lsquic.h revision fecdd104
1/* Copyright (c) 2017 - 2020 LiteSpeed Technologies Inc.  See LICENSE. */
2#ifndef __LSQUIC_H__
3#define __LSQUIC_H__
4
5/**
6 * @file
7 * public API for using liblsquic is defined in this file.
8 *
9 */
10
11#include <stdarg.h>
12#include <lsquic_types.h>
13#ifndef WIN32
14#include <sys/uio.h>
15#include <time.h>
16#else
17#include <vc_compat.h>
18#endif
19
20struct sockaddr;
21
22#ifdef __cplusplus
23extern "C" {
24#endif
25
26#define LSQUIC_MAJOR_VERSION 2
27#define LSQUIC_MINOR_VERSION 21
28#define LSQUIC_PATCH_VERSION 0
29
30/**
31 * Engine flags:
32 */
33
34/** Server mode */
35#define LSENG_SERVER (1 << 0)
36
37/** Use HTTP behavior */
38#define LSENG_HTTP  (1 << 1)
39
40#define LSENG_HTTP_SERVER (LSENG_SERVER|LSENG_HTTP)
41
42/**
43 * This is a list of QUIC versions that we know of.  List of supported
44 * versions is in LSQUIC_SUPPORTED_VERSIONS.
45 */
46enum lsquic_version
47{
48    /**
49     * Q043.  Support for processing PRIORITY frames.  Since this library
50     * has supported PRIORITY frames from the beginning, this version is
51     * exactly the same as LSQVER_042.
52     */
53    LSQVER_043,
54
55    /**
56     * Q046.  Use IETF Draft-17 compatible packet headers.
57     */
58    LSQVER_046,
59
60    /**
61     * Q050.  Variable-length QUIC server connection IDs.  Use CRYPTO frames
62     * for handshake.  IETF header format matching invariants-06.  Packet
63     * number encryption.  Initial packets are obfuscated.
64     */
65    LSQVER_050,
66
67#if LSQUIC_USE_Q098
68    /**
69     * Q098.  This is a made-up, experimental version used to test version
70     * negotiation.  The choice of 98 is similar to Google's choice of 99
71     * as the "IETF" version.
72     */
73    LSQVER_098,
74#define LSQUIC_EXPERIMENTAL_Q098 (1 << LSQVER_098)
75#else
76#define LSQUIC_EXPERIMENTAL_Q098 0
77#endif
78
79    /**
80     * IETF QUIC Draft-27
81     */
82    LSQVER_ID27,
83
84    /**
85     * IETF QUIC Draft-28; this version is deprecated.
86     */
87    LSQVER_ID28,
88
89    /**
90     * IETF QUIC Draft-29
91     */
92    LSQVER_ID29,
93
94    /**
95     * IETF QUIC Draft-30
96     */
97    LSQVER_ID30,
98
99    /**
100     * IETF QUIC Draft-31
101     */
102    LSQVER_ID31,
103
104    /**
105     * Special version to trigger version negotiation.
106     * [draft-ietf-quic-transport-11], Section 3.
107     */
108    LSQVER_VERNEG,
109
110    N_LSQVER
111};
112
113/**
114 * We currently support versions 43, 46, 50, Draft-27, Draft-28, Draft-29,
115 * Draft-30, and Draft-31.
116 * @see lsquic_version
117 */
118#define LSQUIC_SUPPORTED_VERSIONS ((1 << N_LSQVER) - 1)
119
120/**
121 * List of versions in which the server never includes CID in short packets.
122 */
123#define LSQUIC_FORCED_TCID0_VERSIONS ((1 << LSQVER_046)|(1 << LSQVER_050))
124
125#define LSQUIC_EXPERIMENTAL_VERSIONS ( \
126                            (1 << LSQVER_VERNEG) | LSQUIC_EXPERIMENTAL_Q098)
127
128#define LSQUIC_DEPRECATED_VERSIONS ((1 << LSQVER_ID27) | (1 << LSQVER_ID28) \
129                                  | (1 << LSQVER_ID30))
130
131#define LSQUIC_GQUIC_HEADER_VERSIONS (1 << LSQVER_043)
132
133#define LSQUIC_IETF_VERSIONS ((1 << LSQVER_ID27) | (1 << LSQVER_ID28) \
134                          | (1 << LSQVER_ID29) | (1 << LSQVER_ID30)   \
135                          | (1 << LSQVER_ID31) | (1 << LSQVER_VERNEG))
136
137#define LSQUIC_IETF_DRAFT_VERSIONS ((1 << LSQVER_ID27) | (1 << LSQVER_ID28) \
138                                  | (1 << LSQVER_ID29) | (1 << LSQVER_ID30) \
139                                  | (1 << LSQVER_ID31) | (1 << LSQVER_VERNEG))
140
141enum lsquic_hsk_status
142{
143    /**
144     * The handshake failed.
145     */
146    LSQ_HSK_FAIL,
147    /**
148     * The handshake succeeded without session resumption.
149     */
150    LSQ_HSK_OK,
151    /**
152     * The handshake succeeded with session resumption.
153     */
154    LSQ_HSK_RESUMED_OK,
155    /**
156     * Session resumption failed.  Retry the connection without session
157     * resumption.
158     */
159    LSQ_HSK_RESUMED_FAIL,
160};
161
162/**
163 * @struct lsquic_stream_if
164 * @brief The definitions of callback functions called by lsquic_stream to
165 * process events.
166 *
167 */
168struct lsquic_stream_if {
169
170    /**
171     * Use @ref lsquic_conn_get_ctx to get back the context.  It is
172     * OK for this function to return NULL.
173     */
174    lsquic_conn_ctx_t *(*on_new_conn)(void *stream_if_ctx,
175                                                        lsquic_conn_t *c);
176
177    /** This is called when our side received GOAWAY frame.  After this,
178     *  new streams should not be created.  The callback is optional.
179     */
180    void (*on_goaway_received)(lsquic_conn_t *c);
181    void (*on_conn_closed)(lsquic_conn_t *c);
182
183    /** If you need to initiate a connection, call lsquic_conn_make_stream().
184     *  This will cause `on_new_stream' callback to be called when appropriate
185     *  (this operation is delayed when maximum number of outgoing streams is
186     *  reached).
187     *
188     *  After `on_close' is called, the stream is no longer accessible.
189     */
190    lsquic_stream_ctx_t *
191         (*on_new_stream)(void *stream_if_ctx, lsquic_stream_t *s);
192
193    void (*on_read)     (lsquic_stream_t *s, lsquic_stream_ctx_t *h);
194    void (*on_write)    (lsquic_stream_t *s, lsquic_stream_ctx_t *h);
195    void (*on_close)    (lsquic_stream_t *s, lsquic_stream_ctx_t *h);
196    /* Called when datagram is ready to be written */
197    ssize_t (*on_dg_write)(lsquic_conn_t *c, void *, size_t);
198    /* Called when datagram is read from a packet.  This callback is required
199     * when es_datagrams is true.  Take care to process it quickly, as this
200     * is called during lsquic_engine_packet_in().
201     */
202    void (*on_datagram)(lsquic_conn_t *, const void *buf, size_t);
203    /* This callback in only called in client mode */
204    /**
205     * When handshake is completed, this optional callback is called.
206     */
207    void (*on_hsk_done)(lsquic_conn_t *c, enum lsquic_hsk_status s);
208    /**
209     * When client receives a token in NEW_TOKEN frame, this callback is called.
210     * The callback is optional.
211     */
212    void (*on_new_token)(lsquic_conn_t *c, const unsigned char *token,
213                                                        size_t token_size);
214    /**
215     * This optional callback lets client record information needed to
216     * perform a session resumption next time around.
217     */
218    void (*on_sess_resume_info)(lsquic_conn_t *c, const unsigned char *, size_t);
219};
220
221struct ssl_ctx_st;
222struct ssl_st;
223struct lsxpack_header;
224
225/**
226 * QUIC engine in server mode needs access to certificates.  This is
227 * accomplished by providing a callback and a context to the engine
228 * constructor.
229 */
230
231/* `sni' may be NULL if engine is not HTTP mode and client TLS transport
232 * parameters did not include the SNI.
233 */
234typedef struct ssl_ctx_st * (*lsquic_lookup_cert_f)(
235    void *lsquic_cert_lookup_ctx, const struct sockaddr *local, const char *sni);
236
237/**
238 * Minimum flow control window is set to 16 KB for both client and server.
239 * This means we can send up to this amount of data before handshake gets
240 * completed.
241 */
242#define      LSQUIC_MIN_FCW             (16 * 1024)
243
244/* Each LSQUIC_DF_* value corresponds to es_* entry in
245 * lsquic_engine_settings below.
246 */
247
248/**
249 * By default, deprecated and experimental versions are not included.
