source: EcnlProtoTool/trunk/openssl-1.1.0e/crypto/bio/bss_bio.c@ 331

Last change on this file since 331 was 331, checked in by coas-nagasima, 6 years ago

prototoolに関連するプロジェクトをnewlibからmuslを使うよう変更・更新
ntshellをnewlibの下位の実装から、muslのsyscallの実装に変更・更新
以下のOSSをアップデート
・mruby-1.3.0
・musl-1.1.18
・onigmo-6.1.3
・tcc-0.9.27
以下のOSSを追加
・openssl-1.1.0e
・curl-7.57.0
・zlib-1.2.11
以下のmrbgemsを追加
・iij/mruby-digest
・iij/mruby-env
・iij/mruby-errno
・iij/mruby-iijson
・iij/mruby-ipaddr
・iij/mruby-mock
・iij/mruby-require
・iij/mruby-tls-openssl

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  • Property svn:mime-type set to text/x-csrc
File size: 18.4 KB
Line 
1/*
2 * Copyright 1999-2016 The OpenSSL Project Authors. All Rights Reserved.
3 *
4 * Licensed under the OpenSSL license (the "License"). You may not use
5 * this file except in compliance with the License. You can obtain a copy
6 * in the file LICENSE in the source distribution or at
7 * https://www.openssl.org/source/license.html
8 */
9
10/*
11 * Special method for a BIO where the other endpoint is also a BIO of this
12 * kind, handled by the same thread (i.e. the "peer" is actually ourselves,
13 * wearing a different hat). Such "BIO pairs" are mainly for using the SSL
14 * library with I/O interfaces for which no specific BIO method is available.
15 * See ssl/ssltest.c for some hints on how this can be used.
16 */
17
18#include <assert.h>
19#include <limits.h>
20#include <stdlib.h>
21#include <string.h>
22
23#include "bio_lcl.h"
24#include <openssl/err.h>
25#include <openssl/crypto.h>
26
27#include "e_os.h"
28
29static int bio_new(BIO *bio);
30static int bio_free(BIO *bio);
31static int bio_read(BIO *bio, char *buf, int size);
32static int bio_write(BIO *bio, const char *buf, int num);
33static long bio_ctrl(BIO *bio, int cmd, long num, void *ptr);
34static int bio_puts(BIO *bio, const char *str);
35
36static int bio_make_pair(BIO *bio1, BIO *bio2);
37static void bio_destroy_pair(BIO *bio);
38
39static const BIO_METHOD methods_biop = {
40 BIO_TYPE_BIO,
41 "BIO pair",
42 bio_write,
43 bio_read,
44 bio_puts,
45 NULL /* no bio_gets */ ,
46 bio_ctrl,
47 bio_new,
48 bio_free,
49 NULL /* no bio_callback_ctrl */
50};
51
52const BIO_METHOD *BIO_s_bio(void)
53{
54 return &methods_biop;
55}
56
57struct bio_bio_st {
58 BIO *peer; /* NULL if buf == NULL. If peer != NULL, then
59 * peer->ptr is also a bio_bio_st, and its
60 * "peer" member points back to us. peer !=
61 * NULL iff init != 0 in the BIO. */
62 /* This is for what we write (i.e. reading uses peer's struct): */
63 int closed; /* valid iff peer != NULL */
64 size_t len; /* valid iff buf != NULL; 0 if peer == NULL */
65 size_t offset; /* valid iff buf != NULL; 0 if len == 0 */
66 size_t size;
67 char *buf; /* "size" elements (if != NULL) */
68 size_t request; /* valid iff peer != NULL; 0 if len != 0,
