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# MAP
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MEMLNaut-NISPS — Neural Interactive Shaping of Parameter Spaces. One C++20 codebase (`nisps/`) compiles to two targets: (1) Arduino/RP2350 firmware for the MEMLNaut hardware, (2) WASM in the Manifold React browser app that runs the same engines + ML through an AudioWorklet. (The former SolidJS playground was retired 2026-07-13 — branch `archive/playground-solidjs` , tag `playground-solidjs-final` ; the browser-only C15 engine lives only there for now.) See `CLAUDE.md` for the long-form architecture narrative and `ALIGNMENT.md` for current strategic gaps.
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## Layout
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### `nisps/` — platform-agnostic C++20 library (the only ML/DSP/engine code)
- `nisps/core/` — `perf.hpp` (memory section attrs), `types.hpp` , `concepts.hpp` (`MLEngine`, `AudioEngine` , `Mode` ), `fixed_buffer.hpp` , `ring_buffer.hpp` (SPSC lock-free, replaces pico/util/queue), `rng.hpp` (xoshiro256+ deterministic), `math.hpp` (fast_sigmoid, `Curve` enum + `apply_curve` ).
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- `nisps/ml/` — the MLP core, written once against a storage policy (`mlp.hpp` `MLPCore<Storage>` ): `storage.hpp` (`FixedStorage` — template-sized `std::array` , zero heap; `MLP<NIn,NH1,NH2,NH3,NOut>` alias preserves the classic compile-time surface) and `dynamic_storage.hpp` (`DynamicStorage` — runtime dims, single arena alloc at construction; `#error` s on RP2350 builds, sole lint heap-allowlist entry). Fixed↔dynamic bit-parity enforced by `tests/cpp/test_mlp_storage_parity.cpp` . Files: `mlp.hpp` , `activations.hpp` , `loss.hpp` (MSE, no double-scaling), `training.hpp` (SGD + grad clipping), `init.hpp` (spread-aware uniform↔Xavier), `rl.hpp` (`move_weights` with output pin mask + per-layer scaling + weight decay), `jolt.hpp` (`Jolt` — held continuous weight-morph over the flat weight buffer + post-release LR ramp; ported from upstream InterfaceRL), `ou_noise.hpp` (`OUNoise< N > ` — Ornstein-Uhlenbeck exploration walk on the output vector; ported from upstream InterfaceRL), `feedback.hpp` (`FeedbackControllerCore< FbStorage > ` — the "Down Action" state machine: Avoid (geometric push-away default / Diffuse legacy) / RandomiseOutputs / RandomiseMlp / ExploreAndPlace; storage-policied like the MLP, own deterministic RNG, exposed via `nisps_ml_feedback_*` C API), `replay.hpp` (`ReplayView` — reward-tagged memory: dedup/deepen, k-NN positive centroid with deterministic tie-break, proportional decay+eviction), `geo_push.hpp` (push-away target computation, upstream InterfaceRL @ 0a541cc), `warm_start.hpp` (overlapping-weights copy for reshape), `stats.hpp` . Jolt + OU are inert by default and wired into `ModeBase` , so every mode exposes `jolt_press/jolt_release` , `jolt_lr_scale` , and `set_explore_intensity` .
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- `nisps/pipeline/` — the control-rate input/output processing chains (P4): `input_chain.hpp` (`InputChain` — invert→deadzone→circular clamp→momentum-modulated zoom→centred power→EMA→momentum; caller-supplied dt, internal clock, fixed velocity ring, serialisable state) and `output_chain.hpp` (`OutputChain< NMax > ` — curve→EMA→slew→freeze(+mask), capacity-templated). Behaviour contract = the retired manifold TS pipelines, pinned by `manifold/tests/fixtures/` and parity stage 7.
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- `nisps/dsp/` — `biquad.hpp` , `delay.hpp` , `reverb.hpp` , `filter.hpp` , `env.hpp` , `osc.hpp` , `pitch_shift.hpp` , `dc_blocker.hpp` . Lean primitives extracted from maximilian; daisysp PitchShifter replaced with custom granular impl.
- `nisps/engines/` — eight audio engines, each satisfying `AudioEngine` : `paf_synth.hpp` , `channel_strip.hpp` , `xiasri.hpp` , `verb_fx.hpp` , `memlcelium.hpp` , `breakor.hpp` (sequencer, NoOp audio), `elysiamorf.hpp` (sequencer, NoOp audio), `analysis.hpp` (input-side spectral features). Plus `base.hpp` (`NoOpEngine`, engine_id "thru").
feat(slp-workshop): new MEMLCelium-based mode + port Jolt & OU-noise RL learning
New SLP-Workshop firmware variant (Synth Library Portland), built on the
MEMLCelium engine + MLP shape. Ports the two post-fork learning-algorithm
changes from upstream memllib InterfaceRL into the shared nisps/ml core,
runtime-configurable (no compile-time switch), inert by default:
- nisps/ml/jolt.hpp: Jolt — held continuous weight morph over the flat
weight buffer + post-release LR ramp (kJolt* constants verbatim).
- nisps/ml/ou_noise.hpp: OUNoise<N> — Ornstein-Uhlenbeck exploration walk
on the output vector (theta=0.02, dt=0.001, kMaxAmplitude=0.65).
Both wired into ModeBase so every mode gains jolt_press/jolt_release/
jolt_lr_scale + set_explore_intensity; gated so existing modes stay
bit-identical (parity + golden tests green). Firmware surfaces them on
TogB1 (Jolt) and RVX1 (explore). New SLPWorkshopMode mode + schema +
codegen; firmware alias + .ino variant; playground mode registration.
