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Constify 'req' parameter of OSSL_HTTP_post_asn1()
[thirdparty/openssl.git] / crypto / http / http_client.c
1 /*
2 * Copyright 2001-2020 The OpenSSL Project Authors. All Rights Reserved.
3 * Copyright Siemens AG 2018-2020
4 *
5 * Licensed under the Apache License 2.0 (the "License"). You may not use
6 * this file except in compliance with the License. You can obtain a copy
7 * in the file LICENSE in the source distribution or at
8 * https://www.openssl.org/source/license.html
9 */
10
11 #include "e_os.h"
12 #include <stdio.h>
13 #include <stdlib.h>
14 #include "crypto/ctype.h"
15 #include <string.h>
16 #include <openssl/asn1.h>
17 #include <openssl/evp.h>
18 #include <openssl/err.h>
19 #include <openssl/httperr.h>
20 #include <openssl/cmperr.h>
21 #include <openssl/buffer.h>
22 #include <openssl/http.h>
23 #include "internal/sockets.h"
24 #include "internal/cryptlib.h" /* for ossl_assert() */
25
26 #include "http_local.h"
27
28 DEFINE_STACK_OF(CONF_VALUE)
29
30 #define HTTP_PREFIX "HTTP/"
31 #define HTTP_VERSION_PATT "1." /* allow 1.x */
32 #define HTTP_VERSION_STR_LEN 3
33 #define HTTP_LINE1_MINLEN ((int)strlen(HTTP_PREFIX HTTP_VERSION_PATT "x 200\n"))
34 #define HTTP_VERSION_MAX_REDIRECTIONS 50
35
36 #define HTTP_STATUS_CODE_OK 200
37 #define HTTP_STATUS_CODE_MOVED_PERMANENTLY 301
38 #define HTTP_STATUS_CODE_FOUND 302
39
40
41 /* Stateful HTTP request code, supporting blocking and non-blocking I/O */
42
43 /* Opaque HTTP request status structure */
44
45 struct ossl_http_req_ctx_st {
46 int state; /* Current I/O state */
47 unsigned char *iobuf; /* Line buffer */
48 int iobuflen; /* Line buffer length */
49 BIO *wbio; /* BIO to send request to */
50 BIO *rbio; /* BIO to read response from */
51 BIO *mem; /* Memory BIO response is built into */
52 int method_GET; /* HTTP method "GET" or "POST" */
53 const char *expected_ct; /* expected Content-Type, or NULL */
54 int expect_asn1; /* response must be ASN.1-encoded */
55 unsigned long resp_len; /* length of response */
56 unsigned long max_resp_len; /* Maximum length of response */
57 time_t max_time; /* Maximum end time of the transfer, or 0 */
58 char *redirection_url; /* Location given with HTTP status 301/302 */
59 };
60
61 #define HTTP_DEFAULT_MAX_LINE_LENGTH (4 * 1024)
62 #define HTTP_DEFAULT_MAX_RESP_LEN (100 * 1024)
63
64 /* HTTP states */
65
66 #define OHS_NOREAD 0x1000 /* If set no reading should be performed */
67 #define OHS_ERROR (0 | OHS_NOREAD) /* Error condition */
68 #define OHS_FIRSTLINE 1 /* First line being read */
69 #define OHS_REDIRECT 0xa /* Looking for redirection location */
70 #define OHS_HEADERS 2 /* MIME headers being read */
71 #define OHS_ASN1_HEADER 3 /* HTTP initial header (tag+length) being read */
72 #define OHS_CONTENT 4 /* HTTP content octets being read */
73 #define OHS_WRITE_INIT (5 | OHS_NOREAD) /* 1st call: ready to start I/O */
74 #define OHS_WRITE (6 | OHS_NOREAD) /* Request being sent */
75 #define OHS_FLUSH (7 | OHS_NOREAD) /* Request being flushed */
76 #define OHS_DONE (8 | OHS_NOREAD) /* Completed */
77 #define OHS_HTTP_HEADER (9 | OHS_NOREAD) /* Headers set, w/o final \r\n */
78
79 OSSL_HTTP_REQ_CTX *OSSL_HTTP_REQ_CTX_new(BIO *wbio, BIO *rbio,
80 int method_GET, int maxline,
81 unsigned long max_resp_len,
82 int timeout,
83 const char *expected_content_type,
84 int expect_asn1)
85 {
86 OSSL_HTTP_REQ_CTX *rctx;
87
88 if (wbio == NULL || rbio == NULL) {
89 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
90 return NULL;
91 }
92
93 if ((rctx = OPENSSL_zalloc(sizeof(*rctx))) == NULL)
94 return NULL;
95 rctx->state = OHS_ERROR;
96 rctx->iobuflen = maxline > 0 ? maxline : HTTP_DEFAULT_MAX_LINE_LENGTH;
97 rctx->iobuf = OPENSSL_malloc(rctx->iobuflen);
98 rctx->wbio = wbio;
99 rctx->rbio = rbio;
100 rctx->mem = BIO_new(BIO_s_mem());
101 if (rctx->iobuf == NULL || rctx->mem == NULL) {
102 OSSL_HTTP_REQ_CTX_free(rctx);
103 return NULL;
104 }
105 rctx->method_GET = method_GET;
106 rctx->expected_ct = expected_content_type;
107 rctx->expect_asn1 = expect_asn1;
108 rctx->resp_len = 0;
109 OSSL_HTTP_REQ_CTX_set_max_response_length(rctx, max_resp_len);
110 rctx->max_time = timeout > 0 ? time(NULL) + timeout : 0;
111 return rctx;
112 }
113
114 void OSSL_HTTP_REQ_CTX_free(OSSL_HTTP_REQ_CTX *rctx)
115 {
116 if (rctx == NULL)
117 return;
118 BIO_free(rctx->mem); /* this may indirectly call ERR_clear_error() */
119 OPENSSL_free(rctx->iobuf);
120 OPENSSL_free(rctx);
121 }
122
123 BIO *OSSL_HTTP_REQ_CTX_get0_mem_bio(OSSL_HTTP_REQ_CTX *rctx)
124 {
125 if (rctx == NULL) {
126 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
127 return NULL;
128 }
129 return rctx->mem;
130 }
131
132 void OSSL_HTTP_REQ_CTX_set_max_response_length(OSSL_HTTP_REQ_CTX *rctx,
133 unsigned long len)
134 {
135 if (rctx == NULL) {
136 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
137 return;
138 }
139 rctx->max_resp_len = len != 0 ? len : HTTP_DEFAULT_MAX_RESP_LEN;
140 }
141
142 /*
143 * Create HTTP header using given op and path (or "/" in case path is NULL).
