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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
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
00254 int bestmaj = -1;
00255 int bestmin = -1;
00256 QString best = 0L;
00257
00258 uint s = filter.length()-1;
00259 for (QStringList::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 << "/usr/local/bin"
00319 << "/usr/local/openssl/bin"
00320 << "/opt/openssl/bin"
00321 << "/opt/kde3/bin"
00322 << "";
00323
00324 libnamess << "cygssl-0.9.7.dll"
00325 << "cygssl.dll"
00326 << "libssl.dll"
00327 << "";
00328
00329 libnamesc << "cygcrypto.dll"
00330 << "libcrypto.dll"
00331 << "";
00332 #else
00333 libpaths
00334 #ifdef _AIX
00335 << "/opt/freeware/lib/"
00336 #endif
00337 << "/usr/lib" KDELIBSUFF "/"
00338 << "/usr/ssl/lib" KDELIBSUFF "/"
00339 << "/usr/local/lib" KDELIBSUFF "/"
00340 << "/usr/local/openssl/lib" KDELIBSUFF "/"
00341 << "/usr/local/ssl/lib" KDELIBSUFF "/"
00342 << "/opt/openssl/lib" KDELIBSUFF "/"
00343 << "/lib" KDELIBSUFF "/"
00344 << "";
00345
00346
00347 libnamess
00348 #ifdef hpux
00349 << "libssl.sl"
00350 #elif defined(_AIX)
00351 << "libssl.a(libssl.so.0)"
00352 #elif defined(__APPLE__)
00353 << "libssl.dylib"
00354 << "libssl.0.9.dylib"
00355 #else
00356 #ifdef SHLIB_VERSION_NUMBER
00357 << "libssl.so." SHLIB_VERSION_NUMBER
00358 #endif
00359 << "libssl.so.0.9.8g"
00360 << "libssl.so.7"
00361 << "libssl.so.0.9.8b"
00362 << "libssl.so.6"
00363 << "libssl.so"
00364 << "libssl.so.0"
00365 #endif
00366 ;
00367
00368 libnamesc
00369 #ifdef hpux
00370 << "libcrypto.sl"
00371 #elif defined(_AIX)
00372 << "libcrypto.a(libcrypto.so.0)"
00373 #elif defined(__APPLE__)
00374 << "libcrypto.dylib"
00375 << "libcrypto.0.9.dylib"
00376 #else
00377 #ifdef SHLIB_VERSION_NUMBER
00378 << "libcrypto.so." SHLIB_VERSION_NUMBER
00379 #endif
00380 << "libcrypto.so.0.9.8g"
00381 << "libcrypto.so.7"
00382 << "libcrypto.so.0.9.8b"
00383 << "libcrypto.so.6"
00384 << "libcrypto.so"
00385 << "libcrypto.so.0"
00386 #endif
00387 ;
00388 #endif
00389
00390 for (QStringList::Iterator it = libpaths.begin();
00391 it != libpaths.end();
00392 ++it) {
00393 for (QStringList::Iterator shit = libnamesc.begin();
00394 shit != libnamesc.end();
00395 ++shit) {
00396 QString alib = *it;
00397 if (!alib.isEmpty() && !alib.endsWith('/'))
00398 alib += '/';
00399 alib += *shit;
00400
00401 QString tmpStr(alib.toLatin1().constData());
00402 tmpStr.remove(QRegExp("\\(.*\\)"));
00403 if (!access(tmpStr.toLatin1(), R_OK)) {
00404 d->cryptoLib = new KLibrary(alib);
00405 d->cryptoLib->setLoadHints(QLibrary::ExportExternalSymbolsHint);
00406 }
00407 if (d->cryptoLib && d->cryptoLib->load()) {
00408 break;
00409 }
00410 else {
00411 delete d->cryptoLib;
00412 d->cryptoLib = 0;
00413 }
00414 }
00415 if (d->cryptoLib) break;
00416 }
00417
00418 if (d->cryptoLib) {
00419 #ifdef KSSL_HAVE_SSL
00420 K_X509_free = (void (*) (X509 *)) d->cryptoLib->resolveFunction("X509_free");
00421 K_RAND_egd = (int (*)(const char *)) d->cryptoLib->resolveFunction("RAND_egd");
00422 K_RAND_load_file = (int (*)(const char *, long)) d->cryptoLib->resolveFunction("RAND_load_file");
00423 K_RAND_file_name = (const char* (*)(char *, size_t)) d->cryptoLib->resolveFunction("RAND_file_name");
00424 K_RAND_write_file = (int (*)(const char *)) d->cryptoLib->resolveFunction("RAND_write_file");
00425 K_CRYPTO_free = (void (*) (void *)) d->cryptoLib->resolveFunction("CRYPTO_free");
00426 K_d2i_X509 = (X509 * (*)(X509 **,unsigned char **,long)) d->cryptoLib->resolveFunction("d2i_X509");
00427 K_i2d_X509 = (int (*)(X509 *,unsigned char **)) d->cryptoLib->resolveFunction("i2d_X509");
00428 K_X509_cmp = (int (*)(X509 *, X509 *)) d->cryptoLib->resolveFunction("X509_cmp");
00429 K_X509_STORE_CTX_new = (X509_STORE_CTX * (*) (void)) d->cryptoLib->resolveFunction("X509_STORE_CTX_new");
00430 K_X509_STORE_CTX_free = (void (*) (X509_STORE_CTX *)) d->cryptoLib->resolveFunction("X509_STORE_CTX_free");
00431 K_X509_verify_cert = (int (*) (X509_STORE_CTX *)) d->cryptoLib->resolveFunction("X509_verify_cert");
00432 K_X509_STORE_new = (X509_STORE * (*) (void)) d->cryptoLib->resolveFunction("X509_STORE_new");
00433 K_X509_STORE_free = (void (*) (X509_STORE *)) d->cryptoLib->resolveFunction("X509_STORE_free");
00434 K_X509_NAME_oneline = (char * (*) (X509_NAME *,char *,int)) d->cryptoLib->resolveFunction("X509_NAME_oneline");
00435 K_X509_get_subject_name = (X509_NAME * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_subject_name");
00436 K_X509_get_issuer_name = (X509_NAME * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_issuer_name");
00437 K_X509_STORE_add_lookup = (X509_LOOKUP *(*) (X509_STORE *, X509_LOOKUP_METHOD *)) d->cryptoLib->resolveFunction("X509_STORE_add_lookup");
00438 K_X509_LOOKUP_file = (X509_LOOKUP_METHOD *(*)(void)) d->cryptoLib->resolveFunction("X509_LOOKUP_file");
00439 K_X509_LOOKUP_free = (void (*)(X509_LOOKUP *)) d->cryptoLib->resolveFunction("X509_LOOKUP_free");
00440 K_X509_LOOKUP_ctrl = (int (*)(X509_LOOKUP *, int, const char *, long, char **)) d->cryptoLib->resolveFunction("X509_LOOKUP_ctrl");
00441 K_X509_STORE_CTX_init = (void (*)(X509_STORE_CTX *, X509_STORE *, X509 *, STACK_OF(X509) *)) d->cryptoLib->resolveFunction("X509_STORE_CTX_init");
00442 K_X509_dup = (X509* (*)(X509*)) d->cryptoLib->resolveFunction("X509_dup");
00443 K_BIO_s_mem = (BIO_METHOD *(*) (void)) d->cryptoLib->resolveFunction("BIO_s_mem");
00444 K_BIO_new = (BIO* (*)(BIO_METHOD *)) d->cryptoLib->resolveFunction("BIO_new");
00445 K_BIO_new_fp = (BIO* (*)(FILE*, int)) d->cryptoLib->resolveFunction("BIO_new_fp");
00446 K_BIO_new_mem_buf = (BIO* (*)(void *, int)) d->cryptoLib->resolveFunction("BIO_new_mem_buf");
00447 K_BIO_free = (int (*)(BIO*)) d->cryptoLib->resolveFunction("BIO_free");
00448 K_BIO_ctrl = (long (*) (BIO *,int,long,void *)) d->cryptoLib->resolveFunction("BIO_ctrl");
00449 K_BIO_write = (int (*) (BIO *b, const void *data, int len)) d->cryptoLib->resolveFunction("BIO_write");
