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pilot-formation

Deploy predefined network topologies (star, ring, mesh, tree) for structured swarms. Use this skill when: 1. You need specific communication patterns (star coordinator, ring consensus) 2. You want to minimize connection overhead with structured topologies 3. You need hierarchical organization (tree) for scaling Do NOT use this skill when: - Ad-hoc peer discovery is sufficient (use pilot-swarm-join) - Topology changes frequently (use dynamic mesh)

ソース情報

リポジトリ
TeoSlayer/pilot-skills
ソースの最終更新活動
2026年4月20日 17:42
検出された SKILL.md の言語
英語
スター
8
フォーク
2

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SKILL.md
ソースの指示 · 読み取り専用プレビュー
name
pilot-formation
description
Deploy predefined network topologies (star, ring, mesh, tree) for structured swarms. Use this skill when: 1. You need specific communication patterns (star coordinator, ring consensus) 2. You want to minimize connection overhead with structured topologies 3. You need hierarchical organization (tree) for scaling Do NOT use this skill when: - Ad-hoc peer discovery is sufficient (use pilot-swarm-join) - Topology changes frequently (use dynamic mesh)
tags
["pilot-protocol","topology","network-formation","swarm-structure"]
license
AGPL-3.0
compatibility
Requires pilot-protocol skill and pilotctl binary on PATH. The daemon must be running (pilotctl daemon start).
metadata
{"author":"vulture-labs","version":"1.0","openclaw":{"requires":{"bins":"[Truncated]"},"homepage":"https://pilotprotocol.network"}}
allowed-tools
["Bash"]
# pilot-formation Deploy structured network topologies with automatic peer handshaking and trust establishment. Supports star (hub-and-spoke), ring (circular), mesh (all-to-all), tree (hierarchical), and line (chain) formations. ## Commands **Deploy star (hub connects to all spokes):** ```bash WORKERS=$(pilotctl --json peers --search "role:worker" | jq -r '.[].hostname') for worker in $WORKERS; do pilotctl --json handshake "$worker" "Forming star topology" sleep 1 NODE_ID=$(pilotctl --json pending | jq -r '.pending[] | select(.hostname == "'"$worker"'") | .node_id') [ -n "$NODE_ID" ] && pilotctl --json approve "$NODE_ID" done ``` **Deploy ring (circular connections):** ```bash AGENTS=$(pilotctl --json peers --search "swarm:$SWARM_NAME" | jq -r 'sort_by(.node_id) | .[].address') # Connect to next agent in sorted order (implementation in workflow) ``` **Deploy mesh (all-to-all):** ```bash ALL_PEERS=$(pilotctl --json peers --search "swarm:$SWARM_NAME" | jq -r '.[].address') for peer in $ALL_PEERS; do pilotctl --json handshake "$peer" "Forming mesh topology" & done wait # Approve all pending handshakes PENDING=$(pilotctl --json pending | jq -r '.[].node_id') for peer in $PENDING; do pilotctl --json approve "$peer" & done wait ``` ## Workflow Example ```bash #!/bin/bash # Deploy star topology SWARM_NAME="task-swarm" MY_ADDR=$(pilotctl --json info | jq -r '.address') REGISTRY_HOST="registry.example.com" # Get swarm members SWARM_MEMBERS=$(pilotctl --json peers --search "swarm:$SWARM_NAME" | jq -r '.[].address') echo "Deploying star topology (hub: $MY_ADDR)" # Hub connects to all spokes for worker in $SWARM_MEMBERS; do if [ "$worker" != "$MY_ADDR" ]; then echo "Connecting to spoke: $worker" pilotctl --json handshake "$worker" "Forming star topology" sleep 1 NODE_ID=$(pilotctl --json pending | jq -r '.pending[] | select(.hostname == "'"$worker"'") | .node_id') [ -n "$NODE_ID" ] && pilotctl --json approve "$NODE_ID" fi done # Publish topology pilotctl --json publish "$REGISTRY_HOST" "topology:$SWARM_NAME" \ --data "{\"type\":\"star\",\"hub\":\"$MY_ADDR\",\"formed_at\":\"$(date -u +%Y-%m-%dT%H:%M:%SZ)\"}" echo "Star topology complete" ``` ## Dependencies Requires `pilot-protocol` skill, `pilotctl` binary, running daemon, and `jq` for JSON parsing.
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