144 * Server name (and port) must be given if and only if plain HTTP proxy is used.
145 */
146 int OSSL_HTTP_REQ_CTX_header(OSSL_HTTP_REQ_CTX *rctx, const char *server,
147 const char *port, const char *path)
148 {
149 if (rctx == NULL) {
150 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
151 return 0;
152 }
153
154 if (BIO_printf(rctx->mem, "%s ", rctx->method_GET ? "GET" : "POST") <= 0)
155 return 0;
156
157 if (server != NULL) { /* HTTP (but not HTTPS) proxy is used */
158 /*
159 * Section 5.1.2 of RFC 1945 states that the absoluteURI form is only
160 * allowed when using a proxy
161 */
162 if (BIO_printf(rctx->mem, OSSL_HTTP_PREFIX"%s", server) <= 0)
163 return 0;
164 if (port != NULL && BIO_printf(rctx->mem, ":%s", port) <= 0)
165 return 0;
166 }
167
168 /* Make sure path includes a forward slash */
169 if (path == NULL)
170 path = "/";
171 if (path[0] != '/' && BIO_printf(rctx->mem, "/") <= 0)
172 return 0;
173
174 if (BIO_printf(rctx->mem, "%s "HTTP_PREFIX"1.0\r\n", path) <= 0)
175 return 0;
176 rctx->state = OHS_HTTP_HEADER;
177 return 1;
178 }
179
180 int OSSL_HTTP_REQ_CTX_add1_header(OSSL_HTTP_REQ_CTX *rctx,
181 const char *name, const char *value)
182 {
183 if (rctx == NULL || name == NULL) {
184 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
185 return 0;
186 }
187
188 if (BIO_puts(rctx->mem, name) <= 0)
189 return 0;
190 if (value != NULL) {
191 if (BIO_write(rctx->mem, ": ", 2) != 2)
192 return 0;
193 if (BIO_puts(rctx->mem, value) <= 0)
194 return 0;
195 }
196 if (BIO_write(rctx->mem, "\r\n", 2) != 2)
197 return 0;
198 rctx->state = OHS_HTTP_HEADER;
199 return 1;
200 }
201
202 static int OSSL_HTTP_REQ_CTX_content(OSSL_HTTP_REQ_CTX *rctx,
203 const char *content_type, BIO *req_mem)
204 {
205 const unsigned char *req;
206 long req_len;
207
208 if (rctx == NULL || req_mem == NULL) {
209 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
210 return 0;
211 }
212
213 if (content_type != NULL
214 && BIO_printf(rctx->mem, "Content-Type: %s\r\n", content_type) <= 0)
215 return 0;
216
217 if ((req_len = BIO_get_mem_data(req_mem, &req)) <= 0)
218 return 0;
219 rctx->state = OHS_WRITE_INIT;
220
221 return BIO_printf(rctx->mem, "Content-Length: %ld\r\n\r\n", req_len) > 0
222 && BIO_write(rctx->mem, req, req_len) == (int)req_len;
223 }
224
225 BIO *HTTP_asn1_item2bio(const ASN1_ITEM *it, const ASN1_VALUE *val)
226 {
227 BIO *res;
228
229 if (it == NULL || val == NULL) {
230 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
231 return NULL;
232 }
233
234 if ((res = BIO_new(BIO_s_mem())) == NULL)
235 return NULL;
236 if (ASN1_item_i2d_bio(it, res, val) <= 0) {
237 BIO_free(res);
238 res = NULL;
239 }
240 return res;
241 }
242
243 int OSSL_HTTP_REQ_CTX_i2d(OSSL_HTTP_REQ_CTX *rctx, const char *content_type,
244 const ASN1_ITEM *it, ASN1_VALUE *req)
245 {
246 BIO *mem;
247 int res;
248
249 if (rctx == NULL || it == NULL || req == NULL) {
250 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
251 return 0;
252 }
253
254 res = (mem = HTTP_asn1_item2bio(it, req)) != NULL
255 && OSSL_HTTP_REQ_CTX_content(rctx, content_type, mem);
256 BIO_free(mem);
257 return res;
258 }
259
260 static int OSSL_HTTP_REQ_CTX_add1_headers(OSSL_HTTP_REQ_CTX *rctx,
261 const STACK_OF(CONF_VALUE) *headers,
262 const char *host)
263 {
264 int i;
265 int add_host = 1;
266 CONF_VALUE *hdr;
267
268 for (i = 0; i < sk_CONF_VALUE_num(headers); i++) {
269 hdr = sk_CONF_VALUE_value(headers, i);
270 if (add_host && strcasecmp("host", hdr->name) == 0)
271 add_host = 0;
272 if (!OSSL_HTTP_REQ_CTX_add1_header(rctx, hdr->name, hdr->value))
273 return 0;
274 }
275
276 if (add_host && !OSSL_HTTP_REQ_CTX_add1_header(rctx, "Host", host))
277 return 0;
278 return 1;
279 }
280
281 /*-
282 * Create OSSL_HTTP_REQ_CTX structure using the values provided.
283 * If !use_http_proxy then the 'server' and 'port' parameters are ignored.
284 * If req_mem == NULL then use GET and ignore content_type, else POST.
