Phase 3 (S1, S5, S6, S25, L11, L37, ST11, ST12). Behaviour-preserving by construction: the diff on the generated directories is PURELY ADDITIVE (217 insertions, 0 deletions), so no emitted constant changed value. This moves where truth lives; it does not change what truth says. - S5: nine mode headers each carried a mechanically identical 12-field positional ParamSchema aggregate. codegen now emits one `inline constexpr ParamSchema k<Mode>Schema` per mode, and the struct itself moved into generated/schema_types.hpp. Each param_schema() is a one-line return. - S6 + S25: every mode hand-typed its net shape a second time as MLP template args, duplicating the schema's own dims. codegen emits a `<Mode>MLP` alias built from the already-emitted constants (not re-literalled), and all nine modes use it. NMaxExamples still defaults from kDefaultMaxExamples (Phase 2). - S1: model.ts hand-imported all nine schemas by name and hand-paired each with its overlay — so the SET of modes was hand-maintained and could silently drift from codegen. codegen now emits ALL_MODE_SCHEMAS; SCHEMA_MODE_OVERLAYS is purely display truth (label/glyph/css/order), which stays hand-curated. - L37: deleted the hand-written modeEngineId switch, which duplicated schema.engine_id and silently defaulted unknown modes to 'thru'. Routes on MFMode.engineId with exactly one documented exception: sound_analysis_midi declares engine_id 'thru' because its ModeBase audio slot really is NoOpEngine, while it separately drives the real AnalysisEngine. - L11: ExternalSynthMIDIMode's shape was literal in two places; now named once in an ext_synth_defaults namespace with an ExtSynthMIDIMLP alias. Full folding into the JSON pipeline is NOT done and the reason is recorded in-file: it is a template family over an externally-supplied Device and variable NOut, with no single (device, NOut) schema to author. - ST12: extracted codegen/lib.ts for the helpers both generators duplicated, and corrected the comment that claimed they had to be separate. Proof the extraction was behaviour-free: regenerating the MIDI-device outputs produces a byte-identical tree. - ST11: deleted codegen/templates/ — dead "reference" files no generator reads, already drifted from the real emitters. Gates: run-all-tests.sh ALL GREEN; codegen idempotent (re-running both generators yields no further diff), which is what CI's dirty-diff gate checks.
572 lines
10 KiB
C++
572 lines
10 KiB
C++
// AUTOGENERATED — do not edit. Source: schemas/modes/memlcelium.json. Run `bun run codegen/generate.ts` to regenerate.
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#ifndef NISPS_GENERATED_MEMLCELIUM_SCHEMA_HPP
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#define NISPS_GENERATED_MEMLCELIUM_SCHEMA_HPP
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#include "schema_types.hpp"
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#include "../../ml/mlp.hpp"
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namespace nisps::modes::generated {
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inline constexpr std::string_view kMemlceliumModeId = "memlcelium";
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inline constexpr std::string_view kMemlceliumEngineId = "memlcelium";
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inline constexpr std::array<std::string_view, 4> kMemlceliumInputChannels = {{
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"joy_x",
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"joy_y",
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"joy_z",
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"joy_w",
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}};
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inline constexpr std::array<std::size_t, 3> kMemlceliumHiddenLayers = {{
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10u,
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14u,
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18u,
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}};
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inline constexpr MLConfig kMemlceliumMLConfig = {
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4u,
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56u,
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0.6f,
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1.0f,
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1000u,
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};
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inline constexpr std::size_t kMemlceliumParamCount = 56u;
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inline constexpr std::array<Param, kMemlceliumParamCount> kMemlceliumParams = {{
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Param{
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"seq0_ratio0",
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"Seq0 Ratio 0",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_ratio1",
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"Seq0 Ratio 1",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_ratio2",
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"Seq0 Ratio 2",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_phasor_mul",
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"Seq0 Phasor Mul",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_phase_off",
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"Seq0 Phase Off",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_amp0",
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"Seq0 Amp 0",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq0_amp1",
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"Seq0 Amp 1",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_ratio0",
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"Seq1 Ratio 0",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_ratio1",
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"Seq1 Ratio 1",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_ratio2",
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"Seq1 Ratio 2",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_phasor_mul",
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"Seq1 Phasor Mul",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_phase_off",
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"Seq1 Phase Off",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_amp0",
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"Seq1 Amp 0",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"seq1_amp1",
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"Seq1 Amp 1",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"sequencer",
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},
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Param{
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"v0_base_freq",
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"V0 Base Freq",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf0_cf",
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"V0 PAF0 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf1_cf",
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"V0 PAF1 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf2_cf",
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"V0 PAF2 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf0_bw",
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"V0 PAF0 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf1_bw",
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"V0 PAF1 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf2_bw",
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"V0 PAF2 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf_vib",
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"V0 PAF Vib",
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0.0f,
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1.0f,
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0.0f,
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Curve::square,
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"v0_synth",
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},
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Param{
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"v0_paf_vfr",
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"V0 PAF Vib Rate",
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0.0f,
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1.0f,
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0.5f,
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Curve::square,
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"v0_synth",
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},
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Param{
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"v0_paf0_shift",
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"V0 PAF0 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf1_shift",
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"V0 PAF1 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_paf2_shift",
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"V0 PAF2 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_amp_attack",
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"V0 Amp Attack",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_env",
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},
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Param{
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"v0_amp_decay",
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"V0 Amp Decay",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v0_env",
