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d02b48c6 1/* crypto/evp/bio_b64.c */
58964a49 2/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
d02b48c6
RE
3 * All rights reserved.
4 *
5 * This package is an SSL implementation written
6 * by Eric Young (eay@cryptsoft.com).
7 * The implementation was written so as to conform with Netscapes SSL.
0f113f3e 8 *
d02b48c6
RE
9 * This library is free for commercial and non-commercial use as long as
10 * the following conditions are aheared to. The following conditions
11 * apply to all code found in this distribution, be it the RC4, RSA,
12 * lhash, DES, etc., code; not just the SSL code. The SSL documentation
13 * included with this distribution is covered by the same copyright terms
14 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
0f113f3e 15 *
d02b48c6
RE
16 * Copyright remains Eric Young's, and as such any Copyright notices in
17 * the code are not to be removed.
18 * If this package is used in a product, Eric Young should be given attribution
19 * as the author of the parts of the library used.
20 * This can be in the form of a textual message at program startup or
21 * in documentation (online or textual) provided with the package.
0f113f3e 22 *
d02b48c6
RE
23 * Redistribution and use in source and binary forms, with or without
24 * modification, are permitted provided that the following conditions
25 * are met:
26 * 1. Redistributions of source code must retain the copyright
27 * notice, this list of conditions and the following disclaimer.
28 * 2. Redistributions in binary form must reproduce the above copyright
29 * notice, this list of conditions and the following disclaimer in the
30 * documentation and/or other materials provided with the distribution.
31 * 3. All advertising materials mentioning features or use of this software
32 * must display the following acknowledgement:
33 * "This product includes cryptographic software written by
34 * Eric Young (eay@cryptsoft.com)"
35 * The word 'cryptographic' can be left out if the rouines from the library
36 * being used are not cryptographic related :-).
0f113f3e 37 * 4. If you include any Windows specific code (or a derivative thereof) from
d02b48c6
RE
38 * the apps directory (application code) you must include an acknowledgement:
39 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
0f113f3e 40 *
d02b48c6
RE
41 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
42 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
44 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
45 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
46 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
47 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
49 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
50 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
51 * SUCH DAMAGE.
0f113f3e 52 *
d02b48c6
RE
53 * The licence and distribution terms for any publically available version or
54 * derivative of this code cannot be changed. i.e. this code cannot simply be
55 * copied and put under another distribution licence
56 * [including the GNU Public Licence.]
57 */
58
59#include <stdio.h>
60#include <errno.h>
b39fc560 61#include "internal/cryptlib.h"
ec577822
BM
62#include <openssl/buffer.h>
63#include <openssl/evp.h>
d02b48c6 64
0e1c0612
UM
65static int b64_write(BIO *h, const char *buf, int num);
66static int b64_read(BIO *h, char *buf, int size);
cb877ccb 67static int b64_puts(BIO *h, const char *str);
0f113f3e
MC
68/*
69 * static int b64_gets(BIO *h, char *str, int size);
