1 /************************************************************** 2 * 3 * Licensed to the Apache Software Foundation (ASF) under one 4 * or more contributor license agreements. See the NOTICE file 5 * distributed with this work for additional information 6 * regarding copyright ownership. The ASF licenses this file 7 * to you under the Apache License, Version 2.0 (the 8 * "License"); you may not use this file except in compliance 9 * with the License. You may obtain a copy of the License at 10 * 11 * http://www.apache.org/licenses/LICENSE-2.0 12 * 13 * Unless required by applicable law or agreed to in writing, 14 * software distributed under the License is distributed on an 15 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY 16 * KIND, either express or implied. See the License for the 17 * specific language governing permissions and limitations 18 * under the License. 19 * 20 *************************************************************/ 21 22 23 24 25 // MARKER(update_precomp.py): autogen include statement, do not remove 26 #include "precompiled_xmlsecurity.hxx" 27 28 //todo before commit: nssrenam.h is not delivered!!! 29 #ifndef __nssrenam_h_ 30 #define CERT_NewTempCertificate __CERT_NewTempCertificate 31 #endif /* __nssrenam_h_ */ 32 33 #include "cert.h" 34 #include "secerr.h" 35 #include "ocsp.h" 36 37 #include <sal/config.h> 38 #include "securityenvironment_nssimpl.hxx" 39 #include "x509certificate_nssimpl.hxx" 40 #include <rtl/uuid.h> 41 #include "../diagnose.hxx" 42 43 #include <sal/types.h> 44 //For reasons that escape me, this is what xmlsec does when size_t is not 4 45 #if SAL_TYPES_SIZEOFPOINTER != 4 46 # define XMLSEC_NO_SIZE_T 47 #endif 48 #include <xmlsec/xmlsec.h> 49 #include <xmlsec/keysmngr.h> 50 #include <xmlsec/crypto.h> 51 #include <xmlsec/base64.h> 52 #include <xmlsec/strings.h> 53 54 #include <tools/string.hxx> 55 #include <rtl/ustrbuf.hxx> 56 #include <comphelper/processfactory.hxx> 57 #include <cppuhelper/servicefactory.hxx> 58 #include <comphelper/docpasswordrequest.hxx> 59 #include <xmlsecurity/biginteger.hxx> 60 #include <rtl/logfile.h> 61 #include <com/sun/star/task/XInteractionHandler.hpp> 62 #include <vector> 63 #include "boost/scoped_array.hpp" 64 65 #include "secerror.hxx" 66 67 // MM : added for password exception 68 #include <com/sun/star/security/NoPasswordException.hpp> 69 namespace csss = ::com::sun::star::security; 70 using namespace xmlsecurity; 71 using namespace ::com::sun::star::security; 72 using namespace com::sun::star; 73 using namespace ::com::sun::star::uno ; 74 using namespace ::com::sun::star::lang ; 75 using ::com::sun::star::lang::XMultiServiceFactory ; 76 using ::com::sun::star::lang::XSingleServiceFactory ; 77 using ::rtl::OUString ; 78 79 using ::com::sun::star::xml::crypto::XSecurityEnvironment ; 80 using ::com::sun::star::security::XCertificate ; 81 82 extern X509Certificate_NssImpl* NssCertToXCert( CERTCertificate* cert ) ; 83 extern X509Certificate_NssImpl* NssPrivKeyToXCert( SECKEYPrivateKey* ) ; 84 85 86 struct UsageDescription 87 { 88 SECCertificateUsage usage; 89 char const* description; 90 91 UsageDescription() 92 : usage( certificateUsageCheckAllUsages ) 93 , description( NULL ) 94 {} 95 96 UsageDescription( SECCertificateUsage i_usage, char const* i_description ) 97 : usage( i_usage ) 98 , description( i_description ) 99 {} 100 101 UsageDescription( const UsageDescription& aDescription ) 102 : usage( aDescription.usage ) 103 , description( aDescription.description ) 104 {} 105 106 UsageDescription& operator =( const UsageDescription& aDescription ) 107 { 108 usage = aDescription.usage; 109 description = aDescription.description; 110 return *this; 111 } 112 }; 113 114 115 116 char* GetPasswordFunction( PK11SlotInfo* pSlot, PRBool bRetry, void* /*arg*/ ) 117 { 118 uno::Reference< lang::XMultiServiceFactory > xMSF( ::comphelper::getProcessServiceFactory() ); 119 if ( xMSF.is() ) 120 { 121 uno::Reference < task::XInteractionHandler > xInteractionHandler( 122 xMSF->createInstance( rtl::OUString::createFromAscii("com.sun.star.task.InteractionHandler") ), uno::UNO_QUERY ); 123 124 if ( xInteractionHandler.is() ) 125 { 126 task::PasswordRequestMode eMode = bRetry ? task::PasswordRequestMode_PASSWORD_REENTER : task::PasswordRequestMode_PASSWORD_ENTER; 127 ::comphelper::DocPasswordRequest* pPasswordRequest = new ::comphelper::DocPasswordRequest( 128 ::comphelper::DocPasswordRequestType_STANDARD, eMode, ::rtl::OUString::createFromAscii(PK11_GetTokenName(pSlot)) ); 129 130 uno::Reference< task::XInteractionRequest > xRequest( pPasswordRequest ); 131 xInteractionHandler->handle( xRequest ); 132 133 if ( pPasswordRequest->isPassword() ) 134 { 135 ByteString aPassword = ByteString( String( pPasswordRequest->getPassword() ), gsl_getSystemTextEncoding() ); 136 sal_uInt16 nLen = aPassword.Len(); 137 char* pPassword = (char*) PORT_Alloc( nLen+1 ) ; 138 pPassword[nLen] = 0; 139 memcpy( pPassword, aPassword.GetBuffer(), nLen ); 140 return pPassword; 141 } 142 } 143 } 144 return NULL; 145 } 146 147 SecurityEnvironment_NssImpl :: SecurityEnvironment_NssImpl( const Reference< XMultiServiceFactory >& ) : 148 m_pHandler( NULL ) , m_tSymKeyList() , m_tPubKeyList() , m_tPriKeyList() { 149 150 PK11_SetPasswordFunc( GetPasswordFunction ) ; 151 } 152 153 SecurityEnvironment_NssImpl :: ~SecurityEnvironment_NssImpl() { 154 155 PK11_SetPasswordFunc( NULL ) ; 156 157 for (CIT_SLOTS i = m_Slots.begin(); i != m_Slots.end(); i++) 158 { 159 PK11_FreeSlot(*i); 160 } 161 162 if( !m_tSymKeyList.empty() ) { 163 std::list< PK11SymKey* >::iterator symKeyIt ; 164 165 for( symKeyIt = m_tSymKeyList.begin() ; symKeyIt != m_tSymKeyList.end() ; symKeyIt ++ ) 166 PK11_FreeSymKey( *symKeyIt ) ; 167 } 168 169 if( !m_tPubKeyList.empty() ) { 170 std::list< SECKEYPublicKey* >::iterator pubKeyIt ; 171 172 for( pubKeyIt = m_tPubKeyList.begin() ; pubKeyIt != m_tPubKeyList.end() ; pubKeyIt ++ ) 173 SECKEY_DestroyPublicKey( *pubKeyIt ) ; 174 } 175 176 if( !m_tPriKeyList.empty() ) { 177 std::list< SECKEYPrivateKey* >::iterator priKeyIt ; 178 179 for( priKeyIt = m_tPriKeyList.begin() ; priKeyIt != m_tPriKeyList.end() ; priKeyIt ++ ) 180 SECKEY_DestroyPrivateKey( *priKeyIt ) ; 181 } 182 } 183 184 /* XInitialization */ 185 void SAL_CALL SecurityEnvironment_NssImpl :: initialize( const Sequence< Any >& ) { 186 // TBD 187 } ; 188 189 /* XServiceInfo */ 190 OUString SAL_CALL SecurityEnvironment_NssImpl :: getImplementationName() { 191 return impl_getImplementationName() ; 192 } 193 194 /* XServiceInfo */ 195 sal_Bool SAL_CALL SecurityEnvironment_NssImpl :: supportsService( const OUString& serviceName) { 196 Sequence< OUString > seqServiceNames = getSupportedServiceNames() ; 197 const OUString* pArray = seqServiceNames.getConstArray() ; 198 for( sal_Int32 i = 0 ; i < seqServiceNames.getLength() ; i ++ ) { 199 if( *( pArray + i ) == serviceName ) 200 return sal_True ; 201 } 202 return sal_False ; 203 } 204 205 /* XServiceInfo */ 206 Sequence< OUString > SAL_CALL SecurityEnvironment_NssImpl :: getSupportedServiceNames() { 207 return impl_getSupportedServiceNames() ; 208 } 209 210 //Helper for XServiceInfo 211 Sequence< OUString > SecurityEnvironment_NssImpl :: impl_getSupportedServiceNames() { 212 ::osl::Guard< ::osl::Mutex > aGuard( ::osl::Mutex::getGlobalMutex() ) ; 213 Sequence< OUString > seqServiceNames( 1 ) ; 214 seqServiceNames.getArray()[0] = OUString::createFromAscii( "com.sun.star.xml.crypto.SecurityEnvironment" ) ; 215 return seqServiceNames ; 216 } 217 218 OUString SecurityEnvironment_NssImpl :: impl_getImplementationName() { 219 return OUString::createFromAscii( "com.sun.star.xml.security.bridge.xmlsec.SecurityEnvironment_NssImpl" ) ; 220 } 221 222 //Helper for registry 223 Reference< XInterface > SAL_CALL SecurityEnvironment_NssImpl :: impl_createInstance( const Reference< XMultiServiceFactory >& aServiceManager ) { 224 return Reference< XInterface >( *new SecurityEnvironment_NssImpl( aServiceManager ) ) ; 225 } 226 227 Reference< XSingleServiceFactory > SecurityEnvironment_NssImpl :: impl_createFactory( const Reference< XMultiServiceFactory >& aServiceManager ) { 228 //Reference< XSingleServiceFactory > xFactory ; 229 //xFactory = ::cppu::createSingleFactory( aServiceManager , impl_getImplementationName , impl_createInstance , impl_getSupportedServiceNames ) ; 230 //return xFactory ; 231 return ::cppu::createSingleFactory( aServiceManager , impl_getImplementationName() , impl_createInstance , impl_getSupportedServiceNames() ) ; 232 } 233 234 /* XUnoTunnel */ 235 sal_Int64 SAL_CALL SecurityEnvironment_NssImpl :: getSomething( const Sequence< sal_Int8 >& aIdentifier ) 236 { 237 if( aIdentifier.getLength() == 16 && 0 == rtl_compareMemory( getUnoTunnelId().getConstArray(), aIdentifier.getConstArray(), 16 ) ) { 238 return sal::static_int_cast<sal_Int64>(reinterpret_cast<sal_uIntPtr>(this)); 239 } 240 return 0 ; 241 } 242 243 /* XUnoTunnel extension */ 244 const Sequence< sal_Int8>& SecurityEnvironment_NssImpl :: getUnoTunnelId() { 245 static Sequence< sal_Int8 >* pSeq = 0 ; 246 if( !pSeq ) { 247 ::osl::Guard< ::osl::Mutex > aGuard( ::osl::Mutex::getGlobalMutex() ) ; 248 if( !pSeq ) { 249 static Sequence< sal_Int8> aSeq( 16 ) ; 250 rtl_createUuid( ( sal_uInt8* )aSeq.getArray() , 0 , sal_True ) ; 251 pSeq = &aSeq ; 252 } 253 } 254 return *pSeq ; 255 } 256 257 /* XUnoTunnel extension */ 258 SecurityEnvironment_NssImpl* SecurityEnvironment_NssImpl :: getImplementation( const Reference< XInterface > xObj ) { 259 Reference< XUnoTunnel > xUT( xObj , UNO_QUERY ) ; 260 if( xUT.is() ) { 261 return reinterpret_cast<SecurityEnvironment_NssImpl*>( 262 sal::static_int_cast<sal_uIntPtr>(xUT->getSomething( getUnoTunnelId() ))) ; 263 } else 264 return NULL ; 265 } 266 267 268 ::rtl::OUString SecurityEnvironment_NssImpl::getSecurityEnvironmentInformation() 269 { 270 rtl::OUString result; 271 ::rtl::OUStringBuffer buff; 272 for (CIT_SLOTS is = m_Slots.begin(); is != m_Slots.end(); is++) 273 { 274 buff.append(rtl::OUString::createFromAscii(PK11_GetTokenName(*is))); 275 buff.appendAscii("\n"); 276 } 277 return buff.makeStringAndClear(); 278 } 279 280 void SecurityEnvironment_NssImpl::addCryptoSlot( PK11SlotInfo* aSlot) 281 { 282 PK11_ReferenceSlot(aSlot); 283 m_Slots.push_back(aSlot); 284 } 285 286 CERTCertDBHandle* SecurityEnvironment_NssImpl :: getCertDb() { 287 return m_pHandler ; 288 } 289 290 //Could we have multiple cert dbs? 291 void SecurityEnvironment_NssImpl :: setCertDb( CERTCertDBHandle* aCertDb ) { 292 m_pHandler = aCertDb ; 293 } 294 295 void SecurityEnvironment_NssImpl :: adoptSymKey( PK11SymKey* aSymKey ) { 296 PK11SymKey* symkey ; 297 std::list< PK11SymKey* >::iterator keyIt ; 298 299 if( aSymKey != NULL ) { 300 //First try to find the key in the list 301 for( keyIt = m_tSymKeyList.begin() ; keyIt != m_tSymKeyList.end() ; keyIt ++ ) { 302 if( *keyIt == aSymKey ) 303 return ; 304 } 305 306 //If we do not find the key in the list, add a new node 307 symkey = PK11_ReferenceSymKey( aSymKey ) ; 308 if( symkey == NULL ) 309 throw RuntimeException() ; 310 311 try { 312 m_tSymKeyList.push_back( symkey ) ; 313 } catch ( Exception& ) { 314 PK11_FreeSymKey( symkey ) ; 315 } 316 } 317 } 318 319 void SecurityEnvironment_NssImpl :: rejectSymKey( PK11SymKey* aSymKey ) { 320 PK11SymKey* symkey ; 321 std::list< PK11SymKey* >::iterator keyIt ; 322 323 if( aSymKey != NULL ) { 324 for( keyIt = m_tSymKeyList.begin() ; keyIt != m_tSymKeyList.end() ; keyIt ++ ) { 325 if( *keyIt == aSymKey ) { 326 symkey = *keyIt ; 327 PK11_FreeSymKey( symkey ) ; 328 m_tSymKeyList.erase( keyIt ) ; 329 break ; 330 } 331 } 332 } 333 } 334 335 PK11SymKey* SecurityEnvironment_NssImpl :: getSymKey( unsigned int position ) { 336 PK11SymKey* symkey ; 337 std::list< PK11SymKey* >::iterator keyIt ; 338 unsigned int pos ; 339 340 symkey = NULL ; 341 for( pos = 0, keyIt = m_tSymKeyList.begin() ; pos < position && keyIt != m_tSymKeyList.end() ; pos ++ , keyIt ++ ) ; 342 343 if( pos == position && keyIt != m_tSymKeyList.end() ) 344 symkey = *keyIt ; 345 346 return symkey ; 347 } 348 349 void SecurityEnvironment_NssImpl :: adoptPubKey( SECKEYPublicKey* aPubKey ) { 350 SECKEYPublicKey* pubkey ; 351 std::list< SECKEYPublicKey* >::iterator keyIt ; 352 353 if( aPubKey != NULL ) { 354 //First try to find the key in the list 355 for( keyIt = m_tPubKeyList.begin() ; keyIt != m_tPubKeyList.end() ; keyIt ++ ) { 356 if( *keyIt == aPubKey ) 357 return ; 358 } 359 360 //If we do not find the key in the list, add a new node 361 pubkey = SECKEY_CopyPublicKey( aPubKey ) ; 362 if( pubkey == NULL ) 363 throw RuntimeException() ; 364 365 try { 366 m_tPubKeyList.push_back( pubkey ) ; 367 } catch ( Exception& ) { 368 SECKEY_DestroyPublicKey( pubkey ) ; 369 } 370 } 371 } 372 373 void SecurityEnvironment_NssImpl :: rejectPubKey( SECKEYPublicKey* aPubKey ) { 374 SECKEYPublicKey* pubkey ; 375 std::list< SECKEYPublicKey* >::iterator keyIt ; 376 377 if( aPubKey != NULL ) { 378 for( keyIt = m_tPubKeyList.begin() ; keyIt != m_tPubKeyList.end() ; keyIt ++ ) { 379 if( *keyIt == aPubKey ) { 380 pubkey = *keyIt ; 381 SECKEY_DestroyPublicKey( pubkey ) ; 382 m_tPubKeyList.erase( keyIt ) ; 383 break ; 384 } 385 } 386 } 387 } 388 389 SECKEYPublicKey* SecurityEnvironment_NssImpl :: getPubKey( unsigned int position ) { 390 SECKEYPublicKey* pubkey ; 391 std::list< SECKEYPublicKey* >::iterator keyIt ; 392 unsigned int pos ; 393 394 pubkey = NULL ; 395 for( pos = 0, keyIt = m_tPubKeyList.begin() ; pos < position && keyIt != m_tPubKeyList.end() ; pos ++ , keyIt ++ ) ; 396 397 if( pos == position && keyIt != m_tPubKeyList.end() ) 398 pubkey = *keyIt ; 399 400 return pubkey ; 401 } 402 403 void SecurityEnvironment_NssImpl :: adoptPriKey( SECKEYPrivateKey* aPriKey ) { 404 SECKEYPrivateKey* prikey ; 405 std::list< SECKEYPrivateKey* >::iterator keyIt ; 406 407 if( aPriKey != NULL ) { 408 //First try to find the key in the list 409 for( keyIt = m_tPriKeyList.begin() ; keyIt != m_tPriKeyList.end() ; keyIt ++ ) { 410 if( *keyIt == aPriKey ) 411 return ; 412 } 413 414 //If we do not find the key in the list, add a new node 415 prikey = SECKEY_CopyPrivateKey( aPriKey ) ; 416 if( prikey == NULL ) 417 throw RuntimeException() ; 418 419 try { 420 m_tPriKeyList.push_back( prikey ) ; 421 } catch ( Exception& ) { 422 SECKEY_DestroyPrivateKey( prikey ) ; 423 } 424 } 425 } 426 427 void SecurityEnvironment_NssImpl :: rejectPriKey( SECKEYPrivateKey* aPriKey ) { 428 SECKEYPrivateKey* prikey ; 429 std::list< SECKEYPrivateKey* >::iterator keyIt ; 430 431 if( aPriKey != NULL ) { 432 for( keyIt = m_tPriKeyList.begin() ; keyIt != m_tPriKeyList.end() ; keyIt ++ ) { 433 if( *keyIt == aPriKey ) { 434 prikey = *keyIt ; 435 SECKEY_DestroyPrivateKey( prikey ) ; 436 m_tPriKeyList.erase( keyIt ) ; 437 break ; 438 } 439 } 440 } 441 } 442 443 SECKEYPrivateKey* SecurityEnvironment_NssImpl :: getPriKey( unsigned int position ) { 444 SECKEYPrivateKey* prikey ; 445 std::list< SECKEYPrivateKey* >::iterator keyIt ; 446 unsigned int pos ; 447 448 prikey = NULL ; 449 for( pos = 0, keyIt = m_tPriKeyList.begin() ; pos < position && keyIt != m_tPriKeyList.end() ; pos ++ , keyIt ++ ) ; 450 451 if( pos == position && keyIt != m_tPriKeyList.end() ) 452 prikey = *keyIt ; 453 454 return prikey ; 455 } 456 457 void SecurityEnvironment_NssImpl::updateSlots() 458 { 459 //In case new tokens are present then we can obtain the corresponding slot 460 PK11SlotList * soltList = NULL; 461 PK11SlotListElement * soltEle = NULL; 462 PK11SlotInfo * pSlot = NULL; 463 PK11SymKey * pSymKey = NULL; 464 465 osl::MutexGuard guard(m_mutex); 466 467 m_Slots.clear(); 468 m_tSymKeyList.clear(); 469 470 soltList = PK11_GetAllTokens( CKM_INVALID_MECHANISM, PR_FALSE, PR_FALSE, NULL ) ; 471 if( soltList != NULL ) 472 { 473 for( soltEle = soltList->head ; soltEle != NULL; soltEle = soltEle->next ) 474 { 475 pSlot = soltEle->slot ; 476 477 if(pSlot != NULL) 478 { 479 RTL_LOGFILE_TRACE2( "XMLSEC: Found a slot: SlotName=%s, TokenName=%s", PK11_GetSlotName(pSlot), PK11_GetTokenName(pSlot) ); 480 481 //The following code which is commented out checks if a slot, that is a smart card for example, is 482 // able to generate a symmetric key of type CKM_DES3_CBC. If this fails then this token 483 // will not be used. This key is possibly used for the encryption service. However, all 484 // interfaces and services used for public key signature and encryption are not published 485 // and the encryption is not used in OOo. Therefore it does not do any harm to remove 486 // this code, hence allowing smart cards which cannot generate this type of key. 487 // 488 // By doing this, the encryption may fail if a smart card is being used which does not 489 // support this key generation. 490 // 491 pSymKey = PK11_KeyGen( pSlot , CKM_DES3_CBC, NULL, 128, NULL ) ; 492 // if( pSymKey == NULL ) 493 // { 494 // PK11_FreeSlot( pSlot ) ; 495 // RTL_LOGFILE_TRACE( "XMLSEC: Error - pSymKey is NULL" ); 496 // continue; 497 // } 498 addCryptoSlot(pSlot); 499 PK11_FreeSlot( pSlot ) ; 500 pSlot = NULL; 501 502 if (pSymKey != NULL) 503 { 504 adoptSymKey( pSymKey ) ; 505 PK11_FreeSymKey( pSymKey ) ; 506 pSymKey = NULL; 507 } 508 509 }// end of if(pSlot != NULL) 510 }// end of for 511 }// end of if( soltList != NULL ) 512 513 } 514 515 516 Sequence< Reference < XCertificate > > 517 SecurityEnvironment_NssImpl::getPersonalCertificates() 518 { 519 sal_Int32 length ; 520 X509Certificate_NssImpl* xcert ; 521 std::list< X509Certificate_NssImpl* > certsList ; 522 523 updateSlots(); 524 //firstly, we try to find private keys in slot 525 for (CIT_SLOTS is = m_Slots.begin(); is != m_Slots.end(); is++) 526 { 527 PK11SlotInfo *slot = *is; 528 SECKEYPrivateKeyList* priKeyList ; 529 SECKEYPrivateKeyListNode* curPri ; 530 531 if( PK11_NeedLogin(slot ) ) { 532 SECStatus nRet = PK11_Authenticate(slot, PR_TRUE, NULL); 533 //PK11_Authenticate may fail in case the a slot has not been initialized. 534 //this is the case if the user has a new profile, so that they have never 535 //added a personal certificate. 536 if( nRet != SECSuccess && PORT_GetError() != SEC_ERROR_IO) { 537 throw NoPasswordException(); 538 } 539 } 540 541 priKeyList = PK11_ListPrivateKeysInSlot(slot) ; 542 if( priKeyList != NULL ) { 543 for( curPri = PRIVKEY_LIST_HEAD( priKeyList ); 544 !PRIVKEY_LIST_END( curPri, priKeyList ) && curPri != NULL ; 545 curPri = PRIVKEY_LIST_NEXT( curPri ) ) { 546 xcert = NssPrivKeyToXCert( curPri->key ) ; 547 if( xcert != NULL ) 548 certsList.push_back( xcert ) ; 549 } 550 SECKEY_DestroyPrivateKeyList( priKeyList ) ; 551 } 552 553 } 554 555 //secondly, we try to find certificate from registered private keys. 556 if( !m_tPriKeyList.empty() ) { 557 std::list< SECKEYPrivateKey* >::iterator priKeyIt ; 558 559 for( priKeyIt = m_tPriKeyList.begin() ; priKeyIt != m_tPriKeyList.end() ; priKeyIt ++ ) { 560 xcert = NssPrivKeyToXCert( *priKeyIt ) ; 561 if( xcert != NULL ) 562 certsList.push_back( xcert ) ; 563 } 564 } 565 566 length = certsList.size() ; 567 if( length != 0 ) { 568 int i ; 569 std::list< X509Certificate_NssImpl* >::iterator xcertIt ; 570 Sequence< Reference< XCertificate > > certSeq( length ) ; 571 572 for( i = 0, xcertIt = certsList.begin(); xcertIt != certsList.end(); xcertIt ++, i++ ) { 573 certSeq[i] = *xcertIt ; 574 } 575 576 return certSeq ; 577 } 578 579 return Sequence< Reference < XCertificate > > (); 580 } 581 582 Reference< XCertificate > SecurityEnvironment_NssImpl :: getCertificate( const OUString& issuerName, const