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(C) RSA Encrypt with SHA-256 hash function and SHA-1 mask functionHow can this Javascript be duplicated using Chilkat? function a(e, t) { var r = s.pki.publicKeyFromPem(e) , n = r.encrypt(t, "RSA-OAEP", { md: s.md.sha256.create(), mgf1: { md: s.md.sha1.create() } }); return s.util.encode64(n) } Note: The OAEP padding uses random bytes in the padding, and therefore each time encryption happens, even using the same data and key, the result will be different -- but still valid. One should not expect to get the same output.
#include <C_CkPublicKey.h> #include <C_CkStringBuilder.h> #include <C_CkCrypt2.h> #include <C_CkByteData.h> #include <C_CkRsa.h> void ChilkatSample(void) { HCkPublicKey pubkey; HCkStringBuilder sbPem; BOOL bCrlf; BOOL success; const char *originalData; HCkCrypt2 crypt; HCkByteData hashBytes; HCkRsa rsa; BOOL bUsePrivateKey; const char *encryptedStr; // This example requires the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. pubkey = CkPublicKey_Create(); sbPem = CkStringBuilder_Create(); bCrlf = TRUE; CkStringBuilder_AppendLine(sbPem,"-----BEGIN PUBLIC KEY-----",bCrlf); CkStringBuilder_AppendLine(sbPem,"MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEA33TqqLR3eeUmDtHS89qF",bCrlf); CkStringBuilder_AppendLine(sbPem,"3p4MP7Wfqt2Zjj3lZjLjjCGDvwr9cJNlNDiuKboODgUiT4ZdPWbOiMAfDcDzlOxA",bCrlf); CkStringBuilder_AppendLine(sbPem,"04DDnEFGAf+kDQiNSe2ZtqC7bnIc8+KSG/qOGQIVaay4Ucr6ovDkykO5Hxn7OU7s",bCrlf); CkStringBuilder_AppendLine(sbPem,"Jp9TP9H0JH8zMQA6YzijYH9LsupTerrY3U6zyihVEDXXOv08vBHk50BMFJbE9iwF",bCrlf); CkStringBuilder_AppendLine(sbPem,"wnxCsU5+UZUZYw87Uu0n4LPFS9BT8tUIvAfnRXIEWCha3KbFWmdZQZlyrFw0buUE",bCrlf); CkStringBuilder_AppendLine(sbPem,"f0YN3/Q0auBkdbDR/ES2PbgKTJdkjc/rEeM0TxvOUf7HuUNOhrtAVEN1D5uuxE1W",bCrlf); CkStringBuilder_AppendLine(sbPem,"SwIDAQAB",bCrlf); CkStringBuilder_AppendLine(sbPem,"-----END PUBLIC KEY-----",bCrlf); // Load the public key object from the PEM. success = CkPublicKey_LoadFromString(pubkey,CkStringBuilder_getAsString(sbPem)); if (success != TRUE) { printf("%s\n",CkPublicKey_lastErrorText(pubkey)); CkPublicKey_Dispose(pubkey); CkStringBuilder_Dispose(sbPem); return; } originalData = "This is the original data to be SHA-256 hashed and RSA encrypted."; // First we SHA-256 hash the original data. crypt = CkCrypt2_Create(); CkCrypt2_putHashAlgorithm(crypt,"SHA-256"); hashBytes = CkByteData_Create(); success = CkCrypt2_HashString(crypt,originalData,hashBytes); // Now to RSA encrypt using OAEP padding with SHA-1 for the mask function. rsa = CkRsa_Create(); CkRsa_putOaepPadding(rsa,TRUE); CkRsa_putOaepHash(rsa,"SHA1"); CkRsa_ImportPublicKeyObj(rsa,pubkey); CkRsa_putEncodingMode(rsa,"base64"); // Note: The OAEP padding uses random bytes in the padding, and therefore each time encryption happens, // even using the same data and key, the result will be different -- but still valid. One should not expect // to get the same output. bUsePrivateKey = FALSE; encryptedStr = CkRsa_encryptBytesENC(rsa,hashBytes,bUsePrivateKey); if (CkRsa_getLastMethodSuccess(rsa) != TRUE) { printf("%s\n",CkRsa_lastErrorText(rsa)); CkPublicKey_Dispose(pubkey); CkStringBuilder_Dispose(sbPem); CkCrypt2_Dispose(crypt); CkByteData_Dispose(hashBytes); CkRsa_Dispose(rsa); return; } printf("Base64 RSA encrypted output: %s\n",encryptedStr); CkPublicKey_Dispose(pubkey); CkStringBuilder_Dispose(sbPem); CkCrypt2_Dispose(crypt); CkByteData_Dispose(hashBytes); CkRsa_Dispose(rsa); } |
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