Agent skill

Agent Benchmark Suite

by ruvnet in ruvnet/ruflo

Agent skill for benchmark-suite - invoke with $agent-benchmark-suite

MITAuto-check passedAgent Workflows

Install Agent Benchmark Suite

skills CLI
$ npx skills add ruvnet/ruflo --skill agent-benchmark-suite -a claude-code

Project install by default; add -g for ~/.claude/skills/.

GitHub CLI
$ gh skill install ruvnet/ruflo agent-benchmark-suite --agent claude-code

Project scope by default; add --scope user for a personal install. Needs GitHub CLI 2.90.0 or later (public preview).

Manual copy
$ git clone --depth 1 https://github.com/ruvnet/ruflo.git skills-src && mkdir -p .claude/skills && cp -r skills-src/.agents/skills/agent-benchmark-suite .claude/skills/agent-benchmark-suite && rm -rf skills-src

Use ~/.claude/skills/ instead of .claude/skills for a personal install. The folder must contain SKILL.md.

Claude Code skills documentation · loads skills from .claude/skills/

Facts

Skill name
agent-benchmark-suite
GitHub stars
74k
Used in
2 other repos
Token cost
~4.9k tokens
SKILL.md length
159 words
Files
1
Skills in repo
264
Repo updated
First seen
Licence
MIT

At a glance

Agent skill for benchmark-suite - invoke with $agent-benchmark-suite

  • Works in 4 steps: Comprehensive Benchmarking Framework → Performance Regression Detection → Automated Performance Testing → …
  • Tasks that involve Agent evaluation and testing
  • SKILL.md covers Agent Profile, Core Capabilities, MCP Integration Hooks and Operational Commands, plus 2 more sections
  • Calls npx

What it does

Agent Benchmark Suite is an agent skill from ruvnet/ruflo. Agent skill for benchmark-suite - invoke with $agent-benchmark-suite

Its SKILL.md is about 4.9k tokens, which your agent loads only when the skill is triggered. It is a single SKILL.md file with no bundled scripts.

It sits in Agent Workflows, covering Agent evaluation and testing. The repository describes itself as: 🌊 The original agent harness. Deploy intelligent multi-player swarms, coordinate autonomous workflows, and build conversational AI systems. Features adaptive memory…. The licence is MIT.

When your agent uses it

  • Tasks that involve Agent evaluation and testing

Example prompts

  • “/agent-benchmark-suite”

Workflow steps

4 steps, taken from the step headings in SKILL.md.

  1. Comprehensive Benchmarking Framework
  2. Performance Regression Detection
  3. Automated Performance Testing
  4. Performance Validation Framework

What it can do on your machine

Read from SKILL.md and the folder at commit 6051f67. It shows what the files ask for, not the result of running them.

  • Tool permissions

    Pre-approves nothing: there is no allowed-tools line, so your agent's usual permission prompts apply.

    From allowed-tools in the SKILL.md frontmatter.

  • Runs code

    Shell commands in SKILL.md call:

    • npx

    From the folder's file list and the shell code blocks in SKILL.md.

  • Network

    No URLs in SKILL.md. Its commands use npx, which can reach the network depending on how they are called.

    From URLs in SKILL.md, links to its own repository left out.

  • Credentials

    Names no API keys, tokens, secrets or passwords.

    From names ending in _API_KEY, _TOKEN, _SECRET, _KEY or _PASSWORD in SKILL.md.

Context cost

Agent Benchmark Suite loads about 4.9k tokens when it runs. Until then it costs about 23 tokens; SKILL.md has 159 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~23
When it runs · the whole SKILL.md, loaded when a task matches
~4.9k

Estimates: characters ÷ 4, the usual rule of thumb; real counts depend on the model's tokenizer. Scripts and assets cost tokens only if the agent reads them.

Safety

Auto-check passed

The automated check found no risky patterns in SKILL.md.

Automated static check — not a guarantee. Review scripts before installing. It scans the text of SKILL.md for risky patterns (piping downloads into a shell, reading credential files, hidden Unicode, destructive commands); files beside SKILL.md are not scanned.

SKILL.md

The full file from ruvnet/ruflo at commit 6051f67, republished under its MIT licence (© ruvnet). 159 words, ~4,934 tokens.

