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(C++) Create ICP-Brasil Compliant CMS SignatureDemonstrates how to create a .p7s signature that contains a data file, which in this case is a PDF. The .p7s will be compliant with the ICP-Brazil Digital Signature Standard. The .p7s file created by this example can be verified at ICP-Brasil Online Verifier Note: Requires Chilkat v9.5.0.92 or greater. For more information, see http://www.iti.gov.br/images/repositorio/consulta-publica/encerradas/DOC-ICP-15_-_Versao_2.2_VISAO_GERAL_SOBRE_ASSIN_DIG_NA_ICP-BRASIL_xx-xx-2015.pdf
#include <CkCrypt2.h> #include <CkBinData.h> #include <CkCert.h> #include <CkJsonObject.h> void ChilkatSample(void) { // This example requires the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. // ------------------------------------------------------------------------------------------------------ // Note: This example creates a CMS signature (.p7s) that contains the PDF. // It is different than signing a PDF. To sign a PDF where the resulting PDF contains the CMS signature, // see this example: Sign PDF for ICP-Brasil // ------------------------------------------------------------------------------------------------------ CkCrypt2 crypt; // Any type of file can be signed. It doesn't have to be a PDF. const char *inFile = "qa_data/pdf/helloWorld.pdf"; CkBinData bd; bool success = bd.LoadFile(inFile); if (success == false) { std::cout << "Failed to load " << inFile << "\r\n"; return; } // We'll be using a certificate w/ private key stored on a smartcard for signing. CkCert cert; // If the smartcard or token requires a PIN, we can set it here to avoid the dialog... cert.put_SmartCardPin("000000"); success = cert.LoadFromSmartcard(""); if (success != true) { std::cout << cert.lastErrorText() << "\r\n"; return; } // Tell the crypt component to use this cert. success = crypt.SetSigningCert(cert); if (success != true) { std::cout << crypt.lastErrorText() << "\r\n"; return; } // Set properties for signing... crypt.put_HashAlgorithm("sha256"); CkJsonObject jsonSigningAttrs; jsonSigningAttrs.UpdateInt("contentType",1); jsonSigningAttrs.UpdateInt("signingTime",1); jsonSigningAttrs.UpdateInt("messageDigest",1); jsonSigningAttrs.UpdateBool("signingCertificateV2",true); // Listed here are the currently existing profiles. (Chilkat will add additional ICP Brasil policy profiles in future versions as new ones are created.) // See https://www.gov.br/iti/pt-br/assuntos/repositorio/artefatos-de-assinatura-digital for more information. // // PA_AD_RA --> 2.16.76.1.7.1.5.1 // PA_AD_RA_v1_1 --> 2.16.76.1.7.1.5.1.1 // PA_AD_RA_v1_2 --> 2.16.76.1.7.1.5.1.2 // PA_AD_RA_v2_0 --> 2.16.76.1.7.1.5.2 // PA_AD_RA_v2_1 --> 2.16.76.1.7.1.5.2.1 // PA_AD_RA_v2_2 --> 2.16.76.1.7.1.5.2.2 // PA_AD_RA_v2_3 --> 2.16.76.1.7.1.5.2.3 // PA_AD_RA_v2_4 --> 2.16.76.1.7.1.5.2.4 // PA_AD_RB --> 2.16.76.1.7.1.1.1 // PA_AD_RB_v1_1 --> 2.16.76.1.7.1.1.1.1 // PA_AD_RB_v2_0 --> 2.16.76.1.7.1.1.2 // PA_AD_RB_v2_1 --> 2.16.76.1.7.1.1.2.1 // PA_AD_RB_v2_2 --> 2.16.76.1.7.1.1.2.2 // PA_AD_RB_v2_3 --> 2.16.76.1.7.1.1.2.3 // PA_AD_RC --> 2.16.76.1.7.1.4.1 // PA_AD_RC_v1_1 --> 2.16.76.1.7.1.4.1.1 // PA_AD_RC_v2_0 --> 2.16.76.1.7.1.4.2 // PA_AD_RC_v2_1 --> 2.16.76.1.7.1.4.2.1 // PA_AD_RC_v2_2 --> 2.16.76.1.7.1.4.2.2 // PA_AD_RC_v2_3 --> 2.16.76.1.7.1.4.2.3 // PA_AD_RT --> 2.16.76.1.7.1.2.1 // PA_AD_RT_v1_1 --> 2.16.76.1.7.1.2.1.1 // PA_AD_RT_v2_0 --> 2.16.76.1.7.1.2.2 // PA_AD_RT_v2_1 --> 2.16.76.1.7.1.2.2.1 // PA_AD_RT_v2_2 --> 2.16.76.1.7.1.2.2.2 // PA_AD_RT_v2_3 --> 2.16.76.1.7.1.2.2.3 // PA_AD_RV --> 2.16.76.1.7.1.3.1 // PA_AD_RV_v1_1 --> 2.16.76.1.7.1.3.1.1 // PA_AD_RV_v2_0 --> 2.16.76.1.7.1.3.2 // PA_AD_RV_v2_1 --> 2.16.76.1.7.1.3.2.1 // PA_AD_RV_v2_2 --> 2.16.76.1.7.1.3.2.2 // PA_AD_RV_v2_3 --> 2.16.76.1.7.1.3.2.3 // Set the policy OID and the profile name jsonSigningAttrs.UpdateString("policyId.id","2.16.76.1.7.1.1.2.3"); jsonSigningAttrs.UpdateString("policyId.profile","PA_AD_RB_v2_3"); crypt.put_SigningAttributes(jsonSigningAttrs.emit()); // The Brazil government validator requires the ASN.1 data to be in "constructed octets" form.. crypt.put_UncommonOptions("UseConstructedOctets,OmitAlgorithmIdNull"); crypt.put_IncludeCertChain(false); // Sign. success = crypt.OpaqueSignBd(bd); if (success == false) { std::cout << crypt.lastErrorText() << "\r\n"; return; } // Save to a .p7s success = bd.WriteFile("qa_output/helloWorld.pdf.p7s"); std::cout << "Success" << "\r\n"; } |
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