Irem Y. Tumer

28 papers B 1Journal 20Unranked 7
YearRankTypeTitle / Venue / Authors
2021 conf
HCI (16)
H. Onan Demirel, Lukman Irshad, Salman Ahmed, Irem Y. Tumer
2021 J jnl
J. Comput. Inf. Sci. Eng.
H. Onan Demirel, Lukman Irshad, Salman Ahmed, Irem Y. Tumer
2021 J jnl
J. Aerosp. Inf. Syst.
Daniel E. Hulse, Arpan Biswas, Christopher Hoyle, Irem Y. Tumer, Chetan S. Kulkarni, Kai Goebel
2020 J jnl
J. Comput. Inf. Sci. Eng.
Lukman Irshad, H. Onan Demirel, Irem Y. Tumer
2019 conf
HCI (16)
Salman Ahmed, Lukman Irshad, H. Onan Demirel, Irem Y. Tumer
2019 J jnl
J. Comput. Inf. Sci. Eng.
Lukman Irshad, Salman Ahmed, H. Onan Demirel, Irem Y. Tumer
2019 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Daniel E. Hulse, Kagan Tumer, Christopher Hoyle, Irem Y. Tumer
2018 J jnl
J. Comput. Inf. Sci. Eng.
Nicolás F. Soria Zurita, Mitchell K. Colby, Irem Y. Tumer, Christopher Hoyle, Kagan Tumer
2016 J jnl
Syst. Eng.
Hoda Mehrpouyan, Dimitra Giannakopoulou, Guillaume Brat, Irem Y. Tumer, Chris Hoyle
2016 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Matthew G. McIntire, Christopher Hoyle, Irem Y. Tumer, David C. Jensen
2015 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Hoda Mehrpouyan, Brandon Haley, Andy Dong, Irem Y. Tumer, Christopher Hoyle
2014 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Irem Y. Tumer, Kemper Lewis
2014 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
David C. Jensen, Oladapo Bello, Christopher Hoyle, Irem Y. Tumer
2013 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Chetan Mutha, David C. Jensen, Irem Y. Tumer, Carol S. Smidts
2013 conf
CSER
Chuck Hsiao, Richard J. Malak, Irem Y. Tumer, Toni L. Doolen
2013 conf
CSER
David C. Jensen, Irem Y. Tumer
2013 J jnl
CoRR
Dharshana Kasthurirathna, Andy Dong, Mahendra Piraveenan, Irem Y. Tumer
2012 J jnl
Int. J. Comput. Aided Eng. Technol.
Ryan S. Hutcheson, Daniel A. McAdams, Irem Y. Tumer
2012 J jnl
Artif. Intell. Eng. Des. Anal. Manuf.
Douglas L. Van Bossuyt, Chris Hoyle, Irem Y. Tumer, Andy Dong
2012 J jnl
J. Comput. Inf. Sci. Eng.
Nikolaos Papakonstantinou, Seppo A. Sierla, David C. Jensen, Irem Y. Tumer
2011 conf
AAAI Spring Symposium: Artificial Intelligence and Sustainable Design
Karl R. Haapala, Kerry R. Poppa, Robert B. Stone, Irem Y. Tumer
2011 J jnl
IEEE Trans. Computers
Irem Y. Tumer, Carol S. Smidts
2011 J jnl
J. Comput. Inf. Sci. Eng.
Caroline C. Hayes, Ashok K. Goel, Irem Y. Tumer, Alice M. Agogino, William C. Regli
2009 J jnl
IEEE Trans. Robotics
Nina Patarinsky Robson, J. Michael McCarthy, Irem Y. Tumer
2009 J jnl
J. Comput. Inf. Sci. Eng.
Christopher Hoyle, Irem Y. Tumer, Alexander F. Mehr, Wei Chen
2007 conf
COMPSAC (1)
Jayson P. Vucovich, Robert B. Stone, Xiaoqing Frank Liu, Irem Y. Tumer
2005 B conf
SMC
Francesca A. Barrientos, Elin Rønby Pedersen, Irem Y. Tumer
2003 conf
Multiple Classifier Systems
Nikunj C. Oza, Kagan Tumer, Irem Y. Tumer, Edward M. Huff
tests/scripts/test_linking.py
← Index tests/scripts/test_linking.py python
#!/usr/bin/env python3
"""
Test script to verify the linking between decompiled and disassembled functions.
"""

import sys
import os
from pathlib import Path

# Add the redb directory to the path
sys.path.insert(0, str(Path(__file__).parent / "redb"))

from redb.extractors.decompiler.DecompileBinja import DecompileBinja
import logging

def test_linking():
    """Test that decompiled and disassembled functions are properly linked."""
    
