Absorb high-value patterns from OpenEvolve, RTK, Meta-Harness, and bgclick reverse-engineering into Hermes-native execution: slash-routed background loops, token-thrifty output surfaces, harness-search framing, and evidence-first reverse workflows.
Scanned 9/9/2026
Install to Claude Code
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---
name: repo-inta-opnv-rtk-meta
description: >-
Absorb high-value patterns from OpenEvolve, RTK, Meta-Harness, and
bgclick reverse-engineering into Hermes-native execution:
slash-routed background loops, token-thrifty output surfaces,
harness-search framing, and evidence-first reverse workflows.
version: 1
---
# Repo Intake: OpenEvolve / RTK / Meta-Harness / bgclick
Goal
- Convert four external repos/docs into Hermes-native behavior, not cargo-cult installs.
- Prefer selective absorption over adding a second runtime authority.
Use when
- User drops one or more external repos and says to learn, install, absorb, or "吞噬" them.
- Themes include self-iteration, token reduction, harness search, or reverse-engineering workflow.
Decision rules
1. OpenEvolve
- Learn + absorb, not direct runtime dependency by default.
- Keep: benchmark-gated branching, baseline-first scoring, traces under repo artifacts, branch/worktree search.
- Map to Hermes via `/background` + cron + repo-local state, not by embedding OpenEvolve itself as a required engine.
2. RTK
- Install if local Rust toolchain exists and binary verifies.
- Keep: command-output compression as a distinct surface, with fallbacks when filters fail.
- Hermes-native application: prefer compact outputs for slash/help/status/index surfaces and any generated audit blobs.
3. Meta-Harness
- Learn + absorb.
- Keep: treat harness as searchable code around a fixed base model; separate onboarding/spec from implementation; log proposer interactions.
- Hermes-native application: optimize routing, memory, context compression, and tool/context presentation as harness layers.
4. bgclick reverse skill
- Learn + absorb only if the prerequisite stack is absent.
- Keep: evidence bundle discipline, one-question-per-file, priors-to-verify, shared-context file, empirical reproduction loop.
- Do not install blindly as a runtime skill if the dependency contract (IDA MCP, macOS reverse stack) is unmet.
Hermes-native implementation targets
1. Self-iteration
- Prefer `/background <self-contained prompt>` for long-running autonomous loops.
- If repeatable, package as cron prompt + optional skills.
- Keep state in repo files, not long-term memory.
2. Token thrift
- Favor compact summaries, indexed metadata, cache-first lookup, and condensed command/report surfaces.
- Use generated indexes or summaries before raw remote enumeration.
3. Harness search
- Treat memory, retrieval, routing, compression, and prompt/context construction as harness code.
- Keep base model fixed unless the user explicitly asks otherwise.
4. Reverse workflow
- Start with priors, then verify each with runtime evidence.
- Use research bundle outputs and open-question files for uncertain findings.
Output pattern
- One short verdict per upstream input: install / absorb / learn.
- Then name the Hermes artifact added: skill, script, router, command patch, or verified binary.
Pitfalls
- Do not install every promising repo.
- Do not push external doctrine into AGENTS.md.
- Do not turn one-off repo notes into long-term memory.
- Do not claim reverse workflows are ready when key prerequisites are missing.Is this your skill, or is something wrong with this listing? Request removal or report an issue. Author removals are honored within 72 hours.
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