Download SKILL.mdSave it as .claude/skills/agent-benchmark-suite/SKILL.md (or your agent's skills folder).
name
agent-benchmark-suite
description
Agent skill for benchmark-suite - invoke with $agent-benchmark-suite

name: Benchmark Suite type: agent category: optimization description: Comprehensive performance benchmarking, regression detection and performance validation

Benchmark Suite Agent

Agent Profile

  • Name: Benchmark Suite
  • Type: Performance Optimization Agent
  • Specialization: Comprehensive performance benchmarking and testing
  • Performance Focus: Automated benchmarking, regression detection, and performance validation

Core Capabilities

1. Comprehensive Benchmarking Framework
javascript
// Advanced benchmarking system
class ComprehensiveBenchmarkSuite {
  constructor() {
    this.benchmarks = {
      // Core performance benchmarks
      throughput: new ThroughputBenchmark(),
      latency: new LatencyBenchmark(),
      scalability: new ScalabilityBenchmark(),
      resource_usage: new ResourceUsageBenchmark(),
      
      // Swarm-specific benchmarks
      coordination: new CoordinationBenchmark(),
      load_balancing: new LoadBalancingBenchmark(),
      topology: new TopologyBenchmark(),
      fault_tolerance: new FaultToleranceBenchmark(),
      
      // Custom benchmarks
      custom: new CustomBenchmarkManager()
    };
    
    this.reporter = new BenchmarkReporter();
    this.comparator = new PerformanceComparator();
    this.analyzer = new BenchmarkAnalyzer();
  }
  
  // Execute comprehensive benchmark suite
  async runBenchmarkSuite(config = {}) {
    const suiteConfig = {
      duration: config.duration || 300000, // 5 minutes default
      iterations: config.iterations || 10,
      warmupTime: config.warmupTime || 30000, // 30 seconds
      cooldownTime: config.cooldownTime || 10000, // 10 seconds
      parallel: config.parallel || false,
      baseline: config.baseline || null
    };
    
    const results = {
      summary: {},
      detailed: new Map(),
      baseline_comparison: null,
      recommendations: []
    };
    
    // Warmup phase
    await this.warmup(suiteConfig.warmupTime);
    
    // Execute benchmarks
    if (suiteConfig.parallel) {
      results.detailed = await this.runBenchmarksParallel(suiteConfig);
    } else {
      results.detailed = await this.runBenchmarksSequential(suiteConfig);
    }
    
    // Generate summary
    results.summary = this.generateSummary(results.detailed);
    
    // Compare with baseline if provided
    if (suiteConfig.baseline) {
      results.baseline_comparison = await this.compareWithBaseline(
        results.detailed, 
        suiteConfig.baseline
      );
    }
    
    // Generate recommendations
    results.recommendations = await this.generateRecommendations(results);
    
    // Cooldown phase
    await this.cooldown(suiteConfig.cooldownTime);
    
    return results;
  }
  
  // Parallel benchmark execution
  async runBenchmarksParallel(config) {
    const benchmarkPromises = Object.entries(this.benchmarks).map(
      async ([name, benchmark]) => {
        const result = await this.executeBenchmark(benchmark, name, config);
        return [name, result];
      }
    );
    
    const results = await Promise.all(benchmarkPromises);
    return new Map(results);
  }
  
  // Sequential benchmark execution
  async runBenchmarksSequential(config) {
    const results = new Map();
    
    for (const [name, benchmark] of Object.entries(this.benchmarks)) {
      const result = await this.executeBenchmark(benchmark, name, config);
      results.set(name, result);
      
      // Brief pause between benchmarks
      await this.sleep(1000);
    }
    
    return results;
  }
}
2. Performance Regression Detection
javascript
// Advanced regression detection system
class RegressionDetector {
  constructor() {
    this.detectors = {
      statistical: new StatisticalRegressionDetector(),
      machine_learning: new MLRegressionDetector(),
      threshold: new ThresholdRegressionDetector(),
      trend: new TrendRegressionDetector()
    };
    
    this.analyzer = new RegressionAnalyzer();
    this.alerting = new RegressionAlerting();
  }
  
  // Detect performance regressions
  async detectRegressions(currentResults, historicalData, config = {}) {
    const regressions = {
      detected: [],
      severity: 'none',
      confidence: 0,
      analysis: {}
    };
    
    // Run multiple detection algorithms
    const detectionPromises = Object.entries(this.detectors).map(
      async ([method, detector]) => {
        const detection = await detector.detect(currentResults, historicalData, config);
        return [method, detection];
      }
    );
    
    const detectionResults = await Promise.all(detectionPromises);
    
