]>
git.saurik.com Git - apple/security.git/blob - AppleCSP/open_ssl/openssl/bn.h
2 * Copyright (c) 2000-2001 Apple Computer, Inc. All Rights Reserved.
4 * The contents of this file constitute Original Code as defined in and are
5 * subject to the Apple Public Source License Version 1.2 (the 'License').
6 * You may not use this file except in compliance with the License. Please obtain
7 * a copy of the License at http://www.apple.com/publicsource and read it before
10 * This Original Code and all software distributed under the License are
11 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER EXPRESS
12 * OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES, INCLUDING WITHOUT
13 * LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
14 * PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT. Please see the License for the
15 * specific language governing rights and limitations under the License.
20 /* Copyright (C) 1995-1997 Eric Young (eay@cryptsoft.com)
21 * All rights reserved.
23 * This package is an SSL implementation written
24 * by Eric Young (eay@cryptsoft.com).
25 * The implementation was written so as to conform with Netscapes SSL.
27 * This library is free for commercial and non-commercial use as long as
28 * the following conditions are aheared to. The following conditions
29 * apply to all code found in this distribution, be it the RC4, RSA,
30 * lhash, DES, etc., code; not just the SSL code. The SSL documentation
31 * included with this distribution is covered by the same copyright terms
32 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
34 * Copyright remains Eric Young's, and as such any Copyright notices in
35 * the code are not to be removed.
36 * If this package is used in a product, Eric Young should be given attribution
37 * as the author of the parts of the library used.
38 * This can be in the form of a textual message at program startup or
39 * in documentation (online or textual) provided with the package.
41 * Redistribution and use in source and binary forms, with or without
42 * modification, are permitted provided that the following conditions
44 * 1. Redistributions of source code must retain the copyright
45 * notice, this list of conditions and the following disclaimer.
46 * 2. Redistributions in binary form must reproduce the above copyright
47 * notice, this list of conditions and the following disclaimer in the
48 * documentation and/or other materials provided with the distribution.
49 * 3. All advertising materials mentioning features or use of this software
50 * must display the following acknowledgement:
51 * "This product includes cryptographic software written by
52 * Eric Young (eay@cryptsoft.com)"
53 * The word 'cryptographic' can be left out if the rouines from the library
54 * being used are not cryptographic related :-).
55 * 4. If you include any Windows specific code (or a derivative thereof) from
56 * the apps directory (application code) you must include an acknowledgement:
57 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
59 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
60 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
61 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
62 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
63 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
64 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
65 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
66 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
67 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
68 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
71 * The licence and distribution terms for any publically available version or
72 * derivative of this code cannot be changed. i.e. this code cannot simply be
73 * copied and put under another distribution licence
74 * [including the GNU Public Licence.]
81 #include <stdio.h> /* FILE */
83 #include <openssl/opensslconf.h>
90 #undef BN_LLONG /* experimental, so far... */
99 /* This next option uses the C libraries (2 word)/(1 word) function.
100 * If it is not defined, I use my C version (which is slower).
101 * The reason for this flag is that when the particular C compiler
102 * library routine is used, and the library is linked with a different
103 * compiler, the library is missing. This mostly happens when the
104 * library is built with gcc and then linked using normal cc. This would
105 * be a common occurrence because gcc normally produces code that is
106 * 2 times faster than system compilers for the big number stuff.
107 * For machines with only one compiler (or shared libraries), this should
108 * be on. Again this in only really a problem on machines
109 * using "long long's", are 32bit, and are not using my assembler code. */
110 #if defined(MSDOS) || defined(WINDOWS) || defined(WIN32) || defined(linux)
114 /* assuming long is 64bit - this is the DEC Alpha
115 * unsigned long long is only 64 bits :-(, don't define
116 * BN_LLONG for the DEC Alpha */
117 #ifdef SIXTY_FOUR_BIT_LONG
118 #define BN_ULLONG unsigned long long
119 #define BN_ULONG unsigned long
125 #define BN_MASK (0xffffffffffffffffffffffffffffffffLL)
126 #define BN_MASK2 (0xffffffffffffffffL)
127 #define BN_MASK2l (0xffffffffL)
128 #define BN_MASK2h (0xffffffff00000000L)
129 #define BN_MASK2h1 (0xffffffff80000000L)
130 #define BN_TBIT (0x8000000000000000L)
131 #define BN_DEC_CONV (10000000000000000000UL)
132 #define BN_DEC_FMT1 "%lu"
133 #define BN_DEC_FMT2 "%019lu"
134 #define BN_DEC_NUM 19
137 /* This is where the long long data type is 64 bits, but long is 32.
