de5654fb6f
The SDK's own single-component sample drains inputParameterChanges in process() and implements setParamNormalized; automation was reading the GUI channel alone. The audio thread now patches a block it solely owns.
153 lines
6.6 KiB
C++
153 lines
6.6 KiB
C++
// Standalone tests for the audio thread's parameter patch. The load-bearing one is the
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// EQUIVALENCE assertion: patching a control into the live block must produce, bit for bit, the
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// block the model path would have folded — which is what makes a second routing table safe.
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#include "../src/core/instrument/param/param_live.h"
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#include "../src/core/instrument/param/param_id.h"
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#include "../src/core/instrument/param/param_units.h"
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#include "../src/core/instrument/map/sample_map.h"
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#include "../src/core/instrument/ui/deck_values.h"
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#include <cstdio>
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#include <cstring>
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using namespace reasampler;
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using namespace reasampler::instrument::param;
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using reasampler::instrument::engine::LiveValues;
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using reasampler::instrument::engine::foldLive;
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using reasampler::instrument::map::InstrumentParams;
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using reasampler::instrument::map::PlaySeconds;
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using reasampler::instrument::map::resolvePlay;
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using reasampler::instrument::ui::DeckParam;
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static int g_fail = 0;
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#define CHECK_ID(cond, id) do { if(!(cond)) { \
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std::printf("FAIL line %d (param %u): %s\n", __LINE__, (id), #cond); ++g_fail; } } while(0)
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#define CHECK(cond) do { if(!(cond)) { \
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std::printf("FAIL line %d: %s\n", __LINE__, #cond); ++g_fail; } } while(0)
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namespace {
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constexpr int kRate = 48000;
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// The MODEL path, verbatim: the write the editor makes, resolved and folded the way every
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// publisher folds it. This is the reference the patch is measured against.
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LiveValues modelBlock(const InstrumentParams& params) {
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return foldLive(resolvePlay(params.play, kRate), params.keyTrack);
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}
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// A parameter set deliberately away from its defaults, so an equivalence that only holds at the
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// default cannot pass. Not every field — just enough that a mis-routed patch lands on a value
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// that differs from the one it should have written.
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InstrumentParams dialledParams() {
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InstrumentParams p;
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p.keyTrack = 1.5;
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p.play.adsr.attackSeconds = 0.31;
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p.play.adsr.holdSeconds = 0.07;
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p.play.adsr.decaySeconds = 0.44;
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p.play.adsr.sustainLevel = 0.62;
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p.play.adsr.releaseSeconds = 0.9;
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p.play.adsr.attackCurve = 2.5;
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p.play.trigger.lengthFraction = 0.4;
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p.play.trigAhd.attackSeconds = 0.12;
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p.play.trigAhd.holdFraction = 0.3;
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p.play.playRate = 1.2;
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p.play.pitchOffsetSemitones = -5.0;
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p.play.pitchEnv.enabled = true;
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p.play.pitchEnv.peakSemitones = 7.0;
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p.play.pitchEnv.shape.attackSeconds = 0.02;
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p.play.filter.enabled = true;
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p.play.filter.settings.cutoffNorm = 0.42f;
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p.play.filter.settings.resonanceNorm = 0.66f;
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p.play.filter.modAmount = -0.4;
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p.play.filter.velAmount = 0.25;
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p.play.filter.keyTrack = 0.75;
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p.play.filter.env.attackSeconds = 0.05;
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p.play.filter.trigEnv.decaySeconds = 0.6;
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return p;
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}
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} // namespace
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// THE assertion this module exists for. For every exposed control and several normalized
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// positions: writing it through the model and folding must equal patching it into the folded
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// block. Bytes, not fields — a member the patch forgot to route is caught as surely as one it
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// routed to the wrong place.
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static void testPatchingAControlEqualsFoldingTheModelAfterTheSameWrite() {
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const double kPositions[] = {0.0, 0.137, 0.5, 0.813, 1.0};
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for (const ParamRow& row : exposedParams()) {
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// Master gain is not carried by the block at all — the processor's own atomic is its
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// route to the audio, and the patch reports that by refusing it.
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if (row.deck == DeckParam::kMasterGain) {
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LiveValues block = modelBlock(dialledParams());
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const LiveValues before = block;
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CHECK_ID(!applyLiveParam(block, row.deck, 0.25, kRate), row.id);
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CHECK_ID(std::memcmp(&before, &block, sizeof(LiveValues)) == 0, row.id);
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continue;
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}
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for (double norm : kPositions) {
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InstrumentParams written = dialledParams();
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if (row.deck == DeckParam::kKeyTrack) {
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written.keyTrack = reasampler::instrument::ui::keyTrackFromNorm(norm);
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} else {
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reasampler::instrument::ui::setDeckParam(row.deck, written.play, norm,
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/*segment=*/0);
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}
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const LiveValues expected = modelBlock(written);
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LiveValues patched = modelBlock(dialledParams());
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CHECK_ID(applyLiveParam(patched, row.deck, norm, kRate), row.id);
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CHECK_ID(std::memcmp(&expected, &patched, sizeof(LiveValues)) == 0, row.id);
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}
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}
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}
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// A drawn contour makes Trigger length inert — the editor's knob goes dead and the fold pins the
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// fraction at 1.0. A host lane pointed at it must be equally inert, or automation would re-open a
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// control the model says is closed.
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static void testTriggerLengthIsInertUnderADrawnEnvelope() {
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InstrumentParams p = dialledParams();
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p.play.ampSpline.mode = reasampler::EnvMode::Spline;
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LiveValues block = modelBlock(p);
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CHECK(block.splineActive);
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CHECK(block.lengthFraction == 1.0);
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CHECK(applyLiveParam(block, DeckParam::kTrigLength, 0.2, kRate));
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CHECK(block.lengthFraction == 1.0);
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}
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// A control with no parameter row is refused rather than silently landing somewhere.
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static void testAnUnexposedControlIsRefused() {
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LiveValues block = modelBlock(dialledParams());
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const LiveValues before = block;
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CHECK(!applyLiveParam(block, DeckParam::kPlayMode, 1.0, kRate));
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CHECK(!applyLiveParam(block, DeckParam::kVoiceCount, 1.0, kRate));
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CHECK(std::memcmp(&before, &block, sizeof(LiveValues)) == 0);
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}
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// Every exposed control resolves to a home the host's read and write paths actually reach. The
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// guard the promotion of pitch key-track needed: id 1000 was issued against a control whose value
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// is not in PlaySeconds, and nothing failed to compile.
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static void testEveryExposedControlHasAValueHome() {
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for (const ParamRow& row : exposedParams()) {
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CHECK_ID(valueHomeFor(row.deck) != ValueHome::None, row.id);
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}
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// And the instance-scalar set is exactly the two the shell branches on by name.
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CHECK(valueHomeFor(DeckParam::kMasterGain) == ValueHome::InstanceScalar);
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CHECK(valueHomeFor(DeckParam::kKeyTrack) == ValueHome::InstanceScalar);
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int instanceScalars = 0;
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for (const ParamRow& row : paramTable()) {
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if (valueHomeFor(row.deck) == ValueHome::InstanceScalar) ++instanceScalars;
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}
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CHECK(instanceScalars == 2);
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}
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int main() {
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testPatchingAControlEqualsFoldingTheModelAfterTheSameWrite();
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testTriggerLengthIsInertUnderADrawnEnvelope();
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testAnUnexposedControlIsRefused();
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testEveryExposedControlHasAValueHome();
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if (g_fail == 0) std::printf("param_live: all tests passed\n");
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return g_fail == 0 ? 0 : 1;
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}
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