engines/e_ubsec.c: make it indent-friendly.
[openssl.git] / engines / e_ubsec.c
1 /* crypto/engine/hw_ubsec.c */
2 /* Written by Geoff Thorpe (geoff@geoffthorpe.net) for the OpenSSL
3  * project 2000.
4  *
5  * Cloned shamelessly by Joe Tardo. 
6  */
7 /* ====================================================================
8  * Copyright (c) 1999-2001 The OpenSSL Project.  All rights reserved.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  *
14  * 1. Redistributions of source code must retain the above copyright
15  *    notice, this list of conditions and the following disclaimer. 
16  *
17  * 2. Redistributions in binary form must reproduce the above copyright
18  *    notice, this list of conditions and the following disclaimer in
19  *    the documentation and/or other materials provided with the
20  *    distribution.
21  *
22  * 3. All advertising materials mentioning features or use of this
23  *    software must display the following acknowledgment:
24  *    "This product includes software developed by the OpenSSL Project
25  *    for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
26  *
27  * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
28  *    endorse or promote products derived from this software without
29  *    prior written permission. For written permission, please contact
30  *    licensing@OpenSSL.org.
31  *
32  * 5. Products derived from this software may not be called "OpenSSL"
33  *    nor may "OpenSSL" appear in their names without prior written
34  *    permission of the OpenSSL Project.
35  *
36  * 6. Redistributions of any form whatsoever must retain the following
37  *    acknowledgment:
38  *    "This product includes software developed by the OpenSSL Project
39  *    for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
40  *
41  * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
42  * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
44  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE OpenSSL PROJECT OR
45  * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
46  * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
47  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
48  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
49  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
50  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
51  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
52  * OF THE POSSIBILITY OF SUCH DAMAGE.
53  * ====================================================================
54  *
55  * This product includes cryptographic software written by Eric Young
56  * (eay@cryptsoft.com).  This product includes software written by Tim
57  * Hudson (tjh@cryptsoft.com).
58  *
59  */
60
61 #include <stdio.h>
62 #include <string.h>
63 #include <openssl/crypto.h>
64 #include <openssl/buffer.h>
65 #include <openssl/dso.h>
66 #include <openssl/engine.h>
67 #ifndef OPENSSL_NO_RSA
68 #include <openssl/rsa.h>
69 #endif
70 #ifndef OPENSSL_NO_DSA
71 #include <openssl/dsa.h>
72 #endif
73 #ifndef OPENSSL_NO_DH
74 #include <openssl/dh.h>
75 #endif
76 #include <openssl/bn.h>
77
78 #ifndef OPENSSL_NO_HW
79 #ifndef OPENSSL_NO_HW_UBSEC
80
81 #ifdef FLAT_INC
82 #include "hw_ubsec.h"
83 #else
84 #include "vendor_defns/hw_ubsec.h"
85 #endif
86
87 #define UBSEC_LIB_NAME "ubsec engine"
88 #include "e_ubsec_err.c"
89
90 #define FAIL_TO_SOFTWARE -15
91
92 static int ubsec_destroy(ENGINE *e);
93 static int ubsec_init(ENGINE *e);
94 static int ubsec_finish(ENGINE *e);
95 static int ubsec_ctrl(ENGINE *e, int cmd, long i, void *p, void (*f)(void));
96 static int ubsec_mod_exp(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
97                 const BIGNUM *m, BN_CTX *ctx);
98 #ifndef OPENSSL_NO_RSA
99 static int ubsec_mod_exp_crt(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
100                         const BIGNUM *q, const BIGNUM *dp,
101                         const BIGNUM *dq, const BIGNUM *qinv, BN_CTX *ctx);
102 static int ubsec_rsa_mod_exp(BIGNUM *r0, const BIGNUM *I, RSA *rsa, BN_CTX *ctx);
103 static int ubsec_mod_exp_mont(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
104                 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx);
105 #endif
106 #ifndef OPENSSL_NO_DSA
107 #ifdef NOT_USED
108 static int ubsec_dsa_mod_exp(DSA *dsa, BIGNUM *rr, BIGNUM *a1,
109                 BIGNUM *p1, BIGNUM *a2, BIGNUM *p2, BIGNUM *m,
110                 BN_CTX *ctx, BN_MONT_CTX *in_mont);
111 static int ubsec_mod_exp_dsa(DSA *dsa, BIGNUM *r, BIGNUM *a,
112                 const BIGNUM *p, const BIGNUM *m, BN_CTX *ctx,
113                 BN_MONT_CTX *m_ctx);
114 #endif
115 static DSA_SIG *ubsec_dsa_do_sign(const unsigned char *dgst, int dlen, DSA *dsa);
116 static int ubsec_dsa_verify(const unsigned char *dgst, int dgst_len,
117                                 DSA_SIG *sig, DSA *dsa);
118 #endif
119 #ifndef OPENSSL_NO_DH
120 static int ubsec_mod_exp_dh(const DH *dh, BIGNUM *r, const BIGNUM *a,
