refactor: move brother_node development artifact to dev/test-nodes subdirectory
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.
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dev/env/node_modules/aes-js/src.ts/mode-cfb.ts
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dev/env/node_modules/aes-js/src.ts/mode-cfb.ts
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// Cipher Feedback
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import { ModeOfOperation } from "./mode.js";
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export class CFB extends ModeOfOperation {
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#iv: Uint8Array;
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#shiftRegister: Uint8Array;
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readonly segmentSize!: number;
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constructor(key: Uint8Array, iv?: Uint8Array, segmentSize: number = 8) {
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super("CFB", key, CFB);
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// This library currently only handles byte-aligned segmentSize
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if (!Number.isInteger(segmentSize) || (segmentSize % 8)) {
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throw new TypeError("invalid segmentSize");
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}
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Object.defineProperties(this, {
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segmentSize: { enumerable: true, value: segmentSize }
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});
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if (iv) {
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if (iv.length % 16) {
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throw new TypeError("invalid iv size (must be 16 bytes)");
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}
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this.#iv = new Uint8Array(iv);
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} else {
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this.#iv = new Uint8Array(16);
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}
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this.#shiftRegister = this.iv;
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}
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get iv(): Uint8Array { return new Uint8Array(this.#iv); }
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#shift(data: Uint8Array): void {
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const segmentSize = this.segmentSize / 8;
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// Shift the register
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this.#shiftRegister.set(this.#shiftRegister.subarray(segmentSize));
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this.#shiftRegister.set(data.subarray(0, segmentSize), 16 - segmentSize);
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}
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encrypt(plaintext: Uint8Array): Uint8Array {
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if (8 * plaintext.length % this.segmentSize) {
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throw new TypeError("invalid plaintext size (must be multiple of segmentSize bytes)");
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}
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const segmentSize = this.segmentSize / 8;
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const ciphertext = new Uint8Array(plaintext);
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for (let i = 0; i < ciphertext.length; i += segmentSize) {
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const xorSegment = this.aes.encrypt(this.#shiftRegister);
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for (let j = 0; j < segmentSize; j++) {
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ciphertext[i + j] ^= xorSegment[j];
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}
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this.#shift(ciphertext.subarray(i));
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}
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return ciphertext;
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}
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decrypt(ciphertext: Uint8Array): Uint8Array {
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if (8 * ciphertext.length % this.segmentSize) {
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throw new TypeError("invalid ciphertext size (must be multiple of segmentSize bytes)");
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}
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const segmentSize = this.segmentSize / 8;
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const plaintext = new Uint8Array(ciphertext);
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for (let i = 0; i < plaintext.length; i += segmentSize) {
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const xorSegment = this.aes.encrypt(this.#shiftRegister);
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for (let j = 0; j < segmentSize; j++) {
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plaintext[i + j] ^= xorSegment[j];
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}
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this.#shift(ciphertext.subarray(i));
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}
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return plaintext;
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}
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}
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