138 * For machines where there are 64bit registers, this is the mode to use.
139 * IRIX, on R4000 and above should use this mode, along with the relevant
140 * assembler code :-). Do NOT define BN_LLONG.
142 #ifdef SIXTY_FOUR_BIT
145 #define BN_ULONG unsigned long long
146 #define BN_LONG long long
151 #define BN_MASK2 (0xffffffffffffffffLL)
152 #define BN_MASK2l (0xffffffffL)
153 #define BN_MASK2h (0xffffffff00000000LL)
154 #define BN_MASK2h1 (0xffffffff80000000LL)
155 #define BN_TBIT (0x8000000000000000LL)
156 #define BN_DEC_CONV (10000000000000000000LL)
157 #define BN_DEC_FMT1 "%llu"
158 #define BN_DEC_FMT2 "%019llu"
159 #define BN_DEC_NUM 19
162 #ifdef THIRTY_TWO_BIT
163 #if defined(WIN32) && !defined(__GNUC__)
164 #define BN_ULLONG unsigned _int64
166 #define BN_ULLONG unsigned long long
168 #define BN_ULONG unsigned long
175 /* VC++ doesn't like the LL suffix */
176 #define BN_MASK (0xffffffffffffffffL)
178 #define BN_MASK (0xffffffffffffffffLL)
180 #define BN_MASK2 (0xffffffffL)
181 #define BN_MASK2l (0xffff)
182 #define BN_MASK2h1 (0xffff8000L)
183 #define BN_MASK2h (0xffff0000L)
184 #define BN_TBIT (0x80000000L)
185 #define BN_DEC_CONV (1000000000L)
186 #define BN_DEC_FMT1 "%lu"
187 #define BN_DEC_FMT2 "%09lu"
195 #define BN_ULLONG unsigned long
196 #define BN_ULONG unsigned short
197 #define BN_LONG short
202 #define BN_MASK (0xffffffff)
203 #define BN_MASK2 (0xffff)
204 #define BN_MASK2l (0xff)
205 #define BN_MASK2h1 (0xff80)
206 #define BN_MASK2h (0xff00)
207 #define BN_TBIT (0x8000)
208 #define BN_DEC_CONV (100000)
209 #define BN_DEC_FMT1 "%u"
210 #define BN_DEC_FMT2 "%05u"
218 #define BN_ULLONG unsigned short
219 #define BN_ULONG unsigned char
225 #define BN_MASK (0xffff)
226 #define BN_MASK2 (0xff)
227 #define BN_MASK2l (0xf)
228 #define BN_MASK2h1 (0xf8)
229 #define BN_MASK2h (0xf0)
230 #define BN_TBIT (0x80)
231 #define BN_DEC_CONV (100)
232 #define BN_DEC_FMT1 "%u"
233 #define BN_DEC_FMT2 "%02u"
237 #define BN_DEFAULT_BITS 1280
243 #define BN_FLG_MALLOCED 0x01
244 #define BN_FLG_STATIC_DATA 0x02
245 #define BN_FLG_FREE 0x8000 /* used for debuging */
246 #define BN_set_flags(b,n) ((b)->flags|=(n))
247 #define BN_get_flags(b,n) ((b)->flags&(n))
249 typedef struct bignum_st
251 BN_ULONG
*d
; /* Pointer to an array of 'BN_BITS2' bit chunks. */
252 int top
; /* Index of last used d +1. */
253 /* The next are internal book keeping for bn_expand. */
254 int max
; /* Size of the d array. */
