4293 QUIC_EV_CONN_BCFRMS, conn->conn, &flen);
4294 /* Add the CRYPTO data length and its encoded length to the packet
4295 * length and the length of this length.
4296 */
4297 *len += flen;
4298 room -= flen;
4299 if (dlen == cf->crypto.len) {
4300 /* <cf> CRYPTO data have been consumed. */
4301 MT_LIST_DELETE_SAFE(tmp1);
4302 LIST_APPEND(&pkt->frms, &cf->list);
4303 }
4304 else {
4305 struct quic_frame *new_cf;
4306
4307 new_cf = pool_alloc(pool_head_quic_frame);
4308 if (!new_cf) {
4309 TRACE_PROTO("No memory for new crypto frame", QUIC_EV_CONN_BCFRMS, conn->conn);
4310 return 0;
4311 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004312
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004313 new_cf->type = QUIC_FT_CRYPTO;
4314 new_cf->crypto.len = dlen;
4315 new_cf->crypto.offset = cf->crypto.offset;
4316 new_cf->crypto.qel = qel;
4317 LIST_APPEND(&pkt->frms, &new_cf->list);
4318 /* Consume <dlen> bytes of the current frame. */
4319 cf->crypto.len -= dlen;
4320 cf->crypto.offset += dlen;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004321 }
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004322 break;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004323
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004324 case QUIC_FT_STREAM_8 ... QUIC_FT_STREAM_F:
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004325 /* Note that these frames are accepted in short packets only without
4326 * "Length" packet field. Here, <*len> is used only to compute the
4327 * sum of the lengths of the already built frames for this packet.
4328 */
4329 TRACE_PROTO(" New STREAM frame build (room, len)",
4330 QUIC_EV_CONN_BCFRMS, conn->conn, &room, len);
4331 /* Compute the length of this STREAM frame "header" made a all the field
4332 * excepting the variable ones. Note that +1 is for the type of this frame.
4333 */
4334 hlen = 1 + quic_int_getsize(cf->stream.id) +
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02004335 ((cf->type & QUIC_STREAM_FRAME_TYPE_OFF_BIT) ? quic_int_getsize(cf->stream.offset.key) : 0);
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004336 /* Compute the data length of this STREAM frame. */
4337 avail_room = room - hlen - *len;
4338 if ((ssize_t)avail_room <= 0)
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02004339 break;
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004340
4341 if (cf->type & QUIC_STREAM_FRAME_TYPE_LEN_BIT) {
4342 dlen = max_available_room(avail_room, &dlen_sz);
4343 if (dlen > cf->stream.len) {
4344 dlen = cf->stream.len;
4345 }
4346 dlen_sz = quic_int_getsize(dlen);
4347 flen = hlen + dlen_sz + dlen;
4348 }
4349 else {
4350 dlen = QUIC_MIN(avail_room, cf->stream.len);
4351 flen = hlen + dlen;
4352 }
4353 TRACE_PROTO(" STREAM data length (hlen, stream.len, dlen)",
4354 QUIC_EV_CONN_BCFRMS, conn->conn, &hlen, &cf->stream.len, &dlen);
4355 TRACE_PROTO(" STREAM frame length (flen)",
4356 QUIC_EV_CONN_BCFRMS, conn->conn, &flen);
4357 /* Add the STREAM data length and its encoded length to the packet
4358 * length and the length of this length.
4359 */
4360 *len += flen;
4361 room -= flen;
4362 if (dlen == cf->stream.len) {
4363 /* <cf> STREAM data have been consumed. */
4364 MT_LIST_DELETE_SAFE(tmp1);
4365 LIST_APPEND(&pkt->frms, &cf->list);
4366 }
4367 else {
4368 struct quic_frame *new_cf;
4369
4370 new_cf = pool_zalloc(pool_head_quic_frame);
4371 if (!new_cf) {
4372 TRACE_PROTO("No memory for new STREAM frame", QUIC_EV_CONN_BCFRMS, conn->conn);
4373 return 0;
4374 }
4375
4376 new_cf->type = cf->type;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02004377 new_cf->stream.qcs = cf->stream.qcs;
4378 new_cf->stream.buf = cf->stream.buf;
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004379 new_cf->stream.id = cf->stream.id;
4380 if (cf->type & QUIC_STREAM_FRAME_TYPE_OFF_BIT)
4381 new_cf->stream.offset = cf->stream.offset;
4382 new_cf->stream.len = dlen;
4383 new_cf->type |= QUIC_STREAM_FRAME_TYPE_LEN_BIT;
4384 /* FIN bit reset */
4385 new_cf->type &= ~QUIC_STREAM_FRAME_TYPE_FIN_BIT;
4386 new_cf->stream.data = cf->stream.data;
4387 LIST_APPEND(&pkt->frms, &new_cf->list);
4388 cf->type |= QUIC_STREAM_FRAME_TYPE_OFF_BIT;
4389 /* Consume <dlen> bytes of the current frame. */
4390 cf->stream.len -= dlen;
Frédéric Lécaille785d3bd2021-09-10 09:13:39 +02004391 cf->stream.offset.key += dlen;
Frédéric Lécaillea5b1b892021-08-25 17:56:22 +02004392 cf->stream.data += dlen;
4393 }
Frédéric Lécaille0ac38512021-08-03 16:38:49 +02004394 break;
4395
4396 default:
4397 flen = qc_frm_len(cf);
4398 BUG_ON(!flen);
4399 if (flen > room)
4400 continue;
4401
4402 *len += flen;
4403 room -= flen;
4404 MT_LIST_DELETE_SAFE(tmp1);
4405 LIST_APPEND(&pkt->frms, &cf->list);
4406 break;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004407 }
Frédéric Lécailleea604992020-12-24 13:01:37 +01004408 ret = 1;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004409 }
4410
Frédéric Lécailleea604992020-12-24 13:01:37 +01004411 return ret;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004412}
4413
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004414/* This function evaluates if <pkt> packet may be built into a buffer with
4415 * <room> as available room. A valid packet should at least contain a valid
4416 * header and at least a frame.
