Files
settled-reach/tooling/synth_ui_sounds.py
T
jpmschweitzerandClaude Opus 4.6 bc226d8baf chore(db): move db/connectors/ to tooling/db/ (#274)
Consolidates all connector scripts under tooling/ per project
structure conventions. Symlink at db/connectors → tooling/db/
preserves backwards compatibility (remove after Sprint 22).

Updated references in CLAUDE.md, Makefile, DEVOPS.md, all skill
files, agent files, rules, schema comments, and Sprint 21
briefings. Python scripts updated with correct SCHEMA_PATH
(now relative to WORKTREE_ROOT/db/schema.sql).

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-02-27 11:08:00 +01:00

207 lines
6.6 KiB
Python

#!/usr/bin/env python3
"""Synthesize insert-tech UI sounds for Sprint 7 #440.
Each sound uses a DIFFERENT synthesis technique to ensure distinct character:
- cursor_hover: impulse → resonant bandpass (digital click)
- weapon_aim: filtered noise + sub thump (mechanical)
- monologue_chime: FM synthesis (crystalline bell)
- monologue_chime_urgent: FM synthesis + beating/dissonance (tense bell)
"""
import numpy as np
import wave
import os
SR = 44100
OUTPUT_DIR = os.path.join(os.path.dirname(__file__), "..", "client", "assets", "audio")
def write_wav(filename, samples, channels=1):
"""Write float samples [-1, 1] to 16-bit WAV."""
path = os.path.join(OUTPUT_DIR, filename)
# Normalize to peak if it exceeds 1.0
peak = np.max(np.abs(samples))
if peak > 1.0:
samples = samples / peak
int_samples = np.clip(samples * 32767, -32767, 32767).astype(np.int16)
with wave.open(path, "w") as f:
f.setnchannels(channels)
f.setsampwidth(2)
f.setframerate(SR)
f.writeframes(int_samples.tobytes())
dur_ms = len(int_samples) / SR * 1000
print(f" wrote {path} ({dur_ms:.0f}ms, {channels}ch)")
return path
def simple_lowpass(signal, cutoff_hz, sr=SR):
"""Single-pole IIR low-pass filter."""
rc = 1.0 / (2 * np.pi * cutoff_hz)
dt = 1.0 / sr
alpha = dt / (rc + dt)
out = np.zeros_like(signal)
out[0] = alpha * signal[0]
for i in range(1, len(signal)):
out[i] = out[i - 1] + alpha * (signal[i] - out[i - 1])
return out
def simple_highpass(signal, cutoff_hz, sr=SR):
"""Single-pole IIR high-pass filter."""
rc = 1.0 / (2 * np.pi * cutoff_hz)
dt = 1.0 / sr
alpha = rc / (rc + dt)
out = np.zeros_like(signal)
out[0] = signal[0]
for i in range(1, len(signal)):
out[i] = alpha * (out[i - 1] + signal[i] - signal[i - 1])
return out
def cursor_hover():
"""UI-001: Digital click/tick on entity hover.
Technique: Short noise impulse bandpass-filtered to ~4kHz.
Sounds like a tiny digital snap — no sustained tone at all.
The "click" of a selection appearing on a HUD.
"""
duration = 0.035 # 35ms — shorter than before
n = int(SR * duration)
t = np.linspace(0, duration, n, endpoint=False)
rng = np.random.default_rng(77)
# White noise impulse
impulse = rng.uniform(-1, 1, n)
# Bandpass around 4kHz: high-pass at 3kHz, low-pass at 5kHz
filtered = simple_highpass(impulse, 3000)
filtered = simple_lowpass(filtered, 5500)
# Very fast decay — done in 25ms
envelope = np.exp(-t * 140)
return write_wav("cursor_hover.wav", filtered * envelope * 0.3)
def weapon_aim():
"""UI-004: Mechanical latch for weapon aim.
Technique: Low-pass filtered noise burst (the clack) + sub-bass
thump (the weight). No musical pitch — this is a MECHANICAL sound.
Think: safety clicking off, bolt sliding home.
"""
duration = 0.15 # 150ms
n = int(SR * duration)
