KIO
kopenssl.cpp
Go to the documentation of this file.
00001 /* This file is part of the KDE libraries 00002 Copyright (C) 2001-2003 George Staikos <staikos@kde.org> 00003 00004 This library is free software; you can redistribute it and/or 00005 modify it under the terms of the GNU Library General Public 00006 License version 2 as published by the Free Software Foundation. 00007 00008 This library is distributed in the hope that it will be useful, 00009 but WITHOUT ANY WARRANTY; without even the implied warranty of 00010 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 00011 Library General Public License for more details. 00012 00013 You should have received a copy of the GNU Library General Public License 00014 along with this library; see the file COPYING.LIB. If not, write to 00015 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, 00016 Boston, MA 02110-1301, USA. 00017 */ 00018 00019 #include "kopenssl.h" 00020 00021 #include <config.h> 00022 #include <ksslconfig.h> 00023 00024 #ifdef KSSL_HAVE_SSL 00025 #include <openssl/opensslv.h> 00026 #endif 00027 00028 #include <kdebug.h> 00029 #include <kconfig.h> 00030 #include <kconfiggroup.h> 00031 #include <klibrary.h> 00032 #include <QtCore/QCoreApplication> 00033 #include <QtCore/QFile> 00034 #include <QtCore/QRegExp> 00035 00036 00037 #include <stdio.h> 00038 #include <unistd.h> 00039 00040 extern "C" { 00041 #ifdef KSSL_HAVE_SSL 00042 static int (*K_SSL_connect) (SSL *) = 0L; 00043 static int (*K_SSL_accept) (SSL *) = 0L; 00044 static int (*K_SSL_read) (SSL *, void *, int) = 0L; 00045 static int (*K_SSL_write) (SSL *, const void *, int) = 0L; 00046 static SSL *(*K_SSL_new) (SSL_CTX *) = 0L; 00047 static void (*K_SSL_free) (SSL *) = 0L; 00048 static int (*K_SSL_shutdown) (SSL *) = 0L; 00049 static SSL_CTX *(*K_SSL_CTX_new)(SSL_METHOD *) = 0L; 00050 static void (*K_SSL_CTX_free) (SSL_CTX *) = 0L; 00051 static int (*K_SSL_set_fd) (SSL *, int) = 0L; 00052 static int (*K_SSL_pending) (SSL *) = 0L; 00053 static int (*K_SSL_peek) (SSL *, void *, int) = 0L; 00054 static int (*K_SSL_CTX_set_cipher_list)(SSL_CTX *, const char *) = 0L; 00055 static void (*K_SSL_CTX_set_verify)(SSL_CTX *, int, 00056 int (*)(int, X509_STORE_CTX *)) = 0L; 00057 static int (*K_SSL_use_certificate)(SSL *, X509 *) = 0L; 00058 static SSL_CIPHER *(*K_SSL_get_current_cipher)(SSL *) = 0L; 00059 static long (*K_SSL_ctrl) (SSL *,int, long, char *) = 0L; 00060 static int (*K_RAND_egd) (const char *) = 0L; 00061 static const char* (*K_RAND_file_name) (char *, size_t) = 0L; 00062 static int (*K_RAND_load_file) (const char *, long) = 0L; 00063 static int (*K_RAND_write_file) (const char *) = 0L; 00064 static SSL_METHOD * (*K_TLSv1_client_method) () = 0L; 00065 static SSL_METHOD * (*K_SSLv23_client_method) () = 0L; 00066 static X509 * (*K_SSL_get_peer_certificate) (SSL *) = 0L; 00067 static int (*K_SSL_CIPHER_get_bits) (SSL_CIPHER *,int *) = 0L; 00068 static char * (*K_SSL_CIPHER_get_version) (SSL_CIPHER *) = 0L; 00069 static const char * (*K_SSL_CIPHER_get_name) (SSL_CIPHER *) = 0L; 00070 static char * (*K_SSL_CIPHER_description) (SSL_CIPHER *, char *, int) = 0L; 00071 static X509 * (*K_d2i_X509) (X509 **,unsigned char **,long) = 0L; 00072 static int (*K_i2d_X509) (X509 *,unsigned char **) = 0L; 00073 static int (*K_X509_cmp) (X509 *, X509 *) = 0L; 00074 static void (*K_X509_STORE_CTX_free) (X509_STORE_CTX *) = 0L; 00075 static int (*K_X509_verify_cert) (X509_STORE_CTX *) = 0L; 00076 static X509_STORE_CTX *(*K_X509_STORE_CTX_new) (void) = 0L; 00077 static void (*K_X509_STORE_free) (X509_STORE *) = 0L; 00078 static X509_STORE *(*K_X509_STORE_new) (void) = 0L; 00079 static void (*K_X509_free) (X509 *) = 0L; 00080 static char *(*K_X509_NAME_oneline) (X509_NAME *,char *,int) = 0L; 00081 static X509_NAME *(*K_X509_get_subject_name) (X509 *) = 0L; 00082 static X509_NAME *(*K_X509_get_issuer_name) (X509 *) = 0L; 00083 static X509_LOOKUP *(*K_X509_STORE_add_lookup) (X509_STORE *, X509_LOOKUP_METHOD *) = 0L; 00084 static X509_LOOKUP_METHOD *(*K_X509_LOOKUP_file)(void) = 0L; 00085 static void (*K_X509_LOOKUP_free)(X509_LOOKUP *) = 0L; 00086 static int (*K_X509_LOOKUP_ctrl)(X509_LOOKUP *, int, const char *, long, char **) = 0L; 00087 static void (*K_X509_STORE_CTX_init)(X509_STORE_CTX *, X509_STORE *, X509 *, STACK_OF(X509) *) = 0L; 00088 static void (*K_CRYPTO_free) (void *) = 0L; 00089 static X509* (*K_X509_dup) (X509 *) = 0L; 00090 static BIO_METHOD *(*K_BIO_s_mem) (void) = 0L; 00091 static BIO* (*K_BIO_new) (BIO_METHOD *) = 0L; 00092 static BIO* (*K_BIO_new_fp) (FILE *, int) = 0L; 00093 static BIO* (*K_BIO_new_mem_buf) (void *, int) = 0L; 00094 static int (*K_BIO_free) (BIO *) = 0L; 00095 static long (*K_BIO_ctrl) (BIO *,int,long,void *) = 0L; 00096 static int (*K_BIO_write) (BIO *b, const void *data, int len) = 0L; 00097 static int (*K_PEM_ASN1_write_bio) (int (*)(),const char *,BIO *,char *, 00098 const EVP_CIPHER *,unsigned char *,int , 00099 pem_password_cb *, void *) = 0L; 00100 static int (*K_ASN1_item_i2d_fp)(ASN1_ITEM *,FILE *,unsigned char *) = 0L; 00101 static ASN1_ITEM *K_NETSCAPE_X509_it = 0L; 00102 static int (*K_X509_print_fp) (FILE *, X509*) = 0L; 00103 static int (*K_i2d_PKCS12) (PKCS12*, unsigned char**) = 0L; 00104 static int (*K_i2d_PKCS12_fp) (FILE *, PKCS12*) = 0L; 00105 static int (*K_PKCS12_newpass) (PKCS12*, char*, char*) = 0L; 00106 static PKCS12* (*K_d2i_PKCS12_fp) (FILE*, PKCS12**) = 0L; 00107 static PKCS12* (*K_PKCS12_new) (void) = 0L; 00108 static void (*K_PKCS12_free) (PKCS12 *) = 0L; 00109 static int (*K_PKCS12_parse) (PKCS12*, const char *, EVP_PKEY**, 00110 X509**, STACK_OF(X509)**) = 0L; 00111 static void (*K_EVP_PKEY_free) (EVP_PKEY *) = 0L; 00112 static EVP_PKEY* (*K_EVP_PKEY_new) () = 0L; 00113 static void (*K_X509_REQ_free) (X509_REQ *) = 0L; 00114 static X509_REQ* (*K_X509_REQ_new) () = 0L; 00115 static int (*K_SSL_CTX_use_PrivateKey) (SSL_CTX*, EVP_PKEY*) = 0L; 00116 static int (*K_SSL_CTX_use_certificate) (SSL_CTX*, X509*) = 0L; 00117 static int (*K_SSL_get_error) (SSL*, int) = 0L; 00118 static STACK_OF(X509)* (*K_SSL_get_peer_cert_chain) (SSL*) = 0L; 00119 static void (*K_X509_STORE_CTX_set_chain) (X509_STORE_CTX *, STACK_OF(X509)*) = 0L; 00120 static void (*K_X509_STORE_CTX_set_purpose) (X509_STORE_CTX *, int) = 0L; 00121 static void (*K_sk_free) (STACK*) = 0L; 00122 static int (*K_sk_num) (STACK*) = 0L; 00123 static char* (*K_sk_pop) (STACK*) = 0L; 00124 static char* (*K_sk_value) (STACK*, int) = 0L; 00125 static STACK* (*K_sk_new) (int (*)()) = 0L; 00126 static int (*K_sk_push) (STACK*, char*) = 0L; 00127 static STACK* (*K_sk_dup) (STACK *) = 0L; 00128 static char * (*K_i2s_ASN1_INTEGER) (X509V3_EXT_METHOD *, ASN1_INTEGER *) =0L; 00129 static ASN1_INTEGER * (*K_X509_get_serialNumber) (X509 *) = 0L; 00130 static EVP_PKEY *(*K_X509_get_pubkey)(X509 *) = 0L; 00131 static int (*K_i2d_PublicKey)(EVP_PKEY *, unsigned char **) = 0L; 00132 static int (*K_X509_check_private_key)(X509 *, EVP_PKEY *) = 0L; 00133 static char * (*K_BN_bn2hex)(const BIGNUM *) = 0L; 00134 static int (*K_X509_digest)(const X509 *,const EVP_MD *, unsigned char *, unsigned int *) = 0L; 00135 static EVP_MD* (*K_EVP_md5)() = 0L; 00136 static void (*K_ASN1_INTEGER_free)(ASN1_INTEGER *) = 0L; 00137 static int (*K_OBJ_obj2nid)(ASN1_OBJECT *) = 0L; 00138 static const char * (*K_OBJ_nid2ln)(int) = 0L; 00139 static int (*K_X509_get_ext_count)(X509*) = 0L; 00140 static int (*K_X509_get_ext_by_NID)(X509*, int, int) = 0L; 00141 static int (*K_X509_get_ext_by_OBJ)(X509*,ASN1_OBJECT*,int) = 0L; 00142 static X509_EXTENSION *(*K_X509_get_ext)(X509*, int loc) = 0L; 00143 static X509_EXTENSION *(*K_X509_delete_ext)(X509*, int) = 0L; 00144 static int (*K_X509_add_ext)(X509*, X509_EXTENSION*, int) = 0L; 00145 static void *(*K_X509_get_ext_d2i)(X509*, int, int*, int*) = 0L; 