4417 * To estimate the minimal space to build a packet, we consider the worst case:
4418 - there is not enough space to build ack-eliciting frames from
4419 qel->pktns->tx.frms. This is safe to consider this because when we build
4420 a packet we first build the ACK frames, then the ack-eliciting frames
4421 from qel->pktns->tx.frms only if there is enough space for these
4422 ack-eliciting frames, finally PING and PADDING frames if needed,
4423 - we have to ensure there is enough space to build an ACK frame if required,
4424 and a PING frame, even if we do not have to probe,
4425 - we also have to verify there is enough space to build a PADDING frame
4426 if needed, especially if there is no need to send an ACK frame.
4427 * Returns 1 if the <pkt> may be built, 0 if not (not enough room to build
4428 * a valid packet).
4429 */
4430static int qc_eval_pkt(ssize_t room, struct quic_tx_packet *pkt,
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004431 int ack, int nb_pto_dgrams, int cc,
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004432 struct quic_enc_level *qel, struct quic_conn *conn)
4433{
4434 size_t minlen, token_fields_len;
4435 /* XXX FIXME XXX : ack delay not supported */
4436 uint64_t ack_delay = 0;
4437 size_t ack_frm_len = 0;
4438
4439 TRACE_PROTO("Available room", QUIC_EV_CONN_HPKT,
4440 conn->conn, NULL, NULL, &room);
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004441 /* When we do not have to probe nor send acks either, and no immediate close
4442 * is required, we must take into
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004443 * an account the data which have already been prepared and limit
4444 * the size of this packet. We will potentially build an ack-eliciting
4445 * packet.
4446 */
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004447 if (!nb_pto_dgrams && !ack && !cc) {
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004448 size_t path_room;
4449
4450 path_room = quic_path_prep_data(conn->path);
4451 if (room > path_room)
4452 room = path_room;
4453 }
4454
4455 if (ack)
4456 /* A frame is made of 1 byte for the frame type. */
4457 ack_frm_len = 1 + quic_int_getsize(ack_delay) + qel->pktns->rx.arngs.enc_sz;
4458
4459 /* XXX FIXME XXX : token not supported */
4460 token_fields_len = pkt->type == QUIC_PACKET_TYPE_INITIAL ? 1 : 0;
4461 /* Check there is enough room to build the header followed by a token,
4462 * if present. The trailing room needed for the QUIC_TLS_TAG_LEN-bytes
4463 * encryption tag is also taken into an account. Note that we have no
4464 * knowledge of the packet number for this packet. It must be atomically
4465 * incremented each time a packet is built. But before building a packet
4466 * we must estimate if it may be built if we do not want to consume a packet
4467 * number for nothing! Note that we add 1 byte more to
4468 * <minlen> to be able to build an ack-eliciting packet when probing without
4469 * ack-eliciting frames to send. In this case we need to add a 1-byte length
4470 * PING frame.
4471 */
4472 minlen = QUIC_TLS_TAG_LEN + QUIC_PACKET_PN_MAXLEN + ack_frm_len + 1;
4473 if (pkt->type != QUIC_PACKET_TYPE_SHORT)
4474 minlen += QUIC_LONG_PACKET_MINLEN + conn->dcid.len + conn->scid.len
4475 + token_fields_len;
4476 else
4477 minlen += QUIC_SHORT_PACKET_MINLEN + conn->dcid.len;
4478
4479 /* Consider any PADDING frame to add */
4480 if (objt_server(conn->conn->target) &&
4481 pkt->type == QUIC_PACKET_TYPE_INITIAL &&
4482 minlen < QUIC_INITIAL_PACKET_MINLEN) {
4483 /* Pad too short client Initial packet */
4484 minlen += QUIC_INITIAL_PACKET_MINLEN - minlen;
4485 }
4486 else if (!ack) {
4487 /* Consider we will have to add the longest short PADDING frame to
4488 * protect a 1-byte length packet number.
4489 */
4490 minlen += QUIC_PACKET_PN_MAXLEN - 1;
4491 }
4492
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004493 if (cc) {
4494 struct quic_frame cc_frm = { . type = QUIC_FT_CONNECTION_CLOSE, };
4495 struct quic_connection_close *cc = &cc_frm.connection_close;
4496
4497 cc->error_code = conn->err_code;
4498 minlen += qc_frm_len(&cc_frm);
4499 }
4500
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004501 if (room < minlen) {
4502 TRACE_PROTO("Not enoug room", QUIC_EV_CONN_HPKT,
4503 conn->conn, NULL, NULL, &room);
4504 return 0;
4505 }
4506
4507 return 1;
4508}
4509
4510/* This function builds a clear packet from <pkt> information (its type)
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004511 * into a buffer with <pos> as position pointer and <qel> as QUIC TLS encryption
4512 * level for <conn> QUIC connection and <qel> as QUIC TLS encryption level,
4513 * filling the buffer with as much frames as possible.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004514 * The trailing QUIC_TLS_TAG_LEN bytes of this packet are not built. But they are
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004515 * reserved so that to ensure there is enough room to build this AEAD TAG after
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004516 * having returned from this function.
4517 * This function also updates the value of <buf_pn> pointer to point to the packet
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004518 * number field in this packet. <pn_len> will also have the packet number
4519 * length as value.