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},
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Param{
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"v0_amp_sustain",
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"V0 Amp Sustain",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v0_env",
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},
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Param{
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"v0_amp_release",
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"V0 Amp Release",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v0_env",
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},
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Param{
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"v0_pitch_attack",
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"V0 Pitch Attack",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_env",
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},
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Param{
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"v0_pitch_decay",
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"V0 Pitch Decay",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v0_env",
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},
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Param{
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"v0_pitch_emph",
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"V0 Pitch Emph",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_env",
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},
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Param{
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"v0_shape_gain",
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"V0 Shape Gain",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_shape_asym",
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"V0 Shape Asym",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_shape_mix",
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"V0 Shape Mix",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v0_rm_gain",
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"V0 RingMod Gain",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v0_synth",
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},
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Param{
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"v1_base_freq",
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"V1 Base Freq",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_detune1",
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"V1 Detune 1",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_detune2",
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"V1 Detune 2",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf0_cf",
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"V1 PAF0 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf1_cf",
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"V1 PAF1 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf2_cf",
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"V1 PAF2 CF",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf0_bw",
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"V1 PAF0 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf1_bw",
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"V1 PAF1 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf2_bw",
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"V1 PAF2 BW",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf0_shift",
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"V1 PAF0 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf1_shift",
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"V1 PAF1 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_paf2_shift",
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"V1 PAF2 Shift",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_synth",
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},
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Param{
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"v1_amp_attack",
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"V1 Amp Attack",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v1_env",
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},
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Param{
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"v1_amp_decay",
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"V1 Amp Decay",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v1_env",
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},
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Param{
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"v1_amp_sustain",
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"V1 Amp Sustain",
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0.0f,
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1.0f,
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0.5f,
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Curve::linear,
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"v1_env",
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},
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Param{
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"v1_amp_release",
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"V1 Amp Release",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v1_env",
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},
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Param{
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"v1_pitch_attack",
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"V1 Pitch Attack",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v1_env",
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},
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Param{
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"v1_pitch_decay",
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"V1 Pitch Decay",
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0.0f,
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1.0f,
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0.3f,
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Curve::square,
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"v1_env",
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},
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Param{
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"v1_pitch_emph",
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"V1 Pitch Emph",
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0.0f,
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1.0f,
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0.0f,
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Curve::linear,
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"v1_env",
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},
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}};
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inline constexpr std::size_t kMemlceliumVoiceSpaceCount = 1u;
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inline constexpr std::array<std::string_view, kMemlceliumVoiceSpaceCount> kMemlceliumVoiceSpaces = {{
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"Direct",
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}};
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inline constexpr UIConfig kMemlceliumUI = {
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PrimaryInput::XYPad,
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false,
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true,
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};
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using MemlceliumMLP = ::nisps::ml::MLP<kMemlceliumMLConfig.input_size, kMemlceliumHiddenLayers[0], kMemlceliumHiddenLayers[1], kMemlceliumHiddenLayers[2], kMemlceliumMLConfig.output_size>;
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|
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inline constexpr ::nisps::ParamSchema kMemlceliumSchema = {
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kMemlceliumModeId,
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kMemlceliumEngineId,
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std::span<const std::string_view>(kMemlceliumInputChannels),
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kMemlceliumMLConfig.input_size,
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std::span<const std::size_t>(kMemlceliumHiddenLayers),
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kMemlceliumMLConfig.output_size,
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kMemlceliumMLConfig.default_spread,
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kMemlceliumMLConfig.default_learning_rate,
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kMemlceliumMLConfig.default_max_iterations,
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std::span<const Param>(kMemlceliumParams),
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std::span<const std::string_view>(kMemlceliumVoiceSpaces),
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kMemlceliumUI,
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};
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} // namespace nisps::modes::generated
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#endif // NISPS_GENERATED_MEMLCELIUM_SCHEMA_HPP
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