blob: 56a19674962b45126bdfbeaaeaf790ed190930cd [file] [log] [blame]
Richard Levitte5572f482002-10-11 17:08:27 +00001/* crypto/engine/hw_cswift.c */
2/* Written by Geoff Thorpe (geoff@geoffthorpe.net) for the OpenSSL
3 * project 2000.
4 */
5/* ====================================================================
6 * Copyright (c) 1999-2001 The OpenSSL Project. All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 *
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 *
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in
17 * the documentation and/or other materials provided with the
18 * distribution.
19 *
20 * 3. All advertising materials mentioning features or use of this
21 * software must display the following acknowledgment:
22 * "This product includes software developed by the OpenSSL Project
23 * for use in the OpenSSL Toolkit. (http://www.OpenSSL.org/)"
24 *
25 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
26 * endorse or promote products derived from this software without
27 * prior written permission. For written permission, please contact
28 * licensing@OpenSSL.org.
29 *
30 * 5. Products derived from this software may not be called "OpenSSL"
31 * nor may "OpenSSL" appear in their names without prior written
32 * permission of the OpenSSL Project.
33 *
34 * 6. Redistributions of any form whatsoever must retain the following
35 * acknowledgment:
36 * "This product includes software developed by the OpenSSL Project
37 * for use in the OpenSSL Toolkit (http://www.OpenSSL.org/)"
38 *
39 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
40 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
41 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
42 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
43 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
44 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
45 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
46 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
48 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
49 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
50 * OF THE POSSIBILITY OF SUCH DAMAGE.
51 * ====================================================================
52 *
53 * This product includes cryptographic software written by Eric Young
54 * (eay@cryptsoft.com). This product includes software written by Tim
55 * Hudson (tjh@cryptsoft.com).
56 *
57 */
58
59#include <stdio.h>
Geoff Thorpe5be12642002-10-16 21:50:28 +000060#include <string.h>
Richard Levitte5572f482002-10-11 17:08:27 +000061#include <openssl/crypto.h>
Richard Levitte665dc392002-10-11 18:17:16 +000062#include <openssl/buffer.h>
Richard Levitte5572f482002-10-11 17:08:27 +000063#include <openssl/dso.h>
64#include <openssl/engine.h>
Geoff Thorpe3a87a9b2004-04-19 17:46:04 +000065#include <openssl/rsa.h>
66#include <openssl/dsa.h>
67#include <openssl/dh.h>
68#include <openssl/rand.h>
Geoff Thorpef15390b2004-05-17 18:56:15 +000069#include <openssl/bn.h>
Richard Levitte5572f482002-10-11 17:08:27 +000070
71#ifndef OPENSSL_NO_HW
72#ifndef OPENSSL_NO_HW_CSWIFT
73
74/* Attribution notice: Rainbow have generously allowed me to reproduce
75 * the necessary definitions here from their API. This means the support
76 * can build independently of whether application builders have the
77 * API or hardware. This will allow developers to easily produce software
78 * that has latent hardware support for any users that have accelerators
79 * installed, without the developers themselves needing anything extra.
80 *
81 * I have only clipped the parts from the CryptoSwift header files that
82 * are (or seem) relevant to the CryptoSwift support code. This is
83 * simply to keep the file sizes reasonable.
84 * [Geoff]
85 */
86#ifdef FLAT_INC
87#include "cswift.h"
88#else
89#include "vendor_defns/cswift.h"
90#endif
91
92#define CSWIFT_LIB_NAME "cswift engine"
Richard Levitte665dc392002-10-11 18:17:16 +000093#include "e_cswift_err.c"
Richard Levitte5572f482002-10-11 17:08:27 +000094
Richard Levittefbd78b52002-10-11 18:21:40 +000095#define DECIMAL_SIZE(type) ((sizeof(type)*8+2)/3+1)
96
Richard Levitte5572f482002-10-11 17:08:27 +000097static int cswift_destroy(ENGINE *e);
98static int cswift_init(ENGINE *e);
99static int cswift_finish(ENGINE *e);
Richard Levittea99ce1a2003-06-26 07:10:10 +0000100static int cswift_ctrl(ENGINE *e, int cmd, long i, void *p, void (*f)(void));
Nils Larschac86d922005-06-17 20:27:41 +0000101static int cswift_bn_32copy(SW_LARGENUMBER * out, const BIGNUM * in);
Richard Levitte5572f482002-10-11 17:08:27 +0000102
103/* BIGNUM stuff */
104static int cswift_mod_exp(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
105 const BIGNUM *m, BN_CTX *ctx);