250 */
251#define LSQUIC_DF_VERSIONS         (LSQUIC_SUPPORTED_VERSIONS & \
252                                            ~LSQUIC_DEPRECATED_VERSIONS & \
253                                            ~LSQUIC_EXPERIMENTAL_VERSIONS)
254
255#define LSQUIC_DF_CFCW_SERVER      (3 * 1024 * 1024 / 2)
256#define LSQUIC_DF_CFCW_CLIENT      (15 * 1024 * 1024)
257#define LSQUIC_DF_SFCW_SERVER      (1 * 1024 * 1024)
258#define LSQUIC_DF_SFCW_CLIENT      (6 * 1024 * 1024)
259#define LSQUIC_DF_MAX_STREAMS_IN   100
260
261/* IQUIC uses different names for these: */
262#define LSQUIC_DF_INIT_MAX_DATA_SERVER LSQUIC_DF_CFCW_SERVER
263#define LSQUIC_DF_INIT_MAX_DATA_CLIENT LSQUIC_DF_CFCW_CLIENT
264#define LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_REMOTE_SERVER LSQUIC_DF_SFCW_SERVER
265#define LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_LOCAL_SERVER 0
266#define LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_REMOTE_CLIENT 0
267#define LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_LOCAL_CLIENT LSQUIC_DF_SFCW_CLIENT
268#define LSQUIC_DF_INIT_MAX_STREAMS_BIDI LSQUIC_DF_MAX_STREAMS_IN
269#define LSQUIC_DF_INIT_MAX_STREAMS_UNI_CLIENT 100
270#define LSQUIC_DF_INIT_MAX_STREAMS_UNI_SERVER 3
271/* XXX What's a good value here? */
272#define LSQUIC_DF_INIT_MAX_STREAM_DATA_UNI_CLIENT   (32 * 1024)
273#define LSQUIC_DF_INIT_MAX_STREAM_DATA_UNI_SERVER   (12 * 1024)
274
275/**
276 * Default idle connection time in seconds.
277 */
278#define LSQUIC_DF_IDLE_TIMEOUT 30
279
280/**
281 * Default ping period in seconds.
282 */
283#define LSQUIC_DF_PING_PERIOD 15
284
285/**
286 * Default handshake timeout in microseconds.
287 */
288#define LSQUIC_DF_HANDSHAKE_TO     (10 * 1000 * 1000)
289
290#define LSQUIC_DF_IDLE_CONN_TO     (LSQUIC_DF_IDLE_TIMEOUT * 1000 * 1000)
291#define LSQUIC_DF_SILENT_CLOSE     1
292
293/** Default value of maximum header list size.  If set to non-zero value,
294 *  SETTINGS_MAX_HEADER_LIST_SIZE will be sent to peer after handshake is
295 *  completed (assuming the peer supports this setting frame type).
296 */
297#define LSQUIC_DF_MAX_HEADER_LIST_SIZE 0
298
299/** Default value of UAID (user-agent ID). */
300#define LSQUIC_DF_UA               "LSQUIC"
301
302#define LSQUIC_DF_STTL               86400
303#define LSQUIC_DF_MAX_INCHOATE     (1 * 1000 * 1000)
304/** Do not use NSTP by default */
305#define LSQUIC_DF_SUPPORT_NSTP     0
306/** TODO: IETF QUIC clients do not support push */
307#define LSQUIC_DF_SUPPORT_PUSH         1
308#define LSQUIC_DF_SUPPORT_TCID0    1
309/** By default, LSQUIC ignores Public Reset packets. */
310#define LSQUIC_DF_HONOR_PRST       0
311
312/**
313 * By default, LSQUIC will not send Public Reset packets in response to
314 * packets that specify unknown connections.
315 */
316#define LSQUIC_DF_SEND_PRST        0
317
318/** By default, infinite loop checks are turned on */
319#define LSQUIC_DF_PROGRESS_CHECK    1000
320
321/** By default, read/write events are dispatched in a loop */
322#define LSQUIC_DF_RW_ONCE           0
323
324/** By default, the threshold is not enabled */
325#define LSQUIC_DF_PROC_TIME_THRESH  0
326
327/** By default, packets are paced */
328#define LSQUIC_DF_PACE_PACKETS      1
329
330/** Default clock granularity is 1000 microseconds */
331#define LSQUIC_DF_CLOCK_GRANULARITY      1000
332
333/** The default value is 8 for simplicity */
334#define LSQUIC_DF_SCID_LEN 8
335
336/** The default value is 60 CIDs per minute */
337#define LSQUIC_DF_SCID_ISS_RATE   60
338
339#define LSQUIC_DF_QPACK_DEC_MAX_BLOCKED 100
340#define LSQUIC_DF_QPACK_DEC_MAX_SIZE 4096
341#define LSQUIC_DF_QPACK_ENC_MAX_BLOCKED 100
342#define LSQUIC_DF_QPACK_ENC_MAX_SIZE 4096
343
344/** ECN is disabled by default */
345#define LSQUIC_DF_ECN 0
346
347/** Allow migration by default */
348#define LSQUIC_DF_ALLOW_MIGRATION 1
349
350/** Use QL loss bits by default */
351#define LSQUIC_DF_QL_BITS 2
352
353/** Turn spin bit on by default */
354#define LSQUIC_DF_SPIN 1
355
356/** Turn off delayed ACKs extension by default */
357#define LSQUIC_DF_DELAYED_ACKS 0
358
359/** Turn on timestamp extension by default */
360#define LSQUIC_DF_TIMESTAMPS 1
361
362/* Use Adaptive CC by default */
363#define LSQUIC_DF_CC_ALGO 3
364
365/* Default value of the CC RTT threshold is 1.5 ms */
366#define LSQUIC_DF_CC_RTT_THRESH 1500
367
368/** Turn off datagram extension by default */
369#define LSQUIC_DF_DATAGRAMS 0
370
371/** Assume optimistic NAT by default. */
372#define LSQUIC_DF_OPTIMISTIC_NAT 1
373
374/** By default, incoming packet size is not limited. */
375#define LSQUIC_DF_MAX_UDP_PAYLOAD_SIZE_RX 0
376
377/**
378 * By default, greasing the QUIC bit is enabled (if peer sent
379 * the "grease_quic_bit" transport parameter).
380 */
381#define LSQUIC_DF_GREASE_QUIC_BIT 1
382
383/** By default, DPLPMTUD is enabled */
384#define LSQUIC_DF_DPLPMTUD 1
385
386/** By default, this value is left up to the engine. */
387#define LSQUIC_DF_BASE_PLPMTU 0
388
389/** By default, this value is left up to the engine. */
390#define LSQUIC_DF_MAX_PLPMTU 0
391
392/** By default, drop no-progress connections after 60 seconds on the server */
393#define LSQUIC_DF_NOPROGRESS_TIMEOUT_SERVER 60
394
395/** By default, do not use no-progress timeout on the client */
396#define LSQUIC_DF_NOPROGRESS_TIMEOUT_CLIENT 0
397
398/** By default, we use the minimum timer of 1000 milliseconds */
399#define LSQUIC_DF_MTU_PROBE_TIMER 1000
400
401struct lsquic_engine_settings {
402    /**
403     * This is a bit mask wherein each bit corresponds to a value in
404     * enum lsquic_version.  Client starts negotiating with the highest
405     * version and goes down.  Server supports either of the versions
406     * specified here.
407     *
408     * This setting applies to both Google and IETF QUIC.
409     *
410     * @see lsquic_version
411     */
412    unsigned        es_versions;
413
414    /**
415     * Initial default CFCW.
416     *
417     * In server mode, per-connection values may be set lower than
418     * this if resources are scarce.
419     *
420     * Do not set es_cfcw and es_sfcw lower than @ref LSQUIC_MIN_FCW.
421     *
422     * @see es_max_cfcw
423     */
424    unsigned        es_cfcw;
425
426    /**
427     * Initial default SFCW.
428     *
429     * In server mode, per-connection values may be set lower than
430     * this if resources are scarce.
431     *
432     * Do not set es_cfcw and es_sfcw lower than @ref LSQUIC_MIN_FCW.
433     *
434     * @see es_max_sfcw
435     */
436    unsigned        es_sfcw;
437
438    /**
439     * This value is used to specify maximum allowed value CFCW is allowed
440     * to reach due to window auto-tuning.  By default, this value is zero,
441     * which means that CFCW is not allowed to increase from its initial
442     * value.
443     *
444     * This setting is applicable to both gQUIC and IETF QUIC.
445     *
446     * @see es_cfcw, @see es_init_max_data.
447     */
448    unsigned        es_max_cfcw;
449
450    /**
451     * This value is used to specify the maximum value stream flow control
452     * window is allowed to reach due to auto-tuning.  By default, this
453     * value is zero, meaning that auto-tuning is turned off.
454     *
455     * This setting is applicable to both gQUIC and IETF QUIC.
456     *
457     * @see es_sfcw, @see es_init_max_stream_data_bidi_remote,
458     * @see es_init_max_stream_data_bidi_local.
459     */
460    unsigned        es_max_sfcw;
461
462    /** MIDS */
463    unsigned        es_max_streams_in;
464
465    /**
466     * Handshake timeout in microseconds.
