lsquic.h revision b62ec17f
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 int ecn; /* Valid values are 0 - 3. See RFC 3168 */ 978}; 979 980/** 981 * Returns number of packets successfully sent out or -1 on error. -1 should 982 * only be returned if no packets were sent out. If -1 is returned or if the 983 * return value is smaller than `n_packets_out', this indicates that sending 984 * of packets is not possible. 985 * 986 * If not all packets could be sent out, errno is examined. If it is not 987 * EAGAIN or EWOULDBLOCK, the connection whose packet cause the error is 988 * closed forthwith. 989 * 990 * No packets will be attempted to be sent out until 991 * @ref lsquic_engine_send_unsent_packets() is called. 992 */ 993typedef int (*lsquic_packets_out_f)( 994 void *packets_out_ctx, 995 const struct lsquic_out_spec *out_spec, 996 unsigned n_packets_out 997); 998 999/** 1000 * The shared hash interface is used to share data between multiple LSQUIC 1001 * instances. 1002 */ 1003struct lsquic_shared_hash_if 1004{ 1005 /** 1006 * If you want your item to never expire, set `expiry' to zero. 1007 * Returns 0 on success, -1 on failure. 1008 * 1009 * If inserted successfully, `free()' will be called on `data' and 'key' 1010 * pointer when the element is deleted, whether due to expiration 1011 * or explicit deletion. 1012 */ 1013 int (*shi_insert)(void *shi_ctx, void *key, unsigned key_sz, 1014 void *data, unsigned data_sz, time_t expiry); 1015 /** 1016 * Returns 0 on success, -1 on failure. 1017 */ 1018 int (*shi_delete)(void *shi_ctx, const void *key, unsigned key_sz); 1019 1020 /** 1021 * `data' is pointed to the result and `data_sz' is set to the 1022 * object size. The implementation may choose to copy the object 1023 * into buffer pointed to by `data', so you should have it ready. 1024 * 1025 * @retval 1 found. 1026 * @retval 0 not found. 1027 * @retval -1 error (perhaps not enough room in `data' if copy was 1028 * attempted). 1029 */ 1030 int (*shi_lookup)(void *shi_ctx, const void *key, unsigned key_sz, 1031 void **data, unsigned *data_sz); 1032}; 1033 1034/** 1035 * The packet out memory interface is used by LSQUIC to get buffers to 1036 * which outgoing packets will be written before they are passed to 1037 * ea_packets_out callback. 1038 * 1039 * If not specified, malloc() and free() are used. 1040 */ 1041struct lsquic_packout_mem_if 1042{ 1043 /** 1044 * Allocate buffer for sending. 1045 */ 1046 void * (*pmi_allocate) (void *pmi_ctx, void *peer_ctx, unsigned short sz, 1047 char is_ipv6); 1048 /** 1049 * This function is used to release the allocated buffer after it is 1050 * sent via @ref ea_packets_out. 1051 */ 1052 void (*pmi_release) (void *pmi_ctx, void *peer_ctx, void *buf, 1053 char is_ipv6); 1054 /** 1055 * If allocated buffer is not going to be sent, return it to the caller 1056 * using this function. 1057 */ 1058 void (*pmi_return) (void *pmi_ctx, void *peer_ctx, void *buf, 1059 char is_ipv6); 1060}; 1061 1062typedef void (*lsquic_cids_update_f)(void *ctx, void **peer_ctx, 1063 const lsquic_cid_t *cids, unsigned n_cids); 1064 1065struct stack_st_X509; 1066 1067enum lsquic_hsi_flag { 1068 /** 1069 * Turn HTTP/1.x mode on or off. In this mode, decoded name and value 1070 * pair are separated by ": " and "\r\n" is appended to the end of the 1071 * string. By default, this mode is off. 1072 */ 1073 LSQUIC_HSI_HTTP1X = 1 << 1, 1074 /** Include name hash into lsxpack_header */ 1075 LSQUIC_HSI_HASH_NAME = 1 << 2, 1076 /** Include nameval hash into lsxpack_header */ 1077 LSQUIC_HSI_HASH_NAMEVAL = 1 << 3, 1078}; 1079 1080struct lsquic_hset_if 1081{ 1082 /** 1083 * Create a new header set. This object is (and must be) fetched from a 1084 * stream by calling @ref lsquic_stream_get_hset() before the stream can 1085 * be read. 1086 * 1087 * `stream' may be set to NULL in server mode. 1088 */ 1089 void * (*hsi_create_header_set)(void *hsi_ctx, lsquic_stream_t *stream, 1090 int is_push_promise); 1091 /** 1092 * Return a header set prepared for decoding. If `hdr' is NULL, this 1093 * means return a new structure with at least `space' bytes available 1094 * in the decoder buffer. On success, a newly prepared header is 1095 * returned. 