Sequence< sal_Int8 >& serialNumber ) 583 { 584 X509Certificate_NssImpl* xcert = NULL; 585 586 if( m_pHandler != NULL ) { 587 CERTIssuerAndSN issuerAndSN ; 588 CERTCertificate* cert ; 589 CERTName* nmIssuer ; 590 char* chIssuer ; 591 SECItem* derIssuer ; 592 PRArenaPool* arena ; 593 594 arena = PORT_NewArena( DER_DEFAULT_CHUNKSIZE ) ; 595 if( arena == NULL ) 596 throw RuntimeException() ; 597 598 /* 599 * mmi : because MS Crypto use the 'S' tag (equal to the 'ST' tag in NSS), but the NSS can't recognise 600 * it, so the 'S' tag should be changed to 'ST' tag 601 * 602 * PS : it can work, but inside libxmlsec, the 'S' tag is till used to find cert in NSS engine, so it 603 * is not useful at all. (comment out now) 604 */ 605 606 /* 607 sal_Int32 nIndex = 0; 608 OUString newIssuerName; 609 do 610 { 611 OUString aToken = issuerName.getToken( 0, ',', nIndex ).trim(); 612 if (aToken.compareToAscii("S=",2) == 0) 613 { 614 newIssuerName+=OUString::createFromAscii("ST="); 615 newIssuerName+=aToken.copy(2); 616 } 617 else 618 { 619 newIssuerName+=aToken; 620 } 621 622 if (nIndex >= 0) 623 { 624 newIssuerName+=OUString::createFromAscii(","); 625 } 626 } while ( nIndex >= 0 ); 627 */ 628 629 /* end */ 630 631 //Create cert info from issue and serial 632 rtl::OString ostr = rtl::OUStringToOString( issuerName , RTL_TEXTENCODING_UTF8 ) ; 633 chIssuer = PL_strndup( ( char* )ostr.getStr(), ( int )ostr.getLength() ) ; 634 nmIssuer = CERT_AsciiToName( chIssuer ) ; 635 if( nmIssuer == NULL ) { 636 PL_strfree( chIssuer ) ; 637 PORT_FreeArena( arena, PR_FALSE ) ; 638 639 /* 640 * i40394 641 * 642 * mmi : no need to throw exception 643 * just return "no found" 644 */ 645 //throw RuntimeException() ; 646 return NULL; 647 } 648 649 derIssuer = SEC_ASN1EncodeItem( arena, NULL, ( void* )nmIssuer, SEC_ASN1_GET( CERT_NameTemplate ) ) ; 650 if( derIssuer == NULL ) { 651 PL_strfree( chIssuer ) ; 652 CERT_DestroyName( nmIssuer ) ; 653 PORT_FreeArena( arena, PR_FALSE ) ; 654 throw RuntimeException() ; 655 } 656 657 memset( &issuerAndSN, 0, sizeof( issuerAndSN ) ) ; 658 659 issuerAndSN.derIssuer.data = derIssuer->data ; 660 issuerAndSN.derIssuer.len = derIssuer->len ; 661 662 issuerAndSN.serialNumber.data = ( unsigned char* )&serialNumber[0] ; 663 issuerAndSN.serialNumber.len = serialNumber.getLength() ; 664 665 cert = CERT_FindCertByIssuerAndSN( m_pHandler, &issuerAndSN ) ; 666 if( cert != NULL ) { 667 xcert = NssCertToXCert( cert ) ; 668 } else { 669 xcert = NULL ; 670 } 671 672 PL_strfree( chIssuer ) ; 673 CERT_DestroyName( nmIssuer ) ; 674 //SECITEM_FreeItem( derIssuer, PR_FALSE ) ; 675 CERT_DestroyCertificate( cert ) ; 676 PORT_FreeArena( arena, PR_FALSE ) ; 677 } else { 678 xcert = NULL ; 679 } 680 681 return xcert ; 682 } 683 684 Reference< XCertificate > SecurityEnvironment_NssImpl :: getCertificate( const OUString& issuerName, const OUString& serialNumber ) { 685 Sequence< sal_Int8 > serial = numericStringToBigInteger( serialNumber ) ; 686 return getCertificate( issuerName, serial ) ; 687 } 688 689 Sequence< Reference < XCertificate > > SecurityEnvironment_NssImpl :: buildCertificatePath( const Reference< XCertificate >& begin ) { 690 const X509Certificate_NssImpl* xcert ; 691 const CERTCertificate* cert ; 692 CERTCertList* certChain ; 693 694 Reference< XUnoTunnel > xCertTunnel( begin, UNO_QUERY ) ; 695 if( !xCertTunnel.is() ) { 696 throw RuntimeException() ; 697 } 698 699 xcert = reinterpret_cast<X509Certificate_NssImpl*>( 700 sal::static_int_cast<sal_uIntPtr>(xCertTunnel->getSomething( X509Certificate_NssImpl::getUnoTunnelId() ))) ; 701 if( xcert == NULL ) { 702 throw RuntimeException() ; 703 } 704 705 cert = xcert->getNssCert() ; 706 if( cert != NULL ) { 707 int64 timeboundary ; 708 709 //Get the system clock time 710 timeboundary = PR_Now() ; 711 712 certChain = CERT_GetCertChainFromCert( ( CERTCertificate* )cert, timeboundary, certUsageAnyCA ) ; 713 } else { 714 certChain = NULL ; 715 } 716 717 if( certChain != NULL ) { 718 X509Certificate_NssImpl* pCert ; 719 CERTCertListNode* node ; 720 int len ; 721 722 for( len = 0, node = CERT_LIST_HEAD( certChain ); !CERT_LIST_END( node, certChain ); node = CERT_LIST_NEXT( node ), len ++ ) ; 723 Sequence< Reference< XCertificate > > xCertChain( len ) ; 724 725 for( len = 0, node = CERT_LIST_HEAD( certChain ); !CERT_LIST_END( node, certChain ); node = CERT_LIST_NEXT( node ), len ++ ) { 726 pCert = new X509Certificate_NssImpl() ; 727 if( pCert == NULL ) { 728 CERT_DestroyCertList( certChain ) ; 729 throw RuntimeException() ; 730 } 731 732 pCert->setCert( node->cert ) ; 733 734 xCertChain[len] = pCert ; 735 } 736 737 CERT_DestroyCertList( certChain ) ; 738 739 return xCertChain ; 740 } 741 742 return Sequence< Reference < XCertificate > >(); 743 } 744 745 Reference< XCertificate > SecurityEnvironment_NssImpl :: createCertificateFromRaw( const Sequence< sal_Int8 >& rawCertificate ) { 746 X509Certificate_NssImpl* xcert ; 747 748 if( rawCertificate.getLength() > 0 ) { 749 xcert = new X509Certificate_NssImpl() ; 750 if( xcert == NULL ) 751 throw RuntimeException() ; 752 753 xcert->setRawCert( rawCertificate ) ; 754 } else { 755 xcert = NULL ; 756 } 757 758 return xcert ; 759 } 760 761 Reference< XCertificate > SecurityEnvironment_NssImpl :: createCertificateFromAscii( const OUString& asciiCertificate ) { 762 xmlChar* chCert ; 763 xmlSecSize certSize ; 764 765 rtl::OString oscert = rtl::OUStringToOString( asciiCertificate , RTL_TEXTENCODING_ASCII_US ) ; 766 767 chCert = xmlStrndup( ( const xmlChar* )oscert.getStr(), ( int )oscert.getLength() ) ; 768 769 certSize = xmlSecBase64Decode( chCert, ( xmlSecByte* )chCert, xmlStrlen( chCert ) ) ; 770 771 Sequence< sal_Int8 > rawCert( certSize ) ; 772 for( unsigned int i = 0 ; i < certSize ; i ++ ) 773 rawCert[i] = *( chCert + i ) ; 774 775 xmlFree( chCert ) ; 776 777 return createCertificateFromRaw( rawCert ) ; 778 } 779 780 sal_Int32 SecurityEnvironment_NssImpl :: 781 verifyCertificate( const Reference< csss::XCertificate >& aCert, 782 const Sequence< Reference< csss::XCertificate > >& intermediateCerts ) 783 { 784 sal_Int32 validity = csss::CertificateValidity::INVALID; 785 const X509Certificate_NssImpl* xcert ; 786 const CERTCertificate* cert ; 787 ::std::vector<CERTCertificate*> vecTmpNSSCertificates; 788 Reference< XUnoTunnel > xCertTunnel( aCert, UNO_QUERY ) ; 789 if( !xCertTunnel.is() ) { 790 throw RuntimeException() ; 791 } 792 793 xmlsec_trace("Start verification of certificate: \n %s \n", 794 OUStringToOString( 795 aCert->getSubjectName(), osl_getThreadTextEncoding()).getStr()); 796 797 xcert = reinterpret_cast<X509Certificate_NssImpl*>( 798 sal::static_int_cast<sal_uIntPtr>(xCertTunnel->getSomething( X509Certificate_NssImpl::getUnoTunnelId() ))) ; 799 if( xcert == NULL ) { 800 throw RuntimeException() ; 801 } 802 803 //CERT_PKIXVerifyCert does not take a db as argument. It will therefore 804 //internally use CERT_GetDefaultCertDB 805 //Make sure m_pHandler is the default DB 806 OSL_ASSERT(m_pHandler == CERT_GetDefaultCertDB()); 807 CERTCertDBHandle * certDb = m_pHandler != NULL ? m_pHandler : CERT_GetDefaultCertDB(); 808 cert = xcert->getNssCert() ; 809 if( cert != NULL ) 810 { 811 812 //prepare the intermediate certificates 813 for (sal_Int32 i = 0; i < intermediateCerts.getLength(); i++) 814 { 815 Sequence<sal_Int8> der = intermediateCerts[i]->getEncoded(); 816 SECItem item; 817 item.type = siBuffer; 818 item.data = (unsigned char*)der.getArray(); 819 item.len = der.getLength(); 820 821 CERTCertificate* certTmp = CERT_NewTempCertificate(certDb, &item, 822 NULL /* nickname */, 823 PR_FALSE /* isPerm */, 824 PR_TRUE /* copyDER */); 825 if (!certTmp) 826 { 827 xmlsec_trace("Failed to add a temporary certificate: %s", 828 OUStringToOString(intermediateCerts[i]->getIssuerName(), 829 osl_getThreadTextEncoding()).getStr()); 830 831 } 832 else 833 { 834 xmlsec_trace("Added temporary certificate: %s", 835 certTmp->subjectName ? certTmp->subjectName : ""); 836 vecTmpNSSCertificates.push_back(certTmp); 837 } 838 } 839 840 841 SECStatus status ; 842 843 CERTVerifyLog log; 844 log.arena = PORT_NewArena(512); 845 log.head = log.tail = NULL; 846 log.count = 0; 847 848 CERT_EnableOCSPChecking(certDb); 849 CERT_DisableOCSPDefaultResponder(certDb); 850 CERTValOutParam cvout[5]; 851 CERTValInParam cvin[3]; 852 853 cvin[0].type = cert_pi_useAIACertFetch; 854 cvin[0].value.scalar.b = PR_TRUE; 855 856 PRUint64 revFlagsLeaf[2]; 857 PRUint64 revFlagsChain[2]; 858 CERTRevocationFlags rev; 859 rev.leafTests.number_of_defined_methods = 2; 860 rev.leafTests.cert_rev_flags_per_method = revFlagsLeaf; 861 //the flags are defined in cert.h 862 //We check both leaf and chain. 863 //It is enough if one revocation method has fresh info, 864 //but at least one must have some. Otherwise validation fails. 865 //!!! using leaf test and CERT_REV_MI_REQUIRE_SOME_FRESH_INFO_AVAILABLE 866 // when validating a root certificate will result in "revoked". Usually 867 //there is no revocation information available for the root cert because 868 //it must be trusted anyway and it does itself issue revocation information. 869 //When we use the flag here and OOo shows the certification path then the root 870 //cert is invalid while all other can be valid. It would probably best if 871 //this interface method returned the whole chain. 