Tests: jolt + OU unit tests, ModeBase learning integration incl. an
inert-parity test proving SLP-Workshop == MEMLCelium with features off.
Verified: cpp tests, wasm build, native↔wasm parity, lint, codegen
golden, playground typecheck. Firmware compile/e2e/hardware are
environment-bound (no arduino-cli/submodules/browser here).
Refs ergo 019f0fca.
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- `nisps/modes/` — platform-agnostic modes binding `{ML config, engine, voice space lambdas, abstract I/O channels}` . Files: `paf_synth.hpp` , `channel_strip.hpp` , `xiasri.hpp` , `verb_fx.hpp` , `memlcelium.hpp` , `slp_workshop.hpp` (`SLPWorkshopMode` — the Synth Library Portland workshop build; reuses the MEMLCelium engine + MLP shape, foregrounds the Jolt + OU explore gestures), `breakor.hpp` , `elysiamorf.hpp` , `sound_analysis_midi.hpp` , `external_synth_midi.hpp` (`ExternalSynthMIDIMode< const MidiDevice &, NOut > ` — joystick→MLP→MIDI CC for an external synth; compile-time device from `nisps/midi` ; `consteval pick_cc_slots` curates which params fill the NOut slots; NoOpEngine, `kRouteOutputsToEngine=false` ). `base.hpp` provides a CRTP scaffold eliminating the duplication that previously plagued firmware modes. `voice_space.hpp` holds engine-side voice space dispatch helpers. `generated/` contains codegen output (do not edit by hand).
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- `nisps/wasm/bindings.cpp` — flat C API exported to WASM (Emscripten target only).
feat(midi-devices): canonical external-synth CC templates + dual codegen
Add a durable, committed source of truth for external MIDI synth control:
- synth-midi-cc.json: verified CC maps + provenance/sources (8 devices researched)
- schemas/midi_device.schema.json + schemas/midi_devices/*.json: 6 CC-controllable
device templates (Moog Sub 37/Sub Phatty, Creamware Pro-12 ASB, Elektron Analog
Keys, ASM Hydrasynth, Roland JD-800), params keyed {id, cc, label, min, max,
default, group}.
- codegen/generate-midi-devices.ts (isolated from the mode golden test) emits both
nisps/midi/generated/midi_devices.hpp (no-heap constexpr, firmware+WASM) and
manifold/src/midi-devices/generated/ (typed catalogue for the browser).
- codegen/seed-midi-devices.ts: reproducible seed from the research artifact.
Lets a performer pick a device and address its parameters by name (not CC number)
on both the firmware and the Manifold browser engine.
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- `nisps/midi/generated/midi_devices.hpp` — codegen output: no-heap `constexpr` external-MIDI-synth templates (`nisps::midi::generated`; `MidiParam` /`MidiDevice` + `kMidiDevices` registry). Source = `schemas/midi_devices/` ; do not edit by hand.
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- `nisps/CMakeLists.txt` + `nisps/build/` — host-target builds + ctest.
### `firmware/` — Arduino sketch + hardware glue
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- `firmware/MEMLNaut-NISPS/MEMLNaut-NISPS.ino` — entry point. Selects active mode at compile time via `#define MEMLNAUT_MODE_TYPE` . Forks on `NISPS_SELFTEST` : normal modes run the engine/ML path; the `SelfTest` variant delegates all four entry points to `glue/selftest.hpp` .
Stream 6: extract firmware glue under firmware/
Move the Arduino sketch into firmware/MEMLNaut-NISPS/ and bridge the
hardware (memllib) to the platform-agnostic nisps/ library through a
slim glue layer. Delete the legacy root-level *AudioApp.hpp,
modes/MEMLNautMode*.hpp, voicespaces/, IMLInterface.hpp, XiasriAnalysis,
and the src/memlp submodule.
Glue layout (firmware/MEMLNaut-NISPS/glue/):
audio_driver.hpp - bridge memllib block callback to Mode::process
via per-Mode templated trampoline (no virtual dispatch)
peripherals.hpp - joystick/pots/buttons -> Mode::set_input + ML primitives
midi_io.hpp - MIDI in -> mode.note_on/update_bpm/set_playing,
drains mode ControlEvent ring -> MIDI UART
mode_select.hpp - using-aliases mapping MEMLNautMode<Name> to
nisps::modes::*Mode (build script rewrites the
#define MEMLNAUT_MODE_TYPE line)
input_router.hpp / output_router.hpp - top-level wire/drain entry points
The sketch tree uses src/{memllib,daisysp,nisps} symlinks because
Arduino-CLI rejects ".." in include paths from sketch-tree headers.
mode_select.hpp #undefs Arduino's sq/min/max/abs/round macros before
including nisps headers (some nisps engines use those identifiers as
method names). The audio bridge struct is extern in the header and
defined in the .ino because inline + __not_in_flash section attribute
collide at link time.
Verification: arduino-cli compile succeeds for PAFSynth, ChannelStrip,
and BreakOr (rp2040:rp2040:solderparty_rp2350_stamp_xl:opt=Optimize3,
-std=gnu++20). Host C++ tests under nisps/build still pass (3 binaries,
110+ tests). Build script (scripts/build-firmware.sh) updated to point
at the new sketch path; mode-rewrite logic unchanged.
Closes meml-gkm.
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- `firmware/MEMLNaut-NISPS/glue/` — hardware bindings:
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- `audio_driver.hpp` — bridges memllib `AudioDriver` callback → `Mode::process(stereosample_t)` .