00146 static char *(*K_i2s_ASN1_OCTET_STRING)(X509V3_EXT_METHOD*, ASN1_OCTET_STRING*) = 0L; 00147 static int (*K_ASN1_BIT_STRING_get_bit)(ASN1_BIT_STRING*, int) = 0L; 00148 static PKCS7 *(*K_PKCS7_new)() = 0L; 00149 static void (*K_PKCS7_free)(PKCS7*) = 0L; 00150 static void (*K_PKCS7_content_free)(PKCS7*) = 0L; 00151 static int (*K_i2d_PKCS7)(PKCS7*, unsigned char**) = 0L; 00152 static PKCS7 *(*K_d2i_PKCS7)(PKCS7**, unsigned char**,long) = 0L; 00153 static int (*K_i2d_PKCS7_fp)(FILE*,PKCS7*) = 0L; 00154 static PKCS7* (*K_d2i_PKCS7_fp)(FILE*,PKCS7**) = 0L; 00155 static int (*K_i2d_PKCS7_bio)(BIO *bp,PKCS7 *p7) = 0L; 00156 static PKCS7 *(*K_d2i_PKCS7_bio)(BIO *bp,PKCS7 **p7) = 0L; 00157 static PKCS7* (*K_PKCS7_dup)(PKCS7*) = 0L; 00158 static STACK_OF(X509_NAME) *(*K_SSL_load_client_CA_file)(const char*) = 0L; 00159 static STACK_OF(X509_INFO) *(*K_PEM_X509_INFO_read)(FILE*, STACK_OF(X509_INFO)*, pem_password_cb*, void*) = 0L; 00160 static char *(*K_ASN1_d2i_fp)(char *(*)(),char *(*)(),FILE*,unsigned char**) = 0L; 00161 static X509 *(*K_X509_new)() = 0L; 00162 static int (*K_X509_PURPOSE_get_count)() = 0L; 00163 static int (*K_X509_PURPOSE_get_id)(X509_PURPOSE *) = 0L; 00164 static int (*K_X509_check_purpose)(X509*,int,int) = 0L; 00165 static X509_PURPOSE* (*K_X509_PURPOSE_get0)(int) = 0L; 00166 static int (*K_EVP_PKEY_assign)(EVP_PKEY*, int, char*) = 0L; 00167 static int (*K_X509_REQ_set_pubkey)(X509_REQ*, EVP_PKEY*) = 0L; 00168 static RSA *(*K_RSA_generate_key)(int, unsigned long, void (*)(int,int,void *), void *) = 0L; 00169 static int (*K_i2d_X509_REQ_fp)(FILE*, X509_REQ*) = 0L; 00170 static void (*K_ERR_clear_error)() = 0L; 00171 static unsigned long (*K_ERR_get_error)() = 0L; 00172 static void (*K_ERR_print_errors_fp)(FILE*) = 0L; 00173 static PKCS7 *(*K_PKCS7_sign)(X509*, EVP_PKEY*, STACK_OF(X509)*, BIO*, int) = 0L; 00174 static int (*K_PKCS7_verify)(PKCS7*,STACK_OF(X509)*,X509_STORE*,BIO*,BIO*,int) = 0L; 00175 static STACK_OF(X509) *(*K_PKCS7_get0_signers)(PKCS7 *, STACK_OF(X509) *, int) = 0L; 00176 static PKCS7 *(*K_PKCS7_encrypt)(STACK_OF(X509) *, BIO *, EVP_CIPHER *, int) = 0L; 00177 static int (*K_PKCS7_decrypt)(PKCS7 *, EVP_PKEY *, X509 *, BIO *, int) = 0L; 00178 static SSL_SESSION* (*K_SSL_get1_session)(SSL*) = 0L; 00179 static void (*K_SSL_SESSION_free)(SSL_SESSION*) = 0L; 00180 static int (*K_SSL_set_session)(SSL*,SSL_SESSION*) = 0L; 00181 static SSL_SESSION* (*K_d2i_SSL_SESSION)(SSL_SESSION**,unsigned char**, long) = 0L; 00182 static int (*K_i2d_SSL_SESSION)(SSL_SESSION*,unsigned char**) = 0L; 00183 static STACK *(*K_X509_get1_email)(X509 *x) = 0L; 00184 static void (*K_X509_email_free)(STACK *sk) = 0L; 00185 static EVP_CIPHER *(*K_EVP_des_ede3_cbc)() = 0L; 00186 static EVP_CIPHER *(*K_EVP_des_cbc)() = 0L; 00187 static EVP_CIPHER *(*K_EVP_rc2_cbc)() = 0L; 00188 static EVP_CIPHER *(*K_EVP_rc2_64_cbc)() = 0L; 00189 static EVP_CIPHER *(*K_EVP_rc2_40_cbc)() = 0L; 00190 static int (*K_i2d_PrivateKey_fp)(FILE*,EVP_PKEY*) = 0L; 00191 static int (*K_i2d_PKCS8PrivateKey_fp)(FILE*, EVP_PKEY*, const EVP_CIPHER*, char*, int, pem_password_cb*, void*) = 0L; 00192 static void (*K_RSA_free)(RSA*) = 0L; 00193 static EVP_CIPHER *(*K_EVP_bf_cbc)() = 0L; 00194 static int (*K_X509_REQ_sign)(X509_REQ*, EVP_PKEY*, const EVP_MD*) = 0L; 00195 static int (*K_X509_NAME_add_entry_by_txt)(X509_NAME*, char*, int, unsigned char*, int, int, int) = 0L; 00196 static X509_NAME *(*K_X509_NAME_new)() = 0L; 00197 static int (*K_X509_REQ_set_subject_name)(X509_REQ*,X509_NAME*) = 0L; 00198 static unsigned char *(*K_ASN1_STRING_data)(ASN1_STRING*) = 0L; 00199 static STACK_OF(SSL_CIPHER) *(*K_SSL_get_ciphers)(const SSL *ssl) = 0L; 00200 00201 #endif 00202 } 00203 00204 00205 class KOpenSSLProxyPrivate 00206 { 00207 public: 00208 KOpenSSLProxyPrivate() 00209 : sslLib(0), cryptoLib(0), ok(false) 00210 {} 00211 00212 KLibrary *sslLib; 00213 KLibrary *cryptoLib; 00214 bool ok; 00215 00216 static KOpenSSLProxy *sSelf; 00217 static void cleanupKOpenSSLProxy() { 00218 delete KOpenSSLProxyPrivate::sSelf; 00219 } 00220 }; 00221 KOpenSSLProxy *KOpenSSLProxyPrivate::sSelf = 0; 00222 00223 bool KOpenSSLProxy::hasLibSSL() const { 00224 return d->sslLib != 0L; 00225 } 00226 00227 00228 bool KOpenSSLProxy::hasLibCrypto() const { 00229 return d->cryptoLib != 0L; 00230 } 00231 00232 00233 void KOpenSSLProxy::destroy() { 00234 KOpenSSLProxy *x = KOpenSSLProxyPrivate::sSelf; 00235 KOpenSSLProxyPrivate::sSelf = 0; 00236 delete x; 00237 } 00238 00239 #ifdef __OpenBSD__ 00240 #include <QtCore/QDir> 00241 #include <QtCore/QString> 00242 #include <QtCore/QStringList> 00243 00244 static QString findMostRecentLib(QString dir, QString name) 00245 { 00246 // Grab all shared libraries in the directory 00247 QString filter = "lib"+name+".so.*"; 00248 QDir d(dir, filter); 00249 if (!d.exists()) 00250 return 0L; 00251 QStringList l = d.entryList(); 00252 00253 // Find the best one 00254 int bestmaj = -1; 00255 int bestmin = -1; 00256 QString best = 0L; 00257 // where do we start 00258 uint s = filter.length()-1; 00259 for (QStringList::const_iterator it = l.begin(); it != l.end(); ++it) { 00260 QString numberpart = (*it).mid(s); 00261 uint endmaj = numberpart.indexOf('.'); 00262 if (endmaj == -1) 00263 continue; 00264 bool ok; 00265 int maj = numberpart.left(endmaj).toInt(&ok); 00266 if (!ok) 00267 continue; 00268 int min = numberpart.mid(endmaj+1).toInt(&ok); 00269 if (!ok) 00270 continue; 00271 if (maj > bestmaj || (maj == bestmaj && min > bestmin)) { 00272 bestmaj = maj; 00273 bestmin = min; 00274 best = (*it); 00275 } 00276 } 00277 if (best.isNull()) 00278 return 0L; 00279 else 00280 return dir+'/'+best; 00281 } 00282 #endif 00283 00284 KOpenSSLProxy::KOpenSSLProxy() 00285 : d(new KOpenSSLProxyPrivate()) 00286 { 00287 QStringList libpaths, libnamesc, libnamess; 00288 00289 d->cryptoLib = 0L; 00290 d->sslLib = 0L; 00291 00292 KConfig cfg("cryptodefaults", KConfig::NoGlobals ); 00293 KConfigGroup cg(&cfg, "OpenSSL"); 00294 QString upath = cg.readPathEntry("Path", QString()); 00295 if (!upath.isEmpty()) 00296 libpaths << upath; 00297 00298 #ifdef Q_OS_WIN 00299 d->cryptoLib = new KLibrary("libeay32.dll"); 00300 if (!d->cryptoLib->load()) { 00301 delete d->cryptoLib; 00302 d->cryptoLib = 0; 00303 } 00304 #elif defined(__OpenBSD__) 00305 { 00306 QString libname = findMostRecentLib("/usr/lib" KDELIBSUFF, "crypto"); 00307 if (!libname.isNull()) { 00308 d->cryptoLib = new KLibrary(libname); 00309 d->cryptoLib->setLoadHints(QLibrary::ExportExternalSymbolsHint); 00310 if (!d->cryptoLib->load()) { 00311 delete d->cryptoLib; 00312 d->cryptoLib = 0; 00313 } 00314 } 00315 } 00316 #elif defined(__CYGWIN__) 00317 libpaths << "/usr/bin/" 00318 << ""; 00319 00320 libnamess << "cygssl-0.9.8.dll" 00321 << "cygssl-0.9.7.dll" 00322 << ""; 00323 00324 libnamesc << "cygcrypto-0.9.8.dll" 00325 << "cygcrypto-0.9.7.dll" 00326 << ""; 00327 #else 00328 libpaths 00329 #ifdef _AIX 00330 << "/opt/freeware/lib/" 00331 #endif 00332 << "/usr/lib" KDELIBSUFF "/" 00333 << "/usr/ssl/lib" KDELIBSUFF "/" 00334 << "/usr/local/lib" KDELIBSUFF "/" 00335 << "/usr/local/openssl/lib" KDELIBSUFF "/" 00336 << "/usr/local/ssl/lib" KDELIBSUFF "/" 00337 << "/opt/openssl/lib" KDELIBSUFF "/" 00338 << "/lib" KDELIBSUFF "/" 00339 << ""; 00340 00341 // FIXME: #define here for the various OS types to optimize 00342 libnamess 00343 #ifdef hpux 00344 << "libssl.sl" 00345 #elif defined(_AIX) 00346 << "libssl.a(libssl.so.0)" 00347 #elif defined(__APPLE__) 00348 << "libssl.dylib" 00349 << "libssl.0.9.dylib" 00350 #else 00351 #ifdef SHLIB_VERSION_NUMBER 00352 << "libssl.so." SHLIB_VERSION_NUMBER 00353 #endif 00354 << "libssl.so" 00355 << "libssl.so.0" 00356 #endif 00357 ; 00358 00359 libnamesc 00360 #ifdef hpux 00361 << "libcrypto.sl" 00362 #elif defined(_AIX) 00363 << "libcrypto.a(libcrypto.so.0)" 00364 #elif defined(__APPLE__) 00365 << "libcrypto.dylib" 00366 << "libcrypto.0.9.dylib" 00367 #else 00368 #ifdef SHLIB_VERSION_NUMBER 00369 << "libcrypto.so." SHLIB_VERSION_NUMBER 00370 #endif 00371 << "libcrypto.so" 00372 << "libcrypto.so.0" 00373 #endif 00374 ; 00375 #endif 00376 00377 for (QStringList::const_iterator it = libpaths.constBegin(); 00378 it != libpaths.constEnd(); 00379 ++it) { 00380 for (QStringList::const_iterator shit = libnamesc.constBegin(); 00381 shit != libnamesc.constEnd(); 00382 ++shit) { 00383 QString alib = *it; 00384 if (!alib.isEmpty() && !alib.endsWith('/')) 00385 alib += '/'; 00386 alib += *shit; 00387 // someone knows why this is needed? 