872 //Otherwise we need to check if the certificate is self-signed and if it is 873 //then not use the flag when doing the leaf-test. 874 rev.leafTests.cert_rev_flags_per_method[cert_revocation_method_crl] = 875 CERT_REV_M_TEST_USING_THIS_METHOD 876 | CERT_REV_M_IGNORE_IMPLICIT_DEFAULT_SOURCE; 877 rev.leafTests.cert_rev_flags_per_method[cert_revocation_method_ocsp] = 878 CERT_REV_M_TEST_USING_THIS_METHOD 879 | CERT_REV_M_IGNORE_IMPLICIT_DEFAULT_SOURCE; 880 rev.leafTests.number_of_preferred_methods = 0; 881 rev.leafTests.preferred_methods = NULL; 882 rev.leafTests.cert_rev_method_independent_flags = 883 CERT_REV_MI_TEST_ALL_LOCAL_INFORMATION_FIRST; 884 // | CERT_REV_MI_REQUIRE_SOME_FRESH_INFO_AVAILABLE; 885 886 rev.chainTests.number_of_defined_methods = 2; 887 rev.chainTests.cert_rev_flags_per_method = revFlagsChain; 888 rev.chainTests.cert_rev_flags_per_method[cert_revocation_method_crl] = 889 CERT_REV_M_TEST_USING_THIS_METHOD 890 | CERT_REV_M_IGNORE_IMPLICIT_DEFAULT_SOURCE; 891 rev.chainTests.cert_rev_flags_per_method[cert_revocation_method_ocsp] = 892 CERT_REV_M_TEST_USING_THIS_METHOD 893 | CERT_REV_M_IGNORE_IMPLICIT_DEFAULT_SOURCE; 894 rev.chainTests.number_of_preferred_methods = 0; 895 rev.chainTests.preferred_methods = NULL; 896 rev.chainTests.cert_rev_method_independent_flags = 897 CERT_REV_MI_TEST_ALL_LOCAL_INFORMATION_FIRST; 898 // | CERT_REV_MI_REQUIRE_SOME_FRESH_INFO_AVAILABLE; 899 900 901 cvin[1].type = cert_pi_revocationFlags; 902 cvin[1].value.pointer.revocation = &rev; 903 // does not work, not implemented yet in 3.12.4 904 // cvin[2].type = cert_pi_keyusage; 905 // cvin[2].value.scalar.ui = KU_DIGITAL_SIGNATURE; 906 cvin[2].type = cert_pi_end; 907 908 cvout[0].type = cert_po_trustAnchor; 909 cvout[0].value.pointer.cert = NULL; 910 cvout[1].type = cert_po_errorLog; 911 cvout[1].value.pointer.log = &log; 912 cvout[2].type = cert_po_end; 913 914 // We check SSL server certificates, CA certificates and signing sertificates. 915 // 916 // ToDo check keyusage, looking at CERT_KeyUsageAndTypeForCertUsage ( 917 // mozilla/security/nss/lib/certdb/certdb.c indicates that 918 // certificateUsageSSLClient, certificateUsageSSLServer and certificateUsageSSLCA 919 // are sufficient. They cover the key usages for digital signature, key agreement 920 // and encipherment and certificate signature 921 922 //never use the following usages because they are not checked properly 923 // certificateUsageUserCertImport 924 // certificateUsageVerifyCA 925 // certificateUsageAnyCA 926 // certificateUsageProtectedObjectSigner 927 928 UsageDescription arUsages[5]; 929 arUsages[0] = UsageDescription( certificateUsageSSLClient, "certificateUsageSSLClient" ); 930 arUsages[1] = UsageDescription( certificateUsageSSLServer, "certificateUsageSSLServer" ); 931 arUsages[2] = UsageDescription( certificateUsageSSLCA, "certificateUsageSSLCA" ); 932 arUsages[3] = UsageDescription( certificateUsageEmailSigner, "certificateUsageEmailSigner" ); 933 arUsages[4] = UsageDescription( certificateUsageEmailRecipient, "certificateUsageEmailRecipient" ); 934 935 int numUsages = sizeof(arUsages) / sizeof(UsageDescription); 936 for (int i = 0; i < numUsages; i++) 937 { 938 xmlsec_trace("Testing usage %d of %d: %s (0x%x)", i + 1, 939 numUsages, arUsages[i].description, (int) arUsages[i].usage); 940 941 status = CERT_PKIXVerifyCert(const_cast<CERTCertificate *>(cert), arUsages[i].usage, 942 cvin, cvout, NULL); 943 if( status == SECSuccess ) 944 { 945 xmlsec_trace("CERT_PKIXVerifyCert returned SECSuccess."); 946 //When an intermediate or root certificate is checked then we expect the usage 947 //certificateUsageSSLCA. This, however, will be only set when in the trust settings dialog 948 //the button "This certificate can identify websites" is checked. If for example only 949 //"This certificate can identify mail users" is set then the end certificate can 950 //be validated and the returned usage will conain certificateUsageEmailRecipient. 951 //But checking directly the root or intermediate certificate will fail. In the 952 //certificate path view the end certificate will be shown as valid but the others 953 //will be displayed as invalid. 954 955 validity = csss::CertificateValidity::VALID; 956 xmlsec_trace("Certificate is valid.\n"); 957 CERTCertificate * issuerCert = cvout[0].value.pointer.cert; 958 if (issuerCert) 959 { 960 xmlsec_trace("Root certificate: %s", issuerCert->subjectName); 961 CERT_DestroyCertificate(issuerCert); 962 }; 963 964 break; 965 } 966 else 967 { 968 PRIntn err = PR_GetError(); 969 xmlsec_trace("Error: , %d = %s", err, getCertError(err)); 970 971 /* Display validation results */ 972 if ( log.count > 0) 973 { 974 CERTVerifyLogNode *node = NULL; 975 printChainFailure(&log); 976 977 for (node = log.head; node; node = node->next) { 978 if (node->cert) 979 CERT_DestroyCertificate(node->cert); 980 } 981 log.head = log.tail = NULL; 982 log.count = 0; 983 } 984 xmlsec_trace("Certificate is invalid.