1096 * 1097 * If `hdr' is not NULL, it means there was not enough decoder buffer 1098 * and it must be increased to at least `space' bytes. `buf', `val_len', 1099 * and `name_offset' member of the `hdr' structure may change. On 1100 * success, the return value is the same as `hdr'. 1101 * 1102 * If NULL is returned, the space cannot be allocated. 1103 */ 1104 struct lsxpack_header * 1105 (*hsi_prepare_decode)(void *hdr_set, 1106 struct lsxpack_header *hdr, 1107 size_t space); 1108 /** 1109 * Process new header. Return 0 on success, a positive value if a header 1110 * error occured, or a negative value on any other error. 1111 * 1112 * A positive return value will result in cancellation of associated 1113 * stream. 1114 * 1115 * A negative return value will result in connection being aborted. 1116 * 1117 * `hdr_set' is the header set object returned by 1118 * @ref hsi_create_header_set(). 1119 * 1120 * `hdr' is the header returned by @ref `hsi_prepare_decode'. 1121 * 1122 * If `hdr' is NULL, this means that no more header are going to be 1123 * added to the set. 1124 */ 1125 int (*hsi_process_header)(void *hdr_set, struct lsxpack_header *hdr); 1126 /** 1127 * Discard header set. This is called for unclaimed header sets and 1128 * header sets that had an error. 1129 */ 1130 void (*hsi_discard_header_set)(void *hdr_set); 1131 /** 1132 * These flags specify properties of decoded headers passed to 1133 * hsi_process_header(). This is only applicable to QPACK headers; 1134 * HPACK library header properties are based on compilation, not 1135 * run-time, options. 1136 */ 1137 enum lsquic_hsi_flag hsi_flags; 1138}; 1139 1140/** 1141 * SSL keylog interface. 1142 */ 1143struct lsquic_keylog_if 1144{ 1145 /** Return keylog handle or NULL if no key logging is desired */ 1146 void * (*kli_open) (void *keylog_ctx, lsquic_conn_t *); 1147 1148 /** 1149 * Log line. The first argument is the pointer returned by 1150 * @ref kli_open. 1151 */ 1152 void (*kli_log_line) (void *handle, const char *line); 1153 1154 /** 1155 * Close handle. 1156 */ 1157 void (*kli_close) (void *handle); 1158}; 1159 1160/** 1161 * This struct contains a list of all callbacks that are used by the engine 1162 * to communicate with the user code. Most of these are optional, while 1163 * the following are mandatory: 1164 * 1165 * @ref ea_stream_if The stream interface. 1166 * @ref ea_packets_out Function to send packets. 1167 * @ref ea_lookup_cert Function to look up certificates by SNI (used 1168 * in server mode). 1169 * 1170 * A pointer to this structure is passed to engine constructor 1171 * @ref lsquic_engine_new(). 1172 */ 1173struct lsquic_engine_api 1174{ 1175 const struct lsquic_engine_settings *ea_settings; /* Optional */ 1176 /** Stream interface is required to manage connections and streams. */ 1177 const struct lsquic_stream_if *ea_stream_if; 1178 void *ea_stream_if_ctx; 1179 /** Function to send packets out is required. */ 1180 lsquic_packets_out_f ea_packets_out; 1181 void *ea_packets_out_ctx; 1182 /** Function to look up certificates by SNI is used in server mode. */ 1183 lsquic_lookup_cert_f ea_lookup_cert; 1184 void *ea_cert_lu_ctx; 1185 struct ssl_ctx_st * (*ea_get_ssl_ctx)(void *peer_ctx); 1186 /** 1187 * Shared hash interface is optional. If set to zero, performance of 1188 * multiple LSQUIC instances will be degraded. 1189 */ 1190 const struct lsquic_shared_hash_if *ea_shi; 1191 void *ea_shi_ctx; 1192 /** 1193 * Memory interface is optional. 