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(Unicode C++) PKCS11 Certificate ChainSee more PKCS11 ExamplesDemonstrates how to make CA certs available for the certificate chain to be included when creating a signature (using a PKCS11 compatible smart card / USB token) such as for PDF, XMLDSig, etc. Note: This example requires Chilkat v9.5.0.88 or later.
#include <CkPkcs11W.h> #include <CkCertW.h> #include <CkXmlCertVaultW.h> void ChilkatSample(void) { // This example requires the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. // Note: Chilkat's PKCS11 implementation runs on Windows, Linux, Mac OS X, and other supported operating systems. CkPkcs11W pkcs11; // You will use the DLL (or shared lib) provided by your smart card vendor, or a DLL compatible with your smart card. // On Windows, if the DLL is located in C:\Windows\System32, specify only the filename. // Otherwise provide the full path. pkcs11.put_SharedLibPath(L"bit4xpki.dll"); bool success = pkcs11.Initialize(); if (success == false) { wprintf(L"%s\n",pkcs11.lastErrorText()); return; } // Pass -1 for the slotID to open a session on the first non-empty slot. int slotID = -1; // Open a session. bool readWrite = true; success = pkcs11.OpenSession(slotID,readWrite); if (success == false) { wprintf(L"%s\n",pkcs11.lastErrorText()); return; } // Make it an authenticated session by calling Login. int userType = 1; // Make sure to use the correct PIN for your smart card.. const wchar_t *pin = L"0000"; success = pkcs11.Login(userType,pin); if (success == false) { wprintf(L"%s\n",pkcs11.lastErrorText()); success = pkcs11.CloseSession(); return; } // Get the certificate (on the smart card) that has a private key. CkCertW cert; success = pkcs11.FindCert(L"privateKey",L"",cert); if (success == true) { wprintf(L"Cert with private key: %s\n",cert.subjectCN()); } else { wprintf(L"No certificates having a private key were found.\n"); success = pkcs11.CloseSession(); return; } // If the certificates in the chain of authentication were contained on the smart card, // then Chilkat would already have them (via the FindCert function) and the certs in the chain will be automatically used // as needed when signing occurs. // If you have CA certs located elsewhere, such as in .cer files, you can make them available to Chilkat in the following way: CkXmlCertVaultW certVault; // Please review the methods available in the XML certificate vault class. Different methods exist for adding certificates // from various sources, such as PEM, PFX, or in-memory sources.. success = certVault.AddCertFile(L"someDir/caIntermediateCert.cer"); // ... success = certVault.AddCertFile(L"someDir/caCert.cer"); // (Your code should check the return value to make sure it succeeded.) success = cert.UseCertVault(certVault); if (success == false) { wprintf(L"%s\n",cert.lastErrorText()); success = pkcs11.CloseSession(); return; } // -------------------------------------------------------------------------- // At this point, we have the cert (and certs in the chain of authentication) to be used for signing. // The code for using the certificate in creating the digital signature, such as for a PDF, XML, etc., go here... // -------------------------------------------------------------------------- // Revert to an unauthenticated session by calling Logout. success = pkcs11.Logout(); if (success == false) { wprintf(L"%s\n",pkcs11.lastErrorText()); success = pkcs11.CloseSession(); return; } // When finished, close the session. // It is important to close the session (memory leaks will occur if the session is not properly closed). success = pkcs11.CloseSession(); if (success == false) { wprintf(L"%s\n",pkcs11.lastErrorText()); return; } wprintf(L"Success.\n"); } |
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