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Willy Tarreau62f52692017-10-08 23:01:42 +02001/*
2 * HTTP/2 mux-demux for connections
3 *
4 * Copyright 2017 Willy Tarreau <w@1wt.eu>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12
13#include <common/cfgparse.h>
14#include <common/config.h>
Willy Tarreauafba57a2018-12-11 13:44:24 +010015#include <common/h1.h>
Willy Tarreau5ab6b572017-09-22 08:05:00 +020016#include <common/h2.h>
Willy Tarreau13278b42017-10-13 19:23:14 +020017#include <common/hpack-dec.h>
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +020018#include <common/hpack-enc.h>
Willy Tarreau5ab6b572017-09-22 08:05:00 +020019#include <common/hpack-tbl.h>
Willy Tarreaub96b77e2018-12-11 10:22:41 +010020#include <common/htx.h>
Willy Tarreau0108d902018-11-25 19:14:37 +010021#include <common/initcall.h>
Willy Tarreaue4820742017-07-27 13:37:23 +020022#include <common/net_helper.h>
Willy Tarreau62f52692017-10-08 23:01:42 +020023#include <proto/connection.h>
Willy Tarreaubcd3bb32018-12-01 18:59:00 +010024#include <proto/http_htx.h>
Olivier Houchard44d59142018-12-13 18:46:22 +010025#include <proto/session.h>
Willy Tarreau62f52692017-10-08 23:01:42 +020026#include <proto/stream.h>
Olivier Houchard44d59142018-12-13 18:46:22 +010027#include <proto/stream_interface.h>
Willy Tarreauea392822017-10-31 10:02:25 +010028#include <types/session.h>
Willy Tarreau5ab6b572017-09-22 08:05:00 +020029#include <eb32tree.h>
Willy Tarreau62f52692017-10-08 23:01:42 +020030
31
Willy Tarreauecb9dcd2019-01-03 12:00:17 +010032/* dummy streams returned for closed, error, refused, idle and states */
Willy Tarreau2a856182017-05-16 15:20:39 +020033static const struct h2s *h2_closed_stream;
Willy Tarreauecb9dcd2019-01-03 12:00:17 +010034static const struct h2s *h2_error_stream;
Willy Tarreau8d0d58b2018-12-23 18:29:12 +010035static const struct h2s *h2_refused_stream;
Willy Tarreau2a856182017-05-16 15:20:39 +020036static const struct h2s *h2_idle_stream;
37
Willy Tarreau5ab6b572017-09-22 08:05:00 +020038/* Connection flags (32 bit), in h2c->flags */
39#define H2_CF_NONE 0x00000000
40
Willy Tarreau2e5b60e2017-09-25 11:49:03 +020041/* Flags indicating why writing to the mux is blocked. */
42#define H2_CF_MUX_MALLOC 0x00000001 // mux blocked on lack of connection's mux buffer
43#define H2_CF_MUX_MFULL 0x00000002 // mux blocked on connection's mux buffer full
44#define H2_CF_MUX_BLOCK_ANY 0x00000003 // aggregate of the mux flags above
45
Willy Tarreau315d8072017-12-10 22:17:57 +010046/* Flags indicating why writing to the demux is blocked.
47 * The first two ones directly affect the ability for the mux to receive data
48 * from the connection. The other ones affect the mux's ability to demux
49 * received data.
50 */
Willy Tarreau2e5b60e2017-09-25 11:49:03 +020051#define H2_CF_DEM_DALLOC 0x00000004 // demux blocked on lack of connection's demux buffer
52#define H2_CF_DEM_DFULL 0x00000008 // demux blocked on connection's demux buffer full
Willy Tarreau315d8072017-12-10 22:17:57 +010053
Willy Tarreau2e5b60e2017-09-25 11:49:03 +020054#define H2_CF_DEM_MBUSY 0x00000010 // demux blocked on connection's mux side busy
55#define H2_CF_DEM_MROOM 0x00000020 // demux blocked on lack of room in mux buffer
56#define H2_CF_DEM_SALLOC 0x00000040 // demux blocked on lack of stream's request buffer
57#define H2_CF_DEM_SFULL 0x00000080 // demux blocked on stream request buffer full
Willy Tarreauf2101912018-07-19 10:11:38 +020058#define H2_CF_DEM_TOOMANY 0x00000100 // demux blocked waiting for some conn_streams to leave
59#define H2_CF_DEM_BLOCK_ANY 0x000001F0 // aggregate of the demux flags above except DALLOC/DFULL
Willy Tarreau2e5b60e2017-09-25 11:49:03 +020060
Willy Tarreau081d4722017-05-16 21:51:05 +020061/* other flags */
Willy Tarreauf2101912018-07-19 10:11:38 +020062#define H2_CF_GOAWAY_SENT 0x00001000 // a GOAWAY frame was successfully sent
63#define H2_CF_GOAWAY_FAILED 0x00002000 // a GOAWAY frame failed to be sent
64#define H2_CF_WAIT_FOR_HS 0x00004000 // We did check that at least a stream was waiting for handshake
Willy Tarreaub3fb56d2018-10-03 13:56:38 +020065#define H2_CF_IS_BACK 0x00008000 // this is an outgoing connection
Willy Tarreau97aaa672018-12-23 09:49:04 +010066#define H2_CF_WINDOW_OPENED 0x00010000 // demux increased window already advertised
Willy Tarreau081d4722017-05-16 21:51:05 +020067
Willy Tarreau5ab6b572017-09-22 08:05:00 +020068/* H2 connection state, in h2c->st0 */
69enum h2_cs {
70 H2_CS_PREFACE, // init done, waiting for connection preface
71 H2_CS_SETTINGS1, // preface OK, waiting for first settings frame
72 H2_CS_FRAME_H, // first settings frame ok, waiting for frame header
73 H2_CS_FRAME_P, // frame header OK, waiting for frame payload
Willy Tarreaua20a5192017-12-27 11:02:06 +010074 H2_CS_FRAME_A, // frame payload OK, trying to send ACK frame
75 H2_CS_FRAME_E, // frame payload OK, trying to send RST frame
Willy Tarreau5ab6b572017-09-22 08:05:00 +020076 H2_CS_ERROR, // send GOAWAY(errcode) and close the connection ASAP
77 H2_CS_ERROR2, // GOAWAY(errcode) sent, close the connection ASAP
78 H2_CS_ENTRIES // must be last
79} __attribute__((packed));
80
81/* H2 connection descriptor */
82struct h2c {
83 struct connection *conn;
84
85 enum h2_cs st0; /* mux state */
86 enum h2_err errcode; /* H2 err code (H2_ERR_*) */
87
88 /* 16 bit hole here */
89 uint32_t flags; /* connection flags: H2_CF_* */
90 int32_t max_id; /* highest ID known on this connection, <0 before preface */
91 uint32_t rcvd_c; /* newly received data to ACK for the connection */
92 uint32_t rcvd_s; /* newly received data to ACK for the current stream (dsi) */
93
94 /* states for the demux direction */
95 struct hpack_dht *ddht; /* demux dynamic header table */
Willy Tarreauc9fa0482018-07-10 17:43:27 +020096 struct buffer dbuf; /* demux buffer */
Willy Tarreau5ab6b572017-09-22 08:05:00 +020097
98 int32_t dsi; /* demux stream ID (<0 = idle) */
99 int32_t dfl; /* demux frame length (if dsi >= 0) */
100 int8_t dft; /* demux frame type (if dsi >= 0) */
101 int8_t dff; /* demux frame flags (if dsi >= 0) */
Willy Tarreau05e5daf2017-12-11 15:17:36 +0100102 uint8_t dpl; /* demux pad length (part of dfl), init to 0 */
103 /* 8 bit hole here */
Willy Tarreau5ab6b572017-09-22 08:05:00 +0200104 int32_t last_sid; /* last processed stream ID for GOAWAY, <0 before preface */
105
106 /* states for the mux direction */
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200107 struct buffer mbuf; /* mux buffer */
Willy Tarreau5ab6b572017-09-22 08:05:00 +0200108 int32_t msi; /* mux stream ID (<0 = idle) */
109 int32_t mfl; /* mux frame length (if dsi >= 0) */
110 int8_t mft; /* mux frame type (if dsi >= 0) */
111 int8_t mff; /* mux frame flags (if dsi >= 0) */
112 /* 16 bit hole here */
113 int32_t miw; /* mux initial window size for all new streams */
114 int32_t mws; /* mux window size. Can be negative. */
115 int32_t mfs; /* mux's max frame size */
116
Willy Tarreauea392822017-10-31 10:02:25 +0100117 int timeout; /* idle timeout duration in ticks */
Willy Tarreau599391a2017-11-24 10:16:00 +0100118 int shut_timeout; /* idle timeout duration in ticks after GOAWAY was sent */
Willy Tarreau49745612017-12-03 18:56:02 +0100119 unsigned int nb_streams; /* number of streams in the tree */
Willy Tarreau7ac60e82018-07-19 09:04:05 +0200120 unsigned int nb_cs; /* number of attached conn_streams */
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100121 unsigned int nb_reserved; /* number of reserved streams */
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100122 unsigned int stream_cnt; /* total number of streams seen */
Willy Tarreau0b37d652018-10-03 10:33:02 +0200123 struct proxy *proxy; /* the proxy this connection was created for */
Willy Tarreauea392822017-10-31 10:02:25 +0100124 struct task *task; /* timeout management task */
Willy Tarreau5ab6b572017-09-22 08:05:00 +0200125 struct eb_root streams_by_id; /* all active streams by their ID */
126 struct list send_list; /* list of blocked streams requesting to send */
127 struct list fctl_list; /* list of streams blocked by connection's fctl */
Olivier Houchardd846c262018-10-19 17:24:29 +0200128 struct list sending_list; /* list of h2s scheduled to send data */
Willy Tarreau44e973f2018-03-01 17:49:30 +0100129 struct buffer_wait buf_wait; /* wait list for buffer allocations */
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200130 struct wait_event wait_event; /* To be used if we're waiting for I/Os */
Willy Tarreau5ab6b572017-09-22 08:05:00 +0200131};
132
Willy Tarreau18312642017-10-11 07:57:07 +0200133/* H2 stream state, in h2s->st */
134enum h2_ss {
135 H2_SS_IDLE = 0, // idle
136 H2_SS_RLOC, // reserved(local)
137 H2_SS_RREM, // reserved(remote)
138 H2_SS_OPEN, // open
139 H2_SS_HREM, // half-closed(remote)
140 H2_SS_HLOC, // half-closed(local)
Willy Tarreau96060ba2017-10-16 18:34:34 +0200141 H2_SS_ERROR, // an error needs to be sent using RST_STREAM
Willy Tarreau18312642017-10-11 07:57:07 +0200142 H2_SS_CLOSED, // closed
143 H2_SS_ENTRIES // must be last
144} __attribute__((packed));
145
146/* HTTP/2 stream flags (32 bit), in h2s->flags */
147#define H2_SF_NONE 0x00000000
148#define H2_SF_ES_RCVD 0x00000001
149#define H2_SF_ES_SENT 0x00000002
150
151#define H2_SF_RST_RCVD 0x00000004 // received RST_STREAM
152#define H2_SF_RST_SENT 0x00000008 // sent RST_STREAM
153
Willy Tarreau2e5b60e2017-09-25 11:49:03 +0200154/* stream flags indicating the reason the stream is blocked */
155#define H2_SF_BLK_MBUSY 0x00000010 // blocked waiting for mux access (transient)
156#define H2_SF_BLK_MROOM 0x00000020 // blocked waiting for room in the mux
157#define H2_SF_BLK_MFCTL 0x00000040 // blocked due to mux fctl
158#define H2_SF_BLK_SFCTL 0x00000080 // blocked due to stream fctl
159#define H2_SF_BLK_ANY 0x000000F0 // any of the reasons above
160
Willy Tarreau454f9052017-10-26 19:40:35 +0200161/* stream flags indicating how data is supposed to be sent */
162#define H2_SF_DATA_CLEN 0x00000100 // data sent using content-length
163#define H2_SF_DATA_CHNK 0x00000200 // data sent using chunked-encoding
164
165/* step we're currently in when sending chunks. This is needed because we may
166 * have to transfer chunks as large as a full buffer so there's no room left
167 * for size nor crlf around.
168 */
169#define H2_SF_CHNK_SIZE 0x00000000 // trying to send chunk size
170#define H2_SF_CHNK_DATA 0x00000400 // trying to send chunk data
171#define H2_SF_CHNK_CRLF 0x00000800 // trying to send chunk crlf after data
172
173#define H2_SF_CHNK_MASK 0x00000C00 // trying to send chunk size
174
Willy Tarreau67434202017-11-06 20:20:51 +0100175#define H2_SF_HEADERS_SENT 0x00001000 // a HEADERS frame was sent for this stream
Willy Tarreauc4312d32017-11-07 12:01:53 +0100176#define H2_SF_OUTGOING_DATA 0x00002000 // set whenever we've seen outgoing data
Willy Tarreau67434202017-11-06 20:20:51 +0100177
Willy Tarreau6cc85a52019-01-02 15:49:20 +0100178#define H2_SF_HEADERS_RCVD 0x00004000 // a HEADERS frame was received for this stream
179
Willy Tarreau18312642017-10-11 07:57:07 +0200180/* H2 stream descriptor, describing the stream as it appears in the H2C, and as
181 * it is being processed in the internal HTTP representation (H1 for now).
182 */
183struct h2s {
184 struct conn_stream *cs;
Olivier Houchardf502aca2018-12-14 19:42:40 +0100185 struct session *sess;
Willy Tarreau18312642017-10-11 07:57:07 +0200186 struct h2c *h2c;
Willy Tarreaua40704a2018-09-11 13:52:04 +0200187 struct h1m h1m; /* request or response parser state for H1 */
Willy Tarreau18312642017-10-11 07:57:07 +0200188 struct eb32_node by_id; /* place in h2c's streams_by_id */
Willy Tarreau18312642017-10-11 07:57:07 +0200189 int32_t id; /* stream ID */
190 uint32_t flags; /* H2_SF_* */
191 int mws; /* mux window size for this stream */
192 enum h2_err errcode; /* H2 err code (H2_ERR_*) */
193 enum h2_ss st;
Willy Tarreau9c5e22e2018-09-11 19:22:14 +0200194 uint16_t status; /* HTTP response status */
Willy Tarreau1915ca22019-01-24 11:49:37 +0100195 unsigned long long body_len; /* remaining body length according to content-length if H2_SF_DATA_CLEN */
Olivier Houchard638b7992018-08-16 15:41:52 +0200196 struct buffer rxbuf; /* receive buffer, always valid (buf_empty or real buffer) */
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200197 struct wait_event wait_event; /* Wait list, when we're attempting to send a RST but we can't send */
198 struct wait_event *recv_wait; /* Address of the wait_event the conn_stream associated is waiting on */
199 struct wait_event *send_wait; /* The streeam is waiting for flow control */
200 struct list list; /* To be used when adding in h2c->send_list or h2c->fctl_lsit */
Willy Tarreau18312642017-10-11 07:57:07 +0200201};
Willy Tarreau5ab6b572017-09-22 08:05:00 +0200202
Willy Tarreauc6405142017-09-21 20:23:50 +0200203/* descriptor for an h2 frame header */
204struct h2_fh {
205 uint32_t len; /* length, host order, 24 bits */
206 uint32_t sid; /* stream id, host order, 31 bits */
207 uint8_t ft; /* frame type */
208 uint8_t ff; /* frame flags */
209};
210
Willy Tarreau8ceae722018-11-26 11:58:30 +0100211/* the h2c connection pool */
212DECLARE_STATIC_POOL(pool_head_h2c, "h2c", sizeof(struct h2c));
213
214/* the h2s stream pool */
215DECLARE_STATIC_POOL(pool_head_h2s, "h2s", sizeof(struct h2s));
216
Willy Tarreaudc572362018-12-12 08:08:05 +0100217/* The default connection window size is 65535, it may only be enlarged using
218 * a WINDOW_UPDATE message. Since the window must never be larger than 2G-1,
219 * we'll pretend we already received the difference between the two to send
220 * an equivalent window update to enlarge it to 2G-1.
221 */
222#define H2_INITIAL_WINDOW_INCREMENT ((1U<<31)-1 - 65535)
223
Willy Tarreaufe20e5b2017-07-27 11:42:14 +0200224/* a few settings from the global section */
225static int h2_settings_header_table_size = 4096; /* initial value */
Willy Tarreaue6baec02017-07-27 11:45:11 +0200226static int h2_settings_initial_window_size = 65535; /* initial value */
Willy Tarreau5242ef82017-07-27 11:47:28 +0200227static int h2_settings_max_concurrent_streams = 100;
Willy Tarreaufe20e5b2017-07-27 11:42:14 +0200228
Willy Tarreau2a856182017-05-16 15:20:39 +0200229/* a dmumy closed stream */
230static const struct h2s *h2_closed_stream = &(const struct h2s){
231 .cs = NULL,
232 .h2c = NULL,
233 .st = H2_SS_CLOSED,
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +0100234 .errcode = H2_ERR_STREAM_CLOSED,
Willy Tarreauab837502017-12-27 15:07:30 +0100235 .flags = H2_SF_RST_RCVD,
Willy Tarreau2a856182017-05-16 15:20:39 +0200236 .id = 0,
237};
238
Willy Tarreauecb9dcd2019-01-03 12:00:17 +0100239/* a dmumy closed stream returning a PROTOCOL_ERROR error */
240static const struct h2s *h2_error_stream = &(const struct h2s){
241 .cs = NULL,
242 .h2c = NULL,
243 .st = H2_SS_CLOSED,
244 .errcode = H2_ERR_PROTOCOL_ERROR,
245 .flags = 0,
246 .id = 0,
247};
248
Willy Tarreau8d0d58b2018-12-23 18:29:12 +0100249/* a dmumy closed stream returning a REFUSED_STREAM error */
250static const struct h2s *h2_refused_stream = &(const struct h2s){
251 .cs = NULL,
252 .h2c = NULL,
253 .st = H2_SS_CLOSED,
254 .errcode = H2_ERR_REFUSED_STREAM,
255 .flags = 0,
256 .id = 0,
257};
258
Willy Tarreau2a856182017-05-16 15:20:39 +0200259/* and a dummy idle stream for use with any unannounced stream */
260static const struct h2s *h2_idle_stream = &(const struct h2s){
261 .cs = NULL,
262 .h2c = NULL,
263 .st = H2_SS_IDLE,
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +0100264 .errcode = H2_ERR_STREAM_CLOSED,
Willy Tarreau2a856182017-05-16 15:20:39 +0200265 .id = 0,
266};
267
Olivier Houchard9f6af332018-05-25 14:04:04 +0200268static struct task *h2_timeout_task(struct task *t, void *context, unsigned short state);
Olivier Houchardd4dd22d2018-08-17 18:39:46 +0200269static int h2_send(struct h2c *h2c);
270static int h2_recv(struct h2c *h2c);
Olivier Houchard7505f942018-08-21 18:10:44 +0200271static int h2_process(struct h2c *h2c);
Olivier Houchard29fb89d2018-08-02 18:56:36 +0200272static struct task *h2_io_cb(struct task *t, void *ctx, unsigned short state);
Willy Tarreau0b559072018-02-26 15:22:17 +0100273static inline struct h2s *h2c_st_by_id(struct h2c *h2c, int id);
Willy Tarreau4790f7c2019-01-24 11:33:02 +0100274static int h2c_decode_headers(struct h2c *h2c, struct buffer *rxbuf, uint32_t *flags, unsigned long long *body_len);
Willy Tarreaua56a6de2018-02-26 15:59:07 +0100275static int h2_frt_transfer_data(struct h2s *h2s);
Olivier Houchard8ae735d2018-09-11 18:24:28 +0200276static struct task *h2_deferred_shut(struct task *t, void *ctx, unsigned short state);
Olivier Houchardf502aca2018-12-14 19:42:40 +0100277static struct h2s *h2c_bck_stream_new(struct h2c *h2c, struct conn_stream *cs, struct session *sess);
Willy Tarreau8b2757c2018-12-19 17:36:48 +0100278static void h2s_alert(struct h2s *h2s);
Willy Tarreaufe20e5b2017-07-27 11:42:14 +0200279
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200280/*****************************************************/
281/* functions below are for dynamic buffer management */
282/*****************************************************/
283
Willy Tarreau315d8072017-12-10 22:17:57 +0100284/* indicates whether or not the we may call the h2_recv() function to attempt
285 * to receive data into the buffer and/or demux pending data. The condition is
286 * a bit complex due to some API limits for now. The rules are the following :
287 * - if an error or a shutdown was detected on the connection and the buffer
288 * is empty, we must not attempt to receive
289 * - if the demux buf failed to be allocated, we must not try to receive and
290 * we know there is nothing pending
Willy Tarreau6042aeb2017-12-12 11:01:44 +0100291 * - if no flag indicates a blocking condition, we may attempt to receive,
292 * regardless of whether the demux buffer is full or not, so that only
293 * de demux part decides whether or not to block. This is needed because
294 * the connection API indeed prevents us from re-enabling receipt that is
295 * already enabled in a polled state, so we must always immediately stop
296 * as soon as the demux can't proceed so as never to hit an end of read
297 * with data pending in the buffers.
Willy Tarreau315d8072017-12-10 22:17:57 +0100298 * - otherwise must may not attempt
299 */
300static inline int h2_recv_allowed(const struct h2c *h2c)
301{
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200302 if (b_data(&h2c->dbuf) == 0 &&
Willy Tarreau315d8072017-12-10 22:17:57 +0100303 (h2c->st0 >= H2_CS_ERROR ||
304 h2c->conn->flags & CO_FL_ERROR ||
305 conn_xprt_read0_pending(h2c->conn)))
306 return 0;
307
308 if (!(h2c->flags & H2_CF_DEM_DALLOC) &&
Willy Tarreau6042aeb2017-12-12 11:01:44 +0100309 !(h2c->flags & H2_CF_DEM_BLOCK_ANY))
Willy Tarreau315d8072017-12-10 22:17:57 +0100310 return 1;
311
312 return 0;
313}
314
Willy Tarreau47b515a2018-12-21 16:09:41 +0100315/* restarts reading on the connection if it was not enabled */
316static inline void h2c_restart_reading(const struct h2c *h2c)
317{
318 if (!h2_recv_allowed(h2c))
319 return;
Willy Tarreau872e2fa2019-01-03 08:27:41 +0100320 if (!b_data(&h2c->dbuf) && (h2c->wait_event.events & SUB_RETRY_RECV))
Willy Tarreau47b515a2018-12-21 16:09:41 +0100321 return;
322 tasklet_wakeup(h2c->wait_event.task);
323}
324
325
Willy Tarreauf2101912018-07-19 10:11:38 +0200326/* returns true if the connection has too many conn_streams attached */
327static inline int h2_has_too_many_cs(const struct h2c *h2c)
328{
Willy Tarreaua8754662018-12-23 20:43:58 +0100329 return h2c->nb_cs > h2_settings_max_concurrent_streams;
Willy Tarreauf2101912018-07-19 10:11:38 +0200330}
331
Willy Tarreau44e973f2018-03-01 17:49:30 +0100332/* Tries to grab a buffer and to re-enable processing on mux <target>. The h2c
333 * flags are used to figure what buffer was requested. It returns 1 if the
334 * allocation succeeds, in which case the connection is woken up, or 0 if it's
335 * impossible to wake up and we prefer to be woken up later.
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200336 */
Willy Tarreau44e973f2018-03-01 17:49:30 +0100337static int h2_buf_available(void *target)
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200338{
339 struct h2c *h2c = target;
Willy Tarreau0b559072018-02-26 15:22:17 +0100340 struct h2s *h2s;
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200341
Willy Tarreau44e973f2018-03-01 17:49:30 +0100342 if ((h2c->flags & H2_CF_DEM_DALLOC) && b_alloc_margin(&h2c->dbuf, 0)) {
Willy Tarreau1b62c5c2017-09-25 11:55:01 +0200343 h2c->flags &= ~H2_CF_DEM_DALLOC;
Willy Tarreau47b515a2018-12-21 16:09:41 +0100344 h2c_restart_reading(h2c);
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200345 return 1;
346 }
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200347
Willy Tarreau44e973f2018-03-01 17:49:30 +0100348 if ((h2c->flags & H2_CF_MUX_MALLOC) && b_alloc_margin(&h2c->mbuf, 0)) {
349 h2c->flags &= ~H2_CF_MUX_MALLOC;
Willy Tarreau1b62c5c2017-09-25 11:55:01 +0200350
351 if (h2c->flags & H2_CF_DEM_MROOM) {
352 h2c->flags &= ~H2_CF_DEM_MROOM;
Willy Tarreau47b515a2018-12-21 16:09:41 +0100353 h2c_restart_reading(h2c);
Willy Tarreau1b62c5c2017-09-25 11:55:01 +0200354 }
Willy Tarreau14398122017-09-22 14:26:04 +0200355 return 1;
356 }
Willy Tarreau0b559072018-02-26 15:22:17 +0100357
358 if ((h2c->flags & H2_CF_DEM_SALLOC) &&
359 (h2s = h2c_st_by_id(h2c, h2c->dsi)) && h2s->cs &&
Olivier Houchard638b7992018-08-16 15:41:52 +0200360 b_alloc_margin(&h2s->rxbuf, 0)) {
Willy Tarreau0b559072018-02-26 15:22:17 +0100361 h2c->flags &= ~H2_CF_DEM_SALLOC;
Willy Tarreau47b515a2018-12-21 16:09:41 +0100362 h2c_restart_reading(h2c);
Willy Tarreau0b559072018-02-26 15:22:17 +0100363 return 1;
364 }
365
Willy Tarreau14398122017-09-22 14:26:04 +0200366 return 0;
367}
368
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200369static inline struct buffer *h2_get_buf(struct h2c *h2c, struct buffer *bptr)
Willy Tarreau14398122017-09-22 14:26:04 +0200370{
371 struct buffer *buf = NULL;
372
Willy Tarreau44e973f2018-03-01 17:49:30 +0100373 if (likely(LIST_ISEMPTY(&h2c->buf_wait.list)) &&
374 unlikely((buf = b_alloc_margin(bptr, 0)) == NULL)) {
375 h2c->buf_wait.target = h2c;
376 h2c->buf_wait.wakeup_cb = h2_buf_available;
Christopher Faulet2a944ee2017-11-07 10:42:54 +0100377 HA_SPIN_LOCK(BUF_WQ_LOCK, &buffer_wq_lock);
Willy Tarreau44e973f2018-03-01 17:49:30 +0100378 LIST_ADDQ(&buffer_wq, &h2c->buf_wait.list);
Christopher Faulet2a944ee2017-11-07 10:42:54 +0100379 HA_SPIN_UNLOCK(BUF_WQ_LOCK, &buffer_wq_lock);
Willy Tarreau14398122017-09-22 14:26:04 +0200380 __conn_xprt_stop_recv(h2c->conn);
381 }
382 return buf;
383}
384
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200385static inline void h2_release_buf(struct h2c *h2c, struct buffer *bptr)
Willy Tarreau14398122017-09-22 14:26:04 +0200386{
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200387 if (bptr->size) {
Willy Tarreau44e973f2018-03-01 17:49:30 +0100388 b_free(bptr);
Olivier Houchard673867c2018-05-25 16:58:52 +0200389 offer_buffers(h2c->buf_wait.target, tasks_run_queue);
Willy Tarreau14398122017-09-22 14:26:04 +0200390 }
391}
392
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100393/* returns the number of allocatable outgoing streams for the connection taking
394 * the last_sid and the reserved ones into account.
395 */
396static inline int h2_streams_left(const struct h2c *h2c)
397{
398 int ret;
399
400 /* consider the number of outgoing streams we're allowed to create before
401 * reaching the last GOAWAY frame seen. max_id is the last assigned id,
402 * nb_reserved is the number of streams which don't yet have an ID.
403 */
404 ret = (h2c->last_sid >= 0) ? h2c->last_sid : 0x7FFFFFFF;
405 ret = (unsigned int)(ret - h2c->max_id) / 2 - h2c->nb_reserved - 1;
406 if (ret < 0)
407 ret = 0;
408 return ret;
409}
410
411/* returns the number of concurrent streams available on the connection */
Olivier Houchardd540b362018-11-05 18:37:53 +0100412static int h2_avail_streams(struct connection *conn)
413{
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100414 struct server *srv = objt_server(conn->target);
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100415 struct h2c *h2c = conn->ctx;
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100416 int ret1, ret2;
Olivier Houchardd540b362018-11-05 18:37:53 +0100417
Willy Tarreau6afec462019-01-28 06:40:19 +0100418 /* RFC7540#6.8: Receivers of a GOAWAY frame MUST NOT open additional
419 * streams on the connection.
420 */
421 if (h2c->last_sid >= 0)
422 return 0;
423
Olivier Houchard8defe4b2018-12-02 01:31:17 +0100424 /* XXX Should use the negociated max concurrent stream nb instead of the conf value */
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100425 ret1 = h2_settings_max_concurrent_streams - h2c->nb_streams;
426
427 /* we must also consider the limit imposed by stream IDs */
428 ret2 = h2_streams_left(h2c);
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100429 ret1 = MIN(ret1, ret2);
430 if (ret1 && srv && srv->max_reuse >= 0) {
431 ret2 = h2c->stream_cnt <= srv->max_reuse ? srv->max_reuse - h2c->stream_cnt + 1: 0;
432 ret1 = MIN(ret1, ret2);
433 }
434 return ret1;
Olivier Houchardd540b362018-11-05 18:37:53 +0100435}
436
Olivier Houchard8defe4b2018-12-02 01:31:17 +0100437static int h2_max_streams(struct connection *conn)
438{
439 /* XXX Should use the negociated max concurrent stream nb instead of the conf value */
440 return h2_settings_max_concurrent_streams;
441}
442
Willy Tarreau35dbd5d2017-09-22 09:13:49 +0200443
Willy Tarreau62f52692017-10-08 23:01:42 +0200444/*****************************************************************/
445/* functions below are dedicated to the mux setup and management */
446/*****************************************************************/
447
Willy Tarreau7dc24e42018-10-03 13:52:41 +0200448/* Initialize the mux once it's attached. For outgoing connections, the context
449 * is already initialized before installing the mux, so we detect incoming
450 * connections from the fact that the context is still NULL. Returns < 0 on
451 * error.
452 */
Olivier Houchardf502aca2018-12-14 19:42:40 +0100453static int h2_init(struct connection *conn, struct proxy *prx, struct session *sess)
Willy Tarreau32218eb2017-09-22 08:07:25 +0200454{
455 struct h2c *h2c;
Willy Tarreauea392822017-10-31 10:02:25 +0100456 struct task *t = NULL;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200457
Willy Tarreaubafbe012017-11-24 17:34:44 +0100458 h2c = pool_alloc(pool_head_h2c);
Willy Tarreau32218eb2017-09-22 08:07:25 +0200459 if (!h2c)
mildiscd2d7de2018-10-02 16:44:18 +0200460 goto fail_no_h2c;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200461
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100462 if (conn->ctx) {
Willy Tarreau01b44822018-10-03 14:26:37 +0200463 h2c->flags = H2_CF_IS_BACK;
464 h2c->shut_timeout = h2c->timeout = prx->timeout.server;
465 if (tick_isset(prx->timeout.serverfin))
466 h2c->shut_timeout = prx->timeout.serverfin;
467 } else {
468 h2c->flags = H2_CF_NONE;
469 h2c->shut_timeout = h2c->timeout = prx->timeout.client;
470 if (tick_isset(prx->timeout.clientfin))
471 h2c->shut_timeout = prx->timeout.clientfin;
472 }
Willy Tarreau3f133572017-10-31 19:21:06 +0100473
Willy Tarreau0b37d652018-10-03 10:33:02 +0200474 h2c->proxy = prx;
Willy Tarreau33400292017-11-05 11:23:40 +0100475 h2c->task = NULL;
Willy Tarreau3f133572017-10-31 19:21:06 +0100476 if (tick_isset(h2c->timeout)) {
477 t = task_new(tid_bit);
478 if (!t)
479 goto fail;
480
481 h2c->task = t;
482 t->process = h2_timeout_task;
483 t->context = h2c;
484 t->expire = tick_add(now_ms, h2c->timeout);
485 }
Willy Tarreauea392822017-10-31 10:02:25 +0100486
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200487 h2c->wait_event.task = tasklet_new();
488 if (!h2c->wait_event.task)
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200489 goto fail;
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200490 h2c->wait_event.task->process = h2_io_cb;
491 h2c->wait_event.task->context = h2c;
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100492 h2c->wait_event.events = 0;
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200493
Willy Tarreau32218eb2017-09-22 08:07:25 +0200494 h2c->ddht = hpack_dht_alloc(h2_settings_header_table_size);
495 if (!h2c->ddht)
496 goto fail;
497
498 /* Initialise the context. */
499 h2c->st0 = H2_CS_PREFACE;
500 h2c->conn = conn;
501 h2c->max_id = -1;
502 h2c->errcode = H2_ERR_NO_ERROR;
Willy Tarreau97aaa672018-12-23 09:49:04 +0100503 h2c->rcvd_c = 0;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200504 h2c->rcvd_s = 0;
Willy Tarreau49745612017-12-03 18:56:02 +0100505 h2c->nb_streams = 0;
Willy Tarreau7ac60e82018-07-19 09:04:05 +0200506 h2c->nb_cs = 0;
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100507 h2c->nb_reserved = 0;
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100508 h2c->stream_cnt = 0;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200509
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200510 h2c->dbuf = BUF_NULL;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200511 h2c->dsi = -1;
512 h2c->msi = -1;
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100513
Willy Tarreau32218eb2017-09-22 08:07:25 +0200514 h2c->last_sid = -1;
515
Willy Tarreauc9fa0482018-07-10 17:43:27 +0200516 h2c->mbuf = BUF_NULL;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200517 h2c->miw = 65535; /* mux initial window size */
518 h2c->mws = 65535; /* mux window size */
519 h2c->mfs = 16384; /* initial max frame size */
Willy Tarreau751f2d02018-10-05 09:35:00 +0200520 h2c->streams_by_id = EB_ROOT;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200521 LIST_INIT(&h2c->send_list);
522 LIST_INIT(&h2c->fctl_list);
Olivier Houchardd846c262018-10-19 17:24:29 +0200523 LIST_INIT(&h2c->sending_list);
Willy Tarreau44e973f2018-03-01 17:49:30 +0100524 LIST_INIT(&h2c->buf_wait.list);
Willy Tarreau32218eb2017-09-22 08:07:25 +0200525
Willy Tarreau3f133572017-10-31 19:21:06 +0100526 if (t)
527 task_queue(t);
Willy Tarreauea392822017-10-31 10:02:25 +0100528
Willy Tarreau01b44822018-10-03 14:26:37 +0200529 if (h2c->flags & H2_CF_IS_BACK) {
530 /* FIXME: this is temporary, for outgoing connections we need
531 * to immediately allocate a stream until the code is modified
532 * so that the caller calls ->attach(). For now the outgoing cs
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100533 * is stored as conn->ctx by the caller.
Willy Tarreau01b44822018-10-03 14:26:37 +0200534 */
535 struct h2s *h2s;
536
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100537 h2s = h2c_bck_stream_new(h2c, conn->ctx, sess);
Willy Tarreau01b44822018-10-03 14:26:37 +0200538 if (!h2s)
539 goto fail_stream;
540 }
541
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100542 conn->ctx = h2c;
Willy Tarreau01b44822018-10-03 14:26:37 +0200543
Willy Tarreau0f383582018-10-03 14:22:21 +0200544 /* prepare to read something */
Willy Tarreau47b515a2018-12-21 16:09:41 +0100545 h2c_restart_reading(h2c);
Willy Tarreau32218eb2017-09-22 08:07:25 +0200546 return 0;
Willy Tarreau01b44822018-10-03 14:26:37 +0200547 fail_stream:
548 hpack_dht_free(h2c->ddht);
mildiscd2d7de2018-10-02 16:44:18 +0200549 fail:
Willy Tarreauea392822017-10-31 10:02:25 +0100550 if (t)
551 task_free(t);
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200552 if (h2c->wait_event.task)
553 tasklet_free(h2c->wait_event.task);
Willy Tarreaubafbe012017-11-24 17:34:44 +0100554 pool_free(pool_head_h2c, h2c);
mildiscd2d7de2018-10-02 16:44:18 +0200555 fail_no_h2c:
Willy Tarreau32218eb2017-09-22 08:07:25 +0200556 return -1;
557}
558
Willy Tarreau751f2d02018-10-05 09:35:00 +0200559/* returns the next allocatable outgoing stream ID for the H2 connection, or
560 * -1 if no more is allocatable.