106static int cswift_mod_exp_crt(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
107 const BIGNUM *q, const BIGNUM *dmp1, const BIGNUM *dmq1,
108 const BIGNUM *iqmp, BN_CTX *ctx);
109
110#ifndef OPENSSL_NO_RSA
111/* RSA stuff */
Geoff Thorpe46ef8732004-03-25 02:52:04 +0000112static int cswift_rsa_mod_exp(BIGNUM *r0, const BIGNUM *I, RSA *rsa, BN_CTX *ctx);
Richard Levitte5572f482002-10-11 17:08:27 +0000113#endif
114/* This function is aliased to mod_exp (with the mont stuff dropped). */
115static int cswift_mod_exp_mont(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
116 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx);
117
118#ifndef OPENSSL_NO_DSA
119/* DSA stuff */
120static DSA_SIG *cswift_dsa_sign(const unsigned char *dgst, int dlen, DSA *dsa);
121static int cswift_dsa_verify(const unsigned char *dgst, int dgst_len,
122 DSA_SIG *sig, DSA *dsa);
123#endif
124
125#ifndef OPENSSL_NO_DH
126/* DH stuff */
127/* This function is alised to mod_exp (with the DH and mont dropped). */
128static int cswift_mod_exp_dh(const DH *dh, BIGNUM *r,
129 const BIGNUM *a, const BIGNUM *p,
130 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx);
131#endif
132
133/* RAND stuff */
134static int cswift_rand_bytes(unsigned char *buf, int num);
135static int cswift_rand_status(void);
136
137/* The definitions for control commands specific to this engine */
138#define CSWIFT_CMD_SO_PATH ENGINE_CMD_BASE
139static const ENGINE_CMD_DEFN cswift_cmd_defns[] = {
140 {CSWIFT_CMD_SO_PATH,
141 "SO_PATH",
142 "Specifies the path to the 'cswift' shared library",
143 ENGINE_CMD_FLAG_STRING},
144 {0, NULL, NULL, 0}
145 };
146
147#ifndef OPENSSL_NO_RSA
148/* Our internal RSA_METHOD that we provide pointers to */
149static RSA_METHOD cswift_rsa =
150 {
151 "CryptoSwift RSA method",
152 NULL,
153 NULL,
154 NULL,
155 NULL,
156 cswift_rsa_mod_exp,
157 cswift_mod_exp_mont,
158 NULL,
159 NULL,
160 0,
161 NULL,
162 NULL,
Geoff Thorpe4ebb5292003-01-07 05:53:58 +0000163 NULL,
Richard Levitte5572f482002-10-11 17:08:27 +0000164 NULL
165 };
166#endif
167
168#ifndef OPENSSL_NO_DSA
169/* Our internal DSA_METHOD that we provide pointers to */
170static DSA_METHOD cswift_dsa =
171 {
172 "CryptoSwift DSA method",
173 cswift_dsa_sign,
174 NULL, /* dsa_sign_setup */
175 cswift_dsa_verify,
176 NULL, /* dsa_mod_exp */
177 NULL, /* bn_mod_exp */
178 NULL, /* init */
179 NULL, /* finish */
180 0, /* flags */
Geoff Thorpe0e4aa0d2003-01-15 02:01:55 +0000181 NULL, /* app_data */
182 NULL, /* dsa_paramgen */
183 NULL /* dsa_keygen */
Richard Levitte5572f482002-10-11 17:08:27 +0000184 };
185#endif
186
187#ifndef OPENSSL_NO_DH
188/* Our internal DH_METHOD that we provide pointers to */
189static DH_METHOD cswift_dh =
190 {
191 "CryptoSwift DH method",
192 NULL,
193 NULL,
194 cswift_mod_exp_dh,
195 NULL,
196 NULL,
197 0,
Geoff Thorpe0e4aa0d2003-01-15 02:01:55 +0000198 NULL,
Richard Levitte5572f482002-10-11 17:08:27 +0000199 NULL
200 };
201#endif
202
203static RAND_METHOD cswift_random =
204 {
205 /* "CryptoSwift RAND method", */
206 NULL,
207 cswift_rand_bytes,
208 NULL,
209 NULL,
210 cswift_rand_bytes,
211 cswift_rand_status,
212 };
213
214
215/* Constants used when creating the ENGINE */
216static const char *engine_cswift_id = "cswift";
217static const char *engine_cswift_name = "CryptoSwift hardware engine support";
218
219/* This internal function is used by ENGINE_cswift() and possibly by the
220 * "dynamic" ENGINE support too */
221static int bind_helper(ENGINE *e)
222 {
223#ifndef OPENSSL_NO_RSA
224 const RSA_METHOD *meth1;
225#endif
226#ifndef OPENSSL_NO_DH
227 const DH_METHOD *meth2;
228#endif
229 if(!ENGINE_set_id(e, engine_cswift_id) ||
230 !ENGINE_set_name(e, engine_cswift_name) ||
231#ifndef OPENSSL_NO_RSA
232 !ENGINE_set_RSA(e, &cswift_rsa) ||
233#endif
234#ifndef OPENSSL_NO_DSA
235 !ENGINE_set_DSA(e, &cswift_dsa) ||
236#endif
237#ifndef OPENSSL_NO_DH
238 !ENGINE_set_DH(e, &cswift_dh) ||
239#endif
240 !ENGINE_set_RAND(e, &cswift_random) ||
241 !ENGINE_set_destroy_function(e, cswift_destroy) ||
242 !ENGINE_set_init_function(e, cswift_init) ||
243 !ENGINE_set_finish_function(e, cswift_finish) ||
244 !ENGINE_set_ctrl_function(e, cswift_ctrl) ||
245 !ENGINE_set_cmd_defns(e, cswift_cmd_defns))
246 return 0;
247
248#ifndef OPENSSL_NO_RSA
249 /* We know that the "PKCS1_SSLeay()" functions hook properly
250 * to the cswift-specific mod_exp and mod_exp_crt so we use
251 * those functions. NB: We don't use ENGINE_openssl() or
252 * anything "more generic" because something like the RSAref
253 * code may not hook properly, and if you own one of these
254 * cards then you have the right to do RSA operations on it
255 * anyway! */