121                 const BIGNUM *p, const BIGNUM *m, BN_CTX *ctx,
122                 BN_MONT_CTX *m_ctx);
123 static int ubsec_dh_compute_key(unsigned char *key,const BIGNUM *pub_key,DH *dh);
124 static int ubsec_dh_generate_key(DH *dh);
125 #endif
126
127 #ifdef NOT_USED
128 static int ubsec_rand_bytes(unsigned char *buf, int num);
129 static int ubsec_rand_status(void);
130 #endif
131
132 #define UBSEC_CMD_SO_PATH               ENGINE_CMD_BASE
133 static const ENGINE_CMD_DEFN ubsec_cmd_defns[] = {
134         {UBSEC_CMD_SO_PATH,
135                 "SO_PATH",
136                 "Specifies the path to the 'ubsec' shared library",
137                 ENGINE_CMD_FLAG_STRING},
138         {0, NULL, NULL, 0}
139         };
140
141 #ifndef OPENSSL_NO_RSA
142 /* Our internal RSA_METHOD that we provide pointers to */
143 static RSA_METHOD ubsec_rsa =
144         {
145         "UBSEC RSA method",
146         NULL,
147         NULL,
148         NULL,
149         NULL,
150         ubsec_rsa_mod_exp,
151         ubsec_mod_exp_mont,
152         NULL,
153         NULL,
154         0,
155         NULL,
156         NULL,
157         NULL,
158         NULL
159         };
160 #endif
161
162 #ifndef OPENSSL_NO_DSA
163 /* Our internal DSA_METHOD that we provide pointers to */
164 static DSA_METHOD ubsec_dsa =
165         {
166         "UBSEC DSA method",
167         ubsec_dsa_do_sign, /* dsa_do_sign */
168         NULL, /* dsa_sign_setup */
169         ubsec_dsa_verify, /* dsa_do_verify */
170         NULL, /* ubsec_dsa_mod_exp */ /* dsa_mod_exp */
171         NULL, /* ubsec_mod_exp_dsa */ /* bn_mod_exp */
172         NULL, /* init */
173         NULL, /* finish */
174         0, /* flags */
175         NULL, /* app_data */
176         NULL, /* dsa_paramgen */
177         NULL /* dsa_keygen */
178         };
179 #endif
180
181 #ifndef OPENSSL_NO_DH
182 /* Our internal DH_METHOD that we provide pointers to */
183 static DH_METHOD ubsec_dh =
184         {
185         "UBSEC DH method",
186         ubsec_dh_generate_key,
187         ubsec_dh_compute_key,
188         ubsec_mod_exp_dh,
189         NULL,
190         NULL,
191         0,
192         NULL,
193         NULL
194         };
195 #endif
196
197 /* Constants used when creating the ENGINE */
198 static const char *engine_ubsec_id = "ubsec";
199 static const char *engine_ubsec_name = "UBSEC hardware engine support";
200
201 /* This internal function is used by ENGINE_ubsec() and possibly by the
202  * "dynamic" ENGINE support too */
203 static int bind_helper(ENGINE *e)
204         {
205 #ifndef OPENSSL_NO_RSA
206         const RSA_METHOD *meth1;
207 #endif
208 #ifndef OPENSSL_NO_DH
209 #ifndef HAVE_UBSEC_DH
210         const DH_METHOD *meth3;
211 #endif /* HAVE_UBSEC_DH */
212 #endif
213         if(!ENGINE_set_id(e, engine_ubsec_id) ||
214                         !ENGINE_set_name(e, engine_ubsec_name) ||
215 #ifndef OPENSSL_NO_RSA
216                         !ENGINE_set_RSA(e, &ubsec_rsa) ||
217 #endif
218 #ifndef OPENSSL_NO_DSA
219                         !ENGINE_set_DSA(e, &ubsec_dsa) ||
220 #endif
221 #ifndef OPENSSL_NO_DH
222                         !ENGINE_set_DH(e, &ubsec_dh) ||
223 #endif
224                         !ENGINE_set_destroy_function(e, ubsec_destroy) ||
225                         !ENGINE_set_init_function(e, ubsec_init) ||
226                         !ENGINE_set_finish_function(e, ubsec_finish) ||
227                         !ENGINE_set_ctrl_function(e, ubsec_ctrl) ||
228                         !ENGINE_set_cmd_defns(e, ubsec_cmd_defns))
229                 return 0;
230
231 #ifndef OPENSSL_NO_RSA
232         /* We know that the "PKCS1_SSLeay()" functions hook properly
233          * to the Broadcom-specific mod_exp and mod_exp_crt so we use
234          * those functions. NB: We don't use ENGINE_openssl() or
235          * anything "more generic" because something like the RSAref
236          * code may not hook properly, and if you own one of these
237          * cards then you have the right to do RSA operations on it
238          * anyway! */ 
239         meth1 = RSA_PKCS1_SSLeay();
240         ubsec_rsa.rsa_pub_enc = meth1->rsa_pub_enc;
241         ubsec_rsa.rsa_pub_dec = meth1->rsa_pub_dec;
242         ubsec_rsa.rsa_priv_enc = meth1->rsa_priv_enc;
243         ubsec_rsa.rsa_priv_dec = meth1->rsa_priv_dec;
244 #endif
245
246 #ifndef OPENSSL_NO_DH
247 #ifndef HAVE_UBSEC_DH
248         /* Much the same for Diffie-Hellman */
249         meth3 = DH_OpenSSL();
250         ubsec_dh.generate_key = meth3->generate_key;
251         ubsec_dh.compute_key = meth3->compute_key;
252 #endif /* HAVE_UBSEC_DH */
253 #endif
254
255         /* Ensure the ubsec error handling is set up */
256         ERR_load_UBSEC_strings();
257         return 1;
258         }
259
260 #ifdef OPENSSL_NO_DYNAMIC_ENGINE
261 static ENGINE *engine_ubsec(void)
262         {
263         ENGINE *ret = ENGINE_new();
264         if(!ret)
265                 return NULL;