285 */
286 OSSL_HTTP_REQ_CTX *HTTP_REQ_CTX_new(BIO *wbio, BIO *rbio, int use_http_proxy,
287 const char *server, const char *port,
288 const char *path,
289 const STACK_OF(CONF_VALUE) *headers,
290 const char *content_type, BIO *req_mem,
291 int maxline, unsigned long max_resp_len,
292 int timeout,
293 const char *expected_content_type,
294 int expect_asn1)
295 {
296 OSSL_HTTP_REQ_CTX *rctx;
297
298 if (use_http_proxy && (server == NULL || port == NULL)) {
299 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
300 return NULL;
301 }
302 /* remaining parameters are checked indirectly by the functions called */
303
304 if ((rctx = OSSL_HTTP_REQ_CTX_new(wbio, rbio, req_mem == NULL, maxline,
305 max_resp_len, timeout,
306 expected_content_type, expect_asn1))
307 == NULL)
308 return NULL;
309
310 if (OSSL_HTTP_REQ_CTX_header(rctx, use_http_proxy ? server : NULL,
311 port, path)
312 && OSSL_HTTP_REQ_CTX_add1_headers(rctx, headers, server)
313 && (req_mem == NULL
314 || OSSL_HTTP_REQ_CTX_content(rctx, content_type, req_mem)))
315 return rctx;
316
317 OSSL_HTTP_REQ_CTX_free(rctx);
318 return NULL;
319 }
320
321 /*
322 * Parse first HTTP response line. This should be like this: "HTTP/1.0 200 OK".
323 * We need to obtain the numeric code and (optional) informational message.
324 */
325
326 static int parse_http_line1(char *line)
327 {
328 int retcode;
329 char *code, *reason, *end;
330
331 /* Skip to first whitespace (past protocol info) */
332 for (code = line; *code != '\0' && !ossl_isspace(*code); code++)
333 continue;
334 if (*code == '\0') {
335 HTTPerr(0, HTTP_R_RESPONSE_PARSE_ERROR);
336 return 0;
337 }
338
339 /* Skip past whitespace to start of response code */
340 while (*code != '\0' && ossl_isspace(*code))
341 code++;
342
343 if (*code == '\0') {
344 HTTPerr(0, HTTP_R_RESPONSE_PARSE_ERROR);
345 return 0;
346 }
347
348 /* Find end of response code: first whitespace after start of code */
349 for (reason = code; *reason != '\0' && !ossl_isspace(*reason); reason++)
350 continue;
351
352 if (*reason == '\0') {
353 HTTPerr(0, HTTP_R_RESPONSE_PARSE_ERROR);
354 return 0;
355 }
356
357 /* Set end of response code and start of message */
358 *reason++ = '\0';
359
360 /* Attempt to parse numeric code */
361 retcode = strtoul(code, &end, 10);
362
363 if (*end != '\0')
364 return 0;
365
366 /* Skip over any leading whitespace in message */
367 while (*reason != '\0' && ossl_isspace(*reason))
368 reason++;
369
370 if (*reason != '\0') {
371 /*
372 * Finally zap any trailing whitespace in message (include CRLF)
373 */
374
375 /* chop any trailing whitespace from reason */
376 /* We know reason has a non-whitespace character so this is OK */
377 for (end = reason + strlen(reason) - 1; ossl_isspace(*end); end--)
378 *end = '\0';
379 }
380
381 switch (retcode) {
382 case HTTP_STATUS_CODE_OK:
383 case HTTP_STATUS_CODE_MOVED_PERMANENTLY:
384 case HTTP_STATUS_CODE_FOUND:
385 return retcode;
386 default:
387 if (retcode < 400)
388 HTTPerr(0, HTTP_R_STATUS_CODE_UNSUPPORTED);
389 else
390 HTTPerr(0, HTTP_R_RECEIVED_ERROR);
391 if (*reason == '\0')
392 ERR_add_error_data(2, "Code=", code);
393 else
394 ERR_add_error_data(4, "Code=", code, ",Reason=", reason);
395 return 0;
396 }
397 }
398
399 static int check_set_resp_len(OSSL_HTTP_REQ_CTX *rctx, unsigned long len)
400 {
401 const char *tag = NULL;
402 unsigned long val = 0;
403
404 if (len > rctx->max_resp_len) {
405 HTTPerr(0, HTTP_R_MAX_RESP_LEN_EXCEEDED);
406 tag = ",max=";
407 val = rctx->max_resp_len;
408 }
409 if (rctx->resp_len != 0 && rctx->resp_len != len) {
410 HTTPerr(0, HTTP_R_INCONSISTENT_CONTENT_LENGTH);
411 tag = ",before=";
412 val = rctx->resp_len;
413 }
414 if (tag != NULL) {
415 char len_str[32];
416 char str[32];
417
418 BIO_snprintf(len_str, sizeof(len_str), "%lu", len);
419 BIO_snprintf(str, sizeof(str), "%lu", val);
420 ERR_add_error_data(4, "length=", len_str, tag, str);
421 return 0;
422 }
423 rctx->resp_len = len;
424 return 1;
425 }
426
427 /*
428 * Try exchanging request and response via HTTP on (non-)blocking BIO in rctx.
429 * Returns 1 on success, 0 on error or redirection, -1 on BIO_should_retry.
430 */
431 int OSSL_HTTP_REQ_CTX_nbio(OSSL_HTTP_REQ_CTX *rctx)
432 {
433 int i;
434 long n, n_to_send = 0;
435 unsigned long resp_len;
436 const unsigned char *p;
437 char *key, *value, *line_end = NULL;
438
439 if (rctx == NULL) {
440 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
441 return 0;
442 }
443
444 rctx->redirection_url = NULL;
445 next_io:
446 if ((rctx->state & OHS_NOREAD) == 0) {
447 n = BIO_read(rctx->rbio, rctx->iobuf, rctx->iobuflen);
448 if (n <= 0) {
449 if (BIO_should_retry(rctx->rbio))
450 return -1;
451 return 0;
452 }
453
454 /* Write data to memory BIO */
455 if (BIO_write(rctx->mem, rctx->iobuf, n) != n)
456 return 0;
457 }
458
459 switch (rctx->state) {
460 case OHS_HTTP_HEADER:
461 /* Last operation was adding headers: need a final \r\n */
462 if (BIO_write(rctx->mem, "\r\n", 2) != 2) {
463 rctx->state = OHS_ERROR;
464 return 0;
465 }
466 rctx->state = OHS_WRITE_INIT;
467
468 /* fall thru */
469 case OHS_WRITE_INIT:
470 n_to_send = BIO_get_mem_data(rctx->mem, NULL);
471 rctx->state = OHS_WRITE;
472
473 /* fall thru */
474 case OHS_WRITE:
475 n = BIO_get_mem_data(rctx->mem, &p);
476
477 i = BIO_write(rctx->wbio, p + (n - n_to_send), n_to_send);
478
479 if (i <= 0) {
480 if (BIO_should_retry(rctx->wbio))
481 return -1;
482 rctx->state = OHS_ERROR;
483 return 0;
484 }
485
486 n_to_send -= i;
487
488 if (n_to_send > 0)
489 goto next_io;
490
491 rctx->state = OHS_FLUSH;
492
493 (void)BIO_reset(rctx->mem);
494
495 /* fall thru */
496 case OHS_FLUSH:
497
498 i = BIO_flush(rctx->wbio);
499
500 if (i > 0) {
501 rctx->state = OHS_FIRSTLINE;
502 goto next_io;
503 }
504
505 if (BIO_should_retry(rctx->wbio))
506 return -1;
507
508 rctx->state = OHS_ERROR;
509 return 0;
510
511 case OHS_ERROR:
512 return 0;
513
514 case OHS_FIRSTLINE:
515 case OHS_HEADERS:
516 case OHS_REDIRECT:
517
518 /* Attempt to read a line in */
519 next_line:
520 /*
521 * Due to strange memory BIO behavior with BIO_gets we have to check
522 * there's a complete line in there before calling BIO_gets or we'll
523 * just get a partial read.
