mirror of
https://github.com/moparisthebest/mailiverse
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249 lines
6.8 KiB
C++
249 lines
6.8 KiB
C++
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/*
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* (C) 2009 Jack Lloyd
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*
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* Distributed under the terms of the Botan license
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*/
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#include <botan/filters.h>
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#if defined(BOTAN_HAS_RSA)
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#include <botan/rsa.h>
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#endif
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#if defined(BOTAN_HAS_DSA)
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#include <botan/dsa.h>
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#endif
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#if defined(BOTAN_HAS_ECDSA)
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#include <botan/ecdsa.h>
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#endif
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#if defined(BOTAN_HAS_X509_CERTIFICATES)
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#include <botan/x509self.h>
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#include <botan/x509stor.h>
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#include <botan/x509_ca.h>
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#include <botan/pkcs10.h>
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#endif
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using namespace Botan;
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#include <iostream>
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#include <memory>
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#include "validate.h"
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#include "common.h"
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#if defined(BOTAN_HAS_X509_CERTIFICATES) && \
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defined(BOTAN_HAS_RSA) && \
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defined(BOTAN_HAS_DSA)
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namespace {
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u64bit key_id(const Public_Key* key)
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{
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Pipe pipe(new Hash_Filter("SHA-1", 8));
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pipe.start_msg();
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pipe.write(key->algo_name());
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pipe.write(key->algorithm_identifier().parameters);
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pipe.write(key->x509_subject_public_key());
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pipe.end_msg();
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SecureVector<byte> output = pipe.read_all();
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if(output.size() != 8)
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throw Internal_Error("Public_Key::key_id: Incorrect output size");
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u64bit id = 0;
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for(u32bit j = 0; j != 8; ++j)
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id = (id << 8) | output[j];
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return id;
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}
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/* Return some option sets */
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X509_Cert_Options ca_opts()
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{
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X509_Cert_Options opts("Test CA/US/Botan Project/Testing");
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opts.uri = "http://botan.randombit.net";
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opts.dns = "botan.randombit.net";
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opts.email = "testing@randombit.net";
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opts.CA_key(1);
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return opts;
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}
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X509_Cert_Options req_opts1()
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{
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X509_Cert_Options opts("Test User 1/US/Botan Project/Testing");
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opts.uri = "http://botan.randombit.net";
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opts.dns = "botan.randombit.net";
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opts.email = "testing@randombit.net";
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return opts;
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}
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X509_Cert_Options req_opts2()
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{
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X509_Cert_Options opts("Test User 2/US/Botan Project/Testing");
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opts.uri = "http://botan.randombit.net";
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opts.dns = "botan.randombit.net";
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opts.email = "testing@randombit.net";
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opts.add_ex_constraint("PKIX.EmailProtection");
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return opts;
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}
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u32bit check_against_copy(const Private_Key& orig,
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RandomNumberGenerator& rng)
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{
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Private_Key* copy_priv = PKCS8::copy_key(orig, rng);
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Public_Key* copy_pub = X509::copy_key(orig);
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const std::string passphrase= "I need work! -Mr. T";
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DataSource_Memory enc_source(PKCS8::PEM_encode(orig, rng, passphrase));
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Private_Key* copy_priv_enc = PKCS8::load_key(enc_source, rng,
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passphrase);
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u64bit orig_id = key_id(&orig);
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u64bit pub_id = key_id(copy_pub);
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u64bit priv_id = key_id(copy_priv);
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u64bit priv_enc_id = key_id(copy_priv_enc);
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delete copy_pub;
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delete copy_priv;
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delete copy_priv_enc;
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if(orig_id != pub_id || orig_id != priv_id || orig_id != priv_enc_id)
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{
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std::cout << "Failed copy check for " << orig.algo_name() << "\n";
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return 1;
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}
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return 0;
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}
