| name | procedural-composer |
| description | Pure-code procedural audio synthesis guide for sound effects (SFX) and polyphonic background music (BGM) in games. Generates 16-bit stereo PCM audio in memory without external audio files, featuring multi-channel polyphonic composition, ADSR envelopes, frequency modulation, and declarative JSON sound definitions with a CLI player and WAV exporter. Activate when synthesizing sound effects, composing chiptune background music, building zero-asset audio engines, or exporting procedural sounds to WAV.
|
| license | Apache-2.0 |
| metadata | {"category":"game-dev","tags":"procedural-audio, game-dev, chiptune, synth, sfx, bgm","author":"Daniela Petruzalek (daniela@danicat.dev)","version":"0.2.0","catalog":"https://skills.danicat.dev"} |
Procedural Composer: Pure-Code Audio Synthesis & Chiptune/Game Sound Engine Guide
This skill provides complete mathematical, musical, and software architecture patterns for generating high-quality sound effects (SFX) and polyphonic background music (BGM) purely in code—without relying on external .wav, .mp3, or .ogg audio files.
Available scripts
scripts/sound.go: Sound engine driver and declarative JSON audio definition parser.
scripts/sound_test.go: Go unit tests and example BGM/SFX composition recipes.
scripts/play.go: CLI audio player and WAV export utility.
1. Core Architectural Principles & DSP Foundations
1.1 Zero-Asset Engine Strategy
Procedural audio synthesizes audio samples on-the-fly or bakes them into PCM buffers in memory at application startup:
- Zero disk I/O: Eliminates asset loading failures and missing file errors.
- Minimal footprint: Thousands of sounds and complex soundtracks require only kilobytes of code.
- Dynamic runtime control: Real-time manipulation of pitch, tempo, filter cutoff, vibrato, and volume based on game state.
1.2 Output Format Standard
Standard audio output uses 16-bit signed Little-Endian PCM stereo at 44,100 Hz (or 48,000 Hz):
- Sample Rate ($f_s$): $44,100 \text{ Hz}$ (44,100 samples per second per channel).
- Channels: 2 (Stereo: Left [bytes 0–1], Right [bytes 2–3]).
- Bits Per Sample: 16-bit signed integer range $[-32,768 \text{ to } +32,767]$.
2. SECTION 1: Background Music (BGM) Composition & Architecture
2.1 Yamaha YM2612 Benchmark & Multi-Channel Richness Standard
To achieve rich, professional game soundtrack quality, procedural music generators should mimic or exceed the complexity of classic 16-bit sound chips such as the Yamaha YM2612 (Sega Genesis) and SNES SPC700.
The YM2612 6-Channel Standard
A music track should feature at least 6 distinct polyphonic channels/instrument layers mixed simultaneously:
- FM Channel 1 (Lead Melody): Primary lead line (sawtooth or low-duty pulse wave with LFO vibrato).
- FM Channel 2 (Counter-Melody): Secondary counterpoint or call-and-response lead line.
- FM Channel 3 (Harmony Pad / Strings): Sustaining chord pad holding harmonic progression.
- FM Channel 4 (Bassline): Driving octave or walking bassline (square, saw, or triangle sub-bass).
- FM Channel 5 (Arpeggiator / Motion): Rapid 16th or 32nd note arpeggio runs for movement.
- FM Channel 6 / Noise (Drums / Percussion / SFX Stinger): Filtered noise bursts for snare/hi-hat or kick transients.
2.2 Dual Music Playback Architecture: One-Off vs. Looped Playback
The audio playback subsystem (SoundSystem in scripts/sound.go) explicitly supports two distinct playback modes:
- Looped Playback (
Play(pcm, true)): For stage themes, boss battles, title screens, and menus where music must loop continuously without audible gaps using an infinite reader wrapper (audio.NewInfiniteLoop).
- One-Off / Single Play (
Play(pcm, false)): Default mode for game over music, stage clear fanfares, calamity alerts, and victory stingers that play once to completion and then stop without looping.
2.3 Style-Based Reference Baselines for Duration & Tempo (BPM)
Tempo (BPM) and track length are heavily dictated by game style, genre, narrative mood, and scene context (e.g., bullet-hell shmup vs. ambient puzzle vs. epic RPG). The table below offers flexible reference baselines rather than rigid rules:
BPM to Note Duration Calculation
$$t_{\text{beat}} = \frac{60}{\text{BPM}}$$
- Quarter Note ($1/4$): $t_{\text{beat}}$
- Eighth Note ($1/8$): $t_{\text{beat}} / 2$
- Sixteenth Note ($1/16$): $t_{\text{beat}} / 4$
- Measure ($4/4$ time): $240 / \text{BPM}$ seconds
Flexible Scene Reference Table
| Scene / Event Type | Playback Mode | Typical Duration Baseline | Typical BPM Range | Composition Style & Musical Notes |
|---|
| Stage / Gameplay | Looped | $60\text{s} - 180\text{s}+$ | $100 - 160\text{ BPM}$ | Multi-part structure (Intro $\rightarrow$ Theme A $\rightarrow$ Theme B $\rightarrow$ Climax $\rightarrow$ Loop) to prevent loop fatigue during long play sessions. |
| Boss Battle | Looped | $45\text{s} - 120\text{s}$ | $140 - 180+\text{ BPM}$ | Fast-paced, driving syncopation, diminished/phrygian modes, aggressive YM2612-style FM leads. |
| Title / Menu | Looped | $20\text{s} - 60\text{s}$ | $80 - 130\text{ BPM}$ | Catchy theme or ambient melody setting the game atmosphere. |
| Game Over | One-Off | $4\text{s} - 15\text{s}$ | $60 - 90\text{ BPM}$ | Non-looping single play. Sad descending chromatic slide or minor chord resolution. Keeps restart friction low. |
| Stage Clear / Fanfare | One-Off | $5\text{s} - 15\text{s}$ | $120 - 160\text{ BPM}$ | Non-looping single play. Triumphant ascending major arpeggio fanfare celebrating completion. |
3. SECTION 2: JSON Sound Format & CLI Player (play.go)
To test sound effects and multi-track compositions outside game runtimes, use the declarative JSON Sound Format parsed natively by scripts/sound.go.