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- `peripherals.hpp` — joystick / pots / buttons → `Mode::set_input` and ML primitives. Wires the shared `FeedbackController` ExploreAndPlace lifecycle (MomA1 = enter/exit explore, MomA2 = freeze/place, TogB2 = commit; MomB1/MomB2 = reroll/nudge while exploring **or** grab/drop *reposition* while idle) plus the adaptive-learning gestures: **TogB1** = Jolt (held weight morph), **RVX1** = exploration amount (OU output walk). Reposition relocates an existing positive example's output to a new input position (`feedback.hpp` `begin_reposition` /`commit_reposition`) — no scratchpad, no weight restore.
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- `midi_io.hpp` — MIDI in → mode `note_on` /`update_bpm`/`set_playing`; drains `ControlEvent` ring → MIDI UART.
feat(firmware): ExternalSynthMIDIMode + 6 device variants
Joystick -> MLP -> MIDI CC for an external hardware synth, using the
compile-time device templates from nisps/midi/generated. ExternalSynthMIDIMode
<const MidiDevice&, NOut> mirrors SoundAnalysisMIDIMode (NoOpEngine,
kRouteOutputsToEngine=false, pushes ControlChange events). A consteval
pick_cc_slots curates which NOut params fill the output slots (prefers musical
params over Bank Select/global). Adds six flashable variants
(MEMLNautModeExtSynth{Sub37,SubPhatty,Pro12,AnalogKeys,Hydrasynth,JD800}) wired
into mode_select.hpp + the .ino variant list + NISPS_ST guards, and a src/nisps/
midi symlink so the sketch tree can reach nisps/midi.
Host-compile-verified under C++20 (incl. via the sketch include path) and
lint-clean; full arduino-cli build + flash is on the hardware (no toolchain here.
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- `mode_select.hpp` — type aliases mapping firmware mode identifiers to `nisps::modes::*Mode` C++ types. Build script rewrites the active line. Includes the six `MEMLNautModeExtSynth*` external-synth variants (one per device template in `nisps/midi` , e.g. `MEMLNautModeExtSynthSub37` ). Also defines the `MEMLNautModeSelfTest` pseudo-variant (tag type) + the `NISPS_ST_*` /`NISPS_ST_CAT` token-paste macros the `.ino` uses to compute `NISPS_SELFTEST` . Note: `src/nisps/` exposes each referenced top-level nisps subdir as a symlink — `midi` was added alongside `core/dsp/engines/ml/modes` .
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- `selftest.hpp` — standalone guided hardware self-test rig (`SelfTest` variant; no engine/ML). Step-driven state machine on a `SelfTestView` : TFT prompts the operator through every control, auto-advances on detection, encoder-press skips. Ends with optional L/R/BOTH sine-sweep headphone check (core 1 block callback) + MIDI loopback-cable test. Lives firmware-side (touches TFT + raw pins) so it stays out of platform-agnostic `nisps/` .
Stream 6: extract firmware glue under firmware/
Move the Arduino sketch into firmware/MEMLNaut-NISPS/ and bridge the
hardware (memllib) to the platform-agnostic nisps/ library through a
slim glue layer. Delete the legacy root-level *AudioApp.hpp,
modes/MEMLNautMode*.hpp, voicespaces/, IMLInterface.hpp, XiasriAnalysis,
and the src/memlp submodule.
Glue layout (firmware/MEMLNaut-NISPS/glue/):
audio_driver.hpp - bridge memllib block callback to Mode::process
via per-Mode templated trampoline (no virtual dispatch)
peripherals.hpp - joystick/pots/buttons -> Mode::set_input + ML primitives
midi_io.hpp - MIDI in -> mode.note_on/update_bpm/set_playing,
drains mode ControlEvent ring -> MIDI UART
mode_select.hpp - using-aliases mapping MEMLNautMode<Name> to
nisps::modes::*Mode (build script rewrites the
#define MEMLNAUT_MODE_TYPE line)
input_router.hpp / output_router.hpp - top-level wire/drain entry points
The sketch tree uses src/{memllib,daisysp,nisps} symlinks because
Arduino-CLI rejects ".." in include paths from sketch-tree headers.
mode_select.hpp #undefs Arduino's sq/min/max/abs/round macros before
including nisps headers (some nisps engines use those identifiers as
method names). The audio bridge struct is extern in the header and
defined in the .ino because inline + __not_in_flash section attribute
collide at link time.
Verification: arduino-cli compile succeeds for PAFSynth, ChannelStrip,
and BreakOr (rp2040:rp2040:solderparty_rp2350_stamp_xl:opt=Optimize3,
-std=gnu++20). Host C++ tests under nisps/build still pass (3 binaries,
110+ tests). Build script (scripts/build-firmware.sh) updated to point
at the new sketch path; mode-rewrite logic unchanged.
Closes meml-gkm.
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- `input_router.hpp` , `output_router.hpp` — top-level `wire_inputs()` / `drain_outputs()` entry points.
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- `settings_view.hpp` — `wire_settings(mode)` : adds on-device settings views to the MEMLNaut display carousel (TFT + rotary encoder). Joystick Dual/Single toggle for the 4-input ("two 2-D joystick") modes — "Single" pins ML input channels 2,3 to neutral via `ModeBase::set_input_pinned` (no net rebuild). Registered in the `.ino` after `addSystemInfoView()` .
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- `firmware/MEMLNaut-NISPS/src/{memllib,daisysp,nisps}` — symlinks (Arduino-CLI requires sketch-tree includes; preprocessor refuses `..` in headers).