467     *
468     * For client, this can be set to an arbitrary value (zero turns the
469     * timeout off).
470     *
471     * For server, this value is limited to about 16 seconds.  Do not set
472     * it to zero.
473     */
474    unsigned long   es_handshake_to;
475
476    /** ICSL in microseconds; GQUIC only */
477    unsigned long   es_idle_conn_to;
478
479    /**
480     * When true, CONNECTION_CLOSE is not sent when connection times out.
481     * The server will also not send a reply to client's CONNECTION_CLOSE.
482     *
483     * Corresponds to SCLS (silent close) gQUIC option.
484     */
485    int             es_silent_close;
486
487    /**
488     * This corresponds to SETTINGS_MAX_HEADER_LIST_SIZE
489     * (RFC 7540, Section 6.5.2).  0 means no limit.  Defaults
490     * to @ref LSQUIC_DF_MAX_HEADER_LIST_SIZE.
491     */
492    unsigned        es_max_header_list_size;
493
494    /** UAID -- User-Agent ID.  Defaults to @ref LSQUIC_DF_UA. */
495    const char     *es_ua;
496
497    /**
498     * More parameters for server
499     */
500    uint64_t        es_sttl; /* SCFG TTL in seconds */
501
502    uint32_t        es_pdmd; /* One fixed value X509 */
503    uint32_t        es_aead; /* One fixed value AESG */
504    uint32_t        es_kexs; /* One fixed value C255 */
505
506    /* Maximum number of incoming connections in inchoate state.  This is
507     * only applicable in server mode.
508     */
509    unsigned        es_max_inchoate;
510
511    /**
512     * Setting this value to 0 means that
513     *
514     * For client:
515     *  a) we send a SETTINGS frame to indicate that we do not support server
516     *     push; and
517     *  b) All incoming pushed streams get reset immediately.
518     * (For maximum effect, set es_max_streams_in to 0.)
519     *
520     * For server:
521     *  lsquic_conn_push_stream() will return -1.
522     */
523    int             es_support_push;
524
525    /**
526     * If set to true value, the server will not include connection ID in
527     * outgoing packets if client's CHLO specifies TCID=0.
528     *
529     * For client, this means including TCID=0 into CHLO message.  Note that
530     * in this case, the engine tracks connections by the
531     * (source-addr, dest-addr) tuple, thereby making it necessary to create
532     * a socket for each connection.
533     *
534     * This option has no effect in Q046 and Q050, as the server never includes
535     * CIDs in the short packets.
536     *
537     * This setting is applicable to gQUIC only.
538     *
539     * The default is @ref LSQUIC_DF_SUPPORT_TCID0.
540     */
541    int             es_support_tcid0;
542
543    /**
544     * Q037 and higher support "No STOP_WAITING frame" mode.  When set, the
545     * client will send NSTP option in its Client Hello message and will not
546     * sent STOP_WAITING frames, while ignoring incoming STOP_WAITING frames,
547     * if any.  Note that if the version negotiation happens to downgrade the
548     * client below Q037, this mode will *not* be used.
549     *
550     * This option does not affect the server, as it must support NSTP mode
551     * if it was specified by the client.
552     *
553     * This setting is applicable to gQUIC only.
554     */
555    int             es_support_nstp;
556
557    /**
558     * If set to true value, the library will drop connections when it
559     * receives corresponding Public Reset packet.  The default is to
560     * ignore these packets.
561     *
562     * The default is @ref LSQUIC_DF_HONOR_PRST.
563     */
564    int             es_honor_prst;
565
566    /**
567     * If set to true value, the library will send Public Reset packets
568     * in response to incoming packets with unknown Connection IDs.
569     * The default is @ref LSQUIC_DF_SEND_PRST.
570     */
571    int             es_send_prst;
572
573    /**
574     * A non-zero value enables internal checks that identify suspected
575     * infinite loops in user @ref on_read and @ref on_write callbacks
576     * and break them.  An infinite loop may occur if user code keeps
577     * on performing the same operation without checking status, e.g.
578     * reading from a closed stream etc.
579     *
580     * The value of this parameter is as follows: should a callback return
581     * this number of times in a row without making progress (that is,
582     * reading, writing, or changing stream state), loop break will occur.
583     *
584     * The defaut value is @ref LSQUIC_DF_PROGRESS_CHECK.
585     */
586    unsigned        es_progress_check;
587
588    /**
589     * A non-zero value make stream dispatch its read-write events once
590     * per call.
591     *
592     * When zero, read and write events are dispatched until the stream
593     * is no longer readable or writeable, respectively, or until the
594     * user signals unwillingness to read or write using
595     * @ref lsquic_stream_wantread() or @ref lsquic_stream_wantwrite()
596     * or shuts down the stream.
597     *
598     * This also applies to the on_dg_write() callback.
599     *
600     * The default value is @ref LSQUIC_DF_RW_ONCE.
601     */
602    int             es_rw_once;
603
604    /**
605     * If set, this value specifies the number of microseconds that
606     * @ref lsquic_engine_process_conns() and
607     * @ref lsquic_engine_send_unsent_packets() are allowed to spend
608     * before returning.
609     *
610     * This is not an exact science and the connections must make
611     * progress, so the deadline is checked after all connections get
612     * a chance to tick (in the case of @ref lsquic_engine_process_conns())
613     * and at least one batch of packets is sent out.
614     *
615     * When processing function runs out of its time slice, immediate
616     * calls to @ref lsquic_engine_has_unsent_packets() return false.
617     *
618     * The default value is @ref LSQUIC_DF_PROC_TIME_THRESH.
619     */
620    unsigned        es_proc_time_thresh;
621
622    /**
623     * If set to true, packet pacing is implemented per connection.
624     *
625     * The default value is @ref LSQUIC_DF_PACE_PACKETS.
626     */
627    int             es_pace_packets;
628
629    /**
630     * Clock granularity information is used by the pacer.  The value
631     * is in microseconds; default is @ref LSQUIC_DF_CLOCK_GRANULARITY.
632     */
633    unsigned        es_clock_granularity;
634
635    /**
636     * Congestion control algorithm to use.
637     *
638     *  0:  Use default (@ref LSQUIC_DF_CC_ALGO)
639     *  1:  Cubic
640     *  2:  BBRv1
641     *  3:  Adaptive (Cubic or BBRv1)
642     */
643    unsigned        es_cc_algo;
644
645    /**
646     * Congestion controller RTT threshold in microseconds.
647     *
648     * Adaptive congestion control uses BBRv1 until RTT is determined.  At
649     * that point a permanent choice of congestion controller is made. If
650     * RTT is smaller than or equal to es_cc_rtt_thresh, congestion
651     * controller is switched to Cubic; otherwise, BBRv1 is picked.
652     *
653     * The default value is @ref LSQUIC_DF_CC_RTT_THRESH.
654     */
655    unsigned        es_cc_rtt_thresh;
656
657    /**
658     * No progress timeout.
659     *
660     * If connection does not make progress for this number of seconds, the
661     * connection is dropped.  Here, progress is defined as user streams
662     * being written to or read from.
663     *
664     * If this value is zero, this timeout is disabled.
665     *
666     * Default value is @ref LSQUIC_DF_NOPROGRESS_TIMEOUT_SERVER in server
667     * mode and @ref LSQUIC_DF_NOPROGRESS_TIMEOUT_CLIENT in client mode.
668     */
669    unsigned        es_noprogress_timeout;
670
671    /* The following settings are specific to IETF QUIC. */
672    /* vvvvvvvvvvv */
673
674    /**
675     * Initial max data.
676     *
677     * This is a transport parameter.
678     *
679     * Depending on the engine mode, the default value is either
680     * @ref LSQUIC_DF_INIT_MAX_DATA_CLIENT or
681     * @ref LSQUIC_DF_INIT_MAX_DATA_SERVER.
682     */
683    unsigned        es_init_max_data;
684
685    /**
686     * Initial maximum amount of stream data allowed to be sent on streams
687     * created by remote end (peer).
688     *
689     * This is a transport parameter.
690     *
691     * Depending on the engine mode, the default value is either
692     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_REMOTE_CLIENT or
693     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_REMOTE_SERVER.
694     */
695    unsigned        es_init_max_stream_data_bidi_remote;
696
697    /**
698     * Initial maximum amount of stream data allowed to be sent on streams
699     * created by remote end (peer).
700     *
701     * This is a transport parameter.
702     *
703     * Depending on the engine mode, the default value is either
704     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_LOCAL_CLIENT or
705     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_BIDI_LOCAL_SERVER.
706     */
707    unsigned        es_init_max_stream_data_bidi_local;
708
709    /**
710     * Initial max stream data for unidirectional streams initiated
711     * by remote endpoint.
712     *
713     * This is a transport parameter.
714     *
715     * Depending on the engine mode, the default value is either
716     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_UNI_CLIENT or
717     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_UNI_SERVER.
718     */
719    unsigned        es_init_max_stream_data_uni;
720
721    /**
722     * Maximum initial number of bidirectional stream.