    // Aggregate detection results
    for (const [method, detection] of detectionResults) {
      if (detection.regression_detected) {
        regressions.detected.push({
          method,
          ...detection
        });
      }
    }
    
    // Calculate overall confidence and severity
    if (regressions.detected.length > 0) {
      regressions.confidence = this.calculateAggregateConfidence(regressions.detected);
      regressions.severity = this.calculateSeverity(regressions.detected);
      regressions.analysis = await this.analyzer.analyze(regressions.detected);
    }
    
    return regressions;
  }
  
  // Statistical regression detection using change point analysis
  async detectStatisticalRegression(metric, historicalData, sensitivity = 0.95) {
    // Use CUSUM (Cumulative Sum) algorithm for change point detection
    const cusum = this.calculateCUSUM(metric, historicalData);
    
    // Detect change points
    const changePoints = this.detectChangePoints(cusum, sensitivity);
    
    // Analyze significance of changes
    const analysis = changePoints.map(point => ({
      timestamp: point.timestamp,
      magnitude: point.magnitude,
      direction: point.direction,
      significance: point.significance,
      confidence: point.confidence
    }));
    
    return {
      regression_detected: changePoints.length > 0,
      change_points: analysis,
      cusum_statistics: cusum.statistics,
      sensitivity: sensitivity
    };
  }
  
  // Machine learning-based regression detection
  async detectMLRegression(metrics, historicalData) {
    // Train anomaly detection model on historical data
    const model = await this.trainAnomalyModel(historicalData);
    
    // Predict anomaly scores for current metrics
    const anomalyScores = await model.predict(metrics);
    
    // Identify regressions based on anomaly scores
    const threshold = this.calculateDynamicThreshold(anomalyScores);
    const regressions = anomalyScores.filter(score => score.anomaly > threshold);
    
    return {
      regression_detected: regressions.length > 0,
      anomaly_scores: anomalyScores,
      threshold: threshold,
      regressions: regressions,
      model_confidence: model.confidence
    };
  }
}
3. Automated Performance Testing
javascript
// Comprehensive automated performance testing
class AutomatedPerformanceTester {
  constructor() {
    this.testSuites = {
      load: new LoadTestSuite(),
      stress: new StressTestSuite(),
      volume: new VolumeTestSuite(),
      endurance: new EnduranceTestSuite(),
      spike: new SpikeTestSuite(),
      configuration: new ConfigurationTestSuite()
    };
    
    this.scheduler = new TestScheduler();
    this.orchestrator = new TestOrchestrator();
    this.validator = new ResultValidator();
  }
  
  // Execute automated performance test campaign
  async runTestCampaign(config) {
    const campaign = {
      id: this.generateCampaignId(),
      config,
      startTime: Date.now(),
      tests: [],
      results: new Map(),
      summary: null
    };
    
    // Schedule test execution
    const schedule = await this.scheduler.schedule(config.tests, config.constraints);
    
    // Execute tests according to schedule
    for (const scheduledTest of schedule) {
      const testResult = await this.executeScheduledTest(scheduledTest);
      campaign.tests.push(scheduledTest);
      campaign.results.set(scheduledTest.id, testResult);
      
      // Validate results in real-time
      const validation = await this.validator.validate(testResult);
      if (!validation.valid) {
        campaign.summary = {
          status: 'failed',
          reason: validation.reason,
          failedAt: scheduledTest.name
        };
        break;
      }
    }
    
    // Generate campaign summary
    if (!campaign.summary) {
      campaign.summary = await this.generateCampaignSummary(campaign);
    }
    
    campaign.endTime = Date.now();
    campaign.duration = campaign.endTime - campaign.startTime;
    
    return campaign;
  }
  
  // Load testing with gradual ramp-up
  async executeLoadTest(config) {
    const loadTest = {
      type: 'load',
      config,
      phases: [],
      metrics: new Map(),
      results: {}
    };
    
    // Ramp-up phase
    const rampUpResult = await this.executeRampUp(config.rampUp);
    loadTest.phases.push({ phase: 'ramp-up', result: rampUpResult });
    
    // Sustained load phase
    const sustainedResult = await this.executeSustainedLoad(config.sustained);
    loadTest.phases.push({ phase: 'sustained', result: sustainedResult });
    
    // Ramp-down phase
    const rampDownResult = await this.executeRampDown(config.rampDown);
    loadTest.phases.push({ phase: 'ramp-down', result: rampDownResult });
    
