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(Unicode C++) Encrypt with Chilkat, Decrypt with OpenSSLDemonstrates how to RSA encrypt a string using Chilkat, and then shows the corresponding OpenSSL command to RSA decrypt. The OpenSSL command to decrypt is as follows: openssl rsautl -decrypt -inkey VP_Private.pem -in rsa_encrypted.bin -out original.txt
#include <CkRsaW.h> #include <CkPublicKeyW.h> #include <CkByteData.h> #include <CkFileAccessW.h> void ChilkatSample(void) { // This example requires the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. CkRsaW rsa; // Note: RSA encryption uses the public key. // RSA decryption uses the private key. // The reason is that the public key can be freely provided to anybody. This allows anybody // to send an encrypted message to the private key owner, and only the private key owner // can decrypt. CkPublicKeyW key; // Load an RSA public key from a PEM file: bool success = key.LoadFromFile(L"qa_data/pem/VP_Public.pem"); if (success != true) { wprintf(L"%s\n",key.lastErrorText()); return; } // Load the public key into the RSA object. success = rsa.ImportPublicKeyObj(key); if (success != true) { wprintf(L"%s\n",rsa.lastErrorText()); return; } const wchar_t *strToEncrypt = L"00000000;XYZ2-3BHQ-ABCD-MMVV;6MY1-GHJK-9LRR;0"; // The LittleEndian property is false by default, but it is set here // anyway to show that LittleEndian byte ordering is required for OpenSSL compatibility. rsa.put_LittleEndian(false); bool usePrivateKey = false; CkByteData encryptedBytes; success = rsa.EncryptString(strToEncrypt,usePrivateKey,encryptedBytes); if (rsa.get_LastMethodSuccess() != true) { wprintf(L"%s\n",rsa.lastErrorText()); return; } // The OpenSSL command to decrypt would be this: // openssl rsautl -decrypt -inkey VP_Private.pem -in rsa_encrypted.bin -out original.txt CkFileAccessW fac; success = fac.WriteEntireFile(L"qa_output/rsa_encrypted.bin",encryptedBytes); if (success != true) { wprintf(L"%s\n",fac.lastErrorText()); return; } wprintf(L"RSA Encryption Succeeded.\n"); } |
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