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Christopher Faulet4f0f88a2019-08-10 11:17:44 +02001/*
2 * Functions to manipulate H1 messages using the internal representation.
3 *
4 * Copyright (C) 2019 HAProxy Technologies, Christopher Faulet <cfaulet@haproxy.com>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12
Willy Tarreau4c7e4b72020-05-27 12:58:42 +020013#include <haproxy/api.h>
Willy Tarreau6be78492020-06-05 00:00:29 +020014#include <haproxy/cfgparse.h>
Willy Tarreaudfd3de82020-06-04 23:46:14 +020015#include <haproxy/global.h>
Willy Tarreau5413a872020-06-02 19:33:08 +020016#include <haproxy/h1.h>
Willy Tarreauc6fe8842020-06-04 09:00:02 +020017#include <haproxy/h1_htx.h>
Willy Tarreaucd72d8c2020-06-02 19:11:26 +020018#include <haproxy/http.h>
Amaury Denoyelle852d78c2021-07-07 10:49:27 +020019#include <haproxy/http_htx.h>
Willy Tarreau16f958c2020-06-03 08:44:35 +020020#include <haproxy/htx.h>
Willy Tarreau36979d92020-06-05 17:27:29 +020021#include <haproxy/tools.h>
Christopher Faulet4f0f88a2019-08-10 11:17:44 +020022
Christopher Faulet4f0f88a2019-08-10 11:17:44 +020023/* Estimate the size of the HTX headers after the parsing, including the EOH. */
24static size_t h1_eval_htx_hdrs_size(const struct http_hdr *hdrs)
25{
26 size_t sz = 0;
27 int i;
28
29 for (i = 0; hdrs[i].n.len; i++)
30 sz += sizeof(struct htx_blk) + hdrs[i].n.len + hdrs[i].v.len;
31 sz += sizeof(struct htx_blk) + 1;
32 return sz;
33}
34
35/* Estimate the size of the HTX request after the parsing. */
36static size_t h1_eval_htx_size(const struct ist p1, const struct ist p2, const struct ist p3,
37 const struct http_hdr *hdrs)
38{
39 size_t sz;
40
41 /* size of the HTX start-line */
42 sz = sizeof(struct htx_blk) + sizeof(struct htx_sl) + p1.len + p2.len + p3.len;
43 sz += h1_eval_htx_hdrs_size(hdrs);
44 return sz;
45}
46
Christopher Faulet4f0f88a2019-08-10 11:17:44 +020047/* Check the validity of the request version. If the version is valid, it
48 * returns 1. Otherwise, it returns 0.
49 */
50static int h1_process_req_vsn(struct h1m *h1m, union h1_sl *sl)
51{
52 /* RFC7230#2.6 has enforced the format of the HTTP version string to be
53 * exactly one digit "." one digit. This check may be disabled using
54 * option accept-invalid-http-request.
55 */
56 if (h1m->err_pos == -2) { /* PR_O2_REQBUG_OK not set */
57 if (sl->rq.v.len != 8)
58 return 0;
59
Tim Duesterhus8f4116e2020-03-10 00:55:40 +010060 if (!istnmatch(sl->rq.v, ist("HTTP/"), 5) ||
Christopher Faulet4f0f88a2019-08-10 11:17:44 +020061 !isdigit((unsigned char)*(sl->rq.v.ptr + 5)) ||
62 *(sl->rq.v.ptr + 6) != '.' ||
63 !isdigit((unsigned char)*(sl->rq.v.ptr + 7)))
64 return 0;
65 }
66 else if (!sl->rq.v.len) {
67 /* try to convert HTTP/0.9 requests to HTTP/1.0 */
68
69 /* RFC 1945 allows only GET for HTTP/0.9 requests */
70 if (sl->rq.meth != HTTP_METH_GET)
71 return 0;
72
73 /* HTTP/0.9 requests *must* have a request URI, per RFC 1945 */
74 if (!sl->rq.u.len)
75 return 0;
76
77 /* Add HTTP version */
78 sl->rq.v = ist("HTTP/1.0");
79 return 1;
80 }
81
82 if ((sl->rq.v.len == 8) &&
83 ((*(sl->rq.v.ptr + 5) > '1') ||
84 ((*(sl->rq.v.ptr + 5) == '1') && (*(sl->rq.v.ptr + 7) >= '1'))))
85 h1m->flags |= H1_MF_VER_11;
86 return 1;
87}
88
89/* Check the validity of the response version. If the version is valid, it
90 * returns 1. Otherwise, it returns 0.
91 */
92static int h1_process_res_vsn(struct h1m *h1m, union h1_sl *sl)
93{
94 /* RFC7230#2.6 has enforced the format of the HTTP version string to be
95 * exactly one digit "." one digit. This check may be disabled using
96 * option accept-invalid-http-request.
97 */
98 if (h1m->err_pos == -2) { /* PR_O2_REQBUG_OK not set */
99 if (sl->st.v.len != 8)
100 return 0;
101
102 if (*(sl->st.v.ptr + 4) != '/' ||
103 !isdigit((unsigned char)*(sl->st.v.ptr + 5)) ||
104 *(sl->st.v.ptr + 6) != '.' ||
105 !isdigit((unsigned char)*(sl->st.v.ptr + 7)))
106 return 0;
107 }
108
109 if ((sl->st.v.len == 8) &&
110 ((*(sl->st.v.ptr + 5) > '1') ||
111 ((*(sl->st.v.ptr + 5) == '1') && (*(sl->st.v.ptr + 7) >= '1'))))
112 h1m->flags |= H1_MF_VER_11;
113
114 return 1;
115}
116
117/* Convert H1M flags to HTX start-line flags. */
118static unsigned int h1m_htx_sl_flags(struct h1m *h1m)
119{
120 unsigned int flags = HTX_SL_F_NONE;
121
122 if (h1m->flags & H1_MF_RESP)
123 flags |= HTX_SL_F_IS_RESP;
124 if (h1m->flags & H1_MF_VER_11)
125 flags |= HTX_SL_F_VER_11;
126 if (h1m->flags & H1_MF_XFER_ENC)
127 flags |= HTX_SL_F_XFER_ENC;
128 if (h1m->flags & H1_MF_XFER_LEN) {
129 flags |= HTX_SL_F_XFER_LEN;
130 if (h1m->flags & H1_MF_CHNK)
131 flags |= HTX_SL_F_CHNK;
132 else if (h1m->flags & H1_MF_CLEN) {
133 flags |= HTX_SL_F_CLEN;
134 if (h1m->body_len == 0)
135 flags |= HTX_SL_F_BODYLESS;
136 }
137 else
138 flags |= HTX_SL_F_BODYLESS;
139 }
Christopher Faulet576c3582021-01-08 15:53:01 +0100140 if (h1m->flags & H1_MF_CONN_UPG)
141 flags |= HTX_SL_F_CONN_UPG;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200142 return flags;
143}
144
145/* Postprocess the parsed headers for a request and convert them into an htx
146 * message. It returns the number of bytes parsed if > 0, or 0 if it couldn't
147 * proceed. Parsing errors are reported by setting the htx flag
148 * HTX_FL_PARSING_ERROR and filling h1m->err_pos and h1m->err_state fields.
