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(Unicode C++) How to Generate an Elliptic Curve Shared SecretDemonstrates how to generate an ECC (Elliptic Curve Cryptography) shared secret. Imagine a cilent has one ECC private key, the server has another. A shared secret is computed by each side providing it's public key to the other. The private keys are kept private.
#include <CkPrngW.h> #include <CkEccW.h> #include <CkPrivateKeyW.h> #include <CkPublicKeyW.h> void ChilkatSample(void) { // This example requires the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. // This example includes both client-side and server-side code. // Each code segment is marked as client-side or server-side. // Imagine these segments are running on separate computers... bool success; // ----------------------------------------------------------------- // (Client-Side) Generate an ECC key, save the public part to a file. // ----------------------------------------------------------------- CkPrngW prngClient; CkEccW eccClient; CkPrivateKeyW *privKeyClient = eccClient.GenEccKey(L"secp256r1",prngClient); if (eccClient.get_LastMethodSuccess() != true) { wprintf(L"%s\n",eccClient.lastErrorText()); return; } CkPublicKeyW *pubKeyClient = privKeyClient->GetPublicKey(); pubKeyClient->SavePemFile(false,L"qa_output/eccClientPub.pem"); delete pubKeyClient; // ----------------------------------------------------------------- // (Server-Side) Generate an ECC key, save the public part to a file. // ----------------------------------------------------------------- CkPrngW prngServer; CkEccW eccServer; CkPrivateKeyW *privKeyServer = eccServer.GenEccKey(L"secp256r1",prngServer); if (eccServer.get_LastMethodSuccess() != true) { wprintf(L"%s\n",eccServer.lastErrorText()); return; } CkPublicKeyW *pubKeyServer = privKeyServer->GetPublicKey(); pubKeyServer->SavePemFile(false,L"qa_output/eccServerPub.pem"); delete pubKeyServer; // ----------------------------------------------------------------- // (Client-Side) Generate the shared secret using our private key, and the other's public key. // ----------------------------------------------------------------- // Imagine that the server sent the public key PEM to the client. // (This is simulated by loading the server's public key from the file. CkPublicKeyW pubKeyFromServer; pubKeyFromServer.LoadFromFile(L"qa_output/eccServerPub.pem"); const wchar_t *sharedSecret1 = eccClient.sharedSecretENC(*privKeyClient,pubKeyFromServer,L"base64"); delete privKeyClient; // ----------------------------------------------------------------- // (Server-Side) Generate the shared secret using our private key, and the other's public key. // ----------------------------------------------------------------- // Imagine that the client sent the public key PEM to the server. // (This is simulated by loading the client's public key from the file. CkPublicKeyW pubKeyFromClient; pubKeyFromClient.LoadFromFile(L"qa_output/eccClientPub.pem"); const wchar_t *sharedSecret2 = eccServer.sharedSecretENC(*privKeyServer,pubKeyFromClient,L"base64"); delete privKeyServer; // --------------------------------------------------------- // Examine the shared secrets. They should be the same. // Both sides now have a secret that only they know. // --------------------------------------------------------- wprintf(L"%s\n",sharedSecret1); wprintf(L"%s\n",sharedSecret2); } |
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