blob: 1681861ddad8b5453af01b0a4007122a65dac02f [file] [log] [blame]
Christopher Faulet51dbc942018-09-13 09:05:15 +02001/*
2 * HTT/1 mux-demux for connections
3 *
4 * Copyright 2018 Christopher Faulet <cfaulet@haproxy.com>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12#include <common/cfgparse.h>
13#include <common/config.h>
Willy Tarreau0108d902018-11-25 19:14:37 +010014#include <common/initcall.h>
Christopher Faulet51dbc942018-09-13 09:05:15 +020015
Christopher Faulet1be55f92018-10-02 15:59:23 +020016#include <types/pipe.h>
Christopher Fauletf2824e62018-10-01 12:12:37 +020017#include <types/proxy.h>
18#include <types/session.h>
19
Christopher Faulet51dbc942018-09-13 09:05:15 +020020#include <proto/connection.h>
Christopher Faulet129817b2018-09-20 16:14:40 +020021#include <proto/h1.h>
Christopher Faulet9768c262018-10-22 09:34:31 +020022#include <proto/http_htx.h>
23#include <proto/htx.h>
Christopher Faulet129817b2018-09-20 16:14:40 +020024#include <proto/log.h>
Christopher Faulet51dbc942018-09-13 09:05:15 +020025#include <proto/stream.h>
26#include <proto/stream_interface.h>
27
28/*
29 * H1 Connection flags (32 bits)
30 */
31#define H1C_F_NONE 0x00000000
32
33/* Flags indicating why writing output data are blocked */
34#define H1C_F_OUT_ALLOC 0x00000001 /* mux is blocked on lack of output buffer */
35#define H1C_F_OUT_FULL 0x00000002 /* mux is blocked on output buffer full */
36/* 0x00000004 - 0x00000008 unused */
37
38/* Flags indicating why reading input data are blocked. */
39#define H1C_F_IN_ALLOC 0x00000010 /* mux is blocked on lack of input buffer */
40#define H1C_F_IN_FULL 0x00000020 /* mux is blocked on input buffer full */
Christopher Faulet539e0292018-11-19 10:40:09 +010041/* 0x00000040 - 0x00000800 unused */
Christopher Faulet51dbc942018-09-13 09:05:15 +020042
43#define H1C_F_CS_ERROR 0x00001000 /* connection must be closed ASAP because an error occurred */
44#define H1C_F_CS_SHUTW_NOW 0x00002000 /* connection must be shut down for writes ASAP */
45#define H1C_F_CS_SHUTW 0x00004000 /* connection is already shut down */
Christopher Faulet3b88b8d2018-10-26 17:36:03 +020046#define H1C_F_CS_WAIT_CONN 0x00008000 /* waiting for the connection establishment */
Christopher Faulet51dbc942018-09-13 09:05:15 +020047
Christopher Fauletf2824e62018-10-01 12:12:37 +020048#define H1C_F_WAIT_NEXT_REQ 0x00010000 /* waiting for the next request to start, use keep-alive timeout */
Christopher Faulet129817b2018-09-20 16:14:40 +020049
Christopher Faulet51dbc942018-09-13 09:05:15 +020050/*
51 * H1 Stream flags (32 bits)
52 */
Christopher Faulet129817b2018-09-20 16:14:40 +020053#define H1S_F_NONE 0x00000000
54#define H1S_F_ERROR 0x00000001 /* An error occurred on the H1 stream */
Christopher Fauletf2824e62018-10-01 12:12:37 +020055#define H1S_F_REQ_ERROR 0x00000002 /* An error occurred during the request parsing/xfer */
56#define H1S_F_RES_ERROR 0x00000004 /* An error occurred during the response parsing/xfer */
Christopher Faulet539e0292018-11-19 10:40:09 +010057/* 0x00000008 unused */
Christopher Fauletf2824e62018-10-01 12:12:37 +020058#define H1S_F_WANT_KAL 0x00000010
59#define H1S_F_WANT_TUN 0x00000020
60#define H1S_F_WANT_CLO 0x00000040
61#define H1S_F_WANT_MSK 0x00000070
62#define H1S_F_NOT_FIRST 0x00000080 /* The H1 stream is not the first one */
Christopher Faulet539e0292018-11-19 10:40:09 +010063#define H1S_F_BUF_FLUSH 0x00000100 /* Flush input buffer and don't read more data */
Christopher Fauletd44ad5b2018-11-19 21:52:12 +010064#define H1S_F_SPLICED_DATA 0x00000200 /* Set when the kernel splicing is in used */
Christopher Faulet32188212018-11-20 18:21:43 +010065#define H1S_F_HAVE_EOD 0x00000400 /* Set during input/output process to know the last empty chunk was processed */
66#define H1S_F_HAVE_TLR 0x00000800 /* Set during input/output process to know the trailers were processed */
Christopher Faulet51dbc942018-09-13 09:05:15 +020067
68/* H1 connection descriptor */
Christopher Faulet51dbc942018-09-13 09:05:15 +020069struct h1c {
70 struct connection *conn;
71 struct proxy *px;
72 uint32_t flags; /* Connection flags: H1C_F_* */
73
74 struct buffer ibuf; /* Input buffer to store data before parsing */
75 struct buffer obuf; /* Output buffer to store data after reformatting */
76
77 struct buffer_wait buf_wait; /* Wait list for buffer allocation */
78 struct wait_event wait_event; /* To be used if we're waiting for I/Os */
79
80 struct h1s *h1s; /* H1 stream descriptor */
Christopher Faulet51dbc942018-09-13 09:05:15 +020081};
82
83/* H1 stream descriptor */
84struct h1s {
85 struct h1c *h1c;
86 struct conn_stream *cs;
Christopher Fauletfeb11742018-11-29 15:12:34 +010087 struct cs_info csinfo; /* CS info, only used for client connections */
88 uint32_t flags; /* Connection flags: H1S_F_* */
Christopher Faulet51dbc942018-09-13 09:05:15 +020089
Christopher Faulet51dbc942018-09-13 09:05:15 +020090 struct wait_event *recv_wait; /* Address of the wait_event the conn_stream associated is waiting on */
91 struct wait_event *send_wait; /* Address of the wait_event the conn_stream associated is waiting on */
Christopher Faulet129817b2018-09-20 16:14:40 +020092
93 struct h1m req;
94 struct h1m res;
95
96 enum http_meth_t meth; /* HTTP resquest method */
97 uint16_t status; /* HTTP response status */
Christopher Faulet51dbc942018-09-13 09:05:15 +020098};
99
100/* the h1c and h1s pools */
Willy Tarreau8ceae722018-11-26 11:58:30 +0100101DECLARE_STATIC_POOL(pool_head_h1c, "h1c", sizeof(struct h1c));
102DECLARE_STATIC_POOL(pool_head_h1s, "h1s", sizeof(struct h1s));
Christopher Faulet51dbc942018-09-13 09:05:15 +0200103
Christopher Faulet51dbc942018-09-13 09:05:15 +0200104static int h1_recv(struct h1c *h1c);
105static int h1_send(struct h1c *h1c);
106static int h1_process(struct h1c *h1c);
107static struct task *h1_io_cb(struct task *t, void *ctx, unsigned short state);
108static void h1_shutw_conn(struct connection *conn);
109
110/*****************************************************/
111/* functions below are for dynamic buffer management */
112/*****************************************************/
113/*
114 * Indicates whether or not the we may call the h1_recv() function to
115 * attempt to receive data into the buffer and/or parse pending data. The
116 * condition is a bit complex due to some API limits for now. The rules are the
117 * following :
118 * - if an error or a shutdown was detected on the connection and the buffer
119 * is empty, we must not attempt to receive
120 * - if the input buffer failed to be allocated, we must not try to receive
121 * and we know there is nothing pending
122 * - if no flag indicates a blocking condition, we may attempt to receive,
123 * regardless of whether the input buffer is full or not, so that only de
124 * receiving part decides whether or not to block. This is needed because
125 * the connection API indeed prevents us from re-enabling receipt that is
126 * already enabled in a polled state, so we must always immediately stop as
127 * soon as the mux can't proceed so as never to hit an end of read with data
128 * pending in the buffers.
129 * - otherwise must may not attempt to receive
130 */
131static inline int h1_recv_allowed(const struct h1c *h1c)
132{
133 if (b_data(&h1c->ibuf) == 0 &&
Christopher Faulet7e346f32018-11-20 17:13:52 +0100134 (h1c->flags & (H1C_F_CS_ERROR|H1C_F_CS_SHUTW) ||
Christopher Faulet51dbc942018-09-13 09:05:15 +0200135 h1c->conn->flags & CO_FL_ERROR ||
136 conn_xprt_read0_pending(h1c->conn)))
137 return 0;
138
139 if (!(h1c->flags & (H1C_F_IN_ALLOC|H1C_F_IN_FULL)))
140 return 1;
141
142 return 0;
143}
144
145/*
146 * Tries to grab a buffer and to re-enables processing on mux <target>. The h1
147 * flags are used to figure what buffer was requested. It returns 1 if the
148 * allocation succeeds, in which case the connection is woken up, or 0 if it's
149 * impossible to wake up and we prefer to be woken up later.
150 */
151static int h1_buf_available(void *target)
152{
153 struct h1c *h1c = target;
154
155 if ((h1c->flags & H1C_F_IN_ALLOC) && b_alloc_margin(&h1c->ibuf, 0)) {
156 h1c->flags &= ~H1C_F_IN_ALLOC;
157 if (h1_recv_allowed(h1c))
158 tasklet_wakeup(h1c->wait_event.task);
159 return 1;
160 }
161
162 if ((h1c->flags & H1C_F_OUT_ALLOC) && b_alloc_margin(&h1c->obuf, 0)) {
163 h1c->flags &= ~H1C_F_OUT_ALLOC;
164 tasklet_wakeup(h1c->wait_event.task);
165 return 1;
166 }
167
Christopher Faulet51dbc942018-09-13 09:05:15 +0200168 return 0;
169}
170
171/*
172 * Allocate a buffer. If if fails, it adds the mux in buffer wait queue.
173 */
174static inline struct buffer *h1_get_buf(struct h1c *h1c, struct buffer *bptr)
175{
176 struct buffer *buf = NULL;
177
178 if (likely(LIST_ISEMPTY(&h1c->buf_wait.list)) &&
179 unlikely((buf = b_alloc_margin(bptr, 0)) == NULL)) {
180 h1c->buf_wait.target = h1c;
181 h1c->buf_wait.wakeup_cb = h1_buf_available;
182 HA_SPIN_LOCK(BUF_WQ_LOCK, &buffer_wq_lock);
183 LIST_ADDQ(&buffer_wq, &h1c->buf_wait.list);
184 HA_SPIN_UNLOCK(BUF_WQ_LOCK, &buffer_wq_lock);
185 __conn_xprt_stop_recv(h1c->conn);
186 }
187 return buf;
188}
189
190/*
191 * Release a buffer, if any, and try to wake up entities waiting in the buffer
192 * wait queue.
193 */
194static inline void h1_release_buf(struct h1c *h1c, struct buffer *bptr)
195{
196 if (bptr->size) {
197 b_free(bptr);
198 offer_buffers(h1c->buf_wait.target, tasks_run_queue);
199 }
200}
201
202static int h1_avail_streams(struct connection *conn)
203{
204 struct h1c *h1c = conn->mux_ctx;
205
206 return h1c->h1s ? 0 : 1;
207}
208
209
210/*****************************************************************/
211/* functions below are dedicated to the mux setup and management */
212/*****************************************************************/
Christopher Faulet47365272018-10-31 17:40:50 +0100213static struct conn_stream *h1s_new_cs(struct h1s *h1s)
214{
215 struct conn_stream *cs;
216
217 cs = cs_new(h1s->h1c->conn);
218 if (!cs)
219 goto err;
220 h1s->cs = cs;
221 cs->ctx = h1s;
222
223 if (h1s->flags & H1S_F_NOT_FIRST)
224 cs->flags |= CS_FL_NOT_FIRST;
225
226 if (stream_create_from_cs(cs) < 0)
227 goto err;
228 return cs;
229
230 err:
231 cs_free(cs);
232 h1s->cs = NULL;
233 return NULL;
234}
235
Christopher Fauletf2824e62018-10-01 12:12:37 +0200236static struct h1s *h1s_create(struct h1c *h1c, struct conn_stream *cs)
Christopher Faulet51dbc942018-09-13 09:05:15 +0200237{
238 struct h1s *h1s;
239
240 h1s = pool_alloc(pool_head_h1s);
241 if (!h1s)
Christopher Faulet47365272018-10-31 17:40:50 +0100242 goto fail;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200243
244 h1s->h1c = h1c;
245 h1c->h1s = h1s;
246
247 h1s->cs = NULL;
Christopher Faulet129817b2018-09-20 16:14:40 +0200248 h1s->flags = H1S_F_NONE;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200249
250 h1s->recv_wait = NULL;
251 h1s->send_wait = NULL;
Christopher Faulet129817b2018-09-20 16:14:40 +0200252
253 h1m_init_req(&h1s->req);
Christopher Faulet9768c262018-10-22 09:34:31 +0200254 h1s->req.flags |= H1_MF_NO_PHDR;
255
Christopher Faulet129817b2018-09-20 16:14:40 +0200256 h1m_init_res(&h1s->res);
Christopher Faulet9768c262018-10-22 09:34:31 +0200257 h1s->res.flags |= H1_MF_NO_PHDR;
Christopher Faulet129817b2018-09-20 16:14:40 +0200258
259 h1s->status = 0;
260 h1s->meth = HTTP_METH_OTHER;
261
Christopher Faulet47365272018-10-31 17:40:50 +0100262 if (h1c->flags & H1C_F_WAIT_NEXT_REQ)
263 h1s->flags |= H1S_F_NOT_FIRST;
264 h1c->flags &= ~H1C_F_WAIT_NEXT_REQ;
265
Christopher Faulet129817b2018-09-20 16:14:40 +0200266 if (!conn_is_back(h1c->conn)) {
267 if (h1c->px->options2 & PR_O2_REQBUG_OK)
268 h1s->req.err_pos = -1;
269 }
270 else {
271 if (h1c->px->options2 & PR_O2_RSPBUG_OK)
272 h1s->res.err_pos = -1;
273 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200274
Christopher Faulet539e0292018-11-19 10:40:09 +0100275 /* If a conn_stream already exists, attach it to this H1S. Otherwise we
276 * create a new one.
