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# NetSynth
## What This Is
A Go CLI tool that captures live network traffic on an interface, classifies packets by protocol, and synthesizes an ambient MP3 soundscape where each traffic type produces a distinct harmonic drone or tone. Supports live capture with BPF filtering, offline pcap file sonification, and fully customizable sound mappings via TOML config.
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## Core Value
Network traffic patterns are instantly recognizable as distinct sounds — a ping sounds different from HTTPS noise, which sounds different from a port scan.
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## Current State
**v1.1 Custom Sound Mappings shipped 2026-03-26.** ~4,675 lines of Go across 7 packages.
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Tech stack: gopacket/gopacket v1.5.0, packetcap/go-pcap (pure Go capture), sjzar/go-lame v0.0.9 (embedded LAME), spf13/cobra v1.10.2, BurntSushi/toml v1.6.0.
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All 16 v1.0 requirements + 11 v1.1 requirements validated. Full pipeline with customizable sound mappings: capture -> classify -> aggregate -> synthesize -> MP3.
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## Requirements
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### Validated (v1.0)
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- Capture live packets from a specified network interface until Ctrl+C
- Classify packets by known protocols (ICMP, DNS, HTTPS, SSH, etc.) with 12 predefined rules
- Auto-cluster unrecognized traffic into 4 hash-bucketed unknown classes with distinct tones
- Aggregate traffic into 500ms time windows driving amplitude evolution
- End-to-end pipeline: capture -> classify -> synthesize -> MP3 output
- Map each traffic class to a distinct ambient/drone layer (sine oscillators + EMA smoothing)
- Stereo mixing with constant-power panning, no distortion
- MP3 encoding via embedded LAME, zero-packet guard
- CLI with `-i`, `-o`, `--list-interfaces`, `--verbose`, `--filter`, `--read` flags
- BPF capture filter for scoping live traffic
- Offline pcap file sonification with timestamp-based windowing
### Validated (v1.1)
- TOML config file with partial override semantics (frequency, waveform per class)
- Auto-discovery: `./netsynth.toml`, `~/.config/netsynth/config.toml`
- `--config` flag for explicit config path (error if missing)
- Unknown-key validation with clear error naming the typo'd key
- Four waveform types: sine, square, sawtooth, triangle (bandlimited)
- User-defined classification rules via `[[rules]]` TOML blocks
- User rules prepend before built-ins (first-match-wins priority)
- Auto-frequency assignment for custom class names (no silent gaps)
- `--print-config` outputs effective config as commented TOML
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### Active
(See REQUIREMENTS.md for v1.2 requirements)
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### Out of Scope
- Real-time audio playback — file output only
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- GUI or web interface — CLI only
- Rhythmic/percussive output — ambient/drone style only
- Stereo position configuration — add in future if requested
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## Context
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- Built in Go (CGO_ENABLED=1 for LAME), single binary output
- Packet capture requires root/CAP_NET_RAW on Linux
- Pure Go capture layer (no libpcap dependency)
- MP3 encoding embeds LAME C source (no system library needed)
- 14 built-in traffic classes: 10 known protocols + 4 hash-bucketed unknowns (extensible via custom rules)
- TOML config with partial overrides, unknown-key validation, auto-discovery
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## Constraints
- **Language**: Go — user preference, single binary output
- **Privileges**: Packet capture requires root/CAP_NET_RAW on Linux
- **Audio format**: MP3 output (not WAV or raw PCM)
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- **Interaction model**: Non-interactive capture (run -> Ctrl+C -> file saved)
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## Key Decisions
| Decision | Rationale | Outcome |
|----------|-----------|---------|
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| Go over Python/Rust | User preference, single binary, good perf | Good |
| Ambient/drone style | Layered tones better represent continuous traffic patterns | Good |
| Predefined + auto-cluster | Known protocols get recognizable sounds; unknown traffic still represented | Good |
| File output only | Simpler v1, avoids real-time audio complexity | Good |
| go-pcap over libpcap | Pure Go, no CGo for capture, cross-compilation friendly | Good |
| go-lame (embedded C) over shine-mp3 | Better quality, smaller files, acceptable CGo tradeoff | Good |
| Hand-rolled synthesis over audio libraries | 20 lines of oscillator code, no unnecessary dependencies | Good |
| Hash-bucketed unknowns over k-means | Deterministic, zero-config, sufficient for v1 audio distinction | Good |
| Ordered []Rule classifier over switch | Configurable, extensible, first-match-wins semantics | Good |
| 500ms window duration | Balances temporal resolution against snapshot frequency for synthesis | Good |
| BurntSushi/toml over manual parsing | Industry-standard Go TOML library, Undecoded() catches typos | Good |
| Pointer fields for partial overrides | `*float64`, `*string` distinguish "not set" from zero values | Good |
| Bandlimited additive synthesis | Prevents aliasing in square/sawtooth/triangle without FFT overhead | Good |
| FNV-32a hash for auto-frequency | Deterministic, collision-resistant, maps to unused 1200-2350 Hz range | Good |
| LoadResult struct over tuple return | Clean single return value, extensible for future fields | Good |
| --print-config as flag (not subcommand) | Consistent with --list-interfaces pattern, simpler CLI surface | Good |
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## Current Milestone: v1.2 Extended Protocol Coverage
**Goal:** Expand traffic classification with grouped protocol families that share recognizable sound signatures
**Target features:**
- Research common network protocols and identify missing ones beyond the current 10
- Group related protocols into families (Mail, Web, Remote Access, Database, Discovery, File Transfer, VoIP)
- Within-group sound design: shared base frequency, different waveforms or slight detuning
- Frequency rebalancing to accommodate new classes without overcrowding the spectrum
- New classification rules for all identified protocols
- Updated --print-config output reflecting groups
## Shipped Milestones
<details>
<summary>v1.1 Custom Sound Mappings (shipped 2026-03-26)</summary>
Users can customize how traffic sounds via a TOML config file — frequency, waveform, custom classification rules, and config inspection.
</details>
<details>
<summary>v1.0 MVP (shipped 2026-03-26)</summary>
Full capture -> classify -> synthesize -> MP3 pipeline with 14 traffic classes, BPF filtering, and pcap sonification.
</details>
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## Evolution
This document evolves at phase transitions and milestone boundaries.
**After each phase transition:**
1. Requirements invalidated? -> Move to Out of Scope with reason
2. Requirements validated? -> Move to Validated with phase reference
3. New requirements emerged? -> Add to Active
4. Decisions to log? -> Add to Key Decisions
5. "What This Is" still accurate? -> Update if drifted
6. Update README.md to reflect the current state of the project (features, usage, installation)
**After each milestone:**
1. Full review of all sections
2. Core Value check — still the right priority?
3. Audit Out of Scope — reasons still valid?
4. Update Context with current state
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---
*Last updated: 2026-03-27 after v1.2 milestone start*