69 * otherwise set by peer to number of bytes
70 * it (unsuccessfully) tried to read, never
71 * more than buffer space (size-len)
72 * warrants. */
73};
74
75static int bio_new(BIO *bio)
76{
77 struct bio_bio_st *b = OPENSSL_zalloc(sizeof(*b));
78
79 if (b == NULL)
80 return 0;
81
82 /* enough for one TLS record (just a default) */
83 b->size = 17 * 1024;
84
85 bio->ptr = b;
86 return 1;
87}
88
89static int bio_free(BIO *bio)
90{
91 struct bio_bio_st *b;
92
93 if (bio == NULL)
94 return 0;
95 b = bio->ptr;
96
97 assert(b != NULL);
98
99 if (b->peer)
100 bio_destroy_pair(bio);
101
102 OPENSSL_free(b->buf);
103 OPENSSL_free(b);
104
105 return 1;
106}
107
108static int bio_read(BIO *bio, char *buf, int size_)
109{
110 size_t size = size_;
111 size_t rest;
112 struct bio_bio_st *b, *peer_b;
113
114 BIO_clear_retry_flags(bio);
115
116 if (!bio->init)
117 return 0;
118
119 b = bio->ptr;
120 assert(b != NULL);
121 assert(b->peer != NULL);
122 peer_b = b->peer->ptr;
123 assert(peer_b != NULL);
124 assert(peer_b->buf != NULL);
125
126 peer_b->request = 0; /* will be set in "retry_read" situation */
127
128 if (buf == NULL || size == 0)
129 return 0;
130
131 if (peer_b->len == 0) {
132 if (peer_b->closed)
133 return 0; /* writer has closed, and no data is left */
134 else {
135 BIO_set_retry_read(bio); /* buffer is empty */
136 if (size <= peer_b->size)
137 peer_b->request = size;
138 else
139 /*
140 * don't ask for more than the peer can deliver in one write
141 */
142 peer_b->request = peer_b->size;
143 return -1;
144 }
145 }
146
147 /* we can read */
148 if (peer_b->len < size)
149 size = peer_b->len;
150
151 /* now read "size" bytes */
152
153 rest = size;
154
155 assert(rest > 0);
156 do { /* one or two iterations */
157 size_t chunk;
158
159 assert(rest <= peer_b->len);
160 if (peer_b->offset + rest <= peer_b->size)
161 chunk = rest;
162 else
163 /* wrap around ring buffer */
164 chunk = peer_b->size - peer_b->offset;
165 assert(peer_b->offset + chunk <= peer_b->size);
166
167 memcpy(buf, peer_b->buf + peer_b->offset, chunk);
168
169 peer_b->len -= chunk;
170 if (peer_b->len) {
171 peer_b->offset += chunk;
172 assert(peer_b->offset <= peer_b->size);
173 if (peer_b->offset == peer_b->size)
174 peer_b->offset = 0;
175 buf += chunk;
176 } else {
177 /* buffer now empty, no need to advance "buf" */
178 assert(chunk == rest);
179 peer_b->offset = 0;
180 }
181 rest -= chunk;
182 }
183 while (rest);
184
185 return size;
186}
187
188/*-
189 * non-copying interface: provide pointer to available data in buffer
190 * bio_nread0: return number of available bytes
191 * bio_nread: also advance index
192 * (example usage: bio_nread0(), read from buffer, bio_nread()
193 * or just bio_nread(), read from buffer)
194 */
195/*
196 * WARNING: The non-copying interface is largely untested as of yet and may
197 * contain bugs.
