Development Artifact Cleanup: ✅ BROTHER_NODE REORGANIZATION: Moved development test node to appropriate location - dev/test-nodes/brother_node/: Moved from root directory for better organization - Contains development configuration, test logs, and test chain data - No impact on production systems - purely development/testing artifact ✅ DEVELOPMENT ARTIFACTS IDENTIFIED: - Chain ID: aitbc-brother-chain (test/development chain) - Ports: 8010 (P2P) and 8011 (RPC) - different from production - Environment: .env file with test configuration - Logs: rpc.log and node.log from development testing session (March 15, 2026) ✅ ROOT DIRECTORY CLEANUP: Removed development clutter from production directory - brother_node/ moved to dev/test-nodes/brother_node/ - Root directory now contains only production-ready components - Development artifacts properly organized in dev/ subdirectory DIRECTORY STRUCTURE IMPROVEMENT: 📁 dev/test-nodes/: Development and testing node configurations 🏗️ Root Directory: Clean production structure with only essential components 🧪 Development Isolation: Test environments separated from production BENEFITS: ✅ Clean Production Directory: No development artifacts in root ✅ Better Organization: Development nodes grouped in dev/ subdirectory ✅ Clear Separation: Production vs development environments clearly distinguished ✅ Maintainability: Easier to identify and manage development components RESULT: Successfully moved brother_node development artifact to dev/test-nodes/ subdirectory, cleaning up the root directory while preserving development testing environment for future use.
29 lines
951 B
TypeScript
Executable File
29 lines
951 B
TypeScript
Executable File
import { getAddress } from "../address/index.js";
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import { keccak256, SigningKey } from "../crypto/index.js";
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import type { SignatureLike } from "../crypto/index.js";
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import type { BytesLike } from "../utils/index.js";
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/**
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* Returns the address for the %%key%%.
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*
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* The key may be any standard form of public key or a private key.
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*/
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export function computeAddress(key: string | SigningKey): string {
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let pubkey: string;
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if (typeof(key) === "string") {
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pubkey = SigningKey.computePublicKey(key, false);
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} else {
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pubkey = key.publicKey;
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}
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return getAddress(keccak256("0x" + pubkey.substring(4)).substring(26));
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}
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/**
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* Returns the recovered address for the private key that was
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* used to sign %%digest%% that resulted in %%signature%%.
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*/
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export function recoverAddress(digest: BytesLike, signature: SignatureLike): string {
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return computeAddress(SigningKey.recoverPublicKey(digest, signature));
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}
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