00450 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");
00451 K_ASN1_item_i2d_fp = (int (*)(ASN1_ITEM *, FILE*, unsigned char *))
00452 d->cryptoLib->resolveFunction("ASN1_item_i2d_fp");
00453 K_NETSCAPE_X509_it = (ASN1_ITEM *) d->cryptoLib->resolveFunction("NETSCAPE_X509_it");
00454 K_X509_print_fp = (int (*)(FILE*, X509*)) d->cryptoLib->resolveFunction("X509_print_fp");
00455 K_i2d_PKCS12 = (int (*)(PKCS12*, unsigned char**)) d->cryptoLib->resolveFunction("i2d_PKCS12");
00456 K_i2d_PKCS12_fp = (int (*)(FILE *, PKCS12*)) d->cryptoLib->resolveFunction("i2d_PKCS12_fp");
00457 K_PKCS12_newpass = (int (*)(PKCS12*, char*, char*)) d->cryptoLib->resolveFunction("PKCS12_newpass");
00458 K_d2i_PKCS12_fp = (PKCS12* (*)(FILE*, PKCS12**)) d->cryptoLib->resolveFunction("d2i_PKCS12_fp");
00459 K_PKCS12_new = (PKCS12* (*)()) d->cryptoLib->resolveFunction("PKCS12_new");
00460 K_PKCS12_free = (void (*)(PKCS12 *)) d->cryptoLib->resolveFunction("PKCS12_free");
00461 K_PKCS12_parse = (int (*)(PKCS12*, const char *, EVP_PKEY**,
00462 X509**, STACK_OF(X509)**)) d->cryptoLib->resolveFunction("PKCS12_parse");
00463 K_EVP_PKEY_free = (void (*) (EVP_PKEY *)) d->cryptoLib->resolveFunction("EVP_PKEY_free");
00464 K_EVP_PKEY_new = (EVP_PKEY* (*)()) d->cryptoLib->resolveFunction("EVP_PKEY_new");
00465 K_X509_REQ_free = (void (*)(X509_REQ*)) d->cryptoLib->resolveFunction("X509_REQ_free");
00466 K_X509_REQ_new = (X509_REQ* (*)()) d->cryptoLib->resolveFunction("X509_REQ_new");
00467 K_X509_STORE_CTX_set_chain = (void (*)(X509_STORE_CTX *, STACK_OF(X509)*)) d->cryptoLib->resolveFunction("X509_STORE_CTX_set_chain");
00468 K_X509_STORE_CTX_set_purpose = (void (*)(X509_STORE_CTX *, int)) d->cryptoLib->resolveFunction("X509_STORE_CTX_set_purpose");
00469 K_sk_free = (void (*) (STACK *)) d->cryptoLib->resolveFunction("sk_free");
00470 K_sk_num = (int (*) (STACK *)) d->cryptoLib->resolveFunction("sk_num");
00471 K_sk_pop = (char* (*) (STACK *)) d->cryptoLib->resolveFunction("sk_pop");
00472 K_sk_value = (char* (*) (STACK *, int)) d->cryptoLib->resolveFunction("sk_value");
00473 K_sk_new = (STACK* (*) (int (*)())) d->cryptoLib->resolveFunction("sk_new");
00474 K_sk_push = (int (*) (STACK*, char*)) d->cryptoLib->resolveFunction("sk_push");
00475 K_sk_dup = (STACK* (*) (STACK *)) d->cryptoLib->resolveFunction("sk_dup");
00476 K_i2s_ASN1_INTEGER = (char *(*) (X509V3_EXT_METHOD *, ASN1_INTEGER *)) d->cryptoLib->resolveFunction("i2s_ASN1_INTEGER");
00477 K_X509_get_serialNumber = (ASN1_INTEGER * (*) (X509 *)) d->cryptoLib->resolveFunction("X509_get_serialNumber");
00478 K_X509_get_pubkey = (EVP_PKEY *(*)(X509 *)) d->cryptoLib->resolveFunction("X509_get_pubkey");
00479 K_i2d_PublicKey = (int (*)(EVP_PKEY *, unsigned char **)) d->cryptoLib->resolveFunction("i2d_PublicKey");
00480 K_X509_check_private_key = (int (*)(X509 *, EVP_PKEY *)) d->cryptoLib->resolveFunction("X509_check_private_key");
00481 K_BN_bn2hex = (char *(*)(const BIGNUM *)) d->cryptoLib->resolveFunction("BN_bn2hex");
00482 K_X509_digest = (int (*)(const X509 *,const EVP_MD *, unsigned char *, unsigned int *)) d->cryptoLib->resolveFunction("X509_digest");
00483 K_EVP_md5 = (EVP_MD *(*)()) d->cryptoLib->resolveFunction("EVP_md5");
00484 K_ASN1_INTEGER_free = (void (*)(ASN1_INTEGER *)) d->cryptoLib->resolveFunction("ASN1_INTEGER_free");
00485 K_OBJ_obj2nid = (int (*)(ASN1_OBJECT *)) d->cryptoLib->resolveFunction("OBJ_obj2nid");
00486 K_OBJ_nid2ln = (const char *(*)(int)) d->cryptoLib->resolveFunction("OBJ_nid2ln");
00487 K_X509_get_ext_count = (int (*)(X509*)) d->cryptoLib->resolveFunction("X509_get_ext_count");
00488 K_X509_get_ext_by_NID = (int (*)(X509*,int,int)) d->cryptoLib->resolveFunction("X509_get_ext_by_NID");
00489 K_X509_get_ext_by_OBJ = (int (*)(X509*,ASN1_OBJECT*,int)) d->cryptoLib->resolveFunction("X509_get_ext_by_OBJ");
00490 K_X509_get_ext = (X509_EXTENSION* (*)(X509*,int)) d->cryptoLib->resolveFunction("X509_get_ext");
00491 K_X509_delete_ext = (X509_EXTENSION* (*)(X509*,int)) d->cryptoLib->resolveFunction("X509_delete_ext");
00492 K_X509_add_ext = (int (*)(X509*,X509_EXTENSION*,int)) d->cryptoLib->resolveFunction("X509_add_ext");
00493 K_X509_get_ext_d2i = (void* (*)(X509*,int,int*,int*)) d->cryptoLib->resolveFunction("X509_get_ext_d2i");
00494 K_i2s_ASN1_OCTET_STRING = (char *(*)(X509V3_EXT_METHOD*,ASN1_OCTET_STRING*)) d->cryptoLib->resolveFunction("i2s_ASN1_OCTET_STRING");
00495 K_ASN1_BIT_STRING_get_bit = (int (*)(ASN1_BIT_STRING*,int)) d->cryptoLib->resolveFunction("ASN1_BIT_STRING_get_bit");
00496 K_PKCS7_new = (PKCS7 *(*)()) d->cryptoLib->resolveFunction("PKCS7_new");
00497 K_PKCS7_free = (void (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_free");
00498 K_PKCS7_content_free = (void (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_content_free");
00499 K_i2d_PKCS7 = (int (*)(PKCS7*, unsigned char**)) d->cryptoLib->resolveFunction("i2d_PKCS7");
00500 K_i2d_PKCS7_fp = (int (*)(FILE*,PKCS7*)) d->cryptoLib->resolveFunction("i2d_PKCS7_fp");
00501 K_i2d_PKCS7_bio = (int (*)(BIO *bp,PKCS7 *p7)) d->cryptoLib->resolveFunction("i2d_PKCS7_bio");
00502 K_d2i_PKCS7 = (PKCS7* (*)(PKCS7**,unsigned char**,long)) d->cryptoLib->resolveFunction("d2i_PKCS7");
00503 K_d2i_PKCS7_fp = (PKCS7 *(*)(FILE *,PKCS7**)) d->cryptoLib->resolveFunction("d2i_PKCS7_fp");
00504 K_d2i_PKCS7_bio = (PKCS7 *(*)(BIO *bp,PKCS7 **p7)) d->cryptoLib->resolveFunction("d2i_PKCS7_bio");
00505 K_PKCS7_dup = (PKCS7* (*)(PKCS7*)) d->cryptoLib->resolveFunction("PKCS7_dup");
00506 K_PKCS7_sign = (PKCS7 *(*)(X509*, EVP_PKEY*, STACK_OF(X509)*, BIO*, int)) d->cryptoLib->resolveFunction("PKCS7_sign");
00507 K_PKCS7_verify = (int (*)(PKCS7*,STACK_OF(X509)*,X509_STORE*,BIO*,BIO*,int)) d->cryptoLib->resolveFunction("PKCS7_verify");
00508 K_PKCS7_get0_signers = (STACK_OF(X509) *(*)(PKCS7 *, STACK_OF(X509) *, int)) d->cryptoLib->resolveFunction("PKCS7_get0_signers");
00509 K_PKCS7_encrypt = (PKCS7* (*)(STACK_OF(X509) *, BIO *, EVP_CIPHER *, int)) d->cryptoLib->resolveFunction("PKCS7_encrypt");