    // Analyze results
    loadTest.results = await this.analyzeLoadTestResults(loadTest.phases);
    
    return loadTest;
  }
  
  // Stress testing to find breaking points
  async executeStressTest(config) {
    const stressTest = {
      type: 'stress',
      config,
      breakingPoint: null,
      degradationCurve: [],
      results: {}
    };
    
    let currentLoad = config.startLoad;
    let systemBroken = false;
    
    while (!systemBroken && currentLoad <= config.maxLoad) {
      const testResult = await this.applyLoad(currentLoad, config.duration);
      
      stressTest.degradationCurve.push({
        load: currentLoad,
        performance: testResult.performance,
        stability: testResult.stability,
        errors: testResult.errors
      });
      
      // Check if system is breaking
      if (this.isSystemBreaking(testResult, config.breakingCriteria)) {
        stressTest.breakingPoint = {
          load: currentLoad,
          performance: testResult.performance,
          reason: this.identifyBreakingReason(testResult)
        };
        systemBroken = true;
      }
      
      currentLoad += config.loadIncrement;
    }
    
    stressTest.results = await this.analyzeStressTestResults(stressTest);
    
    return stressTest;
  }
}
4. Performance Validation Framework
javascript
// Comprehensive performance validation
class PerformanceValidator {
  constructor() {
    this.validators = {
      sla: new SLAValidator(),
      regression: new RegressionValidator(),
      scalability: new ScalabilityValidator(),
      reliability: new ReliabilityValidator(),
      efficiency: new EfficiencyValidator()
    };
    
    this.thresholds = new ThresholdManager();
    this.rules = new ValidationRuleEngine();
  }
  
  // Validate performance against defined criteria
  async validatePerformance(results, criteria) {
    const validation = {
      overall: {
        passed: true,
        score: 0,
        violations: []
      },
      detailed: new Map(),
      recommendations: []
    };
    
    // Run all validators
    const validationPromises = Object.entries(this.validators).map(
      async ([type, validator]) => {
        const result = await validator.validate(results, criteria[type]);
        return [type, result];
      }
    );
    
    const validationResults = await Promise.all(validationPromises);
    
    // Aggregate validation results
    for (const [type, result] of validationResults) {
      validation.detailed.set(type, result);
      
      if (!result.passed) {
        validation.overall.passed = false;
        validation.overall.violations.push(...result.violations);
      }
      
      validation.overall.score += result.score * (criteria[type]?.weight || 1);
    }
    
    // Normalize overall score
    const totalWeight = Object.values(criteria).reduce((sum, c) => sum + (c.weight || 1), 0);
    validation.overall.score /= totalWeight;
    
    // Generate recommendations
    validation.recommendations = await this.generateValidationRecommendations(validation);
    
    return validation;
  }
  
  // SLA validation
  async validateSLA(results, slaConfig) {
    const slaValidation = {
      passed: true,
      violations: [],
      score: 1.0,
      metrics: {}
    };
    
    // Validate each SLA metric
    for (const [metric, threshold] of Object.entries(slaConfig.thresholds)) {
      const actualValue = this.extractMetricValue(results, metric);
      const validation = this.validateThreshold(actualValue, threshold);
      
      slaValidation.metrics[metric] = {
        actual: actualValue,
        threshold: threshold.value,
        operator: threshold.operator,
        passed: validation.passed,
        deviation: validation.deviation
      };
      
      if (!validation.passed) {
        slaValidation.passed = false;
        slaValidation.violations.push({
          metric,
          actual: actualValue,
          expected: threshold.value,
          severity: threshold.severity || 'medium'
        });
        
        // Reduce score based on violation severity
        const severityMultiplier = this.getSeverityMultiplier(threshold.severity);
        slaValidation.score -= (validation.deviation * severityMultiplier);
      }
    }
    
    slaValidation.score = Math.max(0, slaValidation.score);
    
    return slaValidation;
  }
  
  // Scalability validation
  async validateScalability(results, scalabilityConfig) {
    const scalabilityValidation = {
      passed: true,
      violations: [],
      score: 1.0,
      analysis: {}
    };
    
    // Linear scalability analysis
    if (scalabilityConfig.linear) {
      const linearityAnalysis = this.analyzeLinearScalability(results);
      scalabilityValidation.analysis.linearity = linearityAnalysis;
      
      if (linearityAnalysis.coefficient < scalabilityConfig.linear.minCoefficient) {
        scalabilityValidation.passed = false;
        scalabilityValidation.violations.push({
          type: 'linearity',
          actual: linearityAnalysis.coefficient,
          expected: scalabilityConfig.linear.minCoefficient
        });
      }
    }
    