266         if(!bind_helper(ret))
267                 {
268                 ENGINE_free(ret);
269                 return NULL;
270                 }
271         return ret;
272         }
273
274 void ENGINE_load_ubsec(void)
275         {
276         /* Copied from eng_[openssl|dyn].c */
277         ENGINE *toadd = engine_ubsec();
278         if(!toadd) return;
279         ENGINE_add(toadd);
280         ENGINE_free(toadd);
281         ERR_clear_error();
282         }
283 #endif
284
285 /* This is a process-global DSO handle used for loading and unloading
286  * the UBSEC library. NB: This is only set (or unset) during an
287  * init() or finish() call (reference counts permitting) and they're
288  * operating with global locks, so this should be thread-safe
289  * implicitly. */
290
291 static DSO *ubsec_dso = NULL;
292
293 /* These are the function pointers that are (un)set when the library has
294  * successfully (un)loaded. */
295
296 static t_UBSEC_ubsec_bytes_to_bits *p_UBSEC_ubsec_bytes_to_bits = NULL;
297 static t_UBSEC_ubsec_bits_to_bytes *p_UBSEC_ubsec_bits_to_bytes = NULL;
298 static t_UBSEC_ubsec_open *p_UBSEC_ubsec_open = NULL;
299 static t_UBSEC_ubsec_close *p_UBSEC_ubsec_close = NULL;
300 #ifndef OPENSSL_NO_DH
301 static t_UBSEC_diffie_hellman_generate_ioctl 
302         *p_UBSEC_diffie_hellman_generate_ioctl = NULL;
303 static t_UBSEC_diffie_hellman_agree_ioctl *p_UBSEC_diffie_hellman_agree_ioctl = NULL;
304 #endif
305 #ifndef OPENSSL_NO_RSA
306 static t_UBSEC_rsa_mod_exp_ioctl *p_UBSEC_rsa_mod_exp_ioctl = NULL;
307 static t_UBSEC_rsa_mod_exp_crt_ioctl *p_UBSEC_rsa_mod_exp_crt_ioctl = NULL;
308 #endif
309 #ifndef OPENSSL_NO_DSA
310 static t_UBSEC_dsa_sign_ioctl *p_UBSEC_dsa_sign_ioctl = NULL;
311 static t_UBSEC_dsa_verify_ioctl *p_UBSEC_dsa_verify_ioctl = NULL;
312 #endif
313 static t_UBSEC_math_accelerate_ioctl *p_UBSEC_math_accelerate_ioctl = NULL;
314 static t_UBSEC_rng_ioctl *p_UBSEC_rng_ioctl = NULL;
315 static t_UBSEC_max_key_len_ioctl *p_UBSEC_max_key_len_ioctl = NULL;
316
317 static int max_key_len = 1024;  /* ??? */
318
319 /* 
320  * These are the static string constants for the DSO file name and the function
321  * symbol names to bind to. 
322  */
323
324 static const char *UBSEC_LIBNAME = NULL;
325 static const char *get_UBSEC_LIBNAME(void)
326         {
327         if(UBSEC_LIBNAME)
328                 return UBSEC_LIBNAME;
329         return "ubsec";
330         }
331 static void free_UBSEC_LIBNAME(void)
332         {
333         if(UBSEC_LIBNAME)
334                 OPENSSL_free((void*)UBSEC_LIBNAME);
335         UBSEC_LIBNAME = NULL;
336         }
337 static long set_UBSEC_LIBNAME(const char *name)
338         {
339         free_UBSEC_LIBNAME();
340         return (((UBSEC_LIBNAME = BUF_strdup(name)) != NULL) ? 1 : 0);
341         }
342 static const char *UBSEC_F1 = "ubsec_bytes_to_bits";
343 static const char *UBSEC_F2 = "ubsec_bits_to_bytes";
344 static const char *UBSEC_F3 = "ubsec_open";
345 static const char *UBSEC_F4 = "ubsec_close";
346 #ifndef OPENSSL_NO_DH
347 static const char *UBSEC_F5 = "diffie_hellman_generate_ioctl";
348 static const char *UBSEC_F6 = "diffie_hellman_agree_ioctl";
349 #endif
350 /* #ifndef OPENSSL_NO_RSA */
351 static const char *UBSEC_F7 = "rsa_mod_exp_ioctl";
352 static const char *UBSEC_F8 = "rsa_mod_exp_crt_ioctl";
353 /* #endif */
354 #ifndef OPENSSL_NO_DSA
355 static const char *UBSEC_F9 = "dsa_sign_ioctl";
356 static const char *UBSEC_F10 = "dsa_verify_ioctl";
357 #endif
358 static const char *UBSEC_F11 = "math_accelerate_ioctl";
359 static const char *UBSEC_F12 = "rng_ioctl";
360 static const char *UBSEC_F13 = "ubsec_max_key_len_ioctl";
361
362 /* Destructor (complements the "ENGINE_ubsec()" constructor) */
363 static int ubsec_destroy(ENGINE *e)
364         {
365         free_UBSEC_LIBNAME();
366         ERR_unload_UBSEC_strings();
367         return 1;
368         }
369
370 /* (de)initialisation functions. */
371 static int ubsec_init(ENGINE *e)
372         {
373         t_UBSEC_ubsec_bytes_to_bits *p1;
374         t_UBSEC_ubsec_bits_to_bytes *p2;
375         t_UBSEC_ubsec_open *p3;
376         t_UBSEC_ubsec_close *p4;
377 #ifndef OPENSSL_NO_DH
378         t_UBSEC_diffie_hellman_generate_ioctl *p5;
379         t_UBSEC_diffie_hellman_agree_ioctl *p6;
380 #endif
381 /* #ifndef OPENSSL_NO_RSA */
382         t_UBSEC_rsa_mod_exp_ioctl *p7;
383         t_UBSEC_rsa_mod_exp_crt_ioctl *p8;
384 /* #endif */
385 #ifndef OPENSSL_NO_DSA
386         t_UBSEC_dsa_sign_ioctl *p9;
387         t_UBSEC_dsa_verify_ioctl *p10;
388 #endif
389         t_UBSEC_math_accelerate_ioctl *p11;
390         t_UBSEC_rng_ioctl *p12;
391         t_UBSEC_max_key_len_ioctl *p13;
392         int fd = 0;
393
394         if(ubsec_dso != NULL)
395                 {
396                 UBSECerr(UBSEC_F_UBSEC_INIT, UBSEC_R_ALREADY_LOADED);
397                 goto err;
398                 }
399         /* 
400          * Attempt to load libubsec.so/ubsec.dll/whatever. 