00510 K_PKCS7_decrypt = (int (*)(PKCS7 *, EVP_PKEY *, X509 *, BIO *, int)) d->cryptoLib->resolveFunction("PKCS7_decrypt");
00511 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");
00512 K_ASN1_d2i_fp = (char *(*)(char *(*)(),char *(*)(),FILE*,unsigned char**)) d->cryptoLib->resolveFunction("ASN1_d2i_fp");
00513 K_X509_new = (X509 *(*)()) d->cryptoLib->resolveFunction("X509_new");
00514 K_X509_PURPOSE_get_count = (int (*)()) d->cryptoLib->resolveFunction("X509_PURPOSE_get_count");
00515 K_X509_PURPOSE_get_id = (int (*)(X509_PURPOSE *)) d->cryptoLib->resolveFunction("X509_PURPOSE_get_id");
00516 K_X509_check_purpose = (int (*)(X509*,int,int)) d->cryptoLib->resolveFunction("X509_check_purpose");
00517 K_X509_PURPOSE_get0 = (X509_PURPOSE *(*)(int)) d->cryptoLib->resolveFunction("X509_PURPOSE_get0");
00518 K_EVP_PKEY_assign = (int (*)(EVP_PKEY*, int, char*)) d->cryptoLib->resolveFunction("EVP_PKEY_assign");
00519 K_X509_REQ_set_pubkey = (int (*)(X509_REQ*, EVP_PKEY*)) d->cryptoLib->resolveFunction("X509_REQ_set_pubkey");
00520 K_RSA_generate_key = (RSA* (*)(int, unsigned long, void (*)(int,int,void *), void *)) d->cryptoLib->resolveFunction("RSA_generate_key");
00521 K_i2d_X509_REQ_fp = (int (*)(FILE *, X509_REQ *)) d->cryptoLib->resolveFunction("i2d_X509_REQ_fp");
00522 K_ERR_clear_error = (void (*)()) d->cryptoLib->resolveFunction("ERR_clear_error");
00523 K_ERR_get_error = (unsigned long (*)()) d->cryptoLib->resolveFunction("ERR_get_error");
00524 K_ERR_print_errors_fp = (void (*)(FILE*)) d->cryptoLib->resolveFunction("ERR_print_errors_fp");
00525 K_X509_get1_email = (STACK *(*)(X509 *x)) d->cryptoLib->resolveFunction("X509_get1_email");
00526 K_X509_email_free = (void (*)(STACK *sk)) d->cryptoLib->resolveFunction("X509_email_free");
00527 K_EVP_des_ede3_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_des_ede3_cbc");
00528 K_EVP_des_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_des_cbc");
00529 K_EVP_rc2_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_cbc");
00530 K_EVP_rc2_64_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_64_cbc");
00531 K_EVP_rc2_40_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_rc2_40_cbc");
00532 K_i2d_PrivateKey_fp = (int (*)(FILE*,EVP_PKEY*)) d->cryptoLib->resolveFunction("i2d_PrivateKey_fp");
00533 K_i2d_PKCS8PrivateKey_fp = (int (*)(FILE*, EVP_PKEY*, const EVP_CIPHER*, char*, int, pem_password_cb*, void*)) d->cryptoLib->resolveFunction("i2d_PKCS8PrivateKey_fp");
00534 K_RSA_free = (void (*)(RSA*)) d->cryptoLib->resolveFunction("RSA_free");
00535 K_EVP_bf_cbc = (EVP_CIPHER *(*)()) d->cryptoLib->resolveFunction("EVP_bf_cbc");
00536 K_X509_REQ_sign = (int (*)(X509_REQ*, EVP_PKEY*, const EVP_MD*)) d->cryptoLib->resolveFunction("X509_REQ_sign");
00537 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");
00538 K_X509_NAME_new = (X509_NAME *(*)()) d->cryptoLib->resolveFunction("X509_NAME_new");
00539 K_X509_REQ_set_subject_name = (int (*)(X509_REQ*,X509_NAME*)) d->cryptoLib->resolveFunction("X509_REQ_set_subject_name");
00540 K_ASN1_STRING_data = (unsigned char *(*)(ASN1_STRING*)) d->cryptoLib->resolveFunction("ASN1_STRING_data");
00541 #endif
00542 }
00543
00544 #ifdef Q_OS_WIN
00545 d->sslLib = new KLibrary("ssleay32.dll");
00546 if (!d->sslLib->load()) {
00547 delete d->sslLib;
00548 d->sslLib = 0;
00549 }
00550 #elif defined(__OpenBSD__)
00551 {
00552 QString libname = findMostRecentLib("/usr/lib", "ssl");
00553 if (!libname.isNull()) {
00554 d->sslLib = new KLibrary(libname);
00555 d->sslLib->setLoadHints(QLibrary::ExportExternalSymbolsHint);
00556 if (!d->sslLib->load()) {
00557 delete d->sslLib;
00558 d->sslLib = 0;
00559 }
00560 }
00561 }
00562 #else
00563 for (QStringList::Iterator it = libpaths.begin();
00564 it != libpaths.end();
00565 ++it) {
00566 for (QStringList::Iterator shit = libnamess.begin();
00567 shit != libnamess.end();
00568 ++shit) {
00569 QString alib = *it;
00570 if (!alib.isEmpty() && !alib.endsWith('/'))
00571 alib += '/';
00572 alib += *shit;
00573 QString tmpStr(alib.toLatin1());
00574 tmpStr.remove(QRegExp("\\(.*\\)"));
00575 if (!access(tmpStr.toLatin1(), R_OK)) {
00576 d->sslLib = new KLibrary(alib);
00577 d->sslLib->setLoadHints(QLibrary::ExportExternalSymbolsHint);
00578 }
00579 if (d->sslLib && d->sslLib->load()) {
00580 break;
00581 }
00582 else {
00583 delete d->sslLib;
00584 d->sslLib = 0;
00585 }
00586 }
00587 if (d->sslLib) break;
00588 }
00589 #endif
00590
00591 if (d->sslLib) {
00592 #ifdef KSSL_HAVE_SSL
00593
00594 K_SSL_connect = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_connect");
00595 K_SSL_accept = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_accept");
00596 K_SSL_read = (int (*)(SSL *, void *, int)) d->sslLib->resolveFunction("SSL_read");
00597 K_SSL_write = (int (*)(SSL *, const void *, int))
00598 d->sslLib->resolveFunction("SSL_write");
00599 K_SSL_new = (SSL* (*)(SSL_CTX *)) d->sslLib->resolveFunction("SSL_new");
00600 K_SSL_free = (void (*)(SSL *)) d->sslLib->resolveFunction("SSL_free");
00601 K_SSL_shutdown = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_shutdown");
00602 K_SSL_CTX_new = (SSL_CTX* (*)(SSL_METHOD*)) d->sslLib->resolveFunction("SSL_CTX_new");
00603 K_SSL_CTX_free = (void (*)(SSL_CTX*)) d->sslLib->resolveFunction("SSL_CTX_free");
00604 K_SSL_set_fd = (int (*)(SSL *, int)) d->sslLib->resolveFunction("SSL_set_fd");
00605 K_SSL_pending = (int (*)(SSL *)) d->sslLib->resolveFunction("SSL_pending");
00606 K_SSL_CTX_set_cipher_list = (int (*)(SSL_CTX *, const char *))
00607 d->sslLib->resolveFunction("SSL_CTX_set_cipher_list");
00608 K_SSL_CTX_set_verify = (void (*)(SSL_CTX*, int, int (*)(int, X509_STORE_CTX*))) d->sslLib->resolveFunction("SSL_CTX_set_verify");
00609 K_SSL_use_certificate = (int (*)(SSL*, X509*))
00610 d->sslLib->resolveFunction("SSL_CTX_use_certificate");
00611 K_SSL_get_current_cipher = (SSL_CIPHER *(*)(SSL *))