4520 *
Ilya Shipitsinbd6b4be2021-10-15 16:18:21 +05004521 * Always succeeds: this is the responsibility of the caller to ensure there is
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004522 * enough room to build a packet.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004523 */
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004524static void qc_do_build_pkt(unsigned char *pos, const unsigned char *end,
4525 size_t dglen, struct quic_tx_packet *pkt,
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004526 int64_t pn, size_t *pn_len, unsigned char **buf_pn,
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004527 int ack, int padding, int cc, int nb_pto_dgrams,
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004528 struct quic_enc_level *qel, struct quic_conn *conn)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004529{
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004530 unsigned char *beg;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004531 size_t len, len_sz, len_frms, padding_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004532 struct quic_frame frm = { .type = QUIC_FT_CRYPTO, };
4533 struct quic_frame ack_frm = { .type = QUIC_FT_ACK, };
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004534 struct quic_frame cc_frm = { . type = QUIC_FT_CONNECTION_CLOSE, };
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004535 size_t ack_frm_len, head_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004536 int64_t largest_acked_pn;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004537 int add_ping_frm;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004538
Frédéric Lécailleea604992020-12-24 13:01:37 +01004539 /* Length field value with CRYPTO frames if present. */
4540 len_frms = 0;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004541 beg = pos;
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004542 /* When not probing and not acking, and no immediate close is required,
4543 * reduce the size of this buffer to respect
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004544 * the congestion controller window. So, we do not limit the size of this
4545 * packet if we have an ACK frame to send because an ACK frame is not
4546 * ack-eliciting. This size will be limited if we have ack-eliciting
4547 * frames to send from qel->pktns->tx.frms.
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004548 */
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004549 if (!nb_pto_dgrams && !ack && !cc) {
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004550 size_t path_room;
4551
4552 path_room = quic_path_prep_data(conn->path);
4553 if (end - beg > path_room)
4554 end = beg + path_room;
4555 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004556
Frédéric Lécaillee1aa0d32021-08-03 16:03:09 +02004557 largest_acked_pn = HA_ATOMIC_LOAD(&qel->pktns->tx.largest_acked_pn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004558 /* packet number length */
4559 *pn_len = quic_packet_number_length(pn, largest_acked_pn);
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004560 /* Build the header */
4561 if (pkt->type == QUIC_PACKET_TYPE_SHORT)
Frédéric Lécaillea7d2c092021-11-30 11:18:18 +01004562 quic_build_packet_short_header(&pos, end, *pn_len, conn, qel->tls_ctx.flags);
Frédéric Lécaillee1aa0d32021-08-03 16:03:09 +02004563 else
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004564 quic_build_packet_long_header(&pos, end, pkt->type, *pn_len, conn);
4565 /* XXX FIXME XXX Encode the token length (0) for an Initial packet. */
4566 if (pkt->type == QUIC_PACKET_TYPE_INITIAL)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004567 *pos++ = 0;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004568 head_len = pos - beg;
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004569 /* Ensure there is enough room for the TLS encryption tag */
4570 end -= QUIC_TLS_TAG_LEN;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004571 /* Build an ACK frame if required. */
4572 ack_frm_len = 0;
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004573 if (!cc && ack && !eb_is_empty(&qel->pktns->rx.arngs.root)) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004574 ack_frm.tx_ack.ack_delay = 0;
Frédéric Lécaille8090b512020-11-30 16:19:22 +01004575 ack_frm.tx_ack.arngs = &qel->pktns->rx.arngs;
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004576 /* XXX BE CAREFUL XXX : here we reserved at least one byte for the
4577 * smallest frame (PING) and <*pn_len> more for the packet number. Note
4578 * that from here, we do not know if we will have to send a PING frame.
4579 * This will be decided after having computed the ack-eliciting frames
4580 * to be added to this packet.
4581 */
4582 ack_frm_len = quic_ack_frm_reduce_sz(&ack_frm, end - 1 - *pn_len - pos);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004583 if (!ack_frm_len) {
4584 ssize_t room = end - pos;
4585 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4586 conn->conn, NULL, NULL, &room);
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004587 BUG_ON(1);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004588 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004589 }
4590
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004591 /* Length field value without the ack-eliciting frames. */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004592 len = ack_frm_len + *pn_len;
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004593 len_frms = 0;
4594 if (!cc && !MT_LIST_ISEMPTY(&qel->pktns->tx.frms)) {
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004595 ssize_t room = end - pos;
Frédéric Lécailleea604992020-12-24 13:01:37 +01004596
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004597 /* Initialize the length of the frames built below to <len>.
4598 * If any frame could be successfully built by qc_build_frms(),
4599 * we will have len_frms > len.
4600 */
4601 len_frms = len;
4602 if (!qc_build_frms(pkt, end - pos, &len_frms, pos - beg, qel, conn))
Frédéric Lécailleea604992020-12-24 13:01:37 +01004603 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4604 conn->conn, NULL, NULL, &room);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004605 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004606
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004607 /* Length (of the remaining data). Must not fail because, the buffer size
4608 * has been checked above. Note that we have reserved QUIC_TLS_TAG_LEN bytes
4609 * for the encryption tag. It must be taken into an account for the length
4610 * of this packet.
4611 */
4612 if (len_frms)
4613 len = len_frms + QUIC_TLS_TAG_LEN;
4614 else
4615 len += QUIC_TLS_TAG_LEN;
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004616 /* CONNECTION_CLOSE frame */
4617 if (cc) {
4618 struct quic_connection_close *cc = &cc_frm.connection_close;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004619
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004620 cc->error_code = conn->err_code;
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004621 len += qc_frm_len(&cc_frm);
4622 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004623 add_ping_frm = 0;
4624 padding_len = 0;
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004625 len_sz = quic_int_getsize(len);
4626 /* Add this packet size to <dglen> */
4627 dglen += head_len + len_sz + len;
4628 if (padding && dglen < QUIC_INITIAL_PACKET_MINLEN) {
4629 /* This is a maximum padding size */
4630 padding_len = QUIC_INITIAL_PACKET_MINLEN - dglen;
4631 /* The length field value is of this packet is <len> + <padding_len>
4632 * the size of which may be greater than the initial computed size
4633 * <len_sz>. So, let's deduce the difference betwen these to packet
4634 * sizes from <padding_len>.
