Effect implementations: HLE reconstruction + DSP bytecode

One page per effect, pairing the disassembled µPD6383GF microprogram with the MAME HLE reconstruction that renders it. The reconstruction is an educational bridge — it shows what each decoded coefficient and idiom does, which is how the bytecode is read and, ultimately, how a faithful low-level emulation will be built. Each effect is also drawn as a signal-flow flowchart.

DSPHLE Effect Grade Program image
0x01 Parametric EQ pinned prog39_parametric_eq
0x02 Single Delay pinned prog09_single_delay
0x03 Chorus pinned prog01_chorus
0x04 Flanger pinned prog04_flanger
0x05 Phaser pinned prog05_phaser
0x06 Ensemble pinned prog06_ensemble
0x07 Vibrato pinned prog50_vibrato
0x08 S.Delay + Chorus pinned prog64_s_delay_chorus
0x09 S.Delay + Flanger/Vibrato/Phaser/S.Delay pinned prog66_s_delay_flanger
0x0d PEQ + S.Delay pinned prog72_peq_s_delay
0x0e Reverb preview prog16_room_reverb_1
0x0f Distortion preview prog32_distortion
0x10 Enhancer preview prog03_enhancer
0x11 Exciter preview prog35_exciter
0x12 Auto Wah preview prog52_auto_wah
0x13 Auto Pan preview prog48_auto_pan
0x14 Ring Modulator preview prog54_ring_modulator
0x15 Multi Tap Delay preview prog10_multi_tap_delay
0x16 Compressor preview prog36_compressor
0x17 Gated Reverb preview prog08_gated_reverb
0x18 Mix Up preview prog56_mix_up
0x19 Rotary Speaker preview prog15_rock_rotary
0x1a PEQ + X / Auto-Wah + Delay combos preview prog71_peq_chorus

Grades: pinned = a panel control was driven and the moving C-RAM cell identified; preview = topology decoded and reconstructed, most panel→cell role mappings position-decoded. Generated by tools/gen_effect_impl_pages.py from the live sources — see each page for links.