524 */
525 n = BIO_get_mem_data(rctx->mem, &p);
526 if (n <= 0 || memchr(p, '\n', n) == 0) {
527 if (n >= rctx->iobuflen) {
528 rctx->state = OHS_ERROR;
529 return 0;
530 }
531 goto next_io;
532 }
533 n = BIO_gets(rctx->mem, (char *)rctx->iobuf, rctx->iobuflen);
534
535 if (n <= 0) {
536 if (BIO_should_retry(rctx->mem))
537 goto next_io;
538 rctx->state = OHS_ERROR;
539 return 0;
540 }
541
542 /* Don't allow excessive lines */
543 if (n == rctx->iobuflen) {
544 HTTPerr(0, HTTP_R_RESPONSE_LINE_TOO_LONG);
545 rctx->state = OHS_ERROR;
546 return 0;
547 }
548
549 /* First line */
550 if (rctx->state == OHS_FIRSTLINE) {
551 switch (parse_http_line1((char *)rctx->iobuf)) {
552 case HTTP_STATUS_CODE_OK:
553 rctx->state = OHS_HEADERS;
554 goto next_line;
555 case HTTP_STATUS_CODE_MOVED_PERMANENTLY:
556 case HTTP_STATUS_CODE_FOUND: /* i.e., moved temporarily */
557 if (rctx->method_GET) {
558 rctx->state = OHS_REDIRECT;
559 goto next_line;
560 }
561 HTTPerr(0, HTTP_R_REDIRECTION_NOT_ENABLED);
562 /* redirection is not supported/recommended for POST */
563 /* fall through */
564 default:
565 rctx->state = OHS_ERROR;
566 return 0;
567 }
568 }
569 key = (char *)rctx->iobuf;
570 value = strchr(key, ':');
571 if (value != NULL) {
572 *(value++) = '\0';
573 while (ossl_isspace(*value))
574 value++;
575 line_end = strchr(value, '\r');
576 if (line_end == NULL)
577 line_end = strchr(value, '\n');
578 if (line_end != NULL)
579 *line_end = '\0';
580 }
581 if (value != NULL && line_end != NULL) {
582 if (rctx->state == OHS_REDIRECT
583 && strcasecmp(key, "Location") == 0) {
584 rctx->redirection_url = value;
585 return 0;
586 }
587 if (rctx->expected_ct != NULL
588 && strcasecmp(key, "Content-Type") == 0) {
589 if (strcasecmp(rctx->expected_ct, value) != 0) {
590 HTTPerr(0, HTTP_R_UNEXPECTED_CONTENT_TYPE);
591 ERR_add_error_data(4, "expected=", rctx->expected_ct,
592 ",actual=", value);
593 return 0;
594 }
595 rctx->expected_ct = NULL; /* content-type has been found */
596 }
597 if (strcasecmp(key, "Content-Length") == 0) {
598 resp_len = strtoul(value, &line_end, 10);
599 if (line_end == value || *line_end != '\0') {
600 HTTPerr(0, HTTP_R_ERROR_PARSING_CONTENT_LENGTH);
601 ERR_add_error_data(2, "input=", value);
602 return 0;
603 }
604 if (!check_set_resp_len(rctx, resp_len))
605 return 0;
606 }
607 }
608
609 /* Look for blank line: end of headers */
610 for (p = rctx->iobuf; *p != '\0'; p++) {
611 if (*p != '\r' && *p != '\n')
612 break;
613 }
614 if (*p != '\0') /* not end of headers */
615 goto next_line;
616
617 if (rctx->expected_ct != NULL) {
618 HTTPerr(0, HTTP_R_MISSING_CONTENT_TYPE);
619 ERR_add_error_data(2, "expected=", rctx->expected_ct);
620 return 0;
621 }
622 if (rctx->state == OHS_REDIRECT) {
623 /* http status code indicated redirect but there was no Location */
624 HTTPerr(0, HTTP_R_MISSING_REDIRECT_LOCATION);
625 return 0;
626 }
627
628 if (!rctx->expect_asn1) {
629 rctx->state = OHS_CONTENT;
630 goto content;
631 }
632
633 rctx->state = OHS_ASN1_HEADER;
634
635 /* Fall thru */
636 case OHS_ASN1_HEADER:
637 /*
638 * Now reading ASN1 header: can read at least 2 bytes which is enough
639 * for ASN1 SEQUENCE header and either length field or at least the
640 * length of the length field.
641 */
642 n = BIO_get_mem_data(rctx->mem, &p);
643 if (n < 2)
644 goto next_io;
645
646 /* Check it is an ASN1 SEQUENCE */
647 if (*p++ != (V_ASN1_SEQUENCE | V_ASN1_CONSTRUCTED)) {
648 HTTPerr(0, HTTP_R_MISSING_ASN1_ENCODING);
649 return 0;
650 }
651
652 /* Check out length field */
653 if ((*p & 0x80) != 0) {
654 /*
655 * If MSB set on initial length octet we can now always read 6
656 * octets: make sure we have them.