- `firmware/README.md` — structure + build instructions.
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- `firmware/MEMLCelium-upstream/` — **vendored** verbatim snapshot of the upstream `MusicallyEmbodiedML/MEMLNaut-NISPS` @ `main` Arduino sketch (pre-refactor monorepo, does NOT use `nisps/` ), preset to `MODE_MEMLCELIUM` . Self-contained: upstream `memllib` @`e291192d` + `memlp` @`ea777502` vendored as plain files; `src/daisysp` in-tree. Built directly with `arduino-cli` (not the repo build scripts) — see its `README.md` for provenance + the compile command.
- `firmware/useq-celium/` — standalone RP2040 firmware (PlatformIO, Arduino-Pico core) that turns a uSEQ module + CV expander into a USB→CV/gate converter driven by the manifold `cvgate` backend. `shared/protocol.h` is the v2 wire-protocol single source of truth (mirrored by `manifold/src/backends/useq-protocol.ts` ); `main/` (USB serial → CV1– 3 + GATE1– 3, I2C → expander) and `expander/` (I2C slave → CV4– 11). Wire spec: `docs/specs/useq-cv-protocol.md` . Restored from the April-2026 "uSEQ-Celium" mode.
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### `manifold/` — Vite + React + TS convertible-mode app (the sole browser app)
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The Manifold "convertible" Console on the real engine, deployed at `meml.lnfinitemonkeys.org/next` (staging,
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alongside the live vanilla a-immersive at `/` ). Built 2026-06-27/28; see `docs/specs/plans/BUILD-PLAN.md` (resume
anchor + locked decisions) and the `docs/specs/*-spec.md` set.
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- `manifold/src/engine/` — the parity-tested TS engine LIFTED from `playground/src` (same `nisps.wasm` ), made
framework-neutral: `wasm-iml.ts` (rewired off Solid stores onto an injected `EngineSink` ), `engine-host.ts` +
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`worklet/nisps-processor.ts` (audio), thin WASM wrappers over the core pipelines + curve catalog (the TS
`input-pipeline` /`output-pipeline`/`curves` implementations died at P4), `wasm-worker.ts` ,
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`spine.ts` (the reactive spine BELOW React — `setInput` derives processed→ml→routed eagerly off-render),
`engine-api.ts` (`EngineApi` façade incl. `feedback.*` wrappers over the `nisps_ml_feedback_*` C ABI),
`EngineProvider.tsx` /`useEngine.ts` (React binding via `useSyncExternalStore` version counter). nisps.js is
loaded via fetch+indirect-eval (Emscripten MODULARIZE glue has no ES exports), base-aware via `document.baseURI`
for the `/next` sub-path.
- `manifold/src/primitives/` — the 12 design primitives as typed React.
- `manifold/src/console/` — the convertible Console: `ConsoleApp` , `CompositeStage` (single-divider convertible
with snap/magnetism/minimap-demotion), `SplitStage` /`OutputStage`/`InputMini`/`Manifold` (canvas, rect↔circular
+ feedback markers), `Dock` (top Mode selector + 5 vertically-centred drawers), `Drawers` (Learning/Inputs/
Outputs/Settings/Help), `VerdictCluster` (mode-aware), `ReadoutStrip` , `OutputEditor` /`CurvePad`, `icons.tsx`
feat(manifold): P5.2/P5.3 — derive MF_MODES from schema truth + per-mode engine dims
Schema-backed modes in console/model.ts are now DERIVED from the codegen
schemas in src/modes/generated/ (source of truth): real param names/groups/
count, plus each mode's ml net shape (MFMode.ml) and schema engine_id. A thin
manifold OVERLAY supplies only label/glyph/ModeClass/input/ordering. New
browser-viable modes xiasri + slp_workshop get derived entries; schema-less
visualizer + c15 stay hand-written on DEFAULT_MODE_ML. Schema min/max/default/
label/curve surface as engine-unit metadata (schemaMin/... on MFParam) without
touching the 0..1 routing semantics.
Switching instrument mode reshapes the runtime-shaped WASM net to the mode's
schema ml config (ConsoleApp effect keyed on [engine, modeId]; no confirm
modal). Boot lands paf_synth dims (4->[10,10,14]->33) once WASM is ready. The
P2.3 axis-count reshape offer still reads the engine's live inputSize and does
not spuriously prompt on a mode switch.
Adds schema-modes.spec.ts (P5 gate): drives switches via a new window.__mf
debug seam and asserts describe() dims, getWeights count, output length/bounds,
and UI param count FROM the imported schemas; spot-checks trainAsync after a
switch. Updates reshape/probe-api/geo-dislike specs to assert from the boot
mode schema instead of the retired fixed 32/126 shape.
All gates green: typecheck, unit (9), build, e2e (33).
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(monochrome currentColor SVG), `model.ts` (`MF_MODES` catalogue — schema-backed modes DERIVED from
`manifold/src/modes/generated/` ; carries per-mode `ml` net shape + `engineId` ), `output-mode.ts` .
- `manifold/src/modes/generated/` — codegen output (`*_schema.ts`, do NOT hand-edit): `ModeSchema`
consts (mode_id, engine_id, ml dims, params, voice_spaces, ui) — the SOURCE OF TRUTH for `MF_MODES` .
Switching mode reshapes the WASM net to the mode's `ml` dims (ConsoleApp P5.3; boot mode paf_synth →
4→[10,10,14]→33).
