mirror of
https://github.com/SHOGGOTH-SECTOR/sica-fondt.git
synced 2026-08-01 08:30:20 +00:00
Place useful parts of the surrounding repos into sica-fondt by layer, per the
body model (Ada = membrane; brain/endocrine/capabilities/knowledge non-Ada):
- brain/ LLM reasoning + providers (dapr, hermes, MoMoA)
- capabilities/ REPRAG sidecars: hermes tools/skills, dapr tools, parallel
dispatch, A51 channels, and the OSINT cluster
- knowledge/ LORAG corpus: 754 cyber-skills, agency personas, secure-coding,
MITRE ATT&CK data
- reference/ defensive threat-reference (C3, shhbruh doc) + AdaYaml parser
License handling: AGPL sources (worldosint, advanced_evolution, mercury,
Reticulum) and GPL DeTTECT are SPEC-only clean-room/port descriptions — no
copyleft code copied. MIT/Apache/data parts copied as working trees.
Safety: shhbruh escape/persistence material and C3 covert-C2 kept as reference
only, not wired into the running organism. See CONSOLIDATION.md.
https://claude.ai/code/session_01UehUqEXXJJCsHoA4voCU5c
118 lines
3.1 KiB
Markdown
118 lines
3.1 KiB
Markdown
# API Reference: Packed Malware and UPX Analysis
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## UPX - Ultimate Packer for eXecutables
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### Syntax
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```bash
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upx -d <packed_file> # Decompress/unpack
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upx -d -o <output> <packed_file> # Unpack to new file
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upx -t <file> # Test if packed
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upx -l <file> # List compression info
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upx --version # Version info
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```
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### Output Format
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```
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File size Ratio Format Name
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-------------------- ------ ----------- -----------
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184320 <- 98304 53.33% win32/pe malware.exe
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```
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## pefile - Python PE Analysis
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### Usage
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```python
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import pefile
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pe = pefile.PE("sample.exe")
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# Section analysis
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for section in pe.sections:
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name = section.Name.rstrip(b"\x00").decode()
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entropy = section.get_entropy()
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print(f"{name}: entropy={entropy:.2f}")
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# Import analysis
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for entry in pe.DIRECTORY_ENTRY_IMPORT:
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dll = entry.dll.decode()
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for imp in entry.imports:
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print(f"{dll}: {imp.name}")
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pe.close()
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```
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### Packing Indicators
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| Indicator | Threshold |
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|-----------|-----------|
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| Section entropy | > 7.0 (high, likely packed/encrypted) |
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| Import count | < 10 (few imports suggest packing) |
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| Virtual/Raw ratio | > 5x (large in-memory expansion) |
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| Section names | UPX0, UPX1, .packed, .nsp |
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## Detect It Easy (DIE) - Packer Identification
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### Syntax
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```bash
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diec <sample.exe> # CLI scan
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diec -j <sample.exe> # JSON output
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```
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### Output
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```
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PE32 executable
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Packer: UPX(3.96)[NRV2B_LE32,best]
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Compiler: MSVC(2019)
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```
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## PEiD - Packer Identification (Legacy)
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### Packer Signatures Database
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| Packer | Section Names | Magic Bytes |
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|--------|---------------|-------------|
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| UPX | UPX0, UPX1, UPX2 | `UPX!` at end of file |
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| ASPack | .aspack, .adata | N/A |
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| PECompact | .pec1, .pec2 | N/A |
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| Themida | Various | Encrypted sections |
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| VMProtect | .vmp0, .vmp1 | Virtualized code |
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## PEStudio - Static PE Analysis
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### Key Indicators
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| Check | Description |
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|-------|-------------|
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| Entropy | Section-level entropy analysis |
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| Imports | API import analysis |
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| Strings | Embedded string extraction |
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| Signatures | Packer/compiler identification |
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| Virustotal | Hash-based lookup |
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## x64dbg / x32dbg - Dynamic Unpacking
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### Generic Unpacking Steps
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```
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1. Set breakpoint on VirtualAlloc / VirtualProtect
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2. Run until breakpoint
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3. Check memory map for new RWX regions
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4. Step until original entry point (OEP) reached
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5. Dump memory at OEP using Scylla plugin
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6. Fix import table with Scylla
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```
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### Key API Breakpoints
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| API | Purpose |
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|-----|---------|
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| `VirtualAlloc` | Memory allocation for unpacked code |
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| `VirtualProtect` | Change memory protection (RWX) |
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| `LoadLibraryA` | Load DLLs for import resolution |
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| `GetProcAddress` | Resolve API addresses |
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| `NtWriteVirtualMemory` | Write unpacked code to memory |
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## Entropy Interpretation
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| Range | Interpretation |
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|-------|---------------|
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| 0-1 | Nearly empty/uniform data |
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| 1-5 | Normal code/data |
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| 5-7 | Compressed or obfuscated |
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| 7-8 | Encrypted or packed (maximum ~8.0) |
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