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(Delphi ActiveX) PKCS11 Generate Secret Key (such as AES)See more PKCS11 ExamplesGenerates a symmetric secret key such as AES on the HSM. Note: This example requires Chilkat v9.5.0.96 or later.
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 pkcs11: TChilkatPkcs11; pin: WideString; userType: Integer; success: Integer; keyType: WideString; json: TChilkatJsonObject; keyHandle: Cardinal; begin // 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. pkcs11 := TChilkatPkcs11.Create(Self); // Use the PKCS11 driver (.dll, .so, .dylib) for your particular HSM. // (The format of the path will change with the operating system. Obviously, "C:/" is not used on non-Windows systems. pkcs11.SharedLibPath := 'C:/Program Files (x86)/Gemalto/IDGo 800 PKCS#11/IDPrimePKCS1164.dll'; // Establish a logged-on session. pin := '0000'; userType := 1; success := pkcs11.QuickSession(userType,pin); if (success = 0) then begin Memo1.Lines.Add(pkcs11.LastErrorText); Exit; end; // Let's generate a 256-bit AES key on the token, which will exist for the duration of this session. // Symmetric keys, such as AES keys, are typically created (or imported) and used during a single session. // Other possible values for keyType are "AES XTS", "Blowfish", "Twofish", "ChaCha20", and others. // In virtually all cases, you'll want to create an AES key. keyType := 'AES'; // Specify attributes and abilities (how this key can be used) by providing a JSON template. json := TChilkatJsonObject.Create(Self); // The key can be extracted or wrapped. json.UpdateBool('extractable',1); // Allow the key to be used for encryption, decryption, wrapping other keys, and unwrapping other keys. json.UpdateBool('encrypt',1); json.UpdateBool('decrypt',1); json.UpdateBool('wrap',1); json.UpdateBool('unwrap',1); // Indicate a 256-bit AES key is to be generated by setting the value_len attribute equal to the key size in bytes. // (32 bytes * 8 bits/byte = 256 bits) json.UpdateInt('value_len',32); keyHandle := pkcs11.GenSecretKey(keyType,json.ControlInterface); if (keyHandle = 0) then begin Memo1.Lines.Add(pkcs11.LastErrorText); Memo1.Lines.Add('Failed to generate an AES key.'); end else begin Memo1.Lines.Add('key handle = ' + IntToStr(keyHandle)); Memo1.Lines.Add('Success.'); end; pkcs11.Logout(); pkcs11.CloseSession(); end; |
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