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- `manifold/src/dock/` — `OutputControlRow` (off/fixed/live + mute + solo/arm + min/max/curve), `output-state.ts` ,
`OutputsBackendConfig.tsx` (per-backend specialised Outputs panel), `BackendAdvanced.tsx` .
- `manifold/src/backends/` — `OutputBackend` adapter + `BackendManager` (spine consumer); `midi-backend.ts`
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(WebMIDI), `osc-backend.ts` +`osc-client.ts` (OSC-over-WS), `vcv-backend.ts` (VCV-over-WS), `cv-backend.ts`
(`UseqCvBackend` — uSEQ CV/gate over USB Web Serial, backend id `cvgate` ) + `useq-protocol.ts` (v2 wire
protocol, mirrors `firmware/useq-celium/shared/protocol.h` ; `useq-protocol.test.ts` runs via `bun test` ),
`particle-backend.ts` , `passthrough-backend.ts` , `presets.ts` (named presets), `manager.ts` .
feat(midi-devices): canonical external-synth CC templates + dual codegen
Add a durable, committed source of truth for external MIDI synth control:
- synth-midi-cc.json: verified CC maps + provenance/sources (8 devices researched)
- schemas/midi_device.schema.json + schemas/midi_devices/*.json: 6 CC-controllable
device templates (Moog Sub 37/Sub Phatty, Creamware Pro-12 ASB, Elektron Analog
Keys, ASM Hydrasynth, Roland JD-800), params keyed {id, cc, label, min, max,
default, group}.
- codegen/generate-midi-devices.ts (isolated from the mode golden test) emits both
nisps/midi/generated/midi_devices.hpp (no-heap constexpr, firmware+WASM) and
manifold/src/midi-devices/generated/ (typed catalogue for the browser).
- codegen/seed-midi-devices.ts: reproducible seed from the research artifact.
Lets a performer pick a device and address its parameters by name (not CC number)
on both the firmware and the Manifold browser engine.
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- `manifold/src/midi-devices/` — external-synth device templates. `generated/` is codegen output from
`schemas/midi_devices/` (`MIDI_DEVICES` catalogue + `MIDI_DEVICES_BY_ID` , params by name+CC). The MIDI Outputs
config (`dock/OutputsBackendConfig.tsx`) reads it for the device picker + param-select that fills the CC table.
feat(manifold): MIDI + game controller inputs; widen ML net to N-D
Wire the modular input layer into the Console and reshape the browser
engine so input axes are genuine independent dimensions.
Inputs (manifold/src/inputs/):
- gamepad-source: emit press+release edges with standard-mapping labels
(enables hold-and-move); single/double-stick already present.
- midi-input-source: single-device selection + batch "MIDI Learn"
(every CC swept while armed becomes an axis); notes stay discrete.
- input-layer: compose() forwards each axis 1:1 (no mean-blend);
add onReducedInput so the manifold tracks gamepad/MIDI position.
- types: InputAction.phase, InputMode.
Console (manifold/src/console/):
- ConsoleApp: bind gamepad buttons to verdicts (RB up / LB down /
X randomise / Y nudge / B undo / A-hold reposition); mirror composed
position onto the manifold.
- Drawers: rebuilt Inputs drawer (source picker, gamepad legend, MIDI
device picker + batch-learn flow, learned-control meters).
Engine (nisps/wasm, manifold/src/engine):
- DefaultMLP widened MLP<2,..> -> MLP<32,..> (32 = MAX_AXES); each
active axis gets a dedicated slot, unused slots held at 0 (inert).
Rebuilt nisps.wasm (playground + manifold).
- spine/engine-api: setInputs writes the full N-D vector (was dropping
arr[2+]); primary pair keeps the 2-D pipeline; process() re-ticks the
whole vector via spine.reprocess().
Tests:
- parity_check/parity_wasm: ParityMLP -> 32 inputs, widen example bufs.
- CMakeLists: build parity binary with -ffp-contract=off so native
matches FMA-free WASM (training amplified the gap past 1e-5).
Inputs dock is still an exclusive picker; mixing toggles, reshape modal,
and the >2-D slider view (inputs-spec.md) are groundwork-laid but not
yet wired. See docs/redesign/midi-gamepad-inputs-worklog.md.
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- `manifold/src/inputs/` — modular INPUT layer feeding the ML head. The Inputs dock picks ONE exclusive mode
(`InputMode` = `internal` | `gamepad` | `midi` ; Internal/XY-pad is default). `input-layer.ts` owns a single rAF
loop composing the active source's axes → reduced to the engine arity (fixed 2-in WASM → even/odd blend) → one
`setInputs` , plus an `onReducedInput` callback the manifold tracks. Sources: `xy-pad-source` (push-driven),
`gamepad-source` (sticks→axes single/double; buttons emit press+release actions, bound in `ConsoleApp` to
verdicts — LB/RB=down/up, X/Y/B=randomise/nudge/undo, A-hold=reposition), `midi-input-source` (device picker +
BATCH "MIDI Learn": every CC swept while armed becomes an axis, shown as read-only meters). `useInputLayer.ts`
is the React binding; `base-source.ts` shared status/action plumbing; `types.ts` the adapter contract.
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- `manifold/src/feedback/` — `controller.ts` (Explore-and-place scratchpad + geometric-dislike + solo, TS
prototype), `rng.ts` (seeded).
- `manifold/src/settings/` — `settings-store.ts` (monochrome icons, input-map shape, corner radius).
- `manifold/src/serial/` — `memlnaut-serial.ts` Web Serial scaffold + `EditorPanel.tsx` (MEMLNaut Editor mode).
