Concept-based, no virtual dispatch, per-engine voice spaces as inline
methods. Each engine satisfies nisps::AudioEngine via static_assert.
- NoOpEngine: silent passthrough; used for sequencer-only modes and
for the SoundAnalysisMIDI mode's audio path.
- PAFSynthEngine (33 params, 7 voice spaces): 4-voice PAF synth with
detune cascade, ring-mod, sine-shaper, ADSR, feedback delay. note_on/
note_off interface for MIDI keyboard.
- ChannelStripEngine (24 params, 6 voice spaces): stereo console strip
(pre-gain/HPF/LPF/2x peak/low-shelf/high-shelf/comp/post-gain). Voice
spaces: WannabeNeve66, SSL4K, SSL9K, MaleVox, FemaleVox, Neve80
(stepped-frequency).
- XIASRIEngine (24 params, "Direct" voice space): pitch-shift + 6 allpass
+ 2 comb + 4 delays. Direct NN→param mapping per firmware semantics.
- VerbFXEngine (47 params, 12 voice spaces): 8-band SVF filterbank +
3-lane dynamic delay + 8-lpcomb/4-allpass Freeverb-style tail with
cross-fades. All 12 voice spaces ported from voicespaces/VerbFX/*.hpp.
- MEMLCeliumEngine (56 params): 2-track ratio sequencer + dual-voice
PAF synth (7+7+22+20 layout). Sequencer triggers V0/V1 ADSR.
- BreakOrEngine (56 params): 8-track ratio sequencer; emits NoteOn/
NoteOff/Clock events via pop_events(span). process() returns silence.
- ElysiamorfEngine (40 params): 8-track FM-pair sequencer; emits CC
events on CCs {1,2,3,4,5,9,11,12}. Silent audio path.
- AnalysisEngine (0 params, 6 features): port of XiasriAnalysis (pitch
via zero-crossing, aperiodicity via MAD, log-domain energy + attack
derivative + brightness ratio). Inputs to ML on SoundAnalysisMIDI mode.
All param_count() values match schemas/modes/*.json output_size.
4074 LOC total. CMake adds nisps_dsp_engine_tests target with 38
passing tests under -Wall -Wextra -Werror -Wpedantic.
39 lines
1.3 KiB
C++
39 lines
1.3 KiB
C++
// tests/cpp/test_engine_channel_strip.cpp — channel strip smoke test.
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#include <array>
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#include <cmath>
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#include "test_helpers.hpp"
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#include "../../nisps/engines/channel_strip.hpp"
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NISPS_TEST(channel_strip_concept) {
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static_assert(nisps::AudioEngine<nisps::ChannelStripEngine>);
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NISPS_EXPECT(nisps::ChannelStripEngine::param_count() == 24u);
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NISPS_EXPECT(nisps::ChannelStripEngine::engine_id() == "channel_strip");
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}
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NISPS_TEST(channel_strip_bypass_passthrough) {
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nisps::ChannelStripEngine e;
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e.setup(48000.f);
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e.set_bypass_all(true);
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const auto out = e.process({0.7f, -0.3f});
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NISPS_EXPECT_NEAR(out.L, 0.7f, 1e-6);
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NISPS_EXPECT_NEAR(out.R, -0.3f, 1e-6);
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}
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NISPS_TEST(channel_strip_finite_output_each_voice_space) {
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nisps::ChannelStripEngine e;
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e.setup(48000.f);
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std::array<float, 24> p;
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for (auto& v : p) v = 0.5f;
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for (std::size_t vs = 0u; vs < nisps::ChannelStripEngine::kVoiceSpaceCount; ++vs) {
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e.set_voice_space(static_cast<nisps::ChannelStripEngine::VoiceSpace>(vs));
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e.set_params(p);
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for (int n = 0; n < 1000; ++n) {
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const float x = std::sin(static_cast<float>(n) * 0.05f) * 0.3f;
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const auto y = e.process({x, x});
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NISPS_EXPECT(std::isfinite(y.L));
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NISPS_EXPECT(std::isfinite(y.R));
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}
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}
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}
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