1194 */ 1195 const struct lsquic_packout_mem_if *ea_pmi; 1196 void *ea_pmi_ctx; 1197 /** 1198 * Optional interface to report new and old source connection IDs. 1199 */ 1200 lsquic_cids_update_f ea_new_scids; 1201 lsquic_cids_update_f ea_live_scids; 1202 lsquic_cids_update_f ea_old_scids; 1203 void *ea_cids_update_ctx; 1204 /** 1205 * Function to verify server certificate. The chain contains at least 1206 * one element. The first element in the chain is the server 1207 * certificate. The chain belongs to the library. If you want to 1208 * retain it, call sk_X509_up_ref(). 1209 * 1210 * 0 is returned on success, -1 on error. 1211 * 1212 * If the function pointer is not set, no verification is performed 1213 * (the connection is allowed to proceed). 1214 */ 1215 int (*ea_verify_cert)(void *verify_ctx, 1216 struct stack_st_X509 *chain); 1217 void *ea_verify_ctx; 1218 1219 /** 1220 * Optional header set interface. If not specified, the incoming headers 1221 * are converted to HTTP/1.x format and are read from stream and have to 1222 * be parsed again. 1223 */ 1224 const struct lsquic_hset_if *ea_hsi_if; 1225 void *ea_hsi_ctx; 1226#if LSQUIC_CONN_STATS 1227 /** 1228 * If set, engine will print cumulative connection statistics to this 1229 * file just before it is destroyed. 1230 */ 1231 void /* FILE, really */ *ea_stats_fh; 1232#endif 1233 1234 /** 1235 * Optional SSL key logging interface. 1236 */ 1237 const struct lsquic_keylog_if *ea_keylog_if; 1238 void *ea_keylog_ctx; 1239 1240 /** 1241 * The optional ALPN string is used by the client if @ref LSENG_HTTP 1242 * is not set. 1243 */ 1244 const char *ea_alpn; 1245 1246 /** 1247 * Optional interface to control the creation of connection IDs 1248 */ 1249 void (*ea_generate_scid)(lsquic_conn_t *, 1250 lsquic_cid_t *, unsigned); 1251}; 1252 1253/** 1254 * Create new engine. 1255 * 1256 * @param lsquic_engine_flags A bitmask of @ref LSENG_SERVER and 1257 * @ref LSENG_HTTP 1258 * 1259 * @param api Required parameter that specifies 1260 * various callbacks. 1261 * 1262 * The engine can be instantiated either in server mode (when LSENG_SERVER 1263 * is set) or client mode. If you need both server and client in your 1264 * program, create two engines (or as many as you'd like). 1265 */ 1266lsquic_engine_t * 1267lsquic_engine_new (unsigned lsquic_engine_flags, 1268 const struct lsquic_engine_api *api); 1269 1270/** 1271 * Create a client connection to peer identified by `peer_ctx'. 1272 * 1273 * To let the engine specify QUIC version, use N_LSQVER. If session resumption 1274 * information is supplied, version is picked from there instead. 1275 * 1276 * If `base_plpmtu' is set to zero, it is selected based on the 1277 * engine settings, QUIC version, and IP version. 1278 */ 1279lsquic_conn_t * 1280lsquic_engine_connect (lsquic_engine_t *, enum lsquic_version, 1281 const struct sockaddr *local_sa, 1282 const struct sockaddr *peer_sa, 1283 void *peer_ctx, lsquic_conn_ctx_t *conn_ctx, 1284 const char *hostname, unsigned short base_plpmtu, 1285 const unsigned char *sess_resume, size_t sess_resume_len, 1286 /** Resumption token: optional */ 1287 const unsigned char *token, size_t token_sz); 1288 1289/** 1290 * Pass incoming packet to the QUIC engine. This function can be called 1291 * more than once in a row. After you add one or more packets, call 1292 * lsquic_engine_process_conns() to schedule output, if any. 1293 * 1294 * @retval 0 Packet was processed by a real connection. 1295 * 1296 * @retval 1 Packet was handled successfully, but not by a connection. 1297 * This may happen with version negotiation and public reset 1298 * packets as well as some packets that may be ignored. 1299 * 1300 * @retval -1 An error occurred. Possible reasons are failure to allocate 1301 * memory and invalid @param sa_local in client mode. 1302 */ 1303int 1304lsquic_engine_packet_in (lsquic_engine_t *, 1305 const unsigned char *packet_in_data, size_t packet_in_size, 1306 const struct sockaddr *sa_local, const struct sockaddr *sa_peer, 1307 void *peer_ctx, int ecn); 1308 1309/** 1310 * Process tickable connections. This function must be called often enough so 1311 * that packets and connections do not expire. 