    # Setup logging
    logging.basicConfig(level=logging.INFO)
    logger = logging.getLogger("test_linking")
    
    # Use a simple test binary (you'll need to provide a path to a test binary)
    test_binary = "test_files/hello"  # Adjust this path as needed
    
    if not os.path.exists(test_binary):
        print(f"Test binary not found: {test_binary}")
        print("Please provide a valid binary path for testing")
        return False
    
    try:
        # Create and run the extractor
        with DecompileBinja(test_binary, logger) as extractor:
            success = extractor.extract()
            
            if not success:
                print("Extraction failed")
                return False
            
            # Get the analysis results
            results = extractor.analysis_results
            
            if not results:
                print("No analysis results")
                return False
            
            print(f"Analysis completed successfully")
            print(f"Decompiled functions: {len(results['decompiled'])}")
            print(f"Disassembled functions: {len(results['disassembled'])}")
            
            # Test linking
            linking_issues = []
            linked_pairs = 0
            decompiled_only = 0
            disassembled_only = 0
            
            # Check decompiled functions have proper linking
            for decomp_func in results['decompiled']:
                decomp_hash = decomp_func.get('decompiled_function_hash')
                disasm_hash = decomp_func.get('disassembled_function_hash')
                
                if disasm_hash is None:
                    decompiled_only += 1
                    print(f"⚠️  Decompiled function {decomp_func.get('decompiled_function_name')} has no disassembled link (decompiled-only)")
                else:
                    linked_pairs += 1
                    print(f"✓ Decompiled function {decomp_func.get('decompiled_function_name')} linked to disassembled hash: {disasm_hash[:16]}...")
            
            # Check disassembled functions have proper linking
            for disasm_func in results['disassembled']:
                disasm_hash = disasm_func.get('disassembled_function_hash')
                decomp_hash = disasm_func.get('decompiled_function_hash')
                
                if decomp_hash is None:
                    disassembled_only += 1
                    print(f"⚠️  Disassembled function {disasm_func.get('disassembled_function_name')} has no decompiled link (disassembled-only)")
                else:
                    print(f"✓ Disassembled function {disasm_func.get('disassembled_function_name')} linked to decompiled hash: {decomp_hash[:16]}...")
            
            # Verify cross-references are consistent
            decompiled_hashes = {f['decompiled_function_hash']: f for f in results['decompiled']}
            disassembled_hashes = {f['disassembled_function_hash']: f for f in results['disassembled']}
            
            for decomp_func in results['decompiled']:
                decomp_hash = decomp_func.get('decompiled_function_hash')
                disasm_hash = decomp_func.get('disassembled_function_hash')
                
                if disasm_hash and disasm_hash in disassembled_hashes:
                    corresponding_disasm = disassembled_hashes[disasm_hash]
                    if corresponding_disasm.get('decompiled_function_hash') != decomp_hash:
                        linking_issues.append(f"Inconsistent linking: decompiled {decomp_hash[:16]}... -> disassembled {disasm_hash[:16]}... but reverse link doesn't match")
            
            # Summary
            print(f"\n📊 Linking Summary:")
            print(f"  - Linked function pairs: {linked_pairs}")
            print(f"  - Decompiled-only functions: {decompiled_only}")
            print(f"  - Disassembled-only functions: {disassembled_only}")
            print(f"  - Total functions processed: {len(results['decompiled']) + len(results['disassembled'])}")
            
            if linking_issues:
                print(f"\n❌ Linking issues found:")
                for issue in linking_issues:
                    print(f"  - {issue}")
                return False
            else:
                print(f"\n✅ All linking tests passed!")
                print(f"✅ Cross-references are consistent!")
                return True
                
    except Exception as e:
        print(f"Test failed with exception: {e}")
        return False

if __name__ == "__main__":
    success = test_linking()
    sys.exit(0 if success else 1)