255 int neg
; /* one if the number is negative */
259 /* Used for temp variables */
260 #define BN_CTX_NUM 12
261 #define BN_CTX_NUM_POS 12
262 typedef struct bignum_ctx
265 BIGNUM bn
[BN_CTX_NUM
];
268 int pos
[BN_CTX_NUM_POS
];
272 typedef struct bn_blinding_st
277 BIGNUM
*mod
; /* just a reference */
280 /* Used for montgomery multiplication */
281 typedef struct bn_mont_ctx_st
283 int ri
; /* number of bits in R */
284 BIGNUM RR
; /* used to convert to montgomery form */
285 BIGNUM N
; /* The modulus */
286 BIGNUM Ni
; /* R*(1/R mod N) - N*Ni = 1
287 * (Ni is only stored for bignum algorithm) */
288 BN_ULONG n0
; /* least significant word of Ni */
292 /* Used for reciprocal division/mod functions
293 * It cannot be shared between threads
295 typedef struct bn_recp_ctx_st
297 BIGNUM N
; /* the divisor */
298 BIGNUM Nr
; /* the reciprocal */
304 #define BN_to_montgomery(r,a,mont,ctx) BN_mod_mul_montgomery(\
305 r,a,&((mont)->RR),(mont),ctx)
307 #define BN_prime_checks 0 /* default: select number of iterations
308 based on the size of the number */
310 /* number of Miller-Rabin iterations for an error rate of less than 2^-80
311 * for random 'b'-bit input, b >= 100 (taken from table 4.4 in the Handbook
312 * of Applied Cryptography [Menezes, van Oorschot, Vanstone; CRC Press 1996];
313 * original paper: Damgaard, Landrock, Pomerance: Average case error estimates
314 * for the strong probable prime test. -- Math. Comp. 61 (1993) 177-194) */
315 #define BN_prime_checks_for_size(b) ((b) >= 1300 ? 2 : \
328 #define BN_num_bytes(a) ((BN_num_bits(a)+7)/8)
329 #define BN_is_word(a,w) (((a)->top == 1) && ((a)->d[0] == (BN_ULONG)(w)))
330 #define BN_is_zero(a) (((a)->top == 0) || BN_is_word(a,0))
331 #define BN_is_one(a) (BN_is_word((a),1))
332 #define BN_is_odd(a) (((a)->top > 0) && ((a)->d[0] & 1))
333 #define BN_one(a) (BN_set_word((a),1))
334 #define BN_zero(a) (BN_set_word((a),0))
336 /*#define BN_ascii2bn(a) BN_hex2bn(a) */
337 /*#define BN_bn2ascii(a) BN_bn2hex(a) */
339 BIGNUM
*BN_value_one(void);
340 char * BN_options(void);
341 BN_CTX
*BN_CTX_new(void);
342 void BN_CTX_init(BN_CTX
*c
);
343 void BN_CTX_free(BN_CTX
*c
);
344 void BN_CTX_start(BN_CTX
*ctx
);
345 BIGNUM
*BN_CTX_get(BN_CTX
*ctx
);
346 void BN_CTX_end(BN_CTX
*ctx
);
347 int BN_rand(BIGNUM
*rnd
, int bits
, int top
,int bottom
);
348 int BN_pseudo_rand(BIGNUM
*rnd
, int bits
, int top
,int bottom
);