\n"); 985 } 986 } 987 988 } 989 else 990 { 991 validity = ::com::sun::star::security::CertificateValidity::INVALID ; 992 } 993 994 //Destroying the temporary certificates 995 std::vector<CERTCertificate*>::const_iterator cert_i; 996 for (cert_i = vecTmpNSSCertificates.begin(); cert_i != vecTmpNSSCertificates.end(); cert_i++) 997 { 998 xmlsec_trace("Destroying temporary certificate"); 999 CERT_DestroyCertificate(*cert_i); 1000 } 1001 return validity ; 1002 } 1003 1004 sal_Int32 SecurityEnvironment_NssImpl::getCertificateCharacters( 1005 const ::com::sun::star::uno::Reference< ::com::sun::star::security::XCertificate >& aCert ) { 1006 sal_Int32 characters ; 1007 const X509Certificate_NssImpl* xcert ; 1008 const CERTCertificate* cert ; 1009 1010 Reference< XUnoTunnel > xCertTunnel( aCert, UNO_QUERY ) ; 1011 if( !xCertTunnel.is() ) { 1012 throw RuntimeException() ; 1013 } 1014 1015 xcert = reinterpret_cast<X509Certificate_NssImpl*>( 1016 sal::static_int_cast<sal_uIntPtr>(xCertTunnel->getSomething( X509Certificate_NssImpl::getUnoTunnelId() ))) ; 1017 if( xcert == NULL ) { 1018 throw RuntimeException() ; 1019 } 1020 1021 cert = xcert->getNssCert() ; 1022 1023 characters = 0x00000000 ; 1024 1025 //Firstly, find out whether or not the cert is self-signed. 1026 if( SECITEM_CompareItem( &(cert->derIssuer), &(cert->derSubject) ) == SECEqual ) { 1027 characters |= ::com::sun::star::security::CertificateCharacters::SELF_SIGNED ; 1028 } else { 1029 characters &= ~ ::com::sun::star::security::CertificateCharacters::SELF_SIGNED ; 1030 } 1031 1032 //Secondly, find out whether or not the cert has a private key. 1033 1034 /* 1035 * i40394 1036 * 1037 * mmi : need to check whether the cert's slot is valid first 1038 */ 1039 SECKEYPrivateKey* priKey = NULL; 1040 1041 if (cert->slot != NULL) 1042 { 1043 priKey = PK11_FindPrivateKeyFromCert( cert->slot, ( CERTCertificate* )cert, NULL ) ; 1044 } 1045 if(priKey == NULL) 1046 { 1047 for (CIT_SLOTS is = m_Slots.begin(); is != m_Slots.end(); is++) 1048 { 1049 priKey = PK11_FindPrivateKeyFromCert(*is, (CERTCertificate*)cert, NULL); 1050 if (priKey) 1051 break; 1052 } 1053 } 1054 if( priKey != NULL ) { 1055 characters |= ::com::sun::star::security::CertificateCharacters::HAS_PRIVATE_KEY ; 1056 1057 SECKEY_DestroyPrivateKey( priKey ) ; 1058 } else { 1059 characters &= ~ ::com::sun::star::security::CertificateCharacters::HAS_PRIVATE_KEY ; 1060 } 1061 1062 return characters ; 1063 } 1064 1065 X509Certificate_NssImpl* NssCertToXCert( CERTCertificate* cert ) 1066 { 1067 X509Certificate_NssImpl* xcert ; 1068 1069 if( cert != NULL ) { 1070 xcert = new X509Certificate_NssImpl() ; 1071 if( xcert == NULL ) { 1072 xcert = NULL ; 1073 } else { 1074 xcert->setCert( cert ) ; 1075 } 1076 } else { 1077 xcert = NULL ; 1078 } 1079 1080 return xcert ; 1081 } 1082 1083 X509Certificate_NssImpl* NssPrivKeyToXCert( SECKEYPrivateKey* priKey ) 1084 { 1085 CERTCertificate* cert ; 1086 X509Certificate_NssImpl* xcert ; 1087 1088 if( priKey != NULL ) { 1089 cert = PK11_GetCertFromPrivateKey( priKey ) ; 1090 1091 if( cert != NULL ) { 1092 xcert = NssCertToXCert( cert ) ; 1093 } else { 1094 xcert = NULL ; 1095 } 1096 1097 CERT_DestroyCertificate( cert ) ; 1098 } else { 1099 xcert = NULL ; 1100 } 1101 1102 return xcert ; 1103 } 1104 1105 1106 /* Native methods */ 1107 xmlSecKeysMngrPtr SecurityEnvironment_NssImpl::createKeysManager() { 1108 1109 unsigned int i ; 1110 CERTCertDBHandle* handler = NULL ; 1111 PK11SymKey* symKey = NULL ; 1112 SECKEYPublicKey* pubKey = NULL ; 1113 SECKEYPrivateKey* priKey = NULL ; 1114 xmlSecKeysMngrPtr pKeysMngr = NULL ; 1115 1116 handler = this->getCertDb() ; 1117 1118 /*- 1119 * The following lines is based on the private version of xmlSec-NSS 1120 * crypto engine 1121 */ 1122 int cSlots = m_Slots.size(); 1123 boost::scoped_array<PK11SlotInfo*> sarSlots(new PK11SlotInfo*[cSlots]); 1124 PK11SlotInfo** slots = sarSlots.get(); 1125 int count = 0; 1126 for (CIT_SLOTS islots = m_Slots.begin();islots != m_Slots.end(); islots++, count++) 1127 slots[count] = *islots; 1128 1129 pKeysMngr = xmlSecNssAppliedKeysMngrCreate(slots, cSlots, handler ) ; 1130 if( pKeysMngr == NULL ) 1131 throw RuntimeException() ; 1132 1133 /*- 1134 * Adopt symmetric key into keys manager 1135 */ 1136 for( i = 0 ; ( symKey = this->getSymKey( i ) ) != NULL ; i ++ ) { 1137 if( xmlSecNssAppliedKeysMngrSymKeyLoad( pKeysMngr, symKey ) < 0 ) { 1138 throw RuntimeException() ; 1139 } 1140 } 1141 1142 /*- 1143 * Adopt asymmetric public key into keys manager 1144 */ 1145 for( i = 0 ; ( pubKey = this->getPubKey( i ) ) != NULL ; i ++ ) { 1146 if( xmlSecNssAppliedKeysMngrPubKeyLoad( pKeysMngr, pubKey ) < 0 ) { 1147 throw RuntimeException() ; 1148 } 1149 } 1150 1151 /*- 1152 * Adopt asymmetric private key into keys manager 1153 */ 1154 for( i = 0 ; ( priKey = this->getPriKey( i ) ) != NULL ; i ++ ) { 1155 if( xmlSecNssAppliedKeysMngrPriKeyLoad( pKeysMngr, priKey ) < 0 ) { 1156 throw RuntimeException() ; 1157 } 1158 } 1159 return pKeysMngr ; 1160 } 1161 void SecurityEnvironment_NssImpl::destroyKeysManager(xmlSecKeysMngrPtr pKeysMngr) { 1162 if( pKeysMngr != NULL ) { 1163 xmlSecKeysMngrDestroy( pKeysMngr ) ; 1164 } 1165 } 1166