657 */
658 if (n < 6)
659 goto next_io;
660 n = *p & 0x7F;
661 /* Not NDEF or excessive length */
662 if (n == 0 || (n > 4)) {
663 HTTPerr(0, HTTP_R_ERROR_PARSING_ASN1_LENGTH);
664 return 0;
665 }
666 p++;
667 resp_len = 0;
668 for (i = 0; i < n; i++) {
669 resp_len <<= 8;
670 resp_len |= *p++;
671 }
672 resp_len += n + 2;
673 } else {
674 resp_len = *p + 2;
675 }
676 if (!check_set_resp_len(rctx, resp_len))
677 return 0;
678
679 content:
680 rctx->state = OHS_CONTENT;
681
682 /* Fall thru */
683 case OHS_CONTENT:
684 default:
685 n = BIO_get_mem_data(rctx->mem, NULL);
686 if (n < (long)rctx->resp_len /* may be 0 if no Content-Type or ASN.1 */)
687 goto next_io;
688
689 rctx->state = OHS_DONE;
690 return 1;
691 }
692 }
693
694 #ifndef OPENSSL_NO_SOCK
695
696 /* set up a new connection BIO, to HTTP server or to HTTP(S) proxy if given */
697 static BIO *HTTP_new_bio(const char *server /* optionally includes ":port" */,
698 const char *server_port /* explicit server port */,
699 const char *proxy /* optionally includes ":port" */)
700 {
701 const char *host = server, *host_end;
702 char host_name[100];
703 const char *port = server_port;
704 BIO *cbio;
705
706 if (!ossl_assert(server != NULL))
707 return NULL;
708
709 if (proxy != NULL) {
710 host = proxy;
711 port = NULL;
712 }
713
714 host_end = strchr(host, '/');
715 if (host_end != NULL && (size_t)(host_end - host) < sizeof(host_name)) {
716 /* chop trailing string starting with '/' */
717 strncpy(host_name, host, host_end - host + 1);
718 host = host_name;
719 }
720
721 cbio = BIO_new_connect(host /* optionally includes ":port" */);
722 if (cbio == NULL)
723 goto end;
724 if (port != NULL)
725 (void)BIO_set_conn_port(cbio, port);
726
727 end:
728 return cbio;
729 }
730 #endif /* OPENSSL_NO_SOCK */
731
732 static ASN1_VALUE *BIO_mem_d2i(BIO *mem, const ASN1_ITEM *it)
733 {
734 const unsigned char *p;
735 long len = BIO_get_mem_data(mem, &p);
736 ASN1_VALUE *resp = ASN1_item_d2i(NULL, &p, len, it);
737
738 if (resp == NULL)
739 HTTPerr(0, HTTP_R_RESPONSE_PARSE_ERROR);
740 return resp;
741 }
742
743 static BIO *OSSL_HTTP_REQ_CTX_transfer(OSSL_HTTP_REQ_CTX *rctx)
744 {
745 int sending = 1;
746 int rv;
747
748 if (rctx == NULL) {
749 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
750 return NULL;
751 }
752
753 for (;;) {
754 rv = OSSL_HTTP_REQ_CTX_nbio(rctx);
755 if (rv != -1)
756 break;
757 /* BIO_should_retry was true */
758 sending = 0;
759 /* will not actually wait if rctx->max_time == 0 */
760 if (BIO_wait(rctx->rbio, rctx->max_time, 100 /* milliseconds */) <= 0)
761 return NULL;
762 }
763
764 if (rv == 0) {
765 if (rctx->redirection_url == NULL) { /* an error occurred */
766 if (sending && (rctx->state & OHS_NOREAD) != 0)
767 HTTPerr(0, HTTP_R_ERROR_SENDING);
768 else
769 HTTPerr(0, HTTP_R_ERROR_RECEIVING);
770 }
771 return NULL;
772 }
773 if (!BIO_up_ref(rctx->mem))
774 return NULL;
775 return rctx->mem;
776 }
777
778 /* Exchange ASN.1-encoded request and response via HTTP on (non-)blocking BIO */
779 ASN1_VALUE *OSSL_HTTP_REQ_CTX_sendreq_d2i(OSSL_HTTP_REQ_CTX *rctx,
780 const ASN1_ITEM *it)
781 {
782 if (rctx == NULL || it == NULL) {
783 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
784 return NULL;
785 }
786 return BIO_mem_d2i(OSSL_HTTP_REQ_CTX_transfer(rctx), it);
787 }
788
789 static int update_timeout(int timeout, time_t start_time)
790 {
791 long elapsed_time;
792
793 if (timeout == 0)
794 return 0;
795 elapsed_time = (long)(time(NULL) - start_time); /* this might overflow */
796 return timeout <= elapsed_time ? -1 : timeout - elapsed_time;
797 }
798
799 /*-
800 * Exchange HTTP request and response with the given server.
801 * If req_mem == NULL then use GET and ignore content_type, else POST.
802 * The redirection_url output (freed by caller) parameter is used only for GET.
803 *
804 * Typically the bio and rbio parameters are NULL and a network BIO is created
805 * internally for connecting to the given server and port, optionally via a
806 * proxy and its port, and is then used for exchanging the request and response.
807 * If bio is given and rbio is NULL then this BIO is used instead.
808 * If both bio and rbio are given (which may be memory BIOs for instance)
809 * then no explicit connection is attempted,
810 * bio is used for writing the request, and rbio for reading the response.
811 *
812 * bio_update_fn is an optional BIO connect/disconnect callback function,
813 * which has the prototype
814 * BIO *(*OSSL_HTTP_bio_cb_t) (BIO *bio, void *arg, int conn, int detail);
815 * The callback may modify the HTTP BIO provided in the bio argument,
816 * whereby it may make use of any custom defined argument 'arg'.
817 * During connection establishment, just after BIO_connect_retry(),
818 * the callback function is invoked with the 'conn' argument being 1
819 * 'detail' indicating whether a HTTPS (i.e., TLS) connection is requested.
820 * On disconnect 'conn' is 0 and 'detail' indicates that no error occurred.
821 * For instance, on connect the funct may prepend a TLS BIO to implement HTTPS;
822 * after disconnect it may do some error diagnostics and/or specific cleanup.
823 * The function should return NULL to indicate failure.
824 * After disconnect the modified BIO will be deallocated using BIO_free_all().