00612 d->sslLib->resolveFunction("SSL_get_current_cipher");
00613 K_SSL_ctrl = (long (*)(SSL * ,int, long, char *))
00614 d->sslLib->resolveFunction("SSL_ctrl");
00615 K_TLSv1_client_method = (SSL_METHOD *(*)()) d->sslLib->resolveFunction("TLSv1_client_method");
00616 K_SSLv23_client_method = (SSL_METHOD *(*)()) d->sslLib->resolveFunction("SSLv23_client_method");
00617 K_SSL_get_peer_certificate = (X509 *(*)(SSL *)) d->sslLib->resolveFunction("SSL_get_peer_certificate");
00618 K_SSL_CIPHER_get_bits = (int (*)(SSL_CIPHER *,int *)) d->sslLib->resolveFunction("SSL_CIPHER_get_bits");
00619 K_SSL_CIPHER_get_version = (char * (*)(SSL_CIPHER *)) d->sslLib->resolveFunction("SSL_CIPHER_get_version");
00620 K_SSL_CIPHER_get_name = (const char * (*)(SSL_CIPHER *)) d->sslLib->resolveFunction("SSL_CIPHER_get_name");
00621 K_SSL_CIPHER_description = (char * (*)(SSL_CIPHER *, char *, int)) d->sslLib->resolveFunction("SSL_CIPHER_description");
00622 K_SSL_CTX_use_PrivateKey = (int (*)(SSL_CTX*, EVP_PKEY*)) d->sslLib->resolveFunction("SSL_CTX_use_PrivateKey");
00623 K_SSL_CTX_use_certificate = (int (*)(SSL_CTX*, X509*)) d->sslLib->resolveFunction("SSL_CTX_use_certificate");
00624 K_SSL_get_error = (int (*)(SSL*, int)) d->sslLib->resolveFunction("SSL_get_error");
00625 K_SSL_get_peer_cert_chain = (STACK_OF(X509)* (*)(SSL*)) d->sslLib->resolveFunction("SSL_get_peer_cert_chain");
00626 K_SSL_load_client_CA_file = (STACK_OF(X509_NAME)* (*)(const char *)) d->sslLib->resolveFunction("SSL_load_client_CA_file");
00627 K_SSL_peek = (int (*)(SSL*,void*,int)) d->sslLib->resolveFunction("SSL_peek");
00628 K_SSL_get1_session = (SSL_SESSION* (*)(SSL*)) d->sslLib->resolveFunction("SSL_get1_session");
00629 K_SSL_SESSION_free = (void (*)(SSL_SESSION*)) d->sslLib->resolveFunction("SSL_SESSION_free");
00630 K_SSL_set_session = (int (*)(SSL*,SSL_SESSION*)) d->sslLib->resolveFunction("SSL_set_session");
00631 K_d2i_SSL_SESSION = (SSL_SESSION* (*)(SSL_SESSION**,unsigned char**, long)) d->sslLib->resolveFunction("d2i_SSL_SESSION");
00632 K_i2d_SSL_SESSION = (int (*)(SSL_SESSION*,unsigned char**)) d->sslLib->resolveFunction("i2d_SSL_SESSION");
00633 K_SSL_get_ciphers = (STACK *(*)(const SSL*)) d->sslLib->resolveFunction("SSL_get_ciphers");
00634 #endif
00635
00636
00637
00638 KLibrary::void_function_ptr x;
00639 x = d->sslLib->resolveFunction("SSL_library_init");
00640 if (d->cryptoLib) {
00641 if (x) ((int (*)())x)();
00642 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms");
00643 if (!x)
00644 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms");
00645 if (x) {
00646 ((void (*)())x)();
00647 } else {
00648 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms_conf");
00649 if (!x)
00650 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms_conf");
00651 if (x) {
00652 ((void (*)())x)();
00653 } else {
00654 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_algorithms_noconf");
00655 if (!x)
00656 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_algorithms_noconf");
00657 if (x)
00658 ((void (*)())x)();
00659 }
00660 }
00661 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_ciphers");
00662 if (!x)
00663 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_ciphers");
00664 if (x) ((void (*)())x)();
00665 x = d->cryptoLib->resolveFunction("OpenSSL_add_all_digests");
00666 if (!x)
00667 x = d->cryptoLib->resolveFunction("OPENSSL_add_all_digests");
00668 if (x) ((void (*)())x)();
00669 }
00670 }
00671
00672 }
00673
00674 KOpenSSLProxy::~KOpenSSLProxy() {
00675 if (d->sslLib) {
00676 d->sslLib->unload();
00677 }
00678 if (d->cryptoLib) {
00679 d->cryptoLib->unload();
00680 }
00681
00682 KOpenSSLProxyPrivate::sSelf = 0;
00683 delete d;
00684 }
00685
00686
00687
00688
00689 KOpenSSLProxy *KOpenSSLProxy::self() {
00690 #ifdef KSSL_HAVE_SSL
00691 if(!KOpenSSLProxyPrivate::sSelf) {
00692 KOpenSSLProxyPrivate::sSelf = new KOpenSSLProxy();
00693 qAddPostRoutine(KOpenSSLProxyPrivate::cleanupKOpenSSLProxy);
00694 }
00695 #endif
00696 return KOpenSSLProxyPrivate::sSelf;
00697 }
00698
00699
00700
00701
00702
00703
00704
00705 #ifdef KSSL_HAVE_SSL
00706
00707
00708
00709 int KOpenSSLProxy::SSL_connect(SSL *ssl) {
00710 if (K_SSL_connect) return (K_SSL_connect)(ssl);
00711 return -1;
00712 }
00713
00714
00715 int KOpenSSLProxy::SSL_accept(SSL *ssl) {
00716 if (K_SSL_accept) return (K_SSL_accept)(ssl);
00717 return -1;
00718 }
00719
00720
00721 int KOpenSSLProxy::SSL_read(SSL *ssl, void *buf, int num) {
00722 if (K_SSL_read) return (K_SSL_read)(ssl, buf, num);
00723 return -1;
00724 }
00725
00726
00727 int KOpenSSLProxy::SSL_write(SSL *ssl, const void *buf, int num) {
00728 if (K_SSL_write) return (K_SSL_write)(ssl, buf, num);
00729 return -1;
00730 }
00731
00732
00733 SSL *KOpenSSLProxy::SSL_new(SSL_CTX *ctx) {
00734 if (K_SSL_new) return (K_SSL_new)(ctx);
00735 return 0L;
00736 }
00737
00738
00739 void KOpenSSLProxy::SSL_free(SSL *ssl) {
00740 if (K_SSL_free) (K_SSL_free)(ssl);
00741 }
00742
00743
00744 int KOpenSSLProxy::SSL_shutdown(SSL *ssl) {
00745 if (K_SSL_shutdown) return (K_SSL_shutdown)(ssl);
00746 return -1;
00747 }
00748
00749
00750 SSL_CTX *KOpenSSLProxy::SSL_CTX_new(SSL_METHOD *method) {
00751 if (K_SSL_CTX_new) return (K_SSL_CTX_new)(method);
00752 return 0L;
00753 }
00754
00755
00756 void KOpenSSLProxy::SSL_CTX_free(SSL_CTX *ctx) {
00757 if (K_SSL_CTX_free) (K_SSL_CTX_free)(ctx);
00758 }
00759
00760
00761 int KOpenSSLProxy::SSL_set_fd(SSL *ssl, int fd) {
00762 if (K_SSL_set_fd) return (K_SSL_set_fd)(ssl, fd);
00763 return -1;
00764 }
00765
00766
00767 int KOpenSSLProxy::SSL_pending(SSL *ssl) {
00768 if (K_SSL_pending) return (K_SSL_pending)(ssl);
00769 return -1;
00770 }
00771
00772
00773 int KOpenSSLProxy::SSL_CTX_set_cipher_list(SSL_CTX *ctx, const char *str) {
00774 if (K_SSL_CTX_set_cipher_list) return (K_SSL_CTX_set_cipher_list)(ctx, str);
00775 return -1;
00776 }
00777
00778
00779 void KOpenSSLProxy::SSL_CTX_set_verify(SSL_CTX *ctx, int mode,
00780 int (*verify_callback)(int, X509_STORE_CTX *)) {