723     *
724     * This is a transport parameter.
725     *
726     * Default value is @ref LSQUIC_DF_INIT_MAX_STREAMS_BIDI.
727     */
728    unsigned        es_init_max_streams_bidi;
729
730    /**
731     * Maximum initial number of unidirectional stream.
732     *
733     * This is a transport parameter.
734     *
735     * Default value is @ref LSQUIC_DF_INIT_MAX_STREAMS_UNI_CLIENT or
736     * @ref LSQUIC_DF_INIT_MAX_STREAM_DATA_UNI_SERVER.
737     */
738    unsigned        es_init_max_streams_uni;
739
740    /**
741     * Idle connection timeout.
742     *
743     * This is a transport parameter.
744     *
745     * (Note: es_idle_conn_to is not reused because it is in microseconds,
746     * which, I now realize, was not a good choice.  Since it will be
747     * obsoleted some time after the switchover to IETF QUIC, we do not
748     * have to keep on using strange units.)
749     *
750     * Default value is @ref LSQUIC_DF_IDLE_TIMEOUT.
751     *
752     * Maximum value is 600 seconds.
753     */
754    unsigned        es_idle_timeout;
755
756    /**
757     * Ping period.  If set to non-zero value, the connection will generate and
758     * send PING frames in the absence of other activity.
759     *
760     * By default, the server does not send PINGs and the period is set to zero.
761     * The client's defaut value is @ref LSQUIC_DF_PING_PERIOD.
762     */
763    unsigned        es_ping_period;
764
765    /**
766     * Source Connection ID length.  Only applicable to the IETF QUIC
767     * versions.  Valid values are 0 through 20, inclusive.
768     *
769     * Default value is @ref LSQUIC_DF_SCID_LEN.
770     */
771    unsigned        es_scid_len;
772
773    /**
774     * Source Connection ID issuance rate.  Only applicable to the IETF QUIC
775     * versions.  This field is measured in CIDs per minute.  Using value 0
776     * indicates that there is no rate limit for CID issuance.
777     *
778     * Default value is @ref LSQUIC_DF_SCID_ISS_RATE.
779     */
780    unsigned        es_scid_iss_rate;
781
782    /**
783     * Maximum size of the QPACK dynamic table that the QPACK decoder will
784     * use.
785     *
786     * The default is @ref LSQUIC_DF_QPACK_DEC_MAX_SIZE.
787     */
788    unsigned        es_qpack_dec_max_size;
789
790    /**
791     * Maximum number of blocked streams that the QPACK decoder is willing
792     * to tolerate.
793     *
794     * The default is @ref LSQUIC_DF_QPACK_DEC_MAX_BLOCKED.
795     */
796    unsigned        es_qpack_dec_max_blocked;
797
798    /**
799     * Maximum size of the dynamic table that the encoder is willing to use.
800     * The actual size of the dynamic table will not exceed the minimum of
801     * this value and the value advertized by peer.
802     *
803     * The default is @ref LSQUIC_DF_QPACK_ENC_MAX_SIZE.
804     */
805    unsigned        es_qpack_enc_max_size;
806
807    /**
808     * Maximum number of blocked streams that the QPACK encoder is willing
809     * to risk.  The actual number of blocked streams will not exceed the
810     * minimum of this value and the value advertized by peer.
811     *
812     * The default is @ref LSQUIC_DF_QPACK_ENC_MAX_BLOCKED.
813     */
814    unsigned        es_qpack_enc_max_blocked;
815
816    /**
817     * Enable ECN support.
818     *
819     * The default is @ref LSQUIC_DF_ECN
820     */
821    int             es_ecn;
822
823    /**
824     * Allow peer to migrate connection.
825     *
826     * The default is @ref LSQUIC_DF_ALLOW_MIGRATION
827     */
828    int             es_allow_migration;
829
830    /**
831     * Use QL loss bits.  Allowed values are:
832     *  0:  Do not use loss bits
833     *  1:  Allow loss bits
834     *  2:  Allow and send loss bits
835     *
836     * Default value is @ref LSQUIC_DF_QL_BITS
837     */
838    int             es_ql_bits;
839
840    /**
841     * Enable spin bit.  Allowed values are 0 and 1.
842     *
843     * Default value is @ref LSQUIC_DF_SPIN
844     */
845    int             es_spin;
846
847    /**
848     * Enable delayed ACKs extension.  Allowed values are 0 and 1.
849     *
850     * Warning: this is an experimental feature.  Using it will most likely
851     * lead to degraded performance.
852     *
853     * Default value is @ref LSQUIC_DF_DELAYED_ACKS
854     */
855    int             es_delayed_acks;
856
857    /**
858     * Enable timestamps extension.  Allowed values are 0 and 1.
859     *
860     * Default value is @ref LSQUIC_DF_TIMESTAMPS
861     */
862    int             es_timestamps;
863
864    /**
865     * Maximum packet size we are willing to receive.  This is sent to
866     * peer in transport parameters: the library does not enforce this
867     * limit for incoming packets.
868     *
869     * If set to zero, limit is not set.
870     *
871     * Default value is @ref LSQUIC_DF_MAX_UDP_PAYLOAD_SIZE_RX
872     */
873    unsigned short  es_max_udp_payload_size_rx;
874
875    /**
876     * Enable the "QUIC bit grease" extension.  When set to a true value,
877     * lsquic will grease the QUIC bit on the outgoing QUIC packets if
878     * the peer sent the "grease_quic_bit" transport parameter.
879     *
880     * Default value is @ref LSQUIC_DF_GREASE_QUIC_BIT
881     */
882    int             es_grease_quic_bit;
883
884    /**
885     * If set to true value, enable DPLPMTUD -- Datagram Packetization
886     * Layer Path MTU Discovery.
887     *
888     * Default value is @ref LSQUIC_DF_DPLPMTUD
889     */
890    int             es_dplpmtud;
891
892    /**
893     * PLPMTU size expected to work for most paths.
894     *
895     * If set to zero, this value is calculated based on QUIC and IP versions.
896     *
897     * Default value is @ref LSQUIC_DF_BASE_PLPMTU.
898     */
899    unsigned short  es_base_plpmtu;
900
901    /**
902     * Largest PLPMTU size the engine will try.
903     *
904     * If set to zero, picking this value is left to the engine.
905     *
906     * Default value is @ref LSQUIC_DF_MAX_PLPMTU.
907     */
908    unsigned short  es_max_plpmtu;
909
910    /**
911     * This value specifies how long the DPLPMTUD probe timer is, in
912     * milliseconds.  [draft-ietf-tsvwg-datagram-plpmtud-17] says:
913     *
914     " PROBE_TIMER:  The PROBE_TIMER is configured to expire after a period
915     "    longer than the maximum time to receive an acknowledgment to a
916     "    probe packet.  This value MUST NOT be smaller than 1 second, and
917     "    SHOULD be larger than 15 seconds.  Guidance on selection of the
918     "    timer value are provided in section 3.1.1 of the UDP Usage
919     "    Guidelines [RFC8085].
920     *
921     * If set to zero, the default is used.
922     *
923     * Default value is @ref LSQUIC_DF_MTU_PROBE_TIMER.
924     */
925    unsigned        es_mtu_probe_timer;
926
927    /**
928     * Enable datagram extension.  Allowed values are 0 and 1.
929     *
930     * Default value is @ref LSQUIC_DF_DATAGRAMS
931     */
932    int             es_datagrams;
933
934    /**
935     * If set to true, changes in peer port are assumed to be due to a
936     * benign NAT rebinding and path characteristics -- MTU, RTT, and
937     * CC state -- are not reset.
938     *
939     * Default value is @ref LSQUIC_DF_OPTIMISTIC_NAT.
940     */
941    int             es_optimistic_nat;
942};
943
944/* Initialize `settings' to default values */
945void
946lsquic_engine_init_settings (struct lsquic_engine_settings *,
947                             unsigned lsquic_engine_flags);
948
949/**
950 * Check settings for errors.
951 *
952 * @param   settings    Settings struct.
953 *
954 * @param   flags       Engine flags.
955 *
956 * @param   err_buf     Optional pointer to buffer into which error string
957 *                      is written.
958
959 * @param   err_buf_sz  Size of err_buf.  No more than this number of bytes
960 *                      will be written to err_buf, including the NUL byte.
961 *
962 * @retval  0   Settings have no errors.
963 * @retval -1   There are errors in settings.
964 */
965int
966lsquic_engine_check_settings (const struct lsquic_engine_settings *settings,
967                              unsigned lsquic_engine_flags,
968                              char *err_buf, size_t err_buf_sz);
969
970struct lsquic_out_spec
971{
972    struct iovec          *iov;
973    size_t                 iovlen;
974    const struct sockaddr *local_sa;
975    const struct sockaddr *dest_sa;
976    void                  *peer_ctx;
977    lsquic_conn_ctx_t     *conn_ctx;  /* will be NULL when sending out the first batch of handshake packets */
978    int                    ecn;       /* Valid values are 0 - 3.  See RFC 3168 */
979};
980
981/**
982 * Returns number of packets successfully sent out or -1 on error.  -1 should
983 * only be returned if no packets were sent out.  If -1 is returned or if the
984 * return value is smaller than `n_packets_out', this indicates that sending
985 * of packets is not possible.