401          */
402         ubsec_dso = DSO_load(NULL, get_UBSEC_LIBNAME(), NULL, 0);
403         if(ubsec_dso == NULL)
404                 {
405                 UBSECerr(UBSEC_F_UBSEC_INIT, UBSEC_R_DSO_FAILURE);
406                 goto err;
407                 }
408
409         if (!(p1 = (t_UBSEC_ubsec_bytes_to_bits *)
410                         DSO_bind_func(ubsec_dso, UBSEC_F1))
411            || !(p2 = (t_UBSEC_ubsec_bits_to_bytes *)
412                         DSO_bind_func(ubsec_dso, UBSEC_F2))
413            || !(p3 = (t_UBSEC_ubsec_open *)
414                         DSO_bind_func(ubsec_dso, UBSEC_F3))
415            || !(p4 = (t_UBSEC_ubsec_close *)
416                         DSO_bind_func(ubsec_dso, UBSEC_F4))
417 #ifndef OPENSSL_NO_DH
418            || !(p5 = (t_UBSEC_diffie_hellman_generate_ioctl *) 
419                         DSO_bind_func(ubsec_dso, UBSEC_F5))
420            || !(p6 = (t_UBSEC_diffie_hellman_agree_ioctl *) 
421                         DSO_bind_func(ubsec_dso, UBSEC_F6))
422 #endif
423 /* #ifndef OPENSSL_NO_RSA */
424            || !(p7 = (t_UBSEC_rsa_mod_exp_ioctl *)
425                         DSO_bind_func(ubsec_dso, UBSEC_F7))
426            || !(p8 = (t_UBSEC_rsa_mod_exp_crt_ioctl *)
427                         DSO_bind_func(ubsec_dso, UBSEC_F8))
428 /* #endif */
429 #ifndef OPENSSL_NO_DSA
430            || !(p9 = (t_UBSEC_dsa_sign_ioctl *)
431                         DSO_bind_func(ubsec_dso, UBSEC_F9))
432            || !(p10 = (t_UBSEC_dsa_verify_ioctl *)
433                         DSO_bind_func(ubsec_dso, UBSEC_F10))
434 #endif
435            || !(p11 = (t_UBSEC_math_accelerate_ioctl *) 
436                         DSO_bind_func(ubsec_dso, UBSEC_F11))
437            || !(p12 = (t_UBSEC_rng_ioctl *)
438                         DSO_bind_func(ubsec_dso, UBSEC_F12))
439            || !(p13 = (t_UBSEC_max_key_len_ioctl *)
440                         DSO_bind_func(ubsec_dso, UBSEC_F13)))
441                 {
442                 UBSECerr(UBSEC_F_UBSEC_INIT, UBSEC_R_DSO_FAILURE);
443                 goto err;
444                 }
445
446         /* Copy the pointers */
447         p_UBSEC_ubsec_bytes_to_bits = p1;
448         p_UBSEC_ubsec_bits_to_bytes = p2;
449         p_UBSEC_ubsec_open = p3;
450         p_UBSEC_ubsec_close = p4;
451 #ifndef OPENSSL_NO_DH
452         p_UBSEC_diffie_hellman_generate_ioctl = p5;
453         p_UBSEC_diffie_hellman_agree_ioctl = p6;
454 #endif
455 #ifndef OPENSSL_NO_RSA
456         p_UBSEC_rsa_mod_exp_ioctl = p7;
457         p_UBSEC_rsa_mod_exp_crt_ioctl = p8;
458 #endif
459 #ifndef OPENSSL_NO_DSA
460         p_UBSEC_dsa_sign_ioctl = p9;
461         p_UBSEC_dsa_verify_ioctl = p10;
462 #endif
463         p_UBSEC_math_accelerate_ioctl = p11;
464         p_UBSEC_rng_ioctl = p12;
465         p_UBSEC_max_key_len_ioctl = p13;
466
467         /* Perform an open to see if there's actually any unit running. */
468         if (((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) > 0) && (p_UBSEC_max_key_len_ioctl(fd, &max_key_len) == 0))
469         {
470            p_UBSEC_ubsec_close(fd);
471            return 1;
472         }
473         else
474         {
475           UBSECerr(UBSEC_F_UBSEC_INIT, UBSEC_R_UNIT_FAILURE);
476         }
477
478 err:
479         if(ubsec_dso)
480                 DSO_free(ubsec_dso);
481         ubsec_dso = NULL;
482         p_UBSEC_ubsec_bytes_to_bits = NULL;
483         p_UBSEC_ubsec_bits_to_bytes = NULL;
484         p_UBSEC_ubsec_open = NULL;
485         p_UBSEC_ubsec_close = NULL;
486 #ifndef OPENSSL_NO_DH
487         p_UBSEC_diffie_hellman_generate_ioctl = NULL;
488         p_UBSEC_diffie_hellman_agree_ioctl = NULL;
489 #endif
490 #ifndef OPENSSL_NO_RSA
491         p_UBSEC_rsa_mod_exp_ioctl = NULL;
492         p_UBSEC_rsa_mod_exp_crt_ioctl = NULL;
493 #endif
494 #ifndef OPENSSL_NO_DSA
495         p_UBSEC_dsa_sign_ioctl = NULL;
496         p_UBSEC_dsa_verify_ioctl = NULL;
497 #endif
498         p_UBSEC_math_accelerate_ioctl = NULL;
499         p_UBSEC_rng_ioctl = NULL;
500         p_UBSEC_max_key_len_ioctl = NULL;
501
502         return 0;
503         }
504
505 static int ubsec_finish(ENGINE *e)
506         {
507         free_UBSEC_LIBNAME();
508         if(ubsec_dso == NULL)
509                 {
510                 UBSECerr(UBSEC_F_UBSEC_FINISH, UBSEC_R_NOT_LOADED);
511                 return 0;