198 */
199static ossl_ssize_t bio_nread0(BIO *bio, char **buf)
200{
201 struct bio_bio_st *b, *peer_b;
202 ossl_ssize_t num;
203
204 BIO_clear_retry_flags(bio);
205
206 if (!bio->init)
207 return 0;
208
209 b = bio->ptr;
210 assert(b != NULL);
211 assert(b->peer != NULL);
212 peer_b = b->peer->ptr;
213 assert(peer_b != NULL);
214 assert(peer_b->buf != NULL);
215
216 peer_b->request = 0;
217
218 if (peer_b->len == 0) {
219 char dummy;
220
221 /* avoid code duplication -- nothing available for reading */
222 return bio_read(bio, &dummy, 1); /* returns 0 or -1 */
223 }
224
225 num = peer_b->len;
226 if (peer_b->size < peer_b->offset + num)
227 /* no ring buffer wrap-around for non-copying interface */
228 num = peer_b->size - peer_b->offset;
229 assert(num > 0);
230
231 if (buf != NULL)
232 *buf = peer_b->buf + peer_b->offset;
233 return num;
234}
235
236static ossl_ssize_t bio_nread(BIO *bio, char **buf, size_t num_)
237{
238 struct bio_bio_st *b, *peer_b;
239 ossl_ssize_t num, available;
240
241 if (num_ > OSSL_SSIZE_MAX)
242 num = OSSL_SSIZE_MAX;
243 else
244 num = (ossl_ssize_t) num_;
245
246 available = bio_nread0(bio, buf);
247 if (num > available)
248 num = available;
249 if (num <= 0)
250 return num;
251
252 b = bio->ptr;
253 peer_b = b->peer->ptr;
254
255 peer_b->len -= num;
256 if (peer_b->len) {
257 peer_b->offset += num;
258 assert(peer_b->offset <= peer_b->size);
259 if (peer_b->offset == peer_b->size)
260 peer_b->offset = 0;
261 } else
262 peer_b->offset = 0;
263
264 return num;
265}
266
267static int bio_write(BIO *bio, const char *buf, int num_)
268{
269 size_t num = num_;
270 size_t rest;
271 struct bio_bio_st *b;
272
273 BIO_clear_retry_flags(bio);
274
275 if (!bio->init || buf == NULL || num == 0)
276 return 0;
277
278 b = bio->ptr;
279 assert(b != NULL);
280 assert(b->peer != NULL);
281 assert(b->buf != NULL);
282
283 b->request = 0;
284 if (b->closed) {
285 /* we already closed */
286 BIOerr(BIO_F_BIO_WRITE, BIO_R_BROKEN_PIPE);
287 return -1;
288 }
289
290 assert(b->len <= b->size);
291
292 if (b->len == b->size) {
293 BIO_set_retry_write(bio); /* buffer is full */
294 return -1;
295 }
296
297 /* we can write */
298 if (num > b->size - b->len)
299 num = b->size - b->len;
300
301 /* now write "num" bytes */
302
303 rest = num;
304
305 assert(rest > 0);
306 do { /* one or two iterations */
307 size_t write_offset;
308 size_t chunk;
309
310 assert(b->len + rest <= b->size);
311
312 write_offset = b->offset + b->len;
313 if (write_offset >= b->size)
314 write_offset -= b->size;
315 /* b->buf[write_offset] is the first byte we can write to. */
316
317 if (write_offset + rest <= b->size)
318 chunk = rest;
319 else
320 /* wrap around ring buffer */
321 chunk = b->size - write_offset;
322
323 memcpy(b->buf + write_offset, buf, chunk);
324
325 b->len += chunk;
326
327 assert(b->len <= b->size);
328
329 rest -= chunk;
330 buf += chunk;
331 }
332 while (rest);
333
334 return num;
335}
336
337/*-
338 * non-copying interface: provide pointer to region to write to
339 * bio_nwrite0: check how much space is available
340 * bio_nwrite: also increase length
341 * (example usage: bio_nwrite0(), write to buffer, bio_nwrite()
342 * or just bio_nwrite(), write to buffer)
343 */