70 */
0e1c0612 71static long b64_ctrl(BIO *h, int cmd, long arg1, void *arg2);
d02b48c6
RE
72static int b64_new(BIO *h);
73static int b64_free(BIO *data);
0f113f3e
MC
74static long b64_callback_ctrl(BIO *h, int cmd, bio_info_cb *fp);
75#define B64_BLOCK_SIZE 1024
76#define B64_BLOCK_SIZE2 768
77#define B64_NONE 0
78#define B64_ENCODE 1
79#define B64_DECODE 2
80
81typedef struct b64_struct {
82 /*
83 * BIO *bio; moved to the BIO structure
84 */
85 int buf_len;
86 int buf_off;
87 int tmp_len; /* used to find the start when decoding */
88 int tmp_nl; /* If true, scan until '\n' */
89 int encode;
90 int start; /* have we started decoding yet? */
91 int cont; /* <= 0 when finished */
92 EVP_ENCODE_CTX base64;
93 char buf[EVP_ENCODE_LENGTH(B64_BLOCK_SIZE) + 10];
94 char tmp[B64_BLOCK_SIZE];
95} BIO_B64_CTX;
96
97static BIO_METHOD methods_b64 = {
98 BIO_TYPE_BASE64, "base64 encoding",
99 b64_write,
100 b64_read,
101 b64_puts,
102 NULL, /* b64_gets, */
103 b64_ctrl,
104 b64_new,
105 b64_free,
106 b64_callback_ctrl,
107};
d02b48c6 108
6b691a5c 109BIO_METHOD *BIO_f_base64(void)
0f113f3e
MC
110{
111 return (&methods_b64);
112}
d02b48c6 113
6b691a5c 114static int b64_new(BIO *bi)
0f113f3e
MC
115{
116 BIO_B64_CTX *ctx;
117
64b25758 118 ctx = OPENSSL_zalloc(sizeof(*ctx));
0f113f3e
MC
119 if (ctx == NULL)
120 return (0);
121
0f113f3e
MC
122 ctx->cont = 1;
123 ctx->start = 1;
0f113f3e
MC
124 bi->init = 1;
125 bi->ptr = (char *)ctx;
126 bi->flags = 0;
127 bi->num = 0;
128 return (1);
129}
d02b48c6 130
6b691a5c 131static int b64_free(BIO *a)
0f113f3e
MC
132{
133 if (a == NULL)
134 return (0);
135 OPENSSL_free(a->ptr);
136 a->ptr = NULL;
137 a->init = 0;
138 a->flags = 0;
139 return (1);
140}
141
6b691a5c 142static int b64_read(BIO *b, char *out, int outl)
0f113f3e
MC
143{
144 int ret = 0, i, ii, j, k, x, n, num, ret_code = 0;
145 BIO_B64_CTX *ctx;
146 unsigned char *p, *q;
147
148 if (out == NULL)
149 return (0);
150 ctx = (BIO_B64_CTX *)b->ptr;
151
152 if ((ctx == NULL) || (b->next_bio == NULL))
153 return (0);
154
155 BIO_clear_retry_flags(b);
156
157 if (ctx->encode != B64_DECODE) {
158 ctx->encode = B64_DECODE;
159 ctx->buf_len = 0;
160 ctx->buf_off = 0;
161 ctx->tmp_len = 0;
162 EVP_DecodeInit(&(ctx->base64));
163 }
164
165 /* First check if there are bytes decoded/encoded */
166 if (ctx->buf_len > 0) {
167 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
168 i = ctx->buf_len - ctx->buf_off;
169 if (i > outl)
170 i = outl;
171 OPENSSL_assert(ctx->buf_off + i < (int)sizeof(ctx->buf));
172 memcpy(out, &(ctx->buf[ctx->buf_off]), i);
173 ret = i;
174 out += i;
175 outl -= i;
176 ctx->buf_off += i;
177 if (ctx->buf_len == ctx->buf_off) {
178 ctx->buf_len = 0;
179 ctx->buf_off = 0;
180 }
181 }
182
183 /*
184 * At this point, we have room of outl bytes and an empty buffer, so we
185 * should read in some more.
186 */
187
188 ret_code = 0;
189 while (outl > 0) {
190 if (ctx->cont <= 0)
191 break;
192
193 i = BIO_read(b->next_bio, &(ctx->tmp[ctx->tmp_len]),
194 B64_BLOCK_SIZE - ctx->tmp_len);
195
196 if (i <= 0) {
197 ret_code = i;
198
199 /* Should we continue next time we are called? */
200 if (!BIO_should_retry(b->next_bio)) {
201 ctx->cont = i;
202 /* If buffer empty break */
203 if (ctx->tmp_len == 0)
204 break;
205 /* Fall through and process what we have */
206 else
207 i = 0;
208 }
209 /* else we retry and add more data to buffer */
210 else
211 break;
212 }
213 i += ctx->tmp_len;
214 ctx->tmp_len = i;
215
216 /*
217 * We need to scan, a line at a time until we have a valid line if we
218 * are starting.