512                 }
513         if(!DSO_free(ubsec_dso))
514                 {
515                 UBSECerr(UBSEC_F_UBSEC_FINISH, UBSEC_R_DSO_FAILURE);
516                 return 0;
517                 }
518         ubsec_dso = NULL;
519         p_UBSEC_ubsec_bytes_to_bits = NULL;
520         p_UBSEC_ubsec_bits_to_bytes = NULL;
521         p_UBSEC_ubsec_open = NULL;
522         p_UBSEC_ubsec_close = NULL;
523 #ifndef OPENSSL_NO_DH
524         p_UBSEC_diffie_hellman_generate_ioctl = NULL;
525         p_UBSEC_diffie_hellman_agree_ioctl = NULL;
526 #endif
527 #ifndef OPENSSL_NO_RSA
528         p_UBSEC_rsa_mod_exp_ioctl = NULL;
529         p_UBSEC_rsa_mod_exp_crt_ioctl = NULL;
530 #endif
531 #ifndef OPENSSL_NO_DSA
532         p_UBSEC_dsa_sign_ioctl = NULL;
533         p_UBSEC_dsa_verify_ioctl = NULL;
534 #endif
535         p_UBSEC_math_accelerate_ioctl = NULL;
536         p_UBSEC_rng_ioctl = NULL;
537         p_UBSEC_max_key_len_ioctl = NULL;
538         return 1;
539         }
540
541 static int ubsec_ctrl(ENGINE *e, int cmd, long i, void *p, void (*f)(void))
542         {
543         int initialised = ((ubsec_dso == NULL) ? 0 : 1);
544         switch(cmd)
545                 {
546         case UBSEC_CMD_SO_PATH:
547                 if(p == NULL)
548                         {
549                         UBSECerr(UBSEC_F_UBSEC_CTRL,ERR_R_PASSED_NULL_PARAMETER);
550                         return 0;
551                         }
552                 if(initialised)
553                         {
554                         UBSECerr(UBSEC_F_UBSEC_CTRL,UBSEC_R_ALREADY_LOADED);
555                         return 0;
556                         }
557                 return set_UBSEC_LIBNAME((const char *)p);
558         default:
559                 break;
560                 }
561         UBSECerr(UBSEC_F_UBSEC_CTRL,UBSEC_R_CTRL_COMMAND_NOT_IMPLEMENTED);
562         return 0;
563         }
564
565 static int ubsec_mod_exp(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
566                 const BIGNUM *m, BN_CTX *ctx)
567         {
568         int     y_len = 0;
569         int     fd;
570
571         if(ubsec_dso == NULL)
572         {
573                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP, UBSEC_R_NOT_LOADED);
574                 return 0;
575         }
576
577         /* Check if hardware can't handle this argument. */
578         y_len = BN_num_bits(m);
579         if (y_len > max_key_len) {
580                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP, UBSEC_R_SIZE_TOO_LARGE_OR_TOO_SMALL);
581                 return BN_mod_exp(r, a, p, m, ctx);
582         } 
583
584         if(!bn_wexpand(r, m->top))
585         {
586                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP, UBSEC_R_BN_EXPAND_FAIL);
587                 return 0;
588         }
589
590         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0) {
591                 fd = 0;
592                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP, UBSEC_R_UNIT_FAILURE);
593                 return BN_mod_exp(r, a, p, m, ctx);
594         }
595
596         if (p_UBSEC_rsa_mod_exp_ioctl(fd, (unsigned char *)a->d, BN_num_bits(a),
597                 (unsigned char *)m->d, BN_num_bits(m), (unsigned char *)p->d, 
598                 BN_num_bits(p), (unsigned char *)r->d, &y_len) != 0)
599         {
600                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP, UBSEC_R_REQUEST_FAILED);
601                 p_UBSEC_ubsec_close(fd);
602
603                 return BN_mod_exp(r, a, p, m, ctx);
604         }
605
606         p_UBSEC_ubsec_close(fd);
607
608         r->top = (BN_num_bits(m)+BN_BITS2-1)/BN_BITS2;
609         return 1;
610         }
611
612 #ifndef OPENSSL_NO_RSA
613 static int ubsec_rsa_mod_exp(BIGNUM *r0, const BIGNUM *I, RSA *rsa, BN_CTX *ctx)
614         {
615         int to_return = 0;
616
617         if(!rsa->p || !rsa->q || !rsa->dmp1 || !rsa->dmq1 || !rsa->iqmp)
618                 {
619                 UBSECerr(UBSEC_F_UBSEC_RSA_MOD_EXP, UBSEC_R_MISSING_KEY_COMPONENTS);
620                 goto err;
621                 }
622
623         to_return = ubsec_mod_exp_crt(r0, I, rsa->p, rsa->q, rsa->dmp1,
624                     rsa->dmq1, rsa->iqmp, ctx);
625         if (to_return == FAIL_TO_SOFTWARE)
626         {
627           /*
628            * Do in software as hardware failed.