149 */
150static int h1_postparse_req_hdrs(struct h1m *h1m, union h1_sl *h1sl, struct htx *htx,
151 struct http_hdr *hdrs, size_t max)
152{
153 struct htx_sl *sl;
154 struct ist meth, uri, vsn;
155 unsigned int flags;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200156
157 /* <h1sl> is always defined for a request */
158 meth = h1sl->rq.m;
159 uri = h1sl->rq.u;
160 vsn = h1sl->rq.v;
161
162 /* Be sure the message, once converted into HTX, will not exceed the max
163 * size allowed.
164 */
165 if (h1_eval_htx_size(meth, uri, vsn, hdrs) > max) {
166 if (htx_is_empty(htx))
167 goto error;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200168 goto output_full;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200169 }
170
171 /* By default, request have always a known length */
172 h1m->flags |= H1_MF_XFER_LEN;
173
174 if (h1sl->rq.meth == HTTP_METH_CONNECT) {
Christopher Faulet5be651d2021-01-22 15:28:03 +0100175 h1m->flags &= ~(H1_MF_CLEN|H1_MF_CHNK);
176 h1m->curr_len = h1m->body_len = 0;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200177 }
178
Christopher Faulet52a5ec22021-09-09 09:52:51 +0200179
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200180 flags = h1m_htx_sl_flags(h1m);
Christopher Faulet52a5ec22021-09-09 09:52:51 +0200181 if ((flags & (HTX_SL_F_CONN_UPG|HTX_SL_F_BODYLESS)) == HTX_SL_F_CONN_UPG) {
182 int i;
183
184 for (i = 0; hdrs[i].n.len; i++) {
185 if (isteqi(hdrs[i].n, ist("upgrade")))
186 hdrs[i].v = IST_NULL;
187 }
188 h1m->flags &=~ H1_MF_CONN_UPG;
189 flags &= ~HTX_SL_F_CONN_UPG;
190 }
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200191 sl = htx_add_stline(htx, HTX_BLK_REQ_SL, flags, meth, uri, vsn);
192 if (!sl || !htx_add_all_headers(htx, hdrs))
193 goto error;
194 sl->info.req.meth = h1sl->rq.meth;
195
Christopher Fauletfe451fb2019-10-08 15:01:34 +0200196 /* Check if the uri contains an authority. Also check if it contains an
197 * explicit scheme and if it is "http" or "https". */
198 if (h1sl->rq.meth == HTTP_METH_CONNECT)
199 sl->flags |= HTX_SL_F_HAS_AUTHORITY;
200 else if (uri.len && uri.ptr[0] != '/' && uri.ptr[0] != '*') {
201 sl->flags |= (HTX_SL_F_HAS_AUTHORITY|HTX_SL_F_HAS_SCHM);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200202 if (uri.len > 4 && (uri.ptr[0] | 0x20) == 'h')
203 sl->flags |= ((uri.ptr[4] == ':') ? HTX_SL_F_SCHM_HTTP : HTX_SL_F_SCHM_HTTPS);
Amaury Denoyelle852d78c2021-07-07 10:49:27 +0200204
205 /* absolute-form target URI present, proceed to scheme-based
206 * normalization */
207 http_scheme_based_normalize(htx);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200208 }
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200209
210 /* If body length cannot be determined, set htx->extra to
Christopher Faulet2e47e3a2023-01-13 11:40:24 +0100211 * HTX_UNKOWN_PAYLOAD_LENGTH. This value is impossible in other cases.
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200212 */
Christopher Faulet2e47e3a2023-01-13 11:40:24 +0100213 htx->extra = ((h1m->flags & H1_MF_XFER_LEN) ? h1m->curr_len : HTX_UNKOWN_PAYLOAD_LENGTH);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200214
215 end:
216 return 1;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200217 output_full:
218 h1m_init_req(h1m);
219 h1m->flags |= (H1_MF_NO_PHDR|H1_MF_CLEAN_CONN_HDR);
220 return -2;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200221 error:
222 h1m->err_pos = h1m->next;
223 h1m->err_state = h1m->state;
224 htx->flags |= HTX_FL_PARSING_ERROR;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200225 return -1;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200226}
227
228/* Postprocess the parsed headers for a response and convert them into an htx
229 * message. It returns the number of bytes parsed if > 0, or 0 if it couldn't
230 * proceed. Parsing errors are reported by setting the htx flag
231 * HTX_FL_PARSING_ERROR and filling h1m->err_pos and h1m->err_state fields.
232 */
233static int h1_postparse_res_hdrs(struct h1m *h1m, union h1_sl *h1sl, struct htx *htx,
234 struct http_hdr *hdrs, size_t max)
235{
236 struct htx_sl *sl;
237 struct ist vsn, status, reason;
238 unsigned int flags;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200239 uint16_t code = 0;
240
241 if (h1sl) {
242 /* For HTTP responses, the start-line was parsed */
243 code = h1sl->st.status;
244 vsn = h1sl->st.v;
245 status = h1sl->st.c;
246 reason = h1sl->st.r;
247 }
248 else {
249 /* For FCGI responses, there is no start(-line but the "Status"
250 * header must be parsed, if found.