4635 */
4636 padding_len -= quic_int_getsize(len + padding_len) - len_sz;
4637 len += padding_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004638 }
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004639 else if (LIST_ISEMPTY(&pkt->frms) || len_frms == len) {
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004640 if (qel->pktns->tx.pto_probe) {
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004641 /* If we cannot send a frame, we send a PING frame. */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004642 add_ping_frm = 1;
4643 len += 1;
4644 }
4645 /* If there is no frame at all to follow, add at least a PADDING frame. */
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004646 if (!ack_frm_len && !cc)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004647 len += padding_len = QUIC_PACKET_PN_MAXLEN - *pn_len;
4648 }
4649
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004650 if (pkt->type != QUIC_PACKET_TYPE_SHORT)
Frédéric Lécaillee1aa0d32021-08-03 16:03:09 +02004651 quic_enc_int(&pos, end, len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004652
4653 /* Packet number field address. */
4654 *buf_pn = pos;
4655
4656 /* Packet number encoding. */
4657 quic_packet_number_encode(&pos, end, pn, *pn_len);
4658
Frédéric Lécaille133e8a72020-12-18 09:33:27 +01004659 if (ack_frm_len && !qc_build_frm(&pos, end, &ack_frm, pkt, conn)) {
4660 ssize_t room = end - pos;
4661 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4662 conn->conn, NULL, NULL, &room);
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004663 BUG_ON(1);
Frédéric Lécaille133e8a72020-12-18 09:33:27 +01004664 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004665
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004666 /* Ack-eliciting frames */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004667 if (!LIST_ISEMPTY(&pkt->frms)) {
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02004668 struct quic_frame *cf;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004669
4670 list_for_each_entry(cf, &pkt->frms, list) {
Frédéric Lécaillef252adb2021-08-03 17:01:25 +02004671 if (!qc_build_frm(&pos, end, cf, pkt, conn)) {
Frédéric Lécaille133e8a72020-12-18 09:33:27 +01004672 ssize_t room = end - pos;
4673 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4674 conn->conn, NULL, NULL, &room);
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004675 BUG_ON(1);
Frédéric Lécaille133e8a72020-12-18 09:33:27 +01004676 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004677 }
4678 }
4679
4680 /* Build a PING frame if needed. */
4681 if (add_ping_frm) {
4682 frm.type = QUIC_FT_PING;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004683 if (!qc_build_frm(&pos, end, &frm, pkt, conn)) {
4684 ssize_t room = end - pos;
4685 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4686 conn->conn, NULL, NULL, &room);
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004687 BUG_ON(1);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004688 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004689 }
4690
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004691 /* Build a CONNECTION_CLOSE frame if needed. */
4692 if (cc && !qc_build_frm(&pos, end, &cc_frm, pkt, conn)) {
4693 ssize_t room = end - pos;
4694 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4695 conn->conn, NULL, NULL, &room);
4696 }
4697
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004698 /* Build a PADDING frame if needed. */
4699 if (padding_len) {
4700 frm.type = QUIC_FT_PADDING;
4701 frm.padding.len = padding_len;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004702 if (!qc_build_frm(&pos, end, &frm, pkt, conn)) {
4703 ssize_t room = end - pos;
4704 TRACE_PROTO("Not enough room", QUIC_EV_CONN_HPKT,
4705 conn->conn, NULL, NULL, &room);
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004706 BUG_ON(1);
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004707 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004708 }
4709
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004710 /* Always reset this variable as this function has no idea
4711 * if it was set. It is handle by the loss detection timer.
4712 */
4713 qel->pktns->tx.pto_probe = 0;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004714 pkt->len = pos - beg;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004715}
4716
Frédéric Lécaille0e50e1b2021-08-03 15:03:35 +02004717static inline void quic_tx_packet_init(struct quic_tx_packet *pkt, int type)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004718{
Frédéric Lécaille0e50e1b2021-08-03 15:03:35 +02004719 pkt->type = type;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004720 pkt->len = 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004721 pkt->cdata_len = 0;
4722 pkt->in_flight_len = 0;
4723 LIST_INIT(&pkt->frms);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004724 pkt->next = NULL;
4725 pkt->refcnt = 1;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004726}
4727
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05004728/* Free <pkt> TX packet which has not already attached to any tree. */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004729static inline void free_quic_tx_packet(struct quic_tx_packet *pkt)
4730{
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02004731 struct quic_frame *frm, *frmbak;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004732
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004733 if (!pkt)
4734 return;
4735
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004736 list_for_each_entry_safe(frm, frmbak, &pkt->frms, list) {
Willy Tarreau2b718102021-04-21 07:32:39 +02004737 LIST_DELETE(&frm->list);
Frédéric Lécaille0ad04582021-07-27 14:51:54 +02004738 pool_free(pool_head_quic_frame, frm);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004739 }
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004740 quic_tx_packet_refdec(pkt);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004741}
4742
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004743/* Build a packet into <buf> packet buffer with <pkt_type> as packet
4744 * type for <qc> QUIC connection from <qel> encryption level.