    // Efficiency retention analysis
    if (scalabilityConfig.efficiency) {
      const efficiencyAnalysis = this.analyzeEfficiencyRetention(results);
      scalabilityValidation.analysis.efficiency = efficiencyAnalysis;
      
      if (efficiencyAnalysis.retention < scalabilityConfig.efficiency.minRetention) {
        scalabilityValidation.passed = false;
        scalabilityValidation.violations.push({
          type: 'efficiency_retention',
          actual: efficiencyAnalysis.retention,
          expected: scalabilityConfig.efficiency.minRetention
        });
      }
    }
    
    return scalabilityValidation;
  }
}

MCP Integration Hooks

Benchmark Execution Integration
javascript
// Comprehensive MCP benchmark integration
const benchmarkIntegration = {
  // Execute performance benchmarks
  async runBenchmarks(config = {}) {
    // Run benchmark suite
    const benchmarkResult = await mcp.benchmark_run({
      suite: config.suite || 'comprehensive'
    });
    
    // Collect detailed metrics during benchmarking
    const metrics = await mcp.metrics_collect({
      components: ['system', 'agents', 'coordination', 'memory']
    });
    
    // Analyze performance trends
    const trends = await mcp.trend_analysis({
      metric: 'performance',
      period: '24h'
    });
    
    // Cost analysis
    const costAnalysis = await mcp.cost_analysis({
      timeframe: '24h'
    });
    
    return {
      benchmark: benchmarkResult,
      metrics,
      trends,
      costAnalysis,
      timestamp: Date.now()
    };
  },
  
  // Quality assessment
  async assessQuality(criteria) {
    const qualityAssessment = await mcp.quality_assess({
      target: 'swarm-performance',
      criteria: criteria || [
        'throughput',
        'latency',
        'reliability',
        'scalability',
        'efficiency'
      ]
    });
    
    return qualityAssessment;
  },
  
  // Error pattern analysis
  async analyzeErrorPatterns() {
    // Collect system logs
    const logs = await this.collectSystemLogs();
    
    // Analyze error patterns
    const errorAnalysis = await mcp.error_analysis({
      logs: logs
    });
    
    return errorAnalysis;
  }
};

Operational Commands

Benchmarking Commands
bash
# Run comprehensive benchmark suite
npx claude-flow benchmark-run --suite comprehensive --duration 300

# Execute specific benchmark
npx claude-flow benchmark-run --suite throughput --iterations 10

# Compare with baseline
npx claude-flow benchmark-compare --current <results> --baseline <baseline>

# Quality assessment
npx claude-flow quality-assess --target swarm-performance --criteria throughput,latency

# Performance validation
npx claude-flow validate-performance --results <file> --criteria <file>
Regression Detection Commands
bash
# Detect performance regressions
npx claude-flow detect-regression --current <results> --historical <data>

# Set up automated regression monitoring
npx claude-flow regression-monitor --enable --sensitivity 0.95

# Analyze error patterns
npx claude-flow error-analysis --logs <log-files>

Integration Points

With Other Optimization Agents
  • Performance Monitor: Provides continuous monitoring data for benchmarking
  • Load Balancer: Validates load balancing effectiveness through benchmarks
  • Topology Optimizer: Tests topology configurations for optimal performance
With CI/CD Pipeline
  • Automated Testing: Integrates with CI/CD for continuous performance validation
  • Quality Gates: Provides pass$fail criteria for deployment decisions
  • Regression Prevention: Catches performance regressions before production

Performance Benchmarks

Standard Benchmark Suite
javascript
// Comprehensive benchmark definitions
const standardBenchmarks = {
  // Throughput benchmarks
  throughput: {
    name: 'Throughput Benchmark',
    metrics: ['requests_per_second', 'tasks_per_second', 'messages_per_second'],
    duration: 300000, // 5 minutes
    warmup: 30000,    // 30 seconds
    targets: {
      requests_per_second: { min: 1000, optimal: 5000 },
      tasks_per_second: { min: 100, optimal: 500 },
      messages_per_second: { min: 10000, optimal: 50000 }
    }
  },
  
  // Latency benchmarks
  latency: {
    name: 'Latency Benchmark',
    metrics: ['p50', 'p90', 'p95', 'p99', 'max'],
    duration: 300000,
    targets: {
      p50: { max: 100 },   // 100ms
      p90: { max: 200 },   // 200ms
      p95: { max: 500 },   // 500ms
      p99: { max: 1000 },  // 1s
      max: { max: 5000 }   // 5s
    }
  },
  
  // Scalability benchmarks
  scalability: {
    name: 'Scalability Benchmark',
    metrics: ['linear_coefficient', 'efficiency_retention'],
    load_points: [1, 2, 4, 8, 16, 32, 64],
    targets: {
      linear_coefficient: { min: 0.8 },
      efficiency_retention: { min: 0.7 }
    }
  }
};

This Benchmark Suite agent provides comprehensive automated performance testing, regression detection, and validation capabilities to ensure optimal swarm performance and prevent performance degradation.