251 */
252 int hdr;
253
254 vsn = ((h1m->flags & H1_MF_VER_11) ? ist("HTTP/1.1") : ist("HTTP/1.0"));
255 for (hdr = 0; hdrs[hdr].n.len; hdr++) {
256 if (isteqi(hdrs[hdr].n, ist("status"))) {
257 code = http_parse_status_val(hdrs[hdr].v, &status, &reason);
258 }
259 else if (isteqi(hdrs[hdr].n, ist("location"))) {
260 code = 302;
261 status = ist("302");
262 reason = ist("Moved Temporarily");
263 }
264 }
265 if (!code) {
266 code = 200;
267 status = ist("200");
268 reason = ist("OK");
269 }
270 /* FIXME: Check the codes 1xx ? */
271 }
272
273 /* Be sure the message, once converted into HTX, will not exceed the max
274 * size allowed.
275 */
276 if (h1_eval_htx_size(vsn, status, reason, hdrs) > max) {
277 if (htx_is_empty(htx))
278 goto error;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200279 goto output_full;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200280 }
281
Christopher Faulet5f36bfe2023-01-10 18:51:55 +0100282 if ((h1m->flags & (H1_MF_CONN_UPG|H1_MF_UPG_WEBSOCKET)) && code != 101)
283 h1m->flags &= ~(H1_MF_CONN_UPG|H1_MF_UPG_WEBSOCKET);
284
Christopher Fauletc75668e2020-12-07 18:10:32 +0100285 if (((h1m->flags & H1_MF_METH_CONNECT) && code >= 200 && code < 300) || code == 101) {
Christopher Faulet5be651d2021-01-22 15:28:03 +0100286 h1m->flags &= ~(H1_MF_CLEN|H1_MF_CHNK);
287 h1m->flags |= H1_MF_XFER_LEN;
288 h1m->curr_len = h1m->body_len = 0;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200289 }
290 else if ((h1m->flags & H1_MF_METH_HEAD) || (code >= 100 && code < 200) ||
291 (code == 204) || (code == 304)) {
292 /* Responses known to have no body. */
293 h1m->flags &= ~(H1_MF_CLEN|H1_MF_CHNK);
294 h1m->flags |= H1_MF_XFER_LEN;
295 h1m->curr_len = h1m->body_len = 0;
296 }
297 else if (h1m->flags & (H1_MF_CLEN|H1_MF_CHNK)) {
298 /* Responses with a known body length. */
299 h1m->flags |= H1_MF_XFER_LEN;
300 }
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200301
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200302 flags = h1m_htx_sl_flags(h1m);
303 sl = htx_add_stline(htx, HTX_BLK_RES_SL, flags, vsn, status, reason);
304 if (!sl || !htx_add_all_headers(htx, hdrs))
305 goto error;
306 sl->info.res.status = code;
307
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200308 /* If body length cannot be determined, set htx->extra to
Christopher Faulet2e47e3a2023-01-13 11:40:24 +0100309 * HTX_UNKOWN_PAYLOAD_LENGTH. This value is impossible in other cases.
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200310 */
Christopher Faulet2e47e3a2023-01-13 11:40:24 +0100311 htx->extra = ((h1m->flags & H1_MF_XFER_LEN) ? h1m->curr_len : HTX_UNKOWN_PAYLOAD_LENGTH);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200312
313 end:
314 return 1;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200315 output_full:
316 h1m_init_res(h1m);
317 h1m->flags |= (H1_MF_NO_PHDR|H1_MF_CLEAN_CONN_HDR);
318 return -2;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200319 error:
320 h1m->err_pos = h1m->next;
321 h1m->err_state = h1m->state;
322 htx->flags |= HTX_FL_PARSING_ERROR;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200323 return -1;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200324}
325
Christopher Faulet46e058d2021-09-20 07:47:27 +0200326/* Parse HTTP/1 headers. It returns the number of bytes parsed on success, 0 if
327 * headers are incomplete, -1 if an error occurred or -2 if it needs more space
328 * to proceed while the output buffer is not empty. Parsing errors are reported
329 * by setting the htx flag HTX_FL_PARSING_ERROR and filling h1m->err_pos and
330 * h1m->err_state fields. This functions is responsible to update the parser
331 * state <h1m> and the start-line <h1sl> if not NULL. For the requests, <h1sl>
332 * must always be provided. For responses, <h1sl> may be NULL and <h1m> flags
333 * HTTP_METH_CONNECT of HTTP_METH_HEAD may be set.
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200334 */
Christopher Faulet46e058d2021-09-20 07:47:27 +0200335int h1_parse_msg_hdrs(struct h1m *h1m, union h1_sl *h1sl, struct htx *dsthtx,
336 struct buffer *srcbuf, size_t ofs, size_t max)
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200337{
338 struct http_hdr hdrs[global.tune.max_http_hdr];
Christopher Faulet46e058d2021-09-20 07:47:27 +0200339 int total = 0, ret = 0;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200340
341 if (!max || !b_data(srcbuf))
342 goto end;
343
344 /* Realing input buffer if necessary */
345 if (b_head(srcbuf) + b_data(srcbuf) > b_wrap(srcbuf))
Christopher Faulet00d7cde2021-02-04 11:01:51 +0100346 b_slow_realign_ofs(srcbuf, trash.area, 0);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200347
348 if (!h1sl) {
349 /* If there no start-line, be sure to only parse the headers */
350 h1m->flags |= H1_MF_HDRS_ONLY;
351 }
352 ret = h1_headers_to_hdr_list(b_peek(srcbuf, ofs), b_tail(srcbuf),
353 hdrs, sizeof(hdrs)/sizeof(hdrs[0]), h1m, h1sl);
354 if (ret <= 0) {
355 /* Incomplete or invalid message. If the input buffer only
356 * contains headers and is full, which is detected by it being
357 * full and the offset to be zero, it's an error because
358 * headers are too large to be handled by the parser. */
359 if (ret < 0 || (!ret && !ofs && !buf_room_for_htx_data(srcbuf)))
360 goto error;
361 goto end;
362 }
Christopher Faulet46e058d2021-09-20 07:47:27 +0200363 total = ret;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200364
365 /* messages headers fully parsed, do some checks to prepare the body
366 * parsing.