4745 * Return -2 if the packet could not be allocated or encrypted for any reason,
4746 * -1 if there was not enough room to build a packet.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004747 */
Frédéric Lécaille9445abc2021-08-04 10:49:51 +02004748static struct quic_tx_packet *qc_build_pkt(unsigned char **pos,
4749 const unsigned char *buf_end,
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004750 struct quic_enc_level *qel,
Frédéric Lécaille28f51fa2021-11-09 14:12:12 +01004751 struct quic_conn *qc, size_t dglen, int padding,
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004752 int pkt_type, int ack, int nb_pto_dgrams, int cc, int *err)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004753{
4754 /* The pointer to the packet number field. */
4755 unsigned char *buf_pn;
4756 unsigned char *beg, *end, *payload;
4757 int64_t pn;
4758 size_t pn_len, payload_len, aad_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004759 struct quic_tls_ctx *tls_ctx;
4760 struct quic_tx_packet *pkt;
4761
Frédéric Lécaille133e8a72020-12-18 09:33:27 +01004762 TRACE_ENTER(QUIC_EV_CONN_HPKT, qc->conn, NULL, qel);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004763 *err = 0;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004764 pkt = pool_alloc(pool_head_quic_tx_packet);
4765 if (!pkt) {
4766 TRACE_DEVEL("Not enough memory for a new packet", QUIC_EV_CONN_HPKT, qc->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004767 *err = -2;
4768 goto err;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004769 }
4770
Frédéric Lécaille0e50e1b2021-08-03 15:03:35 +02004771 quic_tx_packet_init(pkt, pkt_type);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004772 beg = *pos;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004773 pn_len = 0;
4774 buf_pn = NULL;
Frédéric Lécaille1fc5e162021-11-22 14:25:57 +01004775 if (!qc_eval_pkt(buf_end - beg, pkt, ack, nb_pto_dgrams, cc, qel, qc)) {
Frédéric Lécaille4436cb62021-08-16 12:06:46 +02004776 *err = -1;
4777 goto err;
4778 }
4779
Frédéric Lécaillea7348f62021-08-03 16:50:14 +02004780 /* Consume a packet number. */
4781 pn = HA_ATOMIC_ADD_FETCH(&qel->pktns->tx.next_pn, 1);
Frédéric Lécaille66cbb822021-11-17 11:56:21 +01004782 qc_do_build_pkt(*pos, buf_end, dglen, pkt, pn, &pn_len, &buf_pn,
4783 ack, padding, cc, nb_pto_dgrams, qel, qc);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004784
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004785 end = beg + pkt->len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004786 payload = buf_pn + pn_len;
4787 payload_len = end - payload;
4788 aad_len = payload - beg;
4789
4790 tls_ctx = &qel->tls_ctx;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004791 if (!quic_packet_encrypt(payload, payload_len, beg, aad_len, pn, tls_ctx, qc->conn)) {
4792 *err = -2;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004793 goto err;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004794 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004795
4796 end += QUIC_TLS_TAG_LEN;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004797 pkt->len += QUIC_TLS_TAG_LEN;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004798 if (!quic_apply_header_protection(beg, buf_pn, pn_len,
4799 tls_ctx->tx.hp, tls_ctx->tx.hp_key)) {
4800 TRACE_DEVEL("Could not apply the header protection", QUIC_EV_CONN_HPKT, qc->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004801 *err = -2;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004802 goto err;
4803 }
4804
Frédéric Lécailleca98a7f2021-11-10 17:30:15 +01004805 qc->tx.prep_bytes += pkt->len;
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004806 /* Now that a correct packet is built, let us consume <*pos> buffer. */
4807 *pos = end;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004808 /* Attach the built packet to its tree. */
Frédéric Lécaillea7348f62021-08-03 16:50:14 +02004809 pkt->pn_node.key = pn;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004810 /* Set the packet in fligth length for in flight packet only. */
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004811 if (pkt->flags & QUIC_FL_TX_PACKET_IN_FLIGHT) {
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004812 pkt->in_flight_len = pkt->len;
4813 qc->path->prep_in_flight += pkt->len;
Frédéric Lécaille04ffb662020-12-08 15:58:39 +01004814 }
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004815 pkt->pktns = qel->pktns;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004816 TRACE_LEAVE(QUIC_EV_CONN_HPKT, qc->conn, pkt);
4817
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004818 return pkt;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004819
4820 err:
4821 free_quic_tx_packet(pkt);
4822 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_HPKT, qc->conn);
Frédéric Lécaillec5b0c932021-07-06 16:35:52 +02004823 return NULL;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004824}
4825
Frédéric Lécaillefbe3b772021-03-03 16:23:44 +01004826/* Copy up to <count> bytes from connection <conn> internal stream storage into buffer <buf>.
4827 * Return the number of bytes which have been copied.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004828 */
Frédéric Lécaillefbe3b772021-03-03 16:23:44 +01004829static size_t quic_conn_to_buf(struct connection *conn, void *xprt_ctx,
4830 struct buffer *buf, size_t count, int flags)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004831{
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004832 size_t try, done = 0;
4833
4834 if (!conn_ctrl_ready(conn))
4835 return 0;
4836
4837 if (!fd_recv_ready(conn->handle.fd))
4838 return 0;
4839
4840 conn->flags &= ~CO_FL_WAIT_ROOM;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004841
4842 /* read the largest possible block. For this, we perform only one call
4843 * to recv() unless the buffer wraps and we exactly fill the first hunk,
Frédéric Lécaillefbe3b772021-03-03 16:23:44 +01004844 * in which case we accept to do it once again.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004845 */
4846 while (count > 0) {
4847 try = b_contig_space(buf);
4848 if (!try)
4849 break;
4850
4851 if (try > count)
4852 try = count;
4853
Frédéric Lécaillefbe3b772021-03-03 16:23:44 +01004854 b_add(buf, try);
4855 done += try;
4856 count -= try;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004857 }
4858
4859 if (unlikely(conn->flags & CO_FL_WAIT_L4_CONN) && done)
4860 conn->flags &= ~CO_FL_WAIT_L4_CONN;
4861
4862 leave:
4863 return done;
4864
4865 read0:
4866 conn_sock_read0(conn);
4867 conn->flags &= ~CO_FL_WAIT_L4_CONN;
4868
4869 /* Now a final check for a possible asynchronous low-level error
4870 * report. This can happen when a connection receives a reset
4871 * after a shutdown, both POLL_HUP and POLL_ERR are queued, and
4872 * we might have come from there by just checking POLL_HUP instead
4873 * of recv()'s return value 0, so we have no way to tell there was
4874 * an error without checking.
4875 */
Willy Tarreauf5090652021-04-06 17:23:40 +02004876 if (unlikely(fdtab[conn->handle.fd].state & FD_POLL_ERR))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004877 conn->flags |= CO_FL_ERROR | CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH;
4878 goto leave;
4879}
4880
4881
4882/* Send up to <count> pending bytes from buffer <buf> to connection <conn>'s
4883 * socket. <flags> may contain some CO_SFL_* flags to hint the system about
4884 * other pending data for example, but this flag is ignored at the moment.
4885 * Only one call to send() is performed, unless the buffer wraps, in which case
4886 * a second call may be performed. The connection's flags are updated with
4887 * whatever special event is detected (error, empty). The caller is responsible
4888 * for taking care of those events and avoiding the call if inappropriate. The
4889 * function does not call the connection's polling update function, so the caller
4890 * is responsible for this. It's up to the caller to update the buffer's contents
4891 * based on the return value.