986 *
987 * If not all packets could be sent out, errno is examined.  If it is not
988 * EAGAIN or EWOULDBLOCK, the connection whose packet cause the error is
989 * closed forthwith.
990 *
991 * No packets will be attempted to be sent out until
992 * @ref lsquic_engine_send_unsent_packets() is called.
993 */
994typedef int (*lsquic_packets_out_f)(
995    void                          *packets_out_ctx,
996    const struct lsquic_out_spec  *out_spec,
997    unsigned                       n_packets_out
998);
999
1000/**
1001 * The shared hash interface is used to share data between multiple LSQUIC
1002 * instances.
1003 */
1004struct lsquic_shared_hash_if
1005{
1006    /**
1007     * If you want your item to never expire, set `expiry' to zero.
1008     * Returns 0 on success, -1 on failure.
1009     *
1010     * If inserted successfully, `free()' will be called on `data' and 'key'
1011     * pointer when the element is deleted, whether due to expiration
1012     * or explicit deletion.
1013     */
1014    int (*shi_insert)(void *shi_ctx, void *key, unsigned key_sz,
1015                      void *data, unsigned data_sz, time_t expiry);
1016    /**
1017     * Returns 0 on success, -1 on failure.
1018     */
1019    int (*shi_delete)(void *shi_ctx, const void *key, unsigned key_sz);
1020
1021    /**
1022     * `data' is pointed to the result and `data_sz' is set to the
1023     * object size.  The implementation may choose to copy the object
1024     * into buffer pointed to by `data', so you should have it ready.
1025     *
1026     * @retval  1   found.
1027     * @retval  0   not found.
1028     * @retval -1   error (perhaps not enough room in `data' if copy was
1029     *                attempted).
1030     */
1031    int (*shi_lookup)(void *shi_ctx, const void *key, unsigned key_sz,
1032                                     void **data, unsigned *data_sz);
1033};
1034
1035/**
1036 * The packet out memory interface is used by LSQUIC to get buffers to
1037 * which outgoing packets will be written before they are passed to
1038 * ea_packets_out callback.
1039 *
1040 * If not specified, malloc() and free() are used.
1041 */
1042struct lsquic_packout_mem_if
1043{
1044    /**
1045     * Allocate buffer for sending.
1046     */
1047    void *  (*pmi_allocate) (void *pmi_ctx, void *peer_ctx, lsquic_conn_ctx_t *, unsigned short sz,
1048                                                                char is_ipv6);
1049    /**
1050     * This function is used to release the allocated buffer after it is
1051     * sent via @ref ea_packets_out.
1052     */
1053    void    (*pmi_release)  (void *pmi_ctx, void *peer_ctx, void *buf,
1054                                                                char is_ipv6);
1055    /**
1056     * If allocated buffer is not going to be sent, return it to the caller
1057     * using this function.
1058     */
1059    void    (*pmi_return)  (void *pmi_ctx, void *peer_ctx, void *buf,
1060                                                                char is_ipv6);
1061};
1062
1063typedef void (*lsquic_cids_update_f)(void *ctx, void **peer_ctx,
1064                                const lsquic_cid_t *cids, unsigned n_cids);
1065
1066struct stack_st_X509;
1067
1068enum lsquic_hsi_flag {
1069    /**
1070     * Turn HTTP/1.x mode on or off.  In this mode, decoded name and value
1071     * pair are separated by ": " and "\r\n" is appended to the end of the
1072     * string.  By default, this mode is off.
1073     */
1074    LSQUIC_HSI_HTTP1X          = 1 << 1,
1075    /** Include name hash into lsxpack_header */
1076    LSQUIC_HSI_HASH_NAME       = 1 << 2,
1077    /** Include nameval hash into lsxpack_header */
1078    LSQUIC_HSI_HASH_NAMEVAL    = 1 << 3,
1079};
1080
1081struct lsquic_hset_if
1082{
1083    /**
1084     * Create a new header set.  This object is (and must be) fetched from a
1085     * stream by calling @ref lsquic_stream_get_hset() before the stream can
1086     * be read.
1087     *
1088     * `stream' may be set to NULL in server mode.
1089     */
1090    void * (*hsi_create_header_set)(void *hsi_ctx, lsquic_stream_t *stream,
1091                                    int is_push_promise);
1092    /**
1093     * Return a header set prepared for decoding.  If `hdr' is NULL, this
1094     * means return a new structure with at least `space' bytes available
1095     * in the decoder buffer.  On success, a newly prepared header is
1096     * returned.
1097     *
1098     * If `hdr' is not NULL, it means there was not enough decoder buffer
1099     * and it must be increased to at least `space' bytes.  `buf', `val_len',
1100     * and `name_offset' member of the `hdr' structure may change.  On
1101     * success, the return value is the same as `hdr'.
1102     *
1103     * If NULL is returned, the space cannot be allocated.
1104     */
1105    struct lsxpack_header *
1106                        (*hsi_prepare_decode)(void *hdr_set,
1107                                              struct lsxpack_header *hdr,
1108                                              size_t space);
1109    /**
1110     * Process new header.  Return 0 on success, a positive value if a header
1111     * error occured, or a negative value on any other error.
1112     *
1113     * A positive return value will result in cancellation of associated
1114     * stream.
1115     *
1116     * A negative return value will result in connection being aborted.
1117     *
1118     * `hdr_set' is the header set object returned by
1119     * @ref hsi_create_header_set().
1120     *
1121     * `hdr' is the header returned by @ref `hsi_prepare_decode'.
1122     *
1123     * If `hdr' is NULL, this means that no more header are going to be
1124     * added to the set.
1125     */
1126    int (*hsi_process_header)(void *hdr_set, struct lsxpack_header *hdr);
1127    /**
1128     * Discard header set.  This is called for unclaimed header sets and
1129     * header sets that had an error.
1130     */
1131    void                (*hsi_discard_header_set)(void *hdr_set);
1132    /**
1133     * These flags specify properties of decoded headers passed to
1134     * hsi_process_header().  This is only applicable to QPACK headers;
1135     * HPACK library header properties are based on compilation, not
1136     * run-time, options.
1137     */
1138    enum lsquic_hsi_flag hsi_flags;
1139};
1140
1141/**
1142 * SSL keylog interface.
1143 */
1144struct lsquic_keylog_if
1145{
1146    /** Return keylog handle or NULL if no key logging is desired */
1147    void *    (*kli_open) (void *keylog_ctx, lsquic_conn_t *);
1148
1149    /**
1150     * Log line.  The first argument is the pointer returned by
1151     * @ref kli_open.
1152     */
1153    void      (*kli_log_line) (void *handle, const char *line);
1154
1155    /**
1156     * Close handle.
1157     */
1158    void      (*kli_close) (void *handle);
1159};
1160
1161/**
1162 * This struct contains a list of all callbacks that are used by the engine
1163 * to communicate with the user code.  Most of these are optional, while
1164 * the following are mandatory:
1165 *
1166 *  @ref ea_stream_if       The stream interface.
1167 *  @ref ea_packets_out     Function to send packets.
1168 *  @ref ea_lookup_cert     Function to look up certificates by SNI (used
1169 *                            in server mode).
1170 *
1171 * A pointer to this structure is passed to engine constructor
1172 * @ref lsquic_engine_new().
1173 */
1174struct lsquic_engine_api
1175{
1176    const struct lsquic_engine_settings *ea_settings;   /* Optional */
1177    /** Stream interface is required to manage connections and streams. */
1178    const struct lsquic_stream_if       *ea_stream_if;
1179    void                                *ea_stream_if_ctx;
1180    /** Function to send packets out is required. */
1181    lsquic_packets_out_f                 ea_packets_out;
1182    void                                *ea_packets_out_ctx;
1183    /** Function to look up certificates by SNI is used in server mode. */
1184    lsquic_lookup_cert_f                 ea_lookup_cert;
1185    void                                *ea_cert_lu_ctx;
1186    struct ssl_ctx_st *                (*ea_get_ssl_ctx)(void *peer_ctx);
1187    /**
1188     * Shared hash interface is optional.  If set to zero, performance of
1189     * multiple LSQUIC instances will be degraded.
1190     */
1191    const struct lsquic_shared_hash_if  *ea_shi;
1192    void                                *ea_shi_ctx;
1193    /**
1194     * Memory interface is optional.
1195     */
1196    const struct lsquic_packout_mem_if  *ea_pmi;
1197    void                                *ea_pmi_ctx;
1198    /**
1199     * Optional interface to report new and old source connection IDs.