277 */
Christopher Fauletf2824e62018-10-01 12:12:37 +0200278 if (cs) {
Christopher Fauletfeb11742018-11-29 15:12:34 +0100279 h1s->csinfo.create_date = date;
280 h1s->csinfo.tv_create = now;
281 h1s->csinfo.t_handshake = 0;
282 h1s->csinfo.t_idle = -1;
283
Christopher Fauletf2824e62018-10-01 12:12:37 +0200284 cs->ctx = h1s;
285 h1s->cs = cs;
286 }
Christopher Faulet47365272018-10-31 17:40:50 +0100287 else {
Christopher Fauletfeb11742018-11-29 15:12:34 +0100288 struct session *sess = h1c->conn->owner;
289
290 h1s->csinfo.create_date = sess->accept_date;
291 h1s->csinfo.tv_create = sess->tv_accept;
292 h1s->csinfo.t_handshake = sess->t_handshake;
293 h1s->csinfo.t_idle = -1;
294
Christopher Faulet47365272018-10-31 17:40:50 +0100295 cs = h1s_new_cs(h1s);
296 if (!cs)
297 goto fail;
298 }
Christopher Faulet51dbc942018-09-13 09:05:15 +0200299 return h1s;
Christopher Faulet47365272018-10-31 17:40:50 +0100300
301 fail:
302 pool_free(pool_head_h1s, h1s);
303 return NULL;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200304}
305
306static void h1s_destroy(struct h1s *h1s)
307{
Christopher Fauletf2824e62018-10-01 12:12:37 +0200308 if (h1s) {
309 struct h1c *h1c = h1s->h1c;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200310
Christopher Fauletf2824e62018-10-01 12:12:37 +0200311 h1c->h1s = NULL;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200312
Christopher Fauletf2824e62018-10-01 12:12:37 +0200313 if (h1s->recv_wait != NULL)
314 h1s->recv_wait->wait_reason &= ~SUB_CAN_RECV;
315 if (h1s->send_wait != NULL)
316 h1s->send_wait->wait_reason &= ~SUB_CAN_SEND;
317
Christopher Faulet47365272018-10-31 17:40:50 +0100318 h1c->flags |= H1C_F_WAIT_NEXT_REQ;
319 if (h1s->flags & (H1S_F_REQ_ERROR|H1S_F_RES_ERROR))
320 h1c->flags |= H1C_F_CS_ERROR;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200321
Christopher Fauletf2824e62018-10-01 12:12:37 +0200322 cs_free(h1s->cs);
323 pool_free(pool_head_h1s, h1s);
324 }
Christopher Faulet51dbc942018-09-13 09:05:15 +0200325}
326
Christopher Fauletfeb11742018-11-29 15:12:34 +0100327static const struct cs_info *h1_get_cs_info(struct conn_stream *cs)
328{
329 struct h1s *h1s = cs->ctx;
330
331 if (h1s && !conn_is_back(cs->conn))
332 return &h1s->csinfo;
333 return NULL;
334}
335
Christopher Faulet51dbc942018-09-13 09:05:15 +0200336/*
337 * Initialize the mux once it's attached. It is expected that conn->mux_ctx
338 * points to the existing conn_stream (for outgoing connections) or NULL (for
339 * incoming ones). Returns < 0 on error.
340 */
341static int h1_init(struct connection *conn, struct proxy *proxy)
342{
Christopher Faulet51dbc942018-09-13 09:05:15 +0200343 struct h1c *h1c;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200344
345 h1c = pool_alloc(pool_head_h1c);
346 if (!h1c)
347 goto fail_h1c;
348 h1c->conn = conn;
349 h1c->px = proxy;
350
351 h1c->flags = H1C_F_NONE;
352 h1c->ibuf = BUF_NULL;
353 h1c->obuf = BUF_NULL;
354 h1c->h1s = NULL;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200355
Christopher Faulet51dbc942018-09-13 09:05:15 +0200356 LIST_INIT(&h1c->buf_wait.list);
357 h1c->wait_event.task = tasklet_new();
358 if (!h1c->wait_event.task)
359 goto fail;
360 h1c->wait_event.task->process = h1_io_cb;
361 h1c->wait_event.task->context = h1c;
362 h1c->wait_event.wait_reason = 0;
363
Christopher Faulet3b88b8d2018-10-26 17:36:03 +0200364 if (!(conn->flags & CO_FL_CONNECTED))
365 h1c->flags |= H1C_F_CS_WAIT_CONN;
366
Christopher Fauletf2824e62018-10-01 12:12:37 +0200367 /* Always Create a new H1S */
368 if (!h1s_create(h1c, conn->mux_ctx))
369 goto fail;
Christopher Faulet51dbc942018-09-13 09:05:15 +0200370
Christopher Faulet129817b2018-09-20 16:14:40 +0200371 conn->mux_ctx = h1c;
Christopher Faulet129817b2018-09-20 16:14:40 +0200372
Christopher Faulet51dbc942018-09-13 09:05:15 +0200373 /* Try to read, if nothing is available yet we'll just subscribe */
374 if (h1_recv(h1c))
375 h1_process(h1c);
376
377 /* mux->wake will be called soon to complete the operation */
378 return 0;
379
380 fail:
Christopher Faulet47365272018-10-31 17:40:50 +0100381 if (h1c->wait_event.task)
Christopher Faulet51dbc942018-09-13 09:05:15 +0200382 tasklet_free(h1c->wait_event.task);
383 pool_free(pool_head_h1c, h1c);
384 fail_h1c:
385 return -1;
386}
387
388
389/* release function for a connection. This one should be called to free all
390 * resources allocated to the mux.
391 */
392static void h1_release(struct connection *conn)
393{
394 struct h1c *h1c = conn->mux_ctx;
395
396 LIST_DEL(&conn->list);
397
398 if (h1c) {
399 if (!LIST_ISEMPTY(&h1c->buf_wait.list)) {
400 HA_SPIN_LOCK(BUF_WQ_LOCK, &buffer_wq_lock);
401 LIST_DEL(&h1c->buf_wait.list);
402 LIST_INIT(&h1c->buf_wait.list);
403 HA_SPIN_UNLOCK(BUF_WQ_LOCK, &buffer_wq_lock);
404 }
405
406 h1_release_buf(h1c, &h1c->ibuf);
407 h1_release_buf(h1c, &h1c->obuf);
408
Christopher Faulet51dbc942018-09-13 09:05:15 +0200409 if (h1c->wait_event.task)
410 tasklet_free(h1c->wait_event.task);
411
Christopher Fauletf2824e62018-10-01 12:12:37 +0200412 h1s_destroy(h1c->h1s);
Christopher Faulet51dbc942018-09-13 09:05:15 +0200413 if (h1c->wait_event.wait_reason != 0)
414 conn->xprt->unsubscribe(conn, h1c->wait_event.wait_reason,
415 &h1c->wait_event);
416 pool_free(pool_head_h1c, h1c);
417 }
418
419 conn->mux = NULL;
420 conn->mux_ctx = NULL;
421
422 conn_stop_tracking(conn);
423 conn_full_close(conn);
424 if (conn->destroy_cb)
425 conn->destroy_cb(conn);
426 conn_free(conn);
427}
428
429/******************************************************/
430/* functions below are for the H1 protocol processing */
431/******************************************************/
Christopher Faulet9768c262018-10-22 09:34:31 +0200432/* Parse the request version and set H1_MF_VER_11 on <h1m> if the version is
433 * greater or equal to 1.1
Christopher Fauletf2824e62018-10-01 12:12:37 +0200434 */
Christopher Faulet570d1612018-11-26 11:13:57 +0100435static void h1_parse_req_vsn(struct h1m *h1m, const struct htx_sl *sl)
Christopher Fauletf2824e62018-10-01 12:12:37 +0200436{
Christopher Faulet570d1612018-11-26 11:13:57 +0100437 const char *p = HTX_SL_REQ_VPTR(sl);
Christopher Faulet9768c262018-10-22 09:34:31 +0200438
Christopher Faulet570d1612018-11-26 11:13:57 +0100439 if ((HTX_SL_REQ_VLEN(sl) == 8) &&
Christopher Faulet9768c262018-10-22 09:34:31 +0200440 (*(p + 5) > '1' ||
441 (*(p + 5) == '1' && *(p + 7) >= '1')))
442 h1m->flags |= H1_MF_VER_11;
443}
Christopher Fauletf2824e62018-10-01 12:12:37 +0200444
Christopher Faulet9768c262018-10-22 09:34:31 +0200445/* Parse the response version and set H1_MF_VER_11 on <h1m> if the version is
446 * greater or equal to 1.1
447 */
Christopher Faulet570d1612018-11-26 11:13:57 +0100448static void h1_parse_res_vsn(struct h1m *h1m, const struct htx_sl *sl)
Christopher Faulet9768c262018-10-22 09:34:31 +0200449{
Christopher Faulet570d1612018-11-26 11:13:57 +0100450 const char *p = HTX_SL_RES_VPTR(sl);
Christopher Fauletf2824e62018-10-01 12:12:37 +0200451
Christopher Faulet570d1612018-11-26 11:13:57 +0100452 if ((HTX_SL_RES_VLEN(sl) == 8) &&
Christopher Faulet9768c262018-10-22 09:34:31 +0200453 (*(p + 5) > '1' ||
454 (*(p + 5) == '1' && *(p + 7) >= '1')))
455 h1m->flags |= H1_MF_VER_11;
456}
Christopher Fauletf2824e62018-10-01 12:12:37 +0200457
Christopher Faulet9768c262018-10-22 09:34:31 +0200458/*
459 * Check the validity of the request version. If the version is valid, it
460 * returns 1. Otherwise, it returns 0.
461 */
462static int h1_process_req_vsn(struct h1s *h1s, struct h1m *h1m, union h1_sl sl)
463{
464 struct h1c *h1c = h1s->h1c;
465
466 /* RFC7230#2.6 has enforced the format of the HTTP version string to be
467 * exactly one digit "." one digit. This check may be disabled using
468 * option accept-invalid-http-request.
469 */
470 if (!(h1c->px->options2 & PR_O2_REQBUG_OK)) {
471 if (sl.rq.v.len != 8)
472 return 0;
473
474 if (*(sl.rq.v.ptr + 4) != '/' ||
475 !isdigit((unsigned char)*(sl.rq.v.ptr + 5)) ||
476 *(sl.rq.v.ptr + 6) != '.' ||
477 !isdigit((unsigned char)*(sl.rq.v.ptr + 7)))
478 return 0;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200479 }
Christopher Faulet9768c262018-10-22 09:34:31 +0200480 else if (!sl.rq.v.len) {
481 /* try to convert HTTP/0.9 requests to HTTP/1.0 */
Christopher Fauletf2824e62018-10-01 12:12:37 +0200482
Christopher Faulet9768c262018-10-22 09:34:31 +0200483 /* RFC 1945 allows only GET for HTTP/0.9 requests */
484 if (sl.rq.meth != HTTP_METH_GET)
485 return 0;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200486
Christopher Faulet9768c262018-10-22 09:34:31 +0200487 /* HTTP/0.9 requests *must* have a request URI, per RFC 1945 */
488 if (!sl.rq.u.len)
489 return 0;
490
491 /* Add HTTP version */
492 sl.rq.v = ist("HTTP/1.0");
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100493 return 1;
Christopher Faulet9768c262018-10-22 09:34:31 +0200494 }
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100495
496 if ((sl.rq.v.len == 8) &&
497 ((*(sl.rq.v.ptr + 5) > '1') ||
498 ((*(sl.rq.v.ptr + 5) == '1') && (*(sl.rq.v.ptr + 7) >= '1'))))
499 h1m->flags |= H1_MF_VER_11;
Christopher Faulet9768c262018-10-22 09:34:31 +0200500 return 1;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200501}
502
Christopher Faulet9768c262018-10-22 09:34:31 +0200503/*
504 * Check the validity of the response version. If the version is valid, it
505 * returns 1. Otherwise, it returns 0.