344static ossl_ssize_t bio_nwrite0(BIO *bio, char **buf)
345{
346 struct bio_bio_st *b;
347 size_t num;
348 size_t write_offset;
349
350 BIO_clear_retry_flags(bio);
351
352 if (!bio->init)
353 return 0;
354
355 b = bio->ptr;
356 assert(b != NULL);
357 assert(b->peer != NULL);
358 assert(b->buf != NULL);
359
360 b->request = 0;
361 if (b->closed) {
362 BIOerr(BIO_F_BIO_NWRITE0, BIO_R_BROKEN_PIPE);
363 return -1;
364 }
365
366 assert(b->len <= b->size);
367
368 if (b->len == b->size) {
369 BIO_set_retry_write(bio);
370 return -1;
371 }
372
373 num = b->size - b->len;
374 write_offset = b->offset + b->len;
375 if (write_offset >= b->size)
376 write_offset -= b->size;
377 if (write_offset + num > b->size)
378 /*
379 * no ring buffer wrap-around for non-copying interface (to fulfil
380 * the promise by BIO_ctrl_get_write_guarantee, BIO_nwrite may have
381 * to be called twice)
382 */
383 num = b->size - write_offset;
384
385 if (buf != NULL)
386 *buf = b->buf + write_offset;
387 assert(write_offset + num <= b->size);
388
389 return num;
390}
391
392static ossl_ssize_t bio_nwrite(BIO *bio, char **buf, size_t num_)
393{
394 struct bio_bio_st *b;
395 ossl_ssize_t num, space;
396
397 if (num_ > OSSL_SSIZE_MAX)
398 num = OSSL_SSIZE_MAX;
399 else
400 num = (ossl_ssize_t) num_;
401
402 space = bio_nwrite0(bio, buf);
403 if (num > space)
404 num = space;
405 if (num <= 0)
406 return num;
407 b = bio->ptr;
408 assert(b != NULL);
409 b->len += num;
410 assert(b->len <= b->size);
411
412 return num;
413}
414
415static long bio_ctrl(BIO *bio, int cmd, long num, void *ptr)
416{
417 long ret;
418 struct bio_bio_st *b = bio->ptr;
419
420 assert(b != NULL);
421
422 switch (cmd) {
423 /* specific CTRL codes */
424
425 case BIO_C_SET_WRITE_BUF_SIZE:
426 if (b->peer) {
427 BIOerr(BIO_F_BIO_CTRL, BIO_R_IN_USE);
428 ret = 0;
429 } else if (num == 0) {
430 BIOerr(BIO_F_BIO_CTRL, BIO_R_INVALID_ARGUMENT);
431 ret = 0;
432 } else {
433 size_t new_size = num;
434
435 if (b->size != new_size) {
436 OPENSSL_free(b->buf);
437 b->buf = NULL;
438 b->size = new_size;
439 }
440 ret = 1;
441 }
442 break;
443
444 case BIO_C_GET_WRITE_BUF_SIZE:
445 ret = (long)b->size;
446 break;
447
448 case BIO_C_MAKE_BIO_PAIR:
449 {
450 BIO *other_bio = ptr;
451
452 if (bio_make_pair(bio, other_bio))
453 ret = 1;
454 else
455 ret = 0;
456 }
457 break;
458
459 case BIO_C_DESTROY_BIO_PAIR:
460 /*
461 * Affects both BIOs in the pair -- call just once! Or let
462 * BIO_free(bio1); BIO_free(bio2); do the job.
463 */
464 bio_destroy_pair(bio);
465 ret = 1;
466 break;
467
468 case BIO_C_GET_WRITE_GUARANTEE:
469 /*
470 * How many bytes can the caller feed to the next write without
471 * having to keep any?
472 */
473 if (b->peer == NULL || b->closed)
474 ret = 0;
475 else
476 ret = (long)b->size - b->len;
477 break;
478
479 case BIO_C_GET_READ_REQUEST:
480 /*
481 * If the peer unsuccessfully tried to read, how many bytes were
482 * requested? (As with BIO_CTRL_PENDING, that number can usually be
483 * treated as boolean.)
484 */
485 ret = (long)b->request;
486 break;
487
488 case BIO_C_RESET_READ_REQUEST:
489 /*
490 * Reset request. (Can be useful after read attempts at the other
491 * side that are meant to be non-blocking, e.g. when probing SSL_read
492 * to see if any data is available.)