1200     */
1201    lsquic_cids_update_f                 ea_new_scids;
1202    lsquic_cids_update_f                 ea_live_scids;
1203    lsquic_cids_update_f                 ea_old_scids;
1204    void                                *ea_cids_update_ctx;
1205    /**
1206     * Function to verify server certificate.  The chain contains at least
1207     * one element.  The first element in the chain is the server
1208     * certificate.  The chain belongs to the library.  If you want to
1209     * retain it, call sk_X509_up_ref().
1210     *
1211     * 0 is returned on success, -1 on error.
1212     *
1213     * If the function pointer is not set, no verification is performed
1214     * (the connection is allowed to proceed).
1215     */
1216    int                                (*ea_verify_cert)(void *verify_ctx,
1217                                                struct stack_st_X509 *chain);
1218    void                                *ea_verify_ctx;
1219
1220    /**
1221     * Optional header set interface.  If not specified, the incoming headers
1222     * are converted to HTTP/1.x format and are read from stream and have to
1223     * be parsed again.
1224     */
1225    const struct lsquic_hset_if         *ea_hsi_if;
1226    void                                *ea_hsi_ctx;
1227#if LSQUIC_CONN_STATS
1228    /**
1229     * If set, engine will print cumulative connection statistics to this
1230     * file just before it is destroyed.
1231     */
1232    void /* FILE, really */             *ea_stats_fh;
1233#endif
1234
1235    /**
1236     * Optional SSL key logging interface.
1237     */
1238    const struct lsquic_keylog_if       *ea_keylog_if;
1239    void                                *ea_keylog_ctx;
1240
1241    /**
1242     * The optional ALPN string is used by the client if @ref LSENG_HTTP
1243     * is not set.
1244     */
1245    const char                          *ea_alpn;
1246
1247    /**
1248     * Optional interface to control the creation of connection IDs
1249     */
1250    void                               (*ea_generate_scid)(lsquic_conn_t *,
1251                                                    lsquic_cid_t *, unsigned);
1252};
1253
1254/**
1255 * Create new engine.
1256 *
1257 * @param   lsquic_engine_flags     A bitmask of @ref LSENG_SERVER and
1258 *                                  @ref LSENG_HTTP
1259 *
1260 * @param   api                     Required parameter that specifies
1261 *                                    various callbacks.
1262 *
1263 * The engine can be instantiated either in server mode (when LSENG_SERVER
1264 * is set) or client mode.  If you need both server and client in your
1265 * program, create two engines (or as many as you'd like).
1266 */
1267lsquic_engine_t *
1268lsquic_engine_new (unsigned lsquic_engine_flags,
1269                   const struct lsquic_engine_api *api);
1270
1271/**
1272 * Create a client connection to peer identified by `peer_ctx'.
1273 *
1274 * To let the engine specify QUIC version, use N_LSQVER.  If session resumption
1275 * information is supplied, version is picked from there instead.
1276 *
1277 * If `base_plpmtu' is set to zero, it is selected based on the
1278 * engine settings, QUIC version, and IP version.
1279 */
1280lsquic_conn_t *
1281lsquic_engine_connect (lsquic_engine_t *, enum lsquic_version,
1282                       const struct sockaddr *local_sa,
1283                       const struct sockaddr *peer_sa,
1284                       void *peer_ctx, lsquic_conn_ctx_t *conn_ctx,
1285                       const char *hostname, unsigned short base_plpmtu,
1286                       const unsigned char *sess_resume, size_t sess_resume_len,
1287                       /** Resumption token: optional */
1288                       const unsigned char *token, size_t token_sz);
1289
1290/**
1291 * Pass incoming packet to the QUIC engine.  This function can be called
1292 * more than once in a row.  After you add one or more packets, call
1293 * lsquic_engine_process_conns() to schedule output, if any.
1294 *
1295 * @retval  0   Packet was processed by a real connection.
1296 *
1297 * @retval  1   Packet was handled successfully, but not by a connection.
1298 *              This may happen with version negotiation and public reset
1299 *              packets as well as some packets that may be ignored.
1300 *
1301 * @retval -1   An error occurred.  Possible reasons are failure to allocate
1302 *              memory and invalid @param sa_local in client mode.
1303 */
1304int
1305lsquic_engine_packet_in (lsquic_engine_t *,
1306        const unsigned char *packet_in_data, size_t packet_in_size,
1307        const struct sockaddr *sa_local, const struct sockaddr *sa_peer,
1308        void *peer_ctx, int ecn);
1309
1310/**
1311 * Process tickable connections.  This function must be called often enough so
1312 * that packets and connections do not expire.
1313 */
1314void
1315lsquic_engine_process_conns (lsquic_engine_t *engine);
1316
1317/**
1318 * Returns true if engine has some unsent packets.  This happens if
1319 * @ref ea_packets_out() could not send everything out or if processing
1320 * deadline was exceeded (see @ref es_proc_time_thresh).
1321 */
1322int
1323lsquic_engine_has_unsent_packets (lsquic_engine_t *engine);
1324
1325/**
1326 * Send out as many unsent packets as possibe: until we are out of unsent
1327 * packets or until @ref ea_packets_out() fails.
1328 *
1329 * If @ref ea_packets_out() does fail cannot send all packets, this
1330 * function must be called to signify that sending of packets is possible
1331 * again.
1332 */
1333void
1334lsquic_engine_send_unsent_packets (lsquic_engine_t *engine);
1335
1336/**
1337 * Destroy engine and all connections and streams in it and free all
1338 * memory associated with this engine.
1339 */
1340void
1341lsquic_engine_destroy (lsquic_engine_t *);
1342
1343/** Return max allowed outbound streams less current outbound streams. */
1344unsigned
1345lsquic_conn_n_avail_streams (const lsquic_conn_t *);
1346
1347/**
1348 * Create a new request stream.  This causes @ref on_new_stream() callback
1349 * to be called.  If creating more requests is not permitted at the moment
1350 * (due to number of concurrent streams limit), stream creation is registered
1351 * as "pending" and the stream is created later when number of streams dips
1352 * under the limit again.  Any number of pending streams can be created.
1353 * Use @ref lsquic_conn_n_pending_streams() and
1354 * @ref lsquic_conn_cancel_pending_streams() to manage pending streams.
1355 *
1356 * If connection is going away, @ref on_new_stream() is called with the
1357 * stream parameter set to NULL.
1358 */
1359void
1360lsquic_conn_make_stream (lsquic_conn_t *);
1361
1362/** Return number of delayed streams currently pending */
1363unsigned
1364lsquic_conn_n_pending_streams (const lsquic_conn_t *);
1365
1366/** Cancel `n' pending streams.  Returns new number of pending streams. */
1367unsigned
1368lsquic_conn_cancel_pending_streams (lsquic_conn_t *, unsigned n);
1369
1370/**
1371 * Mark connection as going away: send GOAWAY frame and do not accept
1372 * any more incoming streams, nor generate streams of our own.
1373 *
1374 * Only applicable to HTTP/3 and GQUIC connections.  Otherwise a no-op.
1375 */
1376void
1377lsquic_conn_going_away (lsquic_conn_t *);
1378
1379/**
1380 * This forces connection close.  on_conn_closed and on_close callbacks
1381 * will be called.
1382 */
1383void
1384lsquic_conn_close (lsquic_conn_t *);
1385
1386/**
1387 * Set whether you want to read from stream.  If @param is_want is true,
1388 * @ref on_read() will be called when there is readable data in the
1389 * stream.  If @param is false, @ref on_read() will not be called.
1390 *
1391 * Returns previous value of this flag.
1392 */
1393int
1394lsquic_stream_wantread (lsquic_stream_t *s, int is_want);
1395
1396/**
1397 * Read up to @param len bytes from stream into @param buf.  Returns number
1398 * of bytes read or -1 on error, in which case errno is set.  Possible
1399 * errno values:
1400 *
1401 *  EBADF           The stream is closed.
1402 *  ECONNRESET      The stream has been reset.
1403 *  EWOULDBLOCK     There is no data to be read.
1404 *
1405 * Return value of zero indicates EOF.
1406 */
1407ssize_t
1408lsquic_stream_read (lsquic_stream_t *s, void *buf, size_t len);
1409
1410/**
1411 * Similar to @ref lsquic_stream_read(), but reads data into @param vec.
1412 */
1413ssize_t
1414lsquic_stream_readv (lsquic_stream_t *s, const struct iovec *vec, int iovcnt);
1415
1416/**
1417 * This function allows user-supplied callback to read the stream contents.
1418 * It is meant to be used for zero-copy stream processing.
1419 *
1420 * Return value and errors are same as in @ref lsquic_stream_read().
1421 */
1422ssize_t
1423lsquic_stream_readf (lsquic_stream_t *s,
1424    /**
1425     * The callback takes four parameters:
1426     *  - Pointer to user-supplied context;
1427     *  - Pointer to the data;
1428     *  - Data size (can be zero); and
1429     *  - Indicator whether the FIN follows the data.
1430     *
1431     * The callback returns number of bytes processed.  If this number is zero
1432     * or is smaller than `len', reading from stream stops.