3.1 Declarative JSON Sound Specification
Sound Effect JSON (sfx_laser.json)
{
"title": "Laser Bow Shot",
"type": "sfx",
"sequence": [
{
"wave_type": "square",
"duration": 0.15,
"start_freq": 800.0,
"end_freq": 150.0,
"duty_cycle": 0.25,
"volume": 0.3,
"attack": 0.01,
"decay": 0.05,
"sustain": 0.2,
"release": 0.09,
"pan": 0.0
}
]
}
Multi-Track BGM Song JSON (song_boss.json)
{
"title": "Boss Battle Theme",
"type": "song",
"bpm": 150,
"time_signature": "4/4",
"tracks": [
{
"name": "Ch1 Sawtooth Lead",
"pan": -0.2,
"notes": [
{
"wave_type": "sawtooth",
"duration": 0.2,
"start_freq": 659.25,
"end_freq": 659.25,
"vibrato_freq": 8.0,
"vibrato_depth": 10.0,
"volume"
3.2 Using the CLI Player Tool (play.go)
The CLI player scripts/play.go allows developers and testing agents to play or export audio definitions:
go run ./scripts play sound.json
go run ./scripts play -loop song_stage.json
go run ./scripts demo
go run ./scripts demo -loop
go run ./scripts export song_stage.json stage_theme.wav
4. Mandatory Quality Directives for AI Generation
When an AI agent uses this skill to compose audio or generate sound driver code:
- NEVER Generate Short 1-Bar or 2-Bar Musical Loops:
- Any BGM generated MUST be a complete composition spanning at least 8 to 16 bars with chord progressions, theme development, and harmonic transitions.
- MANDATORY 6-Channel Polyphony:
- Every background soundtrack MUST feature at least 6 distinct polyphonic instrument tracks (Lead, Counter-Melody, Harmony Pad, Bass, Arpeggiator, Drums/Percussion).
- MANDATORY Expressive Parameterization:
- Every note/track MUST specify tailored
DutyCycle ($0.125 - 0.5$), Pan (stereo field distribution), VibratoFreq/VibratoDepth for lead instruments, and distinct ADSR envelope ramps.
- MANDATORY 32-Bit Summation & Clamping:
- Multi-track audio mixing MUST sum in 32-bit integers (
int32) and hard-clamp to [-32768, +32767] to eliminate wrap-around distortion.
- No Monophonic Beeps:
- Sound effects must use frequency modulation sweeps, noise filters, or 2-stage note sequences (
GenerateSequencePCM) to sound crisp, punchy, and retro-console authentic.
5. Gotchas & Engineering Best Practices
- Integer Overflow Wrap-Around: Summing track samples directly in
int16 causes violent digital clipping and speaker crackle. Always sum tracks in int32 and hard-clamp to [-32768, +32767].
- Audio Popping & Clicks: Instantly stopping a waveform oscillator creates a steep DC offset jump that sounds like a loud "pop" or click. Always apply a release envelope ramp (at least $5\text{--}10\text{ ms}$).
- Memory & Frame GC Spikes: Avoid instantiating or generating PCM slices inside main frame rendering functions (
Update/Draw). Pre-render all audio buffers during system initialization.
- Audio Channel Choking: High-frequency user events (e.g. clicking 50 times/sec) will choke audio players. Implement cooldown rate limiters ($30\text{--}50\text{ ms}$) on interactive triggers.
6. Summary Checklist for Procedural Audio Quality
- Pre-render SFX & Loops: Generate PCM byte buffers on boot to keep execution overhead at zero during gameplay frames.
- Mimic YM2612 6-Channel Polyphony: Layer at least 6 distinct instrument channels (Lead, Counterpoint, Pad, Bass, Arpeggio, Percussion/Noise) to achieve retro console soundtrack depth.
- Support Dual Playback Modes: Provide both
Play(pcm, false) (one-off) for stingers and Play(pcm, true) (infinite loop) for BGM.
- Hard-Clamp Mixed PCM: Always sum in
int32 and clamp to [-32768, +32767] when mixing audio tracks to avoid harsh digital overflow wrap-around distortion.
- Declarative JSON & CLI Testing: Use JSON sound definitions and
go run . export to validate audio quality and generate .wav previews.
- Enforce AI Generation Quality Directives: Enforce 16-bar length, 6-channel polyphony, and expressive parameterization on all agent outputs.
7. State-Based Adaptive BGM Composition Rules
When composing code-synthesized multi-track audio for dynamic game states:
- Exploration / Ambient: Low BPM ($60\text{--}90$), sparse instrumentation, soft pads, subtle woodwinds, key of C Major.
- Tension / Stealth: Medium BPM ($90\text{--}110$), staccato strings, muted sub-bass, ticking percussion.
- Combat / Action / Boss: High BPM ($120\text{--}160+$), driving drums, heavy bassline, intense brass/synths, key of D minor.