Ralph E. Griswold

46 papers A* 3Journal 32Unranked 10
YearRankTypeTitle / Venue / Authors
1995 J jnl
Softw. Pract. Exp.
Clinton L. Jeffery, Ralph E. Griswold, Gregg M. Townsend
1994 J jnl
Softw. Pract. Exp.
Clinton L. Jeffery, Ralph E. Griswold
1994 A* conf
ACM Symposium on User Interface Software and Technology
Ralph E. Griswold, Clinton L. Jeffery
1993 J jnl
Comput. Lang.
Janalee O'Bagy, Kenneth Walker, Ralph E. Griswold
1993 conf
HOPL Preprints
Ralph E. Griswold, Madge T. Griswold
1992 J jnl
Softw. Pract. Exp.
Kenneth Walker, Ralph E. Griswold
1992 J jnl
LOPLAS
Kenneth Walker, Ralph E. Griswold
1990 J jnl
Comput. J.
Ralph E. Griswold
1989 J jnl
Comput. Syst.
Ralph E. Griswold
1988 J jnl
Comput. J.
Ralph E. Griswold
1988 J jnl
Comput. Lang.
Ralph E. Griswold, Janalee O'Bagy
1987 A* conf
PLDI
Janalee O'Bagy, Ralph E. Griswold
1985 J jnl
ACM SIGPLAN Notices
Ralph E. Griswold
1984 conf
LISP and Functional Programming
Ralph E. Griswold
1984 ch.
Implementations of Prolog
Ralph E. Griswold
1983 J jnl
Comput. J.
Stephen B. Wampler, Ralph E. Griswold
1983 J jnl
Comput. Lang.
Ralph E. Griswold
1983 J jnl
IEEE Trans. Software Eng.
Cary A. Coutant, Ralph E. Griswold, David R. Hanson
1983 J jnl
Comput. J.
Ralph E. Griswold, Michael Novak
1983 J jnl
Comput. Lang.
Stephen B. Wampler, Ralph E. Griswold
1983 J jnl
Softw. Pract. Exp.
Stephen B. Wampler, Ralph E. Griswold
1982 J jnl
Softw. Pract. Exp.
Ralph E. Griswold
1982 J jnl
ACM Trans. Program. Lang. Syst.
Ralph E. Griswold
1981 J jnl
ACM Trans. Program. Lang. Syst.
Ralph E. Griswold, David R. Hanson, John T. Korb
1980 J jnl
ACM Trans. Program. Lang. Syst.
Ralph E. Griswold, David R. Hanson
1980 J jnl
Softw. Pract. Exp.
Ralph E. Griswold
1980 J jnl
Comput. J.
Ralph E. Griswold
1979 conf
ACM Annual Conference
Ralph E. Griswold
1979 J jnl
ACM SIGPLAN Notices
Ralph E. Griswold, David R. Hanson, John T. Korb
1978 conf
HOPL
Ralph E. Griswold
1978 J jnl
ACM SIGPLAN Notices
Ralph E. Griswold
1978 J jnl
IEEE Trans. Software Eng.
G. David Ripley, Ralph E. Griswold, David R. Hanson
1978 J jnl
Commun. ACM
David R. Hanson, Ralph E. Griswold
1978 conf
HOPL
Ralph E. Griswold
1977 J jnl
ACM SIGPLAN Notices
Ralph E. Griswold, David R. Hanson
1977 conf
Artificial Intelligence and Programming Languages
Ralph E. Griswold, David R. Hanson
1976 A* conf
POPL
Dianne E. Britton, Frederick C. Druseikis, Ralph E. Griswold, David R. Hanson, Richard A. Holmes
1976 conf
ACM Annual Conference
Ralph E. Griswold, Harald Ganzinger, Bill P. Buckles, G. C. Hintze, Ken De Jong
1976 conf
ACM Annual Conference
Ralph E. Griswold
1975 J jnl
Softw. Pract. Exp.
Ralph E. Griswold
1975 conf
ACM Annual Conference
Ralph E. Griswold
1975 J jnl
ACM SIGPLAN Notices
G. David Ripley, Ralph E. Griswold
1974 J jnl
IEEE Trans. Computers
Ralph E. Griswold
1974 conf
AFIPS National Computer Conference
Ralph E. Griswold, James F. Gimpel, Robert B. K. Dewar, Paul J. Santos, David R. Hanson
1974 J jnl
ACM SIGPLAN Notices
Ralph E. Griswold
1964 J jnl
J. ACM
David J. Farber, Ralph E. Griswold, I. P. Polonsky
redb/extractors/decompiler/_archive/GhidraDecompilerScript-latest.java
← Index redb/extractors/decompiler/_archive/GhidraDecompilerScript-latest.java java
import ghidra.app.script.GhidraScript;
import ghidra.program.model.listing.*;
import ghidra.app.decompiler.*;
import ghidra.program.model.block.*;
import ghidra.program.model.symbol.*;
import ghidra.program.model.pcode.*;
import ghidra.program.model.address.*;
import org.json.JSONObject;
import org.json.JSONArray;
import java.security.MessageDigest;
import java.nio.charset.StandardCharsets;