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- `manifold/src/engine/exploration.ts` (+ `jolt.ts` , `ou-explore.ts` ) — Jolt press + OU explore gestures
(Learning drawer). Interim TS math from the retired playground via get/set-weights + the spine's
`setOutputMorph` hook; marked `P3 SWAP POINT` for the WASM bindings.
- `manifold/src/debug/probe.ts` — `window.__nisps` (`?debug=1`). `manifold/tests/e2e/` — `smoke` ,
`probe-api` (15-test engine-contract port), `spine` (spine invariant + probe-survives-mode-switch).
E2E on the VPS runs via non-snap node (see BUILD-PLAN). `manifold/tests/fixtures/` — golden parity
fixtures (gesture trace, curves, input/output pipelines) captured 2026-07-13 pre-P4, guarded by
`tests/pipeline-golden.test.ts` (in `bun run test` ). `manifold/osc-bridge/` — Deno WS↔UDP-OSC bridge.
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### `vcv/` — VCV Rack 2 plugin (MEMLNaut module, WIP)
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Native C++ Rack module: ML CV-mapper with RL feedback + a browser bridge. **8 inputs × 16 outputs + per-output
LED rings**, palette from the frontend tokens, WS↔OSC browser bridge (see `docs/specs/vcv-module.md` ).
`src/MEMLNaut.cpp` (module, 8→[16,24,16]→16), `src/iml.hpp` (**thin adapter over `nisps::ml::MLPCore<DynamicStorage>`
+ core `nisps::Rng` ** — P6 reunification 2026-07-18, closes vcv-module.md delta #5 ; behaviour is now core-exact,
pinned by `tests/cpp/test_vcv_iml_parity.cpp` ), `src/osc_server.hpp` (bridge, transport-only), `src/plugin.{hpp,cpp}` ,
`res/*.svg` (panels), `Makefile` (needs `RACK_DIR` ). Builds against the current `../nisps/` core via relative
includes; no `nisps-core` .
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### `schemas/` — JSON parameter contracts (firmware/browser source of truth)
- `schemas/schema.json` — Draft 2020-12 meta-schema validating mode files.
feat(slp-workshop): new MEMLCelium-based mode + port Jolt & OU-noise RL learning
New SLP-Workshop firmware variant (Synth Library Portland), built on the
MEMLCelium engine + MLP shape. Ports the two post-fork learning-algorithm
changes from upstream memllib InterfaceRL into the shared nisps/ml core,
runtime-configurable (no compile-time switch), inert by default:
- nisps/ml/jolt.hpp: Jolt — held continuous weight morph over the flat
weight buffer + post-release LR ramp (kJolt* constants verbatim).
- nisps/ml/ou_noise.hpp: OUNoise<N> — Ornstein-Uhlenbeck exploration walk
on the output vector (theta=0.02, dt=0.001, kMaxAmplitude=0.65).
Both wired into ModeBase so every mode gains jolt_press/jolt_release/
jolt_lr_scale + set_explore_intensity; gated so existing modes stay
bit-identical (parity + golden tests green). Firmware surfaces them on
TogB1 (Jolt) and RVX1 (explore). New SLPWorkshopMode mode + schema +
codegen; firmware alias + .ino variant; playground mode registration.
Tests: jolt + OU unit tests, ModeBase learning integration incl. an
inert-parity test proving SLP-Workshop == MEMLCelium with features off.
Verified: cpp tests, wasm build, native↔wasm parity, lint, codegen
golden, playground typecheck. Firmware compile/e2e/hardware are
environment-bound (no arduino-cli/submodules/browser here).
Refs ergo 019f0fca.
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- `schemas/modes/<mode>.json` (× 9) — each mode's params, ranges, defaults, curves, voice spaces, ML config. (`slp_workshop.json` reuses `engine_id: memlcelium` .)
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- `schemas/modes/params_notes.md` — provenance notes and judgement calls per mode.
feat(midi-devices): canonical external-synth CC templates + dual codegen
Add a durable, committed source of truth for external MIDI synth control:
- synth-midi-cc.json: verified CC maps + provenance/sources (8 devices researched)
- schemas/midi_device.schema.json + schemas/midi_devices/*.json: 6 CC-controllable
device templates (Moog Sub 37/Sub Phatty, Creamware Pro-12 ASB, Elektron Analog
Keys, ASM Hydrasynth, Roland JD-800), params keyed {id, cc, label, min, max,
default, group}.
- codegen/generate-midi-devices.ts (isolated from the mode golden test) emits both
nisps/midi/generated/midi_devices.hpp (no-heap constexpr, firmware+WASM) and
manifold/src/midi-devices/generated/ (typed catalogue for the browser).
- codegen/seed-midi-devices.ts: reproducible seed from the research artifact.
Lets a performer pick a device and address its parameters by name (not CC number)
on both the firmware and the Manifold browser engine.
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- `schemas/midi_device.schema.json` — Draft 2020-12 meta-schema for external-MIDI-synth templates.
- `schemas/midi_devices/<device>.json` (× 6) — CC-controllable external synths (Moog Sub 37 / Sub Phatty, Creamware Pro-12 ASB, Elektron Analog Keys, ASM Hydrasynth, Roland JD-800). Each param: `{id, cc, label, min, max, default, group}` . Canonical source for both firmware + browser device pickers. Verified-CC provenance + sources live in `synth-midi-cc.json` (repo root).
