// SPDX-License-Identifier: BSD-2-Clause // This code is part of the sfizz library and is licensed under a BSD 2-clause // license. You should have receive a LICENSE.md file along with the code. // If not, contact the sfizz maintainers at https://github.com/sfztools/sfizz #include "sfizz/modulations/ModId.h" #include "sfizz/modulations/ModKey.h" #include "sfizz/Synth.h" #include "TestHelpers.h" #include "catch2/catch.hpp" TEST_CASE("[Modulations] Identifiers") { // check that modulations are well defined as either source and target // and all targets have their default value defined sfz::ModIds::forEachSourceId([](sfz::ModId id) { REQUIRE(sfz::ModIds::isSource(id)); REQUIRE(!sfz::ModIds::isTarget(id)); }); sfz::ModIds::forEachTargetId([](sfz::ModId id) { REQUIRE(sfz::ModIds::isTarget(id)); REQUIRE(!sfz::ModIds::isSource(id)); }); } TEST_CASE("[Modulations] Flags") { // check validity of modulation flags static auto* checkBasicFlags = +[](int flags) { REQUIRE(flags != sfz::kModFlagsInvalid); REQUIRE((bool(flags & sfz::kModIsPerCycle) + bool(flags & sfz::kModIsPerVoice)) == 1); }; static auto* checkSourceFlags = +[](int flags) { checkBasicFlags(flags); REQUIRE((bool(flags & sfz::kModIsAdditive) + bool(flags & sfz::kModIsMultiplicative) + bool(flags & sfz::kModIsPercentMultiplicative)) == 0); }; static auto* checkTargetFlags = +[](int flags) { checkBasicFlags(flags); REQUIRE((bool(flags & sfz::kModIsAdditive) + bool(flags & sfz::kModIsMultiplicative) + bool(flags & sfz::kModIsPercentMultiplicative)) == 1); }; sfz::ModIds::forEachSourceId([](sfz::ModId id) { checkSourceFlags(sfz::ModIds::flags(id)); }); sfz::ModIds::forEachTargetId([](sfz::ModId id) { checkTargetFlags(sfz::ModIds::flags(id)); }); } TEST_CASE("[Modulations] Display names") { // check all modulations are implemented in `toString` sfz::ModIds::forEachSourceId([](sfz::ModId id) { REQUIRE(!sfz::ModKey(id).toString().empty()); }); sfz::ModIds::forEachTargetId([](sfz::ModId id) { REQUIRE(!sfz::ModKey(id).toString().empty()); }); } TEST_CASE("[Modulations] Connection graph from SFZ") { sfz::Synth synth; synth.loadSfzString("/modulation.sfz", R"( sample=*sine amplitude_oncc20=59 amplitude_curvecc20=3 pitch_oncc42=71 pitch_smoothcc42=32 pan_oncc36=14.5 pan_stepcc36=1.5 width_oncc425=29 )"); const std::string graph = synth.getResources().modMatrix.toDotGraph(); REQUIRE(graph == createReferenceGraph({ R"("Controller 20 {curve=3, smooth=0, value=59, step=0}" -> "Amplitude {0}")", R"("Controller 42 {curve=0, smooth=32, value=71, step=0}" -> "Pitch {0}")", R"("Controller 36 {curve=0, smooth=0, value=14.5, step=1.5}" -> "Pan {0}")", R"("Controller 425 {curve=0, smooth=0, value=29, step=0}" -> "Width {0}")", })); } TEST_CASE("[Modulations] Filter CC connections") { sfz::Synth synth; synth.loadSfzString("/modulation.sfz", R"( sample=*sine cutoff=100 fil1_gain_oncc3=5 fil1_gain_stepcc3=0.5 cutoff2=300 cutoff2_cc2=100 cutoff2_curvecc2=2 resonance3=-1 resonance3_oncc1=2 resonance3_smoothcc1=10 )"); const std::string graph = synth.getResources().modMatrix.toDotGraph(); REQUIRE(graph == createReferenceGraph({ R"("Controller 1 {curve=0, smooth=10, value=2, step=0}" -> "FilterResonance {0, N=2}")", R"("Controller 2 {curve=2, smooth=0, value=100, step=0}" -> "FilterCutoff {0, N=1}")", R"("Controller 3 {curve=0, smooth=0, value=5, step=0.5}" -> "FilterGain {0, N=0}")", })); } TEST_CASE("[Modulations] EQ CC connections") { sfz::Synth synth; synth.loadSfzString("/modulation.sfz", R"( sample=*sine eq1_gain_oncc2=5 eq1_gain_stepcc2=0.5 eq2_freq_oncc3=300 eq2_freq_curvecc3=3 eq3_bw_oncc1=2 eq3_bw_smoothcc1=10 )"); const std::string graph = synth.getResources().modMatrix.toDotGraph(); REQUIRE(graph == createReferenceGraph({ R"("Controller 1 {curve=0, smooth=10, value=2, step=0}" -> "EqBandwidth {0, N=2}")", R"("Controller 2 {curve=0, smooth=0, value=5, step=0.5}" -> "EqGain {0, N=0}")", R"("Controller 3 {curve=3, smooth=0, value=300, step=0}" -> "EqFrequency {0, N=1}")", })); }