00781 if (K_SSL_CTX_set_verify) (K_SSL_CTX_set_verify)(ctx, mode, verify_callback);
00782 }
00783
00784
00785 int KOpenSSLProxy::SSL_use_certificate(SSL *ssl, X509 *x) {
00786 if (K_SSL_use_certificate) return (K_SSL_use_certificate)(ssl, x);
00787 return -1;
00788 }
00789
00790
00791 SSL_CIPHER *KOpenSSLProxy::SSL_get_current_cipher(SSL *ssl) {
00792 if (K_SSL_get_current_cipher) return (K_SSL_get_current_cipher)(ssl);
00793 return 0L;
00794 }
00795
00796
00797 long KOpenSSLProxy::SSL_ctrl(SSL *ssl,int cmd, long larg, char *parg) {
00798 if (K_SSL_ctrl) return (K_SSL_ctrl)(ssl, cmd, larg, parg);
00799 return -1;
00800 }
00801
00802
00803 int KOpenSSLProxy::RAND_egd(const char *path) {
00804 if (K_RAND_egd) return (K_RAND_egd)(path);
00805 return -1;
00806 }
00807
00808
00809 SSL_METHOD *KOpenSSLProxy::TLSv1_client_method() {
00810 if (K_TLSv1_client_method) return (K_TLSv1_client_method)();
00811 return 0L;
00812 }
00813
00814
00815 SSL_METHOD *KOpenSSLProxy::SSLv23_client_method() {
00816 if (K_SSLv23_client_method) return (K_SSLv23_client_method)();
00817 return 0L;
00818 }
00819
00820
00821 X509 *KOpenSSLProxy::SSL_get_peer_certificate(SSL *s) {
00822 if (K_SSL_get_peer_certificate) return (K_SSL_get_peer_certificate)(s);
00823 return 0L;
00824 }
00825
00826
00827 int KOpenSSLProxy::SSL_CIPHER_get_bits(SSL_CIPHER *c,int *alg_bits) {
00828 if (K_SSL_CIPHER_get_bits) return (K_SSL_CIPHER_get_bits)(c, alg_bits);
00829 return -1;
00830 }
00831
00832
00833 char * KOpenSSLProxy::SSL_CIPHER_get_version(SSL_CIPHER *c) {
00834 if (K_SSL_CIPHER_get_version) return (K_SSL_CIPHER_get_version)(c);
00835 return 0L;
00836 }
00837
00838
00839 const char * KOpenSSLProxy::SSL_CIPHER_get_name(SSL_CIPHER *c) {
00840 if (K_SSL_CIPHER_get_name) return (K_SSL_CIPHER_get_name)(c);
00841 return 0L;
00842 }
00843
00844
00845 char * KOpenSSLProxy::SSL_CIPHER_description(SSL_CIPHER *c,char *buf,int size) {
00846 if (K_SSL_CIPHER_description) return (K_SSL_CIPHER_description)(c,buf,size);
00847 return 0L;
00848 }
00849
00850
00851 X509 * KOpenSSLProxy::d2i_X509(X509 **a,unsigned char **pp,long length) {
00852 if (K_d2i_X509) return (K_d2i_X509)(a,pp,length);
00853 return 0L;
00854 }
00855
00856
00857 int KOpenSSLProxy::i2d_X509(X509 *a,unsigned char **pp) {
00858 if (K_i2d_X509) return (K_i2d_X509)(a,pp);
00859 return -1;
00860 }
00861
00862
00863 int KOpenSSLProxy::X509_cmp(X509 *a, X509 *b) {
00864 if (K_X509_cmp) return (K_X509_cmp)(a,b);
00865 return 0;
00866 }
00867
00868
00869 X509_STORE *KOpenSSLProxy::X509_STORE_new(void) {
00870 if (K_X509_STORE_new) return (K_X509_STORE_new)();
00871 return 0L;
00872 }
00873
00874
00875 void KOpenSSLProxy::X509_STORE_free(X509_STORE *v) {
00876 if (K_X509_STORE_free) (K_X509_STORE_free)(v);
00877 }
00878
00879
00880 X509_STORE_CTX *KOpenSSLProxy::X509_STORE_CTX_new(void) {
00881 if (K_X509_STORE_CTX_new) return (K_X509_STORE_CTX_new)();
00882 return 0L;
00883 }
00884
00885
00886 void KOpenSSLProxy::X509_STORE_CTX_free(X509_STORE_CTX *ctx) {
00887 if (K_X509_STORE_CTX_free) (K_X509_STORE_CTX_free)(ctx);
00888 }
00889
00890
00891 int KOpenSSLProxy::X509_verify_cert(X509_STORE_CTX *ctx) {
00892 if (K_X509_verify_cert) return (K_X509_verify_cert)(ctx);
00893 return -1;
00894 }
00895
00896
00897 void KOpenSSLProxy::X509_free(X509 *a) {
00898 if (K_X509_free) (K_X509_free)(a);
00899 }
00900
00901
00902 char *KOpenSSLProxy::X509_NAME_oneline(X509_NAME *a,char *buf,int size) {
00903 if (K_X509_NAME_oneline) return (K_X509_NAME_oneline)(a,buf,size);
00904 return 0L;
00905 }
00906
00907
00908 X509_NAME *KOpenSSLProxy::X509_get_subject_name(X509 *a) {
00909 if (K_X509_get_subject_name) return (K_X509_get_subject_name)(a);
00910 return 0L;
00911 }
00912
00913
00914 X509_NAME *KOpenSSLProxy::X509_get_issuer_name(X509 *a) {
00915 if (K_X509_get_issuer_name) return (K_X509_get_issuer_name)(a);
00916 return 0L;
00917 }
00918
00919
00920 X509_LOOKUP *KOpenSSLProxy::X509_STORE_add_lookup(X509_STORE *v, X509_LOOKUP_METHOD *m) {
00921 if (K_X509_STORE_add_lookup) return (K_X509_STORE_add_lookup)(v,m);
00922 return 0L;
00923 }
00924
00925
00926 X509_LOOKUP_METHOD *KOpenSSLProxy::X509_LOOKUP_file(void) {
00927 if (K_X509_LOOKUP_file) return (K_X509_LOOKUP_file)();
00928 return 0L;
00929 }
00930
00931
00932 void KOpenSSLProxy::X509_LOOKUP_free(X509_LOOKUP *x) {
00933 if (K_X509_LOOKUP_free) (K_X509_LOOKUP_free)(x);
00934 }
00935
00936
00937 int KOpenSSLProxy::X509_LOOKUP_ctrl(X509_LOOKUP *ctx, int cmd, const char *argc, long argl, char **ret) {
00938 if (K_X509_LOOKUP_ctrl) return (K_X509_LOOKUP_ctrl)(ctx,cmd,argc,argl,ret);
00939 return -1;
00940 }
00941
00942
00943 void KOpenSSLProxy::X509_STORE_CTX_init(X509_STORE_CTX *ctx, X509_STORE *store, X509 *x509, STACK_OF(X509) *chain) {
00944 if (K_X509_STORE_CTX_init) (K_X509_STORE_CTX_init)(ctx,store,x509,chain);
00945 }
00946
00947
00948 void KOpenSSLProxy::CRYPTO_free(void *x) {
00949 if (K_CRYPTO_free) (K_CRYPTO_free)(x);
00950 }
00951
00952
00953 X509 *KOpenSSLProxy::X509_dup(X509 *x509) {
00954 if (K_X509_dup) return (K_X509_dup)(x509);
00955 return 0L;
00956 }
00957
00958
00959 BIO *KOpenSSLProxy::BIO_new(BIO_METHOD *type) {
00960 if (K_BIO_new) return (K_BIO_new)(type);
00961 else return 0L;
00962 }
00963
00964
00965 BIO_METHOD *KOpenSSLProxy::BIO_s_mem(void) {
00966 if (K_BIO_s_mem) return (K_BIO_s_mem)();
00967 else return 0L;
00968 }
00969
00970
00971 BIO *KOpenSSLProxy::BIO_new_fp(FILE *stream, int close_flag) {
00972 if (K_BIO_new_fp) return (K_BIO_new_fp)(stream, close_flag);
00973 return 0L;
00974 }
00975
00976
00977 BIO *KOpenSSLProxy::BIO_new_mem_buf(void *buf, int len) {
00978 if (K_BIO_new_mem_buf) return (K_BIO_new_mem_buf)(buf,len);
00979 else return 0L;
00980 }
00981
00982
00983 int KOpenSSLProxy::BIO_free(BIO *a) {
00984 if (K_BIO_free) return (K_BIO_free)(a);
00985 return -1;
00986 }
00987
00988
00989 long KOpenSSLProxy::BIO_ctrl(BIO *bp,int cmd,long larg,void *parg) {