825 */
826 BIO *OSSL_HTTP_transfer(const char *server, const char *port, const char *path,
827 int use_ssl, const char *proxy, const char *no_proxy,
828 BIO *bio, BIO *rbio,
829 OSSL_HTTP_bio_cb_t bio_update_fn, void *arg,
830 const STACK_OF(CONF_VALUE) *headers,
831 const char *content_type, BIO *req_mem,
832 int maxline, unsigned long max_resp_len, int timeout,
833 const char *expected_ct, int expect_asn1,
834 char **redirection_url)
835 {
836 time_t start_time = timeout > 0 ? time(NULL) : 0;
837 BIO *cbio; /* = bio if present, used as connection BIO if rbio is NULL */
838 OSSL_HTTP_REQ_CTX *rctx;
839 BIO *resp = NULL;
840
841 if (redirection_url != NULL)
842 *redirection_url = NULL; /* do this beforehand to prevent dbl free */
843
844 if (use_ssl && bio_update_fn == NULL) {
845 HTTPerr(0, HTTP_R_TLS_NOT_ENABLED);
846 return NULL;
847 }
848 if (rbio != NULL && (bio == NULL || bio_update_fn != NULL)) {
849 HTTPerr(0, ERR_R_PASSED_INVALID_ARGUMENT);
850 return NULL;
851 }
852
853 if (bio != NULL) {
854 cbio = bio;
855 } else {
856 #ifndef OPENSSL_NO_SOCK
857 if (server == NULL) {
858 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
859 return NULL;
860 }
861 if (*port == '\0')
862 port = NULL;
863 if (port == NULL && strchr(server, ':') == NULL)
864 port = use_ssl ? OSSL_HTTPS_PORT : OSSL_HTTP_PORT;
865 proxy = http_adapt_proxy(proxy, no_proxy, server, use_ssl);
866 if ((cbio = HTTP_new_bio(server, port, proxy)) == NULL)
867 return NULL;
868 #else
869 HTTPerr(0, HTTP_R_SOCK_NOT_SUPPORTED);
870 return NULL;
871 #endif
872 }
873 /* remaining parameters are checked indirectly by the functions called */
874
875 (void)ERR_set_mark(); /* prepare removing any spurious libssl errors */
876 if (rbio == NULL && BIO_connect_retry(cbio, timeout) <= 0)
877 goto end;
878 /* now timeout is guaranteed to be >= 0 */
879
880 /* callback can be used to wrap or prepend TLS session */
881 if (bio_update_fn != NULL) {
882 BIO *orig_bio = cbio;
883 cbio = (*bio_update_fn)(cbio, arg, 1 /* connect */, use_ssl);
884 if (cbio == NULL) {
885 cbio = orig_bio;
886 goto end;
887 }
888 }
889
890 rctx = HTTP_REQ_CTX_new(cbio, rbio != NULL ? rbio : cbio,
891 !use_ssl && proxy != NULL, server, port, path,
892 headers, content_type, req_mem, maxline,
893 max_resp_len, update_timeout(timeout, start_time),
894 expected_ct, expect_asn1);
895 if (rctx == NULL)
896 goto end;
897
898 resp = OSSL_HTTP_REQ_CTX_transfer(rctx);
899 if (resp == NULL) {
900 if (rctx->redirection_url != NULL) {
901 if (redirection_url == NULL)
902 HTTPerr(0, HTTP_R_REDIRECTION_NOT_ENABLED);
903 else
904 /* may be NULL if out of memory: */
905 *redirection_url = OPENSSL_strdup(rctx->redirection_url);
906 } else {
907 char buf[200];
908 unsigned long err = ERR_peek_error();
909 int lib = ERR_GET_LIB(err);
910 int reason = ERR_GET_REASON(err);
911
912 if (lib == ERR_LIB_SSL || lib == ERR_LIB_HTTP
913 || (lib == ERR_LIB_BIO && reason == BIO_R_CONNECT_TIMEOUT)
914 || (lib == ERR_LIB_BIO && reason == BIO_R_CONNECT_ERROR)
915 #ifndef OPENSSL_NO_CMP
916 || (lib == ERR_LIB_CMP
917 && reason == CMP_R_POTENTIALLY_INVALID_CERTIFICATE)
918 #endif
919 ) {
920 BIO_snprintf(buf, 200, "server=%s:%s", server, port);
921 ERR_add_error_data(1, buf);
922 if (proxy != NULL)
923 ERR_add_error_data(2, " proxy=", proxy);
924 if (err == 0) {
925 BIO_snprintf(buf, 200, " peer has disconnected%s",
926 use_ssl ? " violating the protocol" :
927 ", likely because it requires the use of TLS");
928 ERR_add_error_data(1, buf);
929 }
930 }
931 }
932 }
933 OSSL_HTTP_REQ_CTX_free(rctx);
934
935 /* callback can be used to clean up TLS session */
936 if (bio_update_fn != NULL
937 && (*bio_update_fn)(cbio, arg, 0, resp != NULL) == NULL) {
938 BIO_free(resp);
939 resp = NULL;
940 }
941
942 end:
943 /*
944 * Use BIO_free_all() because bio_update_fn may prepend or append to cbio.
945 * This also frees any (e.g., SSL/TLS) BIOs linked with bio and,
946 * like BIO_reset(bio), calls SSL_shutdown() to notify/alert the peer.