Christopher Fauletf2824e62018-10-01 12:12:37 +0200506 */
Christopher Faulet9768c262018-10-22 09:34:31 +0200507static int h1_process_res_vsn(struct h1s *h1s, struct h1m *h1m, union h1_sl sl)
Christopher Fauletf2824e62018-10-01 12:12:37 +0200508{
Christopher Faulet9768c262018-10-22 09:34:31 +0200509 struct h1c *h1c = h1s->h1c;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200510
Christopher Faulet9768c262018-10-22 09:34:31 +0200511 /* RFC7230#2.6 has enforced the format of the HTTP version string to be
512 * exactly one digit "." one digit. This check may be disabled using
513 * option accept-invalid-http-request.
514 */
515 if (!(h1c->px->options2 & PR_O2_RSPBUG_OK)) {
516 if (sl.st.v.len != 8)
517 return 0;
518
519 if (*(sl.st.v.ptr + 4) != '/' ||
520 !isdigit((unsigned char)*(sl.st.v.ptr + 5)) ||
521 *(sl.st.v.ptr + 6) != '.' ||
522 !isdigit((unsigned char)*(sl.st.v.ptr + 7)))
523 return 0;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200524 }
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100525
526 if ((sl.st.v.len == 8) &&
527 ((*(sl.st.v.ptr + 5) > '1') ||
528 ((*(sl.st.v.ptr + 5) == '1') && (*(sl.st.v.ptr + 7) >= '1'))))
529 h1m->flags |= H1_MF_VER_11;
530
Christopher Faulet9768c262018-10-22 09:34:31 +0200531 return 1;
532}
533/* Remove all "Connection:" headers from the HTX message <htx> */
534static void h1_remove_conn_hdrs(struct h1m *h1m, struct htx *htx)
535{
536 struct ist hdr = {.ptr = "Connection", .len = 10};
537 struct http_hdr_ctx ctx;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200538
Christopher Faulet9768c262018-10-22 09:34:31 +0200539 while (http_find_header(htx, hdr, &ctx, 1))
540 http_remove_header(htx, &ctx);
Christopher Fauletf2824e62018-10-01 12:12:37 +0200541
Christopher Faulet9768c262018-10-22 09:34:31 +0200542 h1m->flags &= ~(H1_MF_CONN_KAL|H1_MF_CONN_CLO);
543}
Christopher Fauletf2824e62018-10-01 12:12:37 +0200544
Christopher Faulet9768c262018-10-22 09:34:31 +0200545/* Add a "Connection:" header with the value <value> into the HTX message
546 * <htx>.
547 */
548static void h1_add_conn_hdr(struct h1m *h1m, struct htx *htx, struct ist value)
549{
550 struct ist hdr = {.ptr = "Connection", .len = 10};
Christopher Fauletf2824e62018-10-01 12:12:37 +0200551
Christopher Faulet9768c262018-10-22 09:34:31 +0200552 http_add_header(htx, hdr, value);
Christopher Fauletf2824e62018-10-01 12:12:37 +0200553}
554
555/* Deduce the connection mode of the client connection, depending on the
556 * configuration and the H1 message flags. This function is called twice, the
557 * first time when the request is parsed and the second time when the response
558 * is parsed.
559 */
560static void h1_set_cli_conn_mode(struct h1s *h1s, struct h1m *h1m)
561{
562 struct proxy *fe = h1s->h1c->px;
563 int flag = H1S_F_WANT_KAL; /* For client connection: server-close == keepalive */
564
565 /* Tunnel mode can only by set on the frontend */
566 if ((fe->options & PR_O_HTTP_MODE) == PR_O_HTTP_TUN)
567 flag = H1S_F_WANT_TUN;
568 else if ((fe->options & PR_O_HTTP_MODE) == PR_O_HTTP_CLO)
569 flag = H1S_F_WANT_CLO;
570
571 /* flags order: CLO > SCL > TUN > KAL */
572 if ((h1s->flags & H1S_F_WANT_MSK) < flag)
573 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | flag;
574
575 if (h1m->flags & H1_MF_RESP) {
576 /* Either we've established an explicit tunnel, or we're
577 * switching the protocol. In both cases, we're very unlikely to
578 * understand the next protocols. We have to switch to tunnel
579 * mode, so that we transfer the request and responses then let
580 * this protocol pass unmodified. When we later implement
581 * specific parsers for such protocols, we'll want to check the
582 * Upgrade header which contains information about that protocol
583 * for responses with status 101 (eg: see RFC2817 about TLS).
584 */
585 if ((h1s->meth == HTTP_METH_CONNECT && h1s->status == 200) ||
586 h1s->status == 101)
587 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_TUN;
Christopher Fauletbd44ca62018-11-29 09:55:22 +0100588 else if (!(h1m->flags & H1_MF_XFER_LEN) || /* no length known => close */
589 (h1m->flags & H1_MF_CONN_CLO && h1s->req.state != H1_MSG_DONE)) /*explicit close and unfinished request */
Christopher Fauletf2824e62018-10-01 12:12:37 +0200590 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
591 }
592 else {
593 if (h1s->flags & H1S_F_WANT_KAL &&
594 (!(h1m->flags & (H1_MF_VER_11|H1_MF_CONN_KAL)) || /* no KA in HTTP/1.0 */
595 h1m->flags & H1_MF_CONN_CLO)) /* explicit close */
596 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
597 }
598
599 /* If KAL, check if the frontend is stopping. If yes, switch in CLO mode */
600 if (h1s->flags & H1S_F_WANT_KAL && fe->state == PR_STSTOPPED)
601 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
602}
603
604/* Deduce the connection mode of the client connection, depending on the
605 * configuration and the H1 message flags. This function is called twice, the
606 * first time when the request is parsed and the second time when the response
607 * is parsed.
608 */
609static void h1_set_srv_conn_mode(struct h1s *h1s, struct h1m *h1m)
610{
Christopher Fauleta1692f52018-11-22 10:19:50 +0100611 struct h1c *h1c = h1s->h1c;
612 struct session *sess = h1c->conn->owner;
613 struct proxy *fe = sess->fe;
614 struct proxy *be = h1c->px;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200615 int flag = H1S_F_WANT_KAL;
616
617 /* Tunnel mode can only by set on the frontend */
618 if ((fe->options & PR_O_HTTP_MODE) == PR_O_HTTP_TUN)
619 flag = H1S_F_WANT_TUN;
620
621 /* For the server connection: server-close == httpclose */
622 if ((fe->options & PR_O_HTTP_MODE) == PR_O_HTTP_SCL ||
623 (be->options & PR_O_HTTP_MODE) == PR_O_HTTP_SCL ||
624 (fe->options & PR_O_HTTP_MODE) == PR_O_HTTP_CLO ||
625 (be->options & PR_O_HTTP_MODE) == PR_O_HTTP_CLO)
626 flag = H1S_F_WANT_CLO;
627
628 /* flags order: CLO > SCL > TUN > KAL */
629 if ((h1s->flags & H1S_F_WANT_MSK) < flag)
630 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | flag;
631
632 if (h1m->flags & H1_MF_RESP) {
633 /* Either we've established an explicit tunnel, or we're
634 * switching the protocol. In both cases, we're very unlikely to
635 * understand the next protocols. We have to switch to tunnel
636 * mode, so that we transfer the request and responses then let
637 * this protocol pass unmodified. When we later implement
638 * specific parsers for such protocols, we'll want to check the
639 * Upgrade header which contains information about that protocol
640 * for responses with status 101 (eg: see RFC2817 about TLS).
641 */
642 if ((h1s->meth == HTTP_METH_CONNECT && h1s->status == 200) ||
643 h1s->status == 101)
644 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_TUN;
645 else if (!(h1m->flags & H1_MF_XFER_LEN)) /* no length known => close */
646 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
647 else if (h1s->flags & H1S_F_WANT_KAL &&
648 (!(h1m->flags & (H1_MF_VER_11|H1_MF_CONN_KAL)) || /* no KA in HTTP/1.0 */
649 h1m->flags & H1_MF_CONN_CLO)) /* explicit close */
650 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
651 }
652
653 /* If KAL, check if the backend is stopping. If yes, switch in CLO mode */
654 if (h1s->flags & H1S_F_WANT_KAL && be->state == PR_STSTOPPED)
655 h1s->flags = (h1s->flags & ~H1S_F_WANT_MSK) | H1S_F_WANT_CLO;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200656}
657
Christopher Faulet9768c262018-10-22 09:34:31 +0200658static void h1_update_req_conn_hdr(struct h1s *h1s, struct h1m *h1m,
659 struct htx *htx, struct ist *conn_val)
Christopher Fauletf2824e62018-10-01 12:12:37 +0200660{
661 struct proxy *px = h1s->h1c->px;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200662
663 /* Don't update "Connection:" header in TUNNEL mode or if "Upgrage"
664 * token is found
665 */
666 if (h1s->flags & H1S_F_WANT_TUN || h1m->flags & H1_MF_CONN_UPG)
Christopher Faulet9768c262018-10-22 09:34:31 +0200667 return;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200668
669 if (h1s->flags & H1S_F_WANT_KAL || px->options2 & PR_O2_FAKE_KA) {
Christopher Faulet9768c262018-10-22 09:34:31 +0200670 if (h1m->flags & H1_MF_CONN_CLO) {
671 if (conn_val)
672 *conn_val = ist("");
673 if (htx)
674 h1_remove_conn_hdrs(h1m, htx);
675 }
676 if (!(h1m->flags & (H1_MF_VER_11|H1_MF_CONN_KAL))) {
677 if (conn_val)
678 *conn_val = ist("keep-alive");
679 if (htx)
680 h1_add_conn_hdr(h1m, htx, ist("keep-alive"));
681 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200682 }
683 else { /* H1S_F_WANT_CLO && !PR_O2_FAKE_KA */
Christopher Faulet9768c262018-10-22 09:34:31 +0200684 if (h1m->flags & H1_MF_CONN_KAL) {
685 if (conn_val)
686 *conn_val = ist("");
687 if (htx)
688 h1_remove_conn_hdrs(h1m, htx);
689 }
690 if ((h1m->flags & (H1_MF_VER_11|H1_MF_CONN_CLO)) == H1_MF_VER_11) {
691 if (conn_val)
692 *conn_val = ist("close");
693 if (htx)
694 h1_add_conn_hdr(h1m, htx, ist("close"));
695 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200696 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200697}
698
Christopher Faulet9768c262018-10-22 09:34:31 +0200699static void h1_update_res_conn_hdr(struct h1s *h1s, struct h1m *h1m,
700 struct htx *htx, struct ist *conn_val)
Christopher Fauletf2824e62018-10-01 12:12:37 +0200701{
Christopher Fauletf2824e62018-10-01 12:12:37 +0200702 /* Don't update "Connection:" header in TUNNEL mode or if "Upgrage"
703 * token is found
704 */
705 if (h1s->flags & H1S_F_WANT_TUN || h1m->flags & H1_MF_CONN_UPG)
Christopher Faulet9768c262018-10-22 09:34:31 +0200706 return;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200707
708 if (h1s->flags & H1S_F_WANT_KAL) {
Christopher Faulet9768c262018-10-22 09:34:31 +0200709 if (h1m->flags & H1_MF_CONN_CLO) {
710 if (conn_val)
711 *conn_val = ist("");
712 if (htx)
713 h1_remove_conn_hdrs(h1m, htx);
714 }
715 if (!(h1m->flags & (H1_MF_VER_11|H1_MF_CONN_KAL))) {
716 if (conn_val)
717 *conn_val = ist("keep-alive");
718 if (htx)
719 h1_add_conn_hdr(h1m, htx, ist("keep-alive"));
720 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200721 }
722 else { /* H1S_F_WANT_CLO */
Christopher Faulet9768c262018-10-22 09:34:31 +0200723 if (h1m->flags & H1_MF_CONN_KAL) {
724 if (conn_val)
725 *conn_val = ist("");
726 if (htx)
727 h1_remove_conn_hdrs(h1m, htx);
728 }
729 if ((h1m->flags & (H1_MF_VER_11|H1_MF_CONN_CLO)) == H1_MF_VER_11) {
730 if (conn_val)
731 *conn_val = ist("close");
732 if (htx)
733 h1_add_conn_hdr(h1m, htx, ist("close"));
734 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200735 }
Christopher Faulet9768c262018-10-22 09:34:31 +0200736}
Christopher Fauletf2824e62018-10-01 12:12:37 +0200737
Christopher Faulet9768c262018-10-22 09:34:31 +0200738/* Set the right connection mode and update "Connection:" header if
739 * needed. <htx> and <conn_val> can be NULL. When <htx> is not NULL, the HTX
740 * message is updated accordingly. When <conn_val> is not NULL, it is set with
741 * the new header value.
