Deafbeef · interactive mechanism simulation

Self-written C code lives on-chain as the artwork. Mint seeds a hash → per-token parameters. Every transfer increments an Entropy degradation counter that filters the generated media toward noise; owner calls tweak Glitchbox parameters directly. The renderer can always recompile the code, so nothing is ever truly lost. Edit the parameters and watch a token's fate change.
0xDEAFBEEF contract self-written C, no libraries code is the artwork Mint token 0 / 64 Off-chain renderer compiles & runs the C reconstructable forever Token state degradation: 0% · pristine glitch depth: 0% params seeded at mint Transfers Entropy: +6% / trade owner-to-owner Owner call Glitchbox: tweak params collector as performer Media output pristine
Tokens minted
0 / 64
Transfers recorded
0
Degradation (Entropy)
0%
Owner tweaks (Glitchbox)
0
Parameters — edit me
64
0.6/s
6%
0.4/s
Controls

Illustrative simulation. Defaults reflect the researched Deafbeef mechanism (small fixed editions, hash-seeded per-token parameters, transfer-triggered degradation in the Entropy series, owner-tunable parameters in Glitchbox) — event timing and visuals are randomized for demonstration, not live onchain data. The stress test shows how degradation approaches noise, then how the renderer can always recompile the untouched code, since no information is destroyed. Part of The Onchain Experiment Atlas.