00388 QString tmpStr(alib.toLatin1().constData()); 00389 tmpStr.remove(QRegExp("\\(.*\\)")); 00390 if (!access(tmpStr.toLatin1(), R_OK)) { 00391 d->cryptoLib = new KLibrary(alib); 00392 d->cryptoLib->setLoadHints(QLibrary::ExportExternalSymbolsHint); 00393 } 00394 if (d->cryptoLib && d->cryptoLib->load()) { 00395 break; 00396 } 00397 else { 00398 delete d->cryptoLib; 00399 d->cryptoLib = 0; 00400 } 00401 } 00402 if (d->cryptoLib) break; 00403 } 00404 00405 if (d->cryptoLib) { 00406 #ifdef KSSL_HAVE_SSL 00407 K_X509_free = (void (*) (X509 *)) d->cryptoLib->resolveFunction("X509_free"); 00408 K_RAND_egd = (int (*)(const char *)) d->cryptoLib->resolveFunction("RAND_egd"); 00409 K_RAND_load_file = (int (*)(const char *, long)) d->cryptoLib->resolveFunction("RAND_load_file"); 00410 K_RAND_file_name = (const char* (*)(char *, size_t)) d->cryptoLib->resolveFunction("RAND_file_name"); 00411 K_RAND_write_file = (int (*)(const char *)) d->cryptoLib->resolveFunction("RAND_write_file"); 00412 K_CRYPTO_free = (void (*) (void *)) d->cryptoLib->resolveFunction("CRYPTO_free"); 00413 K_d2i_X509 = (X509 * (*)(X509 **,unsigned char **,long)) d->cryptoLib->resolveFunction("d2i_X509"); 00414 K_i2d_X509 = (int (*)(X509 *,unsigned char **)) d->cryptoLib->resolveFunction("i2d_X509"); 00415 K_X509_cmp = (int (*)(X509 *, X509 *)) d->cryptoLib->resolveFunction("X509_cmp"); 00416 K_X509_STORE_CTX_new = (X509_STORE_CTX * (*) (void)) d->cryptoLib->resolveFunction("X509_STORE_CTX_new"); 00417 K_X509_STORE_CTX_free = (void (*) (X509_STORE_CTX *)) d->cryptoLib->resolveFunction("X509_STORE_CTX_free"); 00418 K_X509_verify_cert = (int (*) (X509_STORE_CTX *)) d->cryptoLib->resolveFunction("X509_verify_cert"); 00419 K_X509_STORE_new = (X509_STORE * (*) (void)) d->cryptoLib->resolveFunction("X509_STORE_new"); 00420 K_X509_STORE_free = (void (*) (X509_STORE *)) d->cryptoLib->resolveFunction("X509_STORE_free"); 00421 K_X509_NAME_oneline = (char * (*) (X509_NAME *,char *,int)) d->cryptoLib->resolveFunction("X509_NAME_oneline"); 00422 K_X509_get_subject_name = (X509_NAME * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_subject_name"); 00423 K_X509_get_issuer_name = (X509_NAME * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_issuer_name"); 00424 K_X509_STORE_add_lookup = (X509_LOOKUP *(*) (X509_STORE *, X509_LOOKUP_METHOD *)) d->cryptoLib->resolveFunction("X509_STORE_add_lookup"); 00425 K_X509_LOOKUP_file = (X509_LOOKUP_METHOD *(*)(void)) d->cryptoLib->resolveFunction("X509_LOOKUP_file"); 00426 K_X509_LOOKUP_free = (void (*)(X509_LOOKUP *)) d->cryptoLib->resolveFunction("X509_LOOKUP_free"); 00427 K_X509_LOOKUP_ctrl = (int (*)(X509_LOOKUP *, int, const char *, long, char **)) d->cryptoLib->resolveFunction("X509_LOOKUP_ctrl"); 00428 K_X509_STORE_CTX_init = (void (*)(X509_STORE_CTX *, X509_STORE *, X509 *, STACK_OF(X509) *)) d->cryptoLib->resolveFunction("X509_STORE_CTX_init"); 00429 K_X509_dup = (X509* (*)(X509*)) d->cryptoLib->resolveFunction("X509_dup"); 00430 K_BIO_s_mem = (BIO_METHOD *(*) (void)) d->cryptoLib->resolveFunction("BIO_s_mem"); 00431 K_BIO_new = (BIO* (*)(BIO_METHOD *)) d->cryptoLib->resolveFunction("BIO_new"); 00432 K_BIO_new_fp = (BIO* (*)(FILE*, int)) d->cryptoLib->resolveFunction("BIO_new_fp"); 00433 K_BIO_new_mem_buf = (BIO* (*)(void *, int)) d->cryptoLib->resolveFunction("BIO_new_mem_buf"); 00434 K_BIO_free = (int (*)(BIO*)) d->cryptoLib->resolveFunction("BIO_free"); 00435 K_BIO_ctrl = (long (*) (BIO *,int,long,void *)) d->cryptoLib->resolveFunction("BIO_ctrl"); 00436 K_BIO_write = (int (*) (BIO *b, const void *data, int len)) d->cryptoLib->resolveFunction("BIO_write"); 00437 K_PEM_ASN1_write_bio = (int (*)(int (*)(), const char *,BIO*, char*, const EVP_CIPHER *, unsigned char *, int, pem_password_cb *, void *)) d->cryptoLib->resolveFunction("PEM_ASN1_write_bio"); 00438 K_ASN1_item_i2d_fp = (int (*)(ASN1_ITEM *, FILE*, unsigned char *)) 00439 d->cryptoLib->resolveFunction("ASN1_item_i2d_fp"); 00440 K_NETSCAPE_X509_it = (ASN1_ITEM *) d->cryptoLib->resolveFunction("NETSCAPE_X509_it"); 00441 K_X509_print_fp = (int (*)(FILE*, X509*)) d->cryptoLib->resolveFunction("X509_print_fp"); 00442 K_i2d_PKCS12 = (int (*)(PKCS12*, unsigned char**)) d->cryptoLib->resolveFunction("i2d_PKCS12"); 00443 K_i2d_PKCS12_fp = (int (*)(FILE *, PKCS12*)) d->cryptoLib->resolveFunction("i2d_PKCS12_fp"); 00444 K_PKCS12_newpass = (int (*)(PKCS12*, char*, char*)) d->cryptoLib->resolveFunction("PKCS12_newpass"); 00445 K_d2i_PKCS12_fp = (PKCS12* (*)(FILE*, PKCS12**)) d->cryptoLib->resolveFunction("d2i_PKCS12_fp"); 00446 K_PKCS12_new = (PKCS12* (*)()) d->cryptoLib->resolveFunction("PKCS12_new"); 00447 K_PKCS12_free = (void (*)(PKCS12 *)) d->cryptoLib->resolveFunction("PKCS12_free"); 00448 K_PKCS12_parse = (int (*)(PKCS12*, const char *, EVP_PKEY**, 00449 X509**, STACK_OF(X509)**)) d->cryptoLib->resolveFunction("PKCS12_parse"); 00450 K_EVP_PKEY_free = (void (*) (EVP_PKEY *)) d->cryptoLib->resolveFunction("EVP_PKEY_free"); 00451 K_EVP_PKEY_new = (EVP_PKEY* (*)()) d->cryptoLib->resolveFunction("EVP_PKEY_new"); 00452 K_X509_REQ_free = (void (*)(X509_REQ*)) d->cryptoLib->resolveFunction("X509_REQ_free"); 00453 K_X509_REQ_new = (X509_REQ* (*)()) d->cryptoLib->resolveFunction("X509_REQ_new"); 00454 K_X509_STORE_CTX_set_chain = (void (*)(X509_STORE_CTX *, STACK_OF(X509)*)) d->cryptoLib->resolveFunction("X509_STORE_CTX_set_chain"); 00455 K_X509_STORE_CTX_set_purpose = (void (*)(X509_STORE_CTX *, int)) d->cryptoLib->resolveFunction("X509_STORE_CTX_set_purpose"); 00456 K_sk_free = (void (*) (STACK *)) d->cryptoLib->resolveFunction("sk_free"); 00457 K_sk_num = (int (*) (STACK *)) d->cryptoLib->resolveFunction("sk_num"); 00458 K_sk_pop = (char* (*) (STACK *)) d->cryptoLib->resolveFunction("sk_pop"); 00459 K_sk_value = (char* (*) (STACK *, int)) d->cryptoLib->resolveFunction("sk_value"); 00460 K_sk_new = (STACK* (*) (int (*)())) d->cryptoLib->resolveFunction("sk_new"); 00461 K_sk_push = (int (*) (STACK*, char*)) d->cryptoLib->resolveFunction("sk_push"); 00462 K_sk_dup = (STACK* (*) (STACK *)) d->cryptoLib->resolveFunction("sk_dup"); 00463 K_i2s_ASN1_INTEGER = (char *(*) (X509V3_EXT_METHOD *, ASN1_INTEGER *)) d->cryptoLib->resolveFunction("i2s_ASN1_INTEGER"); 00464 K_X509_get_serialNumber = (ASN1_INTEGER * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_serialNumber"); 00465 K_X509_get_pubkey = (EVP_PKEY *(*)(X509 *)) d->cryptoLib->resolveFunction("X509_get_pubkey"); 00466 K_i2d_PublicKey = (int (*)(EVP_PKEY *, unsigned char **)) d->cryptoLib->resolveFunction("i2d_PublicKey"); 00467 K_X509_check_private_key = (int (*)(X509 *, EVP_PKEY *)) d->cryptoLib->resolveFunction("X509_check_private_key"); 00468 K_BN_bn2hex = (char *(*)(const BIGNUM *)) d->cryptoLib->resolveFunction("BN_bn2hex"); 00469 K_X509_digest = (int (*)(const X509 *,const EVP_MD *, unsigned char *, unsigned int *)) d->cryptoLib->resolveFunction("X509_digest"); 00470 K_EVP_md5 = (EVP_MD *(*)()) d->cryptoLib->resolveFunction("EVP_md5"); 00471 K_ASN1_INTEGER_free = (void (*)(ASN1_INTEGER *)) d->cryptoLib->resolveFunction("ASN1_INTEGER_free"); 00472 K_OBJ_obj2nid = (int (*)(ASN1_OBJECT *)) d->cryptoLib->resolveFunction("OBJ_obj2nid"); 00473 K_OBJ_nid2ln = (const char *(*)(int)) d->cryptoLib->resolveFunction("OBJ_nid2ln"); 00474 K_X509_get_ext_count = (int (*)(X509*)) d->cryptoLib->resolveFunction("X509_get_ext_count"); 00475 K_X509_get_ext_by_NID = (int (*)(X509*,int,int)) d->cryptoLib->resolveFunction("X509_get_ext_by_NID"); 00476 K_X509_get_ext_by_OBJ = (int (*)(X509*,ASN1_OBJECT*,int)) d->cryptoLib->resolveFunction("X509_get_ext_by_OBJ"); 00477 K_X509_get_ext = (X509_EXTENSION* (*)(X509*,int)) d->cryptoLib->resolveFunction("X509_get_ext"); 00478 K_X509_delete_ext = (X509_EXTENSION* (*)(X509*,int)) d->cryptoLib->resolveFunction("X509_delete_ext"); 00479 K_X509_add_ext = (int (*)(X509*,X509_EXTENSION*,int)) d->cryptoLib->resolveFunction("X509_add_ext"); 00480 K_X509_get_ext_d2i = (void* (*)(X509*,int,int*,int*)) d->cryptoLib->resolveFunction("X509_get_ext_d2i"); 00481 K_i2s_ASN1_OCTET_STRING = (char *(*)(X509V3_EXT_METHOD*,ASN1_OCTET_STRING*)) d->cryptoLib->resolveFunction("i2s_ASN1_OCTET_STRING"); 00482 K_ASN1_BIT_STRING_get_bit = (int (*)(ASN1_BIT_STRING*,int)) d->cryptoLib->resolveFunction("ASN1_BIT_STRING_get_bit"); 00483 K_PKCS7_new = (PKCS7 *(*)()) d->cryptoLib->resolveFunction("PKCS7_new"); 00484 K_PKCS7_free = (void (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_free"); 00485 K_PKCS7_content_free = (void (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_content_free"); 00486 K_i2d_PKCS7 = (int (*)(PKCS7*, unsigned char**)) d->cryptoLib->resolveFunction("i2d_PKCS7"); 00487 K_i2d_PKCS7_fp = (int (*)(FILE*,PKCS7*)) d->cryptoLib->resolveFunction("i2d_PKCS7_fp"); 00488 K_i2d_PKCS7_bio = (int (*)(BIO *bp,PKCS7 *p7)) d->cryptoLib->resolveFunction("i2d_PKCS7_bio"); 00489 K_d2i_PKCS7 = (PKCS7* (*)(PKCS7**,unsigned char**,long)) d->cryptoLib->resolveFunction("d2i_PKCS7"); 00490 K_d2i_PKCS7_fp = (PKCS7 *(*)(FILE *,PKCS7**)) d->cryptoLib->resolveFunction("d2i_PKCS7_fp"); 00491 K_d2i_PKCS7_bio = (PKCS7 *(*)(BIO *bp,PKCS7 **p7)) d->cryptoLib->resolveFunction("d2i_PKCS7_bio"); 00492 K_PKCS7_dup = (PKCS7* (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_dup"); 00493 K_PKCS7_sign = (PKCS7 *(*)(X509*, EVP_PKEY*, STACK_OF(X509)*, BIO*, int)) d->cryptoLib->resolveFunction("PKCS7_sign"); 00494 K_PKCS7_verify = (int (*)(PKCS7*,STACK_OF(X509)*,X509_STORE*,BIO*,BIO*,int)) d->cryptoLib->resolveFunction("PKCS7_verify"); 00495 K_PKCS7_get0_signers = (STACK_OF(X509) *(*)(PKCS7 *, STACK_OF(X509) *, int)) d->cryptoLib->resolveFunction("PKCS7_get0_signers"); 00496 K_PKCS7_encrypt = (PKCS7* (*)(STACK_OF(X509) *, BIO *, EVP_CIPHER *, int)) d->cryptoLib->resolveFunction("PKCS7_encrypt"); 00497 K_PKCS7_decrypt = (int (*)(PKCS7 *, EVP_PKEY *, X509 *, BIO *, int)) d->cryptoLib->resolveFunction("PKCS7_decrypt"); 00498 K_PEM_X509_INFO_read = (STACK_OF(X509_INFO) *(*)(FILE*, STACK_OF(X509_INFO)*, pem_password_cb*, void *)) d->cryptoLib->resolveFunction("PEM_X509_INFO_read"); 00499 K_ASN1_d2i_fp = (char *(*)(char *(*)(),char *(*)(),FILE*,unsigned char**)) d->cryptoLib->resolveFunction("ASN1_d2i_fp"); 00500 K_X509_new = (X509 *(*)()) d->cryptoLib->resolveFunction("X509_new"); 00501 K_X509_PURPOSE_get_count = (int (*)()) d->cryptoLib->resolveFunction("X509_PURPOSE_get_count"); 00502 K_X509_PURPOSE_get_id = (int (*)(X509_PURPOSE *)) d->cryptoLib->resolveFunction("X509_PURPOSE_get_id"); 00503 K_X509_check_purpose = (int (*)(X509*,int,int)) d->cryptoLib->resolveFunction("X509_check_purpose"); 00504 K_X509_PURPOSE_get0 = (X509_PURPOSE *(*)(int)) d->cryptoLib->resolveFunction("X509_PURPOSE_get0"); 00505 K_EVP_PKEY_assign = (int (*)(EVP_PKEY*, int, char*)) d->cryptoLib->resolveFunction("EVP_PKEY_assign"); 00506 K_X509_REQ_set_pubkey = (int (*)(X509_REQ*, EVP_PKEY*)) d->cryptoLib->resolveFunction("X509_REQ_set_pubkey"); 00507 K_RSA_generate_key = (RSA* (*)(int, unsigned long, void (*)(int,int,void *), void *)) d->cryptoLib->resolveFunction("RSA_generate_key"); 00508 K_i2d_X509_REQ_fp = (int (*)(FILE *, X509_REQ *)) d->cryptoLib->resolveFunction("i2d_X509_REQ_fp"); 00509 K_ERR_clear_error = (void (*)()) d->cryptoLib->resolveFunction("ERR_clear_error"); 00510 K_ERR_get_error = (unsigned long (*)()) d->cryptoLib->resolveFunction("ERR_get_error"); 00511 K_ERR_print_errors_fp = (void (*)(FILE*)) d->cryptoLib->resolveFunction("ERR_print_errors_fp"); 00512 K_X509_get1_email = (STACK *(*)(X509 *x)) d->cryptoLib->resolveFunction("X509_get1_email"); 00513 K_X509_email_free = (void (*)(STACK *sk)) d->cryptoLib->resolveFunction("X509_email_free"); 00514 K_EVP_des_ede3_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_des_ede3_cbc"); 00515 K_EVP_des_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_des_cbc"); 00516 K_EVP_rc2_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_cbc"); 00517 K_EVP_rc2_64_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_64_cbc"); 00518 K_EVP_rc2_40_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_40_cbc"); 00519 K_i2d_PrivateKey_fp = (int (*)(FILE*,EVP_PKEY*)) d->cryptoLib->resolveFunction("i2d_PrivateKey_fp"); 00520 K_i2d_PKCS8PrivateKey_fp = (int (*)(FILE*, EVP_PKEY*, const EVP_CIPHER*, char*, int, pem_password_cb*, void*)) d->cryptoLib->resolveFunction("i2d_PKCS8PrivateKey_fp"); 00521 K_RSA_free = (void (*)(RSA*)) d->cryptoLib->resolveFunction("RSA_free"); 00522 K_EVP_bf_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_bf_cbc"); 00523 K_X509_REQ_sign = (int (*)(X509_REQ*, EVP_PKEY*, const EVP_MD*)) d->cryptoLib->resolveFunction("X509_REQ_sign"); 00524 K_X509_NAME_add_entry_by_txt = (int (*)(X509_NAME*, char*, int, unsigned char*, int, int, int)) d->cryptoLib->resolveFunction("X509_NAME_add_entry_by_txt"); 00525 K_X509_NAME_new = (X509_NAME *(*)()) d->cryptoLib->resolveFunction("X509_NAME_new"); 00526 K_X509_REQ_set_subject_name = (int (*)(X509_REQ*,X509_NAME*)) d->cryptoLib->resolveFunction("X509_REQ_set_subject_name"); 00527 K_ASN1_STRING_data = (unsigned char *(*)(ASN1_STRING*)) d->cryptoLib->resolveFunction("ASN1_STRING_data"); 00528 #endif 00529 } 00530 00531 #ifdef Q_OS_WIN 00532 d->sslLib = new KLibrary("ssleay32.dll"); 00533 if (!d->sslLib->load()) { 00534 delete d->sslLib; 00535 d->sslLib = 0; 00536 } 00537 #elif defined(__OpenBSD__) 00538 { 00539 QString libname = findMostRecentLib("/usr/lib", "ssl"); 00540 if (!libname.isNull()) { 00541 d->sslLib = new KLibrary(libname); 00542 d->sslLib->setLoadHints(QLibrary::ExportExternalSymbolsHint); 00543 if (!d->sslLib->load()) { 00544 delete d->sslLib; 00545 d->sslLib = 0; 00546 } 00547 } 00548 } 00549 #else 00550 for (QStringList::const_iterator it = libpaths.constBegin(); 00551 it != libpaths.constEnd(); 00552 ++it) { 00553 for (QStringList::const_iterator shit = libnamess.constBegin(); 00554 shit != libnamess.constEnd(); 00555 ++shit) { 00556 QString alib = *it; 00557 if (!alib.isEmpty() && !alib.endsWith('/')) 00558 alib += '/'; 00559 alib += *shit; 00560 QString tmpStr(alib.toLatin1()); 00561 tmpStr.remove(QRegExp("\\(.