561 */
562static inline int32_t h2c_get_next_sid(const struct h2c *h2c)
563{
564 int32_t id = (h2c->max_id + 1) | 1;
Willy Tarreaua80dca82019-01-24 17:08:28 +0100565
566 if ((id & 0x80000000U) || (h2c->last_sid >= 0 && id > h2c->last_sid))
Willy Tarreau751f2d02018-10-05 09:35:00 +0200567 id = -1;
568 return id;
569}
570
Willy Tarreau2373acc2017-10-12 17:35:14 +0200571/* returns the stream associated with id <id> or NULL if not found */
572static inline struct h2s *h2c_st_by_id(struct h2c *h2c, int id)
573{
574 struct eb32_node *node;
575
Willy Tarreau751f2d02018-10-05 09:35:00 +0200576 if (id == 0)
577 return (struct h2s *)h2_closed_stream;
578
Willy Tarreau2a856182017-05-16 15:20:39 +0200579 if (id > h2c->max_id)
580 return (struct h2s *)h2_idle_stream;
581
Willy Tarreau2373acc2017-10-12 17:35:14 +0200582 node = eb32_lookup(&h2c->streams_by_id, id);
583 if (!node)
Willy Tarreau2a856182017-05-16 15:20:39 +0200584 return (struct h2s *)h2_closed_stream;
Willy Tarreau2373acc2017-10-12 17:35:14 +0200585
586 return container_of(node, struct h2s, by_id);
587}
588
Willy Tarreau62f52692017-10-08 23:01:42 +0200589/* release function for a connection. This one should be called to free all
590 * resources allocated to the mux.
591 */
592static void h2_release(struct connection *conn)
593{
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100594 struct h2c *h2c = conn->ctx;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200595
596 LIST_DEL(&conn->list);
597
598 if (h2c) {
599 hpack_dht_free(h2c->ddht);
Willy Tarreau14398122017-09-22 14:26:04 +0200600
Christopher Faulet2a944ee2017-11-07 10:42:54 +0100601 HA_SPIN_LOCK(BUF_WQ_LOCK, &buffer_wq_lock);
Willy Tarreau44e973f2018-03-01 17:49:30 +0100602 LIST_DEL(&h2c->buf_wait.list);
Christopher Faulet2a944ee2017-11-07 10:42:54 +0100603 HA_SPIN_UNLOCK(BUF_WQ_LOCK, &buffer_wq_lock);
Willy Tarreau14398122017-09-22 14:26:04 +0200604
Willy Tarreau44e973f2018-03-01 17:49:30 +0100605 h2_release_buf(h2c, &h2c->dbuf);
606 h2_release_buf(h2c, &h2c->mbuf);
607
Willy Tarreauea392822017-10-31 10:02:25 +0100608 if (h2c->task) {
Willy Tarreau0975f112018-03-29 15:22:59 +0200609 h2c->task->context = NULL;
610 task_wakeup(h2c->task, TASK_WOKEN_OTHER);
Willy Tarreauea392822017-10-31 10:02:25 +0100611 h2c->task = NULL;
612 }
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200613 if (h2c->wait_event.task)
614 tasklet_free(h2c->wait_event.task);
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100615 if (h2c->wait_event.events != 0)
616 conn->xprt->unsubscribe(conn, h2c->wait_event.events,
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200617 &h2c->wait_event);
Willy Tarreauea392822017-10-31 10:02:25 +0100618
Willy Tarreaubafbe012017-11-24 17:34:44 +0100619 pool_free(pool_head_h2c, h2c);
Willy Tarreau32218eb2017-09-22 08:07:25 +0200620 }
621
622 conn->mux = NULL;
Willy Tarreau3d2ee552018-12-19 14:12:10 +0100623 conn->ctx = NULL;
Willy Tarreau32218eb2017-09-22 08:07:25 +0200624
625 conn_stop_tracking(conn);
626 conn_full_close(conn);
627 if (conn->destroy_cb)
628 conn->destroy_cb(conn);
629 conn_free(conn);
Willy Tarreau62f52692017-10-08 23:01:42 +0200630}
631
632
Willy Tarreau71681172017-10-23 14:39:06 +0200633/******************************************************/
634/* functions below are for the H2 protocol processing */
635/******************************************************/
636
637/* returns the stream if of stream <h2s> or 0 if <h2s> is NULL */
Willy Tarreau1f094672017-11-20 21:27:45 +0100638static inline __maybe_unused int h2s_id(const struct h2s *h2s)
Willy Tarreau71681172017-10-23 14:39:06 +0200639{
640 return h2s ? h2s->id : 0;
641}
642
Willy Tarreau5b5e6872017-09-25 16:17:25 +0200643/* returns true of the mux is currently busy as seen from stream <h2s> */
Willy Tarreau1f094672017-11-20 21:27:45 +0100644static inline __maybe_unused int h2c_mux_busy(const struct h2c *h2c, const struct h2s *h2s)
Willy Tarreau5b5e6872017-09-25 16:17:25 +0200645{
646 if (h2c->msi < 0)
647 return 0;
648
649 if (h2c->msi == h2s_id(h2s))
650 return 0;
651
652 return 1;
653}
654
Willy Tarreau741d6df2017-10-17 08:00:59 +0200655/* marks an error on the connection */
Willy Tarreau1f094672017-11-20 21:27:45 +0100656static inline __maybe_unused void h2c_error(struct h2c *h2c, enum h2_err err)
Willy Tarreau741d6df2017-10-17 08:00:59 +0200657{
658 h2c->errcode = err;
659 h2c->st0 = H2_CS_ERROR;
660}
661
Willy Tarreau175cebb2019-01-24 10:02:24 +0100662/* marks an error on the stream. It may also update an already closed stream
663 * (e.g. to report an error after an RST was received).
664 */
Willy Tarreau1f094672017-11-20 21:27:45 +0100665static inline __maybe_unused void h2s_error(struct h2s *h2s, enum h2_err err)
Willy Tarreau2e43f082017-10-17 08:03:59 +0200666{
Willy Tarreau175cebb2019-01-24 10:02:24 +0100667 if (h2s->id && h2s->st != H2_SS_ERROR) {
Willy Tarreau2e43f082017-10-17 08:03:59 +0200668 h2s->errcode = err;
Willy Tarreau175cebb2019-01-24 10:02:24 +0100669 if (h2s->st < H2_SS_ERROR)
670 h2s->st = H2_SS_ERROR;
Willy Tarreauec988c72018-12-19 18:00:29 +0100671 if (h2s->cs)
672 cs_set_error(h2s->cs);
Willy Tarreau2e43f082017-10-17 08:03:59 +0200673 }
674}
675
Willy Tarreau7e094452018-12-19 18:08:52 +0100676/* attempt to notify the data layer of recv availability */
677static void __maybe_unused h2s_notify_recv(struct h2s *h2s)
678{
679 struct wait_event *sw;
680
681 if (h2s->recv_wait) {
682 sw = h2s->recv_wait;
683 sw->events &= ~SUB_RETRY_RECV;
684 tasklet_wakeup(sw->task);
685 h2s->recv_wait = NULL;
686 }
687}
688
689/* attempt to notify the data layer of send availability */
690static void __maybe_unused h2s_notify_send(struct h2s *h2s)
691{
692 struct wait_event *sw;
693
694 if (h2s->send_wait) {
695 sw = h2s->send_wait;
696 sw->events &= ~SUB_RETRY_SEND;
697 tasklet_wakeup(sw->task);
698 h2s->send_wait = NULL;
Willy Tarreau645b33d2018-12-20 15:35:57 +0100699 LIST_DEL(&h2s->list);
700 LIST_INIT(&h2s->list);
Willy Tarreau7e094452018-12-19 18:08:52 +0100701 }
702}
703
Willy Tarreau8b2757c2018-12-19 17:36:48 +0100704/* alerts the data layer, trying to wake it up by all means, following
705 * this sequence :
706 * - if the h2s' data layer is subscribed to recv, then it's woken up for recv
707 * - if its subscribed to send, then it's woken up for send
708 * - if it was subscribed to neither, its ->wake() callback is called
709 * It is safe to call this function with a closed stream which doesn't have a
710 * conn_stream anymore.
711 */
712static void __maybe_unused h2s_alert(struct h2s *h2s)
713{
714 if (h2s->recv_wait || h2s->send_wait) {
715 h2s_notify_recv(h2s);
716 h2s_notify_send(h2s);
717 }
718 else if (h2s->cs && h2s->cs->data_cb->wake != NULL)
719 h2s->cs->data_cb->wake(h2s->cs);
720}
721
Willy Tarreaue4820742017-07-27 13:37:23 +0200722/* writes the 24-bit frame size <len> at address <frame> */
Willy Tarreau1f094672017-11-20 21:27:45 +0100723static inline __maybe_unused void h2_set_frame_size(void *frame, uint32_t len)
Willy Tarreaue4820742017-07-27 13:37:23 +0200724{
725 uint8_t *out = frame;
726
727 *out = len >> 16;
728 write_n16(out + 1, len);
729}
730
Willy Tarreau54c15062017-10-10 17:10:03 +0200731/* reads <bytes> bytes from buffer <b> starting at relative offset <o> from the
732 * current pointer, dealing with wrapping, and stores the result in <dst>. It's
733 * the caller's responsibility to verify that there are at least <bytes> bytes
Willy Tarreau9c7f2d12018-06-15 11:51:32 +0200734 * available in the buffer's input prior to calling this function. The buffer
735 * is assumed not to hold any output data.
Willy Tarreau54c15062017-10-10 17:10:03 +0200736 */
Willy Tarreau1f094672017-11-20 21:27:45 +0100737static inline __maybe_unused void h2_get_buf_bytes(void *dst, size_t bytes,
Willy Tarreau54c15062017-10-10 17:10:03 +0200738 const struct buffer *b, int o)
739{
Willy Tarreau591d4452018-06-15 17:21:00 +0200740 readv_bytes(dst, bytes, b_peek(b, o), b_wrap(b) - b_peek(b, o), b_orig(b));
Willy Tarreau54c15062017-10-10 17:10:03 +0200741}
742
Willy Tarreau1f094672017-11-20 21:27:45 +0100743static inline __maybe_unused uint16_t h2_get_n16(const struct buffer *b, int o)
Willy Tarreau54c15062017-10-10 17:10:03 +0200744{
Willy Tarreau591d4452018-06-15 17:21:00 +0200745 return readv_n16(b_peek(b, o), b_wrap(b) - b_peek(b, o), b_orig(b));
Willy Tarreau54c15062017-10-10 17:10:03 +0200746}
747
Willy Tarreau1f094672017-11-20 21:27:45 +0100748static inline __maybe_unused uint32_t h2_get_n32(const struct buffer *b, int o)
Willy Tarreau54c15062017-10-10 17:10:03 +0200749{
Willy Tarreau591d4452018-06-15 17:21:00 +0200750 return readv_n32(b_peek(b, o), b_wrap(b) - b_peek(b, o), b_orig(b));
Willy Tarreau54c15062017-10-10 17:10:03 +0200751}
752
Willy Tarreau1f094672017-11-20 21:27:45 +0100753static inline __maybe_unused uint64_t h2_get_n64(const struct buffer *b, int o)
Willy Tarreau54c15062017-10-10 17:10:03 +0200754{
Willy Tarreau591d4452018-06-15 17:21:00 +0200755 return readv_n64(b_peek(b, o), b_wrap(b) - b_peek(b, o), b_orig(b));
Willy Tarreau54c15062017-10-10 17:10:03 +0200756}
757
758
Willy Tarreaua4428bd2018-12-22 18:11:41 +0100759/* Peeks an H2 frame header from offset <o> of buffer <b> into descriptor <h>.
760 * The algorithm is not obvious. It turns out that H2 headers are neither
761 * aligned nor do they use regular sizes. And to add to the trouble, the buffer
762 * may wrap so each byte read must be checked. The header is formed like this :
Willy Tarreau715d5312017-07-11 15:20:24 +0200763 *
764 * b0 b1 b2 b3 b4 b5..b8
765 * +----------+---------+--------+----+----+----------------------+
766 * |len[23:16]|len[15:8]|len[7:0]|type|flag|sid[31:0] (big endian)|
767 * +----------+---------+--------+----+----+----------------------+
768 *
769 * Here we read a big-endian 64 bit word from h[1]. This way in a single read
770 * we get the sid properly aligned and ordered, and 16 bits of len properly
771 * ordered as well. The type and flags can be extracted using bit shifts from
772 * the word, and only one extra read is needed to fetch len[16:23].
Willy Tarreau9c7f2d12018-06-15 11:51:32 +0200773 * Returns zero if some bytes are missing, otherwise non-zero on success. The
774 * buffer is assumed not to contain any output data.
Willy Tarreau715d5312017-07-11 15:20:24 +0200775 */
Willy Tarreaua4428bd2018-12-22 18:11:41 +0100776static __maybe_unused int h2_peek_frame_hdr(const struct buffer *b, int o, struct h2_fh *h)
Willy Tarreau715d5312017-07-11 15:20:24 +0200777{
778 uint64_t w;
779
Willy Tarreaua4428bd2018-12-22 18:11:41 +0100780 if (b_data(b) < o + 9)
Willy Tarreau715d5312017-07-11 15:20:24 +0200781 return 0;
782
Willy Tarreaua4428bd2018-12-22 18:11:41 +0100783 w = h2_get_n64(b, o + 1);
784 h->len = *(uint8_t*)b_peek(b, o) << 16;
Willy Tarreau715d5312017-07-11 15:20:24 +0200785 h->sid = w & 0x7FFFFFFF; /* RFC7540#4.1: R bit must be ignored */
786 h->ff = w >> 32;
787 h->ft = w >> 40;
788 h->len += w >> 48;
789 return 1;
790}
791
792/* skip the next 9 bytes corresponding to the frame header possibly parsed by
793 * h2_peek_frame_hdr() above.
794 */
Willy Tarreau1f094672017-11-20 21:27:45 +0100795static inline __maybe_unused void h2_skip_frame_hdr(struct buffer *b)
Willy Tarreau715d5312017-07-11 15:20:24 +0200796{
Willy Tarreaue5f12ce2018-06-15 10:28:05 +0200797 b_del(b, 9);
Willy Tarreau715d5312017-07-11 15:20:24 +0200798}
799
800/* same as above, automatically advances the buffer on success */
Willy Tarreau1f094672017-11-20 21:27:45 +0100801static inline __maybe_unused int h2_get_frame_hdr(struct buffer *b, struct h2_fh *h)
Willy Tarreau715d5312017-07-11 15:20:24 +0200802{
803 int ret;
804
Willy Tarreaua4428bd2018-12-22 18:11:41 +0100805 ret = h2_peek_frame_hdr(b, 0, h);
Willy Tarreau715d5312017-07-11 15:20:24 +0200806 if (ret > 0)
807 h2_skip_frame_hdr(b);
808 return ret;
809}
810
Willy Tarreau00dd0782018-03-01 16:31:34 +0100811/* marks stream <h2s> as CLOSED and decrement the number of active streams for
812 * its connection if the stream was not yet closed. Please use this exclusively
813 * before closing a stream to ensure stream count is well maintained.
Willy Tarreau91bfdd72017-12-14 12:00:14 +0100814 */
Willy Tarreau00dd0782018-03-01 16:31:34 +0100815static inline void h2s_close(struct h2s *h2s)
Willy Tarreau91bfdd72017-12-14 12:00:14 +0100816{
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100817 if (h2s->st != H2_SS_CLOSED) {
Willy Tarreau91bfdd72017-12-14 12:00:14 +0100818 h2s->h2c->nb_streams--;
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100819 if (!h2s->id)
820 h2s->h2c->nb_reserved--;
821 }
Willy Tarreau91bfdd72017-12-14 12:00:14 +0100822 h2s->st = H2_SS_CLOSED;
823}
824
Willy Tarreau71049cc2018-03-28 13:56:39 +0200825/* detaches an H2 stream from its H2C and releases it to the H2S pool. */
826static void h2s_destroy(struct h2s *h2s)
Willy Tarreau0a10de62018-03-01 16:27:53 +0100827{
828 h2s_close(h2s);
829 eb32_delete(&h2s->by_id);
Olivier Houchard638b7992018-08-16 15:41:52 +0200830 if (b_size(&h2s->rxbuf)) {
831 b_free(&h2s->rxbuf);
832 offer_buffers(NULL, tasks_run_queue);
833 }
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200834 if (h2s->send_wait != NULL)
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100835 h2s->send_wait->events &= ~SUB_RETRY_SEND;
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200836 if (h2s->recv_wait != NULL)
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100837 h2s->recv_wait->events &= ~SUB_RETRY_RECV;
Joseph Herlantd77575d2018-11-25 10:54:45 -0800838 /* There's no need to explicitly call unsubscribe here, the only
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200839 * reference left would be in the h2c send_list/fctl_list, and if
840 * we're in it, we're getting out anyway
841 */
842 LIST_DEL(&h2s->list);
843 LIST_INIT(&h2s->list);
844 tasklet_free(h2s->wait_event.task);
Willy Tarreau0a10de62018-03-01 16:27:53 +0100845 pool_free(pool_head_h2s, h2s);
846}
847
Willy Tarreaua8e49542018-10-03 18:53:55 +0200848/* allocates a new stream <id> for connection <h2c> and adds it into h2c's
849 * stream tree. In case of error, nothing is added and NULL is returned. The
850 * causes of errors can be any failed memory allocation. The caller is
851 * responsible for checking if the connection may support an extra stream
852 * prior to calling this function.
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200853 */
Willy Tarreaua8e49542018-10-03 18:53:55 +0200854static struct h2s *h2s_new(struct h2c *h2c, int id)
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200855{
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200856 struct h2s *h2s;
857
Willy Tarreaubafbe012017-11-24 17:34:44 +0100858 h2s = pool_alloc(pool_head_h2s);
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200859 if (!h2s)
860 goto out;
861
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200862 h2s->wait_event.task = tasklet_new();
863 if (!h2s->wait_event.task) {
864 pool_free(pool_head_h2s, h2s);
865 goto out;
866 }
867 h2s->send_wait = NULL;
868 h2s->recv_wait = NULL;
869 h2s->wait_event.task->process = h2_deferred_shut;
870 h2s->wait_event.task->context = h2s;
871 h2s->wait_event.handle = NULL;
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100872 h2s->wait_event.events = 0;
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200873 LIST_INIT(&h2s->list);
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200874 h2s->h2c = h2c;
Willy Tarreaua8e49542018-10-03 18:53:55 +0200875 h2s->cs = NULL;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200876 h2s->mws = h2c->miw;
877 h2s->flags = H2_SF_NONE;
878 h2s->errcode = H2_ERR_NO_ERROR;
879 h2s->st = H2_SS_IDLE;
Willy Tarreau9c5e22e2018-09-11 19:22:14 +0200880 h2s->status = 0;
Willy Tarreau1915ca22019-01-24 11:49:37 +0100881 h2s->body_len = 0;
Olivier Houchard638b7992018-08-16 15:41:52 +0200882 h2s->rxbuf = BUF_NULL;
Willy Tarreau751f2d02018-10-05 09:35:00 +0200883
884 if (h2c->flags & H2_CF_IS_BACK) {
885 h1m_init_req(&h2s->h1m);
886 h2s->h1m.err_pos = -1; // don't care about errors on the request path
887 h2s->h1m.flags |= H1_MF_TOLOWER;
888 } else {
889 h1m_init_res(&h2s->h1m);
890 h2s->h1m.err_pos = -1; // don't care about errors on the response path
891 h2s->h1m.flags |= H1_MF_TOLOWER;
892 }
893
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200894 h2s->by_id.key = h2s->id = id;
Willy Tarreau751f2d02018-10-05 09:35:00 +0200895 if (id > 0)
896 h2c->max_id = id;
Willy Tarreaud64a3eb2019-01-23 10:22:21 +0100897 else
898 h2c->nb_reserved++;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200899
900 eb32_insert(&h2c->streams_by_id, &h2s->by_id);
Willy Tarreau49745612017-12-03 18:56:02 +0100901 h2c->nb_streams++;
Willy Tarreaue9634bd2019-01-23 10:25:10 +0100902 h2c->stream_cnt++;
Willy Tarreaua8e49542018-10-03 18:53:55 +0200903
904 return h2s;
905
906 out_free_h2s:
907 pool_free(pool_head_h2s, h2s);
908 out:
909 return NULL;
910}
911
912/* creates a new stream <id> on the h2c connection and returns it, or NULL in
913 * case of memory allocation error.
914 */
915static struct h2s *h2c_frt_stream_new(struct h2c *h2c, int id)
916{
917 struct session *sess = h2c->conn->owner;
918 struct conn_stream *cs;
919 struct h2s *h2s;
920
921 if (h2c->nb_streams >= h2_settings_max_concurrent_streams)
922 goto out;
923
924 h2s = h2s_new(h2c, id);
925 if (!h2s)
926 goto out;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200927
928 cs = cs_new(h2c->conn);
929 if (!cs)
930 goto out_close;
931
Olivier Houchard746fb772018-12-15 19:42:00 +0100932 cs->flags |= CS_FL_NOT_FIRST;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200933 h2s->cs = cs;
934 cs->ctx = h2s;
Willy Tarreau7ac60e82018-07-19 09:04:05 +0200935 h2c->nb_cs++;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200936
937 if (stream_create_from_cs(cs) < 0)
938 goto out_free_cs;
939
Willy Tarreau590a0512018-09-05 11:56:48 +0200940 /* We want the accept date presented to the next stream to be the one
941 * we have now, the handshake time to be null (since the next stream
942 * is not delayed by a handshake), and the idle time to count since
943 * right now.
944 */
945 sess->accept_date = date;
946 sess->tv_accept = now;
947 sess->t_handshake = 0;
948
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200949 /* OK done, the stream lives its own life now */
Willy Tarreauf2101912018-07-19 10:11:38 +0200950 if (h2_has_too_many_cs(h2c))
951 h2c->flags |= H2_CF_DEM_TOOMANY;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200952 return h2s;
953
954 out_free_cs:
Willy Tarreau7ac60e82018-07-19 09:04:05 +0200955 h2c->nb_cs--;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200956 cs_free(cs);
957 out_close:
Willy Tarreau71049cc2018-03-28 13:56:39 +0200958 h2s_destroy(h2s);
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200959 out:
Willy Tarreau45efc072018-10-03 18:27:52 +0200960 sess_log(sess);
961 return NULL;
Willy Tarreau3ccf4b22017-10-13 19:07:26 +0200962}
963
Willy Tarreau751f2d02018-10-05 09:35:00 +0200964/* allocates a new stream associated to conn_stream <cs> on the h2c connection
965 * and returns it, or NULL in case of memory allocation error or if the highest
966 * possible stream ID was reached.
967 */
Olivier Houchardf502aca2018-12-14 19:42:40 +0100968static struct h2s *h2c_bck_stream_new(struct h2c *h2c, struct conn_stream *cs, struct session *sess)
Willy Tarreau751f2d02018-10-05 09:35:00 +0200969{
970 struct h2s *h2s = NULL;
971
972 if (h2c->nb_streams >= h2_settings_max_concurrent_streams)
973 goto out;
974
Willy Tarreaua80dca82019-01-24 17:08:28 +0100975 if (h2_streams_left(h2c) < 1)
976 goto out;
977
Willy Tarreau751f2d02018-10-05 09:35:00 +0200978 /* Defer choosing the ID until we send the first message to create the stream */
979 h2s = h2s_new(h2c, 0);
980 if (!h2s)
981 goto out;
982
983 h2s->cs = cs;
Olivier Houchardf502aca2018-12-14 19:42:40 +0100984 h2s->sess = sess;
Willy Tarreau751f2d02018-10-05 09:35:00 +0200985 cs->ctx = h2s;
986 h2c->nb_cs++;
987
Willy Tarreau751f2d02018-10-05 09:35:00 +0200988 out:
989 return h2s;
990}
991
Willy Tarreaube5b7152017-09-25 16:25:39 +0200992/* try to send a settings frame on the connection. Returns > 0 on success, 0 if
993 * it couldn't do anything. It may return an error in h2c. See RFC7540#11.3 for
994 * the various settings codes.
995 */
Willy Tarreau7f0cc492018-10-08 07:13:08 +0200996static int h2c_send_settings(struct h2c *h2c)
Willy Tarreaube5b7152017-09-25 16:25:39 +0200997{
998 struct buffer *res;
999 char buf_data[100]; // enough for 15 settings
Willy Tarreau83061a82018-07-13 11:56:34 +02001000 struct buffer buf;
Willy Tarreaube5b7152017-09-25 16:25:39 +02001001 int ret;
1002
1003 if (h2c_mux_busy(h2c, NULL)) {
1004 h2c->flags |= H2_CF_DEM_MBUSY;
1005 return 0;
1006 }
1007
Willy Tarreau44e973f2018-03-01 17:49:30 +01001008 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreaube5b7152017-09-25 16:25:39 +02001009 if (!res) {
1010 h2c->flags |= H2_CF_MUX_MALLOC;
1011 h2c->flags |= H2_CF_DEM_MROOM;
1012 return 0;
1013 }
1014
1015 chunk_init(&buf, buf_data, sizeof(buf_data));
1016 chunk_memcpy(&buf,
1017 "\x00\x00\x00" /* length : 0 for now */
1018 "\x04\x00" /* type : 4 (settings), flags : 0 */
1019 "\x00\x00\x00\x00", /* stream ID : 0 */
1020 9);
1021
1022 if (h2_settings_header_table_size != 4096) {
1023 char str[6] = "\x00\x01"; /* header_table_size */
1024
1025 write_n32(str + 2, h2_settings_header_table_size);
1026 chunk_memcat(&buf, str, 6);
1027 }
1028
1029 if (h2_settings_initial_window_size != 65535) {
1030 char str[6] = "\x00\x04"; /* initial_window_size */
1031
1032 write_n32(str + 2, h2_settings_initial_window_size);
1033 chunk_memcat(&buf, str, 6);
1034 }
1035
1036 if (h2_settings_max_concurrent_streams != 0) {
1037 char str[6] = "\x00\x03"; /* max_concurrent_streams */
1038
1039 /* Note: 0 means "unlimited" for haproxy's config but not for
1040 * the protocol, so never send this value!
1041 */
1042 write_n32(str + 2, h2_settings_max_concurrent_streams);
1043 chunk_memcat(&buf, str, 6);
1044 }
1045
1046 if (global.tune.bufsize != 16384) {
1047 char str[6] = "\x00\x05"; /* max_frame_size */
1048
1049 /* note: similarly we could also emit MAX_HEADER_LIST_SIZE to
1050 * match bufsize - rewrite size, but at the moment it seems
1051 * that clients don't take care of it.
1052 */
1053 write_n32(str + 2, global.tune.bufsize);
1054 chunk_memcat(&buf, str, 6);
1055 }
1056
Willy Tarreau843b7cb2018-07-13 10:54:26 +02001057 h2_set_frame_size(buf.area, buf.data - 9);
1058 ret = b_istput(res, ist2(buf.area, buf.data));
Willy Tarreaube5b7152017-09-25 16:25:39 +02001059 if (unlikely(ret <= 0)) {
1060 if (!ret) {
1061 h2c->flags |= H2_CF_MUX_MFULL;
1062 h2c->flags |= H2_CF_DEM_MROOM;
1063 return 0;
1064 }
1065 else {
1066 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1067 return 0;
1068 }
1069 }
1070 return ret;
1071}
1072
Willy Tarreau52eed752017-09-22 15:05:09 +02001073/* Try to receive a connection preface, then upon success try to send our
1074 * preface which is a SETTINGS frame. Returns > 0 on success or zero on
1075 * missing data. It may return an error in h2c.
1076 */
1077static int h2c_frt_recv_preface(struct h2c *h2c)
1078{
1079 int ret1;
Willy Tarreaube5b7152017-09-25 16:25:39 +02001080 int ret2;
Willy Tarreau52eed752017-09-22 15:05:09 +02001081
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001082 ret1 = b_isteq(&h2c->dbuf, 0, b_data(&h2c->dbuf), ist(H2_CONN_PREFACE));
Willy Tarreau52eed752017-09-22 15:05:09 +02001083
1084 if (unlikely(ret1 <= 0)) {
Willy Tarreau22de8d32018-09-05 19:55:58 +02001085 if (ret1 < 0)
1086 sess_log(h2c->conn->owner);
1087
Willy Tarreau52eed752017-09-22 15:05:09 +02001088 if (ret1 < 0 || conn_xprt_read0_pending(h2c->conn))
1089 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
1090 return 0;
1091 }
1092
Willy Tarreau7f0cc492018-10-08 07:13:08 +02001093 ret2 = h2c_send_settings(h2c);
Willy Tarreaube5b7152017-09-25 16:25:39 +02001094 if (ret2 > 0)
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001095 b_del(&h2c->dbuf, ret1);
Willy Tarreau52eed752017-09-22 15:05:09 +02001096
Willy Tarreaube5b7152017-09-25 16:25:39 +02001097 return ret2;
Willy Tarreau52eed752017-09-22 15:05:09 +02001098}
1099
Willy Tarreau01b44822018-10-03 14:26:37 +02001100/* Try to send a connection preface, then upon success try to send our
1101 * preface which is a SETTINGS frame. Returns > 0 on success or zero on
1102 * missing data. It may return an error in h2c.
1103 */
1104static int h2c_bck_send_preface(struct h2c *h2c)
1105{
1106 struct buffer *res;
1107
1108 if (h2c_mux_busy(h2c, NULL)) {
1109 h2c->flags |= H2_CF_DEM_MBUSY;
1110 return 0;
1111 }
1112
1113 res = h2_get_buf(h2c, &h2c->mbuf);
1114 if (!res) {
1115 h2c->flags |= H2_CF_MUX_MALLOC;
1116 h2c->flags |= H2_CF_DEM_MROOM;
1117 return 0;
1118 }
1119
1120 if (!b_data(res)) {
1121 /* preface not yet sent */
1122 b_istput(res, ist(H2_CONN_PREFACE));
1123 }
1124
1125 return h2c_send_settings(h2c);
1126}
1127
Willy Tarreau081d4722017-05-16 21:51:05 +02001128/* try to send a GOAWAY frame on the connection to report an error or a graceful
1129 * shutdown, with h2c->errcode as the error code. Returns > 0 on success or zero
1130 * if nothing was done. It uses h2c->last_sid as the advertised ID, or copies it
1131 * from h2c->max_id if it's not set yet (<0). In case of lack of room to write
1132 * the message, it subscribes the requester (either <h2s> or <h2c>) to future
1133 * notifications. It sets H2_CF_GOAWAY_SENT on success, and H2_CF_GOAWAY_FAILED
1134 * on unrecoverable failure. It will not attempt to send one again in this last
1135 * case so that it is safe to use h2c_error() to report such errors.
1136 */
1137static int h2c_send_goaway_error(struct h2c *h2c, struct h2s *h2s)
1138{
1139 struct buffer *res;
1140 char str[17];
1141 int ret;
1142
1143 if (h2c->flags & H2_CF_GOAWAY_FAILED)
1144 return 1; // claim that it worked
1145
1146 if (h2c_mux_busy(h2c, h2s)) {
1147 if (h2s)
1148 h2s->flags |= H2_SF_BLK_MBUSY;
1149 else
1150 h2c->flags |= H2_CF_DEM_MBUSY;
1151 return 0;
1152 }
1153
Willy Tarreau44e973f2018-03-01 17:49:30 +01001154 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreau081d4722017-05-16 21:51:05 +02001155 if (!res) {
1156 h2c->flags |= H2_CF_MUX_MALLOC;
1157 if (h2s)
1158 h2s->flags |= H2_SF_BLK_MROOM;
1159 else
1160 h2c->flags |= H2_CF_DEM_MROOM;
1161 return 0;
1162 }
1163
1164 /* len: 8, type: 7, flags: none, sid: 0 */
1165 memcpy(str, "\x00\x00\x08\x07\x00\x00\x00\x00\x00", 9);
1166
1167 if (h2c->last_sid < 0)
1168 h2c->last_sid = h2c->max_id;
1169
1170 write_n32(str + 9, h2c->last_sid);
1171 write_n32(str + 13, h2c->errcode);
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001172 ret = b_istput(res, ist2(str, 17));
Willy Tarreau081d4722017-05-16 21:51:05 +02001173 if (unlikely(ret <= 0)) {
1174 if (!ret) {
1175 h2c->flags |= H2_CF_MUX_MFULL;
1176 if (h2s)
1177 h2s->flags |= H2_SF_BLK_MROOM;
1178 else
1179 h2c->flags |= H2_CF_DEM_MROOM;
1180 return 0;
1181 }
1182 else {
1183 /* we cannot report this error using GOAWAY, so we mark
1184 * it and claim a success.
1185 */
1186 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1187 h2c->flags |= H2_CF_GOAWAY_FAILED;
1188 return 1;
1189 }
1190 }
1191 h2c->flags |= H2_CF_GOAWAY_SENT;
1192 return ret;
1193}
1194
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001195/* Try to send an RST_STREAM frame on the connection for the indicated stream
1196 * during mux operations. This stream must be valid and cannot be closed
1197 * already. h2s->id will be used for the stream ID and h2s->errcode will be
1198 * used for the error code. h2s->st will be update to H2_SS_CLOSED if it was
1199 * not yet.
1200 *
1201 * Returns > 0 on success or zero if nothing was done. In case of lack of room
1202 * to write the message, it subscribes the stream to future notifications.
1203 */
1204static int h2s_send_rst_stream(struct h2c *h2c, struct h2s *h2s)
1205{
1206 struct buffer *res;
1207 char str[13];
1208 int ret;
1209
1210 if (!h2s || h2s->st == H2_SS_CLOSED)
1211 return 1;
1212
Willy Tarreau8adae7c2018-03-22 17:37:05 +01001213 /* RFC7540#5.4.2: To avoid looping, an endpoint MUST NOT send a
1214 * RST_STREAM in response to a RST_STREAM frame.
1215 */
1216 if (h2c->dft == H2_FT_RST_STREAM) {
1217 ret = 1;
1218 goto ignore;
1219 }
1220
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001221 if (h2c_mux_busy(h2c, h2s)) {
1222 h2s->flags |= H2_SF_BLK_MBUSY;
1223 return 0;
1224 }
1225
Willy Tarreau44e973f2018-03-01 17:49:30 +01001226 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001227 if (!res) {
1228 h2c->flags |= H2_CF_MUX_MALLOC;
1229 h2s->flags |= H2_SF_BLK_MROOM;
1230 return 0;
1231 }
1232
1233 /* len: 4, type: 3, flags: none */
1234 memcpy(str, "\x00\x00\x04\x03\x00", 5);
1235 write_n32(str + 5, h2s->id);
1236 write_n32(str + 9, h2s->errcode);
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001237 ret = b_istput(res, ist2(str, 13));
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001238
1239 if (unlikely(ret <= 0)) {
1240 if (!ret) {
1241 h2c->flags |= H2_CF_MUX_MFULL;
1242 h2s->flags |= H2_SF_BLK_MROOM;
1243 return 0;
1244 }
1245 else {
1246 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1247 return 0;
1248 }
1249 }
1250
Willy Tarreau8adae7c2018-03-22 17:37:05 +01001251 ignore:
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001252 h2s->flags |= H2_SF_RST_SENT;
Willy Tarreau00dd0782018-03-01 16:31:34 +01001253 h2s_close(h2s);
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001254 return ret;
1255}
1256
1257/* Try to send an RST_STREAM frame on the connection for the stream being
1258 * demuxed using h2c->dsi for the stream ID. It will use h2s->errcode as the
Willy Tarreaue6888ff2018-12-23 18:26:26 +01001259 * error code, even if the stream is one of the dummy ones, and will update
1260 * h2s->st to H2_SS_CLOSED if it was not yet.
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001261 *
1262 * Returns > 0 on success or zero if nothing was done. In case of lack of room
1263 * to write the message, it blocks the demuxer and subscribes it to future
Joseph Herlantd77575d2018-11-25 10:54:45 -08001264 * notifications. It's worth mentioning that an RST may even be sent for a
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001265 * closed stream.
Willy Tarreau27a84c92017-10-17 08:10:17 +02001266 */
1267static int h2c_send_rst_stream(struct h2c *h2c, struct h2s *h2s)
1268{
1269 struct buffer *res;
1270 char str[13];
1271 int ret;
1272
Willy Tarreau8adae7c2018-03-22 17:37:05 +01001273 /* RFC7540#5.4.2: To avoid looping, an endpoint MUST NOT send a
1274 * RST_STREAM in response to a RST_STREAM frame.