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### `codegen/` — schema → C++/TS code
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- `codegen/generate.ts` — Bun script: validates schemas via ajv (incl. the P5 firmware-fit check: exactly 3 hidden layers, dims ≤4096), emits per-mode C++ `nisps/modes/generated/<mode>_schema.hpp` (`constexpr`, `nisps::modes::generated` ) AND TS `manifold/src/modes/generated/<mode>_schema.ts` (+ `types.ts` , `index.ts` ). Idempotent; golden-tested in `run-all-tests.sh` stage 5. The TS output is the SOURCE OF TRUTH consumed by `MF_MODES` (`manifold/src/console/model.ts`).
feat(midi-devices): canonical external-synth CC templates + dual codegen
Add a durable, committed source of truth for external MIDI synth control:
- synth-midi-cc.json: verified CC maps + provenance/sources (8 devices researched)
- schemas/midi_device.schema.json + schemas/midi_devices/*.json: 6 CC-controllable
device templates (Moog Sub 37/Sub Phatty, Creamware Pro-12 ASB, Elektron Analog
Keys, ASM Hydrasynth, Roland JD-800), params keyed {id, cc, label, min, max,
default, group}.
- codegen/generate-midi-devices.ts (isolated from the mode golden test) emits both
nisps/midi/generated/midi_devices.hpp (no-heap constexpr, firmware+WASM) and
manifold/src/midi-devices/generated/ (typed catalogue for the browser).
- codegen/seed-midi-devices.ts: reproducible seed from the research artifact.
Lets a performer pick a device and address its parameters by name (not CC number)
on both the firmware and the Manifold browser engine.
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- `codegen/generate-midi-devices.ts` — separate Bun script (isolated from the mode golden test): validates `schemas/midi_devices/` via ajv, emits `nisps/midi/generated/midi_devices.hpp` (no-heap `constexpr` ) and `manifold/src/midi-devices/generated/{types,devices,index}.ts` . Idempotent.
- `codegen/seed-midi-devices.ts` — one-time/idempotent seed deriving `schemas/midi_devices/*.json` from the `synth-midi-cc.json` research artifact (slugifies labels → ids, heuristic groups).
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- `codegen/templates/` , `codegen/tests/golden/` — reference templates + golden snapshot for paf_synth.
### `tests/cpp/` — host C++ tests
- Per-component tests: `test_dsp_*.cpp` , `test_engine_*.cpp` , `test_mlp_*.cpp` , `test_mode_*.cpp` , `test_fixed_buffer.cpp` , `test_ring_buffer.cpp` , `test_rng.cpp` , `test_math.cpp` . Helpers in `test_helpers.hpp` .
- Verification: `ml_golden_vectors.cpp` , `engine_impulse.cpp` (+ `engine_impulse_baseline.bin` ), `parity_check.cpp` + `parity_wasm.mjs` + `parity_diff.mjs` — native-vs-WASM bit-equivalence within 1e-5.
### `scripts/` — build + verify entry points
- `build-firmware.sh` , `flash-firmware.sh` , `build-and-flash-firmware.sh` , `firmware-common.sh` — Arduino-CLI wrapper for RP2350 target with C++20 flag.
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- `build-wasm.sh` — Emscripten compile producing `manifold/public/nisps.{wasm,js}` .
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- `build-cpp-tests.sh` — CMake configure + build + ctest (Ninja).
- `parity-check.sh` — runs native + WASM and diffs binary outputs.
- `lint-cpp.sh` — `.f` literal warn + heap/`Arduino.h` violation fail.
- `run-all-tests.sh` — master verification script.
### `.github/workflows/`
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- `ci.yml` — GitHub Actions: cmake build + ctest + WASM build + parity check + lint + Playwright (cpp-tests + manifold-tests jobs). Firmware compile is documented as manual.
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### Submodules (in `src/`)
- `src/memllib/` — hardware abstraction (audio driver, peripherals, MIDI). **Not auto-initialized** — fresh clones need `git submodule update --init --recursive` .
- `src/daisysp/` — vendored DSP library. Used by some firmware glue; nisps replaced its PitchShifter with a custom granular impl.
### Top-level docs
- `CLAUDE.md` — long-form architecture narrative.
- `MAP.md` — this file.
- `ALIGNMENT.md` — strategic gaps + open mission questions, dated, opinionated.
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- `README.md` — short quickstart.
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- `AGENTS.md` — canonical agent contract: architecture, build/test, scope, and Ergo workflow.
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## Entry points
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- **Firmware**: `scripts/build-firmware.sh [VARIANT]` (interactive prompt if omitted), `scripts/flash-firmware.sh` , `scripts/build-and-flash-firmware.sh` . Target: `rp2040:rp2040:solderparty_rp2350_stamp_xl:opt=Optimize3` , `-std=gnu++20` .
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- **Manifold dev**: `cd manifold && bun install && bun run dev` (Vite, COOP/COEP headers).
- **Manifold build**: `cd manifold && bun run build` .
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- **WASM rebuild**: `bash scripts/build-wasm.sh` (needs `emcc` ).
- **Host C++ tests**: `bash scripts/build-cpp-tests.sh` .
- **Parity check**: `bash scripts/parity-check.sh` .
- **All tests**: `bash scripts/run-all-tests.sh` .
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- **Playwright**: `cd manifold && node node_modules/.bin/playwright test` (non-snap node runner on the VPS — BUILD-PLAN gotcha; `bunx playwright test` works elsewhere).
feat(manifold): P5.2/P5.3 — derive MF_MODES from schema truth + per-mode engine dims
Schema-backed modes in console/model.ts are now DERIVED from the codegen
schemas in src/modes/generated/ (source of truth): real param names/groups/
count, plus each mode's ml net shape (MFMode.ml) and schema engine_id. A thin
manifold OVERLAY supplies only label/glyph/ModeClass/input/ordering. New
browser-viable modes xiasri + slp_workshop get derived entries; schema-less
visualizer + c15 stay hand-written on DEFAULT_MODE_ML. Schema min/max/default/
label/curve surface as engine-unit metadata (schemaMin/... on MFParam) without
touching the 0..1 routing semantics.