1312 */ 1313void 1314lsquic_engine_process_conns (lsquic_engine_t *engine); 1315 1316/** 1317 * Returns true if engine has some unsent packets. This happens if 1318 * @ref ea_packets_out() could not send everything out or if processing 1319 * deadline was exceeded (see @ref es_proc_time_thresh). 1320 */ 1321int 1322lsquic_engine_has_unsent_packets (lsquic_engine_t *engine); 1323 1324/** 1325 * Send out as many unsent packets as possibe: until we are out of unsent 1326 * packets or until @ref ea_packets_out() fails. 1327 * 1328 * If @ref ea_packets_out() does fail cannot send all packets, this 1329 * function must be called to signify that sending of packets is possible 1330 * again. 1331 */ 1332void 1333lsquic_engine_send_unsent_packets (lsquic_engine_t *engine); 1334 1335/** 1336 * Destroy engine and all connections and streams in it and free all 1337 * memory associated with this engine. 1338 */ 1339void 1340lsquic_engine_destroy (lsquic_engine_t *); 1341 1342/** Return max allowed outbound streams less current outbound streams. */ 1343unsigned 1344lsquic_conn_n_avail_streams (const lsquic_conn_t *); 1345 1346/** 1347 * Create a new request stream. This causes @ref on_new_stream() callback 1348 * to be called. If creating more requests is not permitted at the moment 1349 * (due to number of concurrent streams limit), stream creation is registered 1350 * as "pending" and the stream is created later when number of streams dips 1351 * under the limit again. Any number of pending streams can be created. 1352 * Use @ref lsquic_conn_n_pending_streams() and 1353 * @ref lsquic_conn_cancel_pending_streams() to manage pending streams. 1354 * 1355 * If connection is going away, @ref on_new_stream() is called with the 1356 * stream parameter set to NULL. 1357 */ 1358void 1359lsquic_conn_make_stream (lsquic_conn_t *); 1360 1361/** Return number of delayed streams currently pending */ 1362unsigned 1363lsquic_conn_n_pending_streams (const lsquic_conn_t *); 1364 1365/** Cancel `n' pending streams. Returns new number of pending streams. */ 1366unsigned 1367lsquic_conn_cancel_pending_streams (lsquic_conn_t *, unsigned n); 1368 1369/** 1370 * Mark connection as going away: send GOAWAY frame and do not accept 1371 * any more incoming streams, nor generate streams of our own. 1372 * 1373 * Only applicable to HTTP/3 and GQUIC connections. Otherwise a no-op. 1374 */ 1375void 1376lsquic_conn_going_away (lsquic_conn_t *); 1377 1378/** 1379 * This forces connection close. on_conn_closed and on_close callbacks 1380 * will be called. 1381 */ 1382void 1383lsquic_conn_close (lsquic_conn_t *); 1384 1385/** 1386 * Set whether you want to read from stream. If @param is_want is true, 1387 * @ref on_read() will be called when there is readable data in the 1388 * stream. If @param is false, @ref on_read() will not be called. 1389 * 1390 * Returns previous value of this flag. 1391 */ 1392int 1393lsquic_stream_wantread (lsquic_stream_t *s, int is_want); 1394 1395/** 1396 * Read up to @param len bytes from stream into @param buf. Returns number 1397 * of bytes read or -1 on error, in which case errno is set. Possible 1398 * errno values: 1399 * 1400 * EBADF The stream is closed. 1401 * ECONNRESET The stream has been reset. 1402 * EWOULDBLOCK There is no data to be read. 1403 * 1404 * Return value of zero indicates EOF. 1405 */ 1406ssize_t 1407lsquic_stream_read (lsquic_stream_t *s, void *buf, size_t len); 1408 1409/** 1410 * Similar to @ref lsquic_stream_read(), but reads data into @param vec. 1411 */ 1412ssize_t 1413lsquic_stream_readv (lsquic_stream_t *s, const struct iovec *vec, int iovcnt); 1414 1415/** 1416 * This function allows user-supplied callback to read the stream contents. 1417 * It is meant to be used for zero-copy stream processing. 1418 * 1419 * Return value and errors are same as in @ref lsquic_stream_read(). 