*\\)")); 00562 if (!access(tmpStr.toLatin1(), R_OK)) { 00563 d->sslLib = new KLibrary(alib); 00564 d->sslLib->setLoadHints(QLibrary::ExportExternalSymbolsHint); 00565 } 00566 if (d->sslLib && d->sslLib->load()) { 00567 break; 00568 } 00569 else { 00570 delete d->sslLib; 00571 d->sslLib = 0; 00572 } 00573 } 00574 if (d->sslLib) break; 00575 } 00576 #endif 00577 00578 if (d->sslLib) { 00579 #ifdef KSSL_HAVE_SSL 00580 // stand back from your monitor and look at this. it's fun! :) 00581 K_SSL_connect = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_connect"); 00582 K_SSL_accept = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_accept"); 00583 K_SSL_read = (int (*)(SSL *, void *, int)) d->sslLib->resolveFunction("SSL_read"); 00584 K_SSL_write = (int (*)(SSL *, const void *, int)) 00585 d->sslLib->resolveFunction("SSL_write"); 00586 K_SSL_new = (SSL* (*)(SSL_CTX *)) d->sslLib->resolveFunction("SSL_new"); 00587 K_SSL_free = (void (*)(SSL *)) d->sslLib->resolveFunction("SSL_free"); 00588 K_SSL_shutdown = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_shutdown"); 00589 K_SSL_CTX_new = (SSL_CTX* (*)(SSL_METHOD*)) d->sslLib->resolveFunction("SSL_CTX_new"); 00590 K_SSL_CTX_free = (void (*)(SSL_CTX*)) d->sslLib->resolveFunction("SSL_CTX_free"); 00591 K_SSL_set_fd = (int (*)(SSL *, int)) d->sslLib->resolveFunction("SSL_set_fd"); 00592 K_SSL_pending = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_pending"); 00593 K_SSL_CTX_set_cipher_list = (int (*)(SSL_CTX *, const char *)) 00594 d->sslLib->resolveFunction("SSL_CTX_set_cipher_list"); 00595 K_SSL_CTX_set_verify = (void (*)(SSL_CTX*, int, int (*)(int, X509_STORE_CTX*))) d->sslLib->resolveFunction("SSL_CTX_set_verify"); 00596 K_SSL_use_certificate = (int (*)(SSL*, X509*)) 00597 d->sslLib->resolveFunction("SSL_CTX_use_certificate"); 00598 K_SSL_get_current_cipher = (SSL_CIPHER *(*)(SSL *)) 00599 d->sslLib->resolveFunction("SSL_get_current_cipher"); 00600 K_SSL_ctrl = (long (*)(SSL * ,int, long, char *)) 00601 d->sslLib->resolveFunction("SSL_ctrl"); 00602 K_TLSv1_client_method = (SSL_METHOD *(*)()) d->sslLib->resolveFunction("TLSv1_client_method"); 00603 K_SSLv23_client_method = (SSL_METHOD *(*)()) d->sslLib->resolveFunction("SSLv23_client_method"); 00604 K_SSL_get_peer_certificate = (X509 *(*)(SSL *)) d->sslLib->resolveFunction("SSL_get_peer_certificate"); 00605 K_SSL_CIPHER_get_bits = (int (*)(SSL_CIPHER *,int *)) d->sslLib->resolveFunction("SSL_CIPHER_get_bits"); 00606 K_SSL_CIPHER_get_version = (char * (*)(SSL_CIPHER *)) d->sslLib->resolveFunction("SSL_CIPHER_get_version"); 00607 K_SSL_CIPHER_get_name = (const char * (*)(SSL_CIPHER *)) d->sslLib->resolveFunction("SSL_CIPHER_get_name"); 00608 K_SSL_CIPHER_description = (char * (*)(SSL_CIPHER *, char *, int)) d->sslLib->resolveFunction("SSL_CIPHER_description"); 00609 K_SSL_CTX_use_PrivateKey = (int (*)(SSL_CTX*, EVP_PKEY*)) d->sslLib->resolveFunction("SSL_CTX_use_PrivateKey"); 00610 K_SSL_CTX_use_certificate = (int (*)(SSL_CTX*, X509*)) d->sslLib->resolveFunction("SSL_CTX_use_certificate"); 00611 K_SSL_get_error = (int (*)(SSL*, int)) d->sslLib->resolveFunction("SSL_get_error"); 00612 K_SSL_get_peer_cert_chain = (STACK_OF(X509)* (*)(SSL*)) d->sslLib->resolveFunction("SSL_get_peer_cert_chain"); 00613 K_SSL_load_client_CA_file = (STACK_OF(X509_NAME)* (*)(const char *)) d->sslLib->resolveFunction("SSL_load_client_CA_file"); 00614 K_SSL_peek = (int (*)(SSL*,void*,int)) d->sslLib->resolveFunction("SSL_peek"); 00615 K_SSL_get1_session = (SSL_SESSION* (*)(SSL*)) d->sslLib->resolveFunction("SSL_get1_session"); 00616 K_SSL_SESSION_free = (void (*)(SSL_SESSION*)) d->sslLib->resolveFunction("SSL_SESSION_free"); 00617 K_SSL_set_session = (int (*)(SSL*,SSL_SESSION*)) d->sslLib->resolveFunction("SSL_set_session"); 00618 K_d2i_SSL_SESSION = (SSL_SESSION* (*)(SSL_SESSION**,unsigned char**, long)) d->sslLib->resolveFunction("d2i_SSL_SESSION"); 00619 K_i2d_SSL_SESSION = (int (*)(SSL_SESSION*,unsigned char**)) d->sslLib->resolveFunction("i2d_SSL_SESSION"); 00620 K_SSL_get_ciphers = (STACK_OF(SSL_CIPHER) *(*)(const SSL*)) d->sslLib->resolveFunction("SSL_get_ciphers"); 00621 #endif 00622 00623 00624 // Initialize the library (once only!) 00625 KLibrary::void_function_ptr x; 00626 x = d->sslLib->resolveFunction("SSL_library_init"); 00627 if (d->cryptoLib) { 00628 if (x) ((int (*)())x)(); 00629 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms"); 00630 if (!x) 00631 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms"); 00632 if (x) { 00633 ((void (*)())x)(); 00634 } else { 00635 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms_conf"); 00636 if (!x) 00637 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms_conf"); 00638 if (x) { 00639 ((void (*)())x)(); 00640 } else { 00641 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms_noconf"); 00642 if (!x) 00643 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms_noconf"); 00644 if (x) 00645 ((void (*)())x)(); 00646 } 00647 } 00648 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_ciphers"); 00649 if (!x) 00650 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_ciphers"); 00651 if (x) ((void (*)())x)(); 00652 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_digests"); 00653 if (!x) 00654 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_digests"); 00655 if (x) ((void (*)())x)(); 00656 } 00657 } 00658 00659 } 00660 00661 KOpenSSLProxy::~KOpenSSLProxy() { 00662 if (d->sslLib) { 00663 d->sslLib->unload(); 00664 } 00665 if (d->cryptoLib) { 00666 d->cryptoLib->unload(); 00667 } 00668 00669 KOpenSSLProxyPrivate::sSelf = 0; 00670 delete d; 00671 } 00672 00673 00674 // FIXME: we should check "ok" and allow this to init the lib if !ok. 00675 00676 KOpenSSLProxy *KOpenSSLProxy::self() { 00677 #ifdef KSSL_HAVE_SSL 00678 if(!KOpenSSLProxyPrivate::sSelf) { 00679 KOpenSSLProxyPrivate::sSelf = new KOpenSSLProxy(); 00680 qAddPostRoutine(KOpenSSLProxyPrivate::cleanupKOpenSSLProxy); 00681 } 00682 #endif 00683 return KOpenSSLProxyPrivate::sSelf; 00684 } 00685 00686 00687 00688 00689 00690 00691 00692 #ifdef KSSL_HAVE_SSL 00693 00694 00695 00696 int KOpenSSLProxy::SSL_connect(SSL *ssl) { 00697 if (K_SSL_connect) return (K_SSL_connect)(ssl); 00698 return -1; 00699 } 00700 00701 00702 int KOpenSSLProxy::SSL_accept(SSL *ssl) { 00703 if (K_SSL_accept) return (K_SSL_accept)(ssl); 00704 return -1; 00705 } 00706 00707 00708 int KOpenSSLProxy::SSL_read(SSL *ssl, void *buf, int num) { 00709 if (K_SSL_read) return (K_SSL_read)(ssl, buf, num); 00710 return -1; 00711 } 00712 00713 00714 int KOpenSSLProxy::SSL_write(SSL *ssl, const void *buf, int num) { 00715 if (K_SSL_write) return (K_SSL_write)(ssl, buf, num); 00716 return -1; 00717 } 00718 00719 00720 SSL *KOpenSSLProxy::SSL_new(SSL_CTX *ctx) { 00721 if (K_SSL_new) return (K_SSL_new)(ctx); 00722 return 0L; 00723 } 00724 00725 00726 void KOpenSSLProxy::SSL_free(SSL *ssl) { 00727 if (K_SSL_free) (K_SSL_free)(ssl); 00728 } 00729 00730 00731 int KOpenSSLProxy::SSL_shutdown(SSL *ssl) { 00732 if (K_SSL_shutdown) return (K_SSL_shutdown)(ssl); 00733 return -1; 00734 } 00735 00736 00737 SSL_CTX *KOpenSSLProxy::SSL_CTX_new(SSL_METHOD *method) { 00738 if (K_SSL_CTX_new) return (K_SSL_CTX_new)(method); 00739 return 0L; 00740 } 00741 00742 00743 void KOpenSSLProxy::SSL_CTX_free(SSL_CTX *ctx) { 00744 if (K_SSL_CTX_free) (K_SSL_CTX_free)(ctx); 00745 } 00746 00747 00748 int KOpenSSLProxy::SSL_set_fd(SSL *ssl, int fd) { 00749 if (K_SSL_set_fd) return (K_SSL_set_fd)(ssl, fd); 00750 return -1; 00751 } 00752 00753 00754 int KOpenSSLProxy::SSL_pending(SSL *ssl) { 00755 if (K_SSL_pending) return (K_SSL_pending)(ssl); 00756 return -1; 00757 } 00758 00759 00760 int KOpenSSLProxy::SSL_CTX_set_cipher_list(SSL_CTX *ctx, const char *str) { 00761 if (K_SSL_CTX_set_cipher_list) return (K_SSL_CTX_set_cipher_list)(ctx, str); 00762 return -1; 00763 } 00764 00765 00766 void KOpenSSLProxy::SSL_CTX_set_verify(SSL_CTX *ctx, int mode, 00767 int (*verify_callback)(int, X509_STORE_CTX *)) { 00768 if (K_SSL_CTX_set_verify) (K_SSL_CTX_set_verify)(ctx, mode, verify_callback); 00769 } 00770 00771 00772 int KOpenSSLProxy::SSL_use_certificate(SSL *ssl, X509 *x) { 00773 if (K_SSL_use_certificate) return (K_SSL_use_certificate)(ssl, x); 00774 return -1; 00775 } 00776 00777 00778 SSL_CIPHER *KOpenSSLProxy::SSL_get_current_cipher(SSL *ssl) { 00779 if (K_SSL_get_current_cipher) return (K_SSL_get_current_cipher)(ssl); 00780 return 0L; 00781 } 00782 00783 00784 long KOpenSSLProxy::SSL_ctrl(SSL *ssl,int cmd, long larg, char *parg) { 00785 if (K_SSL_ctrl) return (K_SSL_ctrl)(ssl, cmd, larg, parg); 00786 return -1; 00787 } 00788 00789 00790 int KOpenSSLProxy::RAND_egd(const char *path) { 00791 if (K_RAND_egd) return (K_RAND_egd)(path); 00792 return -1; 00793 } 00794 00795 00796 SSL_METHOD *KOpenSSLProxy::TLSv1_client_method() { 00797 if (K_TLSv1_client_method) return (K_TLSv1_client_method)(); 00798 return 0L; 00799 } 00800 00801 00802 SSL_METHOD *KOpenSSLProxy::SSLv23_client_method() { 00803 if (K_SSLv23_client_method) return (K_SSLv23_client_method)(); 00804 return 0L; 00805 } 00806 00807 00808 X509 *KOpenSSLProxy::SSL_get_peer_certificate(SSL *s) { 00809 if (K_SSL_get_peer_certificate) return (K_SSL_get_peer_certificate)(s); 00810 return 0L; 00811 } 00812 00813 00814 int KOpenSSLProxy::SSL_CIPHER_get_bits(SSL_CIPHER *c,int *alg_bits) { 00815 if (K_SSL_CIPHER_get_bits) return (K_SSL_CIPHER_get_bits)(c, alg_bits); 00816 return -1; 00817 } 00818 00819 00820 char * KOpenSSLProxy::SSL_CIPHER_get_version(SSL_CIPHER *c) { 00821 if (K_SSL_CIPHER_get_version) return (K_SSL_CIPHER_get_version)(c); 00822 return 0L; 00823 } 00824 00825 00826 const char * KOpenSSLProxy::SSL_CIPHER_get_name(SSL_CIPHER *c) { 00827 if (K_SSL_CIPHER_get_name) return (K_SSL_CIPHER_get_name)(c); 00828 return 0L; 00829 } 00830 00831 00832 char * KOpenSSLProxy::SSL_CIPHER_description(SSL_CIPHER *c,char *buf,int size) { 00833 if (K_SSL_CIPHER_description) return (K_SSL_CIPHER_description)(c,buf,size); 00834 return 0L; 00835 } 00836 00837 00838 X509 * KOpenSSLProxy::d2i_X509(X509 **a,unsigned char **pp,long length) { 00839 if (K_d2i_X509) return (K_d2i_X509)(a,pp,length); 00840 return 0L; 00841 } 00842 00843 00844 int KOpenSSLProxy::i2d_X509(X509 *a,unsigned char **pp) { 00845 if (K_i2d_X509) return (K_i2d_X509)(a,pp); 00846 return -1; 00847 } 00848 00849 00850 int KOpenSSLProxy::X509_cmp(X509 *a, X509 *b) { 00851 if (K_X509_cmp) return (K_X509_cmp)(a,b); 00852 return 0; 00853 } 00854 00855 00856 X509_STORE *KOpenSSLProxy::X509_STORE_new(void) { 00857 if (K_X509_STORE_new) return (K_X509_STORE_new)(); 00858 return 0L; 00859 } 00860 00861 00862 void KOpenSSLProxy::X509_STORE_free(X509_STORE *v) { 00863 if (K_X509_STORE_free) (K_X509_STORE_free)(v); 00864 } 00865 00866 00867 X509_STORE_CTX *KOpenSSLProxy::X509_STORE_CTX_new(void) { 00868 if (K_X509_STORE_CTX_new) return (K_X509_STORE_CTX_new)(); 00869 return 0L; 00870 } 00871 00872 00873 void KOpenSSLProxy::X509_STORE_CTX_free(X509_STORE_CTX *ctx) { 00874 if (K_X509_STORE_CTX_free) (K_X509_STORE_CTX_free)(ctx); 00875 } 00876 00877 00878 int KOpenSSLProxy::X509_verify_cert(X509_STORE_CTX *ctx) { 00879 if (K_X509_verify_cert) return (K_X509_verify_cert)(ctx); 00880 return -1; 00881 } 00882 00883 00884 void KOpenSSLProxy::X509_free(X509 *a) { 00885 if (K_X509_free) (K_X509_free)(a); 00886 } 00887 00888 00889 char *KOpenSSLProxy::X509_NAME_oneline(X509_NAME *a,char *buf,int size) { 00890 if (K_X509_NAME_oneline) return (K_X509_NAME_oneline)(a,buf,size); 00891 return 0L; 00892 } 00893 00894 00895 X509_NAME *KOpenSSLProxy::X509_get_subject_name(X509 *a) { 00896 if (K_X509_get_subject_name) return (K_X509_get_subject_name)(a); 00897 return 0L; 00898 } 00899 00900 00901 X509_NAME *KOpenSSLProxy::X509_get_issuer_name(X509 *a) { 00902 if (K_X509_get_issuer_name) return (K_X509_get_issuer_name)(a); 00903 return 0L; 00904 } 00905 00906 00907 X509_LOOKUP *KOpenSSLProxy::X509_STORE_add_lookup(X509_STORE *v, X509_LOOKUP_METHOD *m) { 00908 if (K_X509_STORE_add_lookup) return (K_X509_STORE_add_lookup)(v,m); 00909 return 0L; 00910 } 00911 00912 00913 X509_LOOKUP_METHOD *KOpenSSLProxy::X509_LOOKUP_file(void) { 00914 if (K_X509_LOOKUP_file) return (K_X509_LOOKUP_file)(); 00915 return 0L; 00916 } 00917 00918 00919 void KOpenSSLProxy::X509_LOOKUP_free(X509_LOOKUP *x) { 00920 if (K_X509_LOOKUP_free) (K_X509_LOOKUP_free)(x); 00921 } 00922 00923 00924 int KOpenSSLProxy::X509_LOOKUP_ctrl(X509_LOOKUP *ctx, int cmd, const char *argc, long argl, char **ret) { 00925 if (K_X509_LOOKUP_ctrl) return (K_X509_LOOKUP_ctrl)(ctx,cmd,argc,argl,ret); 00926 return -1; 00927 } 00928 00929 00930 void KOpenSSLProxy::X509_STORE_CTX_init(X509_STORE_CTX *ctx, X509_STORE *store, X509 *x509, STACK_OF(X509) *chain) { 00931 if (K_X509_STORE_CTX_init) (K_X509_STORE_CTX_init)(ctx,store,x509,chain); 00932 } 00933 00934 00935 void KOpenSSLProxy::CRYPTO_free(void *x) { 00936 if (K_CRYPTO_free) (K_CRYPTO_free)(x); 00937 } 00938 00939 00940 X509 *KOpenSSLProxy::X509_dup(X509 *x509) { 00941 if (K_X509_dup) return (K_X509_dup)(x509); 00942 return 0L; 00943 } 00944 00945 00946 BIO *KOpenSSLProxy::BIO_new(BIO_METHOD *type) { 00947 if (K_BIO_new) return (K_BIO_new)(type); 00948 else return 0L; 00949 } 00950 00951 00952 BIO_METHOD *KOpenSSLProxy::BIO_s_mem(void) { 00953 if (K_BIO_s_mem) return (K_BIO_s_mem)(); 00954 else return 0L; 00955 } 00956 00957 00958 BIO *KOpenSSLProxy::BIO_new_fp(FILE *stream, int close_flag) { 00959 if (K_BIO_new_fp) return (K_BIO_new_fp)(stream, close_flag); 00960 return 0L; 00961 } 00962 00963 00964 BIO *KOpenSSLProxy::BIO_new_mem_buf(void *buf, int len) { 00965 if (K_BIO_new_mem_buf) return (K_BIO_new_mem_buf)(buf,len); 00966 else return 0L; 00967 } 00968 00969 00970 int KOpenSSLProxy::BIO_free(BIO *a) { 00971 if (K_BIO_free) return (K_BIO_free)(a); 00972 return -1; 00973 } 00974 00975 00976 long KOpenSSLProxy::BIO_ctrl(BIO *bp,int cmd,long larg,void *parg) { 00977 if (K_BIO_ctrl) return (K_BIO_ctrl)(bp,cmd,larg,parg); 00978 else return 0; // failure return for BIO_ctrl is quite individual, maybe we should abort() instead 00979 } 00980 00981 00982 int KOpenSSLProxy::BIO_write(BIO *b, const void *data, int len) { 00983 if (K_BIO_write) return (K_BIO_write)(b, data, len); 00984 else return -1; 00985 } 00986 00987 00988 int KOpenSSLProxy::PEM_write_bio_X509(BIO *bp, X509 *x) { 00989 if (K_PEM_ASN1_write_bio) return (K_PEM_ASN1_write_bio) ((int (*)())K_i2d_X509, PEM_STRING_X509, bp, (char *)x, 0L, 0L, 0, 0L, 0L); 00990 else return -1; 00991 } 00992 00993 int KOpenSSLProxy::ASN1_item_i2d_fp(FILE *out,unsigned char *x) { 00994 if (K_ASN1_item_i2d_fp && K_NETSCAPE_X509_it) 00995 return (K_ASN1_item_i2d_fp)(K_NETSCAPE_X509_it, out, x); 00996 else return -1; 00997 } 00998 00999 01000 int KOpenSSLProxy::X509_print(FILE *fp, X509 *x) { 01001 if (K_X509_print_fp) return (K_X509_print_fp)(fp, x); 01002 return -1; 01003 } 01004 01005 01006 PKCS12 *KOpenSSLProxy::d2i_PKCS12_fp(FILE *fp, PKCS12 **p12) { 01007 if (K_d2i_PKCS12_fp) return (K_d2i_PKCS12_fp)(fp, p12); 01008 else return 0L; 01009 } 01010 01011 01012 int KOpenSSLProxy::PKCS12_newpass(PKCS12 *p12, char *oldpass, char *newpass) { 01013 if (K_PKCS12_newpass) return (K_PKCS12_newpass)(p12, oldpass, newpass); 01014 else return -1; 01015 } 01016 01017 01018 int KOpenSSLProxy::i2d_PKCS12(PKCS12 *p12, unsigned char **p) { 01019 if (K_i2d_PKCS12) return (K_i2d_PKCS12)(p12, p); 01020 else return -1; 01021 } 01022 01023 01024 int KOpenSSLProxy::i2d_PKCS12_fp(FILE *fp, PKCS12 *p12) { 01025 if (K_i2d_PKCS12_fp) return (K_i2d_PKCS12_fp)(fp, p12); 01026 else return -1; 01027 } 01028 01029 01030 PKCS12 *KOpenSSLProxy::PKCS12_new(void) { 01031 if (K_PKCS12_new) return (K_PKCS12_new)(); 01032 else return 0L; 01033 } 01034 01035 01036 void KOpenSSLProxy::PKCS12_free(PKCS12 *a) { 01037 if (K_PKCS12_free) (K_PKCS12_free)(a); 01038 } 01039 01040 01041 int KOpenSSLProxy::PKCS12_parse(PKCS12 *p12, const char *pass, EVP_PKEY **pkey, 01042 X509 **cert, STACK_OF(X509) **ca) { 01043 if (K_PKCS12_parse) return (K_PKCS12_parse) (p12, pass, pkey, cert, ca); 01044 else return -1; 01045 } 01046 01047 01048 void KOpenSSLProxy::EVP_PKEY_free(EVP_PKEY *x) { 01049 if (K_EVP_PKEY_free) (K_EVP_PKEY_free)(x); 01050 } 01051 01052 01053 EVP_PKEY* KOpenSSLProxy::EVP_PKEY_new() { 01054 if (K_EVP_PKEY_new) return (K_EVP_PKEY_new)(); 01055 else return 0L; 01056 } 01057 01058 01059 void KOpenSSLProxy::X509_REQ_free(X509_REQ *x) { 01060 if (K_X509_REQ_free) (K_X509_REQ_free)(x); 01061 } 01062 01063 01064 