349 int BN_num_bits(const BIGNUM
*a
);
350 int BN_num_bits_word(BN_ULONG
);
351 BIGNUM
*BN_new(void);
352 void BN_init(BIGNUM
*);
353 void BN_clear_free(BIGNUM
*a
);
354 BIGNUM
*BN_copy(BIGNUM
*a
, const BIGNUM
*b
);
355 BIGNUM
*BN_bin2bn(const unsigned char *s
,int len
,BIGNUM
*ret
);
356 int BN_bn2bin(const BIGNUM
*a
, unsigned char *to
);
357 BIGNUM
*BN_mpi2bn(unsigned char *s
,int len
,BIGNUM
*ret
);
358 int BN_bn2mpi(const BIGNUM
*a
, unsigned char *to
);
359 int BN_sub(BIGNUM
*r
, const BIGNUM
*a
, const BIGNUM
*b
);
360 int BN_usub(BIGNUM
*r
, const BIGNUM
*a
, const BIGNUM
*b
);
361 int BN_uadd(BIGNUM
*r
, const BIGNUM
*a
, const BIGNUM
*b
);
362 int BN_add(BIGNUM
*r
, const BIGNUM
*a
, const BIGNUM
*b
);
363 int BN_mod(BIGNUM
*rem
, const BIGNUM
*m
, const BIGNUM
*d
, BN_CTX
*ctx
);
364 int BN_div(BIGNUM
*dv
, BIGNUM
*rem
, const BIGNUM
*m
, const BIGNUM
*d
,
366 int BN_mul(BIGNUM
*r
, BIGNUM
*a
, BIGNUM
*b
, BN_CTX
*ctx
);
367 int BN_sqr(BIGNUM
*r
, BIGNUM
*a
,BN_CTX
*ctx
);
368 BN_ULONG
BN_mod_word(const BIGNUM
*a
, BN_ULONG w
);
369 BN_ULONG
BN_div_word(BIGNUM
*a
, BN_ULONG w
);
370 int BN_mul_word(BIGNUM
*a
, BN_ULONG w
);
371 int BN_add_word(BIGNUM
*a
, BN_ULONG w
);
372 int BN_sub_word(BIGNUM
*a
, BN_ULONG w
);
373 int BN_set_word(BIGNUM
*a
, BN_ULONG w
);
374 BN_ULONG
BN_get_word(BIGNUM
*a
);
375 int BN_cmp(const BIGNUM
*a
, const BIGNUM
*b
);
376 void BN_free(BIGNUM
*a
);
377 int BN_is_bit_set(const BIGNUM
*a
, int n
);
378 int BN_lshift(BIGNUM
*r
, const BIGNUM
*a
, int n
);
379 int BN_lshift1(BIGNUM
*r
, BIGNUM
*a
);
380 int BN_exp(BIGNUM
*r
, BIGNUM
*a
, BIGNUM
*p
,BN_CTX
*ctx
);
381 int BN_mod_exp(BIGNUM
*r
, BIGNUM
*a
, const BIGNUM
*p
,
382 const BIGNUM
*m
,BN_CTX
*ctx
);
383 int BN_mod_exp_mont(BIGNUM
*r
, BIGNUM
*a
, const BIGNUM
*p
,
384 const BIGNUM
*m
, BN_CTX
*ctx
, BN_MONT_CTX
*m_ctx
);
385 int BN_mod_exp2_mont(BIGNUM
*r
, BIGNUM
*a1
, BIGNUM
*p1
,BIGNUM
*a2
,
386 BIGNUM
*p2
,BIGNUM
*m
,BN_CTX
*ctx
,BN_MONT_CTX
*m_ctx
);
387 int BN_mod_exp_simple(BIGNUM
*r
, BIGNUM
*a
, BIGNUM
*p
,
388 BIGNUM
*m
,BN_CTX
*ctx
);
389 int BN_mask_bits(BIGNUM
*a
,int n
);
390 int BN_mod_mul(BIGNUM
*ret
, BIGNUM
*a
, BIGNUM
*b
, const BIGNUM
*m
, BN_CTX
*ctx
);
392 int BN_print_fp(FILE *fp
, const BIGNUM
*a
);
395 int BN_print(BIO
*fp
, const BIGNUM
*a
);
397 int BN_print(void *fp
, const BIGNUM
*a
);
399 int BN_reciprocal(BIGNUM
*r
, BIGNUM
*m
, int len
, BN_CTX
*ctx
);
400 int BN_rshift(BIGNUM