219 */
220 if (ctx->start && (BIO_get_flags(b) & BIO_FLAGS_BASE64_NO_NL)) {
221 /* ctx->start=1; */
222 ctx->tmp_len = 0;
223 } else if (ctx->start) {
224 q = p = (unsigned char *)ctx->tmp;
225 num = 0;
226 for (j = 0; j < i; j++) {
227 if (*(q++) != '\n')
228 continue;
229
230 /*
231 * due to a previous very long line, we need to keep on
232 * scanning for a '\n' before we even start looking for
233 * base64 encoded stuff.
234 */
235 if (ctx->tmp_nl) {
236 p = q;
237 ctx->tmp_nl = 0;
238 continue;
239 }
240
241 k = EVP_DecodeUpdate(&(ctx->base64),
242 (unsigned char *)ctx->buf,
243 &num, p, q - p);
244 if ((k <= 0) && (num == 0) && (ctx->start))
245 EVP_DecodeInit(&ctx->base64);
246 else {
247 if (p != (unsigned char *)
248 &(ctx->tmp[0])) {
249 i -= (p - (unsigned char *)
250 &(ctx->tmp[0]));
251 for (x = 0; x < i; x++)
252 ctx->tmp[x] = p[x];
253 }
254 EVP_DecodeInit(&ctx->base64);
255 ctx->start = 0;
256 break;
257 }
258 p = q;
259 }
260
261 /* we fell off the end without starting */
262 if ((j == i) && (num == 0)) {
263 /*
264 * Is this is one long chunk?, if so, keep on reading until a
265 * new line.
266 */
267 if (p == (unsigned char *)&(ctx->tmp[0])) {
268 /* Check buffer full */
269 if (i == B64_BLOCK_SIZE) {
270 ctx->tmp_nl = 1;
271 ctx->tmp_len = 0;
272 }
273 } else if (p != q) { /* finished on a '\n' */
274 n = q - p;
275 for (ii = 0; ii < n; ii++)
276 ctx->tmp[ii] = p[ii];
277 ctx->tmp_len = n;
278 }
279 /* else finished on a '\n' */
280 continue;
281 } else {
282 ctx->tmp_len = 0;
283 }
284 } else if ((i < B64_BLOCK_SIZE) && (ctx->cont > 0)) {
285 /*
286 * If buffer isn't full and we can retry then restart to read in
287 * more data.
288 */
289 continue;
290 }
291
292 if (BIO_get_flags(b) & BIO_FLAGS_BASE64_NO_NL) {
293 int z, jj;
58964a49 294
0f113f3e 295 jj = i & ~3; /* process per 4 */
0f113f3e
MC
296 z = EVP_DecodeBlock((unsigned char *)ctx->buf,
297 (unsigned char *)ctx->tmp, jj);
298 if (jj > 2) {
299 if (ctx->tmp[jj - 1] == '=') {
300 z--;
301 if (ctx->tmp[jj - 2] == '=')
302 z--;
303 }
304 }
305 /*
306 * z is now number of output bytes and jj is the number consumed
307 */
308 if (jj != i) {
309 memmove(ctx->tmp, &ctx->tmp[jj], i - jj);
310 ctx->tmp_len = i - jj;
311 }
312 ctx->buf_len = 0;
313 if (z > 0) {
314 ctx->buf_len = z;
315 }
316 i = z;
317 } else {
318 i = EVP_DecodeUpdate(&(ctx->base64),
319 (unsigned char *)ctx->buf, &ctx->buf_len,
320 (unsigned char *)ctx->tmp, i);
321 ctx->tmp_len = 0;
322 }
323 ctx->buf_off = 0;
324 if (i < 0) {
325 ret_code = 0;
326 ctx->buf_len = 0;
327 break;
328 }
329
330 if (ctx->buf_len <= outl)
331 i = ctx->buf_len;
332 else
333 i = outl;
334
335 memcpy(out, ctx->buf, i);
336 ret += i;
337 ctx->buf_off = i;
338 if (ctx->buf_off == ctx->buf_len) {
339 ctx->buf_len = 0;
340 ctx->buf_off = 0;
341 }
342 outl -= i;
343 out += i;
344 }
345 /* BIO_clear_retry_flags(b); */