4892 */
4893static size_t quic_conn_from_buf(struct connection *conn, void *xprt_ctx, const struct buffer *buf, size_t count, int flags)
4894{
4895 ssize_t ret;
4896 size_t try, done;
4897 int send_flag;
4898
4899 if (!conn_ctrl_ready(conn))
4900 return 0;
4901
4902 if (!fd_send_ready(conn->handle.fd))
4903 return 0;
4904
4905 done = 0;
4906 /* send the largest possible block. For this we perform only one call
4907 * to send() unless the buffer wraps and we exactly fill the first hunk,
4908 * in which case we accept to do it once again.
4909 */
4910 while (count) {
4911 try = b_contig_data(buf, done);
4912 if (try > count)
4913 try = count;
4914
4915 send_flag = MSG_DONTWAIT | MSG_NOSIGNAL;
4916 if (try < count || flags & CO_SFL_MSG_MORE)
4917 send_flag |= MSG_MORE;
4918
4919 ret = sendto(conn->handle.fd, b_peek(buf, done), try, send_flag,
4920 (struct sockaddr *)conn->dst, get_addr_len(conn->dst));
4921 if (ret > 0) {
4922 count -= ret;
4923 done += ret;
4924
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05004925 /* A send succeeded, so we can consider ourself connected */
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01004926 conn->flags |= CO_FL_WAIT_L4L6;
4927 /* if the system buffer is full, don't insist */
4928 if (ret < try)
4929 break;
4930 }
4931 else if (ret == 0 || errno == EAGAIN || errno == ENOTCONN || errno == EINPROGRESS) {
4932 /* nothing written, we need to poll for write first */
4933 fd_cant_send(conn->handle.fd);
4934 break;
4935 }
4936 else if (errno != EINTR) {
4937 conn->flags |= CO_FL_ERROR | CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH;
4938 break;
4939 }
4940 }
4941 if (unlikely(conn->flags & CO_FL_WAIT_L4_CONN) && done)
4942 conn->flags &= ~CO_FL_WAIT_L4_CONN;
4943
4944 if (done > 0) {
4945 /* we count the total bytes sent, and the send rate for 32-byte
4946 * blocks. The reason for the latter is that freq_ctr are
4947 * limited to 4GB and that it's not enough per second.
4948 */
4949 _HA_ATOMIC_ADD(&global.out_bytes, done);
4950 update_freq_ctr(&global.out_32bps, (done + 16) / 32);
4951 }
4952 return done;
4953}
4954
Frédéric Lécaille422a39c2021-03-03 17:28:34 +01004955/* Called from the upper layer, to subscribe <es> to events <event_type>. The
4956 * event subscriber <es> is not allowed to change from a previous call as long
4957 * as at least one event is still subscribed. The <event_type> must only be a
4958 * combination of SUB_RETRY_RECV and SUB_RETRY_SEND. It always returns 0.
4959 */
4960static int quic_conn_subscribe(struct connection *conn, void *xprt_ctx, int event_type, struct wait_event *es)
4961{
Frédéric Lécaille513b4f22021-09-20 15:23:17 +02004962 struct qcc *qcc = conn->qc->qcc;
4963
4964 BUG_ON(event_type & ~(SUB_RETRY_SEND|SUB_RETRY_RECV));
4965 BUG_ON(qcc->subs && qcc->subs != es);
4966
4967 es->events |= event_type;
4968 qcc->subs = es;
4969
4970 if (event_type & SUB_RETRY_RECV)
4971 TRACE_DEVEL("subscribe(recv)", QUIC_EV_CONN_XPRTRECV, conn, qcc);
4972
4973 if (event_type & SUB_RETRY_SEND)
4974 TRACE_DEVEL("subscribe(send)", QUIC_EV_CONN_XPRTSEND, conn, qcc);
4975
4976 return 0;
Frédéric Lécaille422a39c2021-03-03 17:28:34 +01004977}
4978
4979/* Called from the upper layer, to unsubscribe <es> from events <event_type>.
4980 * The <es> pointer is not allowed to differ from the one passed to the
4981 * subscribe() call. It always returns zero.
4982 */
4983static int quic_conn_unsubscribe(struct connection *conn, void *xprt_ctx, int event_type, struct wait_event *es)
4984{
4985 return conn_unsubscribe(conn, xprt_ctx, event_type, es);
4986}
4987
Frédéric Lécaille75dd2b72021-09-28 09:51:23 +02004988/* Try to allocate the <*ssl> SSL session object for <qc> QUIC connection
4989 * with <ssl_ctx> as SSL context inherited settings. Also set the transport
4990 * parameters of this session.
4991 * This is the responsibility of the caller to check the validity of all the
4992 * pointers passed as parameter to this function.
4993 * Return 0 if succeeded, -1 if not. If failed, sets the ->err_code member of <qc->conn> to
4994 * CO_ER_SSL_NO_MEM.
4995 */
4996static int qc_ssl_sess_init(struct quic_conn *qc, SSL_CTX *ssl_ctx, SSL **ssl,
4997 unsigned char *params, size_t params_len)
4998{
4999 int retry;
5000
5001 retry = 1;
5002 retry:
5003 *ssl = SSL_new(ssl_ctx);
5004 if (!*ssl) {
5005 if (!retry--)
5006 goto err;
5007
5008 pool_gc(NULL);
5009 goto retry;
5010 }
5011
5012 if (!SSL_set_quic_method(*ssl, &ha_quic_method) ||
5013 !SSL_set_ex_data(*ssl, ssl_app_data_index, qc->conn) ||
5014 !SSL_set_quic_transport_params(*ssl, qc->enc_params, qc->enc_params_len)) {
5015 goto err;
5016
5017 SSL_free(*ssl);
5018 *ssl = NULL;
5019 if (!retry--)
5020 goto err;
5021
5022 pool_gc(NULL);
5023 goto retry;
5024 }
5025
5026 return 0;
5027
5028 err:
5029 qc->conn->err_code = CO_ER_SSL_NO_MEM;
5030 return -1;
5031}
5032
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005033/* Initialize a QUIC connection (quic_conn struct) to be attached to <conn>
5034 * connection with <xprt_ctx> as address of the xprt context.