256 meth1 = RSA_PKCS1_SSLeay();
257 cswift_rsa.rsa_pub_enc = meth1->rsa_pub_enc;
258 cswift_rsa.rsa_pub_dec = meth1->rsa_pub_dec;
259 cswift_rsa.rsa_priv_enc = meth1->rsa_priv_enc;
260 cswift_rsa.rsa_priv_dec = meth1->rsa_priv_dec;
261#endif
262
263#ifndef OPENSSL_NO_DH
264 /* Much the same for Diffie-Hellman */
265 meth2 = DH_OpenSSL();
266 cswift_dh.generate_key = meth2->generate_key;
267 cswift_dh.compute_key = meth2->compute_key;
268#endif
269
270 /* Ensure the cswift error handling is set up */
271 ERR_load_CSWIFT_strings();
272 return 1;
273 }
274
Richard Levitte8f797f12002-11-13 15:30:25 +0000275#ifdef OPENSSL_NO_DYNAMIC_ENGINE
Richard Levitte5572f482002-10-11 17:08:27 +0000276static ENGINE *engine_cswift(void)
277 {
278 ENGINE *ret = ENGINE_new();
279 if(!ret)
280 return NULL;
281 if(!bind_helper(ret))
282 {
283 ENGINE_free(ret);
284 return NULL;
285 }
286 return ret;
287 }
288
289void ENGINE_load_cswift(void)
290 {
291 /* Copied from eng_[openssl|dyn].c */
292 ENGINE *toadd = engine_cswift();
293 if(!toadd) return;
294 ENGINE_add(toadd);
295 ENGINE_free(toadd);
296 ERR_clear_error();
297 }
Richard Levitte8f797f12002-11-13 15:30:25 +0000298#endif
Richard Levitte5572f482002-10-11 17:08:27 +0000299
300/* This is a process-global DSO handle used for loading and unloading
301 * the CryptoSwift library. NB: This is only set (or unset) during an
302 * init() or finish() call (reference counts permitting) and they're
303 * operating with global locks, so this should be thread-safe
304 * implicitly. */
305static DSO *cswift_dso = NULL;
306
307/* These are the function pointers that are (un)set when the library has
308 * successfully (un)loaded. */
309t_swAcquireAccContext *p_CSwift_AcquireAccContext = NULL;
310t_swAttachKeyParam *p_CSwift_AttachKeyParam = NULL;
311t_swSimpleRequest *p_CSwift_SimpleRequest = NULL;
312t_swReleaseAccContext *p_CSwift_ReleaseAccContext = NULL;
313
314/* Used in the DSO operations. */
315static const char *CSWIFT_LIBNAME = NULL;
316static const char *get_CSWIFT_LIBNAME(void)
317 {
318 if(CSWIFT_LIBNAME)
319 return CSWIFT_LIBNAME;
320 return "swift";
321 }
322static void free_CSWIFT_LIBNAME(void)
323 {
324 if(CSWIFT_LIBNAME)
325 OPENSSL_free((void*)CSWIFT_LIBNAME);
326 CSWIFT_LIBNAME = NULL;
327 }
328static long set_CSWIFT_LIBNAME(const char *name)
329 {
330 free_CSWIFT_LIBNAME();
331 return (((CSWIFT_LIBNAME = BUF_strdup(name)) != NULL) ? 1 : 0);
332 }
333static const char *CSWIFT_F1 = "swAcquireAccContext";
334static const char *CSWIFT_F2 = "swAttachKeyParam";
335static const char *CSWIFT_F3 = "swSimpleRequest";
336static const char *CSWIFT_F4 = "swReleaseAccContext";
337
338
339/* CryptoSwift library functions and mechanics - these are used by the
340 * higher-level functions further down. NB: As and where there's no
341 * error checking, take a look lower down where these functions are
342 * called, the checking and error handling is probably down there. */
343
344/* utility function to obtain a context */
345static int get_context(SW_CONTEXT_HANDLE *hac)
346 {
347 SW_STATUS status;
348
349 status = p_CSwift_AcquireAccContext(hac);
350 if(status != SW_OK)
351 return 0;
352 return 1;
353 }
354
355/* similarly to release one. */
356static void release_context(SW_CONTEXT_HANDLE hac)
357 {
358 p_CSwift_ReleaseAccContext(hac);
359 }
360
361/* Destructor (complements the "ENGINE_cswift()" constructor) */
362static int cswift_destroy(ENGINE *e)
363 {
364 free_CSWIFT_LIBNAME();
365 ERR_unload_CSWIFT_strings();
366 return 1;
367 }
368
369/* (de)initialisation functions. */
370static int cswift_init(ENGINE *e)
371 {
372 SW_CONTEXT_HANDLE hac;
373 t_swAcquireAccContext *p1;
374 t_swAttachKeyParam *p2;
375 t_swSimpleRequest *p3;
376 t_swReleaseAccContext *p4;
377
378 if(cswift_dso != NULL)
379 {
380 CSWIFTerr(CSWIFT_F_CSWIFT_INIT,CSWIFT_R_ALREADY_LOADED);
381 goto err;
382 }
383 /* Attempt to load libswift.so/swift.dll/whatever. */
384 cswift_dso = DSO_load(NULL, get_CSWIFT_LIBNAME(), NULL, 0);
385 if(cswift_dso == NULL)
386 {
387 CSWIFTerr(CSWIFT_F_CSWIFT_INIT,CSWIFT_R_NOT_LOADED);
388 goto err;
389 }
390 if(!(p1 = (t_swAcquireAccContext *)
391 DSO_bind_func(cswift_dso, CSWIFT_F1)) ||
392 !(p2 = (t_swAttachKeyParam *)
393 DSO_bind_func(cswift_dso, CSWIFT_F2)) ||
394 !(p3 = (t_swSimpleRequest *)
395 DSO_bind_func(cswift_dso, CSWIFT_F3)) ||
396 !(p4 = (t_swReleaseAccContext *)
397 DSO_bind_func(cswift_dso, CSWIFT_F4)))
398 {
399 CSWIFTerr(CSWIFT_F_CSWIFT_INIT,CSWIFT_R_NOT_LOADED);
400 goto err;
401 }
402 /* Copy the pointers */
403 p_CSwift_AcquireAccContext = p1;
404 p_CSwift_AttachKeyParam = p2;
405 p_CSwift_SimpleRequest = p3;
406 p_CSwift_ReleaseAccContext = p4;
407 /* Try and get a context - if not, we may have a DSO but no