947 */
948 if (bio == NULL) /* cbio was not provided by caller */
949 BIO_free_all(cbio);
950
951 if (resp != NULL)
952 /* remove any spurious error queue entries by ssl_add_cert_chain() */
953 (void)ERR_pop_to_mark();
954 else
955 (void)ERR_clear_last_mark();
956
957 return resp;
958 }
959
960 static int redirection_ok(int n_redir, const char *old_url, const char *new_url)
961 {
962 size_t https_len = strlen(OSSL_HTTPS_NAME":");
963
964 if (n_redir >= HTTP_VERSION_MAX_REDIRECTIONS) {
965 HTTPerr(0, HTTP_R_TOO_MANY_REDIRECTIONS);
966 return 0;
967 }
968 if (*new_url == '/') /* redirection to same server => same protocol */
969 return 1;
970 if (strncmp(old_url, OSSL_HTTPS_NAME":", https_len) == 0 &&
971 strncmp(new_url, OSSL_HTTPS_NAME":", https_len) != 0) {
972 HTTPerr(0, HTTP_R_REDIRECTION_FROM_HTTPS_TO_HTTP);
973 return 0;
974 }
975 return 1;
976 }
977
978 /* Get data via HTTP from server at given URL, potentially with redirection */
979 BIO *OSSL_HTTP_get(const char *url, const char *proxy, const char *no_proxy,
980 BIO *bio, BIO *rbio,
981 OSSL_HTTP_bio_cb_t bio_update_fn, void *arg,
982 const STACK_OF(CONF_VALUE) *headers,
983 int maxline, unsigned long max_resp_len, int timeout,
984 const char *expected_content_type, int expect_asn1)
985 {
986 time_t start_time = timeout > 0 ? time(NULL) : 0;
987 char *current_url, *redirection_url;
988 int n_redirs = 0;
989 char *host;
990 char *port;
991 char *path;
992 int use_ssl;
993 BIO *resp = NULL;
994
995 if (url == NULL) {
996 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
997 return NULL;
998 }
999 if ((current_url = OPENSSL_strdup(url)) == NULL)
1000 return NULL;
1001
1002 for (;;) {
1003 if (!OSSL_HTTP_parse_url(current_url, &host, &port, &path, &use_ssl))
1004 break;
1005
1006 new_rpath:
1007 resp = OSSL_HTTP_transfer(host, port, path, use_ssl, proxy, no_proxy,
1008 bio, rbio,
1009 bio_update_fn, arg, headers, NULL, NULL,
1010 maxline, max_resp_len,
1011 update_timeout(timeout, start_time),
1012 expected_content_type, expect_asn1,
1013 &redirection_url);
1014 OPENSSL_free(path);
1015 if (resp == NULL && redirection_url != NULL) {
1016 if (redirection_ok(++n_redirs, current_url, redirection_url)) {
1017 (void)BIO_reset(bio);
1018 OPENSSL_free(current_url);
1019 current_url = redirection_url;
1020 if (*redirection_url == '/') { /* redirection to same server */
1021 path = OPENSSL_strdup(redirection_url);
1022 goto new_rpath;
1023 }
1024 OPENSSL_free(host);
1025 OPENSSL_free(port);
1026 continue;
1027 }
1028 OPENSSL_free(redirection_url);
1029 }
1030 OPENSSL_free(host);
1031 OPENSSL_free(port);
1032 break;
1033 }
1034 OPENSSL_free(current_url);
1035 return resp;
1036 }
1037
1038 /* Get ASN.1-encoded data via HTTP from server at given URL */
1039 ASN1_VALUE *OSSL_HTTP_get_asn1(const char *url,
1040 const char *proxy, const char *no_proxy,
1041 BIO *bio, BIO *rbio,
1042 OSSL_HTTP_bio_cb_t bio_update_fn, void *arg,
1043 const STACK_OF(CONF_VALUE) *headers,
1044 int maxline, unsigned long max_resp_len,
1045 int timeout, const char *expected_content_type,
1046 const ASN1_ITEM *it)
1047 {
1048 BIO *mem;
1049 ASN1_VALUE *resp = NULL;
1050
1051 if (url == NULL || it == NULL) {
1052 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
1053 return NULL;
1054 }
1055 if ((mem = OSSL_HTTP_get(url, proxy, no_proxy, bio, rbio, bio_update_fn,
1056 arg, headers, maxline, max_resp_len, timeout,
1057 expected_content_type, 1 /* expect_asn1 */))
1058 != NULL)
1059 resp = BIO_mem_d2i(mem, it);
1060 BIO_free(mem);
1061 return resp;
1062 }
1063
1064 /* Post ASN.1-encoded request via HTTP to server return ASN.1 response */
1065 ASN1_VALUE *OSSL_HTTP_post_asn1(const char *server, const char *port,
1066 const char *path, int use_ssl,
1067 const char *proxy, const char *no_proxy,
1068 BIO *bio, BIO *rbio,
1069 OSSL_HTTP_bio_cb_t bio_update_fn, void *arg,
1070 const STACK_OF(CONF_VALUE) *headers,
1071 const char *content_type,
1072 const ASN1_VALUE *req, const ASN1_ITEM *req_it,
1073 int maxline, unsigned long max_resp_len,
1074 int timeout, const char *expected_ct,
1075 const ASN1_ITEM *rsp_it)
1076 {
1077 BIO *req_mem;
1078 BIO *res_mem;
1079 ASN1_VALUE *resp = NULL;
1080
1081 if (req == NULL) {
1082 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
1083 return NULL;
1084 }
1085 /* remaining parameters are checked indirectly */
1086
1087 req_mem = HTTP_asn1_item2bio(req_it, req);
1088 res_mem = OSSL_HTTP_transfer(server, port, path, use_ssl, proxy, no_proxy,
1089 bio, rbio,
1090 bio_update_fn, arg, headers, content_type,
1091 req_mem /* may be NULL */, maxline,
1092 max_resp_len, timeout,
1093 expected_ct, 1 /* expect_asn1 */, NULL);
1094 BIO_free(req_mem);
1095 if (res_mem != NULL)
1096 resp = BIO_mem_d2i(res_mem, rsp_it);
1097 BIO_free(res_mem);
1098 return resp;
1099 }
1100
1101 /* BASE64 encoder used for encoding basic proxy authentication credentials */
1102 static char *base64encode(const void *buf, size_t len)
1103 {
1104 int i;
1105 size_t outl;
1106 char *out;
1107
1108 /* Calculate size of encoded data */
1109 outl = (len / 3);
1110 if (len % 3 > 0)
1111 outl++;
1112 outl <<= 2;
1113 out = OPENSSL_malloc(outl + 1);
1114 if (out == NULL)
1115 return 0;
1116
1117 i = EVP_EncodeBlock((unsigned char *)out, buf, len);
1118 if (!ossl_assert(0 <= i && (size_t)i <= outl)) {
1119 OPENSSL_free(out);
1120 return NULL;
1121 }
1122 return out;
1123 }
1124
1125 /*
1126 * Promote the given connection BIO using the CONNECT method for a TLS proxy.
1127 * This is typically called by an app, so bio_err and prog are used unless NULL
1128 * to print additional diagnostic information in a user-oriented way.
