
Self Improving Agent
- 885 installs
- modelscope.cn
Self-improving-agent is an agent skill that creates AI systems capable of analyzing their own outputs, identifying improvement opportunities, and iteratively upgrading their own prompts, tools, and reasoning strategies.
About
Self-improving-agent is an agent skill that builds AI systems capable of analyzing their own performance, identifying weaknesses, and autonomously generating improvements to their prompts, tools, and reasoning patterns. Solo builders and indie developers use it to move beyond static agents toward systems that get measurably better with every task they complete. It enables continuous capability growth by creating feedback loops where the agent reviews results, proposes specific enhancements, tests those changes, and incorporates the winning variations. This approach reduces the need for repeated manual prompt engineering and produces agents that adapt to new domains and requirements over time. The skill is especially valuable when building long-lived agents that must maintain quality as tasks evolve or when you want to bootstrap increasingly sophisticated agent behaviors from a modest starting point.
- Creates self-reflective agents that critique their outputs and propose improvements
- Implements iterative learning loops that refine prompts, tools, and decision logic
- Supports autonomous capability expansion based on task outcomes
- Works across different domains by continuously adapting its own strategies
Self Improving Agent by the numbers
- 885 all-time installs (skills.sh)
- +10 installs in the week ending Aug 4, 2026 (Skillselion tracking)
- Ranked #1,237 of 16,546 AI & Agent Building skills by installs in the Skillselion catalog
- Data as of Aug 4, 2026 (Skillselion catalog sync)
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| Installs | 885 |
|---|---|
| Repository | modelscope.cn ↗ |
What it does
Create agents that analyze their own performance, generate improvements, and iteratively upgrade their own capabilities without constant manual prompting.
Who is it for?
Best when you're creating long-running agents, research prototypes, or tools that must improve autonomously across repeated uses.
Skip if: One-off scripts, simple deterministic automations, or projects where full predictability and zero variance are required.
When should I use this skill?
Before deploying any agent that will be used repeatedly and should increase in capability and reliability over time.
What you get
You receive an agent that autonomously critiques its performance, implements targeted improvements, and delivers higher success rates on subsequent tasks, ready for the next round of self-refinement.
- Self-improving agent implementation
- Improvement tracking and reflection logs
- Evolved prompt and tool library
By the numbers
- 707 installs
Files
Self-Improvement Skill
Log learnings and errors to markdown files for continuous improvement. Coding agents can later process these into fixes, and important learnings get promoted to project memory.
Quick Reference
| Situation | Action |
|---|---|
| Command/operation fails | Log to .learnings/ERRORS.md |
| User corrects you | Log to .learnings/LEARNINGS.md with category correction |
| User wants missing feature | Log to .learnings/FEATURE_REQUESTS.md |
| API/external tool fails | Log to .learnings/ERRORS.md with integration details |
| Knowledge was outdated | Log to .learnings/LEARNINGS.md with category knowledge_gap |
| Found better approach | Log to .learnings/LEARNINGS.md with category best_practice |
| Similar to existing entry | Link with **See Also**, consider priority bump |
| Broadly applicable learning | Promote to CLAUDE.md, AGENTS.md, and/or .github/copilot-instructions.md |
| Workflow improvements | Promote to AGENTS.md (OpenClaw workspace) |
| Tool gotchas | Promote to TOOLS.md (OpenClaw workspace) |
| Behavioral patterns | Promote to SOUL.md (OpenClaw workspace) |
OpenClaw Setup (Recommended)
OpenClaw is the primary platform for this skill. It uses workspace-based prompt injection with automatic skill loading.
Installation
Via ClawdHub (recommended):
clawdhub install self-improving-agentManual:
git clone https://github.com/peterskoett/self-improving-agent.git ~/.openclaw/skills/self-improving-agentWorkspace Structure
OpenClaw injects these files into every session:
~/.openclaw/workspace/
├── AGENTS.md # Multi-agent workflows, delegation patterns
├── SOUL.md # Behavioral guidelines, personality, principles
├── TOOLS.md # Tool capabilities, integration gotchas
├── MEMORY.md # Long-term memory (main session only)
├── memory/ # Daily memory files
│ └── YYYY-MM-DD.md
└── .learnings/ # This skill's log files
├── LEARNINGS.md
├── ERRORS.md
└── FEATURE_REQUESTS.mdCreate Learning Files
mkdir -p ~/.openclaw/workspace/.learningsThen create the log files (or copy from assets/):
LEARNINGS.md— corrections, knowledge gaps, best practicesERRORS.md— command failures, exceptionsFEATURE_REQUESTS.md— user-requested capabilities
Promotion Targets
When learnings prove broadly applicable, promote them to workspace files:
| Learning Type | Promote To | Example |
|---|---|---|
| Behavioral patterns | SOUL.md | "Be concise, avoid disclaimers" |
| Workflow improvements | AGENTS.md | "Spawn sub-agents for long tasks" |
| Tool gotchas | TOOLS.md | "Git push needs auth configured first" |
Inter-Session Communication
OpenClaw provides tools to share learnings across sessions:
- sessions_list — View active/recent sessions
- sessions_history — Read another session's transcript
- sessions_send — Send a learning to another session
- sessions_spawn — Spawn a sub-agent for background work
Optional: Enable Hook
For automatic reminders at session start:
# Copy hook to OpenClaw hooks directory
cp -r hooks/openclaw ~/.openclaw/hooks/self-improvement
# Enable it
openclaw hooks enable self-improvementSee references/openclaw-integration.md for complete details.