408 * accelerator! */
409 if(!get_context(&hac))
410 {
411 CSWIFTerr(CSWIFT_F_CSWIFT_INIT,CSWIFT_R_UNIT_FAILURE);
412 goto err;
413 }
414 release_context(hac);
415 /* Everything's fine. */
416 return 1;
417err:
418 if(cswift_dso)
Nils Larschac86d922005-06-17 20:27:41 +0000419 {
Richard Levitte5572f482002-10-11 17:08:27 +0000420 DSO_free(cswift_dso);
Nils Larschac86d922005-06-17 20:27:41 +0000421 cswift_dso = NULL;
422 }
Richard Levitte5572f482002-10-11 17:08:27 +0000423 p_CSwift_AcquireAccContext = NULL;
424 p_CSwift_AttachKeyParam = NULL;
425 p_CSwift_SimpleRequest = NULL;
426 p_CSwift_ReleaseAccContext = NULL;
427 return 0;
428 }
429
430static int cswift_finish(ENGINE *e)
431 {
432 free_CSWIFT_LIBNAME();
433 if(cswift_dso == NULL)
434 {
435 CSWIFTerr(CSWIFT_F_CSWIFT_FINISH,CSWIFT_R_NOT_LOADED);
436 return 0;
437 }
438 if(!DSO_free(cswift_dso))
439 {
440 CSWIFTerr(CSWIFT_F_CSWIFT_FINISH,CSWIFT_R_UNIT_FAILURE);
441 return 0;
442 }
443 cswift_dso = NULL;
444 p_CSwift_AcquireAccContext = NULL;
445 p_CSwift_AttachKeyParam = NULL;
446 p_CSwift_SimpleRequest = NULL;
447 p_CSwift_ReleaseAccContext = NULL;
448 return 1;
449 }
450
Richard Levittea99ce1a2003-06-26 07:10:10 +0000451static int cswift_ctrl(ENGINE *e, int cmd, long i, void *p, void (*f)(void))
Richard Levitte5572f482002-10-11 17:08:27 +0000452 {
453 int initialised = ((cswift_dso == NULL) ? 0 : 1);
454 switch(cmd)
455 {
456 case CSWIFT_CMD_SO_PATH:
457 if(p == NULL)
458 {
459 CSWIFTerr(CSWIFT_F_CSWIFT_CTRL,ERR_R_PASSED_NULL_PARAMETER);
460 return 0;
461 }
462 if(initialised)
463 {
464 CSWIFTerr(CSWIFT_F_CSWIFT_CTRL,CSWIFT_R_ALREADY_LOADED);
465 return 0;
466 }
467 return set_CSWIFT_LIBNAME((const char *)p);
468 default:
469 break;
470 }
471 CSWIFTerr(CSWIFT_F_CSWIFT_CTRL,CSWIFT_R_CTRL_COMMAND_NOT_IMPLEMENTED);
472 return 0;
473 }
474
475/* Un petit mod_exp */
476static int cswift_mod_exp(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
477 const BIGNUM *m, BN_CTX *ctx)
478 {
479 /* I need somewhere to store temporary serialised values for
480 * use with the CryptoSwift API calls. A neat cheat - I'll use
481 * BIGNUMs from the BN_CTX but access their arrays directly as
482 * byte arrays <grin>. This way I don't have to clean anything
483 * up. */
484 BIGNUM *modulus;
485 BIGNUM *exponent;
486 BIGNUM *argument;
487 BIGNUM *result;
488 SW_STATUS sw_status;
489 SW_LARGENUMBER arg, res;
490 SW_PARAM sw_param;
491 SW_CONTEXT_HANDLE hac;
492 int to_return, acquired;
493
494 modulus = exponent = argument = result = NULL;
495 to_return = 0; /* expect failure */
496 acquired = 0;
497
498 if(!get_context(&hac))
499 {
500 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_UNIT_FAILURE);
501 goto err;
502 }
503 acquired = 1;
504 /* Prepare the params */
505 BN_CTX_start(ctx);
506 modulus = BN_CTX_get(ctx);
507 exponent = BN_CTX_get(ctx);
508 argument = BN_CTX_get(ctx);
509 result = BN_CTX_get(ctx);
510 if(!result)
511 {
512 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_BN_CTX_FULL);
513 goto err;
514 }
515 if(!bn_wexpand(modulus, m->top) || !bn_wexpand(exponent, p->top) ||
516 !bn_wexpand(argument, a->top) || !bn_wexpand(result, m->top))
517 {
518 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_BN_EXPAND_FAIL);
519 goto err;
520 }
521 sw_param.type = SW_ALG_EXP;
522 sw_param.up.exp.modulus.nbytes = BN_bn2bin(m,
523 (unsigned char *)modulus->d);
524 sw_param.up.exp.modulus.value = (unsigned char *)modulus->d;
525 sw_param.up.exp.exponent.nbytes = BN_bn2bin(p,
526 (unsigned char *)exponent->d);
527 sw_param.up.exp.exponent.value = (unsigned char *)exponent->d;
528 /* Attach the key params */
529 sw_status = p_CSwift_AttachKeyParam(hac, &sw_param);
530 switch(sw_status)
531 {
532 case SW_OK:
533 break;
534 case SW_ERR_INPUT_SIZE:
535 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_BAD_KEY_SIZE);
536 goto err;
537 default:
538 {
539 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
540 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_REQUEST_FAILED);
541 sprintf(tmpbuf, "%ld", sw_status);
542 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
543 }
544 goto err;
545 }
546 /* Prepare the argument and response */
547 arg.nbytes = BN_bn2bin(a, (unsigned char *)argument->d);
548 arg.value = (unsigned char *)argument->d;
549 res.nbytes = BN_num_bytes(m);
550 memset(result->d, 0, res.nbytes);
551 res.value = (unsigned char *)result->d;
552 /* Perform the operation */
553 if((sw_status = p_CSwift_SimpleRequest(hac, SW_CMD_MODEXP, &arg, 1,
554 &res, 1)) != SW_OK)
555 {
556 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
557 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP,CSWIFT_R_REQUEST_FAILED);
