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(C++) POP3 Read S/MIME Encrypted EmailRead S/MIME encrypted email.
#include <CkMailMan.h> #include <CkEmailBundle.h> #include <CkEmail.h> void ChilkatSample(void) { // This example assumes the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. // The mailman object is used for receiving (POP3) // and sending (SMTP) email. CkMailMan mailman; // Set the POP3 server's hostname mailman.put_MailHost("pop.someMailServer.com"); // Set the POP3 login/password. mailman.put_PopUsername("myLogin"); mailman.put_PopPassword("myPassword"); // If running on Microsoft Windows, the Chilkat mailman // will automatically search the registry-based certificate stores // for matching certificates and private keys required for // decryption. However, on Linux, MAX OS X, and other // operating systems, no such thing exists. Therefore, you'll // need to specify one or more PFX (.p12 / .pfx) files as // sources for locating the certs required for decyrption. bool success = mailman.AddPfxSourceFile("/pfxFiles/certs_and_keys_1.pfx","pfxPassword1"); if (success != true) { std::cout << mailman.lastErrorText() << "\r\n"; return; } success = mailman.AddPfxSourceFile("/pfxFiles/certs_and_keys_2.pfx","pfxPassword2"); if (success != true) { std::cout << mailman.lastErrorText() << "\r\n"; return; } // ... // Note: On MS Windows, it is not required to provide PFX sources // if the needed certs and private keys are already installed // on the system (in the registry-based certificate stores). // Copy the all email from the user's POP3 mailbox // into a bundle object. The email remains on the server. CkEmailBundle *bundle = mailman.CopyMail(); if (mailman.get_LastMethodSuccess() == false) { std::cout << mailman.lastErrorText() << "\r\n"; return; } // S/MIME security envelopes are automatically "unwrapped" // when a message is retrieved from the server. Signed emails are automatically verified, and // encrypted emails are automatically decrypted, restoring the email to the original state before // signing and/or encrypting. Information about the signing and encrypting certificates can be // retrieved from the Email object (methods: GetSignedByCert, GetEncryptedByCert; // properties: SignedBy, EncryptedBy, SignaturesValid, Decrypted, ReceivedSigned, // ReceivedEncrypted). // Loop over the bundle, int i = 0; while (i < bundle->get_MessageCount()) { CkEmail *email = 0; email = bundle->GetEmail(i); std::cout << email->ck_from() << "\r\n"; std::cout << email->subject() << "\r\n"; // At this point, if the email was signed and/or encrypted, it is already "unwrapped", i.e. // the email is already decrypted and in a state as if it were never signed or encrypted. // You may check to see if the email was received encrypted or signed, and if so, // whether it was successfully unwrapped and who signed or encrypted it: if (email->get_ReceivedEncrypted() == true) { std::cout << "This email was encrypted when received." << "\r\n"; if (email->get_Decrypted() == true) { std::cout << "This email was successfully decrypted. It was encrypted by:" << "\r\n"; std::cout << email->encryptedBy() << "\r\n"; } else { std::cout << "This email was not decrypted." << "\r\n"; } } if (email->get_ReceivedSigned() == true) { std::cout << "This email was signed when received." << "\r\n"; if (email->get_SignaturesValid() == true) { std::cout << "The signature was verified. It was signed by:" << "\r\n"; std::cout << email->signedBy() << "\r\n"; } else { std::cout << "The signature verification failed." << "\r\n"; } } // The email's body, HTML body, attachments, etc. // are decrypted and available just like any non-encrypted email. std::cout << "--" << "\r\n"; delete email; i = i + 1; } delete bundle; } |
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