t = np.linspace(0, duration, n, endpoint=False)
rng = np.random.default_rng(42)
# Component 1: Low-pass noise burst — the metallic clack
noise = rng.uniform(-1, 1, n)
# Low-pass at 1.5kHz — dull, heavy impact, not bright
clack = simple_lowpass(noise, 1500)
clack_env = np.exp(-t * 60) # fast decay
clack = clack * clack_env
# Component 2: Sub-bass thump — weight of the mechanism
# 80Hz sine, very fast decay
thump = np.sin(2 * np.pi * 80 * t)
thump_env = np.exp(-t * 40)
thump = thump * thump_env
# Component 3: High metallic click at the very start (2ms)
click = rng.uniform(-1, 1, n)
click = simple_highpass(click, 4000)
click_env = np.zeros(n)
click_mask = t < 0.003
click_env[click_mask] = np.exp(-t[click_mask] * 800)
click = click * click_env
signal = clack * 0.4 + thump * 0.35 + click * 0.25
return write_wav("weapon_aim.wav", signal * 0.45)
def monologue_chime():
"""UI-005: Crystalline thought-chime. PLACEHOLDER.
Technique: FM synthesis — carrier modulated by a lower frequency
creates rich, evolving harmonics that sound like struck glass or
crystal. Fundamentally different timbre from additive sine waves.
"""
duration = 0.75 # 750ms
n = int(SR * duration)
t = np.linspace(0, duration, n, endpoint=False)
# FM synthesis: carrier at 1200Hz, modulator at 420Hz (ratio ~2.86:1)
# Inharmonic ratio = bell-like quality
f_carrier = 1200
f_mod = 420
# Mod index decays over time — bright attack, mellow sustain
mod_index = 3.0 * np.exp(-t * 6)
# Modulator signal
modulator = mod_index * np.sin(2 * np.pi * f_mod * t)
# Carrier with FM
signal = np.sin(2 * np.pi * f_carrier * t + modulator)
# Gentle attack (20ms), slow decay
attack = np.minimum(t / 0.02, 1.0)
decay = np.exp(-t * 3.0)
envelope = attack * decay
return write_wav("sfx_monologue_chime.wav", signal * envelope * 0.22)
def monologue_chime_urgent():
"""UI-006: Urgent thought-chime. PLACEHOLDER.
Technique: FM synthesis with higher mod index (brighter/harsher) +
a second detuned carrier that creates beating/tension. The beating
is what makes it feel "urgent" — not louder, but unsettled.
"""
duration = 0.5 # 500ms — shorter
n = int(SR * duration)
t = np.linspace(0, duration, n, endpoint=False)
f_carrier = 1200
f_mod = 420
# Higher mod index = more sidebands = brighter, more aggressive
mod_index = 5.0 * np.exp(-t * 7)
modulator = mod_index * np.sin(2 * np.pi * f_mod * t)
# Primary carrier
carrier1 = np.sin(2 * np.pi * f_carrier * t + modulator)
# Second carrier, detuned +8Hz — creates beating at 8Hz (nervous flicker)
carrier2 = np.sin(2 * np.pi * (f_carrier + 8) * t + modulator * 0.8)
signal = carrier1 * 0.6 + carrier2 * 0.4
# Sharp attack (6ms), faster decay
attack = np.minimum(t / 0.006, 1.0)
decay = np.exp(-t * 4.0)
envelope = attack * decay
# 15% louder than normal
return write_wav("sfx_monologue_chime_urgent.wav", signal * envelope * 0.25)
if __name__ == "__main__":
os.makedirs(OUTPUT_DIR, exist_ok=True)
print("Synthesizing UI sounds for Sprint 7 #440...")
print()
print("[UI-001] cursor_hover — bandpass noise impulse (digital click)")
cursor_hover()
print("[UI-004] weapon_aim — filtered noise + sub thump (mechanical latch)")
weapon_aim()
print("[UI-005] sfx_monologue_chime — FM synthesis bell (PLACEHOLDER)")
monologue_chime()
print("[UI-006] sfx_monologue_chime_urgent — FM + beating (PLACEHOLDER)")
monologue_chime_urgent()
print()
print("Done. Convert with: tooling/db/audio-post convert <file.wav>")