742 */
743static void h1_process_conn_mode(struct h1s *h1s, struct h1m *h1m,
744 struct htx *htx, struct ist *conn_val)
745{
746 if (!conn_is_back(h1s->h1c->conn)) {
747 h1_set_cli_conn_mode(h1s, h1m);
748 if (h1m->flags & H1_MF_RESP)
749 h1_update_res_conn_hdr(h1s, h1m, htx, conn_val);
750 }
751 else {
752 h1_set_srv_conn_mode(h1s, h1m);
753 if (!(h1m->flags & H1_MF_RESP))
754 h1_update_req_conn_hdr(h1s, h1m, htx, conn_val);
755 }
Christopher Fauletf2824e62018-10-01 12:12:37 +0200756}
757
Christopher Faulet129817b2018-09-20 16:14:40 +0200758/*
759 * Parse HTTP/1 headers. It returns the number of bytes parsed if > 0, or 0 if
Christopher Fauletf2824e62018-10-01 12:12:37 +0200760 * it couldn't proceed. Parsing errors are reported by setting H1S_F_*_ERROR
761 * flag and filling h1s->err_pos and h1s->err_state fields. This functions is
Christopher Faulet129817b2018-09-20 16:14:40 +0200762 * responsibile to update the parser state <h1m>.
763 */
Christopher Faulet9768c262018-10-22 09:34:31 +0200764static size_t h1_process_headers(struct h1s *h1s, struct h1m *h1m, struct htx *htx,
Christopher Fauletf2824e62018-10-01 12:12:37 +0200765 struct buffer *buf, size_t *ofs, size_t max)
Christopher Faulet129817b2018-09-20 16:14:40 +0200766{
767 struct http_hdr hdrs[MAX_HTTP_HDR];
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100768 union h1_sl h1sl;
769 unsigned int flags = HTX_SL_F_NONE;
Christopher Faulet129817b2018-09-20 16:14:40 +0200770 int ret = 0;
771
Christopher Fauletd44ad5b2018-11-19 21:52:12 +0100772 if (!max)
773 goto end;
774
Christopher Faulet129817b2018-09-20 16:14:40 +0200775 /* Realing input buffer if necessary */
776 if (b_head(buf) + b_data(buf) > b_wrap(buf))
777 b_slow_realign(buf, trash.area, 0);
778
Christopher Fauletf2824e62018-10-01 12:12:37 +0200779 ret = h1_headers_to_hdr_list(b_peek(buf, *ofs), b_peek(buf, *ofs) + max,
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100780 hdrs, sizeof(hdrs)/sizeof(hdrs[0]), h1m, &h1sl);
Christopher Faulet129817b2018-09-20 16:14:40 +0200781 if (ret <= 0) {
782 /* Incomplete or invalid message. If the buffer is full, it's an
783 * error because headers are too large to be handled by the
784 * parser. */
Christopher Fauletf2824e62018-10-01 12:12:37 +0200785 if (ret < 0 || (!ret && b_full(buf)))
786 goto error;
Christopher Faulet129817b2018-09-20 16:14:40 +0200787 goto end;
788 }
789
790 /* messages headers fully parsed, do some checks to prepare the body
791 * parsing.
792 */
793
794 /* Be sure to keep some space to do headers rewritting */
Christopher Fauletf2824e62018-10-01 12:12:37 +0200795 if (ret > (b_size(buf) - global.tune.maxrewrite))
796 goto error;
Christopher Faulet129817b2018-09-20 16:14:40 +0200797
Christopher Faulet9768c262018-10-22 09:34:31 +0200798 /* Save the request's method or the response's status, check if the body
799 * length is known and check the VSN validity */
Christopher Faulet129817b2018-09-20 16:14:40 +0200800 if (!(h1m->flags & H1_MF_RESP)) {
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100801 h1s->meth = h1sl.rq.meth;
Christopher Faulet9768c262018-10-22 09:34:31 +0200802
Christopher Faulet129817b2018-09-20 16:14:40 +0200803 /* Request have always a known length */
804 h1m->flags |= H1_MF_XFER_LEN;
805 if (!(h1m->flags & H1_MF_CHNK) && !h1m->body_len)
806 h1m->state = H1_MSG_DONE;
Christopher Faulet9768c262018-10-22 09:34:31 +0200807
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100808 if (!h1_process_req_vsn(h1s, h1m, h1sl)) {
809 h1m->err_pos = h1sl.rq.v.ptr - b_head(buf);
Christopher Faulet9768c262018-10-22 09:34:31 +0200810 h1m->err_state = h1m->state;
811 goto vsn_error;
812 }
Christopher Faulet129817b2018-09-20 16:14:40 +0200813 }
814 else {
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100815 h1s->status = h1sl.st.status;
Christopher Faulet129817b2018-09-20 16:14:40 +0200816
817 if ((h1s->meth == HTTP_METH_HEAD) ||
818 (h1s->status >= 100 && h1s->status < 200) ||
819 (h1s->status == 204) || (h1s->status == 304) ||
820 (h1s->meth == HTTP_METH_CONNECT && h1s->status == 200)) {
821 h1m->flags &= ~(H1_MF_CLEN|H1_MF_CHNK);
822 h1m->flags |= H1_MF_XFER_LEN;
823 h1m->curr_len = h1m->body_len = 0;
824 h1m->state = H1_MSG_DONE;
825 }
826 else if (h1m->flags & (H1_MF_CLEN|H1_MF_CHNK)) {
827 h1m->flags |= H1_MF_XFER_LEN;
828 if ((h1m->flags & H1_MF_CLEN) && !h1m->body_len)
829 h1m->state = H1_MSG_DONE;
830 }
831 else
832 h1m->state = H1_MSG_TUNNEL;
Christopher Faulet9768c262018-10-22 09:34:31 +0200833
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100834 if (!h1_process_res_vsn(h1s, h1m, h1sl)) {
835 h1m->err_pos = h1sl.st.v.ptr - b_head(buf);
Christopher Faulet9768c262018-10-22 09:34:31 +0200836 h1m->err_state = h1m->state;
837 goto vsn_error;
838 }
Christopher Faulet129817b2018-09-20 16:14:40 +0200839 }
840
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100841 /* Set HTX start-line flags */
842 if (h1m->flags & H1_MF_VER_11)
843 flags |= HTX_SL_F_VER_11;
844 if (h1m->flags & H1_MF_XFER_ENC)
845 flags |= HTX_SL_F_XFER_ENC;
846 if (h1m->flags & H1_MF_XFER_LEN) {
847 flags |= HTX_SL_F_XFER_LEN;
848 if (h1m->flags & H1_MF_CHNK)
849 flags |= HTX_SL_F_CHNK;
850 else if (h1m->flags & H1_MF_CLEN)
851 flags |= HTX_SL_F_CLEN;
Christopher Fauletb2db4fa2018-11-27 16:51:09 +0100852 if (h1m->state == H1_MSG_DONE)
853 flags |= HTX_SL_F_BODYLESS;
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100854 }
855
Christopher Faulet9768c262018-10-22 09:34:31 +0200856 if (!(h1m->flags & H1_MF_RESP)) {
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100857 struct htx_sl *sl;
858
859 sl = htx_add_stline(htx, HTX_BLK_REQ_SL, flags, h1sl.rq.m, h1sl.rq.u, h1sl.rq.v);
860 if (!sl || !htx_add_all_headers(htx, hdrs))
Christopher Faulet9768c262018-10-22 09:34:31 +0200861 goto error;
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100862 sl->info.req.meth = h1s->meth;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200863 }
864 else {
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100865 struct htx_sl *sl;
866
867 flags |= HTX_SL_F_IS_RESP;
868 sl = htx_add_stline(htx, HTX_BLK_RES_SL, flags, h1sl.st.v, h1sl.st.c, h1sl.st.r);
869 if (!sl || !htx_add_all_headers(htx, hdrs))
Christopher Faulet9768c262018-10-22 09:34:31 +0200870 goto error;
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100871 sl->info.res.status = h1s->status;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200872 }
Christopher Fauletf1ba18d2018-11-26 21:37:08 +0100873
Christopher Faulet9768c262018-10-22 09:34:31 +0200874 if (h1m->state == H1_MSG_DONE)
875 if (!htx_add_endof(htx, HTX_BLK_EOM))
876 goto error;
877
878 h1_process_conn_mode(h1s, h1m, htx, NULL);
879
880 /* If body length cannot be determined, set htx->extra to
881 * ULLONG_MAX. This value is impossible in other cases.
882 */
883 htx->extra = ((h1m->flags & H1_MF_XFER_LEN) ? h1m->curr_len : ULLONG_MAX);
884
885 /* Recheck there is enough space to do headers rewritting */
886 if (htx_used_space(htx) > b_size(buf) - global.tune.maxrewrite)
887 goto error;
888
889 *ofs += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +0200890 end:
891 return ret;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200892
893 error:
Christopher Fauletf2824e62018-10-01 12:12:37 +0200894 h1m->err_state = h1m->state;
895 h1m->err_pos = h1m->next;
Christopher Faulet9768c262018-10-22 09:34:31 +0200896 vsn_error:
897 h1s->flags |= (!(h1m->flags & H1_MF_RESP) ? H1S_F_REQ_ERROR : H1S_F_RES_ERROR);
Christopher Fauletf2824e62018-10-01 12:12:37 +0200898 ret = 0;
899 goto end;
Christopher Faulet129817b2018-09-20 16:14:40 +0200900}
901
902/*
Christopher Fauletf2824e62018-10-01 12:12:37 +0200903 * Parse HTTP/1 body. It returns the number of bytes parsed if > 0, or 0 if it
904 * couldn't proceed. Parsing errors are reported by setting H1S_F_*_ERROR flag
Christopher Faulet129817b2018-09-20 16:14:40 +0200905 * and filling h1s->err_pos and h1s->err_state fields. This functions is
906 * responsibile to update the parser state <h1m>.