367 */
368
369 if (!(h1m->flags & H1_MF_RESP)) {
370 if (!h1_process_req_vsn(h1m, h1sl)) {
371 h1m->err_pos = h1sl->rq.v.ptr - b_head(srcbuf);
372 h1m->err_state = h1m->state;
373 goto vsn_error;
374 }
Christopher Faulet46e058d2021-09-20 07:47:27 +0200375 ret = h1_postparse_req_hdrs(h1m, h1sl, dsthtx, hdrs, max);
376 if (ret < 0)
377 return ret;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200378 }
379 else {
380 if (h1sl && !h1_process_res_vsn(h1m, h1sl)) {
381 h1m->err_pos = h1sl->st.v.ptr - b_head(srcbuf);
382 h1m->err_state = h1m->state;
383 goto vsn_error;
384 }
Christopher Faulet46e058d2021-09-20 07:47:27 +0200385 ret = h1_postparse_res_hdrs(h1m, h1sl, dsthtx, hdrs, max);
386 if (ret < 0)
387 return ret;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200388 }
389
Christopher Faulet76014fd2019-12-10 11:47:22 +0100390 /* Switch messages without any payload to DONE state */
391 if (((h1m->flags & H1_MF_CLEN) && h1m->body_len == 0) ||
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100392 ((h1m->flags & (H1_MF_XFER_LEN|H1_MF_CLEN|H1_MF_CHNK)) == H1_MF_XFER_LEN)) {
Christopher Faulet76014fd2019-12-10 11:47:22 +0100393 h1m->state = H1_MSG_DONE;
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100394 dsthtx->flags |= HTX_FL_EOM;
395 }
Christopher Faulet76014fd2019-12-10 11:47:22 +0100396
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200397 end:
Christopher Faulet46e058d2021-09-20 07:47:27 +0200398 return total;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200399 error:
400 h1m->err_pos = h1m->next;
401 h1m->err_state = h1m->state;
402 vsn_error:
403 dsthtx->flags |= HTX_FL_PARSING_ERROR;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200404 return -1;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200405
406}
407
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200408/* Copy data from <srbuf> into an DATA block in <dsthtx>. If possible, a
409 * zero-copy is performed. It returns the number of bytes copied.
410 */
Christopher Fauletde471a42021-02-01 16:37:28 +0100411static size_t h1_copy_msg_data(struct htx **dsthtx, struct buffer *srcbuf, size_t ofs,
Christopher Fauletf7c20442021-02-02 19:40:07 +0100412 size_t count, size_t max, struct buffer *htxbuf)
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200413{
Christopher Fauletaf542632019-10-01 21:52:49 +0200414 struct htx *tmp_htx = *dsthtx;
Christopher Fauletf7c20442021-02-02 19:40:07 +0100415 size_t block1, block2, ret = 0;
416
417 /* Be prepared to create at least one HTX block by reserving its size
418 * and adjust <count> accordingly.
419 */
420 max -= sizeof(struct htx_blk);
421 if (count > max)
422 count = max;
Christopher Fauletaf542632019-10-01 21:52:49 +0200423
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200424 /* very often with large files we'll face the following
425 * situation :
426 * - htx is empty and points to <htxbuf>
Christopher Fauletf7c20442021-02-02 19:40:07 +0100427 * - count == srcbuf->data
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200428 * - srcbuf->head == sizeof(struct htx)
429 * => we can swap the buffers and place an htx header into
430 * the target buffer instead
431 */
Christopher Fauletaf542632019-10-01 21:52:49 +0200432 if (unlikely(htx_is_empty(tmp_htx) && count == b_data(srcbuf) &&
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200433 !ofs && b_head_ofs(srcbuf) == sizeof(struct htx))) {
434 void *raw_area = srcbuf->area;
435 void *htx_area = htxbuf->area;
436 struct htx_blk *blk;
437
438 srcbuf->area = htx_area;
439 htxbuf->area = raw_area;
Christopher Fauletaf542632019-10-01 21:52:49 +0200440 tmp_htx = (struct htx *)htxbuf->area;
441 tmp_htx->size = htxbuf->size - sizeof(*tmp_htx);
442 htx_reset(tmp_htx);
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200443 b_set_data(htxbuf, b_size(htxbuf));
444
Christopher Fauletaf542632019-10-01 21:52:49 +0200445 blk = htx_add_blk(tmp_htx, HTX_BLK_DATA, count);
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200446 blk->info += count;
Christopher Fauletaf542632019-10-01 21:52:49 +0200447
448 *dsthtx = tmp_htx;
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200449 /* nothing else to do, the old buffer now contains an
450 * empty pre-initialized HTX header
451 */
452 return count;
453 }
454
Christopher Fauletf7c20442021-02-02 19:40:07 +0100455 /* * First block is the copy of contiguous data starting at offset <ofs>
456 * with <count> as max. <max> is updated accordingly
457 *
458 * * Second block is the remaining (count - block1) if <max> is large
459 * enough. Another HTX block is reserved.
460 */
461 block1 = b_contig_data(srcbuf, ofs);
462 block2 = 0;
463 if (block1 > count)
464 block1 = count;
465 max -= block1;
466
467 if (max > sizeof(struct htx_blk)) {
468 block2 = count - block1;
469 max -= sizeof(struct htx_blk);
470 if (block2 > max)
471 block2 = max;
472 }
473
474 ret = htx_add_data(tmp_htx, ist2(b_peek(srcbuf, ofs), block1));
475 if (ret == block1 && block2)
476 ret += htx_add_data(tmp_htx, ist2(b_orig(srcbuf), block2));
477 end:
478 return ret;
Christopher Fauletcc3124c2019-08-12 22:42:21 +0200479}
480
Christopher Faulet7a835f32021-05-21 11:31:35 +0200481static const char hextable[] = {
482 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
483 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,-1,-1,-1,-1,-1,-1,
484 -1,10,11,12,13,14,15,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
485 -1,10,11,12,13,14,15,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
486 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
487 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
488 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
489 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1
490};
491
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200492/* Generic function to parse the current HTTP chunk. It may be used to parsed
Ilya Shipitsin213bb992021-06-12 15:55:27 +0500493 * any kind of chunks, including incomplete HTTP chunks or split chunks
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200494 * because the buffer wraps. This version tries to performed zero-copy on large
495 * chunks if possible.