1275 */
1276 if (h2c->dft == H2_FT_RST_STREAM) {
1277 ret = 1;
1278 goto ignore;
1279 }
1280
Willy Tarreau27a84c92017-10-17 08:10:17 +02001281 if (h2c_mux_busy(h2c, h2s)) {
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001282 h2c->flags |= H2_CF_DEM_MBUSY;
Willy Tarreau27a84c92017-10-17 08:10:17 +02001283 return 0;
1284 }
1285
Willy Tarreau44e973f2018-03-01 17:49:30 +01001286 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreau27a84c92017-10-17 08:10:17 +02001287 if (!res) {
1288 h2c->flags |= H2_CF_MUX_MALLOC;
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001289 h2c->flags |= H2_CF_DEM_MROOM;
Willy Tarreau27a84c92017-10-17 08:10:17 +02001290 return 0;
1291 }
1292
1293 /* len: 4, type: 3, flags: none */
1294 memcpy(str, "\x00\x00\x04\x03\x00", 5);
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001295
Willy Tarreau27a84c92017-10-17 08:10:17 +02001296 write_n32(str + 5, h2c->dsi);
Willy Tarreaue6888ff2018-12-23 18:26:26 +01001297 write_n32(str + 9, h2s->errcode);
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001298 ret = b_istput(res, ist2(str, 13));
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001299
Willy Tarreau27a84c92017-10-17 08:10:17 +02001300 if (unlikely(ret <= 0)) {
1301 if (!ret) {
1302 h2c->flags |= H2_CF_MUX_MFULL;
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001303 h2c->flags |= H2_CF_DEM_MROOM;
Willy Tarreau27a84c92017-10-17 08:10:17 +02001304 return 0;
1305 }
1306 else {
1307 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1308 return 0;
1309 }
1310 }
1311
Willy Tarreau8adae7c2018-03-22 17:37:05 +01001312 ignore:
Willy Tarreauab0e1da2018-10-05 10:16:37 +02001313 if (h2s->id) {
Willy Tarreau27a84c92017-10-17 08:10:17 +02001314 h2s->flags |= H2_SF_RST_SENT;
Willy Tarreau00dd0782018-03-01 16:31:34 +01001315 h2s_close(h2s);
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01001316 }
1317
Willy Tarreau27a84c92017-10-17 08:10:17 +02001318 return ret;
1319}
1320
Willy Tarreauc7576ea2017-10-29 22:00:09 +01001321/* try to send an empty DATA frame with the ES flag set to notify about the
1322 * end of stream and match a shutdown(write). If an ES was already sent as
1323 * indicated by HLOC/ERROR/RESET/CLOSED states, nothing is done. Returns > 0
1324 * on success or zero if nothing was done. In case of lack of room to write the
1325 * message, it subscribes the requesting stream to future notifications.
1326 */
1327static int h2_send_empty_data_es(struct h2s *h2s)
1328{
1329 struct h2c *h2c = h2s->h2c;
1330 struct buffer *res;
1331 char str[9];
1332 int ret;
1333
Willy Tarreau721c9742017-11-07 11:05:42 +01001334 if (h2s->st == H2_SS_HLOC || h2s->st == H2_SS_ERROR || h2s->st == H2_SS_CLOSED)
Willy Tarreauc7576ea2017-10-29 22:00:09 +01001335 return 1;
1336
1337 if (h2c_mux_busy(h2c, h2s)) {
1338 h2s->flags |= H2_SF_BLK_MBUSY;
1339 return 0;
1340 }
1341
Willy Tarreau44e973f2018-03-01 17:49:30 +01001342 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreauc7576ea2017-10-29 22:00:09 +01001343 if (!res) {
1344 h2c->flags |= H2_CF_MUX_MALLOC;
1345 h2s->flags |= H2_SF_BLK_MROOM;
1346 return 0;
1347 }
1348
1349 /* len: 0x000000, type: 0(DATA), flags: ES=1 */
1350 memcpy(str, "\x00\x00\x00\x00\x01", 5);
1351 write_n32(str + 5, h2s->id);
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001352 ret = b_istput(res, ist2(str, 9));
Willy Tarreau6d8b6822017-11-07 14:39:09 +01001353 if (likely(ret > 0)) {
1354 h2s->flags |= H2_SF_ES_SENT;
1355 }
1356 else if (!ret) {
1357 h2c->flags |= H2_CF_MUX_MFULL;
1358 h2s->flags |= H2_SF_BLK_MROOM;
1359 return 0;
1360 }
1361 else {
1362 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1363 return 0;
Willy Tarreauc7576ea2017-10-29 22:00:09 +01001364 }
1365 return ret;
1366}
1367
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001368/* wake the streams attached to the connection, whose id is greater than <last>,
1369 * and assign their conn_stream the CS_FL_* flags <flags> in addition to
Willy Tarreau2c096c32018-09-12 09:45:54 +02001370 * CS_FL_ERROR in case of error and CS_FL_REOS in case of closed connection.
1371 * The stream's state is automatically updated accordingly.
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001372 */
1373static void h2_wake_some_streams(struct h2c *h2c, int last, uint32_t flags)
1374{
1375 struct eb32_node *node;
1376 struct h2s *h2s;
1377
1378 if (h2c->st0 >= H2_CS_ERROR || h2c->conn->flags & CO_FL_ERROR)
Willy Tarreaua8519352018-12-18 16:44:28 +01001379 flags |= CS_FL_ERR_PENDING;
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001380
1381 if (conn_xprt_read0_pending(h2c->conn))
Willy Tarreau2c096c32018-09-12 09:45:54 +02001382 flags |= CS_FL_REOS;
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001383
1384 node = eb32_lookup_ge(&h2c->streams_by_id, last + 1);
1385 while (node) {
1386 h2s = container_of(node, struct h2s, by_id);
1387 if (h2s->id <= last)
1388 break;
1389 node = eb32_next(node);
Willy Tarreau22cf59b2017-11-10 11:42:33 +01001390
1391 if (!h2s->cs) {
1392 /* this stream was already orphaned */
Willy Tarreau71049cc2018-03-28 13:56:39 +02001393 h2s_destroy(h2s);
Willy Tarreau22cf59b2017-11-10 11:42:33 +01001394 continue;
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001395 }
Willy Tarreau22cf59b2017-11-10 11:42:33 +01001396
1397 h2s->cs->flags |= flags;
Willy Tarreaua8519352018-12-18 16:44:28 +01001398 if ((flags & CS_FL_ERR_PENDING) && (h2s->cs->flags & CS_FL_EOS))
1399 h2s->cs->flags |= CS_FL_ERROR;
1400
Willy Tarreauf830f012018-12-19 17:44:55 +01001401 h2s_alert(h2s);
Willy Tarreau22cf59b2017-11-10 11:42:33 +01001402
Willy Tarreaua8519352018-12-18 16:44:28 +01001403 if (flags & CS_FL_ERR_PENDING && h2s->st < H2_SS_ERROR)
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001404 h2s->st = H2_SS_ERROR;
Willy Tarreau2c096c32018-09-12 09:45:54 +02001405 else if (flags & CS_FL_REOS && h2s->st == H2_SS_OPEN)
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001406 h2s->st = H2_SS_HREM;
Willy Tarreau2c096c32018-09-12 09:45:54 +02001407 else if (flags & CS_FL_REOS && h2s->st == H2_SS_HLOC)
Willy Tarreau00dd0782018-03-01 16:31:34 +01001408 h2s_close(h2s);
Willy Tarreau23b92aa2017-10-30 00:26:54 +01001409 }
1410}
1411
Willy Tarreau3421aba2017-07-27 15:41:03 +02001412/* Increase all streams' outgoing window size by the difference passed in
1413 * argument. This is needed upon receipt of the settings frame if the initial
1414 * window size is different. The difference may be negative and the resulting
1415 * window size as well, for the time it takes to receive some window updates.
1416 */
1417static void h2c_update_all_ws(struct h2c *h2c, int diff)
1418{
1419 struct h2s *h2s;
1420 struct eb32_node *node;
1421
1422 if (!diff)
1423 return;
1424
1425 node = eb32_first(&h2c->streams_by_id);
1426 while (node) {
1427 h2s = container_of(node, struct h2s, by_id);
1428 h2s->mws += diff;
1429 node = eb32_next(node);
1430 }
1431}
1432
1433/* processes a SETTINGS frame whose payload is <payload> for <plen> bytes, and
1434 * ACKs it if needed. Returns > 0 on success or zero on missing data. It may
1435 * return an error in h2c. Described in RFC7540#6.5.
1436 */
1437static int h2c_handle_settings(struct h2c *h2c)
1438{
1439 unsigned int offset;
1440 int error;
1441
1442 if (h2c->dff & H2_F_SETTINGS_ACK) {
1443 if (h2c->dfl) {
1444 error = H2_ERR_FRAME_SIZE_ERROR;
1445 goto fail;
1446 }
1447 return 1;
1448 }
1449
1450 if (h2c->dsi != 0) {
1451 error = H2_ERR_PROTOCOL_ERROR;
1452 goto fail;
1453 }
1454
1455 if (h2c->dfl % 6) {
1456 error = H2_ERR_FRAME_SIZE_ERROR;
1457 goto fail;
1458 }
1459
1460 /* that's the limit we can process */
1461 if (h2c->dfl > global.tune.bufsize) {
1462 error = H2_ERR_FRAME_SIZE_ERROR;
1463 goto fail;
1464 }
1465
1466 /* process full frame only */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001467 if (b_data(&h2c->dbuf) < h2c->dfl)
Willy Tarreau3421aba2017-07-27 15:41:03 +02001468 return 0;
1469
1470 /* parse the frame */
1471 for (offset = 0; offset < h2c->dfl; offset += 6) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001472 uint16_t type = h2_get_n16(&h2c->dbuf, offset);
1473 int32_t arg = h2_get_n32(&h2c->dbuf, offset + 2);
Willy Tarreau3421aba2017-07-27 15:41:03 +02001474
1475 switch (type) {
1476 case H2_SETTINGS_INITIAL_WINDOW_SIZE:
1477 /* we need to update all existing streams with the
1478 * difference from the previous iws.
1479 */
1480 if (arg < 0) { // RFC7540#6.5.2
1481 error = H2_ERR_FLOW_CONTROL_ERROR;
1482 goto fail;
1483 }
1484 h2c_update_all_ws(h2c, arg - h2c->miw);
1485 h2c->miw = arg;
1486 break;
1487 case H2_SETTINGS_MAX_FRAME_SIZE:
1488 if (arg < 16384 || arg > 16777215) { // RFC7540#6.5.2
1489 error = H2_ERR_PROTOCOL_ERROR;
1490 goto fail;
1491 }
1492 h2c->mfs = arg;
1493 break;
Willy Tarreau1b38b462017-12-03 19:02:28 +01001494 case H2_SETTINGS_ENABLE_PUSH:
1495 if (arg < 0 || arg > 1) { // RFC7540#6.5.2
1496 error = H2_ERR_PROTOCOL_ERROR;
1497 goto fail;
1498 }
1499 break;
Willy Tarreau3421aba2017-07-27 15:41:03 +02001500 }
1501 }
1502
1503 /* need to ACK this frame now */
1504 h2c->st0 = H2_CS_FRAME_A;
1505 return 1;
1506 fail:
Willy Tarreau22de8d32018-09-05 19:55:58 +02001507 sess_log(h2c->conn->owner);
Willy Tarreau3421aba2017-07-27 15:41:03 +02001508 h2c_error(h2c, error);
1509 return 0;
1510}
1511
1512/* try to send an ACK for a settings frame on the connection. Returns > 0 on
1513 * success or one of the h2_status values.
1514 */
1515static int h2c_ack_settings(struct h2c *h2c)
1516{
1517 struct buffer *res;
1518 char str[9];
1519 int ret = -1;
1520
1521 if (h2c_mux_busy(h2c, NULL)) {
1522 h2c->flags |= H2_CF_DEM_MBUSY;
1523 return 0;
1524 }
1525
Willy Tarreau44e973f2018-03-01 17:49:30 +01001526 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreau3421aba2017-07-27 15:41:03 +02001527 if (!res) {
1528 h2c->flags |= H2_CF_MUX_MALLOC;
1529 h2c->flags |= H2_CF_DEM_MROOM;
1530 return 0;
1531 }
1532
1533 memcpy(str,
1534 "\x00\x00\x00" /* length : 0 (no data) */
1535 "\x04" "\x01" /* type : 4, flags : ACK */
1536 "\x00\x00\x00\x00" /* stream ID */, 9);
1537
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001538 ret = b_istput(res, ist2(str, 9));
Willy Tarreau3421aba2017-07-27 15:41:03 +02001539 if (unlikely(ret <= 0)) {
1540 if (!ret) {
1541 h2c->flags |= H2_CF_MUX_MFULL;
1542 h2c->flags |= H2_CF_DEM_MROOM;
1543 return 0;
1544 }
1545 else {
1546 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1547 return 0;
1548 }
1549 }
1550 return ret;
1551}
1552
Willy Tarreaucf68c782017-10-10 17:11:41 +02001553/* processes a PING frame and schedules an ACK if needed. The caller must pass
1554 * the pointer to the payload in <payload>. Returns > 0 on success or zero on
1555 * missing data. It may return an error in h2c.
1556 */
1557static int h2c_handle_ping(struct h2c *h2c)
1558{
1559 /* frame length must be exactly 8 */
1560 if (h2c->dfl != 8) {
1561 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
1562 return 0;
1563 }
1564
1565 /* schedule a response */
Willy Tarreau68ed6412017-12-03 18:15:56 +01001566 if (!(h2c->dff & H2_F_PING_ACK))
Willy Tarreaucf68c782017-10-10 17:11:41 +02001567 h2c->st0 = H2_CS_FRAME_A;
1568 return 1;
1569}
1570
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02001571/* Try to send a window update for stream id <sid> and value <increment>.
1572 * Returns > 0 on success or zero on missing room or failure. It may return an
1573 * error in h2c.
1574 */
1575static int h2c_send_window_update(struct h2c *h2c, int sid, uint32_t increment)
1576{
1577 struct buffer *res;
1578 char str[13];
1579 int ret = -1;
1580
1581 if (h2c_mux_busy(h2c, NULL)) {
1582 h2c->flags |= H2_CF_DEM_MBUSY;
1583 return 0;
1584 }
1585
Willy Tarreau44e973f2018-03-01 17:49:30 +01001586 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02001587 if (!res) {
1588 h2c->flags |= H2_CF_MUX_MALLOC;
1589 h2c->flags |= H2_CF_DEM_MROOM;
1590 return 0;
1591 }
1592
1593 /* length: 4, type: 8, flags: none */
1594 memcpy(str, "\x00\x00\x04\x08\x00", 5);
1595 write_n32(str + 5, sid);
1596 write_n32(str + 9, increment);
1597
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001598 ret = b_istput(res, ist2(str, 13));
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02001599
1600 if (unlikely(ret <= 0)) {
1601 if (!ret) {
1602 h2c->flags |= H2_CF_MUX_MFULL;
1603 h2c->flags |= H2_CF_DEM_MROOM;
1604 return 0;
1605 }
1606 else {
1607 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1608 return 0;
1609 }
1610 }
1611 return ret;
1612}
1613
1614/* try to send pending window update for the connection. It's safe to call it
1615 * with no pending updates. Returns > 0 on success or zero on missing room or
1616 * failure. It may return an error in h2c.
1617 */
1618static int h2c_send_conn_wu(struct h2c *h2c)
1619{
1620 int ret = 1;
1621
1622 if (h2c->rcvd_c <= 0)
1623 return 1;
1624
Willy Tarreau97aaa672018-12-23 09:49:04 +01001625 if (!(h2c->flags & H2_CF_WINDOW_OPENED)) {
1626 /* increase the advertised connection window to 2G on
1627 * first update.
1628 */
1629 h2c->flags |= H2_CF_WINDOW_OPENED;
1630 h2c->rcvd_c += H2_INITIAL_WINDOW_INCREMENT;
1631 }
1632
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02001633 /* send WU for the connection */
1634 ret = h2c_send_window_update(h2c, 0, h2c->rcvd_c);
1635 if (ret > 0)
1636 h2c->rcvd_c = 0;
1637
1638 return ret;
1639}
1640
1641/* try to send pending window update for the current dmux stream. It's safe to
1642 * call it with no pending updates. Returns > 0 on success or zero on missing
1643 * room or failure. It may return an error in h2c.
1644 */
1645static int h2c_send_strm_wu(struct h2c *h2c)
1646{
1647 int ret = 1;
1648
1649 if (h2c->rcvd_s <= 0)
1650 return 1;
1651
1652 /* send WU for the stream */
1653 ret = h2c_send_window_update(h2c, h2c->dsi, h2c->rcvd_s);
1654 if (ret > 0)
1655 h2c->rcvd_s = 0;
1656
1657 return ret;
1658}
1659
Willy Tarreaucf68c782017-10-10 17:11:41 +02001660/* try to send an ACK for a ping frame on the connection. Returns > 0 on
1661 * success, 0 on missing data or one of the h2_status values.
1662 */
1663static int h2c_ack_ping(struct h2c *h2c)
1664{
1665 struct buffer *res;
1666 char str[17];
1667 int ret = -1;
1668
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001669 if (b_data(&h2c->dbuf) < 8)
Willy Tarreaucf68c782017-10-10 17:11:41 +02001670 return 0;
1671
1672 if (h2c_mux_busy(h2c, NULL)) {
1673 h2c->flags |= H2_CF_DEM_MBUSY;
1674 return 0;
1675 }
1676
Willy Tarreau44e973f2018-03-01 17:49:30 +01001677 res = h2_get_buf(h2c, &h2c->mbuf);
Willy Tarreaucf68c782017-10-10 17:11:41 +02001678 if (!res) {
1679 h2c->flags |= H2_CF_MUX_MALLOC;
1680 h2c->flags |= H2_CF_DEM_MROOM;
1681 return 0;
1682 }
1683
1684 memcpy(str,
1685 "\x00\x00\x08" /* length : 8 (same payload) */
1686 "\x06" "\x01" /* type : 6, flags : ACK */
1687 "\x00\x00\x00\x00" /* stream ID */, 9);
1688
1689 /* copy the original payload */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001690 h2_get_buf_bytes(str + 9, 8, &h2c->dbuf, 0);
Willy Tarreaucf68c782017-10-10 17:11:41 +02001691
Willy Tarreauea1b06d2018-07-12 09:02:47 +02001692 ret = b_istput(res, ist2(str, 17));
Willy Tarreaucf68c782017-10-10 17:11:41 +02001693 if (unlikely(ret <= 0)) {
1694 if (!ret) {
1695 h2c->flags |= H2_CF_MUX_MFULL;
1696 h2c->flags |= H2_CF_DEM_MROOM;
1697 return 0;
1698 }
1699 else {
1700 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
1701 return 0;
1702 }
1703 }
1704 return ret;
1705}
1706
Willy Tarreau26f95952017-07-27 17:18:30 +02001707/* processes a WINDOW_UPDATE frame whose payload is <payload> for <plen> bytes.
1708 * Returns > 0 on success or zero on missing data. It may return an error in
1709 * h2c or h2s. Described in RFC7540#6.9.
1710 */
1711static int h2c_handle_window_update(struct h2c *h2c, struct h2s *h2s)
1712{
1713 int32_t inc;
1714 int error;
1715
1716 if (h2c->dfl != 4) {
1717 error = H2_ERR_FRAME_SIZE_ERROR;
1718 goto conn_err;
1719 }
1720
1721 /* process full frame only */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001722 if (b_data(&h2c->dbuf) < h2c->dfl)
Willy Tarreau26f95952017-07-27 17:18:30 +02001723 return 0;
1724
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001725 inc = h2_get_n32(&h2c->dbuf, 0);
Willy Tarreau26f95952017-07-27 17:18:30 +02001726
1727 if (h2c->dsi != 0) {
1728 /* stream window update */
Willy Tarreau26f95952017-07-27 17:18:30 +02001729
1730 /* it's not an error to receive WU on a closed stream */
1731 if (h2s->st == H2_SS_CLOSED)
1732 return 1;
1733
1734 if (!inc) {
1735 error = H2_ERR_PROTOCOL_ERROR;
1736 goto strm_err;
1737 }
1738
1739 if (h2s->mws >= 0 && h2s->mws + inc < 0) {
1740 error = H2_ERR_FLOW_CONTROL_ERROR;
1741 goto strm_err;
1742 }
1743
1744 h2s->mws += inc;
1745 if (h2s->mws > 0 && (h2s->flags & H2_SF_BLK_SFCTL)) {
1746 h2s->flags &= ~H2_SF_BLK_SFCTL;
Olivier Houcharddddfe312018-10-10 18:51:00 +02001747 if (h2s->send_wait)
1748 LIST_ADDQ(&h2c->send_list, &h2s->list);
1749
Willy Tarreau26f95952017-07-27 17:18:30 +02001750 }
1751 }
1752 else {
1753 /* connection window update */
1754 if (!inc) {
1755 error = H2_ERR_PROTOCOL_ERROR;
1756 goto conn_err;
1757 }
1758
1759 if (h2c->mws >= 0 && h2c->mws + inc < 0) {
1760 error = H2_ERR_FLOW_CONTROL_ERROR;
1761 goto conn_err;
1762 }
1763
1764 h2c->mws += inc;
1765 }
1766
1767 return 1;
1768
1769 conn_err:
1770 h2c_error(h2c, error);
1771 return 0;
1772
1773 strm_err:
1774 if (h2s) {
1775 h2s_error(h2s, error);
Willy Tarreaua20a5192017-12-27 11:02:06 +01001776 h2c->st0 = H2_CS_FRAME_E;
Willy Tarreau26f95952017-07-27 17:18:30 +02001777 }
1778 else
1779 h2c_error(h2c, error);
1780 return 0;
1781}
1782
Willy Tarreaue96b0922017-10-30 00:28:29 +01001783/* processes a GOAWAY frame, and signals all streams whose ID is greater than
1784 * the last ID. Returns > 0 on success or zero on missing data. It may return
1785 * an error in h2c. Described in RFC7540#6.8.
1786 */
1787static int h2c_handle_goaway(struct h2c *h2c)
1788{
1789 int error;
1790 int last;
1791
1792 if (h2c->dsi != 0) {
1793 error = H2_ERR_PROTOCOL_ERROR;
1794 goto conn_err;
1795 }
1796
1797 if (h2c->dfl < 8) {
1798 error = H2_ERR_FRAME_SIZE_ERROR;
1799 goto conn_err;
1800 }
1801
1802 /* process full frame only */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001803 if (b_data(&h2c->dbuf) < h2c->dfl)
Willy Tarreaue96b0922017-10-30 00:28:29 +01001804 return 0;
1805
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001806 last = h2_get_n32(&h2c->dbuf, 0);
1807 h2c->errcode = h2_get_n32(&h2c->dbuf, 4);
Olivier Houchard91177802018-12-19 14:49:39 +01001808 h2_wake_some_streams(h2c, last, CS_FL_ERR_PENDING);
Willy Tarreau11cc2d62017-12-03 10:27:47 +01001809 if (h2c->last_sid < 0)
1810 h2c->last_sid = last;
Willy Tarreaue96b0922017-10-30 00:28:29 +01001811 return 1;
1812
1813 conn_err:
1814 h2c_error(h2c, error);
1815 return 0;
1816}
1817
Willy Tarreau92153fc2017-12-03 19:46:19 +01001818/* processes a PRIORITY frame, and either skips it or rejects if it is
1819 * invalid. Returns > 0 on success or zero on missing data. It may return
1820 * an error in h2c. Described in RFC7540#6.3.
1821 */
1822static int h2c_handle_priority(struct h2c *h2c)
1823{
1824 int error;
1825
1826 if (h2c->dsi == 0) {
1827 error = H2_ERR_PROTOCOL_ERROR;
1828 goto conn_err;
1829 }
1830
1831 if (h2c->dfl != 5) {
1832 error = H2_ERR_FRAME_SIZE_ERROR;
1833 goto conn_err;
1834 }
1835
1836 /* process full frame only */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001837 if (b_data(&h2c->dbuf) < h2c->dfl)
Willy Tarreau92153fc2017-12-03 19:46:19 +01001838 return 0;
1839
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001840 if (h2_get_n32(&h2c->dbuf, 0) == h2c->dsi) {
Willy Tarreau92153fc2017-12-03 19:46:19 +01001841 /* 7540#5.3 : can't depend on itself */
1842 error = H2_ERR_PROTOCOL_ERROR;
1843 goto conn_err;
1844 }
1845 return 1;
1846
1847 conn_err:
1848 h2c_error(h2c, error);
1849 return 0;
1850}
1851
Willy Tarreaucd234e92017-08-18 10:59:39 +02001852/* processes an RST_STREAM frame, and sets the 32-bit error code on the stream.
1853 * Returns > 0 on success or zero on missing data. It may return an error in
1854 * h2c. Described in RFC7540#6.4.
1855 */
1856static int h2c_handle_rst_stream(struct h2c *h2c, struct h2s *h2s)
1857{
1858 int error;
1859
1860 if (h2c->dsi == 0) {
1861 error = H2_ERR_PROTOCOL_ERROR;
1862 goto conn_err;
1863 }
1864
Willy Tarreaucd234e92017-08-18 10:59:39 +02001865 if (h2c->dfl != 4) {
1866 error = H2_ERR_FRAME_SIZE_ERROR;
1867 goto conn_err;
1868 }
1869
1870 /* process full frame only */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001871 if (b_data(&h2c->dbuf) < h2c->dfl)
Willy Tarreaucd234e92017-08-18 10:59:39 +02001872 return 0;
1873
1874 /* late RST, already handled */
1875 if (h2s->st == H2_SS_CLOSED)
1876 return 1;
1877
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001878 h2s->errcode = h2_get_n32(&h2c->dbuf, 0);
Willy Tarreau00dd0782018-03-01 16:31:34 +01001879 h2s_close(h2s);
Willy Tarreaucd234e92017-08-18 10:59:39 +02001880
1881 if (h2s->cs) {
Willy Tarreauec988c72018-12-19 18:00:29 +01001882 cs_set_error(h2s->cs);
Willy Tarreauf830f012018-12-19 17:44:55 +01001883 h2s_alert(h2s);
Willy Tarreaucd234e92017-08-18 10:59:39 +02001884 }
1885
1886 h2s->flags |= H2_SF_RST_RCVD;
1887 return 1;
1888
1889 conn_err:
1890 h2c_error(h2c, error);
1891 return 0;
1892}
1893
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001894/* processes a HEADERS frame. Returns h2s on success or NULL on missing data.
1895 * It may return an error in h2c or h2s. The caller must consider that the
1896 * return value is the new h2s in case one was allocated (most common case).
1897 * Described in RFC7540#6.2. Most of the
Willy Tarreau13278b42017-10-13 19:23:14 +02001898 * errors here are reported as connection errors since it's impossible to
1899 * recover from such errors after the compression context has been altered.
1900 */
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001901static struct h2s *h2c_frt_handle_headers(struct h2c *h2c, struct h2s *h2s)
Willy Tarreau13278b42017-10-13 19:23:14 +02001902{
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001903 struct buffer rxbuf = BUF_NULL;
Willy Tarreau4790f7c2019-01-24 11:33:02 +01001904 unsigned long long body_len = 0;
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001905 uint32_t flags = 0;
Willy Tarreau13278b42017-10-13 19:23:14 +02001906 int error;
1907
1908 if (!h2c->dfl) {
Willy Tarreauc4ea04c2018-12-23 08:13:59 +01001909 /* RFC7540#4.2 */
1910 error = H2_ERR_FRAME_SIZE_ERROR; // empty headers frame!
Willy Tarreau22de8d32018-09-05 19:55:58 +02001911 sess_log(h2c->conn->owner);
Willy Tarreauc4ea04c2018-12-23 08:13:59 +01001912 goto conn_err;
Willy Tarreau13278b42017-10-13 19:23:14 +02001913 }
1914
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001915 if (!b_size(&h2c->dbuf))
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001916 return NULL; // empty buffer
Willy Tarreau13278b42017-10-13 19:23:14 +02001917
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001918 if (b_data(&h2c->dbuf) < h2c->dfl && !b_full(&h2c->dbuf))
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001919 return NULL; // incomplete frame
Willy Tarreau13278b42017-10-13 19:23:14 +02001920
1921 /* now either the frame is complete or the buffer is complete */
1922 if (h2s->st != H2_SS_IDLE) {
Willy Tarreau88d138e2019-01-02 19:38:14 +01001923 /* The stream exists/existed, this must be a trailers frame */
1924 if (h2s->st != H2_SS_CLOSED) {
Willy Tarreau4790f7c2019-01-24 11:33:02 +01001925 if (h2c_decode_headers(h2c, &h2s->rxbuf, &h2s->flags, &body_len) <= 0)
Willy Tarreau88d138e2019-01-02 19:38:14 +01001926 goto out;
1927 goto done;
1928 }
Willy Tarreau13278b42017-10-13 19:23:14 +02001929 error = H2_ERR_PROTOCOL_ERROR;
Willy Tarreau22de8d32018-09-05 19:55:58 +02001930 sess_log(h2c->conn->owner);
Willy Tarreau13278b42017-10-13 19:23:14 +02001931 goto conn_err;
1932 }
1933 else if (h2c->dsi <= h2c->max_id || !(h2c->dsi & 1)) {
1934 /* RFC7540#5.1.1 stream id > prev ones, and must be odd here */
1935 error = H2_ERR_PROTOCOL_ERROR;
Willy Tarreau22de8d32018-09-05 19:55:58 +02001936 sess_log(h2c->conn->owner);
Willy Tarreau13278b42017-10-13 19:23:14 +02001937 goto conn_err;
1938 }
Willy Tarreau415b1ee2019-01-02 13:59:43 +01001939 else if (h2c->flags & H2_CF_DEM_TOOMANY)
1940 goto out; // IDLE but too many cs still present
Willy Tarreau13278b42017-10-13 19:23:14 +02001941
Willy Tarreau4790f7c2019-01-24 11:33:02 +01001942 error = h2c_decode_headers(h2c, &rxbuf, &flags, &body_len);
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001943
Willy Tarreau25919232019-01-03 14:48:18 +01001944 /* unrecoverable error ? */
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001945 if (h2c->st0 >= H2_CS_ERROR)
1946 goto out;
1947
Willy Tarreau25919232019-01-03 14:48:18 +01001948 if (error <= 0) {
1949 if (error == 0)
1950 goto out; // missing data
1951
1952 /* Failed to decode this stream (e.g. too large request)
1953 * but the HPACK decompressor is still synchronized.
1954 */
1955 h2s = (struct h2s*)h2_error_stream;
1956 goto send_rst;
1957 }
1958
Willy Tarreau22de8d32018-09-05 19:55:58 +02001959 /* Note: we don't emit any other logs below because ff we return
Willy Tarreaua8e49542018-10-03 18:53:55 +02001960 * positively from h2c_frt_stream_new(), the stream will report the error,
1961 * and if we return in error, h2c_frt_stream_new() will emit the error.
Willy Tarreau22de8d32018-09-05 19:55:58 +02001962 */
Willy Tarreaua8e49542018-10-03 18:53:55 +02001963 h2s = h2c_frt_stream_new(h2c, h2c->dsi);
Willy Tarreau13278b42017-10-13 19:23:14 +02001964 if (!h2s) {
Willy Tarreau96a10c22018-12-23 18:30:44 +01001965 h2s = (struct h2s*)h2_refused_stream;
1966 goto send_rst;
Willy Tarreau13278b42017-10-13 19:23:14 +02001967 }
1968
1969 h2s->st = H2_SS_OPEN;
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001970 h2s->rxbuf = rxbuf;
1971 h2s->flags |= flags;
Willy Tarreau1915ca22019-01-24 11:49:37 +01001972 h2s->body_len = body_len;
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001973
Willy Tarreau88d138e2019-01-02 19:38:14 +01001974 done:
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001975 if (h2c->dff & H2_F_HEADERS_END_STREAM)
Willy Tarreau13278b42017-10-13 19:23:14 +02001976 h2s->flags |= H2_SF_ES_RCVD;
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001977
1978 if (h2s->flags & H2_SF_ES_RCVD) {
1979 h2s->st = H2_SS_HREM;
Willy Tarreau39d68502018-03-02 12:26:37 +01001980 h2s->cs->flags |= CS_FL_REOS;
Willy Tarreau13278b42017-10-13 19:23:14 +02001981 }
1982
Willy Tarreau3a429f02019-01-03 11:41:50 +01001983 /* update the max stream ID if the request is being processed */
1984 if (h2s->id > h2c->max_id)
1985 h2c->max_id = h2s->id;
Willy Tarreau13278b42017-10-13 19:23:14 +02001986
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001987 return h2s;
Willy Tarreau13278b42017-10-13 19:23:14 +02001988
1989 conn_err:
1990 h2c_error(h2c, error);
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001991 goto out;
Willy Tarreau13278b42017-10-13 19:23:14 +02001992
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01001993 out:
1994 h2_release_buf(h2c, &rxbuf);
Willy Tarreau2a761dc2018-02-26 18:50:57 +01001995 return NULL;
Willy Tarreau96a10c22018-12-23 18:30:44 +01001996
1997 send_rst:
1998 /* make the demux send an RST for the current stream. We may only
1999 * do this if we're certain that the HEADERS frame was properly
2000 * decompressed so that the HPACK decoder is still kept up to date.
2001 */
2002 h2_release_buf(h2c, &rxbuf);
2003 h2c->st0 = H2_CS_FRAME_E;
2004 return h2s;
Willy Tarreau13278b42017-10-13 19:23:14 +02002005}
2006
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002007/* processes a HEADERS frame. Returns h2s on success or NULL on missing data.
2008 * It may return an error in h2c or h2s. Described in RFC7540#6.2. Most of the
2009 * errors here are reported as connection errors since it's impossible to
2010 * recover from such errors after the compression context has been altered.
2011 */
2012static struct h2s *h2c_bck_handle_headers(struct h2c *h2c, struct h2s *h2s)
2013{
2014 int error;
2015
2016 if (!h2c->dfl) {
Willy Tarreauc4ea04c2018-12-23 08:13:59 +01002017 /* RFC7540#4.2 */
2018 error = H2_ERR_FRAME_SIZE_ERROR; // empty headers frame!
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002019 sess_log(h2c->conn->owner);
Willy Tarreauc4ea04c2018-12-23 08:13:59 +01002020 goto conn_err;
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002021 }
2022
2023 if (!b_size(&h2c->dbuf))
2024 return NULL; // empty buffer
2025
2026 if (b_data(&h2c->dbuf) < h2c->dfl && !b_full(&h2c->dbuf))
2027 return NULL; // incomplete frame
2028
Willy Tarreau1915ca22019-01-24 11:49:37 +01002029 error = h2c_decode_headers(h2c, &h2s->rxbuf, &h2s->flags, &h2s->body_len);
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002030
Willy Tarreau25919232019-01-03 14:48:18 +01002031 /* unrecoverable error ? */
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002032 if (h2c->st0 >= H2_CS_ERROR)
2033 return NULL;
2034
Willy Tarreau25919232019-01-03 14:48:18 +01002035 if (error <= 0) {
2036 if (error == 0)
2037 return NULL; // missing data
2038
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002039 /* stream error : send RST_STREAM */
Willy Tarreau25919232019-01-03 14:48:18 +01002040 h2s_error(h2s, H2_ERR_PROTOCOL_ERROR);
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002041 h2c->st0 = H2_CS_FRAME_E;
Willy Tarreau25919232019-01-03 14:48:18 +01002042 return NULL;
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002043 }
2044
Willy Tarreau45ffc0c2019-01-03 09:32:20 +01002045 if (h2c->dff & H2_F_HEADERS_END_STREAM) {
2046 h2s->flags |= H2_SF_ES_RCVD;
2047 h2s->cs->flags |= CS_FL_REOS;
2048 }
2049
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002050 if (h2s->cs->flags & CS_FL_ERROR && h2s->st < H2_SS_ERROR)
2051 h2s->st = H2_SS_ERROR;
2052 else if (h2s->cs->flags & CS_FL_REOS && h2s->st == H2_SS_OPEN)
2053 h2s->st = H2_SS_HREM;
2054 else if (h2s->cs->flags & CS_FL_REOS && h2s->st == H2_SS_HLOC)
2055 h2s_close(h2s);
2056
2057 return h2s;
2058
2059 conn_err:
2060 h2c_error(h2c, error);
2061 return NULL;
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002062}
2063
Willy Tarreau454f9052017-10-26 19:40:35 +02002064/* processes a DATA frame. Returns > 0 on success or zero on missing data.
2065 * It may return an error in h2c or h2s. Described in RFC7540#6.1.
2066 */
2067static int h2c_frt_handle_data(struct h2c *h2c, struct h2s *h2s)
2068{
2069 int error;
2070
2071 /* note that empty DATA frames are perfectly valid and sometimes used
2072 * to signal an end of stream (with the ES flag).
2073 */
2074
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002075 if (!b_size(&h2c->dbuf) && h2c->dfl)
Willy Tarreau454f9052017-10-26 19:40:35 +02002076 return 0; // empty buffer
2077
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002078 if (b_data(&h2c->dbuf) < h2c->dfl && !b_full(&h2c->dbuf))
Willy Tarreau454f9052017-10-26 19:40:35 +02002079 return 0; // incomplete frame
2080
2081 /* now either the frame is complete or the buffer is complete */
2082
2083 if (!h2c->dsi) {
2084 /* RFC7540#6.1 */
2085 error = H2_ERR_PROTOCOL_ERROR;
2086 goto conn_err;
2087 }
2088
2089 if (h2s->st != H2_SS_OPEN && h2s->st != H2_SS_HLOC) {
2090 /* RFC7540#6.1 */
2091 error = H2_ERR_STREAM_CLOSED;
2092 goto strm_err;
2093 }
2094
Willy Tarreau1915ca22019-01-24 11:49:37 +01002095 if ((h2s->flags & H2_SF_DATA_CLEN) && h2c->dfl > h2s->body_len) {
2096 /* RFC7540#8.1.2 */
2097 error = H2_ERR_PROTOCOL_ERROR;
2098 goto strm_err;
2099 }
2100
Willy Tarreaua56a6de2018-02-26 15:59:07 +01002101 if (!h2_frt_transfer_data(h2s))
2102 return 0;
2103
Willy Tarreau454f9052017-10-26 19:40:35 +02002104 /* call the upper layers to process the frame, then let the upper layer
2105 * notify the stream about any change.