---
Generic Setup (Other Agents)
For Claude Code, Codex, Copilot, or other agents, create .learnings/ in your project:
mkdir -p .learningsCopy templates from assets/ or create files with headers.
Logging Format
Learning Entry
Append to .learnings/LEARNINGS.md:
## [LRN-YYYYMMDD-XXX] category
**Logged**: ISO-8601 timestamp
**Priority**: low | medium | high | critical
**Status**: pending
**Area**: frontend | backend | infra | tests | docs | config
### Summary
One-line description of what was learned
### Details
Full context: what happened, what was wrong, what's correct
### Suggested Action
Specific fix or improvement to make
### Metadata
- Source: conversation | error | user_feedback
- Related Files: path/to/file.ext
- Tags: tag1, tag2
- See Also: LRN-20250110-001 (if related to existing entry)
---Error Entry
Append to .learnings/ERRORS.md:
## [ERR-YYYYMMDD-XXX] skill_or_command_name
**Logged**: ISO-8601 timestamp
**Priority**: high
**Status**: pending
**Area**: frontend | backend | infra | tests | docs | config
### Summary
Brief description of what failed
### ErrorActual error message or output
### Context
- Command/operation attempted
- Input or parameters used
- Environment details if relevant
### Suggested Fix
If identifiable, what might resolve this
### Metadata
- Reproducible: yes | no | unknown
- Related Files: path/to/file.ext
- See Also: ERR-20250110-001 (if recurring)
---Feature Request Entry
Append to .learnings/FEATURE_REQUESTS.md:
## [FEAT-YYYYMMDD-XXX] capability_name
**Logged**: ISO-8601 timestamp
**Priority**: medium
**Status**: pending
**Area**: frontend | backend | infra | tests | docs | config
### Requested Capability
What the user wanted to do
### User Context
Why they needed it, what problem they're solving
### Complexity Estimate
simple | medium | complex
### Suggested Implementation
How this could be built, what it might extend
### Metadata
- Frequency: first_time | recurring
- Related Features: existing_feature_name
---ID Generation
Format: TYPE-YYYYMMDD-XXX
- TYPE:
LRN(learning),ERR(error),FEAT(feature) - YYYYMMDD: Current date
- XXX: Sequential number or random 3 chars (e.g.,
001,A7B)
Examples: LRN-20250115-001, ERR-20250115-A3F, FEAT-20250115-002
Resolving Entries
When an issue is fixed, update the entry:
1. Change **Status**: pending → **Status**: resolved 2. Add resolution block after Metadata:
### Resolution
- **Resolved**: 2025-01-16T09:00:00Z
- **Commit/PR**: abc123 or #42
- **Notes**: Brief description of what was doneOther status values:
in_progress- Actively being worked onwont_fix- Decided not to address (add reason in Resolution notes)promoted- Elevated to CLAUDE.md, AGENTS.md, or .github/copilot-instructions.md
Promoting to Project Memory
When a learning is broadly applicable (not a one-off fix), promote it to permanent project memory.
When to Promote
- Learning applies across multiple files/features
- Knowledge any contributor (human or AI) should know
- Prevents recurring mistakes
- Documents project-specific conventions
Promotion Targets
| Target | What Belongs There |
|---|---|
CLAUDE.md | Project facts, conventions, gotchas for all Claude interactions |
AGENTS.md | Agent-specific workflows, tool usage patterns, automation rules |
.github/copilot-instructions.md | Project context and conventions for GitHub Copilot |
SOUL.md | Behavioral guidelines, communication style, principles (OpenClaw workspace) |
TOOLS.md | Tool capabilities, usage patterns, integration gotchas (OpenClaw workspace) |
How to Promote
1. Distill the learning into a concise rule or fact 2. Add to appropriate section in target file (create file if needed) 3. Update original entry:
- Change
**Status**: pending→**Status**: promoted - Add
**Promoted**: CLAUDE.md,AGENTS.md, or.github/copilot-instructions.md
Promotion Examples
Learning (verbose):
Project uses pnpm workspaces. Attempted npm install but failed.Lock file ispnpm-lock.yaml. Must usepnpm install.