629            */
630            const RSA_METHOD *meth = RSA_PKCS1_SSLeay();
631            to_return = (*meth->rsa_mod_exp)(r0, I, rsa, ctx);
632         }
633 err:
634         return to_return;
635         }
636
637 static int ubsec_mod_exp_crt(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
638                         const BIGNUM *q, const BIGNUM *dp,
639                         const BIGNUM *dq, const BIGNUM *qinv, BN_CTX *ctx)
640         {
641         int     y_len,
642                 fd;
643
644         y_len = BN_num_bits(p) + BN_num_bits(q);
645
646         /* Check if hardware can't handle this argument. */
647         if (y_len > max_key_len) {
648                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP_CRT, UBSEC_R_SIZE_TOO_LARGE_OR_TOO_SMALL);
649                 return FAIL_TO_SOFTWARE;
650         } 
651
652         if (!bn_wexpand(r, p->top + q->top + 1)) {
653                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP_CRT, UBSEC_R_BN_EXPAND_FAIL);
654                 return 0;
655         }
656
657         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0) {
658                 fd = 0;
659                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP_CRT, UBSEC_R_UNIT_FAILURE);
660                 return FAIL_TO_SOFTWARE;
661         }
662
663         if (p_UBSEC_rsa_mod_exp_crt_ioctl(fd,
664                 (unsigned char *)a->d, BN_num_bits(a), 
665                 (unsigned char *)qinv->d, BN_num_bits(qinv),
666                 (unsigned char *)dp->d, BN_num_bits(dp),
667                 (unsigned char *)p->d, BN_num_bits(p),
668                 (unsigned char *)dq->d, BN_num_bits(dq),
669                 (unsigned char *)q->d, BN_num_bits(q),
670                 (unsigned char *)r->d,  &y_len) != 0) {
671                 UBSECerr(UBSEC_F_UBSEC_MOD_EXP_CRT, UBSEC_R_REQUEST_FAILED);
672                 p_UBSEC_ubsec_close(fd);
673                 return FAIL_TO_SOFTWARE;
674         }
675
676         p_UBSEC_ubsec_close(fd);
677
678         r->top = (BN_num_bits(p) + BN_num_bits(q) + BN_BITS2 - 1)/BN_BITS2;
679         return 1;
680 }
681 #endif
682
683 #ifndef OPENSSL_NO_DSA
684 #ifdef NOT_USED
685 static int ubsec_dsa_mod_exp(DSA *dsa, BIGNUM *rr, BIGNUM *a1,
686                 BIGNUM *p1, BIGNUM *a2, BIGNUM *p2, BIGNUM *m,
687                 BN_CTX *ctx, BN_MONT_CTX *in_mont)
688         {
689         BIGNUM t;
690         int to_return = 0;
691  
692         BN_init(&t);
693         /* let rr = a1 ^ p1 mod m */
694         if (!ubsec_mod_exp(rr,a1,p1,m,ctx)) goto end;
695         /* let t = a2 ^ p2 mod m */
696         if (!ubsec_mod_exp(&t,a2,p2,m,ctx)) goto end;
697         /* let rr = rr * t mod m */
698         if (!BN_mod_mul(rr,rr,&t,m,ctx)) goto end;
699         to_return = 1;
700 end:
701         BN_free(&t);
702         return to_return;
703         }
704
705 static int ubsec_mod_exp_dsa(DSA *dsa, BIGNUM *r, BIGNUM *a,
706                 const BIGNUM *p, const BIGNUM *m, BN_CTX *ctx,
707                 BN_MONT_CTX *m_ctx)
708         {
709         return ubsec_mod_exp(r, a, p, m, ctx);
710         }
711 #endif
712 #endif
713
714 #ifndef OPENSSL_NO_RSA
715
716 /*
717  * This function is aliased to mod_exp (with the mont stuff dropped).
718  */
719 static int ubsec_mod_exp_mont(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
720                 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx)
721         {
722         int ret = 0;
723
724         /* Do in software if the key is too large for the hardware. */
725         if (BN_num_bits(m) > max_key_len)
726                 {
727                 const RSA_METHOD *meth = RSA_PKCS1_SSLeay();
728                 ret = (*meth->bn_mod_exp)(r, a, p, m, ctx, m_ctx);
729                 }
730         else
731                 {
732                 ret = ubsec_mod_exp(r, a, p, m, ctx);
733                 }
734         
735         return ret;
736         }
737 #endif
738
739 #ifndef OPENSSL_NO_DH
740 /* This function is aliased to mod_exp (with the dh and mont dropped). */
741 static int ubsec_mod_exp_dh(const DH *dh, BIGNUM *r, const BIGNUM *a,
742                 const BIGNUM *p, const BIGNUM *m, BN_CTX *ctx,
743                 BN_MONT_CTX *m_ctx)
744         {
745         return ubsec_mod_exp(r, a, p, m, ctx);
746         }
747 #endif
748
749 #ifndef OPENSSL_NO_DSA
750 static DSA_SIG *ubsec_dsa_do_sign(const unsigned char *dgst, int dlen, DSA *dsa)
751         {
752         DSA_SIG *to_return = NULL;
753         int s_len = 160, r_len = 160, d_len, fd;
754         BIGNUM m, *r=NULL, *s=NULL;
755
756         BN_init(&m);
757
758         s = BN_new();
759         r = BN_new();
760         if ((s == NULL) || (r==NULL))
761                 goto err;
762
763         d_len = p_UBSEC_ubsec_bytes_to_bits((unsigned char *)dgst, dlen);
764
765         if(!bn_wexpand(r, (160+BN_BITS2-1)/BN_BITS2) ||
766            (!bn_wexpand(s, (160+BN_BITS2-1)/BN_BITS2))) {
767                 UBSECerr(UBSEC_F_UBSEC_DSA_DO_SIGN, UBSEC_R_BN_EXPAND_FAIL);
768                 goto err;
769         }
770
771         if (BN_bin2bn(dgst,dlen,&m) == NULL) {
772                 UBSECerr(UBSEC_F_UBSEC_DSA_DO_SIGN, UBSEC_R_BN_EXPAND_FAIL);
773                 goto err;
774         } 
775
776         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0) {
777                 const DSA_METHOD *meth;
778                 fd = 0;
779                 UBSECerr(UBSEC_F_UBSEC_DSA_DO_SIGN, UBSEC_R_UNIT_FAILURE);
780                 meth = DSA_OpenSSL();
781                 to_return =  meth->dsa_do_sign(dgst, dlen, dsa);
782                 goto err;
783         }
784
785         if (p_UBSEC_dsa_sign_ioctl(fd, 0, /* compute hash before signing */