5035 * Returns 1 if succeeded, 0 if not.
5036 */
5037static int qc_conn_init(struct connection *conn, void **xprt_ctx)
5038{
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02005039 struct ssl_sock_ctx *ctx;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005040
5041 TRACE_ENTER(QUIC_EV_CONN_NEW, conn);
5042
5043 if (*xprt_ctx)
5044 goto out;
5045
Frédéric Lécailled77c50b2021-11-23 15:59:59 +01005046 ctx = pool_zalloc(pool_head_quic_conn_ctx);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005047 if (!ctx) {
5048 conn->err_code = CO_ER_SYS_MEMLIM;
5049 goto err;
5050 }
5051
5052 ctx->wait_event.tasklet = tasklet_new();
5053 if (!ctx->wait_event.tasklet) {
5054 conn->err_code = CO_ER_SYS_MEMLIM;
5055 goto err;
5056 }
5057
5058 ctx->wait_event.tasklet->process = quic_conn_io_cb;
5059 ctx->wait_event.tasklet->context = ctx;
5060 ctx->wait_event.events = 0;
Frédéric Lécailled77c50b2021-11-23 15:59:59 +01005061 HA_ATOMIC_STORE(&ctx->conn, conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005062 ctx->subs = NULL;
5063 ctx->xprt_ctx = NULL;
5064
5065 ctx->xprt = xprt_get(XPRT_QUIC);
5066 if (objt_server(conn->target)) {
5067 /* Server */
5068 struct server *srv = __objt_server(conn->target);
5069 unsigned char dcid[QUIC_CID_LEN];
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02005070 struct quic_conn *qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005071 int ssl_err, ipv4;
5072
5073 ssl_err = SSL_ERROR_NONE;
5074 if (RAND_bytes(dcid, sizeof dcid) != 1)
5075 goto err;
5076
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005077 ipv4 = conn->dst->ss_family == AF_INET;
Frédéric Lécaille6de72872021-06-11 15:44:24 +02005078 qc = qc_new_conn(QUIC_PROTOCOL_VERSION_DRAFT_28, ipv4,
Frédéric Lécaille6b197642021-07-06 16:25:08 +02005079 dcid, sizeof dcid, NULL, 0, 0, srv);
Frédéric Lécaille6de72872021-06-11 15:44:24 +02005080 if (qc == NULL)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005081 goto err;
5082
Frédéric Lécaille6de72872021-06-11 15:44:24 +02005083 /* Insert our SCID, the connection ID for the QUIC client. */
5084 ebmb_insert(&srv->cids, &qc->scid_node, qc->scid.len);
5085
5086 conn->qc = qc;
5087 qc->conn = conn;
Frédéric Lécaille2fc76cf2021-08-31 19:10:40 +02005088 if (!qc_new_isecs(qc, initial_salt_v1, sizeof initial_salt_v1,
5089 dcid, sizeof dcid, 0))
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005090 goto err;
5091
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02005092 qc->rx.params = srv->quic_params;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005093 /* Copy the initial source connection ID. */
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02005094 quic_cid_cpy(&qc->rx.params.initial_source_connection_id, &qc->scid);
5095 qc->enc_params_len =
5096 quic_transport_params_encode(qc->enc_params, qc->enc_params + sizeof qc->enc_params,
5097 &qc->rx.params, 0);
5098 if (!qc->enc_params_len)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005099 goto err;
5100
Frédéric Lécaille75dd2b72021-09-28 09:51:23 +02005101 if (qc_ssl_sess_init(qc, srv->ssl_ctx.ctx, &ctx->ssl,
5102 qc->enc_params, qc->enc_params_len) == -1)
5103 goto err;
5104
Frédéric Lécaillea5fe49f2021-06-04 11:52:35 +02005105 SSL_set_quic_transport_params(ctx->ssl, qc->enc_params, qc->enc_params_len);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005106 SSL_set_connect_state(ctx->ssl);
5107 ssl_err = SSL_do_handshake(ctx->ssl);
5108 if (ssl_err != 1) {
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02005109 int st;
5110
5111 st = HA_ATOMIC_LOAD(&qc->state);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005112 ssl_err = SSL_get_error(ctx->ssl, ssl_err);
5113 if (ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE) {
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02005114 TRACE_PROTO("SSL handshake", QUIC_EV_CONN_HDSHK, ctx->conn, &st, &ssl_err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005115 }
5116 else {
Frédéric Lécailleeed7a7d2021-08-18 09:16:01 +02005117 TRACE_DEVEL("SSL handshake error", QUIC_EV_CONN_HDSHK, ctx->conn, &st, &ssl_err);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005118 goto err;
5119 }
5120 }
5121 }
5122 else if (objt_listener(conn->target)) {
5123 /* Listener */
5124 struct bind_conf *bc = __objt_listener(conn->target)->bind_conf;
Frédéric Lécaille1e1aad42021-05-27 14:57:09 +02005125 struct quic_conn *qc = ctx->conn->qc;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005126
Frédéric Lécailled4d6aa72021-09-03 15:56:18 +02005127 ctx->wait_event.tasklet->tid = quic_get_cid_tid(&qc->scid);
Frédéric Lécaille75dd2b72021-09-28 09:51:23 +02005128 if (qc_ssl_sess_init(qc, bc->initial_ctx, &ctx->ssl,
5129 qc->enc_params, qc->enc_params_len) == -1)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005130 goto err;
5131
5132 SSL_set_accept_state(ctx->ssl);
5133 }
5134
Frédéric Lécailled77c50b2021-11-23 15:59:59 +01005135 HA_ATOMIC_STORE(xprt_ctx, ctx);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005136
5137 /* Leave init state and start handshake */
5138 conn->flags |= CO_FL_SSL_WAIT_HS | CO_FL_WAIT_L6_CONN;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005139
5140 out:
5141 TRACE_LEAVE(QUIC_EV_CONN_NEW, conn);
5142
5143 return 0;
5144
5145 err:
Willy Tarreau7deb28c2021-05-10 07:40:27 +02005146 if (ctx && ctx->wait_event.tasklet)
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005147 tasklet_free(ctx->wait_event.tasklet);