00990 if (K_BIO_ctrl) return (K_BIO_ctrl)(bp,cmd,larg,parg);
00991 else return 0;
00992 }
00993
00994
00995 int KOpenSSLProxy::BIO_write(BIO *b, const void *data, int len) {
00996 if (K_BIO_write) return (K_BIO_write)(b, data, len);
00997 else return -1;
00998 }
00999
01000
01001 int KOpenSSLProxy::PEM_write_bio_X509(BIO *bp, X509 *x) {
01002 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);
01003 else return -1;
01004 }
01005
01006 int KOpenSSLProxy::ASN1_item_i2d_fp(FILE *out,unsigned char *x) {
01007 if (K_ASN1_item_i2d_fp && K_NETSCAPE_X509_it)
01008 return (K_ASN1_item_i2d_fp)(K_NETSCAPE_X509_it, out, x);
01009 else return -1;
01010 }
01011
01012
01013 int KOpenSSLProxy::X509_print(FILE *fp, X509 *x) {
01014 if (K_X509_print_fp) return (K_X509_print_fp)(fp, x);
01015 return -1;
01016 }
01017
01018
01019 PKCS12 *KOpenSSLProxy::d2i_PKCS12_fp(FILE *fp, PKCS12 **p12) {
01020 if (K_d2i_PKCS12_fp) return (K_d2i_PKCS12_fp)(fp, p12);
01021 else return 0L;
01022 }
01023
01024
01025 int KOpenSSLProxy::PKCS12_newpass(PKCS12 *p12, char *oldpass, char *newpass) {
01026 if (K_PKCS12_newpass) return (K_PKCS12_newpass)(p12, oldpass, newpass);
01027 else return -1;
01028 }
01029
01030
01031 int KOpenSSLProxy::i2d_PKCS12(PKCS12 *p12, unsigned char **p) {
01032 if (K_i2d_PKCS12) return (K_i2d_PKCS12)(p12, p);
01033 else return -1;
01034 }
01035
01036
01037 int KOpenSSLProxy::i2d_PKCS12_fp(FILE *fp, PKCS12 *p12) {
01038 if (K_i2d_PKCS12_fp) return (K_i2d_PKCS12_fp)(fp, p12);
01039 else return -1;
01040 }
01041
01042
01043 PKCS12 *KOpenSSLProxy::PKCS12_new(void) {
01044 if (K_PKCS12_new) return (K_PKCS12_new)();
01045 else return 0L;
01046 }
01047
01048
01049 void KOpenSSLProxy::PKCS12_free(PKCS12 *a) {
01050 if (K_PKCS12_free) (K_PKCS12_free)(a);
01051 }
01052
01053
01054 int KOpenSSLProxy::PKCS12_parse(PKCS12 *p12, const char *pass, EVP_PKEY **pkey,
01055 X509 **cert, STACK_OF(X509) **ca) {
01056 if (K_PKCS12_parse) return (K_PKCS12_parse) (p12, pass, pkey, cert, ca);
01057 else return -1;
01058 }
01059
01060
01061 void KOpenSSLProxy::EVP_PKEY_free(EVP_PKEY *x) {
01062 if (K_EVP_PKEY_free) (K_EVP_PKEY_free)(x);
01063 }
01064
01065
01066 EVP_PKEY* KOpenSSLProxy::EVP_PKEY_new() {
01067 if (K_EVP_PKEY_new) return (K_EVP_PKEY_new)();
01068 else return 0L;
01069 }
01070
01071
01072 void KOpenSSLProxy::X509_REQ_free(X509_REQ *x) {
01073 if (K_X509_REQ_free) (K_X509_REQ_free)(x);
01074 }
01075
01076
01077 X509_REQ* KOpenSSLProxy::X509_REQ_new() {
01078 if (K_X509_REQ_new) return (K_X509_REQ_new)();
01079 else return 0L;
01080 }
01081
01082
01083 int KOpenSSLProxy::SSL_CTX_use_PrivateKey(SSL_CTX *ctx, EVP_PKEY *pkey) {
01084 if (K_SSL_CTX_use_PrivateKey) return (K_SSL_CTX_use_PrivateKey)(ctx,pkey);
01085 else return -1;
01086 }
01087
01088
01089 int KOpenSSLProxy::SSL_CTX_use_certificate(SSL_CTX *ctx, X509 *x) {
01090 if (K_SSL_CTX_use_certificate) return (K_SSL_CTX_use_certificate)(ctx,x);
01091 else return -1;
01092 }
01093
01094
01095 int KOpenSSLProxy::SSL_get_error(SSL *ssl, int rc) {
01096 if (K_SSL_get_error) return (K_SSL_get_error)(ssl,rc);
01097 else return -1;
01098 }
01099
01100
01101 STACK_OF(X509) *KOpenSSLProxy::SSL_get_peer_cert_chain(SSL *s) {
01102 if (K_SSL_get_peer_cert_chain) return (K_SSL_get_peer_cert_chain)(s);
01103 else return 0L;
01104 }
01105
01106
01107 void KOpenSSLProxy::sk_free(STACK *s) {
01108 if (K_sk_free) (K_sk_free)(s);
01109 }
01110
01111
01112 int KOpenSSLProxy::sk_num(STACK *s) {
01113 if (K_sk_num) return (K_sk_num)(s);
01114 else return -1;
01115 }
01116
01117
01118 char *KOpenSSLProxy::sk_pop(STACK *s) {
01119 if (K_sk_pop) return (K_sk_pop)(s);
01120 else return 0L;
01121 }
01122
01123
01124 char *KOpenSSLProxy::sk_value(STACK *s, int n) {
01125 if (K_sk_value) return (K_sk_value)(s, n);
01126 else return 0L;
01127 }
01128
01129
01130 void KOpenSSLProxy::X509_STORE_CTX_set_chain(X509_STORE_CTX *v, STACK_OF(X509)* x) {
01131 if (K_X509_STORE_CTX_set_chain) (K_X509_STORE_CTX_set_chain)(v,x);
01132 }
01133
01134 void KOpenSSLProxy::X509_STORE_CTX_set_purpose(X509_STORE_CTX *v, int purpose) {
01135 if (K_X509_STORE_CTX_set_purpose) (K_X509_STORE_CTX_set_purpose)(v,purpose);
01136 }
01137
01138
01139 STACK* KOpenSSLProxy::sk_dup(STACK *s) {
01140 if (K_sk_dup) return (K_sk_dup)(s);
01141 else return 0L;
01142 }
01143
01144
01145 STACK* KOpenSSLProxy::sk_new(int (*cmp)()) {
01146 if (K_sk_new) return (K_sk_new)(cmp);
01147 else return 0L;
01148 }
01149
01150
01151 int KOpenSSLProxy::sk_push(STACK* s, char* d) {
01152 if (K_sk_push) return (K_sk_push)(s,d);
01153 else return -1;
01154 }
01155
01156
01157 char *KOpenSSLProxy::i2s_ASN1_INTEGER(X509V3_EXT_METHOD *meth, ASN1_INTEGER *aint) {
01158 if (K_i2s_ASN1_INTEGER) return (K_i2s_ASN1_INTEGER)(meth, aint);
01159 else return 0L;
01160 }
01161
01162
01163 ASN1_INTEGER *KOpenSSLProxy::X509_get_serialNumber(X509 *x) {
01164 if (K_X509_get_serialNumber) return (K_X509_get_serialNumber)(x);
01165 else return 0L;
01166 }
01167
01168
01169 EVP_PKEY *KOpenSSLProxy::X509_get_pubkey(X509 *x) {
01170 if (K_X509_get_pubkey) return (K_X509_get_pubkey)(x);
01171 else return 0L;
01172 }
01173
01174
01175 int KOpenSSLProxy::i2d_PublicKey(EVP_PKEY *a, unsigned char **pp) {
01176 if (K_i2d_PublicKey) return (K_i2d_PublicKey)(a,pp);
01177 else return 0;
01178 }
01179
01180
01181 int KOpenSSLProxy::X509_check_private_key(X509 *x, EVP_PKEY *p) {
01182 if (K_X509_check_private_key) return (K_X509_check_private_key)(x,p);
01183 return -1;
01184 }
01185
01186
01187 char *KOpenSSLProxy::BN_bn2hex(const BIGNUM *a) {
01188 if (K_BN_bn2hex) return (K_BN_bn2hex)(a);
01189 else return 0L;
01190 }
01191
01192
01193 int KOpenSSLProxy::X509_digest(const X509 *x,const EVP_MD *t, unsigned char *md, unsigned int *len) {
01194 if (K_X509_digest) return (K_X509_digest)(x, t, md, len);
01195 else return -1;
01196 }
01197
01198
01199 EVP_MD *KOpenSSLProxy::EVP_md5() {
01200 if (K_EVP_md5) return (K_EVP_md5)();
01201 return 0L;
01202 }