*r
, BIGNUM
*a
, int n
);
401 int BN_rshift1(BIGNUM
*r
, BIGNUM
*a
);
402 void BN_clear(BIGNUM
*a
);
403 BIGNUM
*BN_dup(const BIGNUM
*a
);
404 int BN_ucmp(const BIGNUM
*a
, const BIGNUM
*b
);
405 int BN_set_bit(BIGNUM
*a
, int n
);
406 int BN_clear_bit(BIGNUM
*a
, int n
);
407 char * BN_bn2hex(const BIGNUM
*a
);
408 char * BN_bn2dec(const BIGNUM
*a
);
409 int BN_hex2bn(BIGNUM
**a
, const char *str
);
410 int BN_dec2bn(BIGNUM
**a
, const char *str
);
411 int BN_gcd(BIGNUM
*r
,BIGNUM
*in_a
,BIGNUM
*in_b
,BN_CTX
*ctx
);
412 BIGNUM
*BN_mod_inverse(BIGNUM
*ret
,BIGNUM
*a
, const BIGNUM
*n
,BN_CTX
*ctx
);
413 BIGNUM
*BN_generate_prime(BIGNUM
*ret
,int bits
,int safe
,BIGNUM
*add
,
414 BIGNUM
*rem
,void (*callback
)(int,int,void *),void *cb_arg
);
415 int BN_is_prime(const BIGNUM
*p
,int nchecks
,
416 void (*callback
)(int,int,void *),
417 BN_CTX
*ctx
,void *cb_arg
);
418 int BN_is_prime_fasttest(const BIGNUM
*p
,int nchecks
,
419 void (*callback
)(int,int,void *),BN_CTX
*ctx
,void *cb_arg
,
420 int do_trial_division
);
421 void ERR_load_BN_strings(void );
423 BN_MONT_CTX
*BN_MONT_CTX_new(void );
424 void BN_MONT_CTX_init(BN_MONT_CTX
*ctx
);
425 int BN_mod_mul_montgomery(BIGNUM
*r
,BIGNUM
*a
,BIGNUM
*b
,BN_MONT_CTX
*mont
,
427 int BN_from_montgomery(BIGNUM
*r
,BIGNUM
*a
,BN_MONT_CTX
*mont
,BN_CTX
*ctx
);
428 void BN_MONT_CTX_free(BN_MONT_CTX
*mont
);
429 int BN_MONT_CTX_set(BN_MONT_CTX
*mont
,const BIGNUM
*modulus
,BN_CTX
*ctx
);
430 BN_MONT_CTX
*BN_MONT_CTX_copy(BN_MONT_CTX
*to
,BN_MONT_CTX
*from
);
432 BN_BLINDING
*BN_BLINDING_new(BIGNUM
*A
,BIGNUM
*Ai
,BIGNUM
*mod
);
433 void BN_BLINDING_free(BN_BLINDING
*b
);
434 int BN_BLINDING_update(BN_BLINDING
*b
,BN_CTX
*ctx
);
435 int BN_BLINDING_convert(BIGNUM
*n
, BN_BLINDING
*r
, BN_CTX
*ctx
);
436 int BN_BLINDING_invert(BIGNUM
*n
, BN_BLINDING
*b
, BN_CTX
*ctx
);
439 void BN_set_params(int mul
,int high
,int low
,int mont
);
440 int BN_get_params(int which
); /* 0, mul, 1 high, 2 low, 3 mont */
441 #endif /* BN_PARAMS_ENABLE */
443 void BN_RECP_CTX_init(BN_RECP_CTX
*recp
);
444 BN_RECP_CTX
*BN_RECP_CTX_new(void);
445 void BN_RECP_CTX_free(BN_RECP_CTX
*recp
);
446 int BN_RECP_CTX_set(BN_RECP_CTX
*recp
,const BIGNUM
*rdiv
,BN_CTX
*ctx
);
447 int BN_mod_mul_reciprocal(BIGNUM
*r
, BIGNUM
*x
, BIGNUM
*y
,
448 BN_RECP_CTX
*recp
,BN_CTX
*ctx
);
449 int BN_mod_exp_recp(BIGNUM
*r
, const BIGNUM
*a
, const BIGNUM
*p
,
450 const BIGNUM
*m
, BN_CTX
*ctx
);