1433     */
1434    size_t (*readf)(void *ctx, const unsigned char *buf, size_t len, int fin),
1435    void *ctx);
1436
1437/**
1438 * Set whether you want to write to stream.  If @param is_want is true,
1439 * @ref on_write() will be called when it is possible to write data to
1440 * the stream.  If @param is false, @ref on_write() will not be called.
1441 *
1442 * Returns previous value of this flag.
1443 */
1444int
1445lsquic_stream_wantwrite (lsquic_stream_t *s, int is_want);
1446
1447/**
1448 * Write `len' bytes to the stream.  Returns number of bytes written, which
1449 * may be smaller that `len'.
1450 *
1451 * A negative return value indicates a serious error (the library is likely
1452 * to have aborted the connection because of it).
1453 */
1454ssize_t
1455lsquic_stream_write (lsquic_stream_t *s, const void *buf, size_t len);
1456
1457/**
1458 * Like @ref lsquic_stream_write(), but read data from @param vec.
1459 */
1460ssize_t
1461lsquic_stream_writev (lsquic_stream_t *s, const struct iovec *vec, int count);
1462
1463/**
1464 * Write to streams using a single call to a preadv-like function.
1465 */
1466ssize_t
1467lsquic_stream_pwritev (lsquic_stream_t *s,
1468    ssize_t (*preadv)(void *user_data, const struct iovec *iov, int iovcnt),
1469    void *user_data, size_t n_to_write);
1470
1471/**
1472 * Used as argument to @ref lsquic_stream_writef()
1473 */
1474struct lsquic_reader
1475{
1476    /**
1477     * Not a ssize_t because the read function is not supposed to return
1478     * an error.  If an error occurs in the read function (for example, when
1479     * reading from a file fails), it is supposed to deal with the error
1480     * itself.
1481     */
1482    size_t (*lsqr_read) (void *lsqr_ctx, void *buf, size_t count);
1483    /**
1484     * Return number of bytes remaining in the reader.
1485     */
1486    size_t (*lsqr_size) (void *lsqr_ctx);
1487    void    *lsqr_ctx;
1488};
1489
1490/**
1491 * Write to stream using @ref lsquic_reader.  This is the most generic of
1492 * the write functions -- @ref lsquic_stream_write() and
1493 * @ref lsquic_stream_writev() utilize the same mechanism.
1494 *
1495 * @retval Number of bytes written or -1 on error.
1496 */
1497ssize_t
1498lsquic_stream_writef (lsquic_stream_t *, struct lsquic_reader *);
1499
1500/**
1501 * Flush any buffered data.  This triggers packetizing even a single byte
1502 * into a separate frame.  Flushing a closed stream is an error.
1503 *
1504 * @retval  0   Success
1505 * @retval -1   Failure
1506 */
1507int
1508lsquic_stream_flush (lsquic_stream_t *s);
1509
1510/**
1511 * @typedef lsquic_http_headers_t
1512 * @brief HTTP header list structure. Contains a list of HTTP headers in key/value pairs.
1513 * used in API functions to pass headers.
1514 */
1515struct lsquic_http_headers
1516{
1517    int                     count;
1518    struct lsxpack_header  *headers;
1519};
1520
1521/**
1522 * Send headers in @param headers.  This function must be called before
1523 * writing to the stream.  The value of @param eos is ignored in IETF QUIC.
1524 */
1525int
1526lsquic_stream_send_headers (lsquic_stream_t *s,
1527                               const lsquic_http_headers_t *headers, int eos);
1528
1529/**
1530 * Get header set associated with the stream.  The header set is created by
1531 * @ref hsi_create_header_set() callback.  After this call, the ownership of
1532 * the header set is transferred to the caller.
1533 *
1534 * This call must precede calls to @ref lsquic_stream_read() and
1535 * @ref lsquic_stream_readv().
1536 *
1537 * If the optional header set interface (@ref ea_hsi_if) is not specified,
1538 * this function returns NULL.
1539 */
1540void *
1541lsquic_stream_get_hset (lsquic_stream_t *);
1542
1543/**
1544 * A server may push a stream.  This call creates a new stream in reference
1545 * to stream `s'.  It will behave as if the client made a request: it will
1546 * trigger on_new_stream() event and it can be used as a regular client-
1547 * initiated stream.
1548 *
1549 * `hdr_set' must be set.  It is passed as-is to @lsquic_stream_get_hset.
1550 *
1551 * @retval  0   Stream pushed successfully.
1552 * @retval  1   Stream push failed because it is disabled or because we hit
1553 *                stream limit or connection is going away.
1554 * @retval -1   Stream push failed because of an internal error.
1555 */
1556int
1557lsquic_conn_push_stream (lsquic_conn_t *c, void *hdr_set, lsquic_stream_t *s,
1558    const lsquic_http_headers_t *headers);
1559
1560/**
1561 * Only makes sense in server mode: the client cannot push a stream and this
1562 * function always returns false in client mode.
1563 */
1564int
1565lsquic_conn_is_push_enabled (lsquic_conn_t *);
1566
1567/** Possible values for how are 0, 1, and 2.  See shutdown(2). */
1568int lsquic_stream_shutdown(lsquic_stream_t *s, int how);
1569
1570int lsquic_stream_close(lsquic_stream_t *s);
1571
1572/**
1573 * Get certificate chain returned by the server.  This can be used for
1574 * server certificate verification.
1575 *
1576 * The caller releases the stack using sk_X509_free().
1577 */
1578struct stack_st_X509 *
1579lsquic_conn_get_server_cert_chain (lsquic_conn_t *);
1580
1581/** Returns ID of the stream */
1582lsquic_stream_id_t
1583lsquic_stream_id (const lsquic_stream_t *s);
1584
1585/**
1586 * Returns stream ctx associated with the stream.  (The context is what
1587 * is returned by @ref on_new_stream callback).
1588 */
1589lsquic_stream_ctx_t *
1590lsquic_stream_get_ctx (const lsquic_stream_t *s);
1591
1592/** Returns true if this is a pushed stream */
1593int
1594lsquic_stream_is_pushed (const lsquic_stream_t *s);
1595
1596/**
1597 * Returns true if this stream was rejected, false otherwise.  Use this as
1598 * an aid to distinguish between errors.
1599 */
1600int
1601lsquic_stream_is_rejected (const lsquic_stream_t *s);
1602
1603/**
1604 * Refuse pushed stream.  Call it from @ref on_new_stream.
1605 *
1606 * No need to call lsquic_stream_close() after this.  on_close will be called.
1607 *
1608 * @see lsquic_stream_is_pushed
1609 */
1610int
1611lsquic_stream_refuse_push (lsquic_stream_t *s);
1612
1613/**
1614 * Get information associated with pushed stream:
1615 *
1616 * @param ref_stream_id   Stream ID in response to which push promise was
1617 *                            sent.
1618 * @param hdr_set         Header set.  This object was passed to or generated
1619 *                            by @ref lsquic_conn_push_stream().
1620 *
1621 * @retval   0  Success.
1622 * @retval  -1  This is not a pushed stream.
1623 */
1624int
1625lsquic_stream_push_info (const lsquic_stream_t *,
1626                         lsquic_stream_id_t *ref_stream_id, void **hdr_set);
1627
1628/** Return current priority of the stream */
1629unsigned lsquic_stream_priority (const lsquic_stream_t *s);
1630
1631/**
1632 * Set stream priority.  Valid priority values are 1 through 256, inclusive.
1633 * Lower value means higher priority.
1634 *
1635 * @retval   0  Success.
1636 * @retval  -1  Priority value is invalid.
1637 */
1638int lsquic_stream_set_priority (lsquic_stream_t *s, unsigned priority);
1639
1640/**
1641 * Get a pointer to the connection object.  Use it with lsquic_conn_*
1642 * functions.
1643 */
1644lsquic_conn_t * lsquic_stream_conn(const lsquic_stream_t *s);
1645
1646/** Get connection ID */
1647const lsquic_cid_t *
1648lsquic_conn_id (const lsquic_conn_t *c);
1649
1650/** Get pointer to the engine */
1651lsquic_engine_t *
1652lsquic_conn_get_engine (lsquic_conn_t *c);
1653
1654int
1655lsquic_conn_get_sockaddr(lsquic_conn_t *c,
1656                const struct sockaddr **local, const struct sockaddr **peer);
1657
1658/* Returns previous value */
1659int
1660lsquic_conn_want_datagram_write (lsquic_conn_t *, int is_want);
1661
1662/* Get minimum datagram size.  By default, this value is zero. */
1663size_t
1664lsquic_conn_get_min_datagram_size (lsquic_conn_t *);
1665
1666/* Set minimum datagram size.  This is the minumum value of the buffer passed
1667 * to the on_dg_write() callback.
1668 */
1669int
1670lsquic_conn_set_min_datagram_size (lsquic_conn_t *, size_t sz);
1671
1672struct lsquic_logger_if {
1673    int     (*log_buf)(void *logger_ctx, const char *buf, size_t len);
1674};
1675
1676/**
1677 * Enumerate timestamp styles supported by LSQUIC logger mechanism.