01203
01204
01205 void KOpenSSLProxy::ASN1_INTEGER_free(ASN1_INTEGER *a) {
01206 if (K_ASN1_INTEGER_free) (K_ASN1_INTEGER_free)(a);
01207 }
01208
01209
01210 int KOpenSSLProxy::OBJ_obj2nid(ASN1_OBJECT *o) {
01211 if (K_OBJ_obj2nid) return (K_OBJ_obj2nid)(o);
01212 else return -1;
01213 }
01214
01215
01216 const char * KOpenSSLProxy::OBJ_nid2ln(int n) {
01217 if (K_OBJ_nid2ln) return (K_OBJ_nid2ln)(n);
01218 else return 0L;
01219 }
01220
01221
01222 int KOpenSSLProxy::X509_get_ext_count(X509 *x) {
01223 if (K_X509_get_ext_count) return (K_X509_get_ext_count)(x);
01224 else return -1;
01225 }
01226
01227
01228 int KOpenSSLProxy::X509_get_ext_by_NID(X509 *x, int nid, int lastpos) {
01229 if (K_X509_get_ext_by_NID) return (K_X509_get_ext_by_NID)(x,nid,lastpos);
01230 else return -1;
01231 }
01232
01233
01234 int KOpenSSLProxy::X509_get_ext_by_OBJ(X509 *x,ASN1_OBJECT *obj,int lastpos) {
01235 if (K_X509_get_ext_by_OBJ) return (K_X509_get_ext_by_OBJ)(x,obj,lastpos);
01236 else return -1;
01237 }
01238
01239
01240 X509_EXTENSION *KOpenSSLProxy::X509_get_ext(X509 *x, int loc) {
01241 if (K_X509_get_ext) return (K_X509_get_ext)(x,loc);
01242 else return 0L;
01243 }
01244
01245
01246 X509_EXTENSION *KOpenSSLProxy::X509_delete_ext(X509 *x, int loc) {
01247 if (K_X509_delete_ext) return (K_X509_delete_ext)(x,loc);
01248 else return 0L;
01249 }
01250
01251
01252 int KOpenSSLProxy::X509_add_ext(X509 *x, X509_EXTENSION *ex, int loc) {
01253 if (K_X509_add_ext) return (K_X509_add_ext)(x,ex,loc);
01254 else return -1;
01255 }
01256
01257
01258 void *KOpenSSLProxy::X509_get_ext_d2i(X509 *x, int nid, int *crit, int *idx) {
01259 if (K_X509_get_ext_d2i) return (K_X509_get_ext_d2i)(x,nid,crit,idx);
01260 else return 0L;
01261 }
01262
01263
01264 char *KOpenSSLProxy::i2s_ASN1_OCTET_STRING(X509V3_EXT_METHOD *method, ASN1_OCTET_STRING *ia5) {
01265 if (K_i2s_ASN1_OCTET_STRING) return (K_i2s_ASN1_OCTET_STRING)(method,ia5);
01266 else return 0L;
01267 }
01268
01269
01270 int KOpenSSLProxy::ASN1_BIT_STRING_get_bit(ASN1_BIT_STRING *a, int n) {
01271 if (K_ASN1_BIT_STRING_get_bit) return (K_ASN1_BIT_STRING_get_bit)(a,n);
01272 else return -1;
01273 }
01274
01275
01276 PKCS7 *KOpenSSLProxy::PKCS7_new(void) {
01277 if (K_PKCS7_new) return (K_PKCS7_new)();
01278 else return 0L;
01279 }
01280
01281
01282 void KOpenSSLProxy::PKCS7_free(PKCS7 *a) {
01283 if (K_PKCS7_free) (K_PKCS7_free)(a);
01284 }
01285
01286
01287 void KOpenSSLProxy::PKCS7_content_free(PKCS7 *a) {
01288 if (K_PKCS7_content_free) (K_PKCS7_content_free)(a);
01289 }
01290
01291
01292 int KOpenSSLProxy::i2d_PKCS7(PKCS7 *a, unsigned char **pp) {
01293 if (K_i2d_PKCS7) return (K_i2d_PKCS7)(a,pp);
01294 else return -1;
01295 }
01296
01297
01298 PKCS7 *KOpenSSLProxy::d2i_PKCS7(PKCS7 **a, unsigned char **pp,long length) {
01299 if (K_d2i_PKCS7) return (K_d2i_PKCS7)(a,pp,length);
01300 else return 0L;
01301 }
01302
01303
01304 int KOpenSSLProxy::i2d_PKCS7_fp(FILE *fp,PKCS7 *p7) {
01305 if (K_i2d_PKCS7_fp) return (K_i2d_PKCS7_fp)(fp,p7);
01306 else return -1;
01307 }
01308
01309
01310 PKCS7 *KOpenSSLProxy::d2i_PKCS7_fp(FILE *fp,PKCS7 **p7) {
01311 if (K_d2i_PKCS7_fp) return (K_d2i_PKCS7_fp)(fp,p7);
01312 else return 0L;
01313 }
01314
01315
01316 int KOpenSSLProxy::i2d_PKCS7_bio(BIO *bp,PKCS7 *p7) {
01317 if (K_i2d_PKCS7_bio) return (K_i2d_PKCS7_bio)(bp, p7);
01318 else return -1;
01319 }
01320
01321
01322 PKCS7 *KOpenSSLProxy::d2i_PKCS7_bio(BIO *bp,PKCS7 **p7) {
01323 if (K_d2i_PKCS7_bio) return (K_d2i_PKCS7_bio)(bp, p7);
01324 else return 0L;
01325 }
01326
01327
01328 PKCS7 *KOpenSSLProxy::PKCS7_dup(PKCS7 *p7) {
01329 if (K_PKCS7_dup) return (K_PKCS7_dup)(p7);
01330 else return 0L;
01331 }
01332
01333
01334 PKCS7 *KOpenSSLProxy::PKCS7_sign(X509 *signcert, EVP_PKEY *pkey, STACK_OF(X509) *certs,
01335 BIO *data, int flags) {
01336 if (K_PKCS7_sign) return (K_PKCS7_sign)(signcert,pkey,certs,data,flags);
01337 else return 0L;
01338 }
01339
01340
01341 int KOpenSSLProxy::PKCS7_verify(PKCS7* p, STACK_OF(X509)* st, X509_STORE* s, BIO* in, BIO *out, int flags) {
01342 if (K_PKCS7_verify) return (K_PKCS7_verify)(p,st,s,in,out,flags);
01343 else return 0;
01344 }
01345
01346
01347 STACK_OF(X509) *KOpenSSLProxy::PKCS7_get0_signers(PKCS7 *p7, STACK_OF(X509) *certs, int flags) {
01348 if (K_PKCS7_get0_signers) return (K_PKCS7_get0_signers)(p7,certs,flags);
01349 else return 0L;
01350 }
01351
01352
01353 PKCS7 *KOpenSSLProxy::PKCS7_encrypt(STACK_OF(X509) *certs, BIO *in, EVP_CIPHER *cipher,
01354 int flags) {
01355 if (K_PKCS7_encrypt) return (K_PKCS7_encrypt)(certs,in,cipher,flags);
01356 else return 0L;
01357 }
01358
01359
01360 int KOpenSSLProxy::PKCS7_decrypt(PKCS7 *p7, EVP_PKEY *pkey, X509 *cert, BIO *data, int flags) {
01361 if (K_PKCS7_decrypt) return (K_PKCS7_decrypt)(p7,pkey,cert,data,flags);
01362 else return 0;
01363 }
01364
01365
01366 STACK_OF(X509_NAME) *KOpenSSLProxy::SSL_load_client_CA_file(const char *file) {
01367 if (K_SSL_load_client_CA_file) return (K_SSL_load_client_CA_file)(file);
01368 else return 0L;
01369 }
01370
01371
01372 STACK_OF(X509_INFO) *KOpenSSLProxy::PEM_X509_INFO_read(FILE *fp, STACK_OF(X509_INFO) *sk, pem_password_cb *cb, void *u) {
01373 if (K_PEM_X509_INFO_read) return (K_PEM_X509_INFO_read)(fp,sk,cb,u);
01374 else return 0L;
01375 }
01376
01377
01378 X509 *KOpenSSLProxy::X509_d2i_fp(FILE *out, X509** buf) {
01379 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)));
01380 else return 0L;
01381 }
01382
01383
01384 int KOpenSSLProxy::SSL_peek(SSL *ssl,void *buf,int num) {
01385 if (K_SSL_peek) return (K_SSL_peek)(ssl,buf,num);
01386 else return -1;
01387 }
01388
01389
01390 const char *KOpenSSLProxy::RAND_file_name(char *buf, size_t num) {
01391 if (K_RAND_file_name) return (K_RAND_file_name)(buf, num);
01392 else return 0L;
01393 }
01394
01395
01396 int KOpenSSLProxy::RAND_load_file(const char *filename, long max_bytes) {
01397 if (K_RAND_load_file) return (K_RAND_load_file)(filename, max_bytes);