In CLAUDE.md (concise):
## Build & Dependencies
- Package manager: pnpm (not npm) - use `pnpm install`Learning (verbose):
When modifying API endpoints, must regenerate TypeScript client.
Forgetting this causes type mismatches at runtime.
In AGENTS.md (actionable):
## After API Changes
1. Regenerate client: `pnpm run generate:api`
2. Check for type errors: `pnpm tsc --noEmit`Recurring Pattern Detection
If logging something similar to an existing entry:
1. Search first: grep -r "keyword" .learnings/ 2. Link entries: Add **See Also**: ERR-20250110-001 in Metadata 3. Bump priority if issue keeps recurring 4. Consider systemic fix: Recurring issues often indicate:
- Missing documentation (→ promote to CLAUDE.md or .github/copilot-instructions.md)
- Missing automation (→ add to AGENTS.md)
- Architectural problem (→ create tech debt ticket)
Periodic Review
Review .learnings/ at natural breakpoints:
When to Review
- Before starting a new major task
- After completing a feature
- When working in an area with past learnings
- Weekly during active development
Quick Status Check
# Count pending items
grep -h "Status\*\*: pending" .learnings/*.md | wc -l
# List pending high-priority items
grep -B5 "Priority\*\*: high" .learnings/*.md | grep "^## \["
# Find learnings for a specific area
grep -l "Area\*\*: backend" .learnings/*.mdReview Actions
- Resolve fixed items
- Promote applicable learnings
- Link related entries
- Escalate recurring issues
Detection Triggers
Automatically log when you notice:
Corrections (→ learning with correction category):
- "No, that's not right..."
- "Actually, it should be..."
- "You're wrong about..."
- "That's outdated..."
Feature Requests (→ feature request):
- "Can you also..."
- "I wish you could..."
- "Is there a way to..."
- "Why can't you..."
Knowledge Gaps (→ learning with knowledge_gap category):
- User provides information you didn't know
- Documentation you referenced is outdated
- API behavior differs from your understanding
Errors (→ error entry):
- Command returns non-zero exit code
- Exception or stack trace
- Unexpected output or behavior
- Timeout or connection failure
Priority Guidelines
| Priority | When to Use |
|---|---|
critical | Blocks core functionality, data loss risk, security issue |
high | Significant impact, affects common workflows, recurring issue |
medium | Moderate impact, workaround exists |
low | Minor inconvenience, edge case, nice-to-have |
Area Tags
Use to filter learnings by codebase region:
| Area | Scope |
|---|---|
frontend | UI, components, client-side code |
backend | API, services, server-side code |
infra | CI/CD, deployment, Docker, cloud |
tests | Test files, testing utilities, coverage |
docs | Documentation, comments, READMEs |
config | Configuration files, environment, settings |
Best Practices
1. Log immediately - context is freshest right after the issue 2. Be specific - future agents need to understand quickly 3. Include reproduction steps - especially for errors 4. Link related files - makes fixes easier 5. Suggest concrete fixes - not just "investigate" 6. Use consistent categories - enables filtering 7. Promote aggressively - if in doubt, add to CLAUDE.md or .github/copilot-instructions.md 8. Review regularly - stale learnings lose value
Gitignore Options
Keep learnings local (per-developer):
.learnings/Track learnings in repo (team-wide): Don't add to .gitignore - learnings become shared knowledge.
Hybrid (track templates, ignore entries):
.learnings/*.md
!.learnings/.gitkeepHook Integration
Enable automatic reminders through agent hooks. This is opt-in - you must explicitly configure hooks.
Quick Setup (Claude Code / Codex)
Create .claude/settings.json in your project:
{
"hooks": {
"UserPromptSubmit": [{
"matcher": "",
"hooks": [{
"type": "command",
"command": "./skills/self-improvement/scripts/activator.sh"
}]
}]
}
}This injects a learning evaluation reminder after each prompt (~50-100 tokens overhead).
