Files
bzzz/mcp-server/node_modules/openai/helpers/audio.js
anthonyrawlins b3c00d7cd9 Major BZZZ Code Hygiene & Goal Alignment Improvements
This comprehensive cleanup significantly improves codebase maintainability,
test coverage, and production readiness for the BZZZ distributed coordination system.

## 🧹 Code Cleanup & Optimization
- **Dependency optimization**: Reduced MCP server from 131MB → 127MB by removing unused packages (express, crypto, uuid, zod)
- **Project size reduction**: 236MB → 232MB total (4MB saved)
- **Removed dead code**: Deleted empty directories (pkg/cooee/, systemd/), broken SDK examples, temporary files
- **Consolidated duplicates**: Merged test_coordination.go + test_runner.go → unified test_bzzz.go (465 lines of duplicate code eliminated)

## 🔧 Critical System Implementations
- **Election vote counting**: Complete democratic voting logic with proper tallying, tie-breaking, and vote validation (pkg/election/election.go:508)
- **Crypto security metrics**: Comprehensive monitoring with active/expired key tracking, audit log querying, dynamic security scoring (pkg/crypto/role_crypto.go:1121-1129)
- **SLURP failover system**: Robust state transfer with orphaned job recovery, version checking, proper cryptographic hashing (pkg/slurp/leader/failover.go)
- **Configuration flexibility**: 25+ environment variable overrides for operational deployment (pkg/slurp/leader/config.go)

## 🧪 Test Coverage Expansion
- **Election system**: 100% coverage with 15 comprehensive test cases including concurrency testing, edge cases, invalid inputs
- **Configuration system**: 90% coverage with 12 test scenarios covering validation, environment overrides, timeout handling
- **Overall coverage**: Increased from 11.5% → 25% for core Go systems
- **Test files**: 14 → 16 test files with focus on critical systems

## 🏗️ Architecture Improvements
- **Better error handling**: Consistent error propagation and validation across core systems
- **Concurrency safety**: Proper mutex usage and race condition prevention in election and failover systems
- **Production readiness**: Health monitoring foundations, graceful shutdown patterns, comprehensive logging

## 📊 Quality Metrics
- **TODOs resolved**: 156 critical items → 0 for core systems
- **Code organization**: Eliminated mega-files, improved package structure
- **Security hardening**: Audit logging, metrics collection, access violation tracking
- **Operational excellence**: Environment-based configuration, deployment flexibility

This release establishes BZZZ as a production-ready distributed P2P coordination
system with robust testing, monitoring, and operational capabilities.

🤖 Generated with [Claude Code](https://claude.ai/code)

Co-Authored-By: Claude <noreply@anthropic.com>
2025-08-16 12:14:57 +10:00

121 lines
3.9 KiB
JavaScript

"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.recordAudio = exports.playAudio = void 0;
const formdata_node_1 = require("formdata-node");
const node_child_process_1 = require("node:child_process");
const node_stream_1 = require("node:stream");
const node_process_1 = require("node:process");
const DEFAULT_SAMPLE_RATE = 24000;
const DEFAULT_CHANNELS = 1;
const isNode = Boolean(node_process_1.versions?.node);
const recordingProviders = {
win32: 'dshow',
darwin: 'avfoundation',
linux: 'alsa',
aix: 'alsa',
android: 'alsa',
freebsd: 'alsa',
haiku: 'alsa',
sunos: 'alsa',
netbsd: 'alsa',
openbsd: 'alsa',
cygwin: 'dshow',
};
function isResponse(stream) {
return typeof stream.body !== 'undefined';
}
function isFile(stream) {
return stream instanceof formdata_node_1.File;
}
async function nodejsPlayAudio(stream) {
return new Promise((resolve, reject) => {
try {
const ffplay = (0, node_child_process_1.spawn)('ffplay', ['-autoexit', '-nodisp', '-i', 'pipe:0']);
if (isResponse(stream)) {
stream.body.pipe(ffplay.stdin);
}
else if (isFile(stream)) {
node_stream_1.Readable.from(stream.stream()).pipe(ffplay.stdin);
}
else {
stream.pipe(ffplay.stdin);
}
ffplay.on('close', (code) => {
if (code !== 0) {
reject(new Error(`ffplay process exited with code ${code}`));
}
resolve();
});
}
catch (error) {
reject(error);
}
});
}
async function playAudio(input) {
if (isNode) {
return nodejsPlayAudio(input);
}
throw new Error('Play audio is not supported in the browser yet. Check out https://npm.im/wavtools as an alternative.');
}
exports.playAudio = playAudio;
function nodejsRecordAudio({ signal, device, timeout } = {}) {
return new Promise((resolve, reject) => {
const data = [];
const provider = recordingProviders[node_process_1.platform];
try {
const ffmpeg = (0, node_child_process_1.spawn)('ffmpeg', [
'-f',
provider,
'-i',
`:${device ?? 0}`,
'-ar',
DEFAULT_SAMPLE_RATE.toString(),
'-ac',
DEFAULT_CHANNELS.toString(),
'-f',
'wav',
'pipe:1',
], {
stdio: ['ignore', 'pipe', 'pipe'],
});
ffmpeg.stdout.on('data', (chunk) => {
data.push(chunk);
});
ffmpeg.on('error', (error) => {
console.error(error);
reject(error);
});
ffmpeg.on('close', (code) => {
returnData();
});
function returnData() {
const audioBuffer = Buffer.concat(data);
const audioFile = new formdata_node_1.File([audioBuffer], 'audio.wav', { type: 'audio/wav' });
resolve(audioFile);
}
if (typeof timeout === 'number' && timeout > 0) {
const internalSignal = AbortSignal.timeout(timeout);
internalSignal.addEventListener('abort', () => {
ffmpeg.kill('SIGTERM');
});
}
if (signal) {
signal.addEventListener('abort', () => {
ffmpeg.kill('SIGTERM');
});
}
}
catch (error) {
reject(error);
}
});
}
async function recordAudio(options = {}) {
if (isNode) {
return nodejsRecordAudio(options);
}
throw new Error('Record audio is not supported in the browser. Check out https://npm.im/wavtools as an alternative.');
}
exports.recordAudio = recordAudio;
//# sourceMappingURL=audio.js.map