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}
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void do_x509_tests(RandomNumberGenerator& rng)
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{
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std::cout << "Testing X.509 CA/CRL/cert/cert request: " << std::flush;
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std::string hash_fn = "SHA-256";
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/* Create the CA's key and self-signed cert */
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std::cout << '.' << std::flush;
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RSA_PrivateKey ca_key(rng, 1024);
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std::cout << '.' << std::flush;
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X509_Certificate ca_cert = X509::create_self_signed_cert(ca_opts(),
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ca_key,
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hash_fn,
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rng);
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std::cout << '.' << std::flush;
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/* Create user #1's key and cert request */
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std::cout << '.' << std::flush;
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DSA_PrivateKey user1_key(rng, DL_Group("dsa/jce/1024"));
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std::cout << '.' << std::flush;
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PKCS10_Request user1_req = X509::create_cert_req(req_opts1(),
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user1_key,
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"SHA-1",
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rng);
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/* Create user #2's key and cert request */
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std::cout << '.' << std::flush;
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#if defined(BOTAN_HAS_ECDSA)
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EC_Group ecc_domain(OID("1.2.840.10045.3.1.7"));
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ECDSA_PrivateKey user2_key(rng, ecc_domain);
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#else
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RSA_PrivateKey user2_key(rng, 1024);
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#endif
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std::cout << '.' << std::flush;
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PKCS10_Request user2_req = X509::create_cert_req(req_opts2(),
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user2_key,
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hash_fn,
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rng);
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/* Create the CA object */
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std::cout << '.' << std::flush;
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X509_CA ca(ca_cert, ca_key, hash_fn);
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std::cout << '.' << std::flush;
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/* Sign the requests to create the certs */
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std::cout << '.' << std::flush;
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X509_Certificate user1_cert =
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ca.sign_request(user1_req, rng,
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X509_Time("2008-01-01"), X509_Time("2100-01-01"));
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std::cout << '.' << std::flush;
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X509_Certificate user2_cert = ca.sign_request(user2_req, rng,
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X509_Time("2008-01-01"),
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X509_Time("2100-01-01"));
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std::cout << '.' << std::flush;
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X509_CRL crl1 = ca.new_crl(rng);
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/* Verify the certs */
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X509_Store store;
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store.add_cert(ca_cert, true); // second arg == true: trusted CA cert
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std::cout << '.' << std::flush;
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if(store.validate_cert(user1_cert) != VERIFIED)
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std::cout << "\nFAILED: User cert #1 did not validate" << std::endl;
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if(store.validate_cert(user2_cert) != VERIFIED)
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std::cout << "\nFAILED: User cert #2 did not validate" << std::endl;
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if(store.add_crl(crl1) != VERIFIED)
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std::cout << "\nFAILED: CRL #1 did not validate" << std::endl;
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std::vector<CRL_Entry> revoked;
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revoked.push_back(CRL_Entry(user1_cert, CESSATION_OF_OPERATION));
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revoked.push_back(user2_cert);
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X509_CRL crl2 = ca.update_crl(crl1, revoked, rng);
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if(store.add_crl(crl2) != VERIFIED)
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std::cout << "\nFAILED: CRL #2 did not validate" << std::endl;
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if(store.validate_cert(user1_cert) != CERT_IS_REVOKED)
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std::cout << "\nFAILED: User cert #1 was not revoked" << std::endl;
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if(store.validate_cert(user2_cert) != CERT_IS_REVOKED)
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std::cout << "\nFAILED: User cert #2 was not revoked" << std::endl;
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revoked.clear();
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revoked.push_back(CRL_Entry(user1_cert, REMOVE_FROM_CRL));
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X509_CRL crl3 = ca.update_crl(crl2, revoked, rng);
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if(store.add_crl(crl3) != VERIFIED)
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std::cout << "\nFAILED: CRL #3 did not validate" << std::endl;
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if(store.validate_cert(user1_cert) != VERIFIED)
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std::cout << "\nFAILED: User cert #1 was not un-revoked" << std::endl;
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check_against_copy(ca_key, rng);
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check_against_copy(user1_key, rng);
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check_against_copy(user2_key, rng);
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std::cout << std::endl;
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}
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#else
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void do_x509_tests(RandomNumberGenerator&)
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{
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std::cout << "Skipping Botan X.509 tests (disabled in build)\n";
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}
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#endif
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