493 */
494 b->request = 0;
495 ret = 1;
496 break;
497
498 case BIO_C_SHUTDOWN_WR:
499 /* similar to shutdown(..., SHUT_WR) */
500 b->closed = 1;
501 ret = 1;
502 break;
503
504 case BIO_C_NREAD0:
505 /* prepare for non-copying read */
506 ret = (long)bio_nread0(bio, ptr);
507 break;
508
509 case BIO_C_NREAD:
510 /* non-copying read */
511 ret = (long)bio_nread(bio, ptr, (size_t)num);
512 break;
513
514 case BIO_C_NWRITE0:
515 /* prepare for non-copying write */
516 ret = (long)bio_nwrite0(bio, ptr);
517 break;
518
519 case BIO_C_NWRITE:
520 /* non-copying write */
521 ret = (long)bio_nwrite(bio, ptr, (size_t)num);
522 break;
523
524 /* standard CTRL codes follow */
525
526 case BIO_CTRL_RESET:
527 if (b->buf != NULL) {
528 b->len = 0;
529 b->offset = 0;
530 }
531 ret = 0;
532 break;
533
534 case BIO_CTRL_GET_CLOSE:
535 ret = bio->shutdown;
536 break;
537
538 case BIO_CTRL_SET_CLOSE:
539 bio->shutdown = (int)num;
540 ret = 1;
541 break;
542
543 case BIO_CTRL_PENDING:
544 if (b->peer != NULL) {
545 struct bio_bio_st *peer_b = b->peer->ptr;
546
547 ret = (long)peer_b->len;
548 } else
549 ret = 0;
550 break;
551
552 case BIO_CTRL_WPENDING:
553 if (b->buf != NULL)
554 ret = (long)b->len;
555 else
556 ret = 0;
557 break;
558
559 case BIO_CTRL_DUP:
560 /* See BIO_dup_chain for circumstances we have to expect. */
561 {
562 BIO *other_bio = ptr;
563 struct bio_bio_st *other_b;
564
565 assert(other_bio != NULL);
566 other_b = other_bio->ptr;
567 assert(other_b != NULL);
568
569 assert(other_b->buf == NULL); /* other_bio is always fresh */
570
571 other_b->size = b->size;
572 }
573
574 ret = 1;
575 break;
576
577 case BIO_CTRL_FLUSH:
578 ret = 1;
579 break;
580
581 case BIO_CTRL_EOF:
582 if (b->peer != NULL) {
583 struct bio_bio_st *peer_b = b->peer->ptr;
584
585 if (peer_b->len == 0 && peer_b->closed)
586 ret = 1;
587 else
588 ret = 0;
589 } else {
590 ret = 1;
591 }
592 break;
593
594 default:
595 ret = 0;
596 }
597 return ret;
598}
599
600static int bio_puts(BIO *bio, const char *str)
601{
602 return bio_write(bio, str, strlen(str));
603}
604
605static int bio_make_pair(BIO *bio1, BIO *bio2)
606{
607 struct bio_bio_st *b1, *b2;
608
609 assert(bio1 != NULL);
610 assert(bio2 != NULL);
611
612 b1 = bio1->ptr;
613 b2 = bio2->ptr;
614
615 if (b1->peer != NULL || b2->peer != NULL) {
616 BIOerr(BIO_F_BIO_MAKE_PAIR, BIO_R_IN_USE);
617 return 0;
618 }
619
620 if (b1->buf == NULL) {
621 b1->buf = OPENSSL_malloc(b1->size);
622 if (b1->buf == NULL) {
623 BIOerr(BIO_F_BIO_MAKE_PAIR, ERR_R_MALLOC_FAILURE);
624 return 0;
625 }
626 b1->len = 0;
627 b1->offset = 0;
628 }
629
630 if (b2->buf == NULL) {
631 b2->buf = OPENSSL_malloc(b2->size);
632 if (b2->buf == NULL) {
633 BIOerr(BIO_F_BIO_MAKE_PAIR, ERR_R_MALLOC_FAILURE);
634 return 0;
635 }
636 b2->len = 0;
637 b2->offset = 0;
638 }
639
640 b1->peer = bio2;
641 b1->closed = 0;
642 b1->request = 0;
643 b2->peer = bio1;
644 b2->closed = 0;
645 b2->request = 0;
646
647 bio1->init = 1;
648 bio2->init = 1;
649
650 return 1;
651}
652
653static void bio_destroy_pair(BIO *bio)
654{
