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| (Classic ASP) FatturaPA XML Invoice Sign+Encrypt to P7MDemonstrates how to create a CAdES BES signed + encrypted invoice.xml.p7m for the Italian FatturaPA exchange system. 
 <html> <head> <meta http-equiv="Content-Type" content="text/html; charset=utf-8"> </head> <body> <% success = 0 ' This requires the Chilkat API to have been previously unlocked. ' See Global Unlock Sample for sample code. set crypt = Server.CreateObject("Chilkat.Crypt2") ' Use a digital certificate and private key from a PFX file (.pfx or .p12). pfxPath = "qa_data/pfx/cert_test123.pfx" pfxPassword = "test123" set cert = Server.CreateObject("Chilkat.Cert") success = cert.LoadPfxFile(pfxPath,pfxPassword) If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( cert.LastErrorText) & "</pre>" Response.End End If ' Provide the signing cert (with associated private key). success = crypt.SetSigningCert(cert) If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( crypt.LastErrorText) & "</pre>" Response.End End If ' Indicate that SHA-256 should be used. crypt.HashAlgorithm = "sha256" ' Specify the signed attributes to be included. ' (This is what makes it CAdES-BES compliant.) set jsonSignedAttrs = Server.CreateObject("Chilkat.JsonObject") success = jsonSignedAttrs.UpdateInt("contentType",1) success = jsonSignedAttrs.UpdateInt("signingTime",1) success = jsonSignedAttrs.UpdateInt("messageDigest",1) success = jsonSignedAttrs.UpdateInt("signingCertificateV2",1) crypt.SigningAttributes = jsonSignedAttrs.Emit() inFile = "qa_data/xml/IT01234567890_11002.xml" sigFile = "qa_data/fatturapa/signed.p7m" ' Create the CAdES-BES signature, which contains the original data. success = crypt.CreateP7M(inFile,sigFile) If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( crypt.LastErrorText) & "</pre>" Response.End End If ' Now we'll encrypt what was signed using FatturaPA's certificate (from a PEM file) set encryptCert = Server.CreateObject("Chilkat.Cert") success = encryptCert.LoadFromFile("qa_data/certs/fatturapa_cert.pem") If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( encryptCert.LastErrorText) & "</pre>" Response.End End If crypt.CryptAlgorithm = "pki" success = crypt.SetEncryptCert(encryptCert) If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( crypt.LastErrorText) & "</pre>" Response.End End If ' Indicate the underlying bulk encryption algorithm to be used: crypt.Pkcs7CryptAlg = "aes" crypt.KeyLength = 128 ' There's one last option that could be set. If is the RSA encryption encryption/padding scheme. ' By default, RSAES_PKCS1-V1_5 is used. If desired, the OaepPadding property could be set to 1 to ' use RSAES_OAEP. (We'll leave it set at the default value of 0) crypt.OaepPadding = 0 ' Everything is specified. Encrypt the .p7m to create a new .p7m (which adds a layer of encryption around the opaque signature). ' The output is PKCS7 in binary DER format. success = crypt.CkEncryptFile(sigFile,"qa_output/signed_and_encrypted.p7m") If (success = 0) Then Response.Write "<pre>" & Server.HTMLEncode( crypt.LastErrorText) & "</pre>" Response.End End If Response.Write "<pre>" & Server.HTMLEncode( "Success.") & "</pre>" %> </body> </html> | ||||
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