2106 */
2107 if (!h2s->cs) {
2108 error = H2_ERR_STREAM_CLOSED;
2109 goto strm_err;
2110 }
2111
Willy Tarreau8f650c32017-11-21 19:36:21 +01002112 if (h2c->st0 >= H2_CS_ERROR)
2113 return 0;
2114
Willy Tarreau721c9742017-11-07 11:05:42 +01002115 if (h2s->st >= H2_SS_ERROR) {
Willy Tarreau454f9052017-10-26 19:40:35 +02002116 /* stream error : send RST_STREAM */
Willy Tarreaua20a5192017-12-27 11:02:06 +01002117 h2c->st0 = H2_CS_FRAME_E;
Willy Tarreau454f9052017-10-26 19:40:35 +02002118 }
2119
2120 /* check for completion : the callee will change this to FRAME_A or
2121 * FRAME_H once done.
2122 */
2123 if (h2c->st0 == H2_CS_FRAME_P)
2124 return 0;
2125
Willy Tarreauc4134ba2017-12-11 18:45:08 +01002126 /* last frame */
2127 if (h2c->dff & H2_F_DATA_END_STREAM) {
2128 h2s->st = H2_SS_HREM;
2129 h2s->flags |= H2_SF_ES_RCVD;
Willy Tarreau39d68502018-03-02 12:26:37 +01002130 h2s->cs->flags |= CS_FL_REOS;
Willy Tarreau1915ca22019-01-24 11:49:37 +01002131
2132 if (h2s->flags & H2_SF_DATA_CLEN && h2s->body_len) {
2133 /* RFC7540#8.1.2 */
2134 error = H2_ERR_PROTOCOL_ERROR;
2135 goto strm_err;
2136 }
Willy Tarreauc4134ba2017-12-11 18:45:08 +01002137 }
2138
Willy Tarreau454f9052017-10-26 19:40:35 +02002139 return 1;
2140
2141 conn_err:
2142 h2c_error(h2c, error);
2143 return 0;
2144
2145 strm_err:
2146 if (h2s) {
2147 h2s_error(h2s, error);
Willy Tarreaua20a5192017-12-27 11:02:06 +01002148 h2c->st0 = H2_CS_FRAME_E;
Willy Tarreau454f9052017-10-26 19:40:35 +02002149 }
2150 else
2151 h2c_error(h2c, error);
2152 return 0;
2153}
2154
Willy Tarreaubc933932017-10-09 16:21:43 +02002155/* process Rx frames to be demultiplexed */
2156static void h2_process_demux(struct h2c *h2c)
2157{
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002158 struct h2s *h2s = NULL, *tmp_h2s;
Willy Tarreauf3ee0692017-10-17 08:18:25 +02002159
Willy Tarreau081d4722017-05-16 21:51:05 +02002160 if (h2c->st0 >= H2_CS_ERROR)
2161 return;
Willy Tarreau52eed752017-09-22 15:05:09 +02002162
2163 if (unlikely(h2c->st0 < H2_CS_FRAME_H)) {
2164 if (h2c->st0 == H2_CS_PREFACE) {
Willy Tarreau01b44822018-10-03 14:26:37 +02002165 if (h2c->flags & H2_CF_IS_BACK)
2166 return;
Willy Tarreau52eed752017-09-22 15:05:09 +02002167 if (unlikely(h2c_frt_recv_preface(h2c) <= 0)) {
2168 /* RFC7540#3.5: a GOAWAY frame MAY be omitted */
Willy Tarreau22de8d32018-09-05 19:55:58 +02002169 if (h2c->st0 == H2_CS_ERROR) {
Willy Tarreau52eed752017-09-22 15:05:09 +02002170 h2c->st0 = H2_CS_ERROR2;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002171 sess_log(h2c->conn->owner);
2172 }
Willy Tarreau52eed752017-09-22 15:05:09 +02002173 goto fail;
2174 }
2175
2176 h2c->max_id = 0;
2177 h2c->st0 = H2_CS_SETTINGS1;
2178 }
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002179
2180 if (h2c->st0 == H2_CS_SETTINGS1) {
2181 struct h2_fh hdr;
2182
2183 /* ensure that what is pending is a valid SETTINGS frame
2184 * without an ACK.
2185 */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002186 if (!h2_get_frame_hdr(&h2c->dbuf, &hdr)) {
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002187 /* RFC7540#3.5: a GOAWAY frame MAY be omitted */
Willy Tarreau22de8d32018-09-05 19:55:58 +02002188 if (h2c->st0 == H2_CS_ERROR) {
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002189 h2c->st0 = H2_CS_ERROR2;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002190 sess_log(h2c->conn->owner);
2191 }
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002192 goto fail;
2193 }
2194
2195 if (hdr.sid || hdr.ft != H2_FT_SETTINGS || hdr.ff & H2_F_SETTINGS_ACK) {
2196 /* RFC7540#3.5: a GOAWAY frame MAY be omitted */
2197 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
2198 h2c->st0 = H2_CS_ERROR2;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002199 sess_log(h2c->conn->owner);
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002200 goto fail;
2201 }
2202
Willy Tarreau3f0e1ec2018-04-17 10:28:27 +02002203 if ((int)hdr.len < 0 || (int)hdr.len > global.tune.bufsize) {
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002204 /* RFC7540#3.5: a GOAWAY frame MAY be omitted */
2205 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
2206 h2c->st0 = H2_CS_ERROR2;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002207 sess_log(h2c->conn->owner);
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002208 goto fail;
2209 }
2210
Willy Tarreau3bf69182018-12-21 15:34:50 +01002211 /* that's OK, switch to FRAME_P to process it. This is
2212 * a SETTINGS frame whose header has already been
2213 * deleted above.
2214 */
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002215 h2c->dfl = hdr.len;
2216 h2c->dsi = hdr.sid;
2217 h2c->dft = hdr.ft;
2218 h2c->dff = hdr.ff;
Willy Tarreau05e5daf2017-12-11 15:17:36 +01002219 h2c->dpl = 0;
Willy Tarreau4c3690b2017-10-10 15:16:55 +02002220 h2c->st0 = H2_CS_FRAME_P;
2221 }
Willy Tarreau52eed752017-09-22 15:05:09 +02002222 }
Willy Tarreau7e98c052017-10-10 15:56:59 +02002223
2224 /* process as many incoming frames as possible below */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002225 while (b_data(&h2c->dbuf)) {
Willy Tarreau7e98c052017-10-10 15:56:59 +02002226 int ret = 0;
2227
2228 if (h2c->st0 >= H2_CS_ERROR)
2229 break;
2230
2231 if (h2c->st0 == H2_CS_FRAME_H) {
2232 struct h2_fh hdr;
Willy Tarreau3bf69182018-12-21 15:34:50 +01002233 unsigned int padlen = 0;
Willy Tarreau7e98c052017-10-10 15:56:59 +02002234
Willy Tarreaua4428bd2018-12-22 18:11:41 +01002235 if (!h2_peek_frame_hdr(&h2c->dbuf, 0, &hdr))
Willy Tarreau7e98c052017-10-10 15:56:59 +02002236 break;
2237
Willy Tarreau3f0e1ec2018-04-17 10:28:27 +02002238 if ((int)hdr.len < 0 || (int)hdr.len > global.tune.bufsize) {
Willy Tarreau7e98c052017-10-10 15:56:59 +02002239 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
2240 h2c->st0 = H2_CS_ERROR;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002241 if (!h2c->nb_streams) {
2242 /* only log if no other stream can report the error */
2243 sess_log(h2c->conn->owner);
2244 }
Willy Tarreau7e98c052017-10-10 15:56:59 +02002245 break;
2246 }
2247
Willy Tarreau3bf69182018-12-21 15:34:50 +01002248 if (h2_ft_bit(hdr.ft) & H2_FT_PADDED_MASK && hdr.ff & H2_F_PADDED) {
2249 /* If the frame is padded (HEADERS, PUSH_PROMISE or DATA),
2250 * we read the pad length and drop it from the remaining
2251 * payload (one byte + the 9 remaining ones = 10 total
2252 * removed), so we have a frame payload starting after the
2253 * pad len. Flow controlled frames (DATA) also count the
2254 * padlen in the flow control, so it must be adjusted.
2255 */
2256 if (hdr.len < 1) {
2257 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
2258 sess_log(h2c->conn->owner);
2259 goto fail;
2260 }
2261 hdr.len--;
2262
2263 if (b_data(&h2c->dbuf) < 10)
2264 break; // missing padlen
2265
2266 padlen = *(uint8_t *)b_peek(&h2c->dbuf, 9);
2267
2268 if (padlen > hdr.len) {
2269 /* RFC7540#6.1 : pad length = length of
2270 * frame payload or greater => error.
2271 */
2272 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
2273 sess_log(h2c->conn->owner);
2274 goto fail;
2275 }
2276
2277 if (h2_ft_bit(hdr.ft) & H2_FT_FC_MASK) {
2278 h2c->rcvd_c++;
2279 h2c->rcvd_s++;
2280 }
2281 b_del(&h2c->dbuf, 1);
2282 }
2283 h2_skip_frame_hdr(&h2c->dbuf);
Willy Tarreau7e98c052017-10-10 15:56:59 +02002284 h2c->dfl = hdr.len;
2285 h2c->dsi = hdr.sid;
2286 h2c->dft = hdr.ft;
2287 h2c->dff = hdr.ff;
Willy Tarreau3bf69182018-12-21 15:34:50 +01002288 h2c->dpl = padlen;
Willy Tarreau7e98c052017-10-10 15:56:59 +02002289 h2c->st0 = H2_CS_FRAME_P;
Willy Tarreau7e98c052017-10-10 15:56:59 +02002290 }
2291
2292 /* Only H2_CS_FRAME_P and H2_CS_FRAME_A here */
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002293 tmp_h2s = h2c_st_by_id(h2c, h2c->dsi);
2294
Willy Tarreau567beb82018-12-18 16:52:44 +01002295 if (tmp_h2s != h2s && h2s && h2s->cs &&
2296 (b_data(&h2s->rxbuf) ||
2297 (h2s->cs->flags & (CS_FL_ERROR|CS_FL_ERR_PENDING|CS_FL_EOS|CS_FL_REOS)))) {
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002298 /* we may have to signal the upper layers */
2299 h2s->cs->flags |= CS_FL_RCV_MORE;
Willy Tarreau7e094452018-12-19 18:08:52 +01002300 h2s_notify_recv(h2s);
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002301 }
2302 h2s = tmp_h2s;
Willy Tarreau7e98c052017-10-10 15:56:59 +02002303
Willy Tarreaud7901432017-12-29 11:34:40 +01002304 if (h2c->st0 == H2_CS_FRAME_E)
2305 goto strm_err;
2306
Willy Tarreauf65b80d2017-10-30 11:46:49 +01002307 if (h2s->st == H2_SS_IDLE &&
2308 h2c->dft != H2_FT_HEADERS && h2c->dft != H2_FT_PRIORITY) {
2309 /* RFC7540#5.1: any frame other than HEADERS or PRIORITY in
2310 * this state MUST be treated as a connection error
2311 */
2312 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
2313 h2c->st0 = H2_CS_ERROR;
Willy Tarreau22de8d32018-09-05 19:55:58 +02002314 if (!h2c->nb_streams) {
2315 /* only log if no other stream can report the error */
2316 sess_log(h2c->conn->owner);
2317 }
Willy Tarreauf65b80d2017-10-30 11:46:49 +01002318 break;
2319 }
2320
Willy Tarreauf182a9a2017-10-30 12:03:50 +01002321 if (h2s->st == H2_SS_HREM && h2c->dft != H2_FT_WINDOW_UPDATE &&
2322 h2c->dft != H2_FT_RST_STREAM && h2c->dft != H2_FT_PRIORITY) {
2323 /* RFC7540#5.1: any frame other than WU/PRIO/RST in
Willy Tarreau5b4eae32019-01-24 09:43:32 +01002324 * this state MUST be treated as a stream error.
2325 * 6.2, 6.6 and 6.10 further mandate that HEADERS/
2326 * PUSH_PROMISE/CONTINUATION cause connection errors.
Willy Tarreauf182a9a2017-10-30 12:03:50 +01002327 */
Willy Tarreau5b4eae32019-01-24 09:43:32 +01002328 if (h2_ft_bit(h2c->dft) & H2_FT_HDR_MASK)
2329 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
2330 else
2331 h2s_error(h2s, H2_ERR_STREAM_CLOSED);
Willy Tarreauf182a9a2017-10-30 12:03:50 +01002332 goto strm_err;
2333 }
2334
Willy Tarreauab837502017-12-27 15:07:30 +01002335 /* Below the management of frames received in closed state is a
2336 * bit hackish because the spec makes strong differences between
2337 * streams closed by receiving RST, sending RST, and seeing ES
2338 * in both directions. In addition to this, the creation of a
2339 * new stream reusing the identifier of a closed one will be
2340 * detected here. Given that we cannot keep track of all closed
2341 * streams forever, we consider that unknown closed streams were
2342 * closed on RST received, which allows us to respond with an
2343 * RST without breaking the connection (eg: to abort a transfer).
2344 * Some frames have to be silently ignored as well.
2345 */
2346 if (h2s->st == H2_SS_CLOSED && h2c->dsi) {
Willy Tarreau113c7a22019-01-24 09:36:53 +01002347 if (h2_ft_bit(h2c->dft) & H2_FT_HDR_MASK) {
Willy Tarreauab837502017-12-27 15:07:30 +01002348 /* #5.1.1: The identifier of a newly
2349 * established stream MUST be numerically
2350 * greater than all streams that the initiating
2351 * endpoint has opened or reserved. This
2352 * governs streams that are opened using a
2353 * HEADERS frame and streams that are reserved
2354 * using PUSH_PROMISE. An endpoint that
2355 * receives an unexpected stream identifier
2356 * MUST respond with a connection error.
2357 */
2358 h2c_error(h2c, H2_ERR_STREAM_CLOSED);
2359 goto strm_err;
2360 }
2361
2362 if (h2s->flags & H2_SF_RST_RCVD) {
2363 /* RFC7540#5.1:closed: an endpoint that
2364 * receives any frame other than PRIORITY after
2365 * receiving a RST_STREAM MUST treat that as a
2366 * stream error of type STREAM_CLOSED.
2367 *
2368 * Note that old streams fall into this category
2369 * and will lead to an RST being sent.
2370 */
2371 h2s_error(h2s, H2_ERR_STREAM_CLOSED);
2372 h2c->st0 = H2_CS_FRAME_E;
2373 goto strm_err;
2374 }
2375
2376 /* RFC7540#5.1:closed: if this state is reached as a
2377 * result of sending a RST_STREAM frame, the peer that
2378 * receives the RST_STREAM might have already sent
2379 * frames on the stream that cannot be withdrawn. An
2380 * endpoint MUST ignore frames that it receives on
2381 * closed streams after it has sent a RST_STREAM
2382 * frame. An endpoint MAY choose to limit the period
2383 * over which it ignores frames and treat frames that
2384 * arrive after this time as being in error.
2385 */
2386 if (!(h2s->flags & H2_SF_RST_SENT)) {
2387 /* RFC7540#5.1:closed: any frame other than
2388 * PRIO/WU/RST in this state MUST be treated as
2389 * a connection error
2390 */
2391 if (h2c->dft != H2_FT_RST_STREAM &&
2392 h2c->dft != H2_FT_PRIORITY &&
2393 h2c->dft != H2_FT_WINDOW_UPDATE) {
2394 h2c_error(h2c, H2_ERR_STREAM_CLOSED);
2395 goto strm_err;
2396 }
2397 }
2398 }
2399
Willy Tarreauc0da1962017-10-30 18:38:00 +01002400#if 0
2401 // problem below: it is not possible to completely ignore such
2402 // streams as we need to maintain the compression state as well
2403 // and for this we need to completely process these frames (eg:
2404 // HEADERS frames) as well as counting DATA frames to emit
2405 // proper WINDOW UPDATES and ensure the connection doesn't stall.
2406 // This is a typical case of layer violation where the
2407 // transported contents are critical to the connection's
2408 // validity and must be ignored at the same time :-(
2409
2410 /* graceful shutdown, ignore streams whose ID is higher than
2411 * the one advertised in GOAWAY. RFC7540#6.8.
2412 */
2413 if (unlikely(h2c->last_sid >= 0) && h2c->dsi > h2c->last_sid) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002414 ret = MIN(b_data(&h2c->dbuf), h2c->dfl);
2415 b_del(&h2c->dbuf, ret);
Willy Tarreauc0da1962017-10-30 18:38:00 +01002416 h2c->dfl -= ret;
2417 ret = h2c->dfl == 0;
2418 goto strm_err;
2419 }
2420#endif
2421
Willy Tarreau7e98c052017-10-10 15:56:59 +02002422 switch (h2c->dft) {
Willy Tarreau3421aba2017-07-27 15:41:03 +02002423 case H2_FT_SETTINGS:
2424 if (h2c->st0 == H2_CS_FRAME_P)
2425 ret = h2c_handle_settings(h2c);
2426
2427 if (h2c->st0 == H2_CS_FRAME_A)
2428 ret = h2c_ack_settings(h2c);
2429 break;
2430
Willy Tarreaucf68c782017-10-10 17:11:41 +02002431 case H2_FT_PING:
2432 if (h2c->st0 == H2_CS_FRAME_P)
2433 ret = h2c_handle_ping(h2c);
2434
2435 if (h2c->st0 == H2_CS_FRAME_A)
2436 ret = h2c_ack_ping(h2c);
2437 break;
2438
Willy Tarreau26f95952017-07-27 17:18:30 +02002439 case H2_FT_WINDOW_UPDATE:
2440 if (h2c->st0 == H2_CS_FRAME_P)
2441 ret = h2c_handle_window_update(h2c, h2s);
2442 break;
2443
Willy Tarreau61290ec2017-10-17 08:19:21 +02002444 case H2_FT_CONTINUATION:
Willy Tarreauea18f862018-12-22 20:19:26 +01002445 /* RFC7540#6.10: CONTINUATION may only be preceeded by
2446 * a HEADERS/PUSH_PROMISE/CONTINUATION frame. These
2447 * frames' parsers consume all following CONTINUATION
2448 * frames so this one is out of sequence.
Willy Tarreau61290ec2017-10-17 08:19:21 +02002449 */
Willy Tarreauea18f862018-12-22 20:19:26 +01002450 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
2451 sess_log(h2c->conn->owner);
2452 goto fail;
Willy Tarreau61290ec2017-10-17 08:19:21 +02002453
Willy Tarreau13278b42017-10-13 19:23:14 +02002454 case H2_FT_HEADERS:
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002455 if (h2c->st0 == H2_CS_FRAME_P) {
Willy Tarreauc12f38f2018-10-08 14:53:27 +02002456 if (h2c->flags & H2_CF_IS_BACK)
2457 tmp_h2s = h2c_bck_handle_headers(h2c, h2s);
2458 else
2459 tmp_h2s = h2c_frt_handle_headers(h2c, h2s);
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002460 if (tmp_h2s) {
2461 h2s = tmp_h2s;
2462 ret = 1;
2463 }
2464 }
Willy Tarreau13278b42017-10-13 19:23:14 +02002465 break;
2466
Willy Tarreau454f9052017-10-26 19:40:35 +02002467 case H2_FT_DATA:
2468 if (h2c->st0 == H2_CS_FRAME_P)
2469 ret = h2c_frt_handle_data(h2c, h2s);
2470
2471 if (h2c->st0 == H2_CS_FRAME_A)
2472 ret = h2c_send_strm_wu(h2c);
2473 break;
Willy Tarreaucd234e92017-08-18 10:59:39 +02002474
Willy Tarreau92153fc2017-12-03 19:46:19 +01002475 case H2_FT_PRIORITY:
2476 if (h2c->st0 == H2_CS_FRAME_P)
2477 ret = h2c_handle_priority(h2c);
2478 break;
2479
Willy Tarreaucd234e92017-08-18 10:59:39 +02002480 case H2_FT_RST_STREAM:
2481 if (h2c->st0 == H2_CS_FRAME_P)
2482 ret = h2c_handle_rst_stream(h2c, h2s);
2483 break;
2484
Willy Tarreaue96b0922017-10-30 00:28:29 +01002485 case H2_FT_GOAWAY:
2486 if (h2c->st0 == H2_CS_FRAME_P)
2487 ret = h2c_handle_goaway(h2c);
2488 break;
2489
Willy Tarreau1c661982017-10-30 13:52:01 +01002490 case H2_FT_PUSH_PROMISE:
2491 /* not permitted here, RFC7540#5.1 */
2492 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
Willy Tarreau22de8d32018-09-05 19:55:58 +02002493 if (!h2c->nb_streams) {
2494 /* only log if no other stream can report the error */
2495 sess_log(h2c->conn->owner);
2496 }
Willy Tarreau1c661982017-10-30 13:52:01 +01002497 break;
2498
2499 /* implement all extra frame types here */
Willy Tarreau7e98c052017-10-10 15:56:59 +02002500 default:
2501 /* drop frames that we ignore. They may be larger than
2502 * the buffer so we drain all of their contents until
2503 * we reach the end.
2504 */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002505 ret = MIN(b_data(&h2c->dbuf), h2c->dfl);
2506 b_del(&h2c->dbuf, ret);
Willy Tarreau7e98c052017-10-10 15:56:59 +02002507 h2c->dfl -= ret;
2508 ret = h2c->dfl == 0;
2509 }
2510
Willy Tarreauf182a9a2017-10-30 12:03:50 +01002511 strm_err:
Willy Tarreaua20a5192017-12-27 11:02:06 +01002512 /* We may have to send an RST if not done yet */
2513 if (h2s->st == H2_SS_ERROR)
2514 h2c->st0 = H2_CS_FRAME_E;
Willy Tarreau27a84c92017-10-17 08:10:17 +02002515
Willy Tarreaua20a5192017-12-27 11:02:06 +01002516 if (h2c->st0 == H2_CS_FRAME_E)
2517 ret = h2c_send_rst_stream(h2c, h2s);
Willy Tarreau27a84c92017-10-17 08:10:17 +02002518
Willy Tarreau7e98c052017-10-10 15:56:59 +02002519 /* error or missing data condition met above ? */
Willy Tarreau1ed87b72018-11-25 08:45:16 +01002520 if (ret <= 0)
Willy Tarreau7e98c052017-10-10 15:56:59 +02002521 break;
2522
2523 if (h2c->st0 != H2_CS_FRAME_H) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002524 b_del(&h2c->dbuf, h2c->dfl);
Willy Tarreau7e98c052017-10-10 15:56:59 +02002525 h2c->st0 = H2_CS_FRAME_H;
2526 }
2527 }
Willy Tarreau52eed752017-09-22 15:05:09 +02002528
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02002529 if (h2c->rcvd_c > 0 &&
2530 !(h2c->flags & (H2_CF_MUX_MFULL | H2_CF_DEM_MBUSY | H2_CF_DEM_MROOM)))
2531 h2c_send_conn_wu(h2c);
2532
Willy Tarreau52eed752017-09-22 15:05:09 +02002533 fail:
2534 /* we can go here on missing data, blocked response or error */
Willy Tarreau567beb82018-12-18 16:52:44 +01002535 if (h2s && h2s->cs &&
2536 (b_data(&h2s->rxbuf) ||
2537 (h2s->cs->flags & (CS_FL_ERROR|CS_FL_ERR_PENDING|CS_FL_EOS|CS_FL_REOS)))) {
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002538 /* we may have to signal the upper layers */
2539 h2s->cs->flags |= CS_FL_RCV_MORE;
Willy Tarreau7e094452018-12-19 18:08:52 +01002540 h2s_notify_recv(h2s);
Willy Tarreau2a761dc2018-02-26 18:50:57 +01002541 }
Willy Tarreau1ed87b72018-11-25 08:45:16 +01002542
Willy Tarreau47b515a2018-12-21 16:09:41 +01002543 h2c_restart_reading(h2c);
Willy Tarreaubc933932017-10-09 16:21:43 +02002544}
2545
2546/* process Tx frames from streams to be multiplexed. Returns > 0 if it reached
2547 * the end.
2548 */
2549static int h2_process_mux(struct h2c *h2c)
2550{
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002551 struct h2s *h2s, *h2s_back;
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002552
Willy Tarreau01b44822018-10-03 14:26:37 +02002553 if (unlikely(h2c->st0 < H2_CS_FRAME_H)) {
2554 if (unlikely(h2c->st0 == H2_CS_PREFACE && (h2c->flags & H2_CF_IS_BACK))) {
2555 if (unlikely(h2c_bck_send_preface(h2c) <= 0)) {
2556 /* RFC7540#3.5: a GOAWAY frame MAY be omitted */
2557 if (h2c->st0 == H2_CS_ERROR) {
2558 h2c->st0 = H2_CS_ERROR2;
2559 sess_log(h2c->conn->owner);
2560 }
2561 goto fail;
2562 }
2563 h2c->st0 = H2_CS_SETTINGS1;
2564 }
2565 /* need to wait for the other side */
Willy Tarreau75a930a2018-12-12 08:03:58 +01002566 if (h2c->st0 < H2_CS_FRAME_H)
Willy Tarreau01b44822018-10-03 14:26:37 +02002567 return 1;
2568 }
2569
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02002570 /* start by sending possibly pending window updates */
2571 if (h2c->rcvd_c > 0 &&
2572 !(h2c->flags & (H2_CF_MUX_MFULL | H2_CF_MUX_MALLOC)) &&
2573 h2c_send_conn_wu(h2c) < 0)
2574 goto fail;
2575
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002576 /* First we always process the flow control list because the streams
2577 * waiting there were already elected for immediate emission but were
2578 * blocked just on this.
2579 */
2580
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002581 list_for_each_entry_safe(h2s, h2s_back, &h2c->fctl_list, list) {
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002582 if (h2c->mws <= 0 || h2c->flags & H2_CF_MUX_BLOCK_ANY ||
2583 h2c->st0 >= H2_CS_ERROR)
2584 break;
2585
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002586 h2s->flags &= ~H2_SF_BLK_ANY;
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002587 h2s->send_wait->events &= ~SUB_RETRY_SEND;
2588 h2s->send_wait->events |= SUB_CALL_UNSUBSCRIBE;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002589 tasklet_wakeup(h2s->send_wait->task);
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002590 LIST_DEL(&h2s->list);
2591 LIST_INIT(&h2s->list);
Olivier Houchardd846c262018-10-19 17:24:29 +02002592 LIST_ADDQ(&h2c->sending_list, &h2s->list);
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002593 }
2594
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002595 list_for_each_entry_safe(h2s, h2s_back, &h2c->send_list, list) {
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002596 if (h2c->st0 >= H2_CS_ERROR || h2c->flags & H2_CF_MUX_BLOCK_ANY)
2597 break;
2598
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002599 h2s->flags &= ~H2_SF_BLK_ANY;
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002600 h2s->send_wait->events &= ~SUB_RETRY_SEND;
2601 h2s->send_wait->events |= SUB_CALL_UNSUBSCRIBE;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002602 tasklet_wakeup(h2s->send_wait->task);
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002603 LIST_DEL(&h2s->list);
2604 LIST_INIT(&h2s->list);
Olivier Houchardd846c262018-10-19 17:24:29 +02002605 LIST_ADDQ(&h2c->sending_list, &h2s->list);
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002606 }
2607
Willy Tarreaucc0b8c32017-10-26 16:55:59 +02002608 fail:
Willy Tarreau3eabe9b2017-11-07 11:03:01 +01002609 if (unlikely(h2c->st0 >= H2_CS_ERROR)) {
Willy Tarreau081d4722017-05-16 21:51:05 +02002610 if (h2c->st0 == H2_CS_ERROR) {
2611 if (h2c->max_id >= 0) {
2612 h2c_send_goaway_error(h2c, NULL);
2613 if (h2c->flags & H2_CF_MUX_BLOCK_ANY)
2614 return 0;
2615 }
2616
2617 h2c->st0 = H2_CS_ERROR2; // sent (or failed hard) !
2618 }
2619 return 1;
2620 }
Willy Tarreaubacdf5a2017-10-17 10:57:04 +02002621 return (h2c->mws <= 0 || LIST_ISEMPTY(&h2c->fctl_list)) && LIST_ISEMPTY(&h2c->send_list);
Willy Tarreaubc933932017-10-09 16:21:43 +02002622}
2623
Willy Tarreau62f52692017-10-08 23:01:42 +02002624
Willy Tarreau479998a2018-11-18 06:30:59 +01002625/* Attempt to read data, and subscribe if none available.
2626 * The function returns 1 if data has been received, otherwise zero.
2627 */
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002628static int h2_recv(struct h2c *h2c)
Willy Tarreau62f52692017-10-08 23:01:42 +02002629{
Olivier Houchardaf4021e2018-08-09 13:06:55 +02002630 struct connection *conn = h2c->conn;
Willy Tarreau35dbd5d2017-09-22 09:13:49 +02002631 struct buffer *buf;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002632 int max;
Olivier Houchard7505f942018-08-21 18:10:44 +02002633 size_t ret;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002634
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002635 if (h2c->wait_event.events & SUB_RETRY_RECV)
Olivier Houchard81a15af2018-10-19 17:26:49 +02002636 return (b_data(&h2c->dbuf));
Olivier Houchardaf4021e2018-08-09 13:06:55 +02002637
Willy Tarreau315d8072017-12-10 22:17:57 +01002638 if (!h2_recv_allowed(h2c))
Olivier Houchard81a15af2018-10-19 17:26:49 +02002639 return 1;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002640
Willy Tarreau44e973f2018-03-01 17:49:30 +01002641 buf = h2_get_buf(h2c, &h2c->dbuf);
Willy Tarreau1b62c5c2017-09-25 11:55:01 +02002642 if (!buf) {
2643 h2c->flags |= H2_CF_DEM_DALLOC;
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002644 return 0;
Willy Tarreau1b62c5c2017-09-25 11:55:01 +02002645 }
Willy Tarreau35dbd5d2017-09-22 09:13:49 +02002646
Olivier Houchard7505f942018-08-21 18:10:44 +02002647 do {
Willy Tarreaue0f24ee2018-12-14 10:51:23 +01002648 b_realign_if_empty(buf);
Willy Tarreau2a59e872018-12-12 08:23:47 +01002649 if (!b_data(buf) && (h2c->proxy->options2 & PR_O2_USE_HTX)) {
2650 /* HTX in use : try to pre-align the buffer like the
2651 * rxbufs will be to optimize memory copies. We'll make
2652 * sure that the frame header lands at the end of the
2653 * HTX block to alias it upon recv. We cannot use the
2654 * head because rcv_buf() will realign the buffer if
2655 * it's empty. Thus we cheat and pretend we already
2656 * have a few bytes there.
2657 */
2658 max = buf_room_for_htx_data(buf) + 9;
Willy Tarreauc0960d12018-12-14 10:59:15 +01002659 buf->head = sizeof(struct htx) - 9;
Willy Tarreau2a59e872018-12-12 08:23:47 +01002660 }
2661 else
2662 max = b_room(buf);
2663
Olivier Houchard7505f942018-08-21 18:10:44 +02002664 if (max)
2665 ret = conn->xprt->rcv_buf(conn, buf, max, 0);
2666 else
2667 ret = 0;
2668 } while (ret > 0);
Willy Tarreaua2af5122017-10-09 11:56:46 +02002669
Olivier Houchard53216e72018-10-10 15:46:36 +02002670 if (h2_recv_allowed(h2c) && (b_data(buf) < buf->size))
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002671 conn->xprt->subscribe(conn, SUB_RETRY_RECV, &h2c->wait_event);
Olivier Houchard81a15af2018-10-19 17:26:49 +02002672
Olivier Houcharda1411e62018-08-17 18:42:48 +02002673 if (!b_data(buf)) {
Willy Tarreau44e973f2018-03-01 17:49:30 +01002674 h2_release_buf(h2c, &h2c->dbuf);
Olivier Houchard46677732018-11-29 17:06:17 +01002675 return (conn->flags & CO_FL_ERROR || conn_xprt_read0_pending(conn));
Willy Tarreaua2af5122017-10-09 11:56:46 +02002676 }
2677
Willy Tarreaub7b5fe12018-06-18 13:33:09 +02002678 if (b_data(buf) == buf->size)
Willy Tarreaufbe3b4f2017-10-09 15:14:19 +02002679 h2c->flags |= H2_CF_DEM_DFULL;
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002680 return 1;
Willy Tarreau62f52692017-10-08 23:01:42 +02002681}
2682
Willy Tarreau479998a2018-11-18 06:30:59 +01002683/* Try to send data if possible.
2684 * The function returns 1 if data have been sent, otherwise zero.
2685 */
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002686static int h2_send(struct h2c *h2c)
Willy Tarreau62f52692017-10-08 23:01:42 +02002687{
Olivier Houchard29fb89d2018-08-02 18:56:36 +02002688 struct connection *conn = h2c->conn;
Willy Tarreaubc933932017-10-09 16:21:43 +02002689 int done;
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002690 int sent = 0;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002691
2692 if (conn->flags & CO_FL_ERROR)
Olivier Houchard7c6f8b12018-11-13 16:48:36 +01002693 return 1;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002694
Olivier Houchard7505f942018-08-21 18:10:44 +02002695
Willy Tarreaua2af5122017-10-09 11:56:46 +02002696 if (conn->flags & (CO_FL_HANDSHAKE|CO_FL_WAIT_L4_CONN|CO_FL_WAIT_L6_CONN)) {
2697 /* a handshake was requested */
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002698 goto schedule;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002699 }
2700
Willy Tarreaubc933932017-10-09 16:21:43 +02002701 /* This loop is quite simple : it tries to fill as much as it can from
2702 * pending streams into the existing buffer until it's reportedly full
2703 * or the end of send requests is reached. Then it tries to send this
2704 * buffer's contents out, marks it not full if at least one byte could
2705 * be sent, and tries again.
2706 *
2707 * The snd_buf() function normally takes a "flags" argument which may
2708 * be made of a combination of CO_SFL_MSG_MORE to indicate that more
2709 * data immediately comes and CO_SFL_STREAMER to indicate that the
2710 * connection is streaming lots of data (used to increase TLS record
2711 * size at the expense of latency). The former can be sent any time
2712 * there's a buffer full flag, as it indicates at least one stream
2713 * attempted to send and failed so there are pending data. An
2714 * alternative would be to set it as long as there's an active stream
2715 * but that would be problematic for ACKs until we have an absolute
2716 * guarantee that all waiters have at least one byte to send. The
2717 * latter should possibly not be set for now.
2718 */
2719
2720 done = 0;
2721 while (!done) {
2722 unsigned int flags = 0;
2723
2724 /* fill as much as we can into the current buffer */
2725 while (((h2c->flags & (H2_CF_MUX_MFULL|H2_CF_MUX_MALLOC)) == 0) && !done)
2726 done = h2_process_mux(h2c);
2727
2728 if (conn->flags & CO_FL_ERROR)
2729 break;
2730
2731 if (h2c->flags & (H2_CF_MUX_MFULL | H2_CF_DEM_MBUSY | H2_CF_DEM_MROOM))
2732 flags |= CO_SFL_MSG_MORE;
2733
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002734 if (b_data(&h2c->mbuf)) {
2735 int ret = conn->xprt->snd_buf(conn, &h2c->mbuf, b_data(&h2c->mbuf), flags);
Willy Tarreau787db9a2018-06-14 18:31:46 +02002736 if (!ret)
2737 break;
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002738 sent = 1;
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002739 b_del(&h2c->mbuf, ret);
2740 b_realign_if_empty(&h2c->mbuf);
Willy Tarreau787db9a2018-06-14 18:31:46 +02002741 }
Willy Tarreaubc933932017-10-09 16:21:43 +02002742
2743 /* wrote at least one byte, the buffer is not full anymore */
2744 h2c->flags &= ~(H2_CF_MUX_MFULL | H2_CF_DEM_MROOM);
2745 }
2746
Willy Tarreaua2af5122017-10-09 11:56:46 +02002747 if (conn->flags & CO_FL_SOCK_WR_SH) {
2748 /* output closed, nothing to send, clear the buffer to release it */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002749 b_reset(&h2c->mbuf);
Willy Tarreaua2af5122017-10-09 11:56:46 +02002750 }
Olivier Houchard6ff20392018-07-17 18:46:31 +02002751 /* We're not full anymore, so we can wake any task that are waiting
2752 * for us.