1678 */
1679enum lsquic_logger_timestamp_style {
1680    /**
1681     * No timestamp is generated.
1682     */
1683    LLTS_NONE,
1684
1685    /**
1686     * The timestamp consists of 24 hours, minutes, seconds, and
1687     * milliseconds.  Example: 13:43:46.671
1688     */
1689    LLTS_HHMMSSMS,
1690
1691    /**
1692     * Like above, plus date, e.g: 2017-03-21 13:43:46.671
1693     */
1694    LLTS_YYYYMMDD_HHMMSSMS,
1695
1696    /**
1697     * This is Chrome-like timestamp used by proto-quic.  The timestamp
1698     * includes month, date, hours, minutes, seconds, and microseconds.
1699     *
1700     * Example: 1223/104613.946956 (instead of 12/23 10:46:13.946956).
1701     *
1702     * This is to facilitate reading two logs side-by-side.
1703     */
1704    LLTS_CHROMELIKE,
1705
1706    /**
1707     * The timestamp consists of 24 hours, minutes, seconds, and
1708     * microseconds.  Example: 13:43:46.671123
1709     */
1710    LLTS_HHMMSSUS,
1711
1712    /**
1713     * Date and time using microsecond resolution,
1714     * e.g: 2017-03-21 13:43:46.671123
1715     */
1716    LLTS_YYYYMMDD_HHMMSSUS,
1717
1718    N_LLTS
1719};
1720
1721/**
1722 * Call this if you want to do something with LSQUIC log messages, as they
1723 * are thrown out by default.
1724 */
1725void lsquic_logger_init(const struct lsquic_logger_if *, void *logger_ctx,
1726                        enum lsquic_logger_timestamp_style);
1727
1728/**
1729 * Set log level for all LSQUIC modules.  Acceptable values are debug, info,
1730 * notice, warning, error, alert, emerg, crit (case-insensitive).
1731 *
1732 * @retval  0   Success.
1733 * @retval -1   Failure: log_level is not valid.
1734 */
1735int
1736lsquic_set_log_level (const char *log_level);
1737
1738/**
1739 * E.g. "event=debug"
1740 */
1741int
1742lsquic_logger_lopt (const char *optarg);
1743
1744/**
1745 * Return the list of QUIC versions (as bitmask) this engine instance
1746 * supports.
1747 */
1748unsigned lsquic_engine_quic_versions (const lsquic_engine_t *);
1749
1750/**
1751 * This is one of the flags that can be passed to @ref lsquic_global_init.
1752 * Use it to initialize LSQUIC for use in client mode.
1753 */
1754#define LSQUIC_GLOBAL_CLIENT (1 << 0)
1755
1756/**
1757 * This is one of the flags that can be passed to @ref lsquic_global_init.
1758 * Use it to initialize LSQUIC for use in server mode.
1759 */
1760#define LSQUIC_GLOBAL_SERVER (1 << 1)
1761
1762/**
1763 * Initialize LSQUIC.  This must be called before any other LSQUIC function
1764 * is called.  Returns 0 on success and -1 on failure.
1765 *
1766 * @param flags     This a bitmask of @ref LSQUIC_GLOBAL_CLIENT and
1767 *                    @ref LSQUIC_GLOBAL_SERVER.  At least one of these
1768 *                    flags should be specified.
1769 *
1770 * @retval  0   Success.
1771 * @retval -1   Initialization failed.
1772 *
1773 * @see LSQUIC_GLOBAL_CLIENT
1774 * @see LSQUIC_GLOBAL_SERVER
1775 */
1776int
1777lsquic_global_init (int flags);
1778
1779/**
1780 * Clean up global state created by @ref lsquic_global_init.  Should be
1781 * called after all LSQUIC engine instances are gone.
1782 */
1783void
1784lsquic_global_cleanup (void);
1785
1786/**
1787 * Get QUIC version used by the connection.
1788 *
1789 * @see lsquic_version
1790 */
1791enum lsquic_version
1792lsquic_conn_quic_version (const lsquic_conn_t *c);
1793
1794/* Return keysize or -1 on error */
1795int
1796lsquic_conn_crypto_keysize (const lsquic_conn_t *c);
1797
1798/* Return algorithm keysize or -1 on error */
1799int
1800lsquic_conn_crypto_alg_keysize (const lsquic_conn_t *c);
1801
1802enum lsquic_crypto_ver
1803{
1804    LSQ_CRY_QUIC,
1805    LSQ_CRY_TLSv13,
1806};
1807
1808enum lsquic_crypto_ver
1809lsquic_conn_crypto_ver (const lsquic_conn_t *c);
1810
1811/* Return cipher or NULL on error */
1812const char *
1813lsquic_conn_crypto_cipher (const lsquic_conn_t *c);
1814
1815/** Translate string QUIC version to LSQUIC QUIC version representation */
1816enum lsquic_version
1817lsquic_str2ver (const char *str, size_t len);
1818
1819/** Translate ALPN (e.g. "h3", "h3-23", "h3-Q046") to LSQUIC enum */
1820enum lsquic_version
1821lsquic_alpn2ver (const char *alpn, size_t len);
1822
1823/**
1824 * This function closes all mini connections and marks all full connections
1825 * as going away.  In server mode, this also causes the engine to stop
1826 * creating new connections.
1827 */
1828void
1829lsquic_engine_cooldown (lsquic_engine_t *);
1830
1831/**
1832 * Get user-supplied context associated with the connection.
1833 */
1834lsquic_conn_ctx_t *
1835lsquic_conn_get_ctx (const lsquic_conn_t *);
1836
1837/**
1838 * Set user-supplied context associated with the connection.
1839 */
1840void
1841lsquic_conn_set_ctx (lsquic_conn_t *, lsquic_conn_ctx_t *);
1842
1843/**
1844 * Get peer context associated with the connection.
1845 */
1846void *
1847lsquic_conn_get_peer_ctx (lsquic_conn_t *, const struct sockaddr *local_sa);
1848
1849/**
1850 * Abort connection.
1851 */
1852void
1853lsquic_conn_abort (lsquic_conn_t *);
1854
1855/**
1856 * Helper function: convert list of versions as specified in the argument
1857 * bitmask to string that can be included as argument to "v=" part of the
1858 * Alt-Svc header.
1859 *
1860 * For example (1<<LSQVER_037)|(1<<LSQVER_038) => "37,38"
1861 *
1862 * This is only applicable to Google QUIC versions.
1863 */
1864const char *
1865lsquic_get_alt_svc_versions (unsigned versions);
1866
1867/**
1868 * Return a NULL-terminated list of HTTP/3 ALPNs, e.g "h3-17", "h3-18", "h3".
1869 */
1870const char *const *
1871lsquic_get_h3_alpns (unsigned versions);
1872
1873/**
1874 * Returns true if provided buffer could be a valid handshake-stage packet,
1875 * false otherwise.  Do not call this function if a connection has already
1876 * been established: it will return incorrect result.
1877 */
1878int
1879lsquic_is_valid_hs_packet (lsquic_engine_t *, const unsigned char *, size_t);
1880
1881/**
1882 * Parse cid from packet stored in `buf' and store it to `cid'.  Returns 0
1883 * on success and -1 on failure.
1884 */
1885int
1886lsquic_cid_from_packet (const unsigned char *, size_t bufsz, lsquic_cid_t *cid);
1887
1888/**
1889 * Returns true if there are connections to be processed, false otherwise.
1890 * If true, `diff' is set to the difference between the earliest advisory
1891 * tick time and now.  If the former is in the past, the value of `diff'
1892 * is negative.
1893 */
1894int
1895lsquic_engine_earliest_adv_tick (lsquic_engine_t *engine, int *diff);
1896
1897/**
1898 * Return number of connections whose advisory tick time is before current
1899 * time plus `from_now' microseconds from now.  `from_now' can be negative.
1900 */
1901unsigned
1902lsquic_engine_count_attq (lsquic_engine_t *engine, int from_now);
1903
1904enum LSQUIC_CONN_STATUS
1905{
1906    LSCONN_ST_HSK_IN_PROGRESS,
1907    LSCONN_ST_CONNECTED,
1908    LSCONN_ST_HSK_FAILURE,
1909    LSCONN_ST_GOING_AWAY,
1910    LSCONN_ST_TIMED_OUT,
1911    /* If es_honor_prst is not set, the connection will never get public
1912     * reset packets and this flag will not be set.
1913     */
1914    LSCONN_ST_RESET,
1915    LSCONN_ST_USER_ABORTED,
1916    LSCONN_ST_ERROR,
1917    LSCONN_ST_CLOSED,
1918    LSCONN_ST_PEER_GOING_AWAY,
1919};
1920
1921enum LSQUIC_CONN_STATUS
1922lsquic_conn_status (lsquic_conn_t *, char *errbuf, size_t bufsz);
1923
1924extern const char *const
1925lsquic_ver2str[N_LSQVER];
1926
1927#ifdef __cplusplus
1928}
1929#endif
1930
1931#endif //__LSQUIC_H__
1932
1933