558 sprintf(tmpbuf, "%ld", sw_status);
559 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
560 goto err;
561 }
562 /* Convert the response */
563 BN_bin2bn((unsigned char *)result->d, res.nbytes, r);
564 to_return = 1;
565err:
566 if(acquired)
567 release_context(hac);
568 BN_CTX_end(ctx);
569 return to_return;
570 }
571
Nils Larschac86d922005-06-17 20:27:41 +0000572
573int cswift_bn_32copy(SW_LARGENUMBER * out, const BIGNUM * in)
574{
575 int mod;
576 int numbytes = BN_num_bytes(in);
577
578 mod = 0;
579 while( ((out->nbytes = (numbytes+mod)) % 32) )
580 {
581 mod++;
582 }
583 out->value = (unsigned char*)OPENSSL_malloc(out->nbytes);
584 if(!out->value)
585 {
586 return 0;
587 }
588 BN_bn2bin(in, &out->value[mod]);
589 if(mod)
590 memset(out->value, 0, mod);
591
592 return 1;
593}
594
Richard Levitte5572f482002-10-11 17:08:27 +0000595/* Un petit mod_exp chinois */
596static int cswift_mod_exp_crt(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
597 const BIGNUM *q, const BIGNUM *dmp1,
598 const BIGNUM *dmq1, const BIGNUM *iqmp, BN_CTX *ctx)
599 {
600 SW_STATUS sw_status;
601 SW_LARGENUMBER arg, res;
602 SW_PARAM sw_param;
603 SW_CONTEXT_HANDLE hac;
Richard Levitte5572f482002-10-11 17:08:27 +0000604 BIGNUM *result = NULL;
Nils Larschac86d922005-06-17 20:27:41 +0000605 BIGNUM *argument = NULL;
Richard Levitte5572f482002-10-11 17:08:27 +0000606 int to_return = 0; /* expect failure */
607 int acquired = 0;
Nils Larschac86d922005-06-17 20:27:41 +0000608
609 sw_param.up.crt.p.value = NULL;
610 sw_param.up.crt.q.value = NULL;
611 sw_param.up.crt.dmp1.value = NULL;
612 sw_param.up.crt.dmq1.value = NULL;
613 sw_param.up.crt.iqmp.value = NULL;
Richard Levitte5572f482002-10-11 17:08:27 +0000614
615 if(!get_context(&hac))
616 {
617 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_UNIT_FAILURE);
618 goto err;
619 }
620 acquired = 1;
Nils Larschac86d922005-06-17 20:27:41 +0000621
Richard Levitte5572f482002-10-11 17:08:27 +0000622 /* Prepare the params */
Nils Larschac86d922005-06-17 20:27:41 +0000623 argument = BN_new();
624 result = BN_new();
625 if(!result || !argument)
Richard Levitte5572f482002-10-11 17:08:27 +0000626 {
627 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_CTX_FULL);
628 goto err;
629 }
Nils Larschac86d922005-06-17 20:27:41 +0000630
631
632 sw_param.type = SW_ALG_CRT;
633 /************************************************************************/
634 /* 04/02/2003 */
635 /* Modified by Frederic Giudicelli (deny-all.com) to overcome the */
636 /* limitation of cswift with values not a multiple of 32 */
637 /************************************************************************/
638 if(!cswift_bn_32copy(&sw_param.up.crt.p, p))
639 {
640 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
641 goto err;
642 }
643 if(!cswift_bn_32copy(&sw_param.up.crt.q, q))
644 {
645 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
646 goto err;
647 }
648 if(!cswift_bn_32copy(&sw_param.up.crt.dmp1, dmp1))
649 {
650 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
651 goto err;
652 }
653 if(!cswift_bn_32copy(&sw_param.up.crt.dmq1, dmq1))
654 {
655 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
656 goto err;
657 }
658 if(!cswift_bn_32copy(&sw_param.up.crt.iqmp, iqmp))
659 {
660 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
661 goto err;
662 }
663 if( !bn_wexpand(argument, a->top) ||
Richard Levitte5572f482002-10-11 17:08:27 +0000664 !bn_wexpand(result, p->top + q->top))
665 {
666 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BN_EXPAND_FAIL);
667 goto err;
668 }
Nils Larschac86d922005-06-17 20:27:41 +0000669
Richard Levitte5572f482002-10-11 17:08:27 +0000670 /* Attach the key params */
671 sw_status = p_CSwift_AttachKeyParam(hac, &sw_param);
672 switch(sw_status)
673 {
674 case SW_OK:
675 break;
676 case SW_ERR_INPUT_SIZE:
677 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_BAD_KEY_SIZE);
678 goto err;
679 default:
680 {
681 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
682 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_REQUEST_FAILED);
683 sprintf(tmpbuf, "%ld", sw_status);
684 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
685 }
686 goto err;
687 }
688 /* Prepare the argument and response */
689 arg.nbytes = BN_bn2bin(a, (unsigned char *)argument->d);
690 arg.value = (unsigned char *)argument->d;
691 res.nbytes = 2 * BN_num_bytes(p);
692 memset(result->d, 0, res.nbytes);
693 res.value = (unsigned char *)result->d;
694 /* Perform the operation */
695 if((sw_status = p_CSwift_SimpleRequest(hac, SW_CMD_MODEXP_CRT, &arg, 1,
696 &res, 1)) != SW_OK)
697 {
698 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
699 CSWIFTerr(CSWIFT_F_CSWIFT_MOD_EXP_CRT,CSWIFT_R_REQUEST_FAILED);