1420 */ 1421ssize_t 1422lsquic_stream_readf (lsquic_stream_t *s, 1423 /** 1424 * The callback takes four parameters: 1425 * - Pointer to user-supplied context; 1426 * - Pointer to the data; 1427 * - Data size (can be zero); and 1428 * - Indicator whether the FIN follows the data. 1429 * 1430 * The callback returns number of bytes processed. If this number is zero 1431 * or is smaller than `len', reading from stream stops. 1432 */ 1433 size_t (*readf)(void *ctx, const unsigned char *buf, size_t len, int fin), 1434 void *ctx); 1435 1436/** 1437 * Set whether you want to write to stream. If @param is_want is true, 1438 * @ref on_write() will be called when it is possible to write data to 1439 * the stream. If @param is false, @ref on_write() will not be called. 1440 * 1441 * Returns previous value of this flag. 1442 */ 1443int 1444lsquic_stream_wantwrite (lsquic_stream_t *s, int is_want); 1445 1446/** 1447 * Write `len' bytes to the stream. Returns number of bytes written, which 1448 * may be smaller that `len'. 1449 * 1450 * A negative return value indicates a serious error (the library is likely 1451 * to have aborted the connection because of it). 1452 */ 1453ssize_t 1454lsquic_stream_write (lsquic_stream_t *s, const void *buf, size_t len); 1455 1456/** 1457 * Like @ref lsquic_stream_write(), but read data from @param vec. 1458 */ 1459ssize_t 1460lsquic_stream_writev (lsquic_stream_t *s, const struct iovec *vec, int count); 1461 1462/** 1463 * Write to streams using a single call to a preadv-like function. 1464 */ 1465ssize_t 1466lsquic_stream_pwritev (lsquic_stream_t *s, 1467 ssize_t (*preadv)(void *user_data, const struct iovec *iov, int iovcnt), 1468 void *user_data, size_t n_to_write); 1469 1470/** 1471 * Used as argument to @ref lsquic_stream_writef() 1472 */ 1473struct lsquic_reader 1474{ 1475 /** 1476 * Not a ssize_t because the read function is not supposed to return 1477 * an error. If an error occurs in the read function (for example, when 1478 * reading from a file fails), it is supposed to deal with the error 1479 * itself. 1480 */ 1481 size_t (*lsqr_read) (void *lsqr_ctx, void *buf, size_t count); 1482 /** 1483 * Return number of bytes remaining in the reader. 1484 */ 1485 size_t (*lsqr_size) (void *lsqr_ctx); 1486 void *lsqr_ctx; 1487}; 1488 1489/** 1490 * Write to stream using @ref lsquic_reader. This is the most generic of 1491 * the write functions -- @ref lsquic_stream_write() and 1492 * @ref lsquic_stream_writev() utilize the same mechanism. 1493 * 1494 * @retval Number of bytes written or -1 on error. 1495 */ 1496ssize_t 1497lsquic_stream_writef (lsquic_stream_t *, struct lsquic_reader *); 1498 1499/** 1500 * Flush any buffered data. This triggers packetizing even a single byte 1501 * into a separate frame. Flushing a closed stream is an error. 1502 * 1503 * @retval 0 Success 1504 * @retval -1 Failure 1505 */ 1506int 1507lsquic_stream_flush (lsquic_stream_t *s); 1508 1509/** 1510 * @typedef lsquic_http_headers_t 1511 * @brief HTTP header list structure. Contains a list of HTTP headers in key/value pairs. 1512 * used in API functions to pass headers. 1513 */ 1514struct lsquic_http_headers 1515{ 1516 int count; 1517 struct lsxpack_header *headers; 1518}; 1519 1520/** 1521 * Send headers in @param headers. This function must be called before 1522 * writing to the stream. The value of @param eos is ignored in IETF QUIC. 1523 */ 1524int 1525lsquic_stream_send_headers (lsquic_stream_t *s, 1526 const lsquic_http_headers_t *headers, int eos); 1527 1528/** 1529 * Get header set associated with the stream. The header set is created by 1530 * @ref hsi_create_header_set() callback. After this call, the ownership of 1531 * the header set is transferred to the caller. 1532 * 1533 * This call must precede calls to @ref lsquic_stream_read() and 1534 * @ref lsquic_stream_readv(). 