01398 else return -1;
01399 }
01400
01401
01402 int KOpenSSLProxy::RAND_write_file(const char *filename) {
01403 if (K_RAND_write_file) return (K_RAND_write_file)(filename);
01404 else return -1;
01405 }
01406
01407
01408 int KOpenSSLProxy::X509_PURPOSE_get_count() {
01409 if (K_X509_PURPOSE_get_count) return (K_X509_PURPOSE_get_count)();
01410 else return -1;
01411 }
01412
01413
01414 int KOpenSSLProxy::X509_PURPOSE_get_id(X509_PURPOSE *p) {
01415 if (K_X509_PURPOSE_get_id) return (K_X509_PURPOSE_get_id)(p);
01416 else return -1;
01417 }
01418
01419
01420 int KOpenSSLProxy::X509_check_purpose(X509 *x, int id, int ca) {
01421 if (K_X509_check_purpose) return (K_X509_check_purpose)(x, id, ca);
01422 else return -1;
01423 }
01424
01425
01426 X509_PURPOSE *KOpenSSLProxy::X509_PURPOSE_get0(int idx) {
01427 if (K_X509_PURPOSE_get0) return (K_X509_PURPOSE_get0)(idx);
01428 else return 0L;
01429 }
01430
01431
01432 int KOpenSSLProxy::EVP_PKEY_assign(EVP_PKEY *pkey, int type, char *key) {
01433 if (K_EVP_PKEY_assign) return (K_EVP_PKEY_assign)(pkey, type, key);
01434 else return -1;
01435 }
01436
01437
01438 int KOpenSSLProxy::X509_REQ_set_pubkey(X509_REQ *x, EVP_PKEY *pkey) {
01439 if (K_X509_REQ_set_pubkey) return (K_X509_REQ_set_pubkey)(x, pkey);
01440 else return -1;
01441 }
01442
01443
01444 RSA* KOpenSSLProxy::RSA_generate_key(int bits, unsigned long e, void
01445 (*callback)(int,int,void *), void *cb_arg) {
01446 if (K_RSA_generate_key) return (K_RSA_generate_key)(bits, e, callback, cb_arg);
01447 else return 0L;
01448 }
01449
01450 STACK *KOpenSSLProxy::X509_get1_email(X509 *x) {
01451 if (K_X509_get1_email) return (K_X509_get1_email)(x);
01452 else return 0L;
01453 }
01454
01455 void KOpenSSLProxy::X509_email_free(STACK *sk) {
01456 if (K_X509_email_free) (K_X509_email_free)(sk);
01457 }
01458
01459 EVP_CIPHER *KOpenSSLProxy::EVP_des_ede3_cbc() {
01460 if (K_EVP_des_ede3_cbc) return (K_EVP_des_ede3_cbc)();
01461 else return 0L;
01462 }
01463
01464 EVP_CIPHER *KOpenSSLProxy::EVP_des_cbc() {
01465 if (K_EVP_des_cbc) return (K_EVP_des_cbc)();
01466 else return 0L;
01467 }
01468
01469 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_cbc() {
01470 if (K_EVP_rc2_cbc) return (K_EVP_rc2_cbc)();
01471 else return 0L;
01472 }
01473
01474 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_64_cbc() {
01475 if (K_EVP_rc2_64_cbc) return (K_EVP_rc2_64_cbc)();
01476 else return 0L;
01477 }
01478
01479 EVP_CIPHER *KOpenSSLProxy::EVP_rc2_40_cbc() {
01480 if (K_EVP_rc2_40_cbc) return (K_EVP_rc2_40_cbc)();
01481 else return 0L;
01482 }
01483
01484 int KOpenSSLProxy::i2d_X509_REQ_fp(FILE *fp, X509_REQ *x) {
01485 if (K_i2d_X509_REQ_fp) return (K_i2d_X509_REQ_fp)(fp,x);
01486 else return -1;
01487 }
01488
01489
01490 void KOpenSSLProxy::ERR_clear_error() {
01491 if (K_ERR_clear_error) (K_ERR_clear_error)();
01492 }
01493
01494
01495 unsigned long KOpenSSLProxy::ERR_get_error() {
01496 if (K_ERR_get_error) return (K_ERR_get_error)();
01497 else return 0xffffffff;
01498 }
01499
01500
01501 void KOpenSSLProxy::ERR_print_errors_fp(FILE* fp) {
01502 if (K_ERR_print_errors_fp) (K_ERR_print_errors_fp)(fp);
01503 }
01504
01505
01506 SSL_SESSION *KOpenSSLProxy::SSL_get1_session(SSL *ssl) {
01507 if (K_SSL_get1_session) return (K_SSL_get1_session)(ssl);
01508 else return 0L;
01509 }
01510
01511
01512 void KOpenSSLProxy::SSL_SESSION_free(SSL_SESSION *session) {
01513 if (K_SSL_SESSION_free) (K_SSL_SESSION_free)(session);
01514 }
01515
01516
01517 int KOpenSSLProxy::SSL_set_session(SSL *ssl, SSL_SESSION *session) {
01518 if (K_SSL_set_session) return (K_SSL_set_session)(ssl, session);
01519 else return -1;
01520 }
01521
01522
01523 SSL_SESSION *KOpenSSLProxy::d2i_SSL_SESSION(SSL_SESSION **a, unsigned char **pp, long length) {
01524 if (K_d2i_SSL_SESSION) return (K_d2i_SSL_SESSION)(a, pp, length);
01525 else return 0L;
01526 }
01527
01528
01529 int KOpenSSLProxy::i2d_SSL_SESSION(SSL_SESSION *in, unsigned char **pp) {
01530 if (K_i2d_SSL_SESSION) return (K_i2d_SSL_SESSION)(in, pp);
01531 else return -1;
01532 }
01533
01534
01535 int KOpenSSLProxy::i2d_PrivateKey_fp(FILE *fp, EVP_PKEY *p) {
01536 if (K_i2d_PrivateKey_fp) return (K_i2d_PrivateKey_fp)(fp, p);
01537 else return -1;
01538 }
01539
01540
01541 int KOpenSSLProxy::i2d_PKCS8PrivateKey_fp(FILE *fp, EVP_PKEY *p, const EVP_CIPHER *c, char *k, int klen, pem_password_cb *cb, void *u) {
01542 if (K_i2d_PKCS8PrivateKey_fp) return (K_i2d_PKCS8PrivateKey_fp)(fp, p, c, k, klen, cb, u);
01543 else return -1;
01544 }
01545
01546
01547 void KOpenSSLProxy::RSA_free(RSA *rsa) {
01548 if (K_RSA_free) (K_RSA_free)(rsa);
01549 }
01550
01551
01552 EVP_CIPHER *KOpenSSLProxy::EVP_bf_cbc() {
01553 if (K_EVP_bf_cbc) return (K_EVP_bf_cbc)();
01554 return 0L;
01555 }
01556
01557
01558 int KOpenSSLProxy::X509_REQ_sign(X509_REQ *x, EVP_PKEY *pkey, const EVP_MD *md) {
01559 if (K_X509_REQ_sign) return (K_X509_REQ_sign)(x, pkey, md);
01560 return -1;
01561 }
01562
01563
01564 int KOpenSSLProxy::X509_NAME_add_entry_by_txt(X509_NAME *name, char *field,
01565 int type, unsigned char *bytes, int len, int loc, int set) {
01566 if (K_X509_NAME_add_entry_by_txt) return (K_X509_NAME_add_entry_by_txt)(name, field, type, bytes, len, loc, set);
01567 return -1;
01568 }
01569
01570
01571 X509_NAME *KOpenSSLProxy::X509_NAME_new() {
01572 if (K_X509_NAME_new) return (K_X509_NAME_new)();
01573 return 0L;
01574 }
01575
01576
01577 int KOpenSSLProxy::X509_REQ_set_subject_name(X509_REQ *req,X509_NAME *name) {
01578 if (K_X509_REQ_set_subject_name) return (K_X509_REQ_set_subject_name)(req, name);
01579 return -1;
01580 }
01581
01582
01583 unsigned char *KOpenSSLProxy::ASN1_STRING_data(ASN1_STRING *x) {
01584 if (K_ASN1_STRING_data) return (K_ASN1_STRING_data)(x);
01585 return 0L;
01586 }
01587
01588 STACK_OF(SSL_CIPHER) *KOpenSSLProxy::SSL_get_ciphers(const SSL* ssl) {
01589 if (K_SSL_get_ciphers) return (K_SSL_get_ciphers)(ssl);
01590 return 0L;
01591 }
01592
01593 #endif
01594