346 BIO_copy_next_retry(b);
347 return ((ret == 0) ? ret_code : ret);
348}
d02b48c6 349
0e1c0612 350static int b64_write(BIO *b, const char *in, int inl)
0f113f3e
MC
351{
352 int ret = 0;
353 int n;
354 int i;
355 BIO_B64_CTX *ctx;
356
357 ctx = (BIO_B64_CTX *)b->ptr;
358 BIO_clear_retry_flags(b);
359
360 if (ctx->encode != B64_ENCODE) {
361 ctx->encode = B64_ENCODE;
362 ctx->buf_len = 0;
363 ctx->buf_off = 0;
364 ctx->tmp_len = 0;
365 EVP_EncodeInit(&(ctx->base64));
366 }
367
368 OPENSSL_assert(ctx->buf_off < (int)sizeof(ctx->buf));
369 OPENSSL_assert(ctx->buf_len <= (int)sizeof(ctx->buf));
370 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
371 n = ctx->buf_len - ctx->buf_off;
372 while (n > 0) {
373 i = BIO_write(b->next_bio, &(ctx->buf[ctx->buf_off]), n);
374 if (i <= 0) {
375 BIO_copy_next_retry(b);
376 return (i);
377 }
378 OPENSSL_assert(i <= n);
379 ctx->buf_off += i;
380 OPENSSL_assert(ctx->buf_off <= (int)sizeof(ctx->buf));
381 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
382 n -= i;
383 }
384 /* at this point all pending data has been written */
385 ctx->buf_off = 0;
386 ctx->buf_len = 0;
387
388 if ((in == NULL) || (inl <= 0))
389 return (0);
390
391 while (inl > 0) {
392 n = (inl > B64_BLOCK_SIZE) ? B64_BLOCK_SIZE : inl;
393
394 if (BIO_get_flags(b) & BIO_FLAGS_BASE64_NO_NL) {
395 if (ctx->tmp_len > 0) {
396 OPENSSL_assert(ctx->tmp_len <= 3);
397 n = 3 - ctx->tmp_len;
398 /*
399 * There's a theoretical possibility for this
400 */
401 if (n > inl)
402 n = inl;
403 memcpy(&(ctx->tmp[ctx->tmp_len]), in, n);
404 ctx->tmp_len += n;
405 ret += n;
406 if (ctx->tmp_len < 3)
407 break;
408 ctx->buf_len =
409 EVP_EncodeBlock((unsigned char *)ctx->buf,
410 (unsigned char *)ctx->tmp, ctx->tmp_len);
411 OPENSSL_assert(ctx->buf_len <= (int)sizeof(ctx->buf));
412 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
413 /*
414 * Since we're now done using the temporary buffer, the
415 * length should be 0'd
416 */
417 ctx->tmp_len = 0;
418 } else {
419 if (n < 3) {
420 memcpy(ctx->tmp, in, n);
421 ctx->tmp_len = n;
422 ret += n;
423 break;
424 }
425 n -= n % 3;
426 ctx->buf_len =
427 EVP_EncodeBlock((unsigned char *)ctx->buf,
428 (const unsigned char *)in, n);
429 OPENSSL_assert(ctx->buf_len <= (int)sizeof(ctx->buf));
430 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
431 ret += n;
432 }
433 } else {
434 EVP_EncodeUpdate(&(ctx->base64),
435 (unsigned char *)ctx->buf, &ctx->buf_len,
436 (unsigned char *)in, n);
437 OPENSSL_assert(ctx->buf_len <= (int)sizeof(ctx->buf));
438 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
439 ret += n;
440 }
441 inl -= n;
442 in += n;
443
444 ctx->buf_off = 0;
445 n = ctx->buf_len;
446 while (n > 0) {
447 i = BIO_write(b->next_bio, &(ctx->buf[ctx->buf_off]), n);
448 if (i <= 0) {
449 BIO_copy_next_retry(b);
450 return ((ret == 0) ? i : ret);
451 }
452 OPENSSL_assert(i <= n);
453 n -= i;
