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(Delphi ActiveX) Demonstrate RSA Encrypt/Decrypt using BinDataSee more RSA ExamplesDemonstrates how to RSA encrypt and decrypt data contained in a Chilkat BinData object.
uses Winapi.Windows, Winapi.Messages, System.SysUtils, System.Variants, System.Classes, Vcl.Graphics, Vcl.Controls, Vcl.Forms, Vcl.Dialogs, Vcl.StdCtrls, Chilkat_TLB; ... procedure TForm1.Button1Click(Sender: TObject); var pubKey: TPublicKey; success: Integer; rsa: TChilkatRsa; bd: TChilkatBinData; i: Integer; privKey: TPrivateKey; password: WideString; begin // The RSA public key is used for encryption, and the private key for decryption. // The public key's role is to make encryption accessible to anyone while ensuring that // only the private key holder can decrypt the messages. // The public key is designed to be widely distributed so anyone can use it to encrypt messages // intended for the owner of the private key. // Load our 2048-bit RSA public key. pubKey := TPublicKey.Create(Self); // In all Chilkat methods expecting a path, you pass either absolute or relative paths. success := pubKey.LoadFromFile('rsaKeys/myTestRsaPublic.pem'); if (success = 0) then begin Memo1.Lines.Add(pubKey.LastErrorText); Exit; end; rsa := TChilkatRsa.Create(Self); // Tell RSA to use the public key. rsa.ImportPublicKeyObj(pubKey.ControlInterface); // RSA encryption is for small amounts of data, on the order of 200 bytes or less. // The maximum number of bytes that can be RSA encrypted depends // on the RSA key size and padding scheme (OAEP padding vs PKCS#1 v1.5 padding). // For specific limits, see: RSA Encryption Maximum Number of Bytes // Create some binary data to encrypt. bd := TChilkatBinData.Create(Self); i := 0; for i := 0 to 49 do begin bd.AppendByte(i); end; // Show the bytes to be encrypted in hex format: Memo1.Lines.Add('To be encrypted: ' + bd.GetEncoded('hex')); // To be encrypted: 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F3031 // RSA encrypt the contents of the bd, replacing the contents with the RSA encrypted data. rsa.EncryptBd(bd.ControlInterface,0); // Now it is encrypted. Memo1.Lines.Add('Encrypted size = ' + IntToStr(bd.NumBytes)); Memo1.Lines.Add(bd.GetEncoded('hex')); // Encrypted size = 256 // 749ED9D0A8767C06C09AD9697F654F86B145F966722F9714902C4175BDBD02E68984ECF111D4D461 // EDB4A8E677D399D19CCA60F35C6DE9972F4262880FE9D77DB75915393E8E7DB80AAB5E383013FAEB // 60C77D1E6FECC9A7C8426976416C6218FE7DA998EE063CE709E79C240F8625F4A56A0A33AFD63F7A // BA26F2A692B42E878C53B78602C725FE63FF961A46A2B9D436E5E3D9D64AE3F1D1F5AD5F5B47FCD69 // 447306B77F2FD6D766CCAA1A110A3371586B43DF0D7FFE2220D1B305CF9371AC342F849FB0C90CD99E // C176928D877FE1C0DE1A7CB6EB824FEC7E1DCF90EF2C6BA9F1DFD3EBFBE89C51AF074DC6AE02E544A78 // 5018C36D3D48B2EF5202AF61AC // ------------------------------------------------------------------------------------------------------------------------ // Let's decrypt, which requires the matching private key... // Load the matching 2048-bit RSA private key. privKey := TPrivateKey.Create(Self); password := 'secret'; success := privKey.LoadAnyFormatFile('rsaKeys/myTestRsaPrivate.pem',password); if (success = 0) then begin Memo1.Lines.Add(privKey.LastErrorText); Exit; end; // Tell the RSA object to use the private key. rsa.ImportPrivateKeyObj(privKey.ControlInterface); // Decrypt success := rsa.DecryptBd(bd.ControlInterface,1); if (success = 0) then begin Memo1.Lines.Add(rsa.LastErrorText); Exit; end; // Examine the contents of bd to see if it now contains the unencrypted original data. Memo1.Lines.Add('Decrypted: ' + bd.GetEncoded('hex')); // Decrypted: 000102030405060708090A0B0C0D0E0F101112131415161718191A1B1C1D1E1F202122232425262728292A2B2C2D2E2F3031 end; |
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