1535 * 1536 * If the optional header set interface (@ref ea_hsi_if) is not specified, 1537 * this function returns NULL. 1538 */ 1539void * 1540lsquic_stream_get_hset (lsquic_stream_t *); 1541 1542/** 1543 * A server may push a stream. This call creates a new stream in reference 1544 * to stream `s'. It will behave as if the client made a request: it will 1545 * trigger on_new_stream() event and it can be used as a regular client- 1546 * initiated stream. 1547 * 1548 * `hdr_set' must be set. It is passed as-is to @lsquic_stream_get_hset. 1549 * 1550 * @retval 0 Stream pushed successfully. 1551 * @retval 1 Stream push failed because it is disabled or because we hit 1552 * stream limit or connection is going away. 1553 * @retval -1 Stream push failed because of an internal error. 1554 */ 1555int 1556lsquic_conn_push_stream (lsquic_conn_t *c, void *hdr_set, lsquic_stream_t *s, 1557 const lsquic_http_headers_t *headers); 1558 1559/** 1560 * Only makes sense in server mode: the client cannot push a stream and this 1561 * function always returns false in client mode. 1562 */ 1563int 1564lsquic_conn_is_push_enabled (lsquic_conn_t *); 1565 1566/** Possible values for how are 0, 1, and 2. See shutdown(2). */ 1567int lsquic_stream_shutdown(lsquic_stream_t *s, int how); 1568 1569int lsquic_stream_close(lsquic_stream_t *s); 1570 1571/** 1572 * Get certificate chain returned by the server. This can be used for 1573 * server certificate verification. 1574 * 1575 * The caller releases the stack using sk_X509_free(). 1576 */ 1577struct stack_st_X509 * 1578lsquic_conn_get_server_cert_chain (lsquic_conn_t *); 1579 1580/** Returns ID of the stream */ 1581lsquic_stream_id_t 1582lsquic_stream_id (const lsquic_stream_t *s); 1583 1584/** 1585 * Returns stream ctx associated with the stream. (The context is what 1586 * is returned by @ref on_new_stream callback). 1587 */ 1588lsquic_stream_ctx_t * 1589lsquic_stream_get_ctx (const lsquic_stream_t *s); 1590 1591/** Returns true if this is a pushed stream */ 1592int 1593lsquic_stream_is_pushed (const lsquic_stream_t *s); 1594 1595/** 1596 * Returns true if this stream was rejected, false otherwise. Use this as 1597 * an aid to distinguish between errors. 1598 */ 1599int 1600lsquic_stream_is_rejected (const lsquic_stream_t *s); 1601 1602/** 1603 * Refuse pushed stream. Call it from @ref on_new_stream. 1604 * 1605 * No need to call lsquic_stream_close() after this. on_close will be called. 1606 * 1607 * @see lsquic_stream_is_pushed 1608 */ 1609int 1610lsquic_stream_refuse_push (lsquic_stream_t *s); 1611 1612/** 1613 * Get information associated with pushed stream: 1614 * 1615 * @param ref_stream_id Stream ID in response to which push promise was 1616 * sent. 1617 * @param hdr_set Header set. This object was passed to or generated 1618 * by @ref lsquic_conn_push_stream(). 1619 * 1620 * @retval 0 Success. 1621 * @retval -1 This is not a pushed stream. 1622 */ 1623int 1624lsquic_stream_push_info (const lsquic_stream_t *, 1625 lsquic_stream_id_t *ref_stream_id, void **hdr_set); 1626 1627/** Return current priority of the stream */ 1628unsigned lsquic_stream_priority (const lsquic_stream_t *s); 1629 1630/** 1631 * Set stream priority. Valid priority values are 1 through 256, inclusive. 1632 * Lower value means higher priority. 1633 * 1634 * @retval 0 Success. 1635 * @retval -1 Priority value is invalid. 1636 */ 1637int lsquic_stream_set_priority (lsquic_stream_t *s, unsigned priority); 1638 1639/** 1640 * Get a pointer to the connection object. Use it with lsquic_conn_* 1641 * functions. 1642 */ 1643lsquic_conn_t * lsquic_stream_conn(const lsquic_stream_t *s); 1644 1645/** Get connection ID */ 1646const lsquic_cid_t * 1647lsquic_conn_id (const lsquic_conn_t *c); 1648 1649/** Get pointer to the engine */ 1650lsquic_engine_t * 1651lsquic_conn_get_engine (lsquic_conn_t *c); 1652 1653int 1654lsquic_conn_get_sockaddr(lsquic_conn_t *c, 1655 const struct sockaddr **local, const struct sockaddr **peer); 1656 1657/* Returns previous value */ 1658int 1659lsquic_conn_want_datagram_write (lsquic_conn_t *, int is_want); 1660 1661/* Get minimum datagram size. By default, this value is zero. */ 1662size_t 1663lsquic_conn_get_min_datagram_size (lsquic_conn_t *); 1664 1665/* Set minimum datagram size. This is the minumum value of the buffer passed 1666 * to the on_dg_write() callback. 