907 */
Christopher Faulet9768c262018-10-22 09:34:31 +0200908static size_t h1_process_data(struct h1s *h1s, struct h1m *h1m, struct htx *htx,
Christopher Fauletf2824e62018-10-01 12:12:37 +0200909 struct buffer *buf, size_t *ofs, size_t max)
Christopher Faulet129817b2018-09-20 16:14:40 +0200910{
Christopher Faulet9768c262018-10-22 09:34:31 +0200911 uint32_t data_space = htx_free_data_space(htx);
Christopher Faulet129817b2018-09-20 16:14:40 +0200912 size_t total = 0;
913 int ret = 0;
914
915 if (h1m->flags & H1_MF_XFER_LEN) {
916 if (h1m->flags & H1_MF_CLEN) {
917 /* content-length: read only h2m->body_len */
918 ret = max;
Christopher Faulet9768c262018-10-22 09:34:31 +0200919 if (ret > data_space)
920 ret = data_space;
Christopher Faulet129817b2018-09-20 16:14:40 +0200921 if ((uint64_t)ret > h1m->curr_len)
922 ret = h1m->curr_len;
Christopher Faulet9768c262018-10-22 09:34:31 +0200923 if (ret > b_contig_data(buf, *ofs))
924 ret = b_contig_data(buf, *ofs);
925 if (ret) {
926 if (!htx_add_data(htx, ist2(b_peek(buf, *ofs), ret)))
927 goto end;
928 h1m->curr_len -= ret;
929 *ofs += ret;
930 total += ret;
931 }
932
933 if (!h1m->curr_len) {
934 if (!htx_add_endof(htx, HTX_BLK_EOM))
935 goto end;
Christopher Faulet129817b2018-09-20 16:14:40 +0200936 h1m->state = H1_MSG_DONE;
Christopher Faulet9768c262018-10-22 09:34:31 +0200937 }
Christopher Faulet129817b2018-09-20 16:14:40 +0200938 }
939 else if (h1m->flags & H1_MF_CHNK) {
940 new_chunk:
941 /* te:chunked : parse chunks */
942 if (h1m->state == H1_MSG_CHUNK_CRLF) {
Christopher Fauletf2824e62018-10-01 12:12:37 +0200943 ret = h1_skip_chunk_crlf(buf, *ofs, *ofs + max);
Christopher Faulet129817b2018-09-20 16:14:40 +0200944 if (ret <= 0)
945 goto end;
Christopher Faulet9768c262018-10-22 09:34:31 +0200946 h1m->state = H1_MSG_CHUNK_SIZE;
947
Christopher Faulet129817b2018-09-20 16:14:40 +0200948 max -= ret;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200949 *ofs += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +0200950 total += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +0200951 }
952
953 if (h1m->state == H1_MSG_CHUNK_SIZE) {
954 unsigned int chksz;
955
Christopher Fauletf2824e62018-10-01 12:12:37 +0200956 ret = h1_parse_chunk_size(buf, *ofs, *ofs + max, &chksz);
Christopher Faulet129817b2018-09-20 16:14:40 +0200957 if (ret <= 0)
958 goto end;
Christopher Faulet9768c262018-10-22 09:34:31 +0200959 if (!chksz) {
960 if (!htx_add_endof(htx, HTX_BLK_EOD))
961 goto end;
Christopher Faulet17276482018-11-22 11:44:35 +0100962 h1s->flags |= H1S_F_HAVE_EOD;
Christopher Faulet9768c262018-10-22 09:34:31 +0200963 h1m->state = H1_MSG_TRAILERS;
964 }
965 else
966 h1m->state = H1_MSG_DATA;
967
Christopher Faulet129817b2018-09-20 16:14:40 +0200968 h1m->curr_len = chksz;
969 h1m->body_len += chksz;
970 max -= ret;
Christopher Fauletf2824e62018-10-01 12:12:37 +0200971 *ofs += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +0200972 total += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +0200973 }
974
975 if (h1m->state == H1_MSG_DATA) {
976 ret = max;
Christopher Faulet9768c262018-10-22 09:34:31 +0200977 if (ret > data_space)
978 ret = data_space;
Christopher Faulet129817b2018-09-20 16:14:40 +0200979 if ((uint64_t)ret > h1m->curr_len)
980 ret = h1m->curr_len;
Christopher Faulet9768c262018-10-22 09:34:31 +0200981 if (ret > b_contig_data(buf, *ofs))
982 ret = b_contig_data(buf, *ofs);
983 if (ret) {
984 if (!htx_add_data(htx, ist2(b_peek(buf, *ofs), ret)))
985 goto end;
986 h1m->curr_len -= ret;
987 max -= ret;
988 *ofs += ret;
989 total += ret;
990 }
991 if (!h1m->curr_len) {
992 h1m->state = H1_MSG_CHUNK_CRLF;
993 goto new_chunk;
994 }
995 goto end;
Christopher Faulet129817b2018-09-20 16:14:40 +0200996 }
997
998 if (h1m->state == H1_MSG_TRAILERS) {
Christopher Faulet17276482018-11-22 11:44:35 +0100999 /* Trailers were alread parsed, only the EOM
1000 * need to be added */
1001 if (h1s->flags & H1S_F_HAVE_TLR)
1002 goto skip_tlr_parsing;
1003
Christopher Fauletf2824e62018-10-01 12:12:37 +02001004 ret = h1_measure_trailers(buf, *ofs, *ofs + max);
Christopher Faulet9768c262018-10-22 09:34:31 +02001005 if (ret > data_space)
1006 ret = (htx_is_empty(htx) ? -1 : 0);
Christopher Faulet129817b2018-09-20 16:14:40 +02001007 if (ret <= 0)
1008 goto end;
Christopher Faulet9768c262018-10-22 09:34:31 +02001009
1010 /* Realing input buffer if tailers wrap. For now
1011 * this is a workaroung. Because trailers are
1012 * not split on CRLF, like headers, there is no
1013 * way to know where to split it when trailers
1014 * wrap. This is a limitation of
1015 * h1_measure_trailers.
1016 */
1017 if (b_peek(buf, *ofs) > b_peek(buf, *ofs + ret))
1018 b_slow_realign(buf, trash.area, 0);
1019
1020 if (!htx_add_trailer(htx, ist2(b_peek(buf, *ofs), ret)))
1021 goto end;
Christopher Faulet17276482018-11-22 11:44:35 +01001022 h1s->flags |= H1S_F_HAVE_TLR;
Christopher Faulet129817b2018-09-20 16:14:40 +02001023 max -= ret;
Christopher Fauletf2824e62018-10-01 12:12:37 +02001024 *ofs += ret;
Christopher Faulet129817b2018-09-20 16:14:40 +02001025 total += ret;
Christopher Faulet9768c262018-10-22 09:34:31 +02001026
Christopher Faulet17276482018-11-22 11:44:35 +01001027 skip_tlr_parsing:
Christopher Faulet9768c262018-10-22 09:34:31 +02001028 if (!htx_add_endof(htx, HTX_BLK_EOM))
1029 goto end;
Christopher Faulet129817b2018-09-20 16:14:40 +02001030 h1m->state = H1_MSG_DONE;
1031 }
1032 }
1033 else {
1034 /* XFER_LEN is set but not CLEN nor CHNK, it means there
1035 * is no body. Switch the message in DONE state
1036 */
Christopher Faulet9768c262018-10-22 09:34:31 +02001037 if (!htx_add_endof(htx, HTX_BLK_EOM))
1038 goto end;
Christopher Faulet129817b2018-09-20 16:14:40 +02001039 h1m->state = H1_MSG_DONE;
1040 }
1041 }
1042 else {
1043 /* no content length, read till SHUTW */
Christopher Faulet9768c262018-10-22 09:34:31 +02001044 ret = max;
1045 if (ret > data_space)
1046 ret = data_space;
1047 if (ret > b_contig_data(buf, *ofs))
1048 ret = b_contig_data(buf, *ofs);
1049 if (ret) {
1050 if (!htx_add_data(htx, ist2(b_peek(buf, *ofs), ret)))
1051 goto end;
1052
1053 *ofs += max;
1054 total = max;
1055 }
Christopher Faulet129817b2018-09-20 16:14:40 +02001056 }
1057
1058 end:
1059 if (ret < 0) {
Christopher Fauletf2824e62018-10-01 12:12:37 +02001060 h1s->flags |= (!(h1m->flags & H1_MF_RESP) ? H1S_F_REQ_ERROR : H1S_F_RES_ERROR);
Christopher Faulet129817b2018-09-20 16:14:40 +02001061 h1m->err_state = h1m->state;
Christopher Fauletf2824e62018-10-01 12:12:37 +02001062 h1m->err_pos = *ofs + max + ret;
Christopher Faulet129817b2018-09-20 16:14:40 +02001063 return 0;
1064 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001065 /* update htx->extra, only when the body length is known */
1066 if (h1m->flags & H1_MF_XFER_LEN)
1067 htx->extra = h1m->curr_len;
Christopher Faulet129817b2018-09-20 16:14:40 +02001068 return total;
1069}
1070
1071/*
1072 * Synchronize the request and the response before reseting them. Except for 1xx
1073 * responses, we wait that the request and the response are in DONE state and
1074 * that all data are forwarded for both. For 1xx responses, only the response is
1075 * reset, waiting the final one. Many 1xx messages can be sent.
1076 */
1077static void h1_sync_messages(struct h1c *h1c)
1078{
Christopher Fauletf2824e62018-10-01 12:12:37 +02001079 struct h1s *h1s = h1c->h1s;
1080
1081 if (!h1s)
Christopher Faulet129817b2018-09-20 16:14:40 +02001082 return;
1083
Christopher Fauletf2824e62018-10-01 12:12:37 +02001084 if (h1s->res.state == H1_MSG_DONE &&
1085 (h1s->status < 200 && (h1s->status == 100 || h1s->status >= 102)) &&
Christopher Faulet539e0292018-11-19 10:40:09 +01001086 (conn_is_back(h1c->conn) || !b_data(&h1c->obuf))) {
Christopher Faulet129817b2018-09-20 16:14:40 +02001087 /* For 100-Continue response or any other informational 1xx
1088 * response which is non-final, don't reset the request, the
1089 * transaction is not finished. We take care the response was
1090 * transferred before.
1091 */
Christopher Fauletf2824e62018-10-01 12:12:37 +02001092 h1m_init_res(&h1s->res);
Christopher Faulet9768c262018-10-22 09:34:31 +02001093 h1s->res.flags |= H1_MF_NO_PHDR;
Christopher Faulet129817b2018-09-20 16:14:40 +02001094 }
Christopher Faulet539e0292018-11-19 10:40:09 +01001095 else if (!b_data(&h1c->obuf) &&
Christopher Fauletf2824e62018-10-01 12:12:37 +02001096 h1s->req.state == H1_MSG_DONE && h1s->res.state == H1_MSG_DONE) {
1097 if (h1s->flags & H1S_F_WANT_TUN) {
Christopher Faulet9768c262018-10-22 09:34:31 +02001098 h1m_init_req(&h1s->req);
1099 h1m_init_res(&h1s->res);
Christopher Fauletf2824e62018-10-01 12:12:37 +02001100 h1s->req.state = H1_MSG_TUNNEL;
1101 h1s->res.state = H1_MSG_TUNNEL;
1102 }
Christopher Faulet129817b2018-09-20 16:14:40 +02001103 }
1104}
1105
1106/*
1107 * Process incoming data. It parses data and transfer them from h1c->ibuf into
Christopher Faulet539e0292018-11-19 10:40:09 +01001108 * <buf>. It returns the number of bytes parsed and transferred if > 0, or 0 if
1109 * it couldn't proceed.
Christopher Faulet129817b2018-09-20 16:14:40 +02001110 */
Christopher Faulet539e0292018-11-19 10:40:09 +01001111static size_t h1_process_input(struct h1c *h1c, struct buffer *buf, int flags)
Christopher Faulet51dbc942018-09-13 09:05:15 +02001112{
Christopher Faulet539e0292018-11-19 10:40:09 +01001113 struct h1s *h1s = h1c->h1s;
Christopher Faulet129817b2018-09-20 16:14:40 +02001114 struct h1m *h1m;
Christopher Faulet9768c262018-10-22 09:34:31 +02001115 struct htx *htx;
Christopher Faulet129817b2018-09-20 16:14:40 +02001116 size_t total = 0;
1117 size_t ret = 0;
Christopher Faulet539e0292018-11-19 10:40:09 +01001118 size_t count, max;
Christopher Fauletf2824e62018-10-01 12:12:37 +02001119 int errflag;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001120
Christopher Faulet539e0292018-11-19 10:40:09 +01001121 htx = htx_from_buf(buf);
1122 count = b_data(&h1c->ibuf);
1123 max = htx_free_space(htx);
1124 if (flags & CO_RFL_KEEP_RSV) {
1125 if (max < global.tune.maxrewrite)
1126 goto end;
1127 max -= global.tune.maxrewrite;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001128 }
Christopher Faulet539e0292018-11-19 10:40:09 +01001129 if (count > max)
1130 count = max;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001131
Christopher Fauletf2824e62018-10-01 12:12:37 +02001132 if (!conn_is_back(h1c->conn)) {
1133 h1m = &h1s->req;
1134 errflag = H1S_F_REQ_ERROR;
1135 }
1136 else {
1137 h1m = &h1s->res;
1138 errflag = H1S_F_RES_ERROR;
1139 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001140
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001141 do {
Christopher Faulet129817b2018-09-20 16:14:40 +02001142 if (h1m->state <= H1_MSG_LAST_LF) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001143 ret = h1_process_headers(h1s, h1m, htx, &h1c->ibuf, &total, count);
Christopher Faulet129817b2018-09-20 16:14:40 +02001144 if (!ret)
1145 break;
Christopher Faulet129817b2018-09-20 16:14:40 +02001146 }
1147 else if (h1m->state <= H1_MSG_TRAILERS) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001148 ret = h1_process_data(h1s, h1m, htx, &h1c->ibuf, &total, count);
Christopher Faulet129817b2018-09-20 16:14:40 +02001149 if (!ret)
1150 break;
1151 }
Christopher Fauletf2824e62018-10-01 12:12:37 +02001152 else if (h1m->state == H1_MSG_DONE)
1153 break;
1154 else if (h1m->state == H1_MSG_TUNNEL) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001155 ret = h1_process_data(h1s, h1m, htx, &h1c->ibuf, &total, count);
Christopher Faulet9768c262018-10-22 09:34:31 +02001156 if (!ret)
1157 break;
Christopher Fauletf2824e62018-10-01 12:12:37 +02001158 }
Christopher Faulet129817b2018-09-20 16:14:40 +02001159 else {
Christopher Fauletf2824e62018-10-01 12:12:37 +02001160 h1s->flags |= errflag;
Christopher Faulet129817b2018-09-20 16:14:40 +02001161 break;
1162 }
1163
Christopher Faulet539e0292018-11-19 10:40:09 +01001164 count -= ret;
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001165 } while (!(h1s->flags & errflag) && count);
Christopher Faulet129817b2018-09-20 16:14:40 +02001166
Christopher Faulet47365272018-10-31 17:40:50 +01001167 if (h1s->flags & errflag)
1168 goto parsing_err;
Christopher Faulet129817b2018-09-20 16:14:40 +02001169
Christopher Faulet539e0292018-11-19 10:40:09 +01001170 b_del(&h1c->ibuf, total);
1171
1172 end:
1173 if (htx_is_not_empty(htx))
1174 b_set_data(buf, b_size(buf));
1175 else {
1176 htx_reset(htx);
1177 b_set_data(buf, 0);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001178 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001179
Christopher Faulet539e0292018-11-19 10:40:09 +01001180 if (h1c->flags & H1C_F_IN_FULL && b_room(&h1c->ibuf)) {
1181 h1c->flags &= ~H1C_F_IN_FULL;
1182 tasklet_wakeup(h1c->wait_event.task);
Christopher Faulet47365272018-10-31 17:40:50 +01001183 }
Christopher Faulet51dbc942018-09-13 09:05:15 +02001184
Christopher Faulet9c388402018-11-19 21:54:26 +01001185 if (b_data(&h1c->ibuf)) {
1186 if (!htx_is_empty(htx))
1187 h1s->cs->flags |= CS_FL_RCV_MORE;
1188 }
Christopher Faulet539e0292018-11-19 10:40:09 +01001189 else {
1190 h1_release_buf(h1c, &h1c->ibuf);
1191 h1_sync_messages(h1c);
1192
1193 h1s->cs->flags &= ~CS_FL_RCV_MORE;
1194 if (h1s->cs->flags & CS_FL_REOS)
1195 h1s->cs->flags |= CS_FL_EOS;
1196 }
1197 return total;
Christopher Faulet47365272018-10-31 17:40:50 +01001198
1199 parsing_err:
1200 // FIXME: create an error snapshot here
1201 b_reset(&h1c->ibuf);
Christopher Faulet539e0292018-11-19 10:40:09 +01001202 htx->flags |= HTX_FL_PARSING_ERROR;
1203 b_set_data(buf, b_size(buf));
1204 h1s->cs->flags |= CS_FL_EOS;
Christopher Faulet9768c262018-10-22 09:34:31 +02001205 return 0;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001206}
1207
Christopher Faulet129817b2018-09-20 16:14:40 +02001208/*
1209 * Process outgoing data. It parses data and transfer them from the channel buffer into
1210 * h1c->obuf. It returns the number of bytes parsed and transferred if > 0, or
1211 * 0 if it couldn't proceed.