2753 */
2754 if (!(h2c->flags & (H2_CF_MUX_MFULL | H2_CF_DEM_MROOM))) {
Olivier Houchard8ae735d2018-09-11 18:24:28 +02002755 while (!LIST_ISEMPTY(&h2c->send_list)) {
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002756 struct h2s *h2s = LIST_ELEM(h2c->send_list.n,
2757 struct h2s *, list);
2758 LIST_DEL(&h2s->list);
2759 LIST_INIT(&h2s->list);
Olivier Houchardd846c262018-10-19 17:24:29 +02002760 LIST_ADDQ(&h2c->sending_list, &h2s->list);
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002761 h2s->send_wait->events &= ~SUB_RETRY_SEND;
2762 h2s->send_wait->events |= SUB_CALL_UNSUBSCRIBE;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02002763 tasklet_wakeup(h2s->send_wait->task);
Olivier Houchard4cf7fb12018-08-02 19:23:05 +02002764 }
Olivier Houchard6ff20392018-07-17 18:46:31 +02002765 }
Olivier Houchard910b2bc2018-07-17 18:49:38 +02002766 /* We're done, no more to send */
2767 if (!b_data(&h2c->mbuf))
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002768 return sent;
Olivier Houchard910b2bc2018-07-17 18:49:38 +02002769schedule:
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002770 if (!(h2c->wait_event.events & SUB_RETRY_SEND))
2771 conn->xprt->subscribe(conn, SUB_RETRY_SEND, &h2c->wait_event);
Olivier Houchardd4dd22d2018-08-17 18:39:46 +02002772 return sent;
Olivier Houchard29fb89d2018-08-02 18:56:36 +02002773}
2774
2775static struct task *h2_io_cb(struct task *t, void *ctx, unsigned short status)
2776{
2777 struct h2c *h2c = ctx;
Olivier Houchard7505f942018-08-21 18:10:44 +02002778 int ret = 0;
Olivier Houchard29fb89d2018-08-02 18:56:36 +02002779
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002780 if (!(h2c->wait_event.events & SUB_RETRY_SEND))
Olivier Houchard7505f942018-08-21 18:10:44 +02002781 ret = h2_send(h2c);
Willy Tarreau4f6516d2018-12-19 13:59:17 +01002782 if (!(h2c->wait_event.events & SUB_RETRY_RECV))
Olivier Houchard7505f942018-08-21 18:10:44 +02002783 ret |= h2_recv(h2c);
Willy Tarreaucef5c8e2018-12-18 10:29:54 +01002784 if (ret || b_data(&h2c->dbuf))
Olivier Houchard7505f942018-08-21 18:10:44 +02002785 h2_process(h2c);
Olivier Houchard910b2bc2018-07-17 18:49:38 +02002786 return NULL;
Willy Tarreaufbe3b4f2017-10-09 15:14:19 +02002787}
Willy Tarreaua2af5122017-10-09 11:56:46 +02002788
Willy Tarreau62f52692017-10-08 23:01:42 +02002789/* callback called on any event by the connection handler.
2790 * It applies changes and returns zero, or < 0 if it wants immediate
2791 * destruction of the connection (which normally doesn not happen in h2).
2792 */
Olivier Houchard7505f942018-08-21 18:10:44 +02002793static int h2_process(struct h2c *h2c)
Willy Tarreau62f52692017-10-08 23:01:42 +02002794{
Olivier Houchard7505f942018-08-21 18:10:44 +02002795 struct connection *conn = h2c->conn;
Willy Tarreaua2af5122017-10-09 11:56:46 +02002796
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002797 if (b_data(&h2c->dbuf) && !(h2c->flags & H2_CF_DEM_BLOCK_ANY)) {
Willy Tarreaud13bf272017-12-14 10:34:52 +01002798 h2_process_demux(h2c);
2799
2800 if (h2c->st0 >= H2_CS_ERROR || conn->flags & CO_FL_ERROR)
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002801 b_reset(&h2c->dbuf);
Willy Tarreaud13bf272017-12-14 10:34:52 +01002802
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002803 if (!b_full(&h2c->dbuf))
Willy Tarreaud13bf272017-12-14 10:34:52 +01002804 h2c->flags &= ~H2_CF_DEM_DFULL;
2805 }
Olivier Houchard7505f942018-08-21 18:10:44 +02002806 h2_send(h2c);
Willy Tarreaud13bf272017-12-14 10:34:52 +01002807
Willy Tarreau0b37d652018-10-03 10:33:02 +02002808 if (unlikely(h2c->proxy->state == PR_STSTOPPED)) {
Willy Tarreau8ec14062017-12-30 18:08:13 +01002809 /* frontend is stopping, reload likely in progress, let's try
2810 * to announce a graceful shutdown if not yet done. We don't
2811 * care if it fails, it will be tried again later.
2812 */
2813 if (!(h2c->flags & (H2_CF_GOAWAY_SENT|H2_CF_GOAWAY_FAILED))) {
2814 if (h2c->last_sid < 0)
2815 h2c->last_sid = (1U << 31) - 1;
2816 h2c_send_goaway_error(h2c, NULL);
2817 }
2818 }
2819
Olivier Houchard7fc96d52017-11-23 18:25:47 +01002820 /*
Olivier Houchard6fa63d92017-11-27 18:41:32 +01002821 * If we received early data, and the handshake is done, wake
2822 * any stream that was waiting for it.
Olivier Houchard7fc96d52017-11-23 18:25:47 +01002823 */
Olivier Houchard6fa63d92017-11-27 18:41:32 +01002824 if (!(h2c->flags & H2_CF_WAIT_FOR_HS) &&
2825 (conn->flags & (CO_FL_EARLY_SSL_HS | CO_FL_HANDSHAKE | CO_FL_EARLY_DATA)) == CO_FL_EARLY_DATA) {
2826 struct eb32_node *node;
2827 struct h2s *h2s;
2828
2829 h2c->flags |= H2_CF_WAIT_FOR_HS;
2830 node = eb32_lookup_ge(&h2c->streams_by_id, 1);
2831
2832 while (node) {
2833 h2s = container_of(node, struct h2s, by_id);
Willy Tarreaufde287c2018-12-19 18:33:16 +01002834 if (h2s->cs && h2s->cs->flags & CS_FL_WAIT_FOR_HS)
Willy Tarreau7e094452018-12-19 18:08:52 +01002835 h2s_notify_recv(h2s);
Olivier Houchard6fa63d92017-11-27 18:41:32 +01002836 node = eb32_next(node);
2837 }
Olivier Houchard7fc96d52017-11-23 18:25:47 +01002838 }
Olivier Houchard6fa63d92017-11-27 18:41:32 +01002839
Willy Tarreau26bd7612017-10-09 16:47:04 +02002840 if (conn->flags & CO_FL_ERROR || conn_xprt_read0_pending(conn) ||
Willy Tarreau29a98242017-10-31 06:59:15 +01002841 h2c->st0 == H2_CS_ERROR2 || h2c->flags & H2_CF_GOAWAY_FAILED ||
2842 (eb_is_empty(&h2c->streams_by_id) && h2c->last_sid >= 0 &&
2843 h2c->max_id >= h2c->last_sid)) {
Willy Tarreau23b92aa2017-10-30 00:26:54 +01002844 h2_wake_some_streams(h2c, 0, 0);
Willy Tarreaufbe3b4f2017-10-09 15:14:19 +02002845
2846 if (eb_is_empty(&h2c->streams_by_id)) {
2847 /* no more stream, kill the connection now */
2848 h2_release(conn);
2849 return -1;
2850 }
Willy Tarreaufbe3b4f2017-10-09 15:14:19 +02002851 }
2852
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002853 if (!b_data(&h2c->dbuf))
Willy Tarreau44e973f2018-03-01 17:49:30 +01002854 h2_release_buf(h2c, &h2c->dbuf);
Willy Tarreaufbe3b4f2017-10-09 15:14:19 +02002855
Olivier Houchard53216e72018-10-10 15:46:36 +02002856 if ((conn->flags & CO_FL_SOCK_WR_SH) ||
2857 h2c->st0 == H2_CS_ERROR2 || (h2c->flags & H2_CF_GOAWAY_FAILED) ||
2858 (h2c->st0 != H2_CS_ERROR &&
2859 !b_data(&h2c->mbuf) &&
2860 (h2c->mws <= 0 || LIST_ISEMPTY(&h2c->fctl_list)) &&
2861 ((h2c->flags & H2_CF_MUX_BLOCK_ANY) || LIST_ISEMPTY(&h2c->send_list))))
Willy Tarreau44e973f2018-03-01 17:49:30 +01002862 h2_release_buf(h2c, &h2c->mbuf);
Willy Tarreaua2af5122017-10-09 11:56:46 +02002863
Willy Tarreau3f133572017-10-31 19:21:06 +01002864 if (h2c->task) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002865 if (eb_is_empty(&h2c->streams_by_id) || b_data(&h2c->mbuf)) {
Willy Tarreau599391a2017-11-24 10:16:00 +01002866 h2c->task->expire = tick_add(now_ms, h2c->last_sid < 0 ? h2c->timeout : h2c->shut_timeout);
Willy Tarreau3f133572017-10-31 19:21:06 +01002867 task_queue(h2c->task);
2868 }
2869 else
2870 h2c->task->expire = TICK_ETERNITY;
Willy Tarreauea392822017-10-31 10:02:25 +01002871 }
Olivier Houchard910b2bc2018-07-17 18:49:38 +02002872
Olivier Houchard7505f942018-08-21 18:10:44 +02002873 h2_send(h2c);
Willy Tarreau62f52692017-10-08 23:01:42 +02002874 return 0;
2875}
2876
Olivier Houchard21df6cc2018-09-14 23:21:44 +02002877static int h2_wake(struct connection *conn)
2878{
Willy Tarreau3d2ee552018-12-19 14:12:10 +01002879 struct h2c *h2c = conn->ctx;
Olivier Houchard21df6cc2018-09-14 23:21:44 +02002880
2881 return (h2_process(h2c));
2882}
2883
Willy Tarreauea392822017-10-31 10:02:25 +01002884/* Connection timeout management. The principle is that if there's no receipt
2885 * nor sending for a certain amount of time, the connection is closed. If the
2886 * MUX buffer still has lying data or is not allocatable, the connection is
2887 * immediately killed. If it's allocatable and empty, we attempt to send a
2888 * GOAWAY frame.
2889 */
Olivier Houchard9f6af332018-05-25 14:04:04 +02002890static struct task *h2_timeout_task(struct task *t, void *context, unsigned short state)
Willy Tarreauea392822017-10-31 10:02:25 +01002891{
Olivier Houchard9f6af332018-05-25 14:04:04 +02002892 struct h2c *h2c = context;
Willy Tarreauea392822017-10-31 10:02:25 +01002893 int expired = tick_is_expired(t->expire, now_ms);
2894
Willy Tarreau0975f112018-03-29 15:22:59 +02002895 if (!expired && h2c)
Willy Tarreauea392822017-10-31 10:02:25 +01002896 return t;
2897
Willy Tarreau0975f112018-03-29 15:22:59 +02002898 task_delete(t);
2899 task_free(t);
2900
2901 if (!h2c) {
2902 /* resources were already deleted */
2903 return NULL;
2904 }
2905
2906 h2c->task = NULL;
Willy Tarreauea392822017-10-31 10:02:25 +01002907 h2c_error(h2c, H2_ERR_NO_ERROR);
2908 h2_wake_some_streams(h2c, 0, 0);
2909
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002910 if (b_data(&h2c->mbuf)) {
Willy Tarreauea392822017-10-31 10:02:25 +01002911 /* don't even try to send a GOAWAY, the buffer is stuck */
2912 h2c->flags |= H2_CF_GOAWAY_FAILED;
2913 }
2914
2915 /* try to send but no need to insist */
Willy Tarreau599391a2017-11-24 10:16:00 +01002916 h2c->last_sid = h2c->max_id;
Willy Tarreauea392822017-10-31 10:02:25 +01002917 if (h2c_send_goaway_error(h2c, NULL) <= 0)
2918 h2c->flags |= H2_CF_GOAWAY_FAILED;
2919
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002920 if (b_data(&h2c->mbuf) && !(h2c->flags & H2_CF_GOAWAY_FAILED) && conn_xprt_ready(h2c->conn)) {
2921 int ret = h2c->conn->xprt->snd_buf(h2c->conn, &h2c->mbuf, b_data(&h2c->mbuf), 0);
Willy Tarreau787db9a2018-06-14 18:31:46 +02002922 if (ret > 0) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02002923 b_del(&h2c->mbuf, ret);
2924 b_realign_if_empty(&h2c->mbuf);
Willy Tarreau787db9a2018-06-14 18:31:46 +02002925 }
2926 }
Willy Tarreauea392822017-10-31 10:02:25 +01002927
Willy Tarreau0975f112018-03-29 15:22:59 +02002928 /* either we can release everything now or it will be done later once
2929 * the last stream closes.
2930 */
2931 if (eb_is_empty(&h2c->streams_by_id))
2932 h2_release(h2c->conn);
Willy Tarreauea392822017-10-31 10:02:25 +01002933
Willy Tarreauea392822017-10-31 10:02:25 +01002934 return NULL;
2935}
2936
2937
Willy Tarreau62f52692017-10-08 23:01:42 +02002938/*******************************************/
2939/* functions below are used by the streams */
2940/*******************************************/
2941
2942/*
2943 * Attach a new stream to a connection
2944 * (Used for outgoing connections)
2945 */
Olivier Houchardf502aca2018-12-14 19:42:40 +01002946static struct conn_stream *h2_attach(struct connection *conn, struct session *sess)
Willy Tarreau62f52692017-10-08 23:01:42 +02002947{
Olivier Houchard7a57e8a2018-11-27 17:36:33 +01002948 struct conn_stream *cs;
2949 struct h2s *h2s;
Willy Tarreau3d2ee552018-12-19 14:12:10 +01002950 struct h2c *h2c = conn->ctx;
Olivier Houchard7a57e8a2018-11-27 17:36:33 +01002951
2952 cs = cs_new(conn);
2953 if (!cs)
2954 return NULL;
Olivier Houchardf502aca2018-12-14 19:42:40 +01002955 h2s = h2c_bck_stream_new(h2c, cs, sess);
Olivier Houchard7a57e8a2018-11-27 17:36:33 +01002956 if (!h2s) {
2957 cs_free(cs);
2958 return NULL;
2959 }
2960 return cs;
Willy Tarreau62f52692017-10-08 23:01:42 +02002961}
2962
Willy Tarreaufafd3982018-11-18 21:29:20 +01002963/* Retrieves the first valid conn_stream from this connection, or returns NULL.
2964 * We have to scan because we may have some orphan streams. It might be
2965 * beneficial to scan backwards from the end to reduce the likeliness to find
2966 * orphans.
2967 */
2968static const struct conn_stream *h2_get_first_cs(const struct connection *conn)
2969{
Willy Tarreau3d2ee552018-12-19 14:12:10 +01002970 struct h2c *h2c = conn->ctx;
Willy Tarreaufafd3982018-11-18 21:29:20 +01002971 struct h2s *h2s;
2972 struct eb32_node *node;
2973
2974 node = eb32_first(&h2c->streams_by_id);
2975 while (node) {
2976 h2s = container_of(node, struct h2s, by_id);
2977 if (h2s->cs)
2978 return h2s->cs;
2979 node = eb32_next(node);
2980 }
2981 return NULL;
2982}
2983
Willy Tarreau62f52692017-10-08 23:01:42 +02002984/*
Olivier Houchard060ed432018-11-06 16:32:42 +01002985 * Destroy the mux and the associated connection, if it is no longer used
2986 */
2987static void h2_destroy(struct connection *conn)
2988{
Willy Tarreau3d2ee552018-12-19 14:12:10 +01002989 struct h2c *h2c = conn->ctx;
Olivier Houchard060ed432018-11-06 16:32:42 +01002990
2991 if (eb_is_empty(&h2c->streams_by_id))
2992 h2_release(h2c->conn);
2993}
2994
2995/*
Willy Tarreau62f52692017-10-08 23:01:42 +02002996 * Detach the stream from the connection and possibly release the connection.
2997 */
2998static void h2_detach(struct conn_stream *cs)
2999{
Willy Tarreau60935142017-10-16 18:11:19 +02003000 struct h2s *h2s = cs->ctx;
3001 struct h2c *h2c;
Olivier Houchardf502aca2018-12-14 19:42:40 +01003002 struct session *sess;
Willy Tarreau60935142017-10-16 18:11:19 +02003003
3004 cs->ctx = NULL;
3005 if (!h2s)
3006 return;
3007
Olivier Houchardf502aca2018-12-14 19:42:40 +01003008 sess = h2s->sess;
Willy Tarreau60935142017-10-16 18:11:19 +02003009 h2c = h2s->h2c;
3010 h2s->cs = NULL;
Willy Tarreau7ac60e82018-07-19 09:04:05 +02003011 h2c->nb_cs--;
Willy Tarreauf2101912018-07-19 10:11:38 +02003012 if (h2c->flags & H2_CF_DEM_TOOMANY &&
3013 !h2_has_too_many_cs(h2c)) {
3014 h2c->flags &= ~H2_CF_DEM_TOOMANY;
Willy Tarreau47b515a2018-12-21 16:09:41 +01003015 h2c_restart_reading(h2c);
Willy Tarreauf2101912018-07-19 10:11:38 +02003016 }
Willy Tarreau60935142017-10-16 18:11:19 +02003017
Willy Tarreau22cf59b2017-11-10 11:42:33 +01003018 /* this stream may be blocked waiting for some data to leave (possibly
3019 * an ES or RST frame), so orphan it in this case.
3020 */
Willy Tarreau3041fcc2018-03-29 15:41:32 +02003021 if (!(cs->conn->flags & CO_FL_ERROR) &&
Willy Tarreaua2b51812018-07-27 09:55:14 +02003022 (h2c->st0 < H2_CS_ERROR) &&
Willy Tarreau3041fcc2018-03-29 15:41:32 +02003023 (h2s->flags & (H2_SF_BLK_MBUSY | H2_SF_BLK_MROOM | H2_SF_BLK_MFCTL)))
Willy Tarreau22cf59b2017-11-10 11:42:33 +01003024 return;
3025
Willy Tarreau45f752e2017-10-30 15:44:59 +01003026 if ((h2c->flags & H2_CF_DEM_BLOCK_ANY && h2s->id == h2c->dsi) ||
3027 (h2c->flags & H2_CF_MUX_BLOCK_ANY && h2s->id == h2c->msi)) {
3028 /* unblock the connection if it was blocked on this
3029 * stream.
3030 */
3031 h2c->flags &= ~H2_CF_DEM_BLOCK_ANY;
3032 h2c->flags &= ~H2_CF_MUX_BLOCK_ANY;
Willy Tarreau47b515a2018-12-21 16:09:41 +01003033 h2c_restart_reading(h2c);
Willy Tarreau45f752e2017-10-30 15:44:59 +01003034 }
3035
Willy Tarreau71049cc2018-03-28 13:56:39 +02003036 h2s_destroy(h2s);
Willy Tarreau60935142017-10-16 18:11:19 +02003037
Olivier Houchard8a786902018-12-15 16:05:40 +01003038 if (h2c->flags & H2_CF_IS_BACK &&
3039 (h2c->proxy->options2 & PR_O2_USE_HTX)) {
Olivier Houchard8a786902018-12-15 16:05:40 +01003040 if (!(h2c->conn->flags &
3041 (CO_FL_ERROR | CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH))) {
3042 if (!h2c->conn->owner) {
Olivier Houchardf502aca2018-12-14 19:42:40 +01003043 h2c->conn->owner = sess;
Olivier Houchard351411f2018-12-27 17:20:54 +01003044 if (!session_add_conn(sess, h2c->conn, h2c->conn->target)) {
3045 h2c->conn->owner = NULL;
3046 if (eb_is_empty(&h2c->streams_by_id)) {
3047 if (!srv_add_to_idle_list(objt_server(h2c->conn->target), h2c->conn))
3048 /* The server doesn't want it, let's kill the connection right away */
3049 h2c->conn->mux->destroy(h2c->conn);
3050 return;
3051 }
3052 }
Olivier Houchard8a786902018-12-15 16:05:40 +01003053 }
Olivier Houcharda4d4fdf2018-12-14 19:27:06 +01003054 if (eb_is_empty(&h2c->streams_by_id)) {
3055 if (session_check_idle_conn(h2c->conn->owner, h2c->conn) != 0)
3056 /* At this point either the connection is destroyed, or it's been added to the server idle list, just stop */
3057 return;
3058 }
Olivier Houchard8a786902018-12-15 16:05:40 +01003059 /* Never ever allow to reuse a connection from a non-reuse backend */
3060 if ((h2c->proxy->options & PR_O_REUSE_MASK) == PR_O_REUSE_NEVR)
3061 h2c->conn->flags |= CO_FL_PRIVATE;
Olivier Houchard855ac252018-12-28 14:44:41 +01003062 if (LIST_ISEMPTY(&h2c->conn->list) && h2c->nb_streams < h2_settings_max_concurrent_streams) {
Olivier Houchard8a786902018-12-15 16:05:40 +01003063 struct server *srv = objt_server(h2c->conn->target);
3064
3065 if (srv) {
3066 if (h2c->conn->flags & CO_FL_PRIVATE)
3067 LIST_ADD(&srv->priv_conns[tid], &h2c->conn->list);
3068 else
3069 LIST_ADD(&srv->idle_conns[tid], &h2c->conn->list);
3070 }
3071
3072 }
3073 }
3074 }
3075
Willy Tarreaue323f342018-03-28 13:51:45 +02003076 /* We don't want to close right now unless we're removing the
3077 * last stream, and either the connection is in error, or it
3078 * reached the ID already specified in a GOAWAY frame received
3079 * or sent (as seen by last_sid >= 0).
3080 */
3081 if (eb_is_empty(&h2c->streams_by_id) && /* don't close if streams exist */
3082 ((h2c->conn->flags & CO_FL_ERROR) || /* errors close immediately */
Willy Tarreau42d55b92018-06-13 14:24:56 +02003083 (h2c->st0 >= H2_CS_ERROR && !h2c->task) || /* a timeout stroke earlier */
Olivier Houchard52b94662018-10-21 03:01:20 +02003084 (h2c->flags & (H2_CF_GOAWAY_FAILED | H2_CF_GOAWAY_SENT)) ||
Olivier Houchard93c88522018-11-30 15:39:16 +01003085 (!(h2c->conn->owner)) || /* Nobody's left to take care of the connection, drop it now */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003086 (!b_data(&h2c->mbuf) && /* mux buffer empty, also process clean events below */
Willy Tarreaue323f342018-03-28 13:51:45 +02003087 (conn_xprt_read0_pending(h2c->conn) ||
3088 (h2c->last_sid >= 0 && h2c->max_id >= h2c->last_sid))))) {
3089 /* no more stream will come, kill it now */
3090 h2_release(h2c->conn);
3091 }
3092 else if (h2c->task) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003093 if (eb_is_empty(&h2c->streams_by_id) || b_data(&h2c->mbuf)) {
Willy Tarreaue323f342018-03-28 13:51:45 +02003094 h2c->task->expire = tick_add(now_ms, h2c->last_sid < 0 ? h2c->timeout : h2c->shut_timeout);
3095 task_queue(h2c->task);
Willy Tarreaue6ae77f2017-11-07 11:59:51 +01003096 }
Willy Tarreaue323f342018-03-28 13:51:45 +02003097 else
3098 h2c->task->expire = TICK_ETERNITY;
Willy Tarreau60935142017-10-16 18:11:19 +02003099 }
Willy Tarreau62f52692017-10-08 23:01:42 +02003100}
3101
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003102static void h2_do_shutr(struct h2s *h2s)
Willy Tarreau62f52692017-10-08 23:01:42 +02003103{
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003104 struct h2c *h2c = h2s->h2c;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003105 struct wait_event *sw = &h2s->wait_event;
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003106
Willy Tarreau721c9742017-11-07 11:05:42 +01003107 if (h2s->st == H2_SS_HLOC || h2s->st == H2_SS_ERROR || h2s->st == H2_SS_CLOSED)
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003108 return;
3109
Willy Tarreau926fa4c2017-11-07 14:42:12 +01003110 /* if no outgoing data was seen on this stream, it means it was
3111 * closed with a "tcp-request content" rule that is normally
3112 * used to kill the connection ASAP (eg: limit abuse). In this
3113 * case we send a goaway to close the connection.
3114 */
Willy Tarreau90c32322017-11-24 08:00:30 +01003115 if (!(h2s->flags & H2_SF_RST_SENT) &&
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003116 h2s_send_rst_stream(h2c, h2s) <= 0)
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003117 goto add_to_list;
Willy Tarreau90c32322017-11-24 08:00:30 +01003118
Willy Tarreau926fa4c2017-11-07 14:42:12 +01003119 if (!(h2s->flags & H2_SF_OUTGOING_DATA) &&
3120 !(h2s->h2c->flags & (H2_CF_GOAWAY_SENT|H2_CF_GOAWAY_FAILED)) &&
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003121 h2c_send_goaway_error(h2c, h2s) <= 0)
3122 return;
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003123
Willy Tarreau4f6516d2018-12-19 13:59:17 +01003124 if (!(h2c->wait_event.events & SUB_RETRY_SEND))
Olivier Houchard435ce2d2018-12-03 18:43:16 +01003125 tasklet_wakeup(h2c->wait_event.task);
Willy Tarreau00dd0782018-03-01 16:31:34 +01003126 h2s_close(h2s);
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003127
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003128 return;
3129add_to_list:
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003130 if (LIST_ISEMPTY(&h2s->list)) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01003131 sw->events |= SUB_RETRY_SEND;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003132 if (h2s->flags & H2_SF_BLK_MFCTL) {
3133 LIST_ADDQ(&h2c->fctl_list, &h2s->list);
3134 h2s->send_wait = sw;
3135 } else if (h2s->flags & (H2_SF_BLK_MBUSY|H2_SF_BLK_MROOM)) {
3136 h2s->send_wait = sw;
3137 LIST_ADDQ(&h2c->send_list, &h2s->list);
3138 }
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003139 }
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003140 /* Let the handler know we want shutr */
3141 sw->handle = (void *)((long)sw->handle | 1);
3142
Willy Tarreau62f52692017-10-08 23:01:42 +02003143}
3144
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003145static void h2_do_shutw(struct h2s *h2s)
Willy Tarreau62f52692017-10-08 23:01:42 +02003146{
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003147 struct h2c *h2c = h2s->h2c;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003148 struct wait_event *sw = &h2s->wait_event;
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003149
Willy Tarreau721c9742017-11-07 11:05:42 +01003150 if (h2s->st == H2_SS_HLOC || h2s->st == H2_SS_ERROR || h2s->st == H2_SS_CLOSED)
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003151 return;
3152
Willy Tarreau67434202017-11-06 20:20:51 +01003153 if (h2s->flags & H2_SF_HEADERS_SENT) {
Willy Tarreau58e32082017-11-07 14:41:09 +01003154 /* we can cleanly close using an empty data frame only after headers */
3155
3156 if (!(h2s->flags & (H2_SF_ES_SENT|H2_SF_RST_SENT)) &&
3157 h2_send_empty_data_es(h2s) <= 0)
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003158 goto add_to_list;
Willy Tarreau58e32082017-11-07 14:41:09 +01003159
3160 if (h2s->st == H2_SS_HREM)
Willy Tarreau00dd0782018-03-01 16:31:34 +01003161 h2s_close(h2s);
Willy Tarreau58e32082017-11-07 14:41:09 +01003162 else
3163 h2s->st = H2_SS_HLOC;
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003164 } else {
Willy Tarreau926fa4c2017-11-07 14:42:12 +01003165 /* if no outgoing data was seen on this stream, it means it was
3166 * closed with a "tcp-request content" rule that is normally
3167 * used to kill the connection ASAP (eg: limit abuse). In this
3168 * case we send a goaway to close the connection.
Willy Tarreaua1349f02017-10-31 07:41:55 +01003169 */
Willy Tarreau90c32322017-11-24 08:00:30 +01003170 if (!(h2s->flags & H2_SF_RST_SENT) &&
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003171 h2s_send_rst_stream(h2c, h2s) <= 0)
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003172 goto add_to_list;
Willy Tarreau90c32322017-11-24 08:00:30 +01003173
Willy Tarreau926fa4c2017-11-07 14:42:12 +01003174 if (!(h2s->flags & H2_SF_OUTGOING_DATA) &&
3175 !(h2s->h2c->flags & (H2_CF_GOAWAY_SENT|H2_CF_GOAWAY_FAILED)) &&
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003176 h2c_send_goaway_error(h2c, h2s) <= 0)
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003177 goto add_to_list;
Willy Tarreaua1349f02017-10-31 07:41:55 +01003178
Willy Tarreau00dd0782018-03-01 16:31:34 +01003179 h2s_close(h2s);
Willy Tarreauc7576ea2017-10-29 22:00:09 +01003180 }
3181
Willy Tarreau4f6516d2018-12-19 13:59:17 +01003182 if (!(h2c->wait_event.events & SUB_RETRY_SEND))
Olivier Houchard435ce2d2018-12-03 18:43:16 +01003183 tasklet_wakeup(h2c->wait_event.task);
3184 return;
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003185
3186 add_to_list:
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003187 if (LIST_ISEMPTY(&h2s->list)) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01003188 sw->events |= SUB_RETRY_SEND;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003189 if (h2s->flags & H2_SF_BLK_MFCTL) {
3190 LIST_ADDQ(&h2c->fctl_list, &h2s->list);
3191 h2s->send_wait = sw;
3192 } else if (h2s->flags & (H2_SF_BLK_MBUSY|H2_SF_BLK_MROOM)) {
3193 h2s->send_wait = sw;
3194 LIST_ADDQ(&h2c->send_list, &h2s->list);
3195 }
Willy Tarreaub2e290a2018-03-30 17:35:38 +02003196 }
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003197 /* let the handler know we want to shutw */
3198 sw->handle = (void *)((long)(sw->handle) | 2);
3199
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003200}
3201
3202static struct task *h2_deferred_shut(struct task *t, void *ctx, unsigned short state)
3203{
3204 struct h2s *h2s = ctx;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02003205 long reason = (long)h2s->wait_event.handle;
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003206
Olivier Houchard2c68a462018-12-15 22:42:20 +01003207 if (h2s->send_wait) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01003208 h2s->send_wait->events &= ~SUB_CALL_UNSUBSCRIBE;
Olivier Houchard2c68a462018-12-15 22:42:20 +01003209 h2s->send_wait = NULL;
3210 LIST_DEL(&h2s->list);
3211 LIST_INIT(&h2s->list);
3212 }
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003213 if (reason & 2)
3214 h2_do_shutw(h2s);
Olivier Houchard2c68a462018-12-15 22:42:20 +01003215 if (reason & 1)
3216 h2_do_shutr(h2s);
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003217
Olivier Houchard2c68a462018-12-15 22:42:20 +01003218 if (h2s->st == H2_SS_CLOSED &&
Olivier Houchardffda58b2018-12-16 01:29:11 +01003219 !((h2s->flags & (H2_SF_BLK_MBUSY | H2_SF_BLK_MROOM | H2_SF_BLK_MFCTL))) && !h2s->cs)
Olivier Houchard2c68a462018-12-15 22:42:20 +01003220 h2s_destroy(h2s);
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003221 return NULL;
Willy Tarreau62f52692017-10-08 23:01:42 +02003222}
3223
Olivier Houchard8ae735d2018-09-11 18:24:28 +02003224static void h2_shutr(struct conn_stream *cs, enum cs_shr_mode mode)
3225{
3226 struct h2s *h2s = cs->ctx;
3227
3228 if (!mode)
3229 return;
3230
3231 h2_do_shutr(h2s);
3232}
3233
3234static void h2_shutw(struct conn_stream *cs, enum cs_shw_mode mode)
3235{
3236 struct h2s *h2s = cs->ctx;
3237
3238 h2_do_shutw(h2s);
3239}
3240
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003241/* Decode the payload of a HEADERS frame and produce the equivalent HTTP/1 or
Willy Tarreau86277d42019-01-02 15:36:11 +01003242 * HTX request or response depending on the connection's side. Returns a
3243 * positive value on success, a negative value on failure, or 0 if it couldn't
3244 * proceed. May report connection errors in h2c->errcode if the frame is
3245 * non-decodable and the connection unrecoverable. In absence of connection
3246 * error when a failure is reported, the caller must assume a stream error.
Willy Tarreauea18f862018-12-22 20:19:26 +01003247 *
3248 * The function may fold CONTINUATION frames into the initial HEADERS frame
3249 * by removing padding and next frame header, then moving the CONTINUATION
3250 * frame's payload and adjusting h2c->dfl to match the new aggregated frame,
3251 * leaving a hole between the main frame and the beginning of the next one.
3252 * The possibly remaining incomplete or next frame at the end may be moved
3253 * if the aggregated frame is not deleted, in order to fill the hole. Wrapped
3254 * HEADERS frames are unwrapped into a temporary buffer before decoding.
3255 *
3256 * A buffer at the beginning of processing may look like this :
3257 *
3258 * ,---.---------.-----.--------------.--------------.------.---.
3259 * |///| HEADERS | PAD | CONTINUATION | CONTINUATION | DATA |///|
3260 * `---^---------^-----^--------------^--------------^------^---'
3261 * | | <-----> | |
3262 * area | dpl | wrap
3263 * |<--------------> |
3264 * | dfl |
3265 * |<-------------------------------------------------->|
3266 * head data
3267 *
3268 * Padding is automatically overwritten when folding, participating to the
3269 * hole size after dfl :
3270 *
3271 * ,---.------------------------.-----.--------------.------.---.
3272 * |///| HEADERS : CONTINUATION |/////| CONTINUATION | DATA |///|
3273 * `---^------------------------^-----^--------------^------^---'
3274 * | | <-----> | |
3275 * area | hole | wrap
3276 * |<-----------------------> |
3277 * | dfl |
3278 * |<-------------------------------------------------->|
3279 * head data
3280 *
3281 * Please note that the HEADERS frame is always deprived from its PADLEN byte
3282 * however it may start with the 5 stream-dep+weight bytes in case of PRIORITY
3283 * bit.
Willy Tarreau6cc85a52019-01-02 15:49:20 +01003284 *
3285 * The <flags> field must point to either the stream's flags or to a copy of it
3286 * so that the function can update the following flags :
3287 * - H2_SF_DATA_CLEN when content-length is seen
3288 * - H2_SF_DATA_CHNK when chunking should be used for the H1 conversion
3289 * - H2_SF_HEADERS_RCVD once the frame is successfully decoded
Willy Tarreau88d138e2019-01-02 19:38:14 +01003290 *
3291 * The H2_SF_HEADERS_RCVD flag is also looked at in the <flags> field prior to
3292 * decoding, in order to detect if we're dealing with a headers or a trailers
3293 * block (the trailers block appears after H2_SF_HEADERS_RCVD was seen).
Willy Tarreau13278b42017-10-13 19:23:14 +02003294 */
Willy Tarreau4790f7c2019-01-24 11:33:02 +01003295static int h2c_decode_headers(struct h2c *h2c, struct buffer *rxbuf, uint32_t *flags, unsigned long long *body_len)
Willy Tarreau13278b42017-10-13 19:23:14 +02003296{
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003297 const uint8_t *hdrs = (uint8_t *)b_head(&h2c->dbuf);
Willy Tarreau83061a82018-07-13 11:56:34 +02003298 struct buffer *tmp = get_trash_chunk();
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003299 struct http_hdr list[MAX_HTTP_HDR * 2];
Willy Tarreau83061a82018-07-13 11:56:34 +02003300 struct buffer *copy = NULL;
Willy Tarreau174b06a2018-04-25 18:13:58 +02003301 unsigned int msgf;
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003302 struct htx *htx = NULL;
Willy Tarreauea18f862018-12-22 20:19:26 +01003303 int flen; // header frame len
3304 int hole = 0;
Willy Tarreau86277d42019-01-02 15:36:11 +01003305 int ret = 0;
3306 int outlen;
Willy Tarreau13278b42017-10-13 19:23:14 +02003307 int wrap;
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003308 int try = 0;
Willy Tarreau13278b42017-10-13 19:23:14 +02003309
Willy Tarreauea18f862018-12-22 20:19:26 +01003310next_frame:
3311 if (b_data(&h2c->dbuf) - hole < h2c->dfl)
3312 goto leave; // incomplete input frame
3313
3314 /* No END_HEADERS means there's one or more CONTINUATION frames. In
3315 * this case, we'll try to paste it immediately after the initial
3316 * HEADERS frame payload and kill any possible padding. The initial
3317 * frame's length will be increased to represent the concatenation
3318 * of the two frames. The next frame is read from position <tlen>
3319 * and written at position <flen> (minus padding if some is present).
3320 */
3321 if (unlikely(!(h2c->dff & H2_F_HEADERS_END_HEADERS))) {
3322 struct h2_fh hdr;
3323 int clen; // CONTINUATION frame's payload length
3324
3325 if (!h2_peek_frame_hdr(&h2c->dbuf, h2c->dfl + hole, &hdr)) {
3326 /* no more data, the buffer may be full, either due to
3327 * too large a frame or because of too large a hole that
3328 * we're going to compact at the end.