451 int BN_div_recp(BIGNUM
*dv
, BIGNUM
*rem
, BIGNUM
*m
,
452 BN_RECP_CTX
*recp
, BN_CTX
*ctx
);
454 /* library internal functions */
456 #define bn_expand(a,bits) ((((((bits+BN_BITS2-1))/BN_BITS2)) <= (a)->max)?\
457 (a):bn_expand2((a),(bits)/BN_BITS2+1))
458 #define bn_wexpand(a,words) (((words) <= (a)->max)?(a):bn_expand2((a),(words)))
459 BIGNUM
*bn_expand2(BIGNUM
*a
, int words
);
461 #define bn_fix_top(a) \
466 for (ftl= &((a)->d[(a)->top-1]); (a)->top > 0; (a)->top--) \
467 if (*(ftl--)) break; \
471 BN_ULONG
bn_mul_add_words(BN_ULONG
*rp
, BN_ULONG
*ap
, int num
, BN_ULONG w
);
472 BN_ULONG
bn_mul_words(BN_ULONG
*rp
, BN_ULONG
*ap
, int num
, BN_ULONG w
);
473 void bn_sqr_words(BN_ULONG
*rp
, BN_ULONG
*ap
, int num
);
474 BN_ULONG
bn_div_words(BN_ULONG h
, BN_ULONG l
, BN_ULONG d
);
475 BN_ULONG
bn_add_words(BN_ULONG
*rp
, BN_ULONG
*ap
, BN_ULONG
*bp
,int num
);
476 BN_ULONG
bn_sub_words(BN_ULONG
*rp
, BN_ULONG
*ap
, BN_ULONG
*bp
,int num
);
479 void bn_dump1(FILE *o
, const char *a
, BN_ULONG
*b
,int n
);
480 # define bn_print(a) {fprintf(stderr, #a "="); BN_print_fp(stderr,a); \
481 fprintf(stderr,"\n");}
482 # define bn_dump(a,n) bn_dump1(stderr,#a,a,n);
485 # define bn_dump(a,b)
488 /* BEGIN ERROR CODES */
489 /* The following lines are auto generated by the script mkerr.pl. Any changes
490 * made after this point may be overwritten when the script is next run.
493 /* Error codes for the BN functions. */
495 /* Function codes. */
496 #define BN_F_BN_BLINDING_CONVERT 100
497 #define BN_F_BN_BLINDING_INVERT 101
498 #define BN_F_BN_BLINDING_NEW 102
499 #define BN_F_BN_BLINDING_UPDATE 103
500 #define BN_F_BN_BN2DEC 104
501 #define BN_F_BN_BN2HEX 105
502 #define BN_F_BN_CTX_GET 116
503 #define BN_F_BN_CTX_NEW 106
504 #define BN_F_BN_DIV 107
505 #define BN_F_BN_EXPAND2 108
506 #define BN_F_BN_MOD_EXP_MONT 109
507 #define BN_F_BN_MOD_INVERSE 110
508 #define BN_F_BN_MOD_MUL_RECIPROCAL 111
509 #define BN_F_BN_MPI2BN 112
510 #define BN_F_BN_NEW 113
511 #define BN_F_BN_RAND 114
512 #define BN_F_BN_USUB 115
515 #define BN_R_ARG2_LT_ARG3 100
516 #define BN_R_BAD_RECIPROCAL 101
517 #define BN_R_CALLED_WITH_EVEN_MODULUS 102
518 #define BN_R_DIV_BY_ZERO 103
519 #define BN_R_ENCODING_ERROR 104
520 #define BN_R_EXPAND_ON_STATIC_BIGNUM_DATA 105
521 #define BN_R_INVALID_LENGTH 106
522 #define BN_R_NOT_INITIALIZED 107
523 #define BN_R_NO_INVERSE 108
524 #define BN_R_TOO_MANY_TEMPORARY_VARIABLES 109