X509_REQ* KOpenSSLProxy::X509_REQ_new() { 01065 if (K_X509_REQ_new) return (K_X509_REQ_new)(); 01066 else return 0L; 01067 } 01068 01069 01070 int KOpenSSLProxy::SSL_CTX_use_PrivateKey(SSL_CTX *ctx, EVP_PKEY *pkey) { 01071 if (K_SSL_CTX_use_PrivateKey) return (K_SSL_CTX_use_PrivateKey)(ctx,pkey); 01072 else return -1; 01073 } 01074 01075 01076 int KOpenSSLProxy::SSL_CTX_use_certificate(SSL_CTX *ctx, X509 *x) { 01077 if (K_SSL_CTX_use_certificate) return (K_SSL_CTX_use_certificate)(ctx,x); 01078 else return -1; 01079 } 01080 01081 01082 int KOpenSSLProxy::SSL_get_error(SSL *ssl, int rc) { 01083 if (K_SSL_get_error) return (K_SSL_get_error)(ssl,rc); 01084 else return -1; 01085 } 01086 01087 01088 STACK_OF(X509) *KOpenSSLProxy::SSL_get_peer_cert_chain(SSL *s) { 01089 if (K_SSL_get_peer_cert_chain) return (K_SSL_get_peer_cert_chain)(s); 01090 else return 0L; 01091 } 01092 01093 01094 void KOpenSSLProxy::sk_free(STACK *s) { 01095 if (K_sk_free) (K_sk_free)(s); 01096 } 01097 01098 01099 int KOpenSSLProxy::sk_num(STACK *s) { 01100 if (K_sk_num) return (K_sk_num)(s); 01101 else return -1; 01102 } 01103 01104 01105 char *KOpenSSLProxy::sk_pop(STACK *s) { 01106 if (K_sk_pop) return (K_sk_pop)(s); 01107 else return 0L; 01108 } 01109 01110 01111 char *KOpenSSLProxy::sk_value(STACK *s, int n) { 01112 if (K_sk_value) return (K_sk_value)(s, n); 01113 else return 0L; 01114 } 01115 01116 01117 void KOpenSSLProxy::X509_STORE_CTX_set_chain(X509_STORE_CTX *v, STACK_OF(X509)* x) { 01118 if (K_X509_STORE_CTX_set_chain) (K_X509_STORE_CTX_set_chain)(v,x); 01119 } 01120 01121 void KOpenSSLProxy::X509_STORE_CTX_set_purpose(X509_STORE_CTX *v, int purpose) { 01122 if (K_X509_STORE_CTX_set_purpose) (K_X509_STORE_CTX_set_purpose)(v,purpose); 01123 } 01124 01125 01126 STACK* KOpenSSLProxy::sk_dup(STACK *s) { 01127 if (K_sk_dup) return (K_sk_dup)(s); 01128 else return 0L; 01129 } 01130 01131 01132 STACK* KOpenSSLProxy::sk_new(int (*cmp)()) { 01133 if (K_sk_new) return (K_sk_new)(cmp); 01134 else return 0L; 01135 } 01136 01137 01138 int KOpenSSLProxy::sk_push(STACK* s, char* d) { 01139 if (K_sk_push) return (K_sk_push)(s,d); 01140 else return -1; 01141 } 01142 01143 01144 char *KOpenSSLProxy::i2s_ASN1_INTEGER(X509V3_EXT_METHOD *meth, ASN1_INTEGER *aint) { 01145 if (K_i2s_ASN1_INTEGER) return (K_i2s_ASN1_INTEGER)(meth, aint); 01146 else return 0L; 01147 } 01148 01149 01150 ASN1_INTEGER *KOpenSSLProxy::X509_get_serialNumber(X509 *x) { 01151 if (K_X509_get_serialNumber) return (K_X509_get_serialNumber)(x); 01152 else return 0L; 01153 } 01154 01155 01156 EVP_PKEY *KOpenSSLProxy::X509_get_pubkey(X509 *x) { 01157 if (K_X509_get_pubkey) return (K_X509_get_pubkey)(x); 01158 else return 0L; 01159 } 01160 01161 01162 int KOpenSSLProxy::i2d_PublicKey(EVP_PKEY *a, unsigned char **pp) { 01163 if (K_i2d_PublicKey) return (K_i2d_PublicKey)(a,pp); 01164 else return 0; 01165 } 01166 01167 01168 int KOpenSSLProxy::X509_check_private_key(X509 *x, EVP_PKEY *p) { 01169 if (K_X509_check_private_key) return (K_X509_check_private_key)(x,p); 01170 return -1; 01171 } 01172 01173 01174 char *KOpenSSLProxy::BN_bn2hex(const BIGNUM *a) { 01175 if (K_BN_bn2hex) return (K_BN_bn2hex)(a); 01176 else return 0L; 01177 } 01178 01179 01180 int KOpenSSLProxy::X509_digest(const X509 *x,const EVP_MD *t, unsigned char *md, unsigned int *len) { 01181 if (K_X509_digest) return (K_X509_digest)(x, t, md, len); 01182 else return -1; 01183 } 01184 01185 01186 EVP_MD *KOpenSSLProxy::EVP_md5() { 01187 if (K_EVP_md5) return (K_EVP_md5)(); 01188 return 0L; 01189 } 01190 01191 01192 void KOpenSSLProxy::ASN1_INTEGER_free(ASN1_INTEGER *a) { 01193 if (K_ASN1_INTEGER_free) (K_ASN1_INTEGER_free)(a); 01194 } 01195 01196 01197 int KOpenSSLProxy::OBJ_obj2nid(ASN1_OBJECT *o) { 01198 if (K_OBJ_obj2nid) return (K_OBJ_obj2nid)(o); 01199 else return -1; 01200 } 01201 01202 01203 const char * KOpenSSLProxy::OBJ_nid2ln(int n) { 01204 if (K_OBJ_nid2ln) return (K_OBJ_nid2ln)(n); 01205 else return 0L; 01206 } 01207 01208 01209 int KOpenSSLProxy::X509_get_ext_count(X509 *x) { 01210 if (K_X509_get_ext_count) return (K_X509_get_ext_count)(x); 01211 else return -1; 01212 } 01213 01214 01215 int KOpenSSLProxy::X509_get_ext_by_NID(X509 *x, int nid, int lastpos) { 01216 if (K_X509_get_ext_by_NID) return (K_X509_get_ext_by_NID)(x,nid,lastpos); 01217 else return -1; 01218 } 01219 01220 01221 int KOpenSSLProxy::X509_get_ext_by_OBJ(X509 *x,ASN1_OBJECT *obj,int lastpos) { 01222 if (K_X509_get_ext_by_OBJ) return (K_X509_get_ext_by_OBJ)(x,obj,lastpos); 01223 else return -1; 01224 } 01225 01226 01227 X509_EXTENSION *KOpenSSLProxy::X509_get_ext(X509 *x, int loc) { 01228 if (K_X509_get_ext) return (K_X509_get_ext)(x,loc); 01229 else return 0L; 01230 } 01231 01232 01233 X509_EXTENSION *KOpenSSLProxy::X509_delete_ext(X509 *x, int loc) { 01234 if (K_X509_delete_ext) return (K_X509_delete_ext)(x,loc); 01235 else return 0L; 01236 } 01237 01238 01239 int KOpenSSLProxy::X509_add_ext(X509 *x, X509_EXTENSION *ex, int loc) { 01240 if (K_X509_add_ext) return (K_X509_add_ext)(x,ex,loc); 01241 else return -1; 01242 } 01243 01244 01245 void *KOpenSSLProxy::X509_get_ext_d2i(X509 *x, int nid, int *crit, int *idx) { 01246 if (K_X509_get_ext_d2i) return (K_X509_get_ext_d2i)(x,nid,crit,idx); 01247 else return 0L; 01248 } 01249 01250 01251 char *KOpenSSLProxy::i2s_ASN1_OCTET_STRING(X509V3_EXT_METHOD *method, ASN1_OCTET_STRING *ia5) { 01252 if (K_i2s_ASN1_OCTET_STRING) return (K_i2s_ASN1_OCTET_STRING)(method,ia5); 01253 else return 0L; 01254 } 01255 01256 01257 int KOpenSSLProxy::ASN1_BIT_STRING_get_bit(ASN1_BIT_STRING *a, int n) { 01258 if (K_ASN1_BIT_STRING_get_bit) return (K_ASN1_BIT_STRING_get_bit)(a,n); 01259 else return -1; 01260 } 01261 01262 01263 PKCS7 *KOpenSSLProxy::PKCS7_new(void) { 01264 if (K_PKCS7_new) return (K_PKCS7_new)(); 01265 else return 0L; 01266 } 01267 01268 01269 void KOpenSSLProxy::PKCS7_free(PKCS7 *a) { 01270 if (K_PKCS7_free) (K_PKCS7_free)(a); 01271 } 01272 01273 01274 void KOpenSSLProxy::PKCS7_content_free(PKCS7 *a) { 01275 if (K_PKCS7_content_free) (K_PKCS7_content_free)(a); 01276 } 01277 01278 01279 int KOpenSSLProxy::i2d_PKCS7(PKCS7 *a, unsigned char **pp) { 01280 if (K_i2d_PKCS7) return (K_i2d_PKCS7)(a,pp); 01281 else return -1; 01282 } 01283 01284 01285 PKCS7 *KOpenSSLProxy::d2i_PKCS7(PKCS7 **a, unsigned char **pp,long length) { 01286 if (K_d2i_PKCS7) return (K_d2i_PKCS7)(a,pp,length); 01287 else return 0L; 01288 } 01289 01290 01291 int KOpenSSLProxy::i2d_PKCS7_fp(FILE *fp,PKCS7 *p7) { 01292 if (K_i2d_PKCS7_fp) return (K_i2d_PKCS7_fp)(fp,p7); 01293 else return -1; 01294 } 01295 01296 01297 PKCS7 *KOpenSSLProxy::d2i_PKCS7_fp(FILE *fp,PKCS7 **p7) { 01298 if (K_d2i_PKCS7_fp) return (K_d2i_PKCS7_fp)(fp,p7); 01299 else return 0L; 01300 } 01301 01302 01303 int KOpenSSLProxy::i2d_PKCS7_bio(BIO *bp,PKCS7 *p7) { 01304 if (K_i2d_PKCS7_bio) return (K_i2d_PKCS7_bio)(bp, p7); 01305 else return -1; 01306 } 01307 01308 01309 PKCS7 *KOpenSSLProxy::d2i_PKCS7_bio(BIO *bp,PKCS7 **p7) { 01310 if (K_d2i_PKCS7_bio) return (K_d2i_PKCS7_bio)(bp, p7); 01311 else return 0L; 01312 } 01313 01314 01315 PKCS7 *KOpenSSLProxy::PKCS7_dup(PKCS7 *p7) { 01316 if (K_PKCS7_dup) return (K_PKCS7_dup)(p7); 01317 else return 0L; 01318 } 01319 01320 01321 PKCS7 *KOpenSSLProxy::PKCS7_sign(X509 *signcert, EVP_PKEY *pkey, STACK_OF(X509) *certs, 01322 BIO *data, int flags) { 01323 if (K_PKCS7_sign) return (K_PKCS7_sign)(signcert,pkey,certs,data,flags); 01324 else return 0L; 01325 } 01326 01327 01328 int KOpenSSLProxy::PKCS7_verify(PKCS7* p, STACK_OF(X509)* st, X509_STORE* s, BIO* in, BIO *out, int flags) { 01329 if (K_PKCS7_verify) return (K_PKCS7_verify)(p,st,s,in,out,flags); 01330 else return 0; 01331 } 01332 01333 01334 STACK_OF(X509) *KOpenSSLProxy::PKCS7_get0_signers(PKCS7 *p7, STACK_OF(X509) *certs, int flags) { 01335 if (K_PKCS7_get0_signers) return (K_PKCS7_get0_signers)(p7,certs,flags); 01336 else return 0L; 01337 } 01338 01339 01340 PKCS7 *KOpenSSLProxy::PKCS7_encrypt(STACK_OF(X509) *certs, BIO *in, EVP_CIPHER *cipher, 01341 int flags) { 01342 if (K_PKCS7_encrypt) return (K_PKCS7_encrypt)(certs,in,cipher,flags); 01343 else return 0L; 01344 } 01345 01346 01347 int KOpenSSLProxy::PKCS7_decrypt(PKCS7 *p7, EVP_PKEY *pkey, X509 *cert, BIO *data, int flags) { 01348 if (K_PKCS7_decrypt) return (K_PKCS7_decrypt)(p7,pkey,cert,data,flags); 01349 else return 0; 01350 } 01351 01352 01353 STACK_OF(X509_NAME) *KOpenSSLProxy::SSL_load_client_CA_file(const char *file) { 01354 if (K_SSL_load_client_CA_file) return (K_SSL_load_client_CA_file)(file); 01355 else return 0L; 01356 } 01357 01358 01359 STACK_OF(X509_INFO) *KOpenSSLProxy::PEM_X509_INFO_read(FILE *fp, STACK_OF(X509_INFO) *sk, pem_password_cb *cb, void *u) { 01360 if (K_PEM_X509_INFO_read) return (K_PEM_X509_INFO_read)(fp,sk,cb,u); 01361 else return 0L; 01362 } 01363 01364 01365 X509 *KOpenSSLProxy::X509_d2i_fp(FILE *out, X509** buf) { 01366 if (K_ASN1_d2i_fp) return reinterpret_cast<X509 *>((K_ASN1_d2i_fp)(reinterpret_cast<char *(*)()>(K_X509_new), reinterpret_cast<char *(*)()>(K_d2i_X509), out, reinterpret_cast<unsigned char **>(buf))); 01367 else return 0L; 01368 } 01369 01370 01371 int KOpenSSLProxy::SSL_peek(SSL *ssl,void *buf,int num) { 01372 if (K_SSL_peek) return (K_SSL_peek)(ssl,buf,num); 01373 else return -1; 01374 } 01375 01376 01377 const char *KOpenSSLProxy::RAND_file_name(char *buf, size_t num) { 01378 if (K_RAND_file_name) return (K_RAND_file_name)(buf, num); 01379 else return 0L; 01380 } 01381 01382 01383 int KOpenSSLProxy::RAND_load_file(const char *filename, long max_bytes) { 01384 if (K_RAND_load_file) return (K_RAND_load_file)(filename, max_bytes); 01385 else return -1; 01386 } 01387 01388 01389 int KOpenSSLProxy::RAND_write_file(const char *filename) { 01390 if (K_RAND_write_file) return (K_RAND_write_file)(filename); 01391 else return -1; 01392 } 01393 01394 01395 int KOpenSSLProxy::X509_PURPOSE_get_count() { 01396 if (K_X509_PURPOSE_get_count) return (K_X509_PURPOSE_get_count)(); 01397 else return -1; 01398 } 01399 01400 01401 int KOpenSSLProxy::X509_PURPOSE_get_id(X509_PURPOSE *p) { 01402 if (K_X509_PURPOSE_get_id) return (K_X509_PURPOSE_get_id)(p); 01403 else return -1; 01404 } 01405 01406 01407 int KOpenSSLProxy::X509_check_purpose(X509 *x, int id, int ca) { 01408 if (K_X509_check_purpose) return (K_X509_check_purpose)(x, id, ca); 01409 else return -1; 01410 } 01411 01412 01413 X509_PURPOSE *KOpenSSLProxy::X509_PURPOSE_get0(int idx) { 01414 if (K_X509_PURPOSE_get0) return (K_X509_PURPOSE_get0)(idx); 01415 else return 0L; 01416 } 01417 01418 01419 int KOpenSSLProxy::EVP_PKEY_assign(EVP_PKEY *pkey, int type, char *key) { 01420 if (K_EVP_PKEY_assign) return (K_EVP_PKEY_assign)(pkey, type, key); 01421 else return -1; 01422 } 01423 01424 01425 int KOpenSSLProxy::X509_REQ_set_pubkey(X509_REQ *x, EVP_PKEY *pkey) { 01426 if (K_X509_REQ_set_pubkey) return (K_X509_REQ_set_pubkey)(x, pkey); 01427 else return -1; 01428 } 01429 01430 01431 RSA* KOpenSSLProxy::RSA_generate_key(int bits, unsigned long e, void 01432 (*callback)(int,int,void *), void *cb_arg) { 01433 if (K_RSA_generate_key) return (K_RSA_generate_key)(bits, e, callback, cb_arg); 01434 else return 0L; 01435 } 01436 01437 STACK *KOpenSSLProxy::X509_get1_email(X509 *x) { 01438 if (K_X509_get1_email) return (K_X509_get1_email)(x); 01439 else return 0L; 01440 } 01441 01442 void KOpenSSLProxy::X509_email_free(STACK *sk) { 01443 if (K_X509_email_free) (K_X509_email_free)(sk); 01444 } 01445 01446 EVP_CIPHER *KOpenSSLProxy::EVP_des_ede3_cbc() { 01447 if (K_EVP_des_ede3_cbc) return (K_EVP_des_ede3_cbc)(); 01448 else return 0L; 01449 } 01450 01451 EVP_CIPHER *KOpenSSLProxy::EVP_des_cbc() { 01452 if (K_EVP_des_cbc) return (K_EVP_des_cbc)(); 01453 else return 0L; 01454 } 01455 01456 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_cbc() { 01457 if (K_EVP_rc2_cbc) return (K_EVP_rc2_cbc)(); 01458 else return 0L; 01459 } 01460 01461 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_64_cbc() { 01462 if (K_EVP_rc2_64_cbc) return (K_EVP_rc2_64_cbc)(); 01463 else return 0L; 01464 } 01465 01466 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_40_cbc() { 01467 if (K_EVP_rc2_40_cbc) return (K_EVP_rc2_40_cbc)(); 01468 else return 0L; 01469 } 01470 01471 int KOpenSSLProxy::i2d_X509_REQ_fp(FILE *fp, X509_REQ *x) { 01472 if (K_i2d_X509_REQ_fp) return (K_i2d_X509_REQ_fp)(fp,x); 01473 else return -1; 01474 } 01475 01476 01477 void KOpenSSLProxy::ERR_clear_error() { 01478 if (K_ERR_clear_error) (K_ERR_clear_error)(); 01479 } 01480 01481 01482 unsigned long KOpenSSLProxy::ERR_get_error() { 01483 if (K_ERR_get_error) return (K_ERR_get_error)(); 01484 else return 0xffffffff; 01485 } 01486 01487 01488 void KOpenSSLProxy::ERR_print_errors_fp(FILE* fp) { 01489 if (K_ERR_print_errors_fp) (K_ERR_print_errors_fp)(fp); 01490 } 01491 01492 01493 SSL_SESSION *KOpenSSLProxy::SSL_get1_session(SSL *ssl) { 01494 if (K_SSL_get1_session) return (K_SSL_get1_session)(ssl); 01495 else return 0L; 01496 } 01497 01498 01499 void KOpenSSLProxy::SSL_SESSION_free(SSL_SESSION *session) { 01500 if (K_SSL_SESSION_free) (K_SSL_SESSION_free)(session); 01501 } 01502 01503 01504 int KOpenSSLProxy::SSL_set_session(SSL *ssl, SSL_SESSION *session) { 01505 if (K_SSL_set_session) return (K_SSL_set_session)(ssl, session); 01506 else return -1; 01507 } 01508 01509 01510 SSL_SESSION *KOpenSSLProxy::d2i_SSL_SESSION(SSL_SESSION **a, unsigned char **pp, long length) { 01511 if (K_d2i_SSL_SESSION) return (K_d2i_SSL_SESSION)(a, pp, length); 01512 else return 0L; 01513 } 01514 01515 01516 int KOpenSSLProxy::i2d_SSL_SESSION(SSL_SESSION *in, unsigned char **pp) { 01517 if (K_i2d_SSL_SESSION) return (K_i2d_SSL_SESSION)(in, pp); 01518 else return -1; 01519 } 01520 01521 01522 int KOpenSSLProxy::i2d_PrivateKey_fp(FILE *fp, EVP_PKEY *p) { 01523 if (K_i2d_PrivateKey_fp) return (K_i2d_PrivateKey_fp)(fp, p); 01524 else return -1; 01525 } 01526 01527 01528 int KOpenSSLProxy::i2d_PKCS8PrivateKey_fp(FILE *fp, EVP_PKEY *p, const EVP_CIPHER *c, char *k, int klen, pem_password_cb *cb, void *u) { 01529 if (K_i2d_PKCS8PrivateKey_fp) return (K_i2d_PKCS8PrivateKey_fp)(fp, p, c, k, klen, cb, u); 01530 else return -1; 01531 } 01532 01533 01534 void KOpenSSLProxy::RSA_free(RSA *rsa) { 01535 if (K_RSA_free) (K_RSA_free)(rsa); 01536 } 01537 01538 01539 EVP_CIPHER *KOpenSSLProxy::EVP_bf_cbc() { 01540 if (K_EVP_bf_cbc) return (K_EVP_bf_cbc)(); 01541 return 0L; 01542 } 01543 01544 01545 int KOpenSSLProxy::X509_REQ_sign(X509_REQ *x, EVP_PKEY *pkey, const EVP_MD *md) { 01546 if (K_X509_REQ_sign) return (K_X509_REQ_sign)(x, pkey, md); 01547 return -1; 01548 } 01549 01550 01551 int KOpenSSLProxy::X509_NAME_add_entry_by_txt(X509_NAME *name, char *field, 01552 int type, unsigned char *bytes, int len, int loc, int set) { 01553 if (K_X509_NAME_add_entry_by_txt) return (K_X509_NAME_add_entry_by_txt)(name, field, type, bytes, len, loc, set); 01554 return -1; 01555 } 01556 01557 01558 X509_NAME *KOpenSSLProxy::X509_NAME_new() { 01559 if (K_X509_NAME_new) return (K_X509_NAME_new)(); 01560 return 0L; 01561 } 01562 01563 01564 int KOpenSSLProxy::X509_REQ_set_subject_name(X509_REQ *req,X509_NAME *name) { 01565 if (K_X509_REQ_set_subject_name) return (K_X509_REQ_set_subject_name)(req, name); 01566 return -1; 01567 } 01568 01569 01570 unsigned char *KOpenSSLProxy::ASN1_STRING_data(ASN1_STRING *x) { 01571 if (K_ASN1_STRING_data) return (K_ASN1_STRING_data)(x); 01572 return 0L; 01573 } 01574 01575 STACK_OF(SSL_CIPHER) *KOpenSSLProxy::SSL_get_ciphers(const SSL* ssl) { 01576 if (K_SSL_get_ciphers) return (K_SSL_get_ciphers)(ssl); 01577 return 0L; 01578 } 01579 01580 #endif 01581
KDE 4.7 API Reference