Christopher Faulet140691b2021-02-03 11:51:24 +0100496 */
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200497static size_t h1_parse_chunk(struct h1m *h1m, struct htx **dsthtx,
498 struct buffer *srcbuf, size_t ofs, size_t *max,
499 struct buffer *htxbuf)
Christopher Faulet140691b2021-02-03 11:51:24 +0100500{
501 uint64_t chksz;
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200502 size_t sz, used, lmax, total = 0;
Christopher Faulet140691b2021-02-03 11:51:24 +0100503 int ret = 0;
504
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200505 lmax = *max;
Christopher Faulet140691b2021-02-03 11:51:24 +0100506 switch (h1m->state) {
507 case H1_MSG_DATA:
508 new_chunk:
509 used = htx_used_space(*dsthtx);
510
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200511 if (b_data(srcbuf) == ofs || !lmax)
Christopher Faulet140691b2021-02-03 11:51:24 +0100512 break;
513
514 sz = b_data(srcbuf) - ofs;
515 if (unlikely(sz > h1m->curr_len))
516 sz = h1m->curr_len;
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200517 sz = h1_copy_msg_data(dsthtx, srcbuf, ofs, sz, lmax, htxbuf);
518 lmax -= htx_used_space(*dsthtx) - used;
Christopher Faulet140691b2021-02-03 11:51:24 +0100519 ofs += sz;
520 total += sz;
521 h1m->curr_len -= sz;
522 if (h1m->curr_len)
523 break;
524
525 h1m->state = H1_MSG_CHUNK_CRLF;
Willy Tarreau779aa692022-11-14 07:32:50 +0100526 __fallthrough;
Christopher Faulet140691b2021-02-03 11:51:24 +0100527
528 case H1_MSG_CHUNK_CRLF:
529 ret = h1_skip_chunk_crlf(srcbuf, ofs, b_data(srcbuf));
530 if (ret <= 0)
531 break;
532 ofs += ret;
533 total += ret;
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200534
535 /* Don't parse next chunk to try to handle contiguous chunks if possible */
Christopher Faulet140691b2021-02-03 11:51:24 +0100536 h1m->state = H1_MSG_CHUNK_SIZE;
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200537 break;
Christopher Faulet140691b2021-02-03 11:51:24 +0100538
539 case H1_MSG_CHUNK_SIZE:
540 ret = h1_parse_chunk_size(srcbuf, ofs, b_data(srcbuf), &chksz);
541 if (ret <= 0)
542 break;
543 h1m->state = ((!chksz) ? H1_MSG_TRAILERS : H1_MSG_DATA);
544 h1m->curr_len = chksz;
545 h1m->body_len += chksz;
546 ofs += ret;
547 total += ret;
548
549 if (h1m->curr_len) {
550 h1m->state = H1_MSG_DATA;
551 goto new_chunk;
552 }
553 h1m->state = H1_MSG_TRAILERS;
554 break;
555
556 default:
557 /* unexpected */
558 ret = -1;
559 break;
560 }
561
562 if (ret < 0) {
563 (*dsthtx)->flags |= HTX_FL_PARSING_ERROR;
564 h1m->err_state = h1m->state;
565 h1m->err_pos = ofs;
566 total = 0;
567 }
568
569 /* Don't forget to update htx->extra */
570 (*dsthtx)->extra = h1m->curr_len;
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200571 *max = lmax;
572 return total;
573}
574
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200575/* Parses full contiguous HTTP chunks. This version is optimized for small
576 * chunks and does not performed zero-copy. It must be called in
Ilya Shipitsin213bb992021-06-12 15:55:27 +0500577 * H1_MSG_CHUNK_SIZE state. Be careful if you change something in this
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200578 * function. It is really sensitive, any change may have an impact on
579 * performance.
580 */
581static size_t h1_parse_full_contig_chunks(struct h1m *h1m, struct htx **dsthtx,
582 struct buffer *srcbuf, size_t ofs, size_t *max,
583 struct buffer *htxbuf)
584{
585 char *start, *end, *dptr;
586 ssize_t dpos, ridx, save;
587 size_t lmax, total = 0;
588 uint64_t chksz;
589 struct htx_ret htxret;
590
591 /* source info :
592 * start : pointer at <ofs> position
593 * end : pointer marking the end of data to parse
594 * ridx : the reverse index (negative) marking the parser position (end[ridx])
595 */
596 ridx = -b_contig_data(srcbuf, ofs);
597 if (!ridx)
598 goto out;
599 start = b_peek(srcbuf, ofs);
600 end = start - ridx;
601
602 /* Reserve the maximum possible size for the data */
603 htxret = htx_reserve_max_data(*dsthtx);
604 if (!htxret.blk)
605 goto out;
606
607 /* destination info :
608 * dptr : pointer on the beginning of the data
609 * dpos : current position where to copy data
610 */
611 dptr = htx_get_blk_ptr(*dsthtx, htxret.blk);
612 dpos = htxret.ret;
613
614 /* Empty DATA block is not possible, thus if <dpos> is the beginning of
615 * the block, it means it is a new block. We can remove the block size
616 * from <max>. Then we must adjust it if it exceeds the free size in the
617 * block.