1129 */
1130 int OSSL_HTTP_proxy_connect(BIO *bio, const char *server, const char *port,
1131 const char *proxyuser, const char *proxypass,
1132 int timeout, BIO *bio_err, const char *prog)
1133 {
1134 #undef BUF_SIZE
1135 #define BUF_SIZE (8 * 1024)
1136 char *mbuf = OPENSSL_malloc(BUF_SIZE);
1137 char *mbufp;
1138 int read_len = 0;
1139 int ret = 0;
1140 BIO *fbio = BIO_new(BIO_f_buffer());
1141 int rv;
1142 time_t max_time = timeout > 0 ? time(NULL) + timeout : 0;
1143
1144 if (bio == NULL || server == NULL
1145 || (bio_err != NULL && prog == NULL)) {
1146 HTTPerr(0, ERR_R_PASSED_NULL_PARAMETER);
1147 goto end;
1148 }
1149 if (port == NULL || *port == '\0')
1150 port = OSSL_HTTPS_PORT;
1151
1152 if (mbuf == NULL || fbio == NULL) {
1153 BIO_printf(bio_err /* may be NULL */, "%s: out of memory", prog);
1154 goto end;
1155 }
1156 BIO_push(fbio, bio);
1157
1158 BIO_printf(fbio, "CONNECT %s:%s "HTTP_PREFIX"1.0\r\n", server, port);
1159
1160 /*
1161 * Workaround for broken proxies which would otherwise close
1162 * the connection when entering tunnel mode (e.g., Squid 2.6)
1163 */
1164 BIO_printf(fbio, "Proxy-Connection: Keep-Alive\r\n");
1165
1166 /* Support for basic (base64) proxy authentication */
1167 if (proxyuser != NULL) {
1168 size_t len = strlen(proxyuser) + 1;
1169 char *proxyauth, *proxyauthenc = NULL;
1170
1171 if (proxypass != NULL)
1172 len += strlen(proxypass);
1173 proxyauth = OPENSSL_malloc(len + 1);
1174 if (proxyauth == NULL)
1175 goto end;
1176 if (BIO_snprintf(proxyauth, len + 1, "%s:%s", proxyuser,
1177 proxypass != NULL ? proxypass : "") != (int)len)
1178 goto proxy_end;
1179 proxyauthenc = base64encode(proxyauth, len);
1180 if (proxyauthenc != NULL) {
1181 BIO_printf(fbio, "Proxy-Authorization: Basic %s\r\n", proxyauthenc);
1182 OPENSSL_clear_free(proxyauthenc, strlen(proxyauthenc));
1183 }
1184 proxy_end:
1185 OPENSSL_clear_free(proxyauth, len);
1186 if (proxyauthenc == NULL)
1187 goto end;
1188 }
1189
1190 /* Terminate the HTTP CONNECT request */
1191 BIO_printf(fbio, "\r\n");
1192
1193 for (;;) {
1194 if (BIO_flush(fbio) != 0)
1195 break;
1196 /* potentially needs to be retried if BIO is non-blocking */
1197 if (!BIO_should_retry(fbio))
1198 break;
1199 }
1200
1201 for (;;) {
1202 /* will not actually wait if timeout == 0 */
1203 rv = BIO_wait(fbio, max_time, 100 /* milliseconds */);
1204 if (rv <= 0) {
1205 BIO_printf(bio_err, "%s: HTTP CONNECT %s\n", prog,
1206 rv == 0 ? "timed out" : "failed waiting for data");
1207 goto end;
1208 }
1209
1210 /*-
1211 * The first line is the HTTP response.
1212 * According to RFC 7230, it is formatted exactly like this:
1213 * HTTP/d.d ddd Reason text\r\n
1214 */
1215 read_len = BIO_gets(fbio, mbuf, BUF_SIZE);
1216 /* the BIO may not block, so we must wait for the 1st line to come in */
1217 if (read_len < HTTP_LINE1_MINLEN)
1218 continue;
1219
1220 /* RFC 7231 4.3.6: any 2xx status code is valid */
1221 if (strncmp(mbuf, HTTP_PREFIX, strlen(HTTP_PREFIX)) != 0) {
1222 HTTPerr(0, HTTP_R_RESPONSE_PARSE_ERROR);
1223 BIO_printf(bio_err, "%s: HTTP CONNECT failed, non-HTTP response\n",
1224 prog);
1225 /* Wrong protocol, not even HTTP, so stop reading headers */
1226 goto end;
1227 }
1228 mbufp = mbuf + strlen(HTTP_PREFIX);
1229 if (strncmp(mbufp, HTTP_VERSION_PATT, strlen(HTTP_VERSION_PATT)) != 0) {
1230 HTTPerr(0, HTTP_R_RECEIVED_WRONG_HTTP_VERSION);
1231 BIO_printf(bio_err,
1232 "%s: HTTP CONNECT failed, bad HTTP version %.*s\n",
1233 prog, HTTP_VERSION_STR_LEN, mbufp);
1234 goto end;
1235 }
1236 mbufp += HTTP_VERSION_STR_LEN;
1237 if (strncmp(mbufp, " 2", strlen(" 2")) != 0) {
1238 mbufp += 1;
1239 /* chop any trailing whitespace */
1240 while (read_len > 0 && ossl_isspace(mbuf[read_len - 1]))
1241 read_len--;
1242 mbuf[read_len] = '\0';
1243 HTTPerr(0, HTTP_R_CONNECT_FAILURE);
1244 ERR_add_error_data(2, "Reason=", mbufp);
1245 BIO_printf(bio_err, "%s: HTTP CONNECT failed, Reason=%s\n",
1246 prog, mbufp);
1247 goto end;
1248 }
1249 ret = 1;
1250 break;
1251 }
1252
1253 /* Read past all following headers */
1254 do {
1255 /*
1256 * TODO: This does not necessarily catch the case when the full
1257 * HTTP response came in in more than a single TCP message.
1258 */
1259 read_len = BIO_gets(fbio, mbuf, BUF_SIZE);
1260 } while (read_len > 2);
1261
1262 end:
1263 if (fbio != NULL) {
1264 (void)BIO_flush(fbio);
1265 BIO_pop(fbio);
1266 BIO_free(fbio);
1267 }
1268 OPENSSL_free(mbuf);
1269 return ret;
1270 #undef BUF_SIZE
1271 }