public class GhidraDecompilerScript extends GhidraScript {
    private DecompInterface decompInterface;
    private BasicBlockModel basicBlockModel;
    
    @Override
    public void run() throws Exception {
        // Get binary hash and filepath from arguments
        String[] args = getScriptArgs();
        if (args.length < 2) {
            System.err.println("{\"error\": \"Both SHA256 and filepath arguments are required\"}");
            return;
        }
        String sha256 = args[0];
        String filepath = args[1];

        // Initialize analysis components
        setupDecompiler();
        basicBlockModel = new BasicBlockModel(currentProgram);

        // Create the main JSON object for output
        JSONObject output = new JSONObject();
        output.put("sha256", sha256);
        output.put("decompiled", new JSONArray());
        output.put("disassembled", new JSONArray());
        output.put("cfg", new JSONArray());

        // Process all functions
        FunctionIterator functions = currentProgram.getFunctionManager().getFunctions(true);
        for (Function function : functions) {
            processFunction(function, output);
        }

        // Output the final JSON to stdout
        System.out.println(output.toString());
    }

    private void setupDecompiler() {
        decompInterface = new DecompInterface();
        DecompileOptions options = new DecompileOptions();
        decompInterface.setOptions(options);
        decompInterface.openProgram(currentProgram);
    }

    private void processFunction(Function function, JSONObject output) {
        Address entry = function.getEntryPoint();
        String functionName = function.getName();
        String functionAddress = entry.toString();

        // Process decompiled code
        processDecompiledCode(function, output.getJSONArray("decompiled"), 
                            functionName, functionAddress);

        // Process disassembled code
        processDisassembledCode(function, output.getJSONArray("disassembled"), 
                              functionName, functionAddress);

        // Process CFG
        processCFG(function, output.getJSONArray("cfg"), functionAddress);
    }

    private void processDecompiledCode(Function function, JSONArray decompArray, 
                                     String functionName, String functionAddress) {
        DecompileResults results = decompInterface.decompileFunction(function, 30, monitor);
        if (results.decompileCompleted()) {
            String decompiledCode = results.getDecompiledFunction().getC();
            String contentHash = calculateHash(decompiledCode);

            JSONObject functionObj = new JSONObject();
            functionObj.put("decompiled_content_hash", contentHash);
            functionObj.put("decompiled_function_name", functionName);
            functionObj.put("decompiled_function_address", functionAddress);
            functionObj.put("decompiled_function", decompiledCode);
            
            decompArray.put(functionObj);
        }
    }

    private void processDisassembledCode(Function function, JSONArray disasmArray, 
                                       String functionName, String functionAddress) {
        try {
            StringBuilder disassembly = new StringBuilder();
            StringBuilder normalized = new StringBuilder();
            int instructionCount = 0;