618 */
619 lmax = *max;
620 if (!dpos)
621 lmax -= sizeof(struct htx_blk);
622 if (lmax > htx_get_blksz(htxret.blk) - dpos)
623 lmax = htx_get_blksz(htxret.blk) - dpos;
624
625 while (1) {
626 /* The chunk size is in the following form, though we are only
627 * interested in the size and CRLF :
628 * 1*HEXDIGIT *WSP *[ ';' extensions ] CRLF
629 */
630 chksz = 0;
631 save = ridx; /* Save the parser position to rewind if necessary */
632 while (1) {
633 int c;
634
635 if (!ridx)
636 goto end_parsing;
637
638 /* Convert current character */
Christopher Faulet7a835f32021-05-21 11:31:35 +0200639 c = hextable[(unsigned char)end[ridx]];
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200640
641 /* not a hex digit anymore */
Christopher Fauletbf76df12021-06-11 13:39:06 +0200642 if (c & 0xF0)
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200643 break;
644
645 /* Update current chunk size */
646 chksz = (chksz << 4) + c;
647
Willy Tarreau8f0b4e92022-01-28 09:39:24 +0100648 if (unlikely(chksz & 0xF0000000000000ULL)) {
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200649 /* Don't get more than 13 hexa-digit (2^52 - 1)
650 * to never fed possibly bogus values from
651 * languages that use floats for their integers
652 */
653 goto parsing_error;
654 }
655 ++ridx;
656 }
657
658 if (unlikely(chksz > lmax))
659 goto end_parsing;
660
661 if (unlikely(ridx == save)) {
662 /* empty size not allowed */
663 goto parsing_error;
664 }
665
666 /* Skip spaces */
667 while (HTTP_IS_SPHT(end[ridx])) {
668 if (!++ridx)
669 goto end_parsing;
670 }
671
672 /* Up to there, we know that at least one byte is present. Check
673 * for the end of chunk size.
674 */
675 while (1) {
676 if (likely(end[ridx] == '\r')) {
677 /* Parse CRLF */
678 if (!++ridx)
679 goto end_parsing;
680 if (unlikely(end[ridx] != '\n')) {
681 /* CR must be followed by LF */
682 goto parsing_error;
683 }
684
685 /* done */
686 ++ridx;
687 break;
688 }
689 else if (end[ridx] == '\n') {
690 /* Parse LF only, nothing more to do */
691 ++ridx;
692 break;
693 }
694 else if (likely(end[ridx] == ';')) {
695 /* chunk extension, ends at next CRLF */
696 if (!++ridx)
697 goto end_parsing;
698 while (!HTTP_IS_CRLF(end[ridx])) {
699 if (!++ridx)
700 goto end_parsing;
701 }
702 /* we have a CRLF now, loop above */
703 continue;
704 }
705 else {
706 /* all other characters are unexpected */
707 goto parsing_error;
708 }
709 }
710
711 /* Exit if it is the last chunk */
712 if (unlikely(!chksz)) {
713 h1m->state = H1_MSG_TRAILERS;
714 save = ridx;
715 goto end_parsing;
716 }
717
718 /* Now check if the whole chunk is here (including the CRLF at
Ilya Shipitsin213bb992021-06-12 15:55:27 +0500719 * the end), otherwise we switch in H1_MSG_DATA state.
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200720 */
721 if (chksz + 2 > -ridx) {
722 h1m->curr_len = chksz;
723 h1m->body_len += chksz;
724 h1m->state = H1_MSG_DATA;
725 (*dsthtx)->extra = h1m->curr_len;
726 save = ridx;
727 goto end_parsing;
728 }
729
730 memcpy(dptr + dpos, end + ridx, chksz);
731 h1m->body_len += chksz;
732 lmax -= chksz;
733 dpos += chksz;
734 ridx += chksz;
735
736 /* Parse CRLF or LF (always present) */
737 if (likely(end[ridx] == '\r'))
738 ++ridx;
739 if (end[ridx] != '\n') {
740 h1m->state = H1_MSG_CHUNK_CRLF;
741 goto parsing_error;
742 }
743 ++ridx;
744 }
745
746 end_parsing:
747 ridx = save;
748
749 /* Adjust the HTX block size or remove the block if nothing was copied
750 * (Empty HTX data block are not supported).
751 */
752 if (!dpos)
753 htx_remove_blk(*dsthtx, htxret.blk);
754 else
755 htx_change_blk_value_len(*dsthtx, htxret.blk, dpos);
756 total = end + ridx - start;
757 *max = lmax;
758
759 out:
760 return total;
761
762 parsing_error:
763 (*dsthtx)->flags |= HTX_FL_PARSING_ERROR;
764 h1m->err_state = h1m->state;
765 h1m->err_pos = ofs + end + ridx - start;
766 return 0;
767}
768
769/* Parse HTTP chunks. This function relies on an optimized function to parse
770 * contiguous chunks if possible. Otherwise, when a chunk is incomplete or when
771 * the underlying buffer is wrapping, a generic function is used.
772 */
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200773static size_t h1_parse_msg_chunks(struct h1m *h1m, struct htx **dsthtx,
774 struct buffer *srcbuf, size_t ofs, size_t max,
775 struct buffer *htxbuf)
776{
777 size_t ret, total = 0;
778
779 while (ofs < b_data(srcbuf)) {
780 ret = 0;
781
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200782 /* First parse full contiguous chunks. It is only possible if we
783 * are waiting for the next chunk size.
784 */
785 if (h1m->state == H1_MSG_CHUNK_SIZE) {
786 ret = h1_parse_full_contig_chunks(h1m, dsthtx, srcbuf, ofs, &max, htxbuf);
787 /* exit on error */
788 if (!ret && (*dsthtx)->flags & HTX_FL_PARSING_ERROR) {
789 total = 0;
790 break;
791 }
792 /* or let a chance to parse remaining data */
793 total += ret;
794 ofs += ret;
795 ret = 0;
796 }
797
798 /* If some data remains, try to parse it using the generic
Ilya Shipitsin213bb992021-06-12 15:55:27 +0500799 * function handling incomplete chunks and split chunks
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200800 * because of a wrapping buffer.