786                 (unsigned char *)dgst, d_len,
787                 NULL, 0,  /* compute random value */
788                 (unsigned char *)dsa->p->d, BN_num_bits(dsa->p), 
789                 (unsigned char *)dsa->q->d, BN_num_bits(dsa->q),
790                 (unsigned char *)dsa->g->d, BN_num_bits(dsa->g),
791                 (unsigned char *)dsa->priv_key->d, BN_num_bits(dsa->priv_key),
792                 (unsigned char *)r->d, &r_len,
793                 (unsigned char *)s->d, &s_len ) != 0) {
794                 const DSA_METHOD *meth;
795
796                 UBSECerr(UBSEC_F_UBSEC_DSA_DO_SIGN, UBSEC_R_REQUEST_FAILED);
797                 p_UBSEC_ubsec_close(fd);
798                 meth = DSA_OpenSSL();
799                 to_return = meth->dsa_do_sign(dgst, dlen, dsa);
800
801                 goto err;
802         }
803
804         p_UBSEC_ubsec_close(fd);
805
806         r->top = (160+BN_BITS2-1)/BN_BITS2;
807         s->top = (160+BN_BITS2-1)/BN_BITS2;
808
809         to_return = DSA_SIG_new();
810         if(to_return == NULL) {
811                 UBSECerr(UBSEC_F_UBSEC_DSA_DO_SIGN, UBSEC_R_BN_EXPAND_FAIL);
812                 goto err;
813         }
814
815         to_return->r = r;
816         to_return->s = s;
817
818 err:
819         if (!to_return) {
820                 if (r) BN_free(r);
821                 if (s) BN_free(s);
822         }                                 
823         BN_clear_free(&m);
824         return to_return;
825 }
826
827 static int ubsec_dsa_verify(const unsigned char *dgst, int dgst_len,
828                                 DSA_SIG *sig, DSA *dsa)
829         {
830         int v_len, d_len;
831         int to_return = 0;
832         int fd;
833         BIGNUM v, *pv = &v;
834
835         BN_init(&v);
836
837         if(!bn_wexpand(pv, dsa->p->top)) {
838                 UBSECerr(UBSEC_F_UBSEC_DSA_VERIFY, UBSEC_R_BN_EXPAND_FAIL);
839                 goto err;
840         }
841
842         v_len = BN_num_bits(dsa->p);
843
844         d_len = p_UBSEC_ubsec_bytes_to_bits((unsigned char *)dgst, dgst_len);
845
846         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0) {
847                 const DSA_METHOD *meth;
848                 fd = 0;
849                 UBSECerr(UBSEC_F_UBSEC_DSA_VERIFY, UBSEC_R_UNIT_FAILURE);
850                 meth = DSA_OpenSSL();
851                 to_return = meth->dsa_do_verify(dgst, dgst_len, sig, dsa);
852                 goto err;
853         }
854
855         if (p_UBSEC_dsa_verify_ioctl(fd, 0, /* compute hash before signing */
856                 (unsigned char *)dgst, d_len,
857                 (unsigned char *)dsa->p->d, BN_num_bits(dsa->p), 
858                 (unsigned char *)dsa->q->d, BN_num_bits(dsa->q),
859                 (unsigned char *)dsa->g->d, BN_num_bits(dsa->g),
860                 (unsigned char *)dsa->pub_key->d, BN_num_bits(dsa->pub_key),
861                 (unsigned char *)sig->r->d, BN_num_bits(sig->r),
862                 (unsigned char *)sig->s->d, BN_num_bits(sig->s),
863                 (unsigned char *)v.d, &v_len) != 0) {
864                 const DSA_METHOD *meth;
865                 UBSECerr(UBSEC_F_UBSEC_DSA_VERIFY, UBSEC_R_REQUEST_FAILED);
866                 p_UBSEC_ubsec_close(fd);
867
868                 meth = DSA_OpenSSL();
869                 to_return = meth->dsa_do_verify(dgst, dgst_len, sig, dsa);
870
871                 goto err;
872         }
873
874         p_UBSEC_ubsec_close(fd);
875
876         to_return = 1;
877 err:
878         BN_clear_free(&v);
879         return to_return;
880         }
881 #endif
882
883 #ifndef OPENSSL_NO_DH
884 static int ubsec_dh_compute_key(unsigned char *key,const BIGNUM *pub_key,DH *dh)
885         {
886         int      ret      = -1,
887                  k_len,
888                  fd;
889
890         k_len = BN_num_bits(dh->p);
891
892         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0)
893                 {
894                 const DH_METHOD *meth;
895                 UBSECerr(UBSEC_F_UBSEC_DH_COMPUTE_KEY, UBSEC_R_UNIT_FAILURE);
896                 meth = DH_OpenSSL();
897                 ret = meth->compute_key(key, pub_key, dh);
898                 goto err;
899                 }
900
901         if (p_UBSEC_diffie_hellman_agree_ioctl(fd,
902                                                (unsigned char *)dh->priv_key->d, BN_num_bits(dh->priv_key),
903                                                (unsigned char *)pub_key->d, BN_num_bits(pub_key),
904                                                (unsigned char *)dh->p->d, BN_num_bits(dh->p),
905                                                key, &k_len) != 0)
906                 {
907                 /* Hardware's a no go, failover to software */
908                 const DH_METHOD *meth;
909                 UBSECerr(UBSEC_F_UBSEC_DH_COMPUTE_KEY, UBSEC_R_REQUEST_FAILED);
910                 p_UBSEC_ubsec_close(fd);
911
912                 meth = DH_OpenSSL();
913                 ret = meth->compute_key(key, pub_key, dh);
914
915                 goto err;
916                 }
917
918         p_UBSEC_ubsec_close(fd);
919
920         ret = p_UBSEC_ubsec_bits_to_bytes(k_len);
921 err:
922         return ret;
923         }
924
925 static int ubsec_dh_generate_key(DH *dh)
926         {
927         int      ret               = 0,
928                  random_bits       = 0,
929                  pub_key_len       = 0,
930                  priv_key_len      = 0,
931                  fd;
932         BIGNUM   *pub_key          = NULL;
933         BIGNUM   *priv_key         = NULL;
934
935         /* 
936          *  How many bits should Random x be? dh_key.c
937          *  sets the range from 0 to num_bits(modulus) ???