1667 */ 1668int 1669lsquic_conn_set_min_datagram_size (lsquic_conn_t *, size_t sz); 1670 1671struct lsquic_logger_if { 1672 int (*log_buf)(void *logger_ctx, const char *buf, size_t len); 1673}; 1674 1675/** 1676 * Enumerate timestamp styles supported by LSQUIC logger mechanism. 1677 */ 1678enum lsquic_logger_timestamp_style { 1679 /** 1680 * No timestamp is generated. 1681 */ 1682 LLTS_NONE, 1683 1684 /** 1685 * The timestamp consists of 24 hours, minutes, seconds, and 1686 * milliseconds. Example: 13:43:46.671 1687 */ 1688 LLTS_HHMMSSMS, 1689 1690 /** 1691 * Like above, plus date, e.g: 2017-03-21 13:43:46.671 1692 */ 1693 LLTS_YYYYMMDD_HHMMSSMS, 1694 1695 /** 1696 * This is Chrome-like timestamp used by proto-quic. The timestamp 1697 * includes month, date, hours, minutes, seconds, and microseconds. 1698 * 1699 * Example: 1223/104613.946956 (instead of 12/23 10:46:13.946956). 1700 * 1701 * This is to facilitate reading two logs side-by-side. 1702 */ 1703 LLTS_CHROMELIKE, 1704 1705 /** 1706 * The timestamp consists of 24 hours, minutes, seconds, and 1707 * microseconds. Example: 13:43:46.671123 1708 */ 1709 LLTS_HHMMSSUS, 1710 1711 /** 1712 * Date and time using microsecond resolution, 1713 * e.g: 2017-03-21 13:43:46.671123 1714 */ 1715 LLTS_YYYYMMDD_HHMMSSUS, 1716 1717 N_LLTS 1718}; 1719 1720/** 1721 * Call this if you want to do something with LSQUIC log messages, as they 1722 * are thrown out by default. 1723 */ 1724void lsquic_logger_init(const struct lsquic_logger_if *, void *logger_ctx, 1725 enum lsquic_logger_timestamp_style); 1726 1727/** 1728 * Set log level for all LSQUIC modules. Acceptable values are debug, info, 1729 * notice, warning, error, alert, emerg, crit (case-insensitive). 1730 * 1731 * @retval 0 Success. 1732 * @retval -1 Failure: log_level is not valid. 1733 */ 1734int 1735lsquic_set_log_level (const char *log_level); 1736 1737/** 1738 * E.g. "event=debug" 1739 */ 1740int 1741lsquic_logger_lopt (const char *optarg); 1742 1743/** 1744 * Return the list of QUIC versions (as bitmask) this engine instance 1745 * supports. 1746 */ 1747unsigned lsquic_engine_quic_versions (const lsquic_engine_t *); 1748 1749/** 1750 * This is one of the flags that can be passed to @ref lsquic_global_init. 1751 * Use it to initialize LSQUIC for use in client mode. 1752 */ 1753#define LSQUIC_GLOBAL_CLIENT (1 << 0) 1754 1755/** 1756 * This is one of the flags that can be passed to @ref lsquic_global_init. 1757 * Use it to initialize LSQUIC for use in server mode. 1758 */ 1759#define LSQUIC_GLOBAL_SERVER (1 << 1) 1760 1761/** 1762 * Initialize LSQUIC. This must be called before any other LSQUIC function 1763 * is called. Returns 0 on success and -1 on failure. 1764 * 1765 * @param flags This a bitmask of @ref LSQUIC_GLOBAL_CLIENT and 1766 * @ref LSQUIC_GLOBAL_SERVER. At least one of these 1767 * flags should be specified. 1768 * 1769 * @retval 0 Success. 1770 * @retval -1 Initialization failed. 1771 * 1772 * @see LSQUIC_GLOBAL_CLIENT 1773 * @see LSQUIC_GLOBAL_SERVER 1774 */ 1775int 1776lsquic_global_init (int flags); 1777 1778/** 1779 * Clean up global state created by @ref lsquic_global_init. Should be 1780 * called after all LSQUIC engine instances are gone. 1781 */ 1782void 1783lsquic_global_cleanup (void); 1784 1785/** 1786 * Get QUIC version used by the connection. 