801 */
802 if (h1m->state < H1_MSG_TRAILERS && ofs < b_data(srcbuf)) {
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200803 ret = h1_parse_chunk(h1m, dsthtx, srcbuf, ofs, &max, htxbuf);
804 total += ret;
805 ofs += ret;
806 }
807
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200808 /* nothing more was parsed or parsing was stopped on incomplete
809 * chunk, we can exit, handling parsing error if necessary.
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200810 */
Christopher Fauletbdcefe52021-05-21 11:05:12 +0200811 if (!ret || h1m->state != H1_MSG_CHUNK_SIZE) {
Christopher Faulet0d4c9242021-05-21 10:56:24 +0200812 if ((*dsthtx)->flags & HTX_FL_PARSING_ERROR)
813 total = 0;
814 break;
815 }
816 }
817
Christopher Faulet140691b2021-02-03 11:51:24 +0100818 return total;
819}
820
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200821/* Parse HTTP/1 body. It returns the number of bytes parsed if > 0, or 0 if it
822 * couldn't proceed. Parsing errors are reported by setting the htx flags
823 * HTX_FL_PARSING_ERROR and filling h1m->err_pos and h1m->err_state fields. This
824 * functions is responsible to update the parser state <h1m>.
825 */
Christopher Fauletde471a42021-02-01 16:37:28 +0100826size_t h1_parse_msg_data(struct h1m *h1m, struct htx **dsthtx,
827 struct buffer *srcbuf, size_t ofs, size_t max,
828 struct buffer *htxbuf)
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200829{
Christopher Fauletde471a42021-02-01 16:37:28 +0100830 size_t sz, total = 0;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200831
Christopher Fauletf7c20442021-02-02 19:40:07 +0100832 if (b_data(srcbuf) == ofs || !max)
Christopher Faulet140691b2021-02-03 11:51:24 +0100833 return 0;
Christopher Fauletf7c20442021-02-02 19:40:07 +0100834
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200835 if (h1m->flags & H1_MF_CLEN) {
836 /* content-length: read only h2m->body_len */
Christopher Fauletf7c20442021-02-02 19:40:07 +0100837 sz = b_data(srcbuf) - ofs;
838 if (unlikely(sz > h1m->curr_len))
Christopher Fauletde471a42021-02-01 16:37:28 +0100839 sz = h1m->curr_len;
Christopher Fauletf7c20442021-02-02 19:40:07 +0100840 sz = h1_copy_msg_data(dsthtx, srcbuf, ofs, sz, max, htxbuf);
841 h1m->curr_len -= sz;
842 (*dsthtx)->extra = h1m->curr_len;
843 total += sz;
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100844 if (!h1m->curr_len) {
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200845 h1m->state = H1_MSG_DONE;
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100846 (*dsthtx)->flags |= HTX_FL_EOM;
847 }
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200848 }
849 else if (h1m->flags & H1_MF_CHNK) {
850 /* te:chunked : parse chunks */
Christopher Faulet140691b2021-02-03 11:51:24 +0100851 total += h1_parse_msg_chunks(h1m, dsthtx, srcbuf, ofs, max, htxbuf);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200852 }
853 else if (h1m->flags & H1_MF_XFER_LEN) {
854 /* XFER_LEN is set but not CLEN nor CHNK, it means there is no
855 * body. Switch the message in DONE state
856 */
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200857 h1m->state = H1_MSG_DONE;
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100858 (*dsthtx)->flags |= HTX_FL_EOM;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200859 }
860 else {
861 /* no content length, read till SHUTW */
Christopher Fauletf7c20442021-02-02 19:40:07 +0100862 sz = b_data(srcbuf) - ofs;
863 sz = h1_copy_msg_data(dsthtx, srcbuf, ofs, sz, max, htxbuf);
864 total += sz;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200865 }
866
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200867 return total;
868}
869
Christopher Faulet46e058d2021-09-20 07:47:27 +0200870/* Parse HTTP/1 trailers. It returns the number of bytes parsed on success, 0 if
871 * trailers are incomplete, -1 if an error occurred or -2 if it needs more space
872 * to proceed while the output buffer is not empty. Parsing errors are reported
873 * by setting the htx flags HTX_FL_PARSING_ERROR and filling h1m->err_pos and
874 * h1m->err_state fields. This functions is responsible to update the parser
875 * state <h1m>.
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200876 */
Christopher Faulet46e058d2021-09-20 07:47:27 +0200877int h1_parse_msg_tlrs(struct h1m *h1m, struct htx *dsthtx,
878 struct buffer *srcbuf, size_t ofs, size_t max)
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200879{
880 struct http_hdr hdrs[global.tune.max_http_hdr];
881 struct h1m tlr_h1m;
882 int ret = 0;
883
Christopher Fauletae660be2022-04-13 17:48:54 +0200884 if (b_data(srcbuf) == ofs) {
885 /* Nothing to parse */
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200886 goto end;
Christopher Fauletae660be2022-04-13 17:48:54 +0200887 }
888 if (!max) {
889 /* No more room */
890 goto output_full;
891 }
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200892
893 /* Realing input buffer if necessary */
894 if (b_peek(srcbuf, ofs) > b_tail(srcbuf))
Christopher Faulet00d7cde2021-02-04 11:01:51 +0100895 b_slow_realign_ofs(srcbuf, trash.area, 0);
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200896
897 tlr_h1m.flags = (H1_MF_NO_PHDR|H1_MF_HDRS_ONLY);
898 ret = h1_headers_to_hdr_list(b_peek(srcbuf, ofs), b_tail(srcbuf),
899 hdrs, sizeof(hdrs)/sizeof(hdrs[0]), &tlr_h1m, NULL);
900 if (ret <= 0) {
901 /* Incomplete or invalid trailers. If the input buffer only
902 * contains trailers and is full, which is detected by it being
903 * full and the offset to be zero, it's an error because
904 * trailers are too large to be handled by the parser. */
905 if (ret < 0 || (!ret && !ofs && !buf_room_for_htx_data(srcbuf)))
906 goto error;
907 goto end;
908 }
909
910 /* messages trailers fully parsed. */
911 if (h1_eval_htx_hdrs_size(hdrs) > max) {
912 if (htx_is_empty(dsthtx))
913 goto error;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200914 goto output_full;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200915 }
916
917 if (!htx_add_all_trailers(dsthtx, hdrs))
918 goto error;
919
Christopher Faulet76014fd2019-12-10 11:47:22 +0100920 h1m->state = H1_MSG_DONE;
Christopher Fauletd1ac2b92020-12-02 19:12:22 +0100921 dsthtx->flags |= HTX_FL_EOM;
Christopher Faulet76014fd2019-12-10 11:47:22 +0100922
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200923 end:
924 return ret;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200925 output_full:
926 return -2;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200927 error:
928 h1m->err_state = h1m->state;
929 h1m->err_pos = h1m->next;
930 dsthtx->flags |= HTX_FL_PARSING_ERROR;
Christopher Faulet46e058d2021-09-20 07:47:27 +0200931 return -1;
Christopher Faulet4f0f88a2019-08-10 11:17:44 +0200932}
933
Christopher Faulet53a899b2019-10-08 16:38:42 +0200934/* Appends the H1 representation of the request line <sl> to the chunk <chk>. It
935 * returns 1 if data are successfully appended, otherwise it returns 0.