            Listing listing = currentProgram.getListing();
            AddressSetView functionBody = function.getBody();
            InstructionIterator instructions = listing.getInstructions(functionBody, true);

            while (instructions.hasNext()) {
                try {
                    Instruction instr = instructions.next();
                    String disasmLine = instr.toString();
                    disassembly.append(disasmLine).append("\n");
                    normalized.append(normalizeInstruction(disasmLine)).append("\n");
                    instructionCount++;
                } catch (Exception e) {
                    System.err.println("Error processing instruction in " + functionName + ": " + e.getMessage());
                }
            }

            String disassembledCode = disassembly.toString();
            String contentHash = calculateHash(disassembledCode);

            JSONObject functionObj = new JSONObject();
            functionObj.put("disassembled_content_hash", contentHash);
            functionObj.put("disassembled_function_name", functionName);
            functionObj.put("disassembled_function_address", functionAddress);
            functionObj.put("disassembled_function", disassembledCode);
            functionObj.put("normalized_disassembly", normalized.toString());
            functionObj.put("instruction_count", instructionCount);

            // Set similarity-related fields to null for now
            functionObj.put("minhash_signature", JSONObject.NULL);
            functionObj.put("opcode_frequency_vector", JSONObject.NULL);
            functionObj.put("api_calls_vector", JSONObject.NULL);
            functionObj.put("instruction_embedding", JSONObject.NULL);

            disasmArray.put(functionObj);
        } catch (Exception e) {
            System.err.println("Error processing disassembly for " + functionName + ": " + e.getMessage());
        }
    }

    private void processCFG(Function function, JSONArray cfgArray, String functionAddress) {
        try {
            CodeBlockIterator blocks = basicBlockModel.getCodeBlocksContaining(
                function.getBody(), monitor);

            while (blocks.hasNext()) {
                CodeBlock block = blocks.next();
                String blockInstructions = getBlockInstructions(block);
                String blockId = calculateHash(blockInstructions);

                JSONObject blockObj = new JSONObject();
                blockObj.put("block_id", blockId);
                blockObj.put("function_address", functionAddress);
                blockObj.put("block_instructions", blockInstructions);

                // Get successor blocks
                CodeBlockReferenceIterator successors = block.getDestinations(monitor);
                JSONArray successorAddresses = new JSONArray();
                while (successors.hasNext()) {
                    CodeBlockReference ref = successors.next();
                    successorAddresses.put(ref.getDestinationAddress().toString());
                }
                blockObj.put("successor_blocks", successorAddresses);

                cfgArray.put(blockObj);
            }
        } catch (Exception e) {
            System.err.println("{\"error\": \"Error processing CFG: " + 
                             e.getMessage().replace("\"", "'") + "\"}");
        }
    }

    private String normalizeInstruction(String instruction) {
        return instruction.replaceAll("0x[0-9a-fA-F]+", "IMM")
                        .replaceAll("\\b\\d+\\b", "NUM");
    }

    private String getBlockInstructions(CodeBlock block) {
        StringBuilder instructions = new StringBuilder();
        AddressIterator addresses = block.getAddresses(true);
        while (addresses.hasNext()) {
            Address addr = addresses.next();
            Instruction instr = currentProgram.getListing().getInstructionAt(addr);
            if (instr != null) {
                instructions.append(instr.toString()).append("\n");
            }
        }
        return instructions.toString();
    }

    private String calculateHash(String content) {
        try {
            MessageDigest digest = MessageDigest.getInstance("SHA-256");
            byte[] hash = digest.digest(content.getBytes(StandardCharsets.UTF_8));
            StringBuilder hexString = new StringBuilder();
            for (byte b : hash) {
                hexString.append(String.format("%02x", b));
            }
            return hexString.toString();
        } catch (Exception e) {
            System.err.println("{\"error\": \"Error calculating hash\"}");
            return "";
        }
    }
}