Full Setup (With Error Detection)
{
"hooks": {
"UserPromptSubmit": [{
"matcher": "",
"hooks": [{
"type": "command",
"command": "./skills/self-improvement/scripts/activator.sh"
}]
}],
"PostToolUse": [{
"matcher": "Bash",
"hooks": [{
"type": "command",
"command": "./skills/self-improvement/scripts/error-detector.sh"
}]
}]
}
}Available Hook Scripts
| Script | Hook Type | Purpose |
|---|---|---|
scripts/activator.sh | UserPromptSubmit | Reminds to evaluate learnings after tasks |
scripts/error-detector.sh | PostToolUse (Bash) | Triggers on command errors |
See references/hooks-setup.md for detailed configuration and troubleshooting.
Automatic Skill Extraction
When a learning is valuable enough to become a reusable skill, extract it using the provided helper.
Skill Extraction Criteria
A learning qualifies for skill extraction when ANY of these apply:
| Criterion | Description |
|---|---|
| Recurring | Has See Also links to 2+ similar issues |
| Verified | Status is resolved with working fix |
| Non-obvious | Required actual debugging/investigation to discover |
| Broadly applicable | Not project-specific; useful across codebases |
| User-flagged | User says "save this as a skill" or similar |
Extraction Workflow
1. Identify candidate: Learning meets extraction criteria 2. Run helper (or create manually):
./skills/self-improvement/scripts/extract-skill.sh skill-name --dry-run
./skills/self-improvement/scripts/extract-skill.sh skill-name3. Customize SKILL.md: Fill in template with learning content 4. Update learning: Set status to promoted_to_skill, add Skill-Path 5. Verify: Read skill in fresh session to ensure it's self-contained
Manual Extraction
If you prefer manual creation:
1. Create skills/<skill-name>/SKILL.md 2. Use template from assets/SKILL-TEMPLATE.md 3. Follow Agent Skills spec:
- YAML frontmatter with
nameanddescription - Name must match folder name
- No README.md inside skill folder
Extraction Detection Triggers
Watch for these signals that a learning should become a skill:
In conversation:
- "Save this as a skill"
- "I keep running into this"
- "This would be useful for other projects"
- "Remember this pattern"
In learning entries:
- Multiple
See Alsolinks (recurring issue) - High priority + resolved status
- Category:
best_practicewith broad applicability - User feedback praising the solution
Skill Quality Gates
Before extraction, verify:
- [ ] Solution is tested and working
- [ ] Description is clear without original context
- [ ] Code examples are self-contained
- [ ] No project-specific hardcoded values
- [ ] Follows skill naming conventions (lowercase, hyphens)
Multi-Agent Support
This skill works across different AI coding agents with agent-specific activation.
Claude Code
Activation: Hooks (UserPromptSubmit, PostToolUse) Setup: .claude/settings.json with hook configuration Detection: Automatic via hook scripts
Codex CLI
Activation: Hooks (same pattern as Claude Code) Setup: .codex/settings.json with hook configuration Detection: Automatic via hook scripts
GitHub Copilot
Activation: Manual (no hook support) Setup: Add to .github/copilot-instructions.md:
## Self-Improvement
After solving non-obvious issues, consider logging to `.learnings/`:
1. Use format from self-improvement skill
2. Link related entries with See Also
3. Promote high-value learnings to skills
Ask in chat: "Should I log this as a learning?"Detection: Manual review at session end
OpenClaw
Activation: Workspace injection + inter-agent messaging Setup: See "OpenClaw Setup" section above Detection: Via session tools and workspace files
Agent-Agnostic Guidance
Regardless of agent, apply self-improvement when you:
1. Discover something non-obvious - solution wasn't immediate 2. Correct yourself - initial approach was wrong 3. Learn project conventions - discovered undocumented patterns 4. Hit unexpected errors - especially if diagnosis was difficult 5. Find better approaches - improved on your original solution
Copilot Chat Integration
For Copilot users, add this to your prompts when relevant:
After completing this task, evaluate if any learnings should be logged to .learnings/ using the self-improvement skill format.Or use quick prompts:
- "Log this to learnings"
- "Create a skill from this solution"
- "Check .learnings/ for related issues"
Related skills
How it compares
Use instead of static prompt libraries or one-shot agent setups when you need continuous capability growth rather than fixed behavior.
FAQ
Who is self-improving-agent for?
Developers and developers who want agents that become more capable over time instead of staying static.
When should I use self-improving-agent?
Use it when building research agents that need to master new domains, customer support agents that should learn from past interactions, coding agents that improve their solution quality, or any system where performance should compound across repeated tasks.
Is self-improving-agent safe to install?
Users should review the Security Audits panel on this page before installing.