655 struct bio_bio_st *b = bio->ptr;
656
657 if (b != NULL) {
658 BIO *peer_bio = b->peer;
659
660 if (peer_bio != NULL) {
661 struct bio_bio_st *peer_b = peer_bio->ptr;
662
663 assert(peer_b != NULL);
664 assert(peer_b->peer == bio);
665
666 peer_b->peer = NULL;
667 peer_bio->init = 0;
668 assert(peer_b->buf != NULL);
669 peer_b->len = 0;
670 peer_b->offset = 0;
671
672 b->peer = NULL;
673 bio->init = 0;
674 assert(b->buf != NULL);
675 b->len = 0;
676 b->offset = 0;
677 }
678 }
679}
680
681/* Exported convenience functions */
682int BIO_new_bio_pair(BIO **bio1_p, size_t writebuf1,
683 BIO **bio2_p, size_t writebuf2)
684{
685 BIO *bio1 = NULL, *bio2 = NULL;
686 long r;
687 int ret = 0;
688
689 bio1 = BIO_new(BIO_s_bio());
690 if (bio1 == NULL)
691 goto err;
692 bio2 = BIO_new(BIO_s_bio());
693 if (bio2 == NULL)
694 goto err;
695
696 if (writebuf1) {
697 r = BIO_set_write_buf_size(bio1, writebuf1);
698 if (!r)
699 goto err;
700 }
701 if (writebuf2) {
702 r = BIO_set_write_buf_size(bio2, writebuf2);
703 if (!r)
704 goto err;
705 }
706
707 r = BIO_make_bio_pair(bio1, bio2);
708 if (!r)
709 goto err;
710 ret = 1;
711
712 err:
713 if (ret == 0) {
714 BIO_free(bio1);
715 bio1 = NULL;
716 BIO_free(bio2);
717 bio2 = NULL;
718 }
719
720 *bio1_p = bio1;
721 *bio2_p = bio2;
722 return ret;
723}
724
725size_t BIO_ctrl_get_write_guarantee(BIO *bio)
726{
727 return BIO_ctrl(bio, BIO_C_GET_WRITE_GUARANTEE, 0, NULL);
728}
729
730size_t BIO_ctrl_get_read_request(BIO *bio)
731{
732 return BIO_ctrl(bio, BIO_C_GET_READ_REQUEST, 0, NULL);
733}
734
735int BIO_ctrl_reset_read_request(BIO *bio)
736{
737 return (BIO_ctrl(bio, BIO_C_RESET_READ_REQUEST, 0, NULL) != 0);
738}
739
740/*
741 * BIO_nread0/nread/nwrite0/nwrite are available only for BIO pairs for now
742 * (conceivably some other BIOs could allow non-copying reads and writes
743 * too.)
744 */
745int BIO_nread0(BIO *bio, char **buf)
746{
747 long ret;
748
749 if (!bio->init) {
750 BIOerr(BIO_F_BIO_NREAD0, BIO_R_UNINITIALIZED);
751 return -2;
752 }
753
754 ret = BIO_ctrl(bio, BIO_C_NREAD0, 0, buf);
755 if (ret > INT_MAX)
756 return INT_MAX;
757 else
758 return (int)ret;
759}
760
761int BIO_nread(BIO *bio, char **buf, int num)
762{
763 int ret;
764
765 if (!bio->init) {
766 BIOerr(BIO_F_BIO_NREAD, BIO_R_UNINITIALIZED);
767 return -2;
768 }
769
770 ret = (int)BIO_ctrl(bio, BIO_C_NREAD, num, buf);
771 if (ret > 0)
772 bio->num_read += ret;
773 return ret;
774}
775
776int BIO_nwrite0(BIO *bio, char **buf)
777{
778 long ret;
779
780 if (!bio->init) {
781 BIOerr(BIO_F_BIO_NWRITE0, BIO_R_UNINITIALIZED);
782 return -2;
783 }
784
785 ret = BIO_ctrl(bio, BIO_C_NWRITE0, 0, buf);
786 if (ret > INT_MAX)
787 return INT_MAX;
788 else
789 return (int)ret;
790}
791
792int BIO_nwrite(BIO *bio, char **buf, int num)
793{
794 int ret;
795
796 if (!bio->init) {
797 BIOerr(BIO_F_BIO_NWRITE, BIO_R_UNINITIALIZED);
798 return -2;
799 }
800
801 ret = BIO_ctrl(bio, BIO_C_NWRITE, num, buf);
802 if (ret > 0)
803 bio->num_write += ret;
804 return ret;
805}
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