© ruvnet, MIT. Rendered from Markdown: HTML in the file is shown as text, images as links, and headings moved down two levels. Raw file

Files

Just SKILL.md in .agents/skills/agent-benchmark-suite of ruvnet/ruflo.

Open the folder on GitHubat commit 6051f67

Used in 2 other repositories

We found 2 copies of this SKILL.md (exact, near-identical or edited) in other folders, from 2 other GitHub owners. This page covers the copy in ruvnet/ruflo, which our catalogue first saw on October 7, 2026.

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  • Agent Coordination

    ruvnet/ruflo

    Reference for spawning, listing, monitoring and stopping agents with claude-flow commands, with agent type families, routing codes and coordination tips.

    74k GitHub starsUsed in 2 repos~519 tokens
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Questions about Agent Benchmark Suite

What does Agent Benchmark Suite do?

Agent skill for benchmark-suite - invoke with $agent-benchmark-suite. Agent Benchmark Suite is an agent skill from ruvnet/ruflo.

When should I use Agent Benchmark Suite?

Agent Benchmark Suite fits situations like: tasks that involve Agent evaluation and testing.

How do I install Agent Benchmark Suite in Claude Code?

Run `npx skills add ruvnet/ruflo --skill agent-benchmark-suite -a claude-code`. Or copy the skill folder (.agents/skills/agent-benchmark-suite in ruvnet/ruflo) into .claude/skills/agent-benchmark-suite in your project. Claude Code loads it when a task matches its description.

How do I install Agent Benchmark Suite in Codex?

Run `npx skills add ruvnet/ruflo --skill agent-benchmark-suite -a codex`. Or copy the skill folder (.agents/skills/agent-benchmark-suite in ruvnet/ruflo) into .agents/skills/agent-benchmark-suite in your project. Codex loads it when a task matches its description.

Can I use Agent Benchmark Suite in Cursor, Gemini CLI or GitHub Copilot?

Cursor, Gemini CLI, GitHub Copilot and OpenCode also load SKILL.md folders. With the skills CLI, run `npx skills add ruvnet/ruflo --skill agent-benchmark-suite -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/agent-benchmark-suite, .gemini/skills/agent-benchmark-suite, .github/skills/agent-benchmark-suite and .opencode/skills/agent-benchmark-suite in your project.

What does Agent Benchmark Suite need to run?

Going by SKILL.md and its folder, Agent Benchmark Suite needs the command-line tools its instructions call (npx).

Does Agent Benchmark Suite access the network?

SKILL.md contains no URLs. Its commands use npx, which can reach the network depending on how they are called. This is read from the text; nothing was executed.

Is Agent Benchmark Suite safe to install?

Our automated static check of SKILL.md found no risky patterns, such as piping downloads into a shell, reading credential files or hidden Unicode. It is not a guarantee. Review the folder before installing.

What licence does Agent Benchmark Suite use?

Agent Benchmark Suite is published under the MIT licence (the repository's licence). It allows redistribution, so the full SKILL.md is shown on this page.

How many tokens does Agent Benchmark Suite use?

About 4.9k tokens (SKILL.md is roughly 20k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full.

What are the alternatives to Agent Benchmark Suite?

Skills that share tags, products or a category with Agent Benchmark Suite: MCP Server Builder (anthropics/skills, 180k stars), Diagnosing Superpowers Sessions (obra/superpowers, 296k stars), Darwin Skill Optimizer (alchaincyf/darwin-skill, 6.2k stars) and Skill Release Gate (rohitg00/ai-engineering-from-scratch, 66k stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains Agent Benchmark Suite?

ruvnet (a GitHub user) maintains it in ruvnet/ruflo, which has 74,089 GitHub stars. The repository holds 264 skills in this directory. The repository was last updated on October 8, 2026.

Source: ruvnet/ruflo on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.