700 sprintf(tmpbuf, "%ld", sw_status);
701 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
702 goto err;
703 }
704 /* Convert the response */
705 BN_bin2bn((unsigned char *)result->d, res.nbytes, r);
706 to_return = 1;
707err:
Nils Larschac86d922005-06-17 20:27:41 +0000708 if(sw_param.up.crt.p.value)
709 OPENSSL_free(sw_param.up.crt.p.value);
710 if(sw_param.up.crt.q.value)
711 OPENSSL_free(sw_param.up.crt.q.value);
712 if(sw_param.up.crt.dmp1.value)
713 OPENSSL_free(sw_param.up.crt.dmp1.value);
714 if(sw_param.up.crt.dmq1.value)
715 OPENSSL_free(sw_param.up.crt.dmq1.value);
716 if(sw_param.up.crt.iqmp.value)
717 OPENSSL_free(sw_param.up.crt.iqmp.value);
718 if(result)
719 BN_free(result);
720 if(argument)
721 BN_free(argument);
Richard Levitte5572f482002-10-11 17:08:27 +0000722 if(acquired)
723 release_context(hac);
Richard Levitte5572f482002-10-11 17:08:27 +0000724 return to_return;
725 }
726
727#ifndef OPENSSL_NO_RSA
Geoff Thorpe46ef8732004-03-25 02:52:04 +0000728static int cswift_rsa_mod_exp(BIGNUM *r0, const BIGNUM *I, RSA *rsa, BN_CTX *ctx)
Richard Levitte5572f482002-10-11 17:08:27 +0000729 {
Richard Levitte5572f482002-10-11 17:08:27 +0000730 int to_return = 0;
Nils Larschac86d922005-06-17 20:27:41 +0000731 const RSA_METHOD * def_rsa_method;
732
733 /* Try the limits of RSA (2048 bits) */
734 if(BN_num_bytes(rsa->p) > 128 ||
735 BN_num_bytes(rsa->q) > 128 ||
736 BN_num_bytes(rsa->dmp1) > 128 ||
737 BN_num_bytes(rsa->dmq1) > 128 ||
738 BN_num_bytes(rsa->iqmp) > 128)
739 {
740#ifdef RSA_NULL
741 def_rsa_method=RSA_null_method();
742#else
743#if 0
744 def_rsa_method=RSA_PKCS1_RSAref();
745#else
746 def_rsa_method=RSA_PKCS1_SSLeay();
747#endif
748#endif
749 if(def_rsa_method)
750 return def_rsa_method->rsa_mod_exp(r0, I, rsa, ctx);
751 }
Richard Levitte5572f482002-10-11 17:08:27 +0000752
Richard Levitte5572f482002-10-11 17:08:27 +0000753 if(!rsa->p || !rsa->q || !rsa->dmp1 || !rsa->dmq1 || !rsa->iqmp)
754 {
755 CSWIFTerr(CSWIFT_F_CSWIFT_RSA_MOD_EXP,CSWIFT_R_MISSING_KEY_COMPONENTS);
756 goto err;
757 }
758 to_return = cswift_mod_exp_crt(r0, I, rsa->p, rsa->q, rsa->dmp1,
759 rsa->dmq1, rsa->iqmp, ctx);
760err:
Richard Levitte5572f482002-10-11 17:08:27 +0000761 return to_return;
762 }
763#endif
764
765/* This function is aliased to mod_exp (with the mont stuff dropped). */
766static int cswift_mod_exp_mont(BIGNUM *r, const BIGNUM *a, const BIGNUM *p,
767 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx)
768 {
Nils Larschac86d922005-06-17 20:27:41 +0000769 const RSA_METHOD * def_rsa_method;
770
771 /* Try the limits of RSA (2048 bits) */
772 if(BN_num_bytes(r) > 256 ||
773 BN_num_bytes(a) > 256 ||
774 BN_num_bytes(m) > 256)
775 {
776#ifdef RSA_NULL
777 def_rsa_method=RSA_null_method();
778#else
779#if 0
780 def_rsa_method=RSA_PKCS1_RSAref();
781#else
782 def_rsa_method=RSA_PKCS1_SSLeay();
783#endif
784#endif
785 if(def_rsa_method)
786 return def_rsa_method->bn_mod_exp(r, a, p, m, ctx, m_ctx);
787 }
788
Richard Levitte5572f482002-10-11 17:08:27 +0000789 return cswift_mod_exp(r, a, p, m, ctx);
790 }
791
792#ifndef OPENSSL_NO_DSA
793static DSA_SIG *cswift_dsa_sign(const unsigned char *dgst, int dlen, DSA *dsa)
794 {
795 SW_CONTEXT_HANDLE hac;
796 SW_PARAM sw_param;
797 SW_STATUS sw_status;
798 SW_LARGENUMBER arg, res;
799 unsigned char *ptr;
800 BN_CTX *ctx;
801 BIGNUM *dsa_p = NULL;
802 BIGNUM *dsa_q = NULL;
803 BIGNUM *dsa_g = NULL;
804 BIGNUM *dsa_key = NULL;
805 BIGNUM *result = NULL;
806 DSA_SIG *to_return = NULL;
807 int acquired = 0;
808
809 if((ctx = BN_CTX_new()) == NULL)
810 goto err;
811 if(!get_context(&hac))
812 {
813 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_UNIT_FAILURE);
814 goto err;
815 }
816 acquired = 1;
817 /* Prepare the params */
818 BN_CTX_start(ctx);
819 dsa_p = BN_CTX_get(ctx);
820 dsa_q = BN_CTX_get(ctx);
821 dsa_g = BN_CTX_get(ctx);
822 dsa_key = BN_CTX_get(ctx);
823 result = BN_CTX_get(ctx);
824 if(!result)
825 {
826 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_BN_CTX_FULL);
827 goto err;
828 }
829 if(!bn_wexpand(dsa_p, dsa->p->top) ||
830 !bn_wexpand(dsa_q, dsa->q->top) ||
831 !bn_wexpand(dsa_g, dsa->g->top) ||
832 !bn_wexpand(dsa_key, dsa->priv_key->top) ||
833 !bn_wexpand(result, dsa->p->top))
834 {
835 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_BN_EXPAND_FAIL);
836 goto err;
837 }
838 sw_param.type = SW_ALG_DSA;
839 sw_param.up.dsa.p.nbytes = BN_bn2bin(dsa->p,
840 (unsigned char *)dsa_p->d);
841 sw_param.up.dsa.p.value = (unsigned char *)dsa_p->d;
842 sw_param.up.dsa.q.nbytes = BN_bn2bin(dsa->q,
843 (unsigned char *)dsa_q->d);
844 sw_param.up.dsa.q.value = (unsigned char *)dsa_q->d;
