Superlend avatar

Superlend

Official

@superlend

0Followers
|
20Public Repos
|
48Published Skills

1inch for lending & borrowing

Skills Distribution
DomainCybersecurit...Smart Contract Sec.. (40%)Fuzzing & Memory S.. (30%)Static Analysis & .. (30%)

Agent Skills by Superlend

Showing 48 vetted skills indexed across 1 GitHub repositories.

SuperlendSuperlend

dwarf-expert

Explain and analyze DWARF debug information in compiled binaries.

Official
Advanced
SuperlendSuperlend

ask-questions-if-underspecified

Clarify underspecified requirements by asking 1-5 essential questions before execution.

Official
Basic
SuperlendSuperlend

interpreting-culture-index

Extract trait distances from Culture Index arrows to interpret driver patterns.

Official
Advanced
SuperlendSuperlend

audit-context-building

Inspects code line-by-line to build a persistent mental model for security audits.

Official
Advanced
SuperlendSuperlend

claude-in-chrome-troubleshooting

Diagnose and fix Chrome MCP extension connectivity by reconfiguring native hosts.

Official
Advanced
SuperlendSuperlend

entry-point-analyzer

Identify state-changing entry points in smart contract codebases.

Official
Advanced
SuperlendSuperlend

semgrep-rule-creator

Generate Semgrep rules with tests and validate via semgrep --test.

Official
Intermediate
SuperlendSuperlend

constant-time-analysis

Detect timing side-channel vulnerabilities in compiled assembly and bytecode outputs.

Official
Advanced
SuperlendSuperlend

property-based-testing

Detect patterns and generate property-based tests across Python, JavaScript, Rust, Go, Java, Scala, and Solidity.

Official
Intermediate
SuperlendSuperlend

differential-review

Analyze code diffs for security risks and generate markdown audit reports.

Official
Advanced
SuperlendSuperlend

insecure-defaults

Detect fail-open insecure defaults in application configurations and IaC.

Official
Basic
SuperlendSuperlend

variant-analysis

Locate vulnerability variants across codebases using pattern-based analysis.

Official
Advanced
SuperlendSuperlend

firebase-apk-scanner

Detect Firebase security misconfigurations in Android APKs.

Official
Advanced
SuperlendSuperlend

fix-review

Analyze commit changes to verify security audit remediation and generate fix-review reports.

Official
Intermediate
SuperlendSuperlend

spec-to-code-compliance

Compare blockchain protocol specifications against smart contract implementations.

Official
Advanced
SuperlendSuperlend

sharp-edges

Identify security-footgun patterns in APIs and configuration schemas.

Official
Advanced
SuperlendSuperlend

modern-python

Configure Python projects with pyproject.toml, uv, ruff, and ty.

Official
Advanced
SuperlendSuperlend

semgrep

Automate fast security scanning of source code with Semgrep.

Official
Intermediate
SuperlendSuperlend

sarif-parsing

Parse SARIF 2.1.0 files and extract structured findings for reporting.

Official
Intermediate
SuperlendSuperlend

codeql

Detect security vulnerabilities in code using CodeQL queries.

Official
Advanced
SuperlendSuperlend

address-sanitizer

Detect memory safety errors in C/C++ fuzzing with AddressSanitizer instrumentation.

Official
Intermediate
SuperlendSuperlend

harness-writing

Create fuzzing harnesses with LLVMFuzzerTestOneInput and FuzzedDataProvider for C/C++, Rust, and Go.

Official
Advanced
SuperlendSuperlend

aflpp

Automate fuzz testing of C/C++ codebases with AFL++ across multiple cores.

Official
Advanced
SuperlendSuperlend

libfuzzer

Run coverage-guided fuzzing for C/C++ projects with LLVM's libFuzzer.

Official
Advanced

Frequently Asked Questions About Superlend

FAQPage Schema
What specific security tasks can be performed using these capabilities?▼

These capabilities enable automated vulnerability scanning for blockchain protocols, memory safety error detection in compiled binaries, and the generation of security audit reports. You can perform coverage-guided fuzzing, static analysis rule creation, and smart contract maturity assessments across multiple ecosystems including Solana, Algorand, and StarkNet.

Which technical personas benefit most from these security modules?▼

Security researchers, smart contract engineers, and protocol developers benefit most from these modules. The expertise is tailored for professionals conducting deep-dive code audits, implementing secure development lifecycles, or hardening cryptographic implementations against timing side-channel attacks and memory corruption vulnerabilities.

What are the primary prerequisites for running these security analysis modules?▼

Execution requires a local environment configured for static analysis and fuzzing, typically involving LLVM, Semgrep, and language-specific build systems like Cargo or Anchor. Users must provide source code, build artifacts, or protocol specifications to enable the analysis engines to generate actionable security findings and remediation reports.