5148 pool_free(pool_head_quic_conn_ctx, ctx);
Frédéric Lécaille6c1e36c2020-12-23 17:17:37 +01005149 TRACE_DEVEL("leaving in error", QUIC_EV_CONN_NEW, conn);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005150 return -1;
5151}
5152
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02005153/* Start the QUIC transport layer */
5154static int qc_xprt_start(struct connection *conn, void *ctx)
5155{
5156 struct quic_conn *qc;
Frédéric Lécaille1eaec332021-06-04 14:59:59 +02005157 struct ssl_sock_ctx *qctx = ctx;
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02005158
5159 qc = conn->qc;
5160 if (!quic_conn_init_timer(qc)) {
5161 TRACE_PROTO("Non initialized timer", QUIC_EV_CONN_LPKT, conn);
5162 return 0;
5163 }
5164
5165 tasklet_wakeup(qctx->wait_event.tasklet);
5166 return 1;
5167}
5168
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005169/* transport-layer operations for QUIC connections. */
5170static struct xprt_ops ssl_quic = {
Amaury Denoyelle414cac52021-09-22 11:14:37 +02005171 .close = quic_close,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005172 .snd_buf = quic_conn_from_buf,
5173 .rcv_buf = quic_conn_to_buf,
Frédéric Lécaille422a39c2021-03-03 17:28:34 +01005174 .subscribe = quic_conn_subscribe,
5175 .unsubscribe = quic_conn_unsubscribe,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005176 .init = qc_conn_init,
Frédéric Lécaille3d77fa72021-05-31 09:30:14 +02005177 .start = qc_xprt_start,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005178 .prepare_bind_conf = ssl_sock_prepare_bind_conf,
5179 .destroy_bind_conf = ssl_sock_destroy_bind_conf,
Amaury Denoyelle71e588c2021-11-12 11:23:29 +01005180 .get_alpn = ssl_sock_get_alpn,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005181 .name = "QUIC",
5182};
5183
5184__attribute__((constructor))
5185static void __quic_conn_init(void)
5186{
5187 ha_quic_meth = BIO_meth_new(0x666, "ha QUIC methods");
5188 xprt_register(XPRT_QUIC, &ssl_quic);
5189}
5190
5191__attribute__((destructor))
5192static void __quic_conn_deinit(void)
5193{
5194 BIO_meth_free(ha_quic_meth);
5195}
5196
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01005197/* Read all the QUIC packets found in <buf> from QUIC connection with <owner>
5198 * as owner calling <func> function.
Ilya Shipitsin1e9a6662021-01-05 22:10:46 +05005199 * Return the number of bytes read if succeeded, -1 if not.
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005200 */
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01005201static ssize_t quic_dgram_read(struct buffer *buf, size_t len, void *owner,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005202 struct sockaddr_storage *saddr, qpkt_read_func *func)
5203{
5204 unsigned char *pos;
5205 const unsigned char *end;
5206 struct quic_dgram_ctx dgram_ctx = {
5207 .dcid_node = NULL,
5208 .owner = owner,
5209 };
5210
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01005211 pos = (unsigned char *)b_head(buf);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005212 end = pos + len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005213 do {
5214 int ret;
5215 struct quic_rx_packet *pkt;
Frédéric Lécaille865b0782021-09-23 07:33:20 +02005216 size_t pkt_len;
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005217
Willy Tarreaue4498932021-03-22 21:13:05 +01005218 pkt = pool_zalloc(pool_head_quic_rx_packet);
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005219 if (!pkt)
5220 goto err;
5221
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005222 quic_rx_packet_refinc(pkt);
5223 ret = func(&pos, end, pkt, &dgram_ctx, saddr);
Frédéric Lécaille865b0782021-09-23 07:33:20 +02005224 pkt_len = pkt->len;
Frédéric Lécaille310d1bd2021-09-22 15:10:49 +02005225 quic_rx_packet_refdec(pkt);
Frédéric Lécaille865b0782021-09-23 07:33:20 +02005226 if (ret == -1 && !pkt_len)
5227 /* If the packet length could not be found, we cannot continue. */
5228 break;
5229
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005230 } while (pos < end);
5231
5232 /* Increasing the received bytes counter by the UDP datagram length
5233 * if this datagram could be associated to a connection.
5234 */
5235 if (dgram_ctx.qc)
5236 dgram_ctx.qc->rx.bytes += len;
5237
5238 return pos - (unsigned char *)buf;
5239
5240 err:
5241 return -1;
5242}
5243
Frédéric Lécaille324ecda2021-11-02 10:14:44 +01005244ssize_t quic_lstnr_dgram_read(struct buffer *buf, size_t len, void *owner,
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005245 struct sockaddr_storage *saddr)
5246{
5247 return quic_dgram_read(buf, len, owner, saddr, qc_lstnr_pkt_rcv);
5248}
5249
Amaury Denoyelle118b2cb2021-11-25 16:05:16 +01005250/* Function to automatically activate QUIC traces on stdout.
5251 * Activated via the compilation flag -DENABLE_QUIC_STDOUT_TRACES.
5252 * Main use for now is in the docker image for QUIC interop testing.
5253 */
5254static void quic_init_stdout_traces(void)
5255{
5256#ifdef ENABLE_QUIC_STDOUT_TRACES
5257 trace_quic.sink = sink_find("stdout");
5258 trace_quic.level = TRACE_LEVEL_DEVELOPER;
Amaury Denoyelle118b2cb2021-11-25 16:05:16 +01005259 trace_quic.state = TRACE_STATE_RUNNING;
5260#endif
5261}
5262INITCALL0(STG_INIT, quic_init_stdout_traces);
5263
Frédéric Lécaillea7e7ce92020-11-23 14:14:04 +01005264/*
5265 * Local variables:
5266 * c-indent-level: 8
5267 * c-basic-offset: 8
5268 * End:
5269 */