454 ctx->buf_off += i;
455 OPENSSL_assert(ctx->buf_off <= (int)sizeof(ctx->buf));
456 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
457 }
458 ctx->buf_len = 0;
459 ctx->buf_off = 0;
460 }
461 return (ret);
462}
d02b48c6 463
0e1c0612 464static long b64_ctrl(BIO *b, int cmd, long num, void *ptr)
0f113f3e
MC
465{
466 BIO_B64_CTX *ctx;
467 long ret = 1;
468 int i;
469
470 ctx = (BIO_B64_CTX *)b->ptr;
471
472 switch (cmd) {
473 case BIO_CTRL_RESET:
474 ctx->cont = 1;
475 ctx->start = 1;
476 ctx->encode = B64_NONE;
477 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
478 break;
479 case BIO_CTRL_EOF: /* More to read */
480 if (ctx->cont <= 0)
481 ret = 1;
482 else
483 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
484 break;
485 case BIO_CTRL_WPENDING: /* More to write in buffer */
486 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
487 ret = ctx->buf_len - ctx->buf_off;
488 if ((ret == 0) && (ctx->encode != B64_NONE)
489 && (ctx->base64.num != 0))
490 ret = 1;
491 else if (ret <= 0)
492 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
493 break;
494 case BIO_CTRL_PENDING: /* More to read in buffer */
495 OPENSSL_assert(ctx->buf_len >= ctx->buf_off);
496 ret = ctx->buf_len - ctx->buf_off;
497 if (ret <= 0)
498 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
499 break;
500 case BIO_CTRL_FLUSH:
501 /* do a final write */
502 again:
503 while (ctx->buf_len != ctx->buf_off) {
504 i = b64_write(b, NULL, 0);
505 if (i < 0)
506 return i;
507 }
508 if (BIO_get_flags(b) & BIO_FLAGS_BASE64_NO_NL) {
509 if (ctx->tmp_len != 0) {
510 ctx->buf_len = EVP_EncodeBlock((unsigned char *)ctx->buf,
511 (unsigned char *)ctx->tmp,
512 ctx->tmp_len);
513 ctx->buf_off = 0;
514 ctx->tmp_len = 0;
515 goto again;
516 }
517 } else if (ctx->encode != B64_NONE && ctx->base64.num != 0) {
518 ctx->buf_off = 0;
519 EVP_EncodeFinal(&(ctx->base64),
520 (unsigned char *)ctx->buf, &(ctx->buf_len));
521 /* push out the bytes */
522 goto again;
523 }
524 /* Finally flush the underlying BIO */
525 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
526 break;
527
528 case BIO_C_DO_STATE_MACHINE:
529 BIO_clear_retry_flags(b);
530 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
531 BIO_copy_next_retry(b);
532 break;
533
534 case BIO_CTRL_DUP:
535 break;
536 case BIO_CTRL_INFO:
537 case BIO_CTRL_GET:
538 case BIO_CTRL_SET:
539 default:
540 ret = BIO_ctrl(b->next_bio, cmd, num, ptr);
541 break;
542 }
543 return (ret);
544}
d02b48c6 545
13083215 546static long b64_callback_ctrl(BIO *b, int cmd, bio_info_cb *fp)
0f113f3e
MC
547{
548 long ret = 1;
549
550 if (b->next_bio == NULL)
551 return (0);
552 switch (cmd) {
553 default:
554 ret = BIO_callback_ctrl(b->next_bio, cmd, fp);
555 break;
556 }
557 return (ret);
558}
d3442bc7 559
cb877ccb 560static int b64_puts(BIO *b, const char *str)
0f113f3e
MC
561{
562 return b64_write(b, str, strlen(str));
563}