1787 * 1788 * @see lsquic_version 1789 */ 1790enum lsquic_version 1791lsquic_conn_quic_version (const lsquic_conn_t *c); 1792 1793/* Return keysize or -1 on error */ 1794int 1795lsquic_conn_crypto_keysize (const lsquic_conn_t *c); 1796 1797/* Return algorithm keysize or -1 on error */ 1798int 1799lsquic_conn_crypto_alg_keysize (const lsquic_conn_t *c); 1800 1801enum lsquic_crypto_ver 1802{ 1803 LSQ_CRY_QUIC, 1804 LSQ_CRY_TLSv13, 1805}; 1806 1807enum lsquic_crypto_ver 1808lsquic_conn_crypto_ver (const lsquic_conn_t *c); 1809 1810/* Return cipher or NULL on error */ 1811const char * 1812lsquic_conn_crypto_cipher (const lsquic_conn_t *c); 1813 1814/** Translate string QUIC version to LSQUIC QUIC version representation */ 1815enum lsquic_version 1816lsquic_str2ver (const char *str, size_t len); 1817 1818/** Translate ALPN (e.g. "h3", "h3-23", "h3-Q046") to LSQUIC enum */ 1819enum lsquic_version 1820lsquic_alpn2ver (const char *alpn, size_t len); 1821 1822/** 1823 * This function closes all mini connections and marks all full connections 1824 * as going away. In server mode, this also causes the engine to stop 1825 * creating new connections. 1826 */ 1827void 1828lsquic_engine_cooldown (lsquic_engine_t *); 1829 1830/** 1831 * Get user-supplied context associated with the connection. 1832 */ 1833lsquic_conn_ctx_t * 1834lsquic_conn_get_ctx (const lsquic_conn_t *); 1835 1836/** 1837 * Set user-supplied context associated with the connection. 1838 */ 1839void 1840lsquic_conn_set_ctx (lsquic_conn_t *, lsquic_conn_ctx_t *); 1841 1842/** 1843 * Get peer context associated with the connection. 1844 */ 1845void * 1846lsquic_conn_get_peer_ctx (lsquic_conn_t *, const struct sockaddr *local_sa); 1847 1848/** 1849 * Abort connection. 1850 */ 1851void 1852lsquic_conn_abort (lsquic_conn_t *); 1853 1854/** 1855 * Helper function: convert list of versions as specified in the argument 1856 * bitmask to string that can be included as argument to "v=" part of the 1857 * Alt-Svc header. 1858 * 1859 * For example (1<<LSQVER_037)|(1<<LSQVER_038) => "37,38" 1860 * 1861 * This is only applicable to Google QUIC versions. 1862 */ 1863const char * 1864lsquic_get_alt_svc_versions (unsigned versions); 1865 1866/** 1867 * Return a NULL-terminated list of HTTP/3 ALPNs, e.g "h3-17", "h3-18", "h3". 1868 */ 1869const char *const * 1870lsquic_get_h3_alpns (unsigned versions); 1871 1872/** 1873 * Returns true if provided buffer could be a valid handshake-stage packet, 1874 * false otherwise. Do not call this function if a connection has already 1875 * been established: it will return incorrect result. 1876 */ 1877int 1878lsquic_is_valid_hs_packet (lsquic_engine_t *, const unsigned char *, size_t); 1879 1880/** 1881 * Parse cid from packet stored in `buf' and store it to `cid'. Returns 0 1882 * on success and -1 on failure. 1883 */ 1884int 1885lsquic_cid_from_packet (const unsigned char *, size_t bufsz, lsquic_cid_t *cid); 1886 1887/** 1888 * Returns true if there are connections to be processed, false otherwise. 1889 * If true, `diff' is set to the difference between the earliest advisory 1890 * tick time and now. If the former is in the past, the value of `diff' 1891 * is negative. 1892 */ 1893int 1894lsquic_engine_earliest_adv_tick (lsquic_engine_t *engine, int *diff); 1895 1896/** 1897 * Return number of connections whose advisory tick time is before current 1898 * time plus `from_now' microseconds from now. `from_now' can be negative. 1899 */ 1900unsigned 1901lsquic_engine_count_attq (lsquic_engine_t *engine, int from_now); 1902 1903enum LSQUIC_CONN_STATUS 1904{ 1905 LSCONN_ST_HSK_IN_PROGRESS, 1906 LSCONN_ST_CONNECTED, 1907 LSCONN_ST_HSK_FAILURE, 1908 LSCONN_ST_GOING_AWAY, 1909 LSCONN_ST_TIMED_OUT, 1910 /* If es_honor_prst is not set, the connection will never get public 1911 * reset packets and this flag will not be set. 1912 */ 1913 LSCONN_ST_RESET, 1914 LSCONN_ST_USER_ABORTED, 1915 LSCONN_ST_ERROR, 1916 LSCONN_ST_CLOSED, 1917 LSCONN_ST_PEER_GOING_AWAY, 1918}; 1919 1920enum LSQUIC_CONN_STATUS 1921lsquic_conn_status (lsquic_conn_t *, char *errbuf, size_t bufsz); 1922 1923extern const char *const 1924lsquic_ver2str[N_LSQVER]; 1925 1926#ifdef __cplusplus 1927} 1928#endif 1929 1930#endif //__LSQUIC_H__ 1931 1932