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(Node.js) Get Certificate As XML (and gets Signature Algorithm Identifier)Demonstrates how to convert a certificate to XML such that the contents can easily be identified and accessed. Typically, the Chilkat Cert API provides properties and methods to access the most commonly needed pieces of information from a certificate. If a bit of information is not readily available then it can likely be retrieved from the XML representation. One such case is the certificate's signature algorithm identifier. The basic internal format of a certificate is as follows (from section 4.1 of RFC 5280). Certificate ::= SEQUENCE { tbsCertificate TBSCertificate, signatureAlgorithm AlgorithmIdentifier, signatureValue BIT STRING } TBSCertificate ::= SEQUENCE { version [0] EXPLICIT Version DEFAULT v1, serialNumber CertificateSerialNumber, signature AlgorithmIdentifier, issuer Name, validity Validity, subject Name, subjectPublicKeyInfo SubjectPublicKeyInfo, issuerUniqueID [1] IMPLICIT UniqueIdentifier OPTIONAL, subjectUniqueID [2] IMPLICIT UniqueIdentifier OPTIONAL, -- If present, version MUST be v2 or v3 extensions [3] EXPLICIT Extensions OPTIONAL -- If present, version MUST be v3 } Chilkat does not expect you to fully understand this notation and structure, but you can see that at a high level, the certificate is a sequence of three things, one after the other (a TBSCertifciate, an AlgorithmIdentifier, and a BIT STRING that is the signature). In XML format, it will look like this: <sequence> <sequence> TBSCertificate goes here... </sequence> <sequence> <oid>1.2.840.113549.1.1.11</oid> <null /> </sequence> <bits n="2048">3D20E895... 8DA307EC</bits> </sequence> The "oid" specifies the signature algorithm (such as sha256RSA), but it is an OID. In this case, the OID "1.2.840.113549.1.1.11" indicates "sha256WithRSAEncryption". (Google "1.2.840.113549.1.1.11" and you will find the 1st search result is http://www.alvestrand.no/objectid/1.2.840.113549.1.1.11.html. You can lookup any OID this way, to see what it means.)
var os = require('os'); if (os.platform() == 'win32') { if (os.arch() == 'ia32') { var chilkat = require('@chilkat/ck-node21-win-ia32'); } else { var chilkat = require('@chilkat/ck-node21-win64'); } } else if (os.platform() == 'linux') { if (os.arch() == 'arm') { var chilkat = require('@chilkat/ck-node21-arm'); } else if (os.arch() == 'x86') { var chilkat = require('@chilkat/ck-node21-linux32'); } else { var chilkat = require('@chilkat/ck-node21-linux64'); } } else if (os.platform() == 'darwin') { if (os.arch() == 'arm64') { var chilkat = require('@chilkat/ck-node21-mac-m1'); } else { var chilkat = require('@chilkat/ck-node21-macosx'); } } function chilkatExample() { // This example assumes the Chilkat API to have been previously unlocked. // See Global Unlock Sample for sample code. var socket = new chilkat.Socket(); var useTls = true; var maxWaitMillisec = 20000; var tlsServerHost = "www.google.com"; var success = socket.Connect(tlsServerHost,443,useTls,maxWaitMillisec); if (success !== true) { console.log(socket.LastErrorText); return; } // cert: Cert var cert = socket.GetSslServerCert(); if (socket.LastMethodSuccess !== true) { console.log(socket.LastErrorText); return; } // Close the connection with the server // Wait a max of 20 millsec for a clean TLS shutdown. socket.Close(20); // Examine the server cert in XML format var certXml = cert.ExportCertXml(); console.log(certXml); // Let's parse the XML to get the signature algorithm identifier. var xml = new chilkat.Xml(); xml.LoadXml(certXml); // The 2nd child is at index 1. // algId: Xml var algId = xml.GetChild(1); var oid = algId.GetChildContent("oid"); console.log("Signature Algorithm OID = " + oid); } chilkatExample(); |
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