938          */
939
940         if (dh->priv_key == NULL)
941                 {
942                 priv_key = BN_new();
943                 if (priv_key == NULL) goto err;
944                 priv_key_len = BN_num_bits(dh->p);
945                 if(bn_wexpand(priv_key, dh->p->top) == NULL) goto err;
946                 do
947                         if (!BN_rand_range(priv_key, dh->p)) goto err;
948                 while (BN_is_zero(priv_key));
949                 random_bits = BN_num_bits(priv_key);
950                 }
951         else
952                 {
953                 priv_key = dh->priv_key;
954                 }
955
956         if (dh->pub_key == NULL)
957                 {
958                 pub_key = BN_new();
959                 pub_key_len = BN_num_bits(dh->p);
960                 if(bn_wexpand(pub_key, dh->p->top) == NULL) goto err;
961                 if(pub_key == NULL) goto err;
962                 }
963         else
964                 {
965                 pub_key = dh->pub_key;
966                 }
967
968         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0)
969                 {
970                 const DH_METHOD *meth;
971                 UBSECerr(UBSEC_F_UBSEC_DH_GENERATE_KEY, UBSEC_R_UNIT_FAILURE);
972                 meth = DH_OpenSSL();
973                 ret = meth->generate_key(dh);
974                 goto err;
975                 }
976
977         if (p_UBSEC_diffie_hellman_generate_ioctl(fd,
978                                                   (unsigned char *)priv_key->d, &priv_key_len,
979                                                   (unsigned char *)pub_key->d,  &pub_key_len,
980                                                   (unsigned char *)dh->g->d, BN_num_bits(dh->g),
981                                                   (unsigned char *)dh->p->d, BN_num_bits(dh->p),
982                                                   0, 0, random_bits) != 0)
983                 {
984                 /* Hardware's a no go, failover to software */
985                 const DH_METHOD *meth;
986
987                 UBSECerr(UBSEC_F_UBSEC_DH_GENERATE_KEY, UBSEC_R_REQUEST_FAILED);
988                 p_UBSEC_ubsec_close(fd);
989
990                 meth = DH_OpenSSL();
991                 ret = meth->generate_key(dh);
992
993                 goto err;
994                 }
995
996         p_UBSEC_ubsec_close(fd);
997
998         dh->pub_key = pub_key;
999         dh->pub_key->top = (pub_key_len + BN_BITS2-1) / BN_BITS2;
1000         dh->priv_key = priv_key;
1001         dh->priv_key->top = (priv_key_len + BN_BITS2-1) / BN_BITS2;
1002
1003         ret = 1;
1004 err:
1005         return ret;
1006         }
1007 #endif
1008
1009 #ifdef NOT_USED
1010 static int ubsec_rand_bytes(unsigned char * buf,
1011                             int num)
1012         {
1013         int      ret      = 0,
1014                  fd;
1015
1016         if ((fd = p_UBSEC_ubsec_open(UBSEC_KEY_DEVICE_NAME)) <= 0)
1017                 {
1018                 const RAND_METHOD *meth;
1019                 UBSECerr(UBSEC_F_UBSEC_RAND_BYTES, UBSEC_R_UNIT_FAILURE);
1020                 num = p_UBSEC_ubsec_bits_to_bytes(num);
1021                 meth = RAND_SSLeay();
1022                 meth->seed(buf, num);
1023                 ret = meth->bytes(buf, num);
1024                 goto err;
1025                 }
1026
1027         num *= 8; /* bytes to bits */
1028
1029         if (p_UBSEC_rng_ioctl(fd,
1030                               UBSEC_RNG_DIRECT,
1031                               buf,
1032                               &num) != 0)
1033                 {
1034                 /* Hardware's a no go, failover to software */
1035                 const RAND_METHOD *meth;
1036
1037                 UBSECerr(UBSEC_F_UBSEC_RAND_BYTES, UBSEC_R_REQUEST_FAILED);
1038                 p_UBSEC_ubsec_close(fd);
1039
1040                 num = p_UBSEC_ubsec_bits_to_bytes(num);
1041                 meth = RAND_SSLeay();
1042                 meth->seed(buf, num);
1043                 ret = meth->bytes(buf, num);
1044
1045                 goto err;
1046                 }
1047
1048         p_UBSEC_ubsec_close(fd);
1049
1050         ret = 1;
1051 err:
1052         return(ret);
1053         }
1054
1055
1056 static int ubsec_rand_status(void)
1057         {
1058         return 0;
1059         }
1060 #endif
1061
1062 /* This stuff is needed if this ENGINE is being compiled into a self-contained
1063  * shared-library. */
1064 #ifndef OPENSSL_NO_DYNAMIC_ENGINE
1065 static int bind_fn(ENGINE *e, const char *id)
1066         {
1067         if(id && (strcmp(id, engine_ubsec_id) != 0))
1068                 return 0;
1069         if(!bind_helper(e))
1070                 return 0;
1071         return 1;
1072         }
1073 IMPLEMENT_DYNAMIC_CHECK_FN()
1074 IMPLEMENT_DYNAMIC_BIND_FN(bind_fn)
1075 #endif /* OPENSSL_NO_DYNAMIC_ENGINE */
1076
1077 #endif /* !OPENSSL_NO_HW_UBSEC */
1078 #endif /* !OPENSSL_NO_HW */