Switching instrument mode reshapes the runtime-shaped WASM net to the mode's
schema ml config (ConsoleApp effect keyed on [engine, modeId]; no confirm
modal). Boot lands paf_synth dims (4->[10,10,14]->33) once WASM is ready. The
P2.3 axis-count reshape offer still reads the engine's live inputSize and does
not spuriously prompt on a mode switch.
Adds schema-modes.spec.ts (P5 gate): drives switches via a new window.__mf
debug seam and asserts describe() dims, getWeights count, output length/bounds,
and UI param count FROM the imported schemas; spot-checks trainAsync after a
switch. Updates reshape/probe-api/geo-dislike specs to assert from the boot
mode schema instead of the retired fixed 32/126 shape.
All gates green: typecheck, unit (9), build, e2e (33).
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- **Codegen**: `cd codegen && bun run generate.ts` (regenerates both `nisps/modes/generated/` C++ and `manifold/src/modes/generated/` TS).
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## Conventions
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- Firmware mode selection is compile-time only — `#define MEMLNAUT_MODE_TYPE` in the `.ino` .
- `nisps/` follows Chris's RP2350 perf rules globally: no heap, `static const float` for non-trivial constants, strict `.f` suffix, memory section attrs (`NISPS_AUDIO_MEM`, `NISPS_AUDIO_FUNC` , `NISPS_APP_SRAM` , `NISPS_HOT` , `NISPS_FORCE_INLINE` ).
- C++ identifiers: `PascalCase` types, `snake_case` functions/variables, `kPascalCase` constexpr. JSON keys `snake_case` . TS types `PascalCase` , components `PascalCase.tsx` , modules `kebab-case.ts` .
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- `Curve` enum lives in `nisps/core/math.hpp` (lowercase: `linear/exp/log/square/sqrt/sigmoid/cubic` , plus the parameterised `centered_power` free function); generated mode headers re-export via `using Curve = ::nisps::Curve;` . Since P4 there is NO TS mirror — the browser samples the WASM catalog (`nisps_curve_apply(+batch)`).
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- Modes are TSX components composed of primitives; mode parameter contracts are JSON schemas with codegen → C++ **and** TS types (`MF_MODES` derives params/ml-config from the generated schemas since P5; labels/ordering stay a manifold overlay). **No declarative JSON UI.**
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- WASM and firmware share the same C++; the browser MLP is runtime-shaped (`MLPCore< DynamicStorage > `, since P2): `nisps_ml_create` honours `(input, output, hidden[3])` with non-positive/null args defaulting to `32→[10,14,18]→126` ; `nisps_ml_reshape` warm-starts a new shape. Firmware keeps compile-time `MLP<...>` (zero heap). Modes currently still use a slice of the default 126 outputs (per-mode dims become schema-real at P5).
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- Cross-platform parity: `scripts/parity-check.sh` enforces native vs WASM agreement within 1e-5.
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## Gotchas
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- `src/memllib` submodule is not auto-checked-out.
- Firmware sketch path is `firmware/MEMLNaut-NISPS/MEMLNaut-NISPS.ino` (Arduino-CLI requires sketch dir name == sketch file name); `firmware/MEMLNaut-NISPS/src/{memllib,daisysp,nisps}` are symlinks because Arduino's preprocessor refuses `..` in includes from sketch headers.
- `firmware/MEMLNaut-NISPS/glue/mode_select.hpp` `#undef` s Arduino macros (`sq`, `min` , `max` , `abs` , `round` ) before pulling nisps headers — engines use those identifiers as method names.
- `nisps_firmware::g_active_mode_bridge` is `extern` in `glue/audio_driver.hpp` and defined in the `.ino` ; combining `inline` with `__not_in_flash` produces a comdat conflict at link time.
- The host fallback of `NISPS_AUDIO_FUNC` in `nisps/core/perf.hpp` is misshapen for use as a function-name decorator (firmware path expands to `__not_in_flash_func` which takes only a name); firmware glue avoids the macro to dodge the inconsistency. See `ALIGNMENT.md` .
- `nisps_modes_tests` builds against generated schemas under `nisps/modes/generated/` ; if you add a new mode, regenerate via `bun run codegen/generate.ts` before building.
## Smells / strategic concerns
See `ALIGNMENT.md` .
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## Specs
- **Root**: `docs/specs/`
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- **Entry**: `MAIN.md`
- **Layout**: flat (with `plans/` , `recon/` , `_archive/` subdirs)
- **Index**: none (intentionally — generate when a consumer exists)
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- **Skill**: invoke `/specs` to review/maintain/add/navigate.
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- **Conventions**: Four-genre ontology — `kind: spec` (timeless contract, wins by intent), `kind: plan` (status: active|executed|superseded, never authority for behaviour), `kind: finding` (dated, immutable, exempt from drift lint), ADRs in `docs/adr/` .
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The corpus holds platform-level specs (engine architecture, I/O backends, feedback design), implementation specs (port specs, wire protocols), feature specs (e.g. slp-workshop-firmware.md), historical findings (dated research artifacts), and finite build plans. Before changing behaviour a spec covers, find it via `/specs` ; the spec wins by intent — if it's wrong, update it in the same commit as the code.