936 */
937int h1_format_htx_reqline(const struct htx_sl *sl, struct buffer *chk)
938{
939 struct ist uri;
940 size_t sz = chk->data;
941
Christopher Fauletfb38c912021-04-26 09:38:55 +0200942 uri = h1_get_uri(sl);
Christopher Faulet53a899b2019-10-08 16:38:42 +0200943 if (!chunk_memcat(chk, HTX_SL_REQ_MPTR(sl), HTX_SL_REQ_MLEN(sl)) ||
944 !chunk_memcat(chk, " ", 1) ||
945 !chunk_memcat(chk, uri.ptr, uri.len) ||
946 !chunk_memcat(chk, " ", 1))
947 goto full;
948
949 if (sl->flags & HTX_SL_F_VER_11) {
950 if (!chunk_memcat(chk, "HTTP/1.1", 8))
951 goto full;
952 }
953 else {
954 if (!chunk_memcat(chk, HTX_SL_REQ_VPTR(sl), HTX_SL_REQ_VLEN(sl)))
955 goto full;
956 }
957
958 if (!chunk_memcat(chk, "\r\n", 2))
959 goto full;
960
961 return 1;
962
963 full:
964 chk->data = sz;
965 return 0;
966}
967
968/* Appends the H1 representation of the status line <sl> to the chunk <chk>. It
969 * returns 1 if data are successfully appended, otherwise it returns 0.
970 */
971int h1_format_htx_stline(const struct htx_sl *sl, struct buffer *chk)
972{
973 size_t sz = chk->data;
974
975 if (HTX_SL_LEN(sl) + 4 > b_room(chk))
976 return 0;
977
978 if (sl->flags & HTX_SL_F_VER_11) {
979 if (!chunk_memcat(chk, "HTTP/1.1", 8))
980 goto full;
981 }
982 else {
983 if (!chunk_memcat(chk, HTX_SL_RES_VPTR(sl), HTX_SL_RES_VLEN(sl)))
984 goto full;
985 }
986 if (!chunk_memcat(chk, " ", 1) ||
987 !chunk_memcat(chk, HTX_SL_RES_CPTR(sl), HTX_SL_RES_CLEN(sl)) ||
988 !chunk_memcat(chk, " ", 1) ||
989 !chunk_memcat(chk, HTX_SL_RES_RPTR(sl), HTX_SL_RES_RLEN(sl)) ||
990 !chunk_memcat(chk, "\r\n", 2))
991 goto full;
992
993 return 1;
994
995 full:
996 chk->data = sz;
997 return 0;
998}
999
Ilya Shipitsin47d17182020-06-21 21:42:57 +05001000/* Appends the H1 representation of the header <n> with the value <v> to the
Christopher Faulet53a899b2019-10-08 16:38:42 +02001001 * chunk <chk>. It returns 1 if data are successfully appended, otherwise it
1002 * returns 0.
1003 */
1004int h1_format_htx_hdr(const struct ist n, const struct ist v, struct buffer *chk)
1005{
1006 size_t sz = chk->data;
1007
1008 if (n.len + v.len + 4 > b_room(chk))
1009 return 0;
1010
1011 if (!chunk_memcat(chk, n.ptr, n.len) ||
1012 !chunk_memcat(chk, ": ", 2) ||
1013 !chunk_memcat(chk, v.ptr, v.len) ||
1014 !chunk_memcat(chk, "\r\n", 2))
1015 goto full;
1016
1017 return 1;
1018
1019 full:
1020 chk->data = sz;
1021 return 0;
1022}
1023
1024/* Appends the H1 representation of the data <data> to the chunk <chk>. If
1025 * <chunked> is non-zero, it emits HTTP/1 chunk-encoded data. It returns 1 if
1026 * data are successfully appended, otherwise it returns 0.
1027 */
1028int h1_format_htx_data(const struct ist data, struct buffer *chk, int chunked)
1029{
1030 size_t sz = chk->data;
1031
1032 if (chunked) {
1033 uint32_t chksz;
1034 char tmp[10];
1035 char *beg, *end;
1036
1037 chksz = data.len;
1038
1039 beg = end = tmp+10;
1040 *--beg = '\n';
1041 *--beg = '\r';
1042 do {
1043 *--beg = hextab[chksz & 0xF];
1044 } while (chksz >>= 4);
1045
1046 if (!chunk_memcat(chk, beg, end - beg) ||
1047 !chunk_memcat(chk, data.ptr, data.len) ||
1048 !chunk_memcat(chk, "\r\n", 2))
1049 goto full;
1050 }
1051 else {
1052 if (!chunk_memcat(chk, data.ptr, data.len))
1053 return 0;
1054 }
1055
1056 return 1;
1057
1058 full:
1059 chk->data = sz;
1060 return 0;
1061}
1062
Christopher Faulet4f0f88a2019-08-10 11:17:44 +02001063/*
1064 * Local variables:
1065 * c-indent-level: 8
1066 * c-basic-offset: 8
1067 * End:
1068 */