3329 */
3330 goto leave;
3331 }
3332
3333 if (hdr.ft != H2_FT_CONTINUATION) {
3334 /* RFC7540#6.10: frame of unexpected type */
3335 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
3336 goto fail;
3337 }
3338
3339 if (hdr.sid != h2c->dsi) {
3340 /* RFC7540#6.10: frame of different stream */
3341 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
3342 goto fail;
3343 }
3344
3345 if ((unsigned)hdr.len > (unsigned)global.tune.bufsize) {
3346 /* RFC7540#4.2: invalid frame length */
3347 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
3348 goto fail;
3349 }
3350
3351 /* detect when we must stop aggragating frames */
3352 h2c->dff |= hdr.ff & H2_F_HEADERS_END_HEADERS;
3353
3354 /* Take as much as we can of the CONTINUATION frame's payload */
3355 clen = b_data(&h2c->dbuf) - (h2c->dfl + hole + 9);
3356 if (clen > hdr.len)
3357 clen = hdr.len;
3358
3359 /* Move the frame's payload over the padding, hole and frame
3360 * header. At least one of hole or dpl is null (see diagrams
3361 * above). The hole moves after the new aggragated frame.
3362 */
3363 b_move(&h2c->dbuf, b_peek_ofs(&h2c->dbuf, h2c->dfl + hole + 9), clen, -(h2c->dpl + hole + 9));
3364 h2c->dfl += clen - h2c->dpl;
3365 hole += h2c->dpl + 9;
3366 h2c->dpl = 0;
3367 goto next_frame;
3368 }
3369
3370 flen = h2c->dfl - h2c->dpl;
Willy Tarreau68472622017-12-11 18:36:37 +01003371
Willy Tarreau13278b42017-10-13 19:23:14 +02003372 /* if the input buffer wraps, take a temporary copy of it (rare) */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003373 wrap = b_wrap(&h2c->dbuf) - b_head(&h2c->dbuf);
Willy Tarreau13278b42017-10-13 19:23:14 +02003374 if (wrap < h2c->dfl) {
Willy Tarreau68dd9852017-07-03 14:44:26 +02003375 copy = alloc_trash_chunk();
3376 if (!copy) {
3377 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
3378 goto fail;
3379 }
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003380 memcpy(copy->area, b_head(&h2c->dbuf), wrap);
3381 memcpy(copy->area + wrap, b_orig(&h2c->dbuf), h2c->dfl - wrap);
3382 hdrs = (uint8_t *) copy->area;
Willy Tarreau13278b42017-10-13 19:23:14 +02003383 }
3384
Willy Tarreau13278b42017-10-13 19:23:14 +02003385 /* Skip StreamDep and weight for now (we don't support PRIORITY) */
3386 if (h2c->dff & H2_F_HEADERS_PRIORITY) {
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003387 if (read_n32(hdrs) == h2c->dsi) {
Willy Tarreau18b86cd2017-12-03 19:24:50 +01003388 /* RFC7540#5.3.1 : stream dep may not depend on itself */
3389 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
Willy Tarreaua0d11b62018-09-05 18:30:05 +02003390 goto fail;
Willy Tarreau18b86cd2017-12-03 19:24:50 +01003391 }
3392
Willy Tarreaua01f45e2018-12-31 07:41:24 +01003393 if (flen < 5) {
3394 h2c_error(h2c, H2_ERR_FRAME_SIZE_ERROR);
3395 goto fail;
3396 }
3397
Willy Tarreau13278b42017-10-13 19:23:14 +02003398 hdrs += 5; // stream dep = 4, weight = 1
3399 flen -= 5;
3400 }
3401
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003402 if (!h2_get_buf(h2c, rxbuf)) {
Willy Tarreau937f7602018-02-26 15:22:17 +01003403 h2c->flags |= H2_CF_DEM_SALLOC;
Willy Tarreau86277d42019-01-02 15:36:11 +01003404 goto leave;
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003405 }
Willy Tarreau13278b42017-10-13 19:23:14 +02003406
Willy Tarreau937f7602018-02-26 15:22:17 +01003407 /* we can't retry a failed decompression operation so we must be very
3408 * careful not to take any risks. In practice the output buffer is
3409 * always empty except maybe for trailers, in which case we simply have
3410 * to wait for the upper layer to finish consuming what is available.
3411 */
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003412
3413 if (h2c->proxy->options2 & PR_O2_USE_HTX) {
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003414 htx = htx_from_buf(rxbuf);
Willy Tarreau8dbb1702019-01-03 08:52:09 +01003415 if (!htx_is_empty(htx)) {
3416 h2c->flags |= H2_CF_DEM_SFULL;
Willy Tarreau86277d42019-01-02 15:36:11 +01003417 goto leave;
Willy Tarreau8dbb1702019-01-03 08:52:09 +01003418 }
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003419 } else {
Willy Tarreau8dbb1702019-01-03 08:52:09 +01003420 if (b_data(rxbuf)) {
3421 h2c->flags |= H2_CF_DEM_SFULL;
Willy Tarreau86277d42019-01-02 15:36:11 +01003422 goto leave;
Willy Tarreau8dbb1702019-01-03 08:52:09 +01003423 }
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003424
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003425 rxbuf->head = 0;
3426 try = b_size(rxbuf);
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003427 }
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003428
Willy Tarreau25919232019-01-03 14:48:18 +01003429 /* past this point we cannot roll back in case of error */
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003430 outlen = hpack_decode_frame(h2c->ddht, hdrs, flen, list,
3431 sizeof(list)/sizeof(list[0]), tmp);
3432 if (outlen < 0) {
3433 h2c_error(h2c, H2_ERR_COMPRESSION_ERROR);
3434 goto fail;
3435 }
3436
Willy Tarreau25919232019-01-03 14:48:18 +01003437 /* The PACK decompressor was updated, let's update the input buffer and
3438 * the parser's state to commit these changes and allow us to later
3439 * fail solely on the stream if needed.
3440 */
3441 b_del(&h2c->dbuf, h2c->dfl + hole);
3442 h2c->dfl = hole = 0;
3443 h2c->st0 = H2_CS_FRAME_H;
3444
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003445 /* OK now we have our header list in <list> */
Willy Tarreau880f5802019-01-03 08:10:14 +01003446 msgf = (h2c->dff & H2_F_HEADERS_END_STREAM) ? 0 : H2_MSGF_BODY;
Willy Tarreaubd4a6b62018-11-27 09:29:36 +01003447
Willy Tarreau88d138e2019-01-02 19:38:14 +01003448 if (*flags & H2_SF_HEADERS_RCVD)
3449 goto trailers;
3450
3451 /* This is the first HEADERS frame so it's a headers block */
Willy Tarreauc3e18f32018-10-08 14:51:56 +02003452 if (htx) {
3453 /* HTX mode */
3454 if (h2c->flags & H2_CF_IS_BACK)
Willy Tarreau4790f7c2019-01-24 11:33:02 +01003455 outlen = h2_make_htx_response(list, htx, &msgf, body_len);
Willy Tarreauc3e18f32018-10-08 14:51:56 +02003456 else
Willy Tarreau4790f7c2019-01-24 11:33:02 +01003457 outlen = h2_make_htx_request(list, htx, &msgf, body_len);
Willy Tarreauc3e18f32018-10-08 14:51:56 +02003458 } else {
3459 /* HTTP/1 mode */
Willy Tarreau4790f7c2019-01-24 11:33:02 +01003460 outlen = h2_make_h1_request(list, b_tail(rxbuf), try, &msgf, body_len);
Willy Tarreau83195932019-01-03 10:26:23 +01003461 if (outlen > 0)
3462 b_add(rxbuf, outlen);
Willy Tarreauc3e18f32018-10-08 14:51:56 +02003463 }
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003464
3465 if (outlen < 0) {
Willy Tarreau25919232019-01-03 14:48:18 +01003466 /* too large headers? this is a stream error only */
Willy Tarreau59a10fb2017-11-21 20:03:02 +01003467 goto fail;
3468 }
Willy Tarreau13278b42017-10-13 19:23:14 +02003469
Willy Tarreau174b06a2018-04-25 18:13:58 +02003470 if (msgf & H2_MSGF_BODY) {
3471 /* a payload is present */
3472 if (msgf & H2_MSGF_BODY_CL)
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003473 *flags |= H2_SF_DATA_CLEN;
Olivier Houchard50d660c2018-12-08 00:18:31 +01003474 else if (!(msgf & H2_MSGF_BODY_TUNNEL) && !htx)
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003475 *flags |= H2_SF_DATA_CHNK;
Willy Tarreau174b06a2018-04-25 18:13:58 +02003476 }
3477
Willy Tarreau88d138e2019-01-02 19:38:14 +01003478 done:
Willy Tarreau6cc85a52019-01-02 15:49:20 +01003479 /* indicate that a HEADERS frame was received for this stream */
3480 *flags |= H2_SF_HEADERS_RCVD;
3481
Willy Tarreau88d138e2019-01-02 19:38:14 +01003482 if (h2c->dff & H2_F_HEADERS_END_STREAM) {
3483 /* Mark the end of message, either using EOM in HTX or with the
3484 * trailing CRLF after the end of trailers. Note that DATA_CHNK
3485 * is not set during headers with END_STREAM.
3486 */
3487 if (htx) {
3488 if (!htx_add_endof(htx, HTX_BLK_EOM))
3489 goto fail;
3490 }
3491 else if (*flags & H2_SF_DATA_CHNK) {
3492 if (!b_putblk(rxbuf, "\r\n", 2))
3493 goto fail;
3494 }
3495 }
Willy Tarreau937f7602018-02-26 15:22:17 +01003496
Willy Tarreau86277d42019-01-02 15:36:11 +01003497 /* success */
3498 ret = 1;
3499
Willy Tarreau68dd9852017-07-03 14:44:26 +02003500 leave:
Willy Tarreau86277d42019-01-02 15:36:11 +01003501 /* If there is a hole left and it's not at the end, we are forced to
Willy Tarreauea18f862018-12-22 20:19:26 +01003502 * move the remaining data over it.
3503 */
3504 if (hole) {
3505 if (b_data(&h2c->dbuf) > h2c->dfl + hole)
3506 b_move(&h2c->dbuf, b_peek_ofs(&h2c->dbuf, h2c->dfl + hole),
3507 b_data(&h2c->dbuf) - (h2c->dfl + hole), -hole);
3508 b_sub(&h2c->dbuf, hole);
3509 }
3510
3511 if (b_full(&h2c->dbuf) && h2c->dfl > b_data(&h2c->dbuf)) {
3512 /* too large frames */
3513 h2c_error(h2c, H2_ERR_INTERNAL_ERROR);
Willy Tarreau86277d42019-01-02 15:36:11 +01003514 ret = -1;
Willy Tarreauea18f862018-12-22 20:19:26 +01003515 }
3516
Christopher Faulet27ba2dc2018-12-05 11:53:24 +01003517 if (htx)
Willy Tarreau5c8cafa2018-12-23 11:30:42 +01003518 htx_to_buf(htx, rxbuf);
Willy Tarreau68dd9852017-07-03 14:44:26 +02003519 free_trash_chunk(copy);
Willy Tarreau86277d42019-01-02 15:36:11 +01003520 return ret;
3521
Willy Tarreau68dd9852017-07-03 14:44:26 +02003522 fail:
Willy Tarreau86277d42019-01-02 15:36:11 +01003523 ret = -1;
Willy Tarreau68dd9852017-07-03 14:44:26 +02003524 goto leave;
Willy Tarreau88d138e2019-01-02 19:38:14 +01003525
3526 trailers:
3527 /* This is the last HEADERS frame hence a trailer */
3528
3529 if (!(h2c->dff & H2_F_HEADERS_END_STREAM)) {
3530 /* It's a trailer but it's missing ES flag */
3531 h2c_error(h2c, H2_ERR_PROTOCOL_ERROR);
3532 goto fail;
3533 }
3534
3535 /* Trailers terminate a DATA sequence. In HTX we have to emit an EOD
3536 * block, and when using chunks we must send the 0 CRLF marker. For
3537 * other modes, the trailers are silently dropped.
3538 */
3539 if (htx) {
3540 if (!htx_add_endof(htx, HTX_BLK_EOD))
3541 goto fail;
Willy Tarreau5255f282019-01-03 18:41:05 +01003542 if (h2_make_htx_trailers(list, htx) <= 0)
3543 goto fail;
Willy Tarreau88d138e2019-01-02 19:38:14 +01003544 }
3545 else if (*flags & H2_SF_DATA_CHNK) {
3546 /* Legacy mode with chunked encoding : we must finalize the
3547 * data block message emit the trailing CRLF */
3548 if (!b_putblk(rxbuf, "0\r\n", 3))
3549 goto fail;
Willy Tarreaue2b05cc2019-01-03 16:18:34 +01003550
3551 outlen = h2_make_h1_trailers(list, b_tail(rxbuf), try);
3552 if (outlen > 0)
3553 b_add(rxbuf, outlen);
3554 else
3555 goto fail;
Willy Tarreau88d138e2019-01-02 19:38:14 +01003556 }
3557
3558 goto done;
Willy Tarreau13278b42017-10-13 19:23:14 +02003559}
3560
Willy Tarreau454f9052017-10-26 19:40:35 +02003561/* Transfer the payload of a DATA frame to the HTTP/1 side. When content-length
3562 * or a tunnel is used, the contents are copied as-is. When chunked encoding is
3563 * in use, a new chunk is emitted for each frame. This is supposed to fit
3564 * because the smallest chunk takes 1 byte for the size, 2 for CRLF, X for the
3565 * data, 2 for the extra CRLF, so that's 5+X, while on the H2 side the smallest
3566 * frame will be 9+X bytes based on the same buffer size. The HTTP/2 frame
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003567 * parser state is automatically updated. Returns > 0 if it could completely
3568 * send the current frame, 0 if it couldn't complete, in which case
3569 * CS_FL_RCV_MORE must be checked to know if some data remain pending (an empty
3570 * DATA frame can return 0 as a valid result). Stream errors are reported in
3571 * h2s->errcode and connection errors in h2c->errcode. The caller must already
3572 * have checked the frame header and ensured that the frame was complete or the
3573 * buffer full. It changes the frame state to FRAME_A once done.
Willy Tarreau454f9052017-10-26 19:40:35 +02003574 */
Willy Tarreau454b57b2018-02-26 15:50:05 +01003575static int h2_frt_transfer_data(struct h2s *h2s)
Willy Tarreau454f9052017-10-26 19:40:35 +02003576{
3577 struct h2c *h2c = h2s->h2c;
3578 int block1, block2;
Willy Tarreaud755ea62018-02-26 15:44:54 +01003579 unsigned int flen = 0;
Willy Tarreaueba10f22018-04-25 20:44:22 +02003580 unsigned int chklen = 0;
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003581 struct htx *htx = NULL;
Willy Tarreaud755ea62018-02-26 15:44:54 +01003582 struct buffer *csbuf;
Willy Tarreau454f9052017-10-26 19:40:35 +02003583
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003584 h2c->flags &= ~H2_CF_DEM_SFULL;
Willy Tarreau454f9052017-10-26 19:40:35 +02003585
Olivier Houchard638b7992018-08-16 15:41:52 +02003586 csbuf = h2_get_buf(h2c, &h2s->rxbuf);
Willy Tarreaud755ea62018-02-26 15:44:54 +01003587 if (!csbuf) {
3588 h2c->flags |= H2_CF_DEM_SALLOC;
Willy Tarreau454b57b2018-02-26 15:50:05 +01003589 goto fail;
Willy Tarreaud755ea62018-02-26 15:44:54 +01003590 }
3591
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003592try_again:
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003593 flen = h2c->dfl - h2c->dpl;
Olivier Houchard2f308832018-12-19 15:53:53 +01003594 if (h2c->proxy->options2 & PR_O2_USE_HTX)
3595 htx = htx_from_buf(csbuf);
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003596 if (!flen)
Willy Tarreau4a28da12018-01-04 14:41:00 +01003597 goto end_transfer;
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003598
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003599 if (flen > b_data(&h2c->dbuf)) {
3600 flen = b_data(&h2c->dbuf);
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003601 if (!flen)
Willy Tarreau454b57b2018-02-26 15:50:05 +01003602 goto fail;
Willy Tarreaud755ea62018-02-26 15:44:54 +01003603 }
3604
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003605 if (h2c->proxy->options2 & PR_O2_USE_HTX) {
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003606 block1 = htx_free_data_space(htx);
3607 if (!block1) {
3608 h2c->flags |= H2_CF_DEM_SFULL;
3609 goto fail;
3610 }
3611 if (flen > block1)
3612 flen = block1;
3613
3614 /* here, flen is the max we can copy into the output buffer */
3615 block1 = b_contig_data(&h2c->dbuf, 0);
3616 if (flen > block1)
3617 flen = block1;
3618
3619 if (!htx_add_data(htx, ist2(b_head(&h2c->dbuf), flen))) {
3620 h2c->flags |= H2_CF_DEM_SFULL;
3621 goto fail;
3622 }
3623
3624 b_del(&h2c->dbuf, flen);
3625 h2c->dfl -= flen;
3626 h2c->rcvd_c += flen;
3627 h2c->rcvd_s += flen; // warning, this can also affect the closed streams!
Willy Tarreau1915ca22019-01-24 11:49:37 +01003628
3629 if (h2s->flags & H2_SF_DATA_CLEN)
3630 h2s->body_len -= flen;
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003631 goto try_again;
3632 }
3633 else if (unlikely(b_space_wraps(csbuf))) {
Willy Tarreaud755ea62018-02-26 15:44:54 +01003634 /* it doesn't fit and the buffer is fragmented,
3635 * so let's defragment it and try again.
3636 */
3637 b_slow_realign(csbuf, trash.area, 0);
Willy Tarreau454f9052017-10-26 19:40:35 +02003638 }
3639
Willy Tarreaueba10f22018-04-25 20:44:22 +02003640 /* chunked-encoding requires more room */
3641 if (h2s->flags & H2_SF_DATA_CHNK) {
Willy Tarreaud755ea62018-02-26 15:44:54 +01003642 chklen = MIN(flen, b_room(csbuf));
Willy Tarreaueba10f22018-04-25 20:44:22 +02003643 chklen = (chklen < 16) ? 1 : (chklen < 256) ? 2 :
3644 (chklen < 4096) ? 3 : (chklen < 65536) ? 4 :
3645 (chklen < 1048576) ? 4 : 8;
3646 chklen += 4; // CRLF, CRLF
3647 }
3648
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003649 /* does it fit in output buffer or should we wait ? */
Willy Tarreaud755ea62018-02-26 15:44:54 +01003650 if (flen + chklen > b_room(csbuf)) {
3651 if (chklen >= b_room(csbuf)) {
3652 h2c->flags |= H2_CF_DEM_SFULL;
Willy Tarreau454b57b2018-02-26 15:50:05 +01003653 goto fail;
Willy Tarreaud755ea62018-02-26 15:44:54 +01003654 }
3655 flen = b_room(csbuf) - chklen;
Willy Tarreaueba10f22018-04-25 20:44:22 +02003656 }
3657
3658 if (h2s->flags & H2_SF_DATA_CHNK) {
3659 /* emit the chunk size */
3660 unsigned int chksz = flen;
3661 char str[10];
3662 char *beg;
3663
3664 beg = str + sizeof(str);
3665 *--beg = '\n';
3666 *--beg = '\r';
3667 do {
3668 *--beg = hextab[chksz & 0xF];
3669 } while (chksz >>= 4);
Willy Tarreaud755ea62018-02-26 15:44:54 +01003670 b_putblk(csbuf, beg, str + sizeof(str) - beg);
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003671 }
3672
Willy Tarreau454f9052017-10-26 19:40:35 +02003673 /* Block1 is the length of the first block before the buffer wraps,
3674 * block2 is the optional second block to reach the end of the frame.
3675 */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003676 block1 = b_contig_data(&h2c->dbuf, 0);
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003677 if (block1 > flen)
3678 block1 = flen;
Willy Tarreau454f9052017-10-26 19:40:35 +02003679 block2 = flen - block1;
3680
3681 if (block1)
Willy Tarreaud755ea62018-02-26 15:44:54 +01003682 b_putblk(csbuf, b_head(&h2c->dbuf), block1);
Willy Tarreau454f9052017-10-26 19:40:35 +02003683
3684 if (block2)
Willy Tarreaud755ea62018-02-26 15:44:54 +01003685 b_putblk(csbuf, b_peek(&h2c->dbuf, block1), block2);
Willy Tarreau454f9052017-10-26 19:40:35 +02003686
Willy Tarreaueba10f22018-04-25 20:44:22 +02003687 if (h2s->flags & H2_SF_DATA_CHNK) {
3688 /* emit the CRLF */
Willy Tarreaud755ea62018-02-26 15:44:54 +01003689 b_putblk(csbuf, "\r\n", 2);
Willy Tarreaueba10f22018-04-25 20:44:22 +02003690 }
3691
Willy Tarreau454f9052017-10-26 19:40:35 +02003692 /* now mark the input data as consumed (will be deleted from the buffer
3693 * by the caller when seeing FRAME_A after sending the window update).
3694 */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003695 b_del(&h2c->dbuf, flen);
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003696 h2c->dfl -= flen;
3697 h2c->rcvd_c += flen;
3698 h2c->rcvd_s += flen; // warning, this can also affect the closed streams!
3699
Willy Tarreau1915ca22019-01-24 11:49:37 +01003700 if (h2s->flags & H2_SF_DATA_CLEN)
3701 h2s->body_len -= flen;
3702
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003703 if (h2c->dfl > h2c->dpl) {
3704 /* more data available, transfer stalled on stream full */
Willy Tarreaud755ea62018-02-26 15:44:54 +01003705 h2c->flags |= H2_CF_DEM_SFULL;
Willy Tarreau454b57b2018-02-26 15:50:05 +01003706 goto fail;
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003707 }
3708
Willy Tarreau4a28da12018-01-04 14:41:00 +01003709 end_transfer:
Willy Tarreau8fc016d2017-12-11 18:27:15 +01003710 /* here we're done with the frame, all the payload (except padding) was
3711 * transferred.
3712 */
Willy Tarreaueba10f22018-04-25 20:44:22 +02003713
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003714 if (h2c->dff & H2_F_DATA_END_STREAM) {
3715 if (htx) {
3716 if (!htx_add_endof(htx, HTX_BLK_EOM)) {
3717 h2c->flags |= H2_CF_DEM_SFULL;
3718 goto fail;
3719 }
Willy Tarreaud755ea62018-02-26 15:44:54 +01003720 }
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003721 else if (h2s->flags & H2_SF_DATA_CHNK) {
3722 /* emit the trailing 0 CRLF CRLF */
3723 if (b_room(csbuf) < 5) {
3724 h2c->flags |= H2_CF_DEM_SFULL;
3725 goto fail;
3726 }
3727 chklen += 5;
3728 b_putblk(csbuf, "0\r\n\r\n", 5);
3729 }
Willy Tarreaueba10f22018-04-25 20:44:22 +02003730 }
3731
Willy Tarreaud1023bb2018-03-22 16:53:12 +01003732 h2c->rcvd_c += h2c->dpl;
3733 h2c->rcvd_s += h2c->dpl;
3734 h2c->dpl = 0;
Willy Tarreau454f9052017-10-26 19:40:35 +02003735 h2c->st0 = H2_CS_FRAME_A; // send the corresponding window update
3736
Willy Tarreau39d68502018-03-02 12:26:37 +01003737 if (h2c->dff & H2_F_DATA_END_STREAM) {
Willy Tarreau454f9052017-10-26 19:40:35 +02003738 h2s->flags |= H2_SF_ES_RCVD;
Willy Tarreau39d68502018-03-02 12:26:37 +01003739 h2s->cs->flags |= CS_FL_REOS;
3740 }
Christopher Faulet27ba2dc2018-12-05 11:53:24 +01003741 if (htx)
3742 htx_to_buf(htx, csbuf);
Willy Tarreau61ea7dc2018-12-01 23:23:04 +01003743 return 1;
Willy Tarreau454b57b2018-02-26 15:50:05 +01003744 fail:
Christopher Faulet27ba2dc2018-12-05 11:53:24 +01003745 if (htx)
3746 htx_to_buf(htx, csbuf);
Willy Tarreau454b57b2018-02-26 15:50:05 +01003747 return 0;
Willy Tarreau454f9052017-10-26 19:40:35 +02003748}
3749
Willy Tarreau5dd17352018-06-14 13:33:30 +02003750/* Try to send a HEADERS frame matching HTTP/1 response present at offset <ofs>
3751 * and for <max> bytes in buffer <buf> for the H2 stream <h2s>. Returns the
3752 * number of bytes sent. The caller must check the stream's status to detect
3753 * any error which might have happened subsequently to a successful send.
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003754 */
Willy Tarreau206ba832018-06-14 15:27:31 +02003755static size_t h2s_frt_make_resp_headers(struct h2s *h2s, const struct buffer *buf, size_t ofs, size_t max)
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003756{
3757 struct http_hdr list[MAX_HTTP_HDR];
3758 struct h2c *h2c = h2s->h2c;
Willy Tarreaua40704a2018-09-11 13:52:04 +02003759 struct h1m *h1m = &h2s->h1m;
Willy Tarreau83061a82018-07-13 11:56:34 +02003760 struct buffer outbuf;
Willy Tarreau9c5e22e2018-09-11 19:22:14 +02003761 union h1_sl sl;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003762 int es_now = 0;
3763 int ret = 0;
3764 int hdr;
3765
3766 if (h2c_mux_busy(h2c, h2s)) {
3767 h2s->flags |= H2_SF_BLK_MBUSY;
3768 return 0;
3769 }
3770
Willy Tarreau44e973f2018-03-01 17:49:30 +01003771 if (!h2_get_buf(h2c, &h2c->mbuf)) {
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003772 h2c->flags |= H2_CF_MUX_MALLOC;
3773 h2s->flags |= H2_SF_BLK_MROOM;
3774 return 0;
3775 }
3776
3777 /* First, try to parse the H1 response and index it into <list>.
3778 * NOTE! Since it comes from haproxy, we *know* that a response header
3779 * block does not wrap and we can safely read it this way without
3780 * having to realign the buffer.
3781 */
Willy Tarreau5dd17352018-06-14 13:33:30 +02003782 ret = h1_headers_to_hdr_list(b_peek(buf, ofs), b_peek(buf, ofs) + max,
Willy Tarreau9c5e22e2018-09-11 19:22:14 +02003783 list, sizeof(list)/sizeof(list[0]), h1m, &sl);
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003784 if (ret <= 0) {
Willy Tarreauf13ef962017-11-02 15:14:19 +01003785 /* incomplete or invalid response, this is abnormal coming from
3786 * haproxy and may only result in a bad errorfile or bad Lua code
3787 * so that won't be fixed, raise an error now.
3788 *
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003789 * FIXME: we should instead add the ability to only return a
3790 * 502 bad gateway. But in theory this is not supposed to
3791 * happen.
3792 */
3793 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
3794 ret = 0;
3795 goto end;
3796 }
3797
Willy Tarreau9c5e22e2018-09-11 19:22:14 +02003798 h2s->status = sl.st.status;
Willy Tarreaudb72da02018-09-13 11:52:20 +02003799
3800 /* certain statuses have no body or an empty one, regardless of
3801 * what the headers say.
3802 */
3803 if (sl.st.status >= 100 && sl.st.status < 200) {
3804 h1m->flags &= ~(H1_MF_CLEN | H1_MF_CHNK);
3805 h1m->curr_len = h1m->body_len = 0;
3806 }
3807 else if (sl.st.status == 204 || sl.st.status == 304) {
3808 /* no contents, claim c-len is present and set to zero */
3809 h1m->flags &= ~H1_MF_CHNK;
3810 h1m->flags |= H1_MF_CLEN;
3811 h1m->curr_len = h1m->body_len = 0;
3812 }
3813
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003814 chunk_reset(&outbuf);
3815
3816 while (1) {
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003817 outbuf.area = b_tail(&h2c->mbuf);
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003818 outbuf.size = b_contig_space(&h2c->mbuf);
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003819 outbuf.data = 0;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003820
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003821 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003822 break;
3823 realign_again:
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003824 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003825 }
3826
Willy Tarreaub5b7d4a2018-09-12 18:51:18 +02003827 if (outbuf.size < 9)
3828 goto full;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003829
3830 /* len: 0x000000 (fill later), type: 1(HEADERS), flags: ENDH=4 */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003831 memcpy(outbuf.area, "\x00\x00\x00\x01\x04", 5);
3832 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
3833 outbuf.data = 9;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003834
3835 /* encode status, which necessarily is the first one */
Willy Tarreauaafdf582018-12-10 18:06:40 +01003836 if (unlikely(list[0].v.len != 3)) {
Willy Tarreaua87f2022017-11-09 11:23:00 +01003837 /* this is an unparsable response */
3838 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
3839 ret = 0;
3840 goto end;
3841 }
Willy Tarreauaafdf582018-12-10 18:06:40 +01003842
3843 if (!hpack_encode_str_status(&outbuf, h2s->status, list[0].v)) {
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003844 if (b_space_wraps(&h2c->mbuf))
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003845 goto realign_again;
Willy Tarreaub5b7d4a2018-09-12 18:51:18 +02003846 goto full;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003847 }
3848
3849 /* encode all headers, stop at empty name */
3850 for (hdr = 1; hdr < sizeof(list)/sizeof(list[0]); hdr++) {
Willy Tarreaua76e4c22017-11-24 08:17:28 +01003851 /* these ones do not exist in H2 and must be dropped. */
3852 if (isteq(list[hdr].n, ist("connection")) ||
3853 isteq(list[hdr].n, ist("proxy-connection")) ||
3854 isteq(list[hdr].n, ist("keep-alive")) ||
3855 isteq(list[hdr].n, ist("upgrade")) ||
3856 isteq(list[hdr].n, ist("transfer-encoding")))
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003857 continue;
3858
3859 if (isteq(list[hdr].n, ist("")))
3860 break; // end
3861
3862 if (!hpack_encode_header(&outbuf, list[hdr].n, list[hdr].v)) {
3863 /* output full */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003864 if (b_space_wraps(&h2c->mbuf))
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003865 goto realign_again;
Willy Tarreaub5b7d4a2018-09-12 18:51:18 +02003866 goto full;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003867 }
3868 }
3869
3870 /* we may need to add END_STREAM */
3871 if (((h1m->flags & H1_MF_CLEN) && !h1m->body_len) || h2s->cs->flags & CS_FL_SHW)
3872 es_now = 1;
3873
3874 /* update the frame's size */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003875 h2_set_frame_size(outbuf.area, outbuf.data - 9);
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003876
3877 if (es_now)
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003878 outbuf.area[4] |= H2_F_HEADERS_END_STREAM;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003879
3880 /* consume incoming H1 response */
Willy Tarreau5dd17352018-06-14 13:33:30 +02003881 max -= ret;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003882
3883 /* commit the H2 response */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003884 b_add(&h2c->mbuf, outbuf.data);
Willy Tarreau67434202017-11-06 20:20:51 +01003885 h2s->flags |= H2_SF_HEADERS_SENT;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003886
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003887 if (es_now) {
Willy Tarreau35a62702018-02-27 15:37:25 +01003888 // trim any possibly pending data (eg: inconsistent content-length)
Willy Tarreau5dd17352018-06-14 13:33:30 +02003889 ret += max;
Willy Tarreau35a62702018-02-27 15:37:25 +01003890
Willy Tarreau801250e2018-09-11 11:45:04 +02003891 h1m->state = H1_MSG_DONE;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003892 h2s->flags |= H2_SF_ES_SENT;
3893 if (h2s->st == H2_SS_OPEN)
3894 h2s->st = H2_SS_HLOC;
3895 else
Willy Tarreau00dd0782018-03-01 16:31:34 +01003896 h2s_close(h2s);
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003897 }
Willy Tarreau9c5e22e2018-09-11 19:22:14 +02003898 else if (h2s->status >= 100 && h2s->status < 200) {
Willy Tarreau87285592017-11-29 15:41:32 +01003899 /* we'll let the caller check if it has more headers to send */
Willy Tarreau7f437ff2018-09-11 13:51:19 +02003900 h1m_init_res(h1m);
Willy Tarreau9b8cd1f2018-09-12 09:24:38 +02003901 h1m->err_pos = -1; // don't care about errors on the response path
Willy Tarreaueb528db2018-09-12 09:54:00 +02003902 h2s->h1m.flags |= H1_MF_TOLOWER;
Willy Tarreau87285592017-11-29 15:41:32 +01003903 goto end;
Willy Tarreauc199faf2017-10-31 08:35:27 +01003904 }
Willy Tarreau001823c2018-09-12 17:25:32 +02003905
3906 /* now the h1m state is either H1_MSG_CHUNK_SIZE or H1_MSG_DATA */
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003907
3908 end:
Dirkjan Bussinkc26c72d2018-09-14 14:30:25 +02003909 //fprintf(stderr, "[%d] sent simple H2 response (sid=%d) = %d bytes (%d in, ep=%u, es=%s)\n", h2c->st0, h2s->id, outbuf.len, ret, h1m->err_pos, h1m_state_str(h1m->err_state));
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003910 return ret;
Willy Tarreaub5b7d4a2018-09-12 18:51:18 +02003911 full:
3912 h1m_init_res(h1m);
3913 h1m->err_pos = -1; // don't care about errors on the response path
3914 h2c->flags |= H2_CF_MUX_MFULL;
3915 h2s->flags |= H2_SF_BLK_MROOM;
3916 ret = 0;
3917 goto end;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02003918}
3919
Willy Tarreau5dd17352018-06-14 13:33:30 +02003920/* Try to send a DATA frame matching HTTP/1 response present at offset <ofs>
3921 * for up to <max> bytes in response buffer <buf>, for stream <h2s>. Returns
3922 * the number of bytes sent. The caller must check the stream's status to
3923 * detect any error which might have happened subsequently to a successful send.
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003924 */
Willy Tarreau206ba832018-06-14 15:27:31 +02003925static size_t h2s_frt_make_resp_data(struct h2s *h2s, const struct buffer *buf, size_t ofs, size_t max)
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003926{
3927 struct h2c *h2c = h2s->h2c;
Willy Tarreaua40704a2018-09-11 13:52:04 +02003928 struct h1m *h1m = &h2s->h1m;
Willy Tarreau83061a82018-07-13 11:56:34 +02003929 struct buffer outbuf;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003930 int ret = 0;
Willy Tarreau1dc41e72018-06-14 13:21:28 +02003931 size_t total = 0;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003932 int es_now = 0;
3933 int size = 0;
Willy Tarreau206ba832018-06-14 15:27:31 +02003934 const char *blk1, *blk2;
Willy Tarreau55f3ce12018-07-18 11:49:27 +02003935 size_t len1, len2;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003936
3937 if (h2c_mux_busy(h2c, h2s)) {
3938 h2s->flags |= H2_SF_BLK_MBUSY;
3939 goto end;
3940 }
3941
Willy Tarreau44e973f2018-03-01 17:49:30 +01003942 if (!h2_get_buf(h2c, &h2c->mbuf)) {
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003943 h2c->flags |= H2_CF_MUX_MALLOC;
3944 h2s->flags |= H2_SF_BLK_MROOM;
3945 goto end;
3946 }
3947
3948 new_frame:
Willy Tarreau5dd17352018-06-14 13:33:30 +02003949 if (!max)
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003950 goto end;
3951
3952 chunk_reset(&outbuf);
3953
3954 while (1) {
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003955 outbuf.area = b_tail(&h2c->mbuf);
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003956 outbuf.size = b_contig_space(&h2c->mbuf);
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003957 outbuf.data = 0;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003958
Willy Tarreauc9fa0482018-07-10 17:43:27 +02003959 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003960 break;
3961 realign_again:
Willy Tarreau06ae84a2018-12-12 09:17:21 +01003962 /* If there are pending data in the output buffer, and we have
3963 * less than 1/4 of the mbuf's size and everything fits, we'll
3964 * still perform a copy anyway. Otherwise we'll pretend the mbuf
3965 * is full and wait, to save some slow realign calls.
3966 */
3967 if ((max + 9 > b_room(&h2c->mbuf) || max >= b_size(&h2c->mbuf) / 4)) {
3968 h2c->flags |= H2_CF_MUX_MFULL;
3969 h2s->flags |= H2_SF_BLK_MROOM;
3970 goto end;
3971 }
3972
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003973 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003974 }
3975
3976 if (outbuf.size < 9) {
3977 h2c->flags |= H2_CF_MUX_MFULL;
3978 h2s->flags |= H2_SF_BLK_MROOM;
3979 goto end;
3980 }
3981
3982 /* len: 0x000000 (fill later), type: 0(DATA), flags: none=0 */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02003983 memcpy(outbuf.area, "\x00\x00\x00\x00\x00", 5);
3984 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
3985 outbuf.data = 9;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003986
3987 switch (h1m->flags & (H1_MF_CLEN|H1_MF_CHNK)) {
3988 case 0: /* no content length, read till SHUTW */
Willy Tarreau5dd17352018-06-14 13:33:30 +02003989 size = max;
Willy Tarreau13e4e942017-12-14 10:55:21 +01003990 h1m->curr_len = size;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003991 break;
3992 case H1_MF_CLEN: /* content-length: read only h2m->body_len */
Willy Tarreau5dd17352018-06-14 13:33:30 +02003993 size = max;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02003994 if ((long long)size > h1m->curr_len)
3995 size = h1m->curr_len;
3996 break;
3997 default: /* te:chunked : parse chunks */
Willy Tarreau801250e2018-09-11 11:45:04 +02003998 if (h1m->state == H1_MSG_CHUNK_CRLF) {
Willy Tarreauc0973c62018-06-14 15:53:21 +02003999 ret = h1_skip_chunk_crlf(buf, ofs, ofs + max);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004000 if (!ret)
4001 goto end;
4002
4003 if (ret < 0) {
4004 /* FIXME: bad contents. how to proceed here when we're in H2 ? */
Willy Tarreau25173a72018-09-12 09:05:16 +02004005 h1m->err_pos = ofs + max + ret;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004006 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
4007 goto end;
4008 }
Willy Tarreau5dd17352018-06-14 13:33:30 +02004009 max -= ret;
4010 ofs += ret;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004011 total += ret;
Willy Tarreau801250e2018-09-11 11:45:04 +02004012 h1m->state = H1_MSG_CHUNK_SIZE;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004013 }
4014
Willy Tarreau801250e2018-09-11 11:45:04 +02004015 if (h1m->state == H1_MSG_CHUNK_SIZE) {
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004016 unsigned int chunk;
Willy Tarreau84d6b7a2018-06-14 15:59:05 +02004017 ret = h1_parse_chunk_size(buf, ofs, ofs + max, &chunk);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004018 if (!ret)
4019 goto end;
4020
4021 if (ret < 0) {
4022 /* FIXME: bad contents. how to proceed here when we're in H2 ? */
Willy Tarreau25173a72018-09-12 09:05:16 +02004023 h1m->err_pos = ofs + max + ret;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004024 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
4025 goto end;
4026 }
4027
4028 size = chunk;
4029 h1m->curr_len = chunk;
4030 h1m->body_len += chunk;
Willy Tarreau5dd17352018-06-14 13:33:30 +02004031 max -= ret;
4032 ofs += ret;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004033 total += ret;
Willy Tarreau801250e2018-09-11 11:45:04 +02004034 h1m->state = size ? H1_MSG_DATA : H1_MSG_TRAILERS;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004035 if (!size)
4036 goto send_empty;
4037 }
4038
4039 /* in MSG_DATA state, continue below */
4040 size = h1m->curr_len;
4041 break;
4042 }
4043
4044 /* we have in <size> the exact number of bytes we need to copy from
4045 * the H1 buffer. We need to check this against the connection's and
4046 * the stream's send windows, and to ensure that this fits in the max
4047 * frame size and in the buffer's available space minus 9 bytes (for
4048 * the frame header). The connection's flow control is applied last so
4049 * that we can use a separate list of streams which are immediately
4050 * unblocked on window opening. Note: we don't implement padding.
4051 */
4052
Willy Tarreau5dd17352018-06-14 13:33:30 +02004053 if (size > max)
4054 size = max;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004055
4056 if (size > h2s->mws)
4057 size = h2s->mws;
4058
4059 if (size <= 0) {
4060 h2s->flags |= H2_SF_BLK_SFCTL;
Olivier Houcharddddfe312018-10-10 18:51:00 +02004061 if (h2s->send_wait) {
4062 LIST_DEL(&h2s->list);
4063 LIST_INIT(&h2s->list);
4064 }
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004065 goto end;
4066 }
4067
4068 if (h2c->mfs && size > h2c->mfs)
4069 size = h2c->mfs;
4070
4071 if (size + 9 > outbuf.size) {
4072 /* we have an opportunity for enlarging the too small
4073 * available space, let's try.
4074 */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02004075 if (b_space_wraps(&h2c->mbuf))
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004076 goto realign_again;
4077 size = outbuf.size - 9;
4078 }
4079
4080 if (size <= 0) {
4081 h2c->flags |= H2_CF_MUX_MFULL;
4082 h2s->flags |= H2_SF_BLK_MROOM;
4083 goto end;
4084 }
4085
4086 if (size > h2c->mws)
4087 size = h2c->mws;
4088
4089 if (size <= 0) {
4090 h2s->flags |= H2_SF_BLK_MFCTL;
4091 goto end;
4092 }
4093
4094 /* copy whatever we can */
4095 blk1 = blk2 = NULL; // silence a maybe-uninitialized warning
Willy Tarreau5dd17352018-06-14 13:33:30 +02004096 ret = b_getblk_nc(buf, &blk1, &len1, &blk2, &len2, ofs, max);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004097 if (ret == 1)
4098 len2 = 0;
4099
4100 if (!ret || len1 + len2 < size) {
4101 /* FIXME: must normally never happen */
4102 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
4103 goto end;
4104 }
4105
4106 /* limit len1/len2 to size */
4107 if (len1 + len2 > size) {
4108 int sub = len1 + len2 - size;
4109
4110 if (len2 > sub)
4111 len2 -= sub;
4112 else {
4113 sub -= len2;
4114 len2 = 0;
4115 len1 -= sub;
4116 }
4117 }
4118
4119 /* now let's copy this this into the output buffer */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02004120 memcpy(outbuf.area + 9, blk1, len1);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004121 if (len2)
Willy Tarreau843b7cb2018-07-13 10:54:26 +02004122 memcpy(outbuf.area + 9 + len1, blk2, len2);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004123
4124 send_empty:
4125 /* we may need to add END_STREAM */
4126 /* FIXME: we should also detect shutdown(w) below, but how ? Maybe we
4127 * could rely on the MSG_MORE flag as a hint for this ?
Willy Tarreau00610962018-07-19 10:58:28 +02004128 *
4129 * FIXME: what we do here is not correct because we send end_stream
4130 * before knowing if we'll have to send a HEADERS frame for the
4131 * trailers. More importantly we're not consuming the trailing CRLF
4132 * after the end of trailers, so it will be left to the caller to
4133 * eat it. The right way to do it would be to measure trailers here
4134 * and to send ES only if there are no trailers.
4135 *
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004136 */
4137 if (((h1m->flags & H1_MF_CLEN) && !(h1m->curr_len - size)) ||
Willy Tarreau801250e2018-09-11 11:45:04 +02004138 !h1m->curr_len || h1m->state >= H1_MSG_DONE)
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004139 es_now = 1;
4140
4141 /* update the frame's size */
Willy Tarreau843b7cb2018-07-13 10:54:26 +02004142 h2_set_frame_size(outbuf.area, size);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004143
4144 if (es_now)
Willy Tarreau843b7cb2018-07-13 10:54:26 +02004145 outbuf.area[4] |= H2_F_DATA_END_STREAM;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004146
4147 /* commit the H2 response */
Willy Tarreauc9fa0482018-07-10 17:43:27 +02004148 b_add(&h2c->mbuf, size + 9);
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004149
4150 /* consume incoming H1 response */
4151 if (size > 0) {
Willy Tarreau5dd17352018-06-14 13:33:30 +02004152 max -= size;
4153 ofs += size;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004154 total += size;
4155 h1m->curr_len -= size;
4156 h2s->mws -= size;
4157 h2c->mws -= size;
4158
4159 if (size && !h1m->curr_len && (h1m->flags & H1_MF_CHNK)) {
Willy Tarreau801250e2018-09-11 11:45:04 +02004160 h1m->state = H1_MSG_CHUNK_CRLF;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004161 goto new_frame;
4162 }
4163 }
4164
4165 if (es_now) {
4166 if (h2s->st == H2_SS_OPEN)
4167 h2s->st = H2_SS_HLOC;
4168 else
Willy Tarreau00dd0782018-03-01 16:31:34 +01004169 h2s_close(h2s);
Willy Tarreau9d89ac82017-10-31 17:15:59 +01004170
Willy Tarreau35a62702018-02-27 15:37:25 +01004171 if (!(h1m->flags & H1_MF_CHNK)) {
4172 // trim any possibly pending data (eg: inconsistent content-length)
Willy Tarreau5dd17352018-06-14 13:33:30 +02004173 total += max;
4174 ofs += max;
4175 max = 0;
Willy Tarreau35a62702018-02-27 15:37:25 +01004176
Willy Tarreau801250e2018-09-11 11:45:04 +02004177 h1m->state = H1_MSG_DONE;
Willy Tarreau35a62702018-02-27 15:37:25 +01004178 }
Willy Tarreau9d89ac82017-10-31 17:15:59 +01004179
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004180 h2s->flags |= H2_SF_ES_SENT;
4181 }
4182
4183 end:
Dirkjan Bussinkc26c72d2018-09-14 14:30:25 +02004184 trace("[%d] sent simple H2 DATA response (sid=%d) = %d bytes out (%u in, st=%s, ep=%u, es=%s, h2cws=%d h2sws=%d) data=%u", h2c->st0, h2s->id, size+9, (unsigned int)total, h1m_state_str(h1m->state), h1m->err_pos, h1m_state_str(h1m->err_state), h2c->mws, h2s->mws, (unsigned int)b_data(buf));
Willy Tarreauc652dbd2017-10-19 11:16:37 +02004185 return total;
4186}
4187
Willy Tarreau115e83b2018-12-01 19:17:53 +01004188/* Try to send a HEADERS frame matching HTX response present in HTX message
4189 * <htx> for the H2 stream <h2s>. Returns the number of bytes sent. The caller
4190 * must check the stream's status to detect any error which might have happened
4191 * subsequently to a successful send. The htx blocks are automatically removed
4192 * from the message. The htx message is assumed to be valid since produced from
4193 * the internal code, hence it contains a start line, an optional series of
4194 * header blocks and an end of header, otherwise an invalid frame could be
4195 * emitted and the resulting htx message could be left in an inconsistent state.
4196 */
4197static size_t h2s_htx_frt_make_resp_headers(struct h2s *h2s, struct htx *htx)
4198{
4199 struct http_hdr list[MAX_HTTP_HDR];
4200 struct h2c *h2c = h2s->h2c;
4201 struct htx_blk *blk;
4202 struct htx_blk *blk_end;
4203 struct buffer outbuf;
4204 struct htx_sl *sl;
4205 enum htx_blk_type type;
4206 int es_now = 0;
4207 int ret = 0;
4208 int hdr;
4209 int idx;
4210
4211 if (h2c_mux_busy(h2c, h2s)) {
4212 h2s->flags |= H2_SF_BLK_MBUSY;
4213 return 0;
4214 }
4215
4216 if (!h2_get_buf(h2c, &h2c->mbuf)) {
4217 h2c->flags |= H2_CF_MUX_MALLOC;
4218 h2s->flags |= H2_SF_BLK_MROOM;
4219 return 0;
4220 }
4221
4222 /* determine the first block which must not be deleted, blk_end may
4223 * be NULL if all blocks have to be deleted.
4224 */
4225 idx = htx_get_head(htx);
4226 blk_end = NULL;
4227 while (idx != -1) {
4228 type = htx_get_blk_type(htx_get_blk(htx, idx));
4229 idx = htx_get_next(htx, idx);
4230 if (type == HTX_BLK_EOH) {
4231 if (idx != -1)
4232 blk_end = htx_get_blk(htx, idx);
4233 break;
4234 }
4235 }
4236
4237 /* get the start line, we do have one */
Willy Tarreau8e162ee2018-12-06 14:07:27 +01004238 sl = htx_get_stline(htx);
Willy Tarreaue2778a42018-12-08 15:30:46 +01004239 ALREADY_CHECKED(sl);
Willy Tarreau115e83b2018-12-01 19:17:53 +01004240 h2s->status = sl->info.res.status;
Willy Tarreauaafdf582018-12-10 18:06:40 +01004241 if (h2s->status < 100 || h2s->status > 999)
4242 goto fail;
Willy Tarreau115e83b2018-12-01 19:17:53 +01004243
4244 /* and the rest of the headers, that we dump starting at header 0 */
4245 hdr = 0;
4246
Willy Tarreau8e162ee2018-12-06 14:07:27 +01004247 idx = htx_get_head(htx); // returns the SL that we skip
Willy Tarreau115e83b2018-12-01 19:17:53 +01004248 while ((idx = htx_get_next(htx, idx)) != -1) {
4249 blk = htx_get_blk(htx, idx);
4250 type = htx_get_blk_type(blk);
4251
4252 if (type == HTX_BLK_UNUSED)
4253 continue;
4254
4255 if (type != HTX_BLK_HDR)
4256 break;
4257
4258 if (unlikely(hdr >= sizeof(list)/sizeof(list[0]) - 1))
4259 goto fail;
4260
4261 list[hdr].n = htx_get_blk_name(htx, blk);
4262 list[hdr].v = htx_get_blk_value(htx, blk);
Willy Tarreau115e83b2018-12-01 19:17:53 +01004263 hdr++;
4264 }
4265
4266 /* marker for end of headers */
4267 list[hdr].n = ist("");
4268
4269 if (h2s->status == 204 || h2s->status == 304) {
4270 /* no contents, claim c-len is present and set to zero */
4271 es_now = 1;
4272 }
4273
4274 chunk_reset(&outbuf);
4275
4276 while (1) {
4277 outbuf.area = b_tail(&h2c->mbuf);
4278 outbuf.size = b_contig_space(&h2c->mbuf);
4279 outbuf.data = 0;
4280
4281 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
4282 break;
4283 realign_again:
4284 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
4285 }
4286
4287 if (outbuf.size < 9)
4288 goto full;
4289
4290 /* len: 0x000000 (fill later), type: 1(HEADERS), flags: ENDH=4 */
4291 memcpy(outbuf.area, "\x00\x00\x00\x01\x04", 5);
4292 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
4293 outbuf.data = 9;
4294
4295 /* encode status, which necessarily is the first one */
Willy Tarreauaafdf582018-12-10 18:06:40 +01004296 if (!hpack_encode_int_status(&outbuf, h2s->status)) {
Willy Tarreau115e83b2018-12-01 19:17:53 +01004297 if (b_space_wraps(&h2c->mbuf))
4298 goto realign_again;
4299 goto full;
4300 }
4301
4302 /* encode all headers, stop at empty name */
4303 for (hdr = 0; hdr < sizeof(list)/sizeof(list[0]); hdr++) {
4304 /* these ones do not exist in H2 and must be dropped. */
4305 if (isteq(list[hdr].n, ist("connection")) ||
4306 isteq(list[hdr].n, ist("proxy-connection")) ||
4307 isteq(list[hdr].n, ist("keep-alive")) ||
4308 isteq(list[hdr].n, ist("upgrade")) ||
4309 isteq(list[hdr].n, ist("transfer-encoding")))
4310 continue;
4311
4312 if (isteq(list[hdr].n, ist("")))
4313 break; // end
4314
4315 if (!hpack_encode_header(&outbuf, list[hdr].n, list[hdr].v)) {
4316 /* output full */
4317 if (b_space_wraps(&h2c->mbuf))
4318 goto realign_again;
4319 goto full;
4320 }
4321 }
4322
4323 /* we may need to add END_STREAM.
4324 * FIXME: we should also set it when we know for sure that the
4325 * content-length is zero as well as on 204/304
4326 */
4327 if (blk_end && htx_get_blk_type(blk_end) == HTX_BLK_EOM)
4328 es_now = 1;
4329
4330 if (h2s->cs->flags & CS_FL_SHW)
4331 es_now = 1;
4332
4333 /* update the frame's size */
4334 h2_set_frame_size(outbuf.area, outbuf.data - 9);
4335
4336 if (es_now)
4337 outbuf.area[4] |= H2_F_HEADERS_END_STREAM;
4338
4339 /* commit the H2 response */
4340 b_add(&h2c->mbuf, outbuf.data);
4341 h2s->flags |= H2_SF_HEADERS_SENT;
4342
Willy Tarreau115e83b2018-12-01 19:17:53 +01004343 if (es_now) {
4344 h2s->flags |= H2_SF_ES_SENT;
4345 if (h2s->st == H2_SS_OPEN)
4346 h2s->st = H2_SS_HLOC;
4347 else
4348 h2s_close(h2s);
4349 }
4350
4351 /* OK we could properly deliver the response */
4352
4353 /* remove all header blocks including the EOH and compute the
4354 * corresponding size.
4355 *
4356 * FIXME: We should remove everything when es_now is set.
4357 */
4358 ret = 0;
4359 idx = htx_get_head(htx);
4360 blk = htx_get_blk(htx, idx);
4361 while (blk != blk_end) {
4362 ret += htx_get_blksz(blk);
4363 blk = htx_remove_blk(htx, blk);
4364 }
Willy Tarreauc5753ae2018-12-02 12:28:01 +01004365
4366 if (blk_end && htx_get_blk_type(blk_end) == HTX_BLK_EOM)
4367 htx_remove_blk(htx, blk_end);
Willy Tarreau115e83b2018-12-01 19:17:53 +01004368 end:
4369 return ret;
4370 full:
4371 h2c->flags |= H2_CF_MUX_MFULL;
4372 h2s->flags |= H2_SF_BLK_MROOM;
4373 ret = 0;
4374 goto end;
4375 fail:
4376 /* unparsable HTX messages, too large ones to be produced in the local
4377 * list etc go here (unrecoverable errors).
4378 */
4379 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
4380 ret = 0;
4381 goto end;
4382}
4383
Willy Tarreau80739692018-10-05 11:35:57 +02004384/* Try to send a HEADERS frame matching HTX request present in HTX message
4385 * <htx> for the H2 stream <h2s>. Returns the number of bytes sent. The caller
4386 * must check the stream's status to detect any error which might have happened
4387 * subsequently to a successful send. The htx blocks are automatically removed
4388 * from the message. The htx message is assumed to be valid since produced from
4389 * the internal code, hence it contains a start line, an optional series of
4390 * header blocks and an end of header, otherwise an invalid frame could be
4391 * emitted and the resulting htx message could be left in an inconsistent state.
4392 */
4393static size_t h2s_htx_bck_make_req_headers(struct h2s *h2s, struct htx *htx)
4394{
4395 struct http_hdr list[MAX_HTTP_HDR];
4396 struct h2c *h2c = h2s->h2c;
4397 struct htx_blk *blk;
4398 struct htx_blk *blk_end;
4399 struct buffer outbuf;
4400 struct htx_sl *sl;
4401 struct ist meth, path;
4402 enum htx_blk_type type;
4403 int es_now = 0;
4404 int ret = 0;
4405 int hdr;
4406 int idx;
4407
4408 if (h2c_mux_busy(h2c, h2s)) {
4409 h2s->flags |= H2_SF_BLK_MBUSY;
4410 return 0;
4411 }
4412
4413 if (!h2_get_buf(h2c, &h2c->mbuf)) {
4414 h2c->flags |= H2_CF_MUX_MALLOC;
4415 h2s->flags |= H2_SF_BLK_MROOM;
4416 return 0;
4417 }
4418
4419 /* determine the first block which must not be deleted, blk_end may
4420 * be NULL if all blocks have to be deleted.
4421 */
4422 idx = htx_get_head(htx);
4423 blk_end = NULL;
4424 while (idx != -1) {
4425 type = htx_get_blk_type(htx_get_blk(htx, idx));
4426 idx = htx_get_next(htx, idx);
4427 if (type == HTX_BLK_EOH) {
4428 if (idx != -1)
4429 blk_end = htx_get_blk(htx, idx);
4430 break;
4431 }
4432 }
4433
4434 /* get the start line, we do have one */
Willy Tarreau8e162ee2018-12-06 14:07:27 +01004435 sl = htx_get_stline(htx);
Willy Tarreaue2778a42018-12-08 15:30:46 +01004436 ALREADY_CHECKED(sl);
Willy Tarreau80739692018-10-05 11:35:57 +02004437 meth = htx_sl_req_meth(sl);
4438 path = htx_sl_req_uri(sl);
4439
4440 /* and the rest of the headers, that we dump starting at header 0 */
4441 hdr = 0;
4442
Willy Tarreau8e162ee2018-12-06 14:07:27 +01004443 idx = htx_get_head(htx); // returns the SL that we skip
Willy Tarreau80739692018-10-05 11:35:57 +02004444 while ((idx = htx_get_next(htx, idx)) != -1) {
4445 blk = htx_get_blk(htx, idx);
4446 type = htx_get_blk_type(blk);
4447
4448 if (type == HTX_BLK_UNUSED)
4449 continue;
4450
4451 if (type != HTX_BLK_HDR)
4452 break;
4453
4454 if (unlikely(hdr >= sizeof(list)/sizeof(list[0]) - 1))
4455 goto fail;
4456
4457 list[hdr].n = htx_get_blk_name(htx, blk);
4458 list[hdr].v = htx_get_blk_value(htx, blk);
Willy Tarreau80739692018-10-05 11:35:57 +02004459 hdr++;
4460 }
4461
4462 /* marker for end of headers */
4463 list[hdr].n = ist("");
4464
4465 chunk_reset(&outbuf);
4466
4467 while (1) {
4468 outbuf.area = b_tail(&h2c->mbuf);
4469 outbuf.size = b_contig_space(&h2c->mbuf);
4470 outbuf.data = 0;
4471
4472 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
4473 break;
4474 realign_again:
4475 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
4476 }
4477
4478 if (outbuf.size < 9)
4479 goto full;
4480
4481 /* len: 0x000000 (fill later), type: 1(HEADERS), flags: ENDH=4 */
4482 memcpy(outbuf.area, "\x00\x00\x00\x01\x04", 5);
4483 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
4484 outbuf.data = 9;
4485
4486 /* encode the method, which necessarily is the first one */
Willy Tarreaubdabc3a2018-12-10 18:25:11 +01004487 if (!hpack_encode_method(&outbuf, sl->info.req.meth, meth)) {
Willy Tarreau80739692018-10-05 11:35:57 +02004488 if (b_space_wraps(&h2c->mbuf))
4489 goto realign_again;
4490 goto full;
4491 }
4492
4493 /* encode the scheme which is always "https" (or 0x86 for "http") */
Willy Tarreau7561bcb2018-12-10 19:17:06 +01004494 if (!hpack_encode_scheme(&outbuf, ist("https"))) {
4495 /* output full */
4496 if (b_space_wraps(&h2c->mbuf))
4497 goto realign_again;
4498 goto full;
4499 }
Willy Tarreau80739692018-10-05 11:35:57 +02004500
4501 /* encode the path, which necessarily is the second one */
Willy Tarreau90799812018-12-10 19:28:38 +01004502 if (!hpack_encode_path(&outbuf, path)) {
Willy Tarreau80739692018-10-05 11:35:57 +02004503 /* output full */
4504 if (b_space_wraps(&h2c->mbuf))
4505 goto realign_again;
4506 goto full;
4507 }
4508
4509 /* encode all headers, stop at empty name */
4510 for (hdr = 0; hdr < sizeof(list)/sizeof(list[0]); hdr++) {
4511 /* these ones do not exist in H2 and must be dropped. */
4512 if (isteq(list[hdr].n, ist("connection")) ||
4513 isteq(list[hdr].n, ist("proxy-connection")) ||
4514 isteq(list[hdr].n, ist("keep-alive")) ||
4515 isteq(list[hdr].n, ist("upgrade")) ||
4516 isteq(list[hdr].n, ist("transfer-encoding")))
4517 continue;
4518
4519 if (isteq(list[hdr].n, ist("")))
4520 break; // end
4521
4522 if (!hpack_encode_header(&outbuf, list[hdr].n, list[hdr].v)) {
4523 /* output full */
4524 if (b_space_wraps(&h2c->mbuf))
4525 goto realign_again;
4526 goto full;
4527 }
4528 }
4529
4530 /* we may need to add END_STREAM if we have no body :
4531 * - request already closed, or :
4532 * - no transfer-encoding, and :
4533 * - no content-length or content-length:0
4534 * Fixme: this doesn't take into account CONNECT requests.
4535 */
4536 if (blk_end && htx_get_blk_type(blk_end) == HTX_BLK_EOM)
4537 es_now = 1;
4538
4539 if (sl->flags & HTX_SL_F_BODYLESS)
4540 es_now = 1;
4541
4542 if (h2s->cs->flags & CS_FL_SHW)
4543 es_now = 1;
4544
4545 /* update the frame's size */
4546 h2_set_frame_size(outbuf.area, outbuf.data - 9);
4547
4548 if (es_now)
4549 outbuf.area[4] |= H2_F_HEADERS_END_STREAM;
4550
4551 /* commit the H2 response */
4552 b_add(&h2c->mbuf, outbuf.data);
4553 h2s->flags |= H2_SF_HEADERS_SENT;
4554 h2s->st = H2_SS_OPEN;
4555
Willy Tarreau80739692018-10-05 11:35:57 +02004556 if (es_now) {
4557 // trim any possibly pending data (eg: inconsistent content-length)
4558 h2s->flags |= H2_SF_ES_SENT;
4559 h2s->st = H2_SS_HLOC;
4560 }
4561
4562 /* remove all header blocks including the EOH and compute the
4563 * corresponding size.
4564 *
4565 * FIXME: We should remove everything when es_now is set.
4566 */
4567 ret = 0;
4568 idx = htx_get_head(htx);
4569 blk = htx_get_blk(htx, idx);
4570 while (blk != blk_end) {
4571 ret += htx_get_blksz(blk);
4572 blk = htx_remove_blk(htx, blk);
4573 }
4574
4575 if (blk_end && htx_get_blk_type(blk_end) == HTX_BLK_EOM)
4576 htx_remove_blk(htx, blk_end);
4577
4578 end:
4579 return ret;
4580 full:
4581 h2c->flags |= H2_CF_MUX_MFULL;
4582 h2s->flags |= H2_SF_BLK_MROOM;
4583 ret = 0;
4584 goto end;
4585 fail:
4586 /* unparsable HTX messages, too large ones to be produced in the local
4587 * list etc go here (unrecoverable errors).
4588 */
4589 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
4590 ret = 0;
4591 goto end;
4592}
4593
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004594/* Try to send a DATA frame matching HTTP response present in HTX structure
Willy Tarreau98de12a2018-12-12 07:03:00 +01004595 * present in <buf>, for stream <h2s>. Returns the number of bytes sent. The
4596 * caller must check the stream's status to detect any error which might have
4597 * happened subsequently to a successful send. Returns the number of data bytes
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004598 * consumed, or zero if nothing done. Note that EOD/EOM count for 1 byte.
4599 */
Willy Tarreau98de12a2018-12-12 07:03:00 +01004600static size_t h2s_htx_frt_make_resp_data(struct h2s *h2s, struct buffer *buf, size_t count)
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004601{
4602 struct h2c *h2c = h2s->h2c;
Willy Tarreau98de12a2018-12-12 07:03:00 +01004603 struct htx *htx;
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004604 struct buffer outbuf;
4605 size_t total = 0;
4606 int es_now = 0;
4607 int bsize; /* htx block size */
4608 int fsize; /* h2 frame size */
4609 struct htx_blk *blk;
4610 enum htx_blk_type type;
4611 int idx;
4612
4613 if (h2c_mux_busy(h2c, h2s)) {
4614 h2s->flags |= H2_SF_BLK_MBUSY;
4615 goto end;
4616 }
4617
4618 if (!h2_get_buf(h2c, &h2c->mbuf)) {
4619 h2c->flags |= H2_CF_MUX_MALLOC;
4620 h2s->flags |= H2_SF_BLK_MROOM;
4621 goto end;
4622 }
4623
Willy Tarreau98de12a2018-12-12 07:03:00 +01004624 htx = htx_from_buf(buf);
4625
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004626 /* We only come here with HTX_BLK_DATA or HTX_BLK_EOD blocks. However,
4627 * while looping, we can meet an HTX_BLK_EOM block that we'll leave to
4628 * the caller to handle.
4629 */
4630
4631 new_frame:
Willy Tarreauee573762018-12-04 15:25:57 +01004632 if (!count || htx_is_empty(htx))
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004633 goto end;
4634
4635 idx = htx_get_head(htx);
4636 blk = htx_get_blk(htx, idx);
4637 type = htx_get_blk_type(blk); // DATA or EOD or EOM
4638 bsize = htx_get_blksz(blk);
4639 fsize = bsize;
4640
4641 if (type == HTX_BLK_EOD) {
4642 /* if we have an EOD, we're dealing with chunked data. We may
4643 * have a set of trailers after us that the caller will want to
4644 * deal with. Let's simply remove the EOD and return.
4645 */
4646 htx_remove_blk(htx, blk);
Willy Tarreauee573762018-12-04 15:25:57 +01004647 total++; // EOD counts as one byte
4648 count--;
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004649 goto end;
4650 }
Willy Tarreau7eeb10a2019-01-04 09:28:17 +01004651 else if (type == HTX_BLK_EOM) {
4652 if (h2s->flags & H2_SF_ES_SENT) {
4653 /* ES already sent */
4654 htx_remove_blk(htx, blk);
4655 total++; // EOM counts as one byte
4656 count--;
4657 goto end;
4658 }
4659 }
4660 else if (type != HTX_BLK_DATA)
Willy Tarreau2fb1d4c2018-12-04 15:28:03 +01004661 goto end;
Willy Tarreau98de12a2018-12-12 07:03:00 +01004662
4663 /* Perform some optimizations to reduce the number of buffer copies.
4664 * First, if the mux's buffer is empty and the htx area contains
4665 * exactly one data block of the same size as the requested count, and
4666 * this count fits within the frame size, the stream's window size, and
4667 * the connection's window size, then it's possible to simply swap the
4668 * caller's buffer with the mux's output buffer and adjust offsets and
4669 * length to match the entire DATA HTX block in the middle. In this
4670 * case we perform a true zero-copy operation from end-to-end. This is
4671 * the situation that happens all the time with large files. Second, if
4672 * this is not possible, but the mux's output buffer is empty, we still
4673 * have an opportunity to avoid the copy to the intermediary buffer, by
4674 * making the intermediary buffer's area point to the output buffer's
4675 * area. In this case we want to skip the HTX header to make sure that
4676 * copies remain aligned and that this operation remains possible all
4677 * the time. This goes for headers, data blocks and any data extracted
4678 * from the HTX blocks.
4679 */
4680 if (unlikely(fsize == count &&
4681 htx->used == 1 && type == HTX_BLK_DATA &&
4682 fsize <= h2s->mws && fsize <= h2c->mws && fsize <= h2c->mfs)) {
4683 void *old_area = h2c->mbuf.area;
4684
4685 if (b_data(&h2c->mbuf)) {
4686 /* too bad there are data left there. If we have less
4687 * than 1/4 of the mbuf's size and everything fits,
4688 * we'll perform a copy anyway. Otherwise we'll pretend
4689 * the mbuf is full and wait.
4690 */
4691 if (fsize <= b_size(&h2c->mbuf) / 4 && fsize + 9 <= b_room(&h2c->mbuf))
4692 goto copy;
4693 h2c->flags |= H2_CF_MUX_MFULL;
4694 h2s->flags |= H2_SF_BLK_MROOM;
4695 goto end;
4696 }
4697
4698 /* map an H2 frame to the HTX block so that we can put the
4699 * frame header there.
4700 */
4701 h2c->mbuf.area = buf->area;
Olivier Houchard84cca662018-12-14 16:28:08 +01004702 h2c->mbuf.head = sizeof(struct htx) + blk->addr - 9;
Willy Tarreau98de12a2018-12-12 07:03:00 +01004703 h2c->mbuf.data = fsize + 9;
4704 outbuf.area = b_head(&h2c->mbuf);
4705
4706 /* prepend an H2 DATA frame header just before the DATA block */
4707 memcpy(outbuf.area, "\x00\x00\x00\x00\x00", 5);
4708 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
4709 h2_set_frame_size(outbuf.area, fsize);
4710
4711 /* update windows */
4712 h2s->mws -= fsize;
4713 h2c->mws -= fsize;
4714
4715 /* and exchange with our old area */
4716 buf->area = old_area;
4717 buf->data = buf->head = 0;
4718 total += fsize;
4719 goto end;
4720 }
Willy Tarreau2fb1d4c2018-12-04 15:28:03 +01004721
Willy Tarreau98de12a2018-12-12 07:03:00 +01004722 copy:
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004723 /* for DATA and EOM we'll have to emit a frame, even if empty */
4724
4725 while (1) {
4726 outbuf.area = b_tail(&h2c->mbuf);
4727 outbuf.size = b_contig_space(&h2c->mbuf);
4728 outbuf.data = 0;
4729
4730 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
4731 break;
4732 realign_again:
4733 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
4734 }
4735
4736 if (outbuf.size < 9) {
4737 h2c->flags |= H2_CF_MUX_MFULL;
4738 h2s->flags |= H2_SF_BLK_MROOM;
4739 goto end;
4740 }
4741
4742 /* len: 0x000000 (fill later), type: 0(DATA), flags: none=0 */
4743 memcpy(outbuf.area, "\x00\x00\x00\x00\x00", 5);
4744 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
4745 outbuf.data = 9;
4746
4747 /* we have in <fsize> the exact number of bytes we need to copy from
4748 * the HTX buffer. We need to check this against the connection's and
4749 * the stream's send windows, and to ensure that this fits in the max
4750 * frame size and in the buffer's available space minus 9 bytes (for
4751 * the frame header). The connection's flow control is applied last so
4752 * that we can use a separate list of streams which are immediately
4753 * unblocked on window opening. Note: we don't implement padding.
4754 */
4755
4756 /* EOM is presented with bsize==1 but would lead to the emission of an
4757 * empty frame, thus we force it to zero here.
4758 */
4759 if (type == HTX_BLK_EOM)
4760 bsize = fsize = 0;
4761
4762 if (!fsize)
4763 goto send_empty;
4764
4765 if (h2s->mws <= 0) {
4766 h2s->flags |= H2_SF_BLK_SFCTL;
4767 if (h2s->send_wait) {
4768 LIST_DEL(&h2s->list);
4769 LIST_INIT(&h2s->list);
4770 }
4771 goto end;
4772 }
4773
Willy Tarreauee573762018-12-04 15:25:57 +01004774 if (fsize > count)
4775 fsize = count;
4776
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004777 if (fsize > h2s->mws)
4778 fsize = h2s->mws; // >0
4779
4780 if (h2c->mfs && fsize > h2c->mfs)
4781 fsize = h2c->mfs; // >0
4782
4783 if (fsize + 9 > outbuf.size) {
4784 /* we have an opportunity for enlarging the too small
4785 * available space, let's try.
4786 * FIXME: is this really interesting to do? Maybe we'll
4787 * spend lots of time realigning instead of using two
4788 * frames.
4789 */
4790 if (b_space_wraps(&h2c->mbuf))
4791 goto realign_again;
4792 fsize = outbuf.size - 9;
4793
4794 if (fsize <= 0) {
4795 /* no need to send an empty frame here */
4796 h2c->flags |= H2_CF_MUX_MFULL;
4797 h2s->flags |= H2_SF_BLK_MROOM;
4798 goto end;
4799 }
4800 }
4801
4802 if (h2c->mws <= 0) {
4803 h2s->flags |= H2_SF_BLK_MFCTL;
4804 goto end;
4805 }
4806
4807 if (fsize > h2c->mws)
4808 fsize = h2c->mws;
4809
4810 /* now let's copy this this into the output buffer */
4811 memcpy(outbuf.area + 9, htx_get_blk_ptr(htx, blk), fsize);
Willy Tarreau0f799ca2018-12-04 15:20:11 +01004812 h2s->mws -= fsize;
4813 h2c->mws -= fsize;
Willy Tarreauee573762018-12-04 15:25:57 +01004814 count -= fsize;
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004815
4816 send_empty:
4817 /* update the frame's size */
4818 h2_set_frame_size(outbuf.area, fsize);
4819
4820 /* FIXME: for now we only set the ES flag on empty DATA frames, once
4821 * meeting EOM. We should optimize this later.
4822 */
4823 if (type == HTX_BLK_EOM) {
Willy Tarreauee573762018-12-04 15:25:57 +01004824 total++; // EOM counts as one byte
4825 count--;
Willy Tarreau0c535fd2018-12-01 19:25:56 +01004826 es_now = 1;
4827 }
4828
4829 if (es_now)
4830 outbuf.area[4] |= H2_F_DATA_END_STREAM;
4831
4832 /* commit the H2 response */
4833 b_add(&h2c->mbuf, fsize + 9);
4834
4835 /* consume incoming HTX block, including EOM */
4836 total += fsize;
4837 if (fsize == bsize) {
4838 htx_remove_blk(htx, blk);
4839 if (fsize)
4840 goto new_frame;
4841 } else {
4842 /* we've truncated this block */
4843 htx_cut_data_blk(htx, blk, fsize);
4844 }
4845
4846 if (es_now) {
4847 if (h2s->st == H2_SS_OPEN)
4848 h2s->st = H2_SS_HLOC;
4849 else
4850 h2s_close(h2s);
4851
4852 h2s->flags |= H2_SF_ES_SENT;
4853 }
4854
4855 end:
4856 return total;
4857}
4858
Willy Tarreau1bb812f2019-01-04 10:56:26 +01004859/* Try to send a HEADERS frame matching HTX_BLK_TLR series of blocks present in
4860 * HTX message <htx> for the H2 stream <h2s>. Returns the number of bytes
4861 * processed. The caller must check the stream's status to detect any error
4862 * which might have happened subsequently to a successful send. The htx blocks
4863 * are automatically removed from the message. The htx message is assumed to be
4864 * valid since produced from the internal code. Processing stops when meeting
4865 * the EOM, which is also removed. All trailers are processed at once and sent
4866 * as a single frame. The ES flag is always set.
4867 */
4868static size_t h2s_htx_make_trailers(struct h2s *h2s, struct htx *htx)
4869{
4870 struct http_hdr list[MAX_HTTP_HDR];
4871 struct h2c *h2c = h2s->h2c;
4872 struct htx_blk *blk;
4873 struct htx_blk *blk_end;
4874 struct buffer outbuf;
4875 struct h1m h1m;
4876 enum htx_blk_type type;
4877 uint32_t size;
4878 int ret = 0;
4879 int hdr;
4880 int idx;
4881 void *start;
4882
4883 if (h2c_mux_busy(h2c, h2s)) {
4884 h2s->flags |= H2_SF_BLK_MBUSY;
4885 goto end;
4886 }
4887
4888 if (!h2_get_buf(h2c, &h2c->mbuf)) {
4889 h2c->flags |= H2_CF_MUX_MALLOC;
4890 h2s->flags |= H2_SF_BLK_MROOM;
4891 goto end;
4892 }
4893
4894 /* The principle is that we parse each and every trailers block using
4895 * the H1 headers parser, and append it to the list. We don't proceed
4896 * until EOM is met. blk_end will point to the EOM block.
4897 */
4898 hdr = 0;
4899 memset(list, 0, sizeof(list));
4900 blk_end = NULL;
4901
4902 for (idx = htx_get_head(htx); idx != -1; idx = htx_get_next(htx, idx)) {
4903 blk = htx_get_blk(htx, idx);
4904 type = htx_get_blk_type(blk);
4905
4906 if (type == HTX_BLK_UNUSED)
4907 continue;
4908
4909 if (type != HTX_BLK_TLR) {
4910 if (type == HTX_BLK_EOM)
4911 blk_end = blk;
4912 break;
4913 }
4914
4915 if (unlikely(hdr >= sizeof(list)/sizeof(list[0]) - 1))
4916 goto fail;
4917
4918 size = htx_get_blksz(blk);
4919 start = htx_get_blk_ptr(htx, blk);
4920
4921 h1m.flags = H1_MF_HDRS_ONLY | H1_MF_TOLOWER;
4922 h1m.err_pos = 0;
4923 ret = h1_headers_to_hdr_list(start, start + size,
4924 list + hdr, sizeof(list)/sizeof(list[0]) - hdr,
4925 &h1m, NULL);
4926 if (ret < 0)
4927 goto fail;
4928
4929 /* ret == 0 if an incomplete trailers block was found (missing
4930 * empty line), or > 0 if it was found. We have to continue on
4931 * incomplete messages because the trailers block might be
4932 * incomplete.
4933 */
4934
4935 /* search the new end */
4936 while (hdr <= sizeof(list)/sizeof(list[0])) {
4937 if (!list[hdr].n.len)
4938 break;
4939 hdr++;
4940 }
4941 }
4942
4943 if (!blk_end)
4944 goto end; // end not found yet
4945
4946 if (!hdr)
4947 goto done;
4948
4949 chunk_reset(&outbuf);
4950
4951 while (1) {
4952 outbuf.area = b_tail(&h2c->mbuf);
4953 outbuf.size = b_contig_space(&h2c->mbuf);
4954 outbuf.data = 0;
4955
4956 if (outbuf.size >= 9 || !b_space_wraps(&h2c->mbuf))
4957 break;
4958 realign_again:
4959 b_slow_realign(&h2c->mbuf, trash.area, b_data(&h2c->mbuf));
4960 }
4961
4962 if (outbuf.size < 9)
4963 goto full;
4964
4965 /* len: 0x000000 (fill later), type: 1(HEADERS), flags: ENDH=4,ES=1 */
4966 memcpy(outbuf.area, "\x00\x00\x00\x01\x05", 5);
4967 write_n32(outbuf.area + 5, h2s->id); // 4 bytes
4968 outbuf.data = 9;
4969
4970 /* encode status, which necessarily is the first one */
4971 if (!hpack_encode_int_status(&outbuf, h2s->status)) {
4972 if (b_space_wraps(&h2c->mbuf))
4973 goto realign_again;
4974 goto full;
4975 }
4976
4977 /* encode all headers */
4978 for (idx = 0; idx < hdr; idx++) {
4979 /* these ones do not exist in H2 or must not appear in
4980 * trailers and must be dropped.
4981 */
4982 if (isteq(list[idx].n, ist("host")) ||
4983 isteq(list[idx].n, ist("content-length")) ||
4984 isteq(list[idx].n, ist("connection")) ||
4985 isteq(list[idx].n, ist("proxy-connection")) ||
4986 isteq(list[idx].n, ist("keep-alive")) ||
4987 isteq(list[idx].n, ist("upgrade")) ||
4988 isteq(list[idx].n, ist("te")) ||
4989 isteq(list[idx].n, ist("transfer-encoding")))
4990 continue;
4991
4992 if (!hpack_encode_header(&outbuf, list[idx].n, list[idx].v)) {
4993 /* output full */
4994 if (b_space_wraps(&h2c->mbuf))
4995 goto realign_again;
4996 goto full;
4997 }
4998 }
4999
5000 /* update the frame's size */
5001 h2_set_frame_size(outbuf.area, outbuf.data - 9);
5002
5003 /* commit the H2 response */
5004 b_add(&h2c->mbuf, outbuf.data);
5005 h2s->flags |= H2_SF_ES_SENT;
5006
5007 if (h2s->st == H2_SS_OPEN)
5008 h2s->st = H2_SS_HLOC;
5009 else
5010 h2s_close(h2s);
5011
5012 /* OK we could properly deliver the response */
5013 done:
5014 /* remove all header blocks including EOM and compute the corresponding size. */
5015 ret = 0;
5016 idx = htx_get_head(htx);
5017 blk = htx_get_blk(htx, idx);
5018 while (blk != blk_end) {
5019 ret += htx_get_blksz(blk);
5020 blk = htx_remove_blk(htx, blk);
5021 }
5022 blk = htx_remove_blk(htx, blk);
5023 end:
5024 return ret;
5025 full:
5026 h2c->flags |= H2_CF_MUX_MFULL;
5027 h2s->flags |= H2_SF_BLK_MROOM;
5028 ret = 0;
5029 goto end;
5030 fail:
5031 /* unparsable HTX messages, too large ones to be produced in the local
5032 * list etc go here (unrecoverable errors).
5033 */
5034 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
5035 ret = 0;
5036 goto end;
5037}
5038
Olivier Houchard6ff20392018-07-17 18:46:31 +02005039/* Called from the upper layer, to subscribe to events, such as being able to send */
5040static int h2_subscribe(struct conn_stream *cs, int event_type, void *param)
5041{
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005042 struct wait_event *sw;
Olivier Houchard6ff20392018-07-17 18:46:31 +02005043 struct h2s *h2s = cs->ctx;
Olivier Houchard4cf7fb12018-08-02 19:23:05 +02005044 struct h2c *h2c = h2s->h2c;
Olivier Houchard6ff20392018-07-17 18:46:31 +02005045
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005046 if (event_type & SUB_RETRY_RECV) {
Olivier Houchard4cf7fb12018-08-02 19:23:05 +02005047 sw = param;
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005048 if (!(sw->events & SUB_RETRY_RECV)) {
5049 sw->events |= SUB_RETRY_RECV;
Olivier Houchard8ae735d2018-09-11 18:24:28 +02005050 sw->handle = h2s;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005051 h2s->recv_wait = sw;
Olivier Houchard4cf7fb12018-08-02 19:23:05 +02005052 }
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005053 event_type &= ~SUB_RETRY_RECV;
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005054 }
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005055 if (event_type & SUB_RETRY_SEND) {
Olivier Houchard6ff20392018-07-17 18:46:31 +02005056 sw = param;
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005057 if (!(sw->events & SUB_RETRY_SEND)) {
5058 sw->events |= SUB_RETRY_SEND;
Olivier Houchard8ae735d2018-09-11 18:24:28 +02005059 sw->handle = h2s;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005060 h2s->send_wait = sw;
5061 if (!(h2s->flags & H2_SF_BLK_SFCTL)) {
5062 if (h2s->flags & H2_SF_BLK_MFCTL)
5063 LIST_ADDQ(&h2c->fctl_list, &h2s->list);
5064 else
5065 LIST_ADDQ(&h2c->send_list, &h2s->list);
5066 }
Olivier Houcharde1c6dbc2018-08-01 17:06:43 +02005067 }
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005068 event_type &= ~SUB_RETRY_SEND;
Olivier Houchard6ff20392018-07-17 18:46:31 +02005069 }
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005070 if (event_type != 0)
5071 return -1;
5072 return 0;
Olivier Houchard6ff20392018-07-17 18:46:31 +02005073
5074
5075}
5076
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005077static int h2_unsubscribe(struct conn_stream *cs, int event_type, void *param)
5078{
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005079 struct wait_event *sw;
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005080 struct h2s *h2s = cs->ctx;
5081
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005082 if (event_type & SUB_RETRY_RECV) {
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005083 sw = param;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005084 if (h2s->recv_wait == sw) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005085 sw->events &= ~SUB_RETRY_RECV;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005086 h2s->recv_wait = NULL;
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005087 }
5088 }
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005089 if (event_type & SUB_RETRY_SEND) {
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005090 sw = param;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005091 if (h2s->send_wait == sw) {
5092 LIST_DEL(&h2s->list);
5093 LIST_INIT(&h2s->list);
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005094 sw->events &= ~SUB_RETRY_SEND;
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005095 h2s->send_wait = NULL;
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005096 }
5097 }
Olivier Houchardd846c262018-10-19 17:24:29 +02005098 if (event_type & SUB_CALL_UNSUBSCRIBE) {
5099 sw = param;
5100 if (h2s->send_wait == sw) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005101 sw->events &= ~SUB_CALL_UNSUBSCRIBE;
Olivier Houchardd846c262018-10-19 17:24:29 +02005102 h2s->send_wait = NULL;
Olivier Houchardf29cd5c2018-12-20 11:56:28 +01005103 LIST_DEL(&h2s->list);
5104 LIST_INIT(&h2s->list);
Olivier Houchardd846c262018-10-19 17:24:29 +02005105 }
5106 }
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005107 return 0;
5108}
5109
5110
Olivier Houchard511efea2018-08-16 15:30:32 +02005111/* Called from the upper layer, to receive data */
5112static size_t h2_rcv_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
5113{
Olivier Houchard638b7992018-08-16 15:41:52 +02005114 struct h2s *h2s = cs->ctx;
Willy Tarreau082f5592018-11-25 08:03:32 +01005115 struct h2c *h2c = h2s->h2c;
Willy Tarreau86724e22018-12-01 23:19:43 +01005116 struct htx *h2s_htx = NULL;
5117 struct htx *buf_htx = NULL;
5118 struct htx_ret htx_ret;
Olivier Houchard511efea2018-08-16 15:30:32 +02005119 size_t ret = 0;
5120
5121 /* transfer possibly pending data to the upper layer */
Willy Tarreau86724e22018-12-01 23:19:43 +01005122 if (h2c->proxy->options2 & PR_O2_USE_HTX) {
5123 /* in HTX mode we ignore the count argument */
5124 h2s_htx = htx_from_buf(&h2s->rxbuf);
Olivier Houchard56b03482018-12-10 16:09:53 +01005125 if (htx_is_empty(h2s_htx)) {
5126 if (cs->flags & CS_FL_REOS)
5127 cs->flags |= CS_FL_EOS;
Olivier Houchard71748cb2018-12-17 14:16:46 +01005128 if (cs->flags & CS_FL_ERR_PENDING)
5129 cs->flags |= CS_FL_ERROR;
Willy Tarreau86724e22018-12-01 23:19:43 +01005130 goto end;
Olivier Houchard56b03482018-12-10 16:09:53 +01005131 }
Willy Tarreau86724e22018-12-01 23:19:43 +01005132
5133 buf_htx = htx_from_buf(buf);
Christopher Fauleta413e952019-01-21 11:49:37 +01005134 count = htx_free_data_space(buf_htx);
5135 if (flags & CO_RFL_KEEP_RSV) {
5136 if (count <= global.tune.maxrewrite)
5137 goto end;
5138 count -= global.tune.maxrewrite;
5139 }
Willy Tarreau86724e22018-12-01 23:19:43 +01005140
Willy Tarreau0c22fa72018-12-04 15:21:35 +01005141 htx_ret = htx_xfer_blks(buf_htx, h2s_htx, count, HTX_BLK_EOM);
Willy Tarreau86724e22018-12-01 23:19:43 +01005142
5143 buf_htx->extra = h2s_htx->extra;
Christopher Faulet27ba2dc2018-12-05 11:53:24 +01005144 htx_to_buf(buf_htx, buf);
5145 htx_to_buf(h2s_htx, &h2s->rxbuf);
Willy Tarreau86724e22018-12-01 23:19:43 +01005146 ret = htx_ret.ret;
5147 }
5148 else {
5149 ret = b_xfer(buf, &h2s->rxbuf, count);
5150 }
Olivier Houchard511efea2018-08-16 15:30:32 +02005151
Olivier Houchard638b7992018-08-16 15:41:52 +02005152 if (b_data(&h2s->rxbuf))
Olivier Houchardd247be02018-12-06 16:22:29 +01005153 cs->flags |= (CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
Olivier Houchard511efea2018-08-16 15:30:32 +02005154 else {
Olivier Houchardd247be02018-12-06 16:22:29 +01005155 cs->flags &= ~(CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
Olivier Houchard511efea2018-08-16 15:30:32 +02005156 if (cs->flags & CS_FL_REOS)
5157 cs->flags |= CS_FL_EOS;
Olivier Houchard71748cb2018-12-17 14:16:46 +01005158 if (cs->flags & CS_FL_ERR_PENDING)
5159 cs->flags |= CS_FL_ERROR;
Olivier Houchard638b7992018-08-16 15:41:52 +02005160 if (b_size(&h2s->rxbuf)) {
5161 b_free(&h2s->rxbuf);
5162 offer_buffers(NULL, tasks_run_queue);
5163 }
Olivier Houchard511efea2018-08-16 15:30:32 +02005164 }
5165
Willy Tarreau082f5592018-11-25 08:03:32 +01005166 if (ret && h2c->dsi == h2s->id) {
5167 /* demux is blocking on this stream's buffer */
5168 h2c->flags &= ~H2_CF_DEM_SFULL;
Willy Tarreau872e2fa2019-01-03 08:27:41 +01005169 h2c_restart_reading(h2c);
Willy Tarreau082f5592018-11-25 08:03:32 +01005170 }
Willy Tarreau86724e22018-12-01 23:19:43 +01005171end:
Olivier Houchard511efea2018-08-16 15:30:32 +02005172 return ret;
5173}
5174
Olivier Houchardd846c262018-10-19 17:24:29 +02005175static void h2_stop_senders(struct h2c *h2c)
5176{
5177 struct h2s *h2s, *h2s_back;
5178
5179 list_for_each_entry_safe(h2s, h2s_back, &h2c->sending_list, list) {
5180 /* Don't unschedule the stream if the mux is just busy waiting for more data fro mthat stream */
5181 if (h2c->msi == h2s_id(h2s))
5182 continue;
5183 LIST_DEL(&h2s->list);
5184 LIST_INIT(&h2s->list);
5185 task_remove_from_task_list((struct task *)h2s->send_wait->task);
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005186 h2s->send_wait->events |= SUB_RETRY_SEND;
5187 h2s->send_wait->events &= ~SUB_CALL_UNSUBSCRIBE;
Olivier Houchardd846c262018-10-19 17:24:29 +02005188 LIST_ADD(&h2c->send_list, &h2s->list);
5189 }
5190}
5191
Willy Tarreau62f52692017-10-08 23:01:42 +02005192/* Called from the upper layer, to send data */
Christopher Fauletd44a9b32018-07-27 11:59:41 +02005193static size_t h2_snd_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
Willy Tarreau62f52692017-10-08 23:01:42 +02005194{
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005195 struct h2s *h2s = cs->ctx;
Olivier Houchard8122a8d2018-12-03 19:13:29 +01005196 size_t orig_count = count;
Willy Tarreau1dc41e72018-06-14 13:21:28 +02005197 size_t total = 0;
Willy Tarreau5dd17352018-06-14 13:33:30 +02005198 size_t ret;
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005199 struct htx *htx;
5200 struct htx_blk *blk;
5201 enum htx_blk_type btype;
5202 uint32_t bsize;
5203 int32_t idx;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005204
Olivier Houchardd846c262018-10-19 17:24:29 +02005205 if (h2s->send_wait) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005206 h2s->send_wait->events &= ~SUB_CALL_UNSUBSCRIBE;
Olivier Houchardd846c262018-10-19 17:24:29 +02005207 h2s->send_wait = NULL;
5208 LIST_DEL(&h2s->list);
5209 LIST_INIT(&h2s->list);
5210 }
Willy Tarreau6bf641a2018-10-08 09:43:03 +02005211 if (h2s->h2c->st0 < H2_CS_FRAME_H)
5212 return 0;
5213
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005214 /* htx will be enough to decide if we're using HTX or legacy */
5215 htx = (h2s->h2c->proxy->options2 & PR_O2_USE_HTX) ? htx_from_buf(buf) : NULL;
5216
Willy Tarreau0bad0432018-06-14 16:54:01 +02005217 if (!(h2s->flags & H2_SF_OUTGOING_DATA) && count)
Willy Tarreauc4312d32017-11-07 12:01:53 +01005218 h2s->flags |= H2_SF_OUTGOING_DATA;
5219
Willy Tarreau751f2d02018-10-05 09:35:00 +02005220 if (h2s->id == 0) {
5221 int32_t id = h2c_get_next_sid(h2s->h2c);
5222
5223 if (id < 0) {
Willy Tarreau751f2d02018-10-05 09:35:00 +02005224 cs->flags |= CS_FL_ERROR;
Willy Tarreau751f2d02018-10-05 09:35:00 +02005225 return 0;
5226 }
5227
5228 eb32_delete(&h2s->by_id);
5229 h2s->by_id.key = h2s->id = id;
5230 h2s->h2c->max_id = id;
Willy Tarreaud64a3eb2019-01-23 10:22:21 +01005231 h2s->h2c->nb_reserved--;
Willy Tarreau751f2d02018-10-05 09:35:00 +02005232 eb32_insert(&h2s->h2c->streams_by_id, &h2s->by_id);
5233 }
5234
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005235 if (htx) {
Willy Tarreauc14999b2018-12-06 14:09:09 +01005236 while (h2s->st < H2_SS_ERROR && !(h2s->flags & H2_SF_BLK_ANY) &&
5237 count && !htx_is_empty(htx)) {
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005238 idx = htx_get_head(htx);
5239 blk = htx_get_blk(htx, idx);
5240 btype = htx_get_blk_type(blk);
5241 bsize = htx_get_blksz(blk);
5242
5243 switch (btype) {
Willy Tarreau80739692018-10-05 11:35:57 +02005244 case HTX_BLK_REQ_SL:
5245 /* start-line before headers */
5246 ret = h2s_htx_bck_make_req_headers(h2s, htx);
5247 if (ret > 0) {
5248 total += ret;
5249 count -= ret;
5250 if (ret < bsize)
5251 goto done;
5252 }
5253 break;
5254
Willy Tarreau115e83b2018-12-01 19:17:53 +01005255 case HTX_BLK_RES_SL:
5256 /* start-line before headers */
5257 ret = h2s_htx_frt_make_resp_headers(h2s, htx);
5258 if (ret > 0) {
5259 total += ret;
5260 count -= ret;
5261 if (ret < bsize)
5262 goto done;
5263 }
5264 break;
5265
Willy Tarreau0c535fd2018-12-01 19:25:56 +01005266 case HTX_BLK_DATA:
5267 case HTX_BLK_EOD:
5268 case HTX_BLK_EOM:
Willy Tarreau1bb812f2019-01-04 10:56:26 +01005269 /* all these cause the emission of a DATA frame (possibly empty).
5270 * This EOM necessarily is one before trailers, as the EOM following
5271 * trailers would have been consumed by the trailers parser.
5272 */
Willy Tarreau98de12a2018-12-12 07:03:00 +01005273 ret = h2s_htx_frt_make_resp_data(h2s, buf, count);
Willy Tarreau0c535fd2018-12-01 19:25:56 +01005274 if (ret > 0) {
Willy Tarreau98de12a2018-12-12 07:03:00 +01005275 htx = htx_from_buf(buf);
Willy Tarreau0c535fd2018-12-01 19:25:56 +01005276 total += ret;
5277 count -= ret;
5278 if (ret < bsize)
5279 goto done;
5280 }
5281 break;
5282
Willy Tarreau1bb812f2019-01-04 10:56:26 +01005283 case HTX_BLK_TLR:
5284 /* This is the first trailers block, all the subsequent ones AND
5285 * the EOM will be swallowed by the parser.
5286 */
5287 ret = h2s_htx_make_trailers(h2s, htx);
5288 if (ret > 0) {
5289 total += ret;
5290 count -= ret;
5291 if (ret < bsize)
5292 goto done;
5293 }
5294 break;
5295
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005296 default:
5297 htx_remove_blk(htx, blk);
5298 total += bsize;
5299 count -= bsize;
5300 break;
5301 }
5302 }
5303 goto done;
5304 }
5305
5306 /* legacy transfer mode */
Willy Tarreaua40704a2018-09-11 13:52:04 +02005307 while (h2s->h1m.state < H1_MSG_DONE && count) {
Willy Tarreau001823c2018-09-12 17:25:32 +02005308 if (h2s->h1m.state <= H1_MSG_LAST_LF) {
Willy Tarreau80739692018-10-05 11:35:57 +02005309 if (h2s->h2c->flags & H2_CF_IS_BACK)
5310 ret = -1;
5311 else
5312 ret = h2s_frt_make_resp_headers(h2s, buf, total, count);
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005313 }
Willy Tarreaua40704a2018-09-11 13:52:04 +02005314 else if (h2s->h1m.state < H1_MSG_TRAILERS) {
Willy Tarreau0bad0432018-06-14 16:54:01 +02005315 ret = h2s_frt_make_resp_data(h2s, buf, total, count);
Willy Tarreau9d89ac82017-10-31 17:15:59 +01005316 }
Willy Tarreaua40704a2018-09-11 13:52:04 +02005317 else if (h2s->h1m.state == H1_MSG_TRAILERS) {
Willy Tarreau9d89ac82017-10-31 17:15:59 +01005318 /* consume the trailers if any (we don't forward them for now) */
Willy Tarreau0bad0432018-06-14 16:54:01 +02005319 ret = h1_measure_trailers(buf, total, count);
Willy Tarreau9d89ac82017-10-31 17:15:59 +01005320
Willy Tarreau5dd17352018-06-14 13:33:30 +02005321 if (unlikely((int)ret <= 0)) {
5322 if ((int)ret < 0)
Willy Tarreau9d89ac82017-10-31 17:15:59 +01005323 h2s_error(h2s, H2_ERR_INTERNAL_ERROR);
5324 break;
5325 }
Willy Tarreau35a62702018-02-27 15:37:25 +01005326 // trim any possibly pending data (eg: extra CR-LF, ...)
Willy Tarreau0bad0432018-06-14 16:54:01 +02005327 total += count;
5328 count = 0;
Willy Tarreaua40704a2018-09-11 13:52:04 +02005329 h2s->h1m.state = H1_MSG_DONE;
Willy Tarreau9d89ac82017-10-31 17:15:59 +01005330 break;
Willy Tarreauc652dbd2017-10-19 11:16:37 +02005331 }
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005332 else {
Willy Tarreauec988c72018-12-19 18:00:29 +01005333 cs_set_error(cs);
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005334 break;
5335 }
Willy Tarreau0bad0432018-06-14 16:54:01 +02005336
5337 total += ret;
5338 count -= ret;
5339
5340 if (h2s->st >= H2_SS_ERROR)
5341 break;
5342
5343 if (h2s->flags & H2_SF_BLK_ANY)
5344 break;
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005345 }
5346
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005347 done:
Willy Tarreau00610962018-07-19 10:58:28 +02005348 if (h2s->st >= H2_SS_ERROR) {
5349 /* trim any possibly pending data after we close (extra CR-LF,
5350 * unprocessed trailers, abnormal extra data, ...)
5351 */
Willy Tarreau0bad0432018-06-14 16:54:01 +02005352 total += count;
5353 count = 0;
Willy Tarreau00610962018-07-19 10:58:28 +02005354 }
5355
Willy Tarreauc6795ca2017-11-07 09:43:06 +01005356 /* RST are sent similarly to frame acks */
Willy Tarreau02492192017-12-07 15:59:29 +01005357 if (h2s->st == H2_SS_ERROR || h2s->flags & H2_SF_RST_RCVD) {
Willy Tarreauec988c72018-12-19 18:00:29 +01005358 cs_set_error(cs);
Willy Tarreau8c0ea7d2017-11-10 10:05:24 +01005359 if (h2s_send_rst_stream(h2s->h2c, h2s) > 0)
Willy Tarreau00dd0782018-03-01 16:31:34 +01005360 h2s_close(h2s);
Willy Tarreauc6795ca2017-11-07 09:43:06 +01005361 }
5362
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005363 if (htx) {
Christopher Faulet27ba2dc2018-12-05 11:53:24 +01005364 htx_to_buf(htx, buf);
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005365 } else {
5366 b_del(buf, total);
5367 }
Olivier Houchardd846c262018-10-19 17:24:29 +02005368
5369 /* The mux is full, cancel the pending tasks */
5370 if ((h2s->h2c->flags & H2_CF_MUX_BLOCK_ANY) ||
5371 (h2s->flags & H2_SF_BLK_MBUSY))
5372 h2_stop_senders(h2s->h2c);
Willy Tarreaubcd3bb32018-12-01 18:59:00 +01005373
Olivier Houchard8122a8d2018-12-03 19:13:29 +01005374 /* If we're running HTX, and we read the whole buffer, then pretend
5375 * we read exactly what the caller specified, as with HTX the caller
5376 * will always give the buffer size, instead of the amount of data
5377 * available.
5378 */
5379 if (htx && !b_data(buf))
5380 total = orig_count;
5381
Olivier Houchard7505f942018-08-21 18:10:44 +02005382 if (total > 0) {
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005383 if (!(h2s->h2c->wait_event.events & SUB_RETRY_SEND))
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005384 tasklet_wakeup(h2s->h2c->wait_event.task);
Olivier Houchardd846c262018-10-19 17:24:29 +02005385
Olivier Houchard7505f942018-08-21 18:10:44 +02005386 }
Olivier Houchard6dea2ee2018-12-19 18:16:17 +01005387 /* If we're waiting for flow control, and we got a shutr on the
5388 * connection, we will never be unlocked, so add an error on
5389 * the conn_stream.
5390 */
5391 if (conn_xprt_read0_pending(h2s->h2c->conn) &&
5392 !b_data(&h2s->h2c->dbuf) &&
5393 (h2s->flags & (H2_SF_BLK_SFCTL | H2_SF_BLK_MFCTL))) {
5394 if (cs->flags & CS_FL_EOS)
5395 cs->flags |= CS_FL_ERROR;
5396 else
5397 cs->flags |= CS_FL_ERR_PENDING;
5398 }
Willy Tarreau9e5ae1d2017-10-17 19:58:20 +02005399 return total;
Willy Tarreau62f52692017-10-08 23:01:42 +02005400}
5401
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005402/* for debugging with CLI's "show fd" command */
Willy Tarreau83061a82018-07-13 11:56:34 +02005403static void h2_show_fd(struct buffer *msg, struct connection *conn)
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005404{
Willy Tarreau3d2ee552018-12-19 14:12:10 +01005405 struct h2c *h2c = conn->ctx;
Willy Tarreau987c0632018-12-18 10:32:05 +01005406 struct h2s *h2s = NULL;
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005407 struct eb32_node *node;
5408 int fctl_cnt = 0;
5409 int send_cnt = 0;
5410 int tree_cnt = 0;
5411 int orph_cnt = 0;
5412
5413 if (!h2c)
5414 return;
5415
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005416 list_for_each_entry(h2s, &h2c->fctl_list, list)
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005417 fctl_cnt++;
5418
Olivier Houchardfa8aa862018-10-10 18:25:41 +02005419 list_for_each_entry(h2s, &h2c->send_list, list)
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005420 send_cnt++;
5421
Willy Tarreau3af37712018-12-18 14:34:41 +01005422 h2s = NULL;
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005423 node = eb32_first(&h2c->streams_by_id);
5424 while (node) {
5425 h2s = container_of(node, struct h2s, by_id);
5426 tree_cnt++;
5427 if (!h2s->cs)
5428 orph_cnt++;
5429 node = eb32_next(node);
5430 }
5431
Willy Tarreau987c0632018-12-18 10:32:05 +01005432 chunk_appendf(msg, " h2c.st0=%d .err=%d .maxid=%d .lastid=%d .flg=0x%04x"
5433 " .nbst=%u .nbcs=%u .fctl_cnt=%d .send_cnt=%d .tree_cnt=%d"
5434 " .orph_cnt=%d .sub=%d .dsi=%d .dbuf=%u@%p+%u/%u .msi=%d .mbuf=%u@%p+%u/%u",
Willy Tarreau616ac812018-07-24 14:12:42 +02005435 h2c->st0, h2c->errcode, h2c->max_id, h2c->last_sid, h2c->flags,
5436 h2c->nb_streams, h2c->nb_cs, fctl_cnt, send_cnt, tree_cnt, orph_cnt,
Willy Tarreau4f6516d2018-12-19 13:59:17 +01005437 h2c->wait_event.events, h2c->dsi,
Willy Tarreau987c0632018-12-18 10:32:05 +01005438 (unsigned int)b_data(&h2c->dbuf), b_orig(&h2c->dbuf),
5439 (unsigned int)b_head_ofs(&h2c->dbuf), (unsigned int)b_size(&h2c->dbuf),
5440 h2c->msi,
5441 (unsigned int)b_data(&h2c->mbuf), b_orig(&h2c->mbuf),
5442 (unsigned int)b_head_ofs(&h2c->mbuf), (unsigned int)b_size(&h2c->mbuf));
5443
5444 if (h2s) {
5445 chunk_appendf(msg, " last_h2s=%p .id=%d .flg=0x%04x .rxbuf=%u@%p+%u/%u .cs=%p",
5446 h2s, h2s->id, h2s->flags,
5447 (unsigned int)b_data(&h2s->rxbuf), b_orig(&h2s->rxbuf),
5448 (unsigned int)b_head_ofs(&h2s->rxbuf), (unsigned int)b_size(&h2s->rxbuf),
5449 h2s->cs);
5450 if (h2s->cs)
5451 chunk_appendf(msg, " .cs.flg=0x%08x .cs.data=%p",
5452 h2s->cs->flags, h2s->cs->data);
5453 }
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005454}
Willy Tarreau62f52692017-10-08 23:01:42 +02005455
5456/*******************************************************/
5457/* functions below are dedicated to the config parsers */
5458/*******************************************************/
5459
Willy Tarreaufe20e5b2017-07-27 11:42:14 +02005460/* config parser for global "tune.h2.header-table-size" */
5461static int h2_parse_header_table_size(char **args, int section_type, struct proxy *curpx,
5462 struct proxy *defpx, const char *file, int line,
5463 char **err)
5464{
5465 if (too_many_args(1, args, err, NULL))
5466 return -1;
5467
5468 h2_settings_header_table_size = atoi(args[1]);
5469 if (h2_settings_header_table_size < 4096 || h2_settings_header_table_size > 65536) {
5470 memprintf(err, "'%s' expects a numeric value between 4096 and 65536.", args[0]);
5471 return -1;
5472 }
5473 return 0;
5474}
Willy Tarreau62f52692017-10-08 23:01:42 +02005475
Willy Tarreaue6baec02017-07-27 11:45:11 +02005476/* config parser for global "tune.h2.initial-window-size" */
5477static int h2_parse_initial_window_size(char **args, int section_type, struct proxy *curpx,
5478 struct proxy *defpx, const char *file, int line,
5479 char **err)
5480{
5481 if (too_many_args(1, args, err, NULL))
5482 return -1;
5483
5484 h2_settings_initial_window_size = atoi(args[1]);
5485 if (h2_settings_initial_window_size < 0) {
5486 memprintf(err, "'%s' expects a positive numeric value.", args[0]);
5487 return -1;
5488 }
5489 return 0;
5490}
5491
Willy Tarreau5242ef82017-07-27 11:47:28 +02005492/* config parser for global "tune.h2.max-concurrent-streams" */
5493static int h2_parse_max_concurrent_streams(char **args, int section_type, struct proxy *curpx,
5494 struct proxy *defpx, const char *file, int line,
5495 char **err)
5496{
5497 if (too_many_args(1, args, err, NULL))
5498 return -1;
5499
5500 h2_settings_max_concurrent_streams = atoi(args[1]);
5501 if (h2_settings_max_concurrent_streams < 0) {
5502 memprintf(err, "'%s' expects a positive numeric value.", args[0]);
5503 return -1;
5504 }
5505 return 0;
5506}
5507
Willy Tarreau62f52692017-10-08 23:01:42 +02005508
5509/****************************************/
5510/* MUX initialization and instanciation */
5511/***************************************/
5512
5513/* The mux operations */
Willy Tarreau680b2bd2018-11-27 07:30:17 +01005514static const struct mux_ops h2_ops = {
Willy Tarreau62f52692017-10-08 23:01:42 +02005515 .init = h2_init,
Olivier Houchard21df6cc2018-09-14 23:21:44 +02005516 .wake = h2_wake,
Willy Tarreau62f52692017-10-08 23:01:42 +02005517 .snd_buf = h2_snd_buf,
Olivier Houchard511efea2018-08-16 15:30:32 +02005518 .rcv_buf = h2_rcv_buf,
Olivier Houchard6ff20392018-07-17 18:46:31 +02005519 .subscribe = h2_subscribe,
Olivier Houchard83a0cd82018-09-28 17:57:58 +02005520 .unsubscribe = h2_unsubscribe,
Willy Tarreau62f52692017-10-08 23:01:42 +02005521 .attach = h2_attach,
Willy Tarreaufafd3982018-11-18 21:29:20 +01005522 .get_first_cs = h2_get_first_cs,
Willy Tarreau62f52692017-10-08 23:01:42 +02005523 .detach = h2_detach,
Olivier Houchard060ed432018-11-06 16:32:42 +01005524 .destroy = h2_destroy,
Olivier Houchardd540b362018-11-05 18:37:53 +01005525 .avail_streams = h2_avail_streams,
Olivier Houchard8defe4b2018-12-02 01:31:17 +01005526 .max_streams = h2_max_streams,
Willy Tarreau62f52692017-10-08 23:01:42 +02005527 .shutr = h2_shutr,
5528 .shutw = h2_shutw,
Willy Tarreaue3f36cd2018-03-30 14:43:13 +02005529 .show_fd = h2_show_fd,
Willy Tarreau28f1cb92017-12-20 16:14:44 +01005530 .flags = MX_FL_CLEAN_ABRT,
Willy Tarreau62f52692017-10-08 23:01:42 +02005531 .name = "H2",
5532};
5533
Christopher Faulet32f61c02018-04-10 14:33:41 +02005534/* PROTO selection : this mux registers PROTO token "h2" */
5535static struct mux_proto_list mux_proto_h2 =
Willy Tarreauf8957272018-10-03 10:25:20 +02005536 { .token = IST("h2"), .mode = PROTO_MODE_HTTP, .side = PROTO_SIDE_FE, .mux = &h2_ops };
Willy Tarreau62f52692017-10-08 23:01:42 +02005537
Willy Tarreau0108d902018-11-25 19:14:37 +01005538INITCALL1(STG_REGISTER, register_mux_proto, &mux_proto_h2);
5539
Willy Tarreauf8957272018-10-03 10:25:20 +02005540static struct mux_proto_list mux_proto_h2_htx =
5541 { .token = IST("h2"), .mode = PROTO_MODE_HTX, .side = PROTO_SIDE_BOTH, .mux = &h2_ops };
5542
5543INITCALL1(STG_REGISTER, register_mux_proto, &mux_proto_h2_htx);
5544
Willy Tarreau62f52692017-10-08 23:01:42 +02005545/* config keyword parsers */
5546static struct cfg_kw_list cfg_kws = {ILH, {
Willy Tarreaufe20e5b2017-07-27 11:42:14 +02005547 { CFG_GLOBAL, "tune.h2.header-table-size", h2_parse_header_table_size },
Willy Tarreaue6baec02017-07-27 11:45:11 +02005548 { CFG_GLOBAL, "tune.h2.initial-window-size", h2_parse_initial_window_size },
Willy Tarreau5242ef82017-07-27 11:47:28 +02005549 { CFG_GLOBAL, "tune.h2.max-concurrent-streams", h2_parse_max_concurrent_streams },
Willy Tarreau62f52692017-10-08 23:01:42 +02005550 { 0, NULL, NULL }
5551}};
5552
Willy Tarreau0108d902018-11-25 19:14:37 +01005553INITCALL1(STG_REGISTER, cfg_register_keywords, &cfg_kws);