1212 */
Christopher Faulet51dbc942018-09-13 09:05:15 +02001213static size_t h1_process_output(struct h1c *h1c, struct buffer *buf, size_t count)
1214{
Christopher Faulet129817b2018-09-20 16:14:40 +02001215 struct h1s *h1s = h1c->h1s;
1216 struct h1m *h1m;
Christopher Faulet9768c262018-10-22 09:34:31 +02001217 struct htx *chn_htx;
1218 struct htx_blk *blk;
1219 struct buffer *tmp;
Christopher Faulet129817b2018-09-20 16:14:40 +02001220 size_t total = 0;
Christopher Fauletd1ebb1e2018-11-28 16:32:50 +01001221 int process_conn_mode = 1; /* If still 1 on EOH, process the connection mode */
Christopher Fauletf2824e62018-10-01 12:12:37 +02001222 int errflag;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001223
Christopher Faulet47365272018-10-31 17:40:50 +01001224 if (!count)
1225 goto end;
Christopher Faulet9768c262018-10-22 09:34:31 +02001226 chn_htx = htx_from_buf(buf);
1227
Christopher Faulet51dbc942018-09-13 09:05:15 +02001228 if (!h1_get_buf(h1c, &h1c->obuf)) {
1229 h1c->flags |= H1C_F_OUT_ALLOC;
1230 goto end;
1231 }
Christopher Faulet51dbc942018-09-13 09:05:15 +02001232
Christopher Fauletf2824e62018-10-01 12:12:37 +02001233 if (!conn_is_back(h1c->conn)) {
1234 h1m = &h1s->res;
1235 errflag = H1S_F_RES_ERROR;
1236 }
1237 else {
1238 h1m = &h1s->req;
1239 errflag = H1S_F_REQ_ERROR;
1240 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001241
1242
1243 tmp = get_trash_chunk();
1244 tmp->size = b_room(&h1c->obuf);
1245
1246 blk = htx_get_head_blk(chn_htx);
1247 while (!(h1s->flags & errflag) && blk) {
Christopher Faulet570d1612018-11-26 11:13:57 +01001248 struct htx_sl *sl;
Christopher Faulet9768c262018-10-22 09:34:31 +02001249 struct ist n, v;
1250 uint32_t sz = htx_get_blksz(blk);
1251
1252 if (total + sz > count)
1253 goto copy;
1254
1255 switch (htx_get_blk_type(blk)) {
1256 case HTX_BLK_UNUSED:
Christopher Faulet129817b2018-09-20 16:14:40 +02001257 break;
Christopher Faulet9768c262018-10-22 09:34:31 +02001258
1259 case HTX_BLK_REQ_SL:
Christopher Faulet66229af2018-11-28 16:06:57 +01001260 h1m_init_req(h1m);
1261 h1m->flags |= H1_MF_NO_PHDR;
Christopher Faulet9768c262018-10-22 09:34:31 +02001262 sl = htx_get_blk_ptr(chn_htx, blk);
Christopher Faulet570d1612018-11-26 11:13:57 +01001263 h1s->meth = sl->info.req.meth;
Christopher Faulet9768c262018-10-22 09:34:31 +02001264 h1_parse_req_vsn(h1m, sl);
1265 if (!htx_reqline_to_str(sl, tmp))
1266 goto copy;
1267 h1m->flags |= H1_MF_XFER_LEN;
1268 h1m->state = H1_MSG_HDR_FIRST;
Christopher Faulet129817b2018-09-20 16:14:40 +02001269 break;
Christopher Faulet129817b2018-09-20 16:14:40 +02001270
Christopher Faulet9768c262018-10-22 09:34:31 +02001271 case HTX_BLK_RES_SL:
Christopher Faulet66229af2018-11-28 16:06:57 +01001272 h1m_init_res(h1m);
1273 h1m->flags |= H1_MF_NO_PHDR;
Christopher Faulet9768c262018-10-22 09:34:31 +02001274 sl = htx_get_blk_ptr(chn_htx, blk);
Christopher Faulet570d1612018-11-26 11:13:57 +01001275 h1s->status = sl->info.res.status;
Christopher Faulet9768c262018-10-22 09:34:31 +02001276 h1_parse_res_vsn(h1m, sl);
1277 if (!htx_stline_to_str(sl, tmp))
1278 goto copy;
Christopher Faulet03599112018-11-27 11:21:21 +01001279 if (sl->flags & HTX_SL_F_XFER_LEN)
Christopher Faulet9768c262018-10-22 09:34:31 +02001280 h1m->flags |= H1_MF_XFER_LEN;
Christopher Fauletd1ebb1e2018-11-28 16:32:50 +01001281 if (sl->info.res.status < 200 &&
1282 (sl->info.res.status == 100 || sl->info.res.status >= 102))
1283 process_conn_mode = 0;
Christopher Faulet9768c262018-10-22 09:34:31 +02001284 h1m->state = H1_MSG_HDR_FIRST;
1285 break;
1286
1287 case HTX_BLK_HDR:
Christopher Faulet9768c262018-10-22 09:34:31 +02001288 h1m->state = H1_MSG_HDR_NAME;
1289 n = htx_get_blk_name(chn_htx, blk);
1290 v = htx_get_blk_value(chn_htx, blk);
1291
1292 if (isteqi(n, ist("transfer-encoding")))
1293 h1_parse_xfer_enc_header(h1m, v);
1294 else if (isteqi(n, ist("connection"))) {
1295 h1_parse_connection_header(h1m, v);
1296 h1_process_conn_mode(h1s, h1m, NULL, &v);
Christopher Fauletd1ebb1e2018-11-28 16:32:50 +01001297 process_conn_mode = 0;
Christopher Faulet9768c262018-10-22 09:34:31 +02001298 if (!v.len)
1299 goto skip_hdr;
1300 }
1301
1302 if (!htx_hdr_to_str(n, v, tmp))
1303 goto copy;
1304 skip_hdr:
1305 h1m->state = H1_MSG_HDR_L2_LWS;
1306 break;
1307
1308 case HTX_BLK_PHDR:
1309 /* not implemented yet */
1310 h1m->flags |= errflag;
1311 break;
1312
1313 case HTX_BLK_EOH:
Christopher Fauletd1ebb1e2018-11-28 16:32:50 +01001314 if (h1m->state == H1_MSG_HDR_L2_LWS && process_conn_mode) {
1315 /* There is no "Connection:" header and
1316 * it the conn_mode must be
1317 * processed. So do it */
1318 n = ist("Connection");
1319 v = ist("");
1320 h1_process_conn_mode(h1s, h1m, NULL, &v);
1321 process_conn_mode = 0;
1322 if (v.len) {
1323 if (!htx_hdr_to_str(n, v, tmp))
1324 goto copy;
1325 }
1326 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001327 h1m->state = H1_MSG_LAST_LF;
1328 if (!chunk_memcat(tmp, "\r\n", 2))
1329 goto copy;
1330
1331 h1m->state = H1_MSG_DATA;
1332 break;
1333
1334 case HTX_BLK_DATA:
1335 v = htx_get_blk_value(chn_htx, blk);
1336 if (!htx_data_to_str(v, tmp, !!(h1m->flags & H1_MF_CHNK)))
1337 goto copy;
1338 break;
1339
1340 case HTX_BLK_EOD:
1341 if (!chunk_memcat(tmp, "0\r\n", 3))
1342 goto copy;
Christopher Faulet32188212018-11-20 18:21:43 +01001343 h1s->flags |= H1S_F_HAVE_EOD;
Christopher Faulet9768c262018-10-22 09:34:31 +02001344 h1m->state = H1_MSG_TRAILERS;
1345 break;
1346
1347 case HTX_BLK_TLR:
Christopher Faulet32188212018-11-20 18:21:43 +01001348 if (!(h1s->flags & H1S_F_HAVE_EOD)) {
1349 if (!chunk_memcat(tmp, "0\r\n", 3))
1350 goto copy;
1351 h1s->flags |= H1S_F_HAVE_EOD;
1352 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001353 v = htx_get_blk_value(chn_htx, blk);
1354 if (!htx_trailer_to_str(v, tmp))
1355 goto copy;
Christopher Faulet32188212018-11-20 18:21:43 +01001356 h1s->flags |= H1S_F_HAVE_TLR;
Christopher Faulet9768c262018-10-22 09:34:31 +02001357 break;
1358
1359 case HTX_BLK_EOM:
Christopher Faulet32188212018-11-20 18:21:43 +01001360 if ((h1m->flags & H1_MF_CHNK)) {
1361 if (!(h1s->flags & H1S_F_HAVE_EOD)) {
1362 if (!chunk_memcat(tmp, "0\r\n", 3))
1363 goto copy;
1364 h1s->flags |= H1S_F_HAVE_EOD;
1365 }
1366 if (!(h1s->flags & H1S_F_HAVE_TLR)) {
1367 if (!chunk_memcat(tmp, "\r\n", 2))
1368 goto copy;
1369 h1s->flags |= H1S_F_HAVE_TLR;
1370 }
1371 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001372 h1m->state = H1_MSG_DONE;
1373 break;
1374
1375 case HTX_BLK_OOB:
1376 v = htx_get_blk_value(chn_htx, blk);
1377 if (!chunk_memcat(tmp, v.ptr, v.len))
1378 goto copy;
1379 break;
1380
1381 default:
1382 h1m->flags |= errflag;
1383 break;
1384 }
1385 total += sz;
1386 blk = htx_remove_blk(chn_htx, blk);
Christopher Faulet129817b2018-09-20 16:14:40 +02001387 }
1388
Christopher Faulet9768c262018-10-22 09:34:31 +02001389 copy:
1390 b_putblk(&h1c->obuf, tmp->area, tmp->data);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001391
1392 if (b_full(&h1c->obuf))
1393 h1c->flags |= H1C_F_OUT_FULL;
Christopher Faulet9768c262018-10-22 09:34:31 +02001394 if (htx_is_empty(chn_htx)) {
1395 htx_reset(chn_htx);
1396 b_set_data(buf, 0);
1397 }
Christopher Faulet9768c262018-10-22 09:34:31 +02001398 end:
1399 return total;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001400}
1401
Christopher Faulet51dbc942018-09-13 09:05:15 +02001402/*********************************************************/
1403/* functions below are I/O callbacks from the connection */
1404/*********************************************************/
1405/*
1406 * Attempt to read data, and subscribe if none available
1407 */
1408static int h1_recv(struct h1c *h1c)
1409{
1410 struct connection *conn = h1c->conn;
Christopher Fauletfeb11742018-11-29 15:12:34 +01001411 struct h1s *h1s = h1c->h1s;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001412 size_t ret, max;
1413 int rcvd = 0;
1414
1415 if (h1c->wait_event.wait_reason & SUB_CAN_RECV)
1416 return 0;
1417
Christopher Faulet539e0292018-11-19 10:40:09 +01001418 if (!h1_recv_allowed(h1c))
Christopher Faulet9768c262018-10-22 09:34:31 +02001419 goto end;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001420
Christopher Fauletfeb11742018-11-29 15:12:34 +01001421 if (h1s && (h1s->flags & (H1S_F_BUF_FLUSH|H1S_F_SPLICED_DATA))) {
Christopher Faulet9768c262018-10-22 09:34:31 +02001422 rcvd = 1;
1423 goto end;
1424 }
Christopher Faulet1be55f92018-10-02 15:59:23 +02001425
Christopher Faulet51dbc942018-09-13 09:05:15 +02001426 if (!h1_get_buf(h1c, &h1c->ibuf)) {
1427 h1c->flags |= H1C_F_IN_ALLOC;
Christopher Faulet9768c262018-10-22 09:34:31 +02001428 goto end;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001429 }
1430
1431 ret = 0;
1432 max = b_room(&h1c->ibuf);
1433 if (max) {
1434 h1c->flags &= ~H1C_F_IN_FULL;
1435 ret = conn->xprt->rcv_buf(conn, &h1c->ibuf, max, 0);
1436 }
Christopher Faulet47365272018-10-31 17:40:50 +01001437 if (ret > 0) {
Christopher Faulet51dbc942018-09-13 09:05:15 +02001438 rcvd = 1;
Christopher Fauletfeb11742018-11-29 15:12:34 +01001439 if (h1s && h1s->cs) {
1440 h1s->cs->flags |= CS_FL_READ_PARTIAL;
1441 if (h1s->csinfo.t_idle == -1)
1442 h1s->csinfo.t_idle = tv_ms_elapsed(&h1s->csinfo.tv_create, &now) - h1s->csinfo.t_handshake;
1443 }
Christopher Faulet47365272018-10-31 17:40:50 +01001444 }
Christopher Faulet51dbc942018-09-13 09:05:15 +02001445
1446 if (h1_recv_allowed(h1c))
1447 conn->xprt->subscribe(conn, SUB_CAN_RECV, &h1c->wait_event);
Christopher Faulet81d48432018-11-19 21:22:43 +01001448 else
1449 rcvd = 1;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001450
Christopher Faulet9768c262018-10-22 09:34:31 +02001451 end:
Christopher Faulet51dbc942018-09-13 09:05:15 +02001452 if (!b_data(&h1c->ibuf))
1453 h1_release_buf(h1c, &h1c->ibuf);
1454 else if (b_full(&h1c->ibuf))
1455 h1c->flags |= H1C_F_IN_FULL;
1456 return rcvd;
1457}
1458
1459
1460/*
1461 * Try to send data if possible
1462 */
1463static int h1_send(struct h1c *h1c)
1464{
1465 struct connection *conn = h1c->conn;
1466 unsigned int flags = 0;
1467 size_t ret;
1468 int sent = 0;
1469
1470 if (conn->flags & CO_FL_ERROR)
1471 return 0;
1472
Christopher Faulet3b88b8d2018-10-26 17:36:03 +02001473 if (h1c->flags & H1C_F_CS_WAIT_CONN) {
1474 if (!(h1c->wait_event.wait_reason & SUB_CAN_SEND))
1475 conn->xprt->subscribe(conn, SUB_CAN_SEND, &h1c->wait_event);
1476 return 0;
1477 }
1478
Christopher Faulet51dbc942018-09-13 09:05:15 +02001479 if (!b_data(&h1c->obuf))
1480 goto end;
1481
1482 if (h1c->flags & H1C_F_OUT_FULL)
1483 flags |= CO_SFL_MSG_MORE;
1484
1485 ret = conn->xprt->snd_buf(conn, &h1c->obuf, b_data(&h1c->obuf), flags);
1486 if (ret > 0) {
1487 h1c->flags &= ~H1C_F_OUT_FULL;
1488 b_del(&h1c->obuf, ret);
1489 sent = 1;
1490 }
1491
1492 end:
1493 /* We're done, no more to send */
1494 if (!b_data(&h1c->obuf)) {
1495 h1_release_buf(h1c, &h1c->obuf);
Christopher Fauletf2824e62018-10-01 12:12:37 +02001496 h1_sync_messages(h1c);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001497 if (h1c->flags & H1C_F_CS_SHUTW_NOW)
1498 h1_shutw_conn(conn);
1499 }
1500 else if (!(h1c->wait_event.wait_reason & SUB_CAN_SEND))
1501 conn->xprt->subscribe(conn, SUB_CAN_SEND, &h1c->wait_event);
1502
1503 return sent;
1504}
1505
1506
1507static void h1_wake_stream(struct h1c *h1c)
1508{
1509 struct connection *conn = h1c->conn;
1510 struct h1s *h1s = h1c->h1s;
1511 uint32_t flags = 0;
1512 int dont_wake = 0;
1513
1514 if (!h1s || !h1s->cs)
1515 return;
1516
1517 if ((h1c->flags & H1C_F_CS_ERROR) || (conn->flags & CO_FL_ERROR))
1518 flags |= CS_FL_ERROR;
1519 if (conn_xprt_read0_pending(conn))
1520 flags |= CS_FL_REOS;
1521
1522 h1s->cs->flags |= flags;
1523 if (h1s->recv_wait) {
1524 h1s->recv_wait->wait_reason &= ~SUB_CAN_RECV;
1525 tasklet_wakeup(h1s->recv_wait->task);
1526 h1s->recv_wait = NULL;
1527 dont_wake = 1;
1528 }
1529 if (h1s->send_wait) {
1530 h1s->send_wait->wait_reason &= ~SUB_CAN_SEND;
1531 tasklet_wakeup(h1s->send_wait->task);
1532 h1s->send_wait = NULL;
1533 dont_wake = 1;
1534 }
1535 if (!dont_wake && h1s->cs->data_cb->wake)
1536 h1s->cs->data_cb->wake(h1s->cs);
1537}
1538
1539/* callback called on any event by the connection handler.
1540 * It applies changes and returns zero, or < 0 if it wants immediate
1541 * destruction of the connection.
1542 */
1543static int h1_process(struct h1c * h1c)
1544{
1545 struct connection *conn = h1c->conn;
Christopher Fauletfeb11742018-11-29 15:12:34 +01001546 struct h1s *h1s = h1c->h1s;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001547
Christopher Faulet51dbc942018-09-13 09:05:15 +02001548 if (!conn->mux_ctx)
1549 return -1;
1550
Christopher Faulet3b88b8d2018-10-26 17:36:03 +02001551 if (h1c->flags & H1C_F_CS_WAIT_CONN) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001552 if (!(conn->flags & (CO_FL_CONNECTED|CO_FL_ERROR)))
1553 goto end;
1554 h1c->flags &= ~H1C_F_CS_WAIT_CONN;
Christopher Faulet3b88b8d2018-10-26 17:36:03 +02001555 }
1556
Christopher Fauletfeb11742018-11-29 15:12:34 +01001557 if (!h1s) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001558 if (h1c->flags & H1C_F_CS_ERROR ||
1559 conn->flags & CO_FL_ERROR ||
1560 conn_xprt_read0_pending(conn))
1561 goto release;
Christopher Faulet81d48432018-11-19 21:22:43 +01001562 if (!conn_is_back(conn) && !(h1c->flags & (H1C_F_CS_SHUTW_NOW|H1C_F_CS_SHUTW))) {
Christopher Faulet539e0292018-11-19 10:40:09 +01001563 if (!h1s_create(h1c, NULL))
1564 goto release;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001565 }
Christopher Fauletfeb11742018-11-29 15:12:34 +01001566 h1s = h1c->h1s;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001567 }
1568
Christopher Fauletfeb11742018-11-29 15:12:34 +01001569 if (b_data(&h1c->ibuf) && h1s->csinfo.t_idle == -1)
1570 h1s->csinfo.t_idle = tv_ms_elapsed(&h1s->csinfo.tv_create, &now) - h1s->csinfo.t_handshake;
1571
Christopher Faulet539e0292018-11-19 10:40:09 +01001572 h1_wake_stream(h1c);
Christopher Faulet47365272018-10-31 17:40:50 +01001573 end:
Christopher Faulet51dbc942018-09-13 09:05:15 +02001574 return 0;
Christopher Faulet539e0292018-11-19 10:40:09 +01001575
1576 release:
1577 h1_release(conn);
1578 return -1;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001579}
1580
1581static struct task *h1_io_cb(struct task *t, void *ctx, unsigned short status)
1582{
1583 struct h1c *h1c = ctx;
1584 int ret = 0;
1585
1586 if (!(h1c->wait_event.wait_reason & SUB_CAN_SEND))
1587 ret = h1_send(h1c);
1588 if (!(h1c->wait_event.wait_reason & SUB_CAN_RECV))
1589 ret |= h1_recv(h1c);
Christopher Faulet81d48432018-11-19 21:22:43 +01001590 if (ret || !h1c->h1s)
Christopher Faulet51dbc942018-09-13 09:05:15 +02001591 h1_process(h1c);
1592 return NULL;
1593}
1594
1595
1596static int h1_wake(struct connection *conn)
1597{
1598 struct h1c *h1c = conn->mux_ctx;
1599
Christopher Faulet539e0292018-11-19 10:40:09 +01001600 h1_send(h1c);
1601 return h1_process(h1c);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001602}
1603
Christopher Faulet51dbc942018-09-13 09:05:15 +02001604/*******************************************/
1605/* functions below are used by the streams */
1606/*******************************************/
1607/*
1608 * Attach a new stream to a connection
1609 * (Used for outgoing connections)
1610 */
1611static struct conn_stream *h1_attach(struct connection *conn)
1612{
1613 struct h1c *h1c = conn->mux_ctx;
1614 struct conn_stream *cs = NULL;
1615 struct h1s *h1s;
1616
1617 if (h1c->flags & H1C_F_CS_ERROR)
1618 goto end;
1619
1620 cs = cs_new(h1c->conn);
1621 if (!cs)
1622 goto end;
1623
Christopher Fauletf2824e62018-10-01 12:12:37 +02001624 h1s = h1s_create(h1c, cs);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001625 if (h1s == NULL)
1626 goto end;
1627
1628 return cs;
1629 end:
1630 cs_free(cs);
1631 return NULL;
1632}
1633
1634/* Retrieves a valid conn_stream from this connection, or returns NULL. For
1635 * this mux, it's easy as we can only store a single conn_stream.
1636 */
1637static const struct conn_stream *h1_get_first_cs(const struct connection *conn)
1638{
1639 struct h1c *h1c = conn->mux_ctx;
1640 struct h1s *h1s = h1c->h1s;
1641
1642 if (h1s)
1643 return h1s->cs;
1644
1645 return NULL;
1646}
1647
1648static void h1_destroy(struct connection *conn)
1649{
1650 struct h1c *h1c = conn->mux_ctx;
1651
1652 if (!h1c->h1s)
1653 h1_release(conn);
1654}
1655
1656/*
1657 * Detach the stream from the connection and possibly release the connection.
1658 */
1659static void h1_detach(struct conn_stream *cs)
1660{
1661 struct h1s *h1s = cs->ctx;
1662 struct h1c *h1c;
1663
1664 cs->ctx = NULL;
1665 if (!h1s)
1666 return;
1667
1668 h1c = h1s->h1c;
1669 h1s->cs = NULL;
1670
Christopher Faulet9400a392018-11-23 23:10:39 +01001671 if (conn_is_back(h1c->conn) && (h1s->flags & H1S_F_WANT_KAL)) {
1672 /* Never ever allow to reuse a connection from a non-reuse backend */
1673 if (h1c->conn && (h1c->px->options & PR_O_REUSE_MASK) == PR_O_REUSE_NEVR)
1674 h1c->conn->flags |= CO_FL_PRIVATE;
1675
1676 /* we're in keep-alive with an idle connection, monitor it if not already done */
1677 if (h1c->conn && LIST_ISEMPTY(&h1c->conn->list)) {
1678 struct server *srv = objt_server(h1c->conn->target);
1679
1680 if (srv) {
1681 if (h1c->conn->flags & CO_FL_PRIVATE)
1682 LIST_ADD(&srv->priv_conns[tid], &h1c->conn->list);
1683 else if (h1s->flags & H1S_F_NOT_FIRST)
1684 LIST_ADD(&srv->safe_conns[tid], &h1c->conn->list);
1685 else
1686 LIST_ADD(&srv->idle_conns[tid], &h1c->conn->list);
1687 }
1688 }
1689 }
1690
Christopher Faulet51dbc942018-09-13 09:05:15 +02001691 h1s_destroy(h1s);
1692
1693 /* We don't want to close right now unless the connection is in error */
1694 if ((h1c->flags & (H1C_F_CS_ERROR|H1C_F_CS_SHUTW)) ||
1695 (h1c->conn->flags & CO_FL_ERROR))
1696 h1_release(h1c->conn);
1697 else
1698 tasklet_wakeup(h1c->wait_event.task);
1699}
1700
1701
1702static void h1_shutr(struct conn_stream *cs, enum cs_shr_mode mode)
1703{
1704 struct h1s *h1s = cs->ctx;
1705
1706 if (!h1s)
1707 return;
1708
Christopher Fauletf2824e62018-10-01 12:12:37 +02001709 if ((h1s->flags & H1S_F_WANT_KAL) && !(cs->flags & (CS_FL_REOS|CS_FL_EOS)))
1710 return;
1711
Christopher Faulet51dbc942018-09-13 09:05:15 +02001712 /* NOTE: Be sure to handle abort (cf. h2_shutr) */
1713 if (cs->flags & CS_FL_SHR)
1714 return;
1715 if (conn_xprt_ready(cs->conn) && cs->conn->xprt->shutr)
1716 cs->conn->xprt->shutr(cs->conn, (mode == CS_SHR_DRAIN));
1717 if (cs->flags & CS_FL_SHW) {
1718 h1s->h1c->flags = (h1s->h1c->flags & ~H1C_F_CS_SHUTW_NOW) | H1C_F_CS_SHUTW;
1719 conn_full_close(cs->conn);
1720 }
1721}
1722
1723static void h1_shutw(struct conn_stream *cs, enum cs_shw_mode mode)
1724{
1725 struct h1s *h1s = cs->ctx;
1726 struct h1c *h1c;
1727
1728 if (!h1s)
1729 return;
1730 h1c = h1s->h1c;
1731
Christopher Fauletf2824e62018-10-01 12:12:37 +02001732 if ((h1s->flags & H1S_F_WANT_KAL) &&
1733 !(cs->flags & (CS_FL_REOS|CS_FL_EOS)) &&
1734 h1s->req.state == H1_MSG_DONE && h1s->res.state == H1_MSG_DONE)
1735 return;
1736
Christopher Faulet51dbc942018-09-13 09:05:15 +02001737 h1c->flags |= H1C_F_CS_SHUTW_NOW;
1738 if ((cs->flags & CS_FL_SHW) || b_data(&h1c->obuf))
1739 return;
1740
1741 h1_shutw_conn(cs->conn);
1742}
1743
1744static void h1_shutw_conn(struct connection *conn)
1745{
1746 struct h1c *h1c = conn->mux_ctx;
1747
1748 if (conn_xprt_ready(conn) && conn->xprt->shutw)
1749 conn->xprt->shutw(conn, 1);
1750 if (!(conn->flags & CO_FL_SOCK_RD_SH))
1751 conn_sock_shutw(conn, 1);
1752 else {
1753 h1c->flags = (h1c->flags & ~H1C_F_CS_SHUTW_NOW) | H1C_F_CS_SHUTW;
1754 conn_full_close(conn);
1755 }
1756}
1757
1758/* Called from the upper layer, to unsubscribe to events */
1759static int h1_unsubscribe(struct conn_stream *cs, int event_type, void *param)
1760{
1761 struct wait_event *sw;
1762 struct h1s *h1s = cs->ctx;
1763
1764 if (!h1s)
1765 return 0;
1766
1767 if (event_type & SUB_CAN_RECV) {
1768 sw = param;
1769 if (h1s->recv_wait == sw) {
1770 sw->wait_reason &= ~SUB_CAN_RECV;
1771 h1s->recv_wait = NULL;
1772 }
1773 }
1774 if (event_type & SUB_CAN_SEND) {
1775 sw = param;
1776 if (h1s->send_wait == sw) {
1777 sw->wait_reason &= ~SUB_CAN_SEND;
1778 h1s->send_wait = NULL;
1779 }
1780 }
1781 return 0;
1782}
1783
1784/* Called from the upper layer, to subscribe to events, such as being able to send */
1785static int h1_subscribe(struct conn_stream *cs, int event_type, void *param)
1786{
1787 struct wait_event *sw;
1788 struct h1s *h1s = cs->ctx;
1789
1790 if (!h1s)
1791 return -1;
1792
1793 switch (event_type) {
1794 case SUB_CAN_RECV:
1795 sw = param;
1796 if (!(sw->wait_reason & SUB_CAN_RECV)) {
1797 sw->wait_reason |= SUB_CAN_RECV;
1798 sw->handle = h1s;
1799 h1s->recv_wait = sw;
1800 }
1801 return 0;
1802 case SUB_CAN_SEND:
1803 sw = param;
1804 if (!(sw->wait_reason & SUB_CAN_SEND)) {
1805 sw->wait_reason |= SUB_CAN_SEND;
1806 sw->handle = h1s;
1807 h1s->send_wait = sw;
1808 }
1809 return 0;
1810 default:
1811 break;
1812 }
1813 return -1;
1814}
1815
1816/* Called from the upper layer, to receive data */
1817static size_t h1_rcv_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
1818{
1819 struct h1s *h1s = cs->ctx;
Christopher Faulet539e0292018-11-19 10:40:09 +01001820 struct h1c *h1c = h1s->h1c;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001821 size_t ret = 0;
1822
Christopher Faulet539e0292018-11-19 10:40:09 +01001823 if (!(h1c->flags & H1C_F_IN_ALLOC))
1824 ret = h1_process_input(h1c, buf, flags);
Christopher Faulet1be55f92018-10-02 15:59:23 +02001825
1826 if (flags & CO_RFL_BUF_FLUSH)
1827 h1s->flags |= H1S_F_BUF_FLUSH;
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001828 else if (ret > 0 || (h1s->flags & H1S_F_SPLICED_DATA)) {
1829 h1s->flags &= ~H1S_F_SPLICED_DATA;
Christopher Faulet539e0292018-11-19 10:40:09 +01001830 if (!(h1c->wait_event.wait_reason & SUB_CAN_RECV))
1831 tasklet_wakeup(h1c->wait_event.task);
Christopher Faulet51dbc942018-09-13 09:05:15 +02001832 }
1833 return ret;
1834}
1835
1836
1837/* Called from the upper layer, to send data */
1838static size_t h1_snd_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
1839{
1840 struct h1s *h1s = cs->ctx;
1841 struct h1c *h1c;
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001842 size_t total = 0;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001843
1844 if (!h1s)
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001845 return 0;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001846
1847 h1c = h1s->h1c;
Christopher Faulet3b88b8d2018-10-26 17:36:03 +02001848 if (h1c->flags & H1C_F_CS_WAIT_CONN)
1849 return 0;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001850
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001851 while (total != count) {
1852 size_t ret = 0;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001853
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001854 if (!(h1c->flags & (H1C_F_OUT_FULL|H1C_F_OUT_ALLOC)))
1855 ret = h1_process_output(h1c, buf, count);
1856 if (!ret)
1857 break;
1858 total += ret;
1859 if (!h1_send(h1c))
1860 break;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001861 }
Christopher Fauletf96c3222018-11-20 18:38:01 +01001862
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001863 /* We need to do that because of the infinite forwarding. <buf>
1864 * contains HTX messages so when infinite forwarding is enabled,
1865 * count is equal to the buffer size. From outside, the buffer
1866 * appears as full.
1867 */
1868 if (!b_data(buf))
1869 total = count;
1870 else if (total != count) {
Christopher Fauletf96c3222018-11-20 18:38:01 +01001871 if (!(h1c->wait_event.wait_reason & SUB_CAN_SEND))
1872 cs->conn->xprt->subscribe(cs->conn, SUB_CAN_SEND, &h1c->wait_event);
1873 }
Christopher Faulet5d37dac2018-11-22 10:58:42 +01001874 return total;
Christopher Faulet51dbc942018-09-13 09:05:15 +02001875}
1876
Christopher Faulet1be55f92018-10-02 15:59:23 +02001877#if defined(CONFIG_HAP_LINUX_SPLICE)
1878/* Send and get, using splicing */
1879static int h1_rcv_pipe(struct conn_stream *cs, struct pipe *pipe, unsigned int count)
1880{
1881 struct h1s *h1s = cs->ctx;
1882 struct h1m *h1m = (!conn_is_back(cs->conn) ? &h1s->req : &h1s->res);
1883 int ret = 0;
1884
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001885 if (b_data(&h1s->h1c->ibuf)) {
1886 h1s->flags |= H1S_F_BUF_FLUSH;
Christopher Faulet1be55f92018-10-02 15:59:23 +02001887 goto end;
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001888 }
1889
1890 h1s->flags &= ~H1S_F_BUF_FLUSH;
1891 h1s->flags |= H1S_F_SPLICED_DATA;
Christopher Faulet1be55f92018-10-02 15:59:23 +02001892 if (h1m->state == H1_MSG_DATA && count > h1m->curr_len)
1893 count = h1m->curr_len;
1894 ret = cs->conn->xprt->rcv_pipe(cs->conn, pipe, count);
1895 if (h1m->state == H1_MSG_DATA && ret > 0)
1896 h1m->curr_len -= ret;
1897 end:
1898 return ret;
1899
1900}
1901
1902static int h1_snd_pipe(struct conn_stream *cs, struct pipe *pipe)
1903{
1904 struct h1s *h1s = cs->ctx;
Christopher Faulet1be55f92018-10-02 15:59:23 +02001905 int ret = 0;
1906
1907 if (b_data(&h1s->h1c->obuf))
1908 goto end;
1909
1910 ret = cs->conn->xprt->snd_pipe(cs->conn, pipe);
Christopher Faulet1be55f92018-10-02 15:59:23 +02001911 end:
Christopher Fauletd44ad5b2018-11-19 21:52:12 +01001912 if (pipe->data) {
1913 if (!(h1s->h1c->wait_event.wait_reason & SUB_CAN_SEND))
1914 cs->conn->xprt->subscribe(cs->conn, SUB_CAN_SEND, &h1s->h1c->wait_event);
1915 }
Christopher Faulet1be55f92018-10-02 15:59:23 +02001916 return ret;
1917}
1918#endif
1919
Christopher Faulet51dbc942018-09-13 09:05:15 +02001920/****************************************/
1921/* MUX initialization and instanciation */
1922/****************************************/
1923
1924/* The mux operations */
1925const struct mux_ops mux_h1_ops = {
1926 .init = h1_init,
1927 .wake = h1_wake,
1928 .attach = h1_attach,
1929 .get_first_cs = h1_get_first_cs,
Christopher Fauletfeb11742018-11-29 15:12:34 +01001930 .get_cs_info = h1_get_cs_info,
Christopher Faulet51dbc942018-09-13 09:05:15 +02001931 .detach = h1_detach,
1932 .destroy = h1_destroy,
1933 .avail_streams = h1_avail_streams,
1934 .rcv_buf = h1_rcv_buf,
1935 .snd_buf = h1_snd_buf,
Christopher Faulet1be55f92018-10-02 15:59:23 +02001936#if defined(CONFIG_HAP_LINUX_SPLICE)
1937 .rcv_pipe = h1_rcv_pipe,
1938 .snd_pipe = h1_snd_pipe,
1939#endif
Christopher Faulet51dbc942018-09-13 09:05:15 +02001940 .subscribe = h1_subscribe,
1941 .unsubscribe = h1_unsubscribe,
1942 .shutr = h1_shutr,
1943 .shutw = h1_shutw,
1944 .flags = MX_FL_NONE,
1945 .name = "h1",
1946};
1947
1948
1949/* this mux registers default HTX proto */
1950static struct mux_proto_list mux_proto_htx =
1951{ .token = IST(""), .mode = PROTO_MODE_HTX, .side = PROTO_SIDE_BOTH, .mux = &mux_h1_ops };
1952
Willy Tarreau0108d902018-11-25 19:14:37 +01001953INITCALL1(STG_REGISTER, register_mux_proto, &mux_proto_htx);
1954
Christopher Faulet51dbc942018-09-13 09:05:15 +02001955/*
1956 * Local variables:
1957 * c-indent-level: 8
1958 * c-basic-offset: 8
1959 * End:
1960 */