845 sw_param.up.dsa.g.nbytes = BN_bn2bin(dsa->g,
846 (unsigned char *)dsa_g->d);
847 sw_param.up.dsa.g.value = (unsigned char *)dsa_g->d;
848 sw_param.up.dsa.key.nbytes = BN_bn2bin(dsa->priv_key,
849 (unsigned char *)dsa_key->d);
850 sw_param.up.dsa.key.value = (unsigned char *)dsa_key->d;
851 /* Attach the key params */
852 sw_status = p_CSwift_AttachKeyParam(hac, &sw_param);
853 switch(sw_status)
854 {
855 case SW_OK:
856 break;
857 case SW_ERR_INPUT_SIZE:
858 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_BAD_KEY_SIZE);
859 goto err;
860 default:
861 {
862 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
863 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_REQUEST_FAILED);
864 sprintf(tmpbuf, "%ld", sw_status);
865 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
866 }
867 goto err;
868 }
869 /* Prepare the argument and response */
870 arg.nbytes = dlen;
871 arg.value = (unsigned char *)dgst;
872 res.nbytes = BN_num_bytes(dsa->p);
873 memset(result->d, 0, res.nbytes);
874 res.value = (unsigned char *)result->d;
875 /* Perform the operation */
876 sw_status = p_CSwift_SimpleRequest(hac, SW_CMD_DSS_SIGN, &arg, 1,
877 &res, 1);
878 if(sw_status != SW_OK)
879 {
880 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
881 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_SIGN,CSWIFT_R_REQUEST_FAILED);
882 sprintf(tmpbuf, "%ld", sw_status);
883 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
884 goto err;
885 }
886 /* Convert the response */
887 ptr = (unsigned char *)result->d;
888 if((to_return = DSA_SIG_new()) == NULL)
889 goto err;
890 to_return->r = BN_bin2bn((unsigned char *)result->d, 20, NULL);
891 to_return->s = BN_bin2bn((unsigned char *)result->d + 20, 20, NULL);
892
893err:
894 if(acquired)
895 release_context(hac);
896 if(ctx)
897 {
898 BN_CTX_end(ctx);
899 BN_CTX_free(ctx);
900 }
901 return to_return;
902 }
903
904static int cswift_dsa_verify(const unsigned char *dgst, int dgst_len,
905 DSA_SIG *sig, DSA *dsa)
906 {
907 SW_CONTEXT_HANDLE hac;
908 SW_PARAM sw_param;
909 SW_STATUS sw_status;
910 SW_LARGENUMBER arg[2], res;
911 unsigned long sig_result;
912 BN_CTX *ctx;
913 BIGNUM *dsa_p = NULL;
914 BIGNUM *dsa_q = NULL;
915 BIGNUM *dsa_g = NULL;
916 BIGNUM *dsa_key = NULL;
917 BIGNUM *argument = NULL;
918 int to_return = -1;
919 int acquired = 0;
920
921 if((ctx = BN_CTX_new()) == NULL)
922 goto err;
923 if(!get_context(&hac))
924 {
925 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_UNIT_FAILURE);
926 goto err;
927 }
928 acquired = 1;
929 /* Prepare the params */
930 BN_CTX_start(ctx);
931 dsa_p = BN_CTX_get(ctx);
932 dsa_q = BN_CTX_get(ctx);
933 dsa_g = BN_CTX_get(ctx);
934 dsa_key = BN_CTX_get(ctx);
935 argument = BN_CTX_get(ctx);
936 if(!argument)
937 {
938 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_BN_CTX_FULL);
939 goto err;
940 }
941 if(!bn_wexpand(dsa_p, dsa->p->top) ||
942 !bn_wexpand(dsa_q, dsa->q->top) ||
943 !bn_wexpand(dsa_g, dsa->g->top) ||
944 !bn_wexpand(dsa_key, dsa->pub_key->top) ||
945 !bn_wexpand(argument, 40))
946 {
947 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_BN_EXPAND_FAIL);
948 goto err;
949 }
950 sw_param.type = SW_ALG_DSA;
951 sw_param.up.dsa.p.nbytes = BN_bn2bin(dsa->p,
952 (unsigned char *)dsa_p->d);
953 sw_param.up.dsa.p.value = (unsigned char *)dsa_p->d;
954 sw_param.up.dsa.q.nbytes = BN_bn2bin(dsa->q,
955 (unsigned char *)dsa_q->d);
956 sw_param.up.dsa.q.value = (unsigned char *)dsa_q->d;
957 sw_param.up.dsa.g.nbytes = BN_bn2bin(dsa->g,
958 (unsigned char *)dsa_g->d);
959 sw_param.up.dsa.g.value = (unsigned char *)dsa_g->d;
960 sw_param.up.dsa.key.nbytes = BN_bn2bin(dsa->pub_key,
961 (unsigned char *)dsa_key->d);
962 sw_param.up.dsa.key.value = (unsigned char *)dsa_key->d;
963 /* Attach the key params */
964 sw_status = p_CSwift_AttachKeyParam(hac, &sw_param);
965 switch(sw_status)
966 {
967 case SW_OK:
968 break;
969 case SW_ERR_INPUT_SIZE:
970 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_BAD_KEY_SIZE);
971 goto err;
972 default:
973 {
974 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
975 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_REQUEST_FAILED);
976 sprintf(tmpbuf, "%ld", sw_status);
977 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
978 }
979 goto err;
980 }
981 /* Prepare the argument and response */
982 arg[0].nbytes = dgst_len;
983 arg[0].value = (unsigned char *)dgst;
984 arg[1].nbytes = 40;
985 arg[1].value = (unsigned char *)argument->d;
986 memset(arg[1].value, 0, 40);
987 BN_bn2bin(sig->r, arg[1].value + 20 - BN_num_bytes(sig->r));
988 BN_bn2bin(sig->s, arg[1].value + 40 - BN_num_bytes(sig->s));
989 res.nbytes = 4; /* unsigned long */
990 res.value = (unsigned char *)(&sig_result);
991 /* Perform the operation */
992 sw_status = p_CSwift_SimpleRequest(hac, SW_CMD_DSS_VERIFY, arg, 2,
993 &res, 1);
994 if(sw_status != SW_OK)
995 {
996 char tmpbuf[DECIMAL_SIZE(sw_status)+1];
997 CSWIFTerr(CSWIFT_F_CSWIFT_DSA_VERIFY,CSWIFT_R_REQUEST_FAILED);
998 sprintf(tmpbuf, "%ld", sw_status);
999 ERR_add_error_data(2, "CryptoSwift error number is ",tmpbuf);
1000 goto err;
1001 }
1002 /* Convert the response */
1003 to_return = ((sig_result == 0) ? 0 : 1);
1004
1005err:
1006 if(acquired)
1007 release_context(hac);
1008 if(ctx)
1009 {
1010 BN_CTX_end(ctx);
1011 BN_CTX_free(ctx);
1012 }
1013 return to_return;
1014 }
1015#endif
1016
1017#ifndef OPENSSL_NO_DH
1018/* This function is aliased to mod_exp (with the dh and mont dropped). */
1019static int cswift_mod_exp_dh(const DH *dh, BIGNUM *r,
1020 const BIGNUM *a, const BIGNUM *p,
1021 const BIGNUM *m, BN_CTX *ctx, BN_MONT_CTX *m_ctx)
1022 {
1023 return cswift_mod_exp(r, a, p, m, ctx);
1024 }
1025#endif
1026
1027/* Random bytes are good */
1028static int cswift_rand_bytes(unsigned char *buf, int num)
1029{
1030 SW_CONTEXT_HANDLE hac;
1031 SW_STATUS swrc;
1032 SW_LARGENUMBER largenum;
Richard Levitte5572f482002-10-11 17:08:27 +00001033 int acquired = 0;
1034 int to_return = 0; /* assume failure */
Nils Larschac86d922005-06-17 20:27:41 +00001035 unsigned char buf32[1024];
1036
Richard Levitte5572f482002-10-11 17:08:27 +00001037
1038 if (!get_context(&hac))
1039 {
Bodo Möllerfbeaa3c2005-05-09 00:27:37 +00001040 CSWIFTerr(CSWIFT_F_CSWIFT_RAND_BYTES, CSWIFT_R_UNIT_FAILURE);
Richard Levitte5572f482002-10-11 17:08:27 +00001041 goto err;
1042 }
1043 acquired = 1;
1044
Nils Larschac86d922005-06-17 20:27:41 +00001045 /************************************************************************/
1046 /* 04/02/2003 */
1047 /* Modified by Frederic Giudicelli (deny-all.com) to overcome the */
1048 /* limitation of cswift with values not a multiple of 32 */
1049 /************************************************************************/
1050
1051 while(num >= sizeof(buf32))
Richard Levitte5572f482002-10-11 17:08:27 +00001052 {
Nils Larschac86d922005-06-17 20:27:41 +00001053 largenum.value = buf;
1054 largenum.nbytes = sizeof(buf32);
Richard Levitte5572f482002-10-11 17:08:27 +00001055 /* tell CryptoSwift how many bytes we want and where we want it.
1056 * Note: - CryptoSwift cannot do more than 4096 bytes at a time.
1057 * - CryptoSwift can only do multiple of 32-bits. */
Richard Levitte5572f482002-10-11 17:08:27 +00001058 swrc = p_CSwift_SimpleRequest(hac, SW_CMD_RAND, NULL, 0, &largenum, 1);
1059 if (swrc != SW_OK)
1060 {
1061 char tmpbuf[20];
Bodo Möllerfbeaa3c2005-05-09 00:27:37 +00001062 CSWIFTerr(CSWIFT_F_CSWIFT_RAND_BYTES, CSWIFT_R_REQUEST_FAILED);
Richard Levitte5572f482002-10-11 17:08:27 +00001063 sprintf(tmpbuf, "%ld", swrc);
1064 ERR_add_error_data(2, "CryptoSwift error number is ", tmpbuf);
1065 goto err;
1066 }
Nils Larschac86d922005-06-17 20:27:41 +00001067 buf += sizeof(buf32);
1068 num -= sizeof(buf32);
Richard Levitte5572f482002-10-11 17:08:27 +00001069 }
Nils Larschac86d922005-06-17 20:27:41 +00001070 if(num)
1071 {
1072 largenum.nbytes = sizeof(buf32);
1073 largenum.value = buf32;
1074 swrc = p_CSwift_SimpleRequest(hac, SW_CMD_RAND, NULL, 0, &largenum, 1);
1075 if (swrc != SW_OK)
1076 {
1077 char tmpbuf[20];
1078 CSWIFTerr(CSWIFT_F_CSWIFT_CTRL, CSWIFT_R_REQUEST_FAILED);
1079 sprintf(tmpbuf, "%ld", swrc);
1080 ERR_add_error_data(2, "CryptoSwift error number is ", tmpbuf);
1081 goto err;
1082 }
1083 memcpy(buf, largenum.value, num);
1084 }
Richard Levitte5572f482002-10-11 17:08:27 +00001085
Nils Larschac86d922005-06-17 20:27:41 +00001086 to_return = 1; /* success */
Richard Levitte5572f482002-10-11 17:08:27 +00001087err:
1088 if (acquired)
1089 release_context(hac);
Nils Larschac86d922005-06-17 20:27:41 +00001090
Richard Levitte5572f482002-10-11 17:08:27 +00001091 return to_return;
1092}
1093
1094static int cswift_rand_status(void)
1095{
1096 return 1;
1097}
1098
1099
1100/* This stuff is needed if this ENGINE is being compiled into a self-contained
1101 * shared-library. */
Richard Levitteecd45312002-10-11 18:06:08 +00001102#ifndef OPENSSL_NO_DYNAMIC_ENGINE
Richard Levitte5572f482002-10-11 17:08:27 +00001103static int bind_fn(ENGINE *e, const char *id)
1104 {
1105 if(id && (strcmp(id, engine_cswift_id) != 0))
1106 return 0;
1107 if(!bind_helper(e))
1108 return 0;
1109 return 1;
1110 }
1111IMPLEMENT_DYNAMIC_CHECK_FN()
1112IMPLEMENT_DYNAMIC_BIND_FN(bind_fn)
Richard Levitteecd45312002-10-11 18:06:08 +00001113#endif /* OPENSSL_NO_DYNAMIC_ENGINE */
Richard Levitte5572f482002-10-11 17:08:27 +00001114
1115